Monday, September 30, 2013

How to generate JAX-WS client and integrate with client application

 my previous post explained about  how to deploy the web service in the tomcat web server.   So, our web service is up and running now. it is time to create/generate the web service client and integrate it with our application.

  we can generate the Web Service client from the WSDL file. wsimport utility will help to generate java based web service client from the given WSDL.So in our scenario, we can generate the web service client with following linux command.

wsimport  -keep  -verbose  -d <directory_to_create_web_service_client>  <wsdl_url>

-verborse (print the status of the operation being  executed to the terminal)
 -d  (path to the directory where the web service client should be created)

 wsimport  -keep  -verbose -d /home/chathuranga/java/jax-ws/client  http://localhost:8080/calculator-service/calcServiceUrl?wsdl 


now we have successfully completed the process of generating the web service client. it can be integrated with your application now.

The source code for the complete example can be found at following github url.


Hope this will helpful for you!

Cheers
Chathuranga Tennakoon
chathuranga.t@gmail.com






Thursday, September 26, 2013

Deploy JAX-WS web service in Tomcat Server

if the web service is going to be deployed in the tomcat server,it has to be developed as a web application project with some added configurations.
in order to start the web application project, i prefer to use maven archetype generate command as follows.

mvn archetype:generate -DarchetypeArtifactId=maven-archetype-webapp


then it will give me a basic web application project that can be built with maven.
now this is the time to integrate my predefined web service with the web application project.

1. first create the relevant package structure in the web-app project and copy the web service src files there.


2. create the web service deployment descriptor ( sun-jaxws.xml ) file under the webapp/WEB-INF directory. (same directory where the web.xml resides).
 the endpoints should be defined as follows.

<?xml version="1.0" encoding="UTF-8"?>

<endpoints
        xmlns="http://java.sun.com/xml/ns/jax-ws/ri/runtime"
        version="2.0">
    <endpoint
            name="calcService"     
            implementation="com.chathurangaonline.jaxws.samples.impl.CalculatorServiceImpl"

            url-pattern="/calcServiceUrl"/>
</endpoints>




3. in web.xml file (standard deployment descriptor) defines the WSServletContextListener and WSServlet class as follows.

<!DOCTYPE web-app PUBLIC

 "-//Sun Microsystems, Inc.//DTD Web Application 2.3//EN"

 "http://java.sun.com/dtd/web-app_2_3.dtd" >
<web-app>

  <display-name>Archetype Created Web Application</display-name>

   <listener>
      <listener-class>
            com.sun.xml.ws.transport.http.servlet.WSServletContextListener
       </listener-class>
    </listener>

    <servlet>
        <servlet-name>calcService</servlet-name>
        <servlet-class>
            com.sun.xml.ws.transport.http.servlet.WSServlet
        </servlet-class>
        <load-on-startup>1</load-on-startup>
    </servlet>

    <servlet-mapping>
        <servlet-name>calcService</servlet-name>
        <url-pattern>/calcServiceUrl</url-pattern>
    </servlet-mapping>

</web-app>



3.  if you do all the above steps correctly, you project structure should be as follows.




now it is the time to build the web service. since the web service is published in the tomcat server, it should be built as a WAR file similar to simple web app.



4.  once the web service is compiled and package, copy the WAR file to the webapps directory in the tomcat server.


5. sometimes the web service not be loaded because the tomcat does not have the required libraries to server for web services (By default, Tomcat does not comes with any JAX-WS dependencies). In that case you need to download those dependencies and copy to the “${Tomcat}/lib” directory.

  •  Go here http://jax-ws.java.net/
  • Download JAX-WS RI distribution.
  • Unzip it and copy following JAX-WS dependencies to Tomcat library folder “{$TOMCAT}/lib“.
    • jaxb-impl.jar
    • jaxws-api.jar
    • jaxws-rt.jar
    • gmbal-api-only.jar
    • management-api.jar
    • stax-ex.jar
    • streambuffer.jar
    • policy.jar

once the above depdencies are copied, restart the tomcat server and try to access the web serice with following URL.

http://localhost:8080/calculator-service/calcServiceUrl

if the web service is working, it should display the following page in the browser.
then we are done.




Summary

the all steps taken for publishing a web service in tomcat can be summarized as below.
  1. Create a web service
  2. Create a sun-jaxws.xml, defines web service implementation class.
  3. Create a standard web.xml, defines WSServletContextListener, WSServlet and structure of a web project
  4. Copy JAX-WS dependencies to “${Tomcat}/lib” directory.
  5. Generate WAR file and copy to “${Tomcat}/webapp” directory.
  6. access the web service from browser and check whether it is up and running.


 SOURCE CODE : - https://github.com/chathurangat/jaxws-calculator-service-webapp

Hope this might be helpful for you!

Cheers
Chathuranga Tennakoon


Thursday, September 19, 2013

Simple JAX-WS Webservice - Calculator Implementation

First we will create a Simple JAX-WS Web Service. if you do not know how to create such web service, you can refer my previous article that describes how to develop simple JAX-WS Service.

Click Here to See How To Create Simple JAX-WS Service

i assumed that you have created a simple web service and it is up and running. we will modify that web service to provide the calculator based web service operations. in this calculator web service, we support for three operations.

1. Addition
2. Multiplication
3. Subtraction

you can see the SEI (Service Endpoint Interface) and SIB (Service Implementation Bean) as follows.


SEI - CalculatorService.java

package com.chathurangaonline.sample.jaxws;

import javax.jws.WebMethod;
import javax.jws.WebService;

/**
 * <p>
 *     Service Endpoint Interface for the calculator service.
 * </p>
 */
@WebService
public interface CalculatorService {

    @WebMethod
    long add(long number1, long number2);

    @WebMethod
    long subtract(long number1, long number2);

    @WebMethod
    long multiply(long number1, long number2);
}


SIB - CalculatorServiceImpl.java

package com.chathurangaonline.sample.jaxws;

import javax.jws.WebService;

/**
 * <p>
 *     Service Implementation Bean (SIB) for CalculatorService endpoint interface
 * </p>
 */
@WebService
public class CalculatorServiceImpl implements CalculatorService{


    @Override
    public long add(long number1, long number2) {
        return number1+number2;
    }

    @Override
    public long subtract(long number1, long number2) {
        return number1+number2;
    }

    @Override
    public long multiply(long number1, long number2) {
        return number1*number2;
    }
}


Service Publisher (Only for Development Environment)

package com.chathurangaonline.sample.jaxws;

import javax.xml.ws.Endpoint;

/**
 * <p>
 *     simple web service publisher for testing the web service in the development environment.
 *     remove this publisher class in the production environment and deploy the web service with
 *     j2ee compliant web server.
 * </p>
 */
public class CalculatorServicePublisher {

    public static void main(String[] args) {

        Endpoint.publish("http://localhost:6655/jaxWsCalcService",new CalculatorServiceImpl());
    }
}


once everything is added correctly, our project will looks like as follows.



now we have a calculator web service that is ready for the deployment. now we will publish our web service using the Endpoint.publish() method and check whether it is working. since we are uisng this in the test environment, we do not need to deploy this is a J2EE application server at the moment. but in our next article we will look at how to deploy the web service in tomcat server.

once the web service is published you can access the web service in the following url.
http://localhost:6655/jaxWsCalcService

once the web service is published, we need to write/generate a web service client to comsume the web service. it will be discussed in following blog post.


How to generate JAX-WS service client and integrate with Java Application

you can download the source code from following gitHub repo.

https://github.com/chathurangat/jaxws-calculator-service

Hope this will be helpful for you!

Cheers
Chathuranga Tennakoon
www.chathurangaonline.com







Tuesday, September 17, 2013

how to exclude web service operation (web method) from the web service in jax-ws

The annotation @WebService tells the server runtime environment to expose all public methods on that bean as a Web service. In below example, all the public methods in the web service will be exposed as web methods.


package com.chathurangaonline.sample.jax.ws;
 
import javax.jws.WebService;
import com.chathurangaonline.sample.model.Hotel;
 
@WebService
public class HotelWebService{
 
    public Hotel retriveHolelByCity(String cityName) {
        //todo implementation should goes here 
        return new Hotel();
    }


    public void addNewHotel(Hotel hotel) {
        //todo implementation should goes here 
    }
}


suppose that you do not need to expose the  addNewHotel method as a web service operation method. but the default implementation of the @WebService method will expose all public methods as web service operations. but there is a special annotation that will prevent the method by exposing/publishing as a web service operation.

    @WebMethod(exclude = true)


Refer the below class and try to publish the web service.

package com.chathurangaonline.sample.jax.ws;
 
import javax.jws.WebService;
import com.chathurangaonline.sample.model.Hotel;
 
@WebService
public class HotelWebService{
 
    public Hotel retriveHolelByCity(String cityName) 
        //todo implementation should goes here 
        return new Hotel();
    }


    @WebMethod(exclude = true)
    public void addNewHotel(Hotel hotel) {
        //todo implementation should goes here 
    }
}


here the  addNewHotel method will not be exposed or published as a web service operation/method.

i hope that this will be helpful for you!

Cheers
Chathuranga Tennakoon
chathuranga.t@gmail.com
www.chathurangaonline.com  

Friday, August 30, 2013

Compound Primary Keys in Hibernate using Annotations

most of the cases, identifier (primary key) of the entity will be a single attribute. but there will be some cases where the primary key of the entity will be comprised by several attributes. In other words, primary key will consist of more than one column. if the primary key consist of more than one attribute/column, we called it as composite primary key or compound primary key.

  In hibernate, there are three ways that can be used to create compound primary key in a entity class using annotations. In all of these three scenarios, it will be required to create a separate class for the compound primary key.

1. Compound primary key with  @Embeddable annotation
 mark the compound primary key (PK) class with @Embeddable annotation and  add the instance of the PK class to the entity class as a normal property. then mark it with @Id annotation as usual.


2. Compound Primary key with @EmbeddableId annotation
 create the compound PK class as  POJO (Plain Old Java Object) and add it as a normal property for the Entity class. then mark that instance with @EmbeddableId annotation.


3. Compound Primary key with @IdClass annotation
    declare the compound primary key class with @IdClass annotation and add the all primary key properties of that class to the entity class as normal properties. then mark all the added primary key properties with @Id annotation.



Hope this will be helpful for you!

Cheers
Chathuranga Tennakoon
www.chathurangaonline.com

Tuesday, August 20, 2013

Hibernate 4 - One to Many mapping with Annotations (LAZY loading example)

 the technologies i ma using for this example.

Hibernate 4
testNG for TDD
MySQL
Maven

In this example, we are going to use our Lecturer and Course example again the entity relationship will be decided based on the following assumption.

Assumption:
 Lecturer can teach many number of courses.

Therefore the relationship between two entities can be described as follows.

  •  relationship from Lecturer to Course is One-To-Many (lecturer can teach many number of courses) 
  •  relationship from Course to Lecturer is Many-To-One (many courses will be taught by one lecturer)
Refer the below example.

Lecturer.java
package com.chathurangaonline.examples.model;

import javax.persistence.*;
import java.io.Serializable;
import java.util.List;

@Entity
@Table(name = "Lecturer")
public class Lecturer implements Serializable{

    @Id
    @GeneratedValue
    @Column(name = "id")
    private Long id;

    @OneToMany(fetch = FetchType.LAZY,cascade = CascadeType.ALL,mappedBy = "lecturer")
    private List courseList;

    public Long getId() {
        return id;
    }

    public void setId(Long id) {
        this.id = id;
    }

    public List getCourseList() {
        return courseList;
    }

    public void setCourseList(List courseList) {
        this.courseList = courseList;
    }
}





Course.java
package com.chathurangaonline.examples.model;

import javax.persistence.*;
import java.io.Serializable;

@Entity
@Table(name = "Course")
public class Course implements Serializable{

    @Id
    @GeneratedValue
    @Column(name = "id")
    private Long id;

    @Column(name = "course_name")
    private String courseName;

    @ManyToOne(fetch = FetchType.LAZY)
    @JoinColumn(name = "lecturer_id")
    private Lecturer lecturer;

    public Long getId() {
        return id;
    }

    public void setId(Long id) {
        this.id = id;
    }

    public String getCourseName() {
        return courseName;
    }

    public void setCourseName(String courseName) {
        this.courseName = courseName;
    }

    public Lecturer getLecturer() {
        return lecturer;
    }

    public void setLecturer(Lecturer lecturer) {
        this.lecturer = lecturer;
    }
}




i have used the following code to check the mapping relationship  and the lazy loading.



    @Test
    public void testSave() throws Exception {

        //saving the lecturer
        Lecturer lecturer = new Lecturer();
        lecturerDao.save(lecturer);
        Assert.assertNotNull(lecturer.getId());

        //saving the course
        Course course = new Course();
        course.setCourseName("Java");
        course.setLecturer(lecturer);
        courseDao.save(course);
        Assert.assertNotNull(course.getId());

        System.out.println(" retrieving the lecturer record with id ["+lecturer.getId()+"]");
        Lecturer  lecturer2  = lecturerDao.findById(lecturer.getId());
        System.out.println("lecturer found with id ["+lecturer2.getId()+"] retrieved");
        System.out.println("course retrieving .......");
        List  courseList1 = lecturer2.getCourseList();
        System.out.println(" course list retrieved ["+courseList1.size()+"]");
    }


when i run the above code, i got the following output and seems to be that the lazy loading is also working fine.



you can get the example source code from following gitHub repository.
Get SourceCode from GitHub


Hope this will be helpful for you!

Cheers
Chathuranga Tennakoon
chathuranga.t@gmail.com
www.chathurangaonline.com


Monday, August 12, 2013

Lazy loading not wotking with hibernate OneToOne mapping

in my experience, i have encountered an issue that the hibernate lazy loading is not working when we map the relationship between two entities  using OneToOne annotations.see the following examples.

Lecturer.java

package com.chathurangaonline.examples.model;



import javax.persistence.*;

import java.io.Serializable;



@Entity
@Table(name = "Lecturer")
public class Lecturer implements Serializable{

    @Id
    @GeneratedValue
    @Column(name = "id")
    private Long id;


    @OneToOne(fetch = FetchType.LAZY,cascade = CascadeType.ALL)
    @JoinColumn(name = "course_id")
    private Course course;


    public Long getId() {
        return id;
    }


    public void setId(Long id) {
        this.id = id;
    }


    public Course getCourse() {
        return course;
    }


    public void setCourse(Course course) {
        this.course = course;
    }
}





Course.java

package com.chathurangaonline.examples.model;


import javax.persistence.*;
import java.io.Serializable;


@Entity
@Table(name = "Course")
public class Course implements Serializable{

    @Id
    @GeneratedValue
    @Column(name = "id")
    private Long id;


    @Column(name = "course_name")
    private String courseName;


    @OneToOne(fetch = FetchType.LAZY,mappedBy = "course")
    private Lecturer lecturer;


    public Long getId() {
        return id;
    }


    public void setId(Long id) {
        this.id = id;
    }


    public String getCourseName() {
        return courseName;
    }


    public void setCourseName(String courseName) {
        this.courseName = courseName;
    }


    public Lecturer getLecturer() {
        return lecturer;
    }


    public void setLecturer(Lecturer lecturer) {
        this.lecturer = lecturer;
    }
}



you will notice that the mapping from the lecturer to course is One-To-One and the fetch type is LAZY. Since the fetch type is LAZY, the associated course object should not be loaded when the lecturer object is loaded. the associated course object should be loaded only when the user request it. that is the behavior of the lazy fetch mode.

    but in this example, you will notice that course object is loaded (EAGER resolved) when the time that the lecturer object is loaded regardless of the LAZY fetch type. it always eagerly resolve the associated entities even if it is declared as LAZY fetch. . please refer the below screenshot.


you will see that when retrieving the Lecturer object with given id, it generates and issue a SQL query to retrieve data from the database. when the lecturer object is retrieved, it loads and populates the associated course object also. that is why when we request the course object and its attributes, it directly give the values of the attributes without issuing another SQL query. the reason for this EAGER behavior can be described as follows.


    @OneToOne(fetch = FetchType.LAZY,cascade = CascadeType.ALL)
    @JoinColumn(name = "course_id")
    private Course course;

you will notice that the OneToOne relationship is not mandatory and it is optional.(by default, the optional=true). since the relationship is optional, hibernate(ORM framework) does not know whether the given lecturer teach a course or not without issuing an another query. therefore hibernate cannot populate the course reference with a proxy, because it does not know whether a course exists for that lecturer.  On the other hand, it cannot populate the course attribute with null because, there may be lecturers who teach courses. therefore hibernate performs the EAGER loading regardless of the LAZY fetch mode if the relationship is OneToOne and it is optional.

to overcome to above issue and make the LAZY loading working, you need to make the relationship as mandatory. In oder to do that, set the optional=false.

   @OneToOne(fetch = FetchType.LAZY,
                        cascade = CascadeType.ALL,
                        optional = false)
   @JoinColumn(name = "course_id")
   private Course course;



then the lazy loading should works as usual.
refer the following screenshot and identify how the lazy loading works. refer the below screenshot.


you will see that when retrieving the associated course instance from the lecturer instance, it generates another SQL queries to retrieve the course details associated. this is because the Fetch type of the relationship is LAZY.


references :
http://stackoverflow.com/questions/17987638/hibernate-one-to-one-lazy-loading-optional-false


Hope this will be helpful for you!

Thanks
Chathuranga Tennakoon
chathuranga.t@gmail.com
www.chathurangaonline.com







Tuesday, August 6, 2013

XML based mapping VS Annotation based mapping in hibernate

There are two ways that we can perform entity mapping in hibernate.
1. XML based mapping
2. Annotation based mapping.

the intention of this article is to select the appropriate mapping option for your project. by the way, i always prefer the annotation based mapping for my projects because of the following reasons.

  • i personally hate a load of XML mapping files and it adds unnecessary complexity for the project. 
  • it degrade the readability and understandability of the code because your POJO (Plain Old Java Objects) is independent from the relevant XML mapping files. therefore you cannot understand the database constraints, associations and mapping relationships between entities just looking at only the POJOs. you need an additional effort to read the XML mapping files and POJOs simultaneously to get an understanding of how entity mapping has been done.

 i personally prefer the annotation based mapping because of the following reasons.

  •  it is very simple to perform entity mapping with annotations and i don't have to maintain separate XML configuration files. 
  • In Annotation mapping,the entity relationships, mappings and other DB constraints are also defined in the POJO along with the relevant attribute. therefore it improves the understandability and the readability of the code.

The decision of selecting the appropriate mapping option (either Annotation based or XML based) for your project should be done wisely.

when to use XML based mapping


it is safer to use XML based mapping to integrate/use the hibernate for a project that is already developed. since you are using XML based mapping, you do not have to touch or modify the POJO classes that are already developed and stable. if you are confident enough to modify the POJOs, then you may use annotation based mapping.(But not recommended)

Another scenario where we can use the XML based mapping is that, we are getting a request  to integrate/use the hibernate for a project that is already developed. but the problem is we do not have the source code of the POJO classes. at that time, we cannot use the annotation to map the entities because, we do not have the source code of POJOs. in such case, we have to use the XML based mapping.


when to use the Annotation based mapping

XML based mapping is a proprietary format of Hibernate ORM framework.
if you intend to expose your applications to other JPA2 compliant other ORM frameworks, you must use the Annotation based mapping. but keep it in mid that there are two types of annotations.
  •  Annotations in the javax.persistance package
In oder to comply, your application with the JPA 2 specification standards, you must use the annotations provided in this package.
  •  Annotations in the org.hibernate package
Annotations provided in this package also specific to the hibernate. In otherwords, all these annotations are owned and governed by the hibernate. therefore  if you have used this annotations,your application will not comply with JPA 2. therefore the application will not work with other ORM frameworks compliant with JPA2. therefore using these annotations will produce the same effect as XML based mapping. only difference between the XML and Annotation (org.hibernate package) based mapping is that it is XML and this is annotations.



Hope this will be helpful for you!
Cheers
Chathuranga Tennakoon
www.chathurangaonline.com