Package ca.uhn.hl7v2.model.v231.message

Examples of ca.uhn.hl7v2.model.v231.message.ADT_A01


                handleException("Error on writing HL7 Error to output stream", e);
            }
        } else {
            try {
                String xmlFormat = omElement.toString();
                Message message = new DefaultXMLParser().parse(xmlFormat);
                String msg = new PipeParser().encode(message);
                if (log.isDebugEnabled()) {
                    log.debug("Message inside the formatter : " + message);
                }
                outputStream.write(msg.getBytes());
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        Parser xmlParser = new DefaultXMLParser();
        Parser ediParser = new PipeParser();
        ediParser.setValidationContext(new NoValidation());
        String xmlDoc = null;
        try {
            Message message = ediParser.parse(rowHL7);
            ConformanceProfileRule rule = new ConformanceProfileRule();
        ValidationException[] exs = rule.test(message);
        if (exs != null && exs.length > 0) {
          throw new HL7Exception(exs[0].getMessage());
       
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        String encodedMessage = new PipeParser().encode(theIn);
        System.out.println("Received message:\n" + encodedMessage + "\n\n");

        // Now we need to generate a message to return. This will generally be an ACK message.
        Segment msh = (Segment) theIn.get("MSH");
        Message retVal;
        try {
            // This method takes in the MSH segment of an incoming message, and generates an
            // appropriate ACK
            retVal = DefaultApplication.makeACK(msh);
        } catch (IOException e) {
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        // The initiator is used to transmit unsolicited messages
        Initiator initiator = connection.getInitiator();
        HL7Message sampleMessage = new HL7Message();

        //send
        Message response = null;
        try {
            response = initiator.sendAndReceive(sampleMessage.getHL7Message());
            PipeParser parser = new PipeParser();
            String responseString = parser.encode(response);
            System.out.println("Received response:\n" + responseString);
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        String encodedMessage = new PipeParser().encode(theIn);
        System.out.println("Received message:\n" + encodedMessage + "\n\n");

        // Now we need to generate a message to return. This will generally be an ACK message.
        Segment msh = (Segment) theIn.get("MSH");
        Message retVal;
        try {
            // This method takes in the MSH segment of an incoming message, and generates an
            // appropriate ACK
            retVal = DefaultApplication.makeACK(msh);
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         * accessors for ADT^A01's segments.
         *
         * HAPI provides several versions of the ADT_A01 class, each in a different package (note
         * the import statement above) corresponding to the HL7 version for the message.
         */
        ADT_A01 adtMsg = (ADT_A01)hapiMsg;

        MSH msh = adtMsg.getMSH();

        // Retrieve some data from the MSH segment
        String msgType = msh.getMessageType().getMessageType().getValue();
        String msgTrigger = msh.getMessageType().getTriggerEvent().getValue();

        // Prints "ADT A01"
        System.out.println(msgType + " " + msgTrigger);

        /*
         * Now let's retrieve the patient's name from the parsed message.
         *
         * PN is an HL7 data type consisting of several components, such as
         * family name, given name, etc.
         */
        PN patientName = adtMsg.getPID().getPatientName();

        // Prints "SMITH"
        String familyName = patientName.getFamilyName().getValue();
        System.out.println(familyName);

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         * accessors for ADT^A01's segments.
         *
         * HAPI provides several versions of the ADT_A01 class, each in a different package (note
         * the import statement above) corresponding to the HL7 version for the message.
         */
        ADT_A01 adtMsg = (ADT_A01)hapiMsg;

        MSH msh = adtMsg.getMSH();

        // Retrieve some data from the MSH segment
        String msgType = msh.getMessageType().getMessageType().getValue();
        String msgTrigger = msh.getMessageType().getTriggerEvent().getValue();

        // Prints "ADT A01"
        System.out.println(msgType + " " + msgTrigger);

        /*
         * Now let's retrieve the patient's name from the parsed message.
         *
         * PN is an HL7 data type consisting of several components, such as
         * family name, given name, etc.
         */
        PN patientName = adtMsg.getPID().getPatientName();

        // Prints "SMITH"
        String familyName = patientName.getFamilyName().getValue();
        System.out.println(familyName);

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    // send the MIME message into a ByteArrayOutputStream
    ByteArrayOutputStream byte1 = new ByteArrayOutputStream();
    mimeMessage.writeTo(byte1);

    // set the value of ED with the String
    ED encapsuledData = new ED(mdmMessage);

    encapsuledData.getTypeOfData().setValue("multipart");
    encapsuledData.getDataSubtype().setValue("x-hl7-cda-level-one");
    encapsuledData.getEncoding().setValue("A");
   
    encapsuledData.getData().setValue( byte1.toString() );

    // setting the data in the OBX segment
    obx.getObservationIdentifier().getIdentifier().setValue("1");
    obx.getValueType().setValue("CE");
    obx.getObservationValue(0).setData(encapsuledData);
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    /*
     * In this example, a CDA r2 document is being embedded as mime content
     * in an MDM_T02 message.
     */
   
    MDM_T02 mdmMessage = new MDM_T02();

    // A few basic MSH fields are populated. In a real situation, this would not be enough
        // to produce a valid message, but for demonstration purposes we'll skip a few
        // fields.
        mdmMessage.getMSH().getEncodingCharacters().setValue("^~\\&");
        mdmMessage.getMSH().getFieldSeparator().setValue("|");

        OBX obx = mdmMessage.getOBX();
   
        // This is not a complete CDA document, but it serves as a good example
        String sampleClinicalDocument = "<ClinicalDocument xsi:schemaLocation=\"urn:hl7-org:v3 CDA.ReleaseTwo.CommitteeBallot03.Aug.2004.xsd\" templateId=\"2.16.840.1.113883.3.27.1776\">\r\n" +
            "   <id extension=\"c266\" root=\"2.16.840.1.113883.3.933\"/>\r\n" +
            "   <code code=\"11488-4\" codeSystem=\"2.16.840.1.113883.6.1\" displayName=\"Consultation note\"/>\r\n" +
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        // to produce a valid message, but for demonstration purposes we'll skip a few
        // fields.
        mdmMessage.getMSH().getEncodingCharacters().setValue("^~\\&");
        mdmMessage.getMSH().getFieldSeparator().setValue("|");

        OBX obx = mdmMessage.getOBX();
   
        // This is not a complete CDA document, but it serves as a good example
        String sampleClinicalDocument = "<ClinicalDocument xsi:schemaLocation=\"urn:hl7-org:v3 CDA.ReleaseTwo.CommitteeBallot03.Aug.2004.xsd\" templateId=\"2.16.840.1.113883.3.27.1776\">\r\n" +
            "   <id extension=\"c266\" root=\"2.16.840.1.113883.3.933\"/>\r\n" +
            "   <code code=\"11488-4\" codeSystem=\"2.16.840.1.113883.6.1\" displayName=\"Consultation note\"/>\r\n" +
            "   <title>Good Health Clinic Consultation Note</title>\r\n" +
            "   <effectiveTime value=\"20000407\"/>\r\n" +
            "</ClinicalDocument>";
       

    MimeMultipart mimeMessage = new MimeMultipart();
    MimeBodyPart bodyPart = new MimeBodyPart();
    bodyPart.setText(sampleClinicalDocument);
    mimeMessage.addBodyPart(bodyPart);
   
    // send the MIME message into a ByteArrayOutputStream
    ByteArrayOutputStream byte1 = new ByteArrayOutputStream();
    mimeMessage.writeTo(byte1);

    // set the value of ED with the String
    ED encapsuledData = new ED(mdmMessage);

    encapsuledData.getTypeOfData().setValue("multipart");
    encapsuledData.getDataSubtype().setValue("x-hl7-cda-level-one");
    encapsuledData.getEncoding().setValue("A");
   
    encapsuledData.getData().setValue( byte1.toString() );

    // setting the data in the OBX segment
    obx.getObservationIdentifier().getIdentifier().setValue("1");
    obx.getValueType().setValue("CE");
    obx.getObservationValue(0).setData(encapsuledData);
   
    // Print the message out
    System.out.println(new PipeParser().encode(mdmMessage));
   
    /*
 
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