Tuesday, December 30, 2008

Configuring MySQL for table case-insensitivity

While trying to add a recent update to our systems, I noticed that our demo system wouldn't start, which was very strange considering I had no problems on my local test system. I eventually traced the problem down to MySQL not being able to find certain tables. This was because I had created the tables in a different case than the Quartz library was expecting. My local testing box is a Windows box whereas our demo and production systems run Linux, the difference being that my Windows MySQL installation has case-insensitivity on by default, whereas the Linux installations do not. In order to remedy this, I had to explicitly add a line to my my.ini / my.cnf configurations :

lower_case_table_names=1


You can determine the case-sensitivity of your own MySQL installation by logging in with the command line client or running the query browser and entering the following command :

SHOW VARIABLES LIKE 'lower_case%'

Thursday, December 11, 2008

Integrating Quartz and Spring using persistent jobs

I've recently found myself having a lot of jobs running in the background of our Java applications, often requiring changes to the scheduling based on my boss' whims. Combine this with the fact that our system's API is now seeing heavy use, and having the triggers configured in the Spring application context (and thus requiring a restart in order to change them) just doesn't cut it any more. Thus, I now find myself needing persistent jobs. However, there's not a lot of documentation out there for dealing with Quartz' persistent job feature in Spring, so I'm going to hopefully provide some help. To start, you need to create the quartz tables in whatever database you're going to be using. There are scripts for creating these tables in the Quartz distribution available on their website for whatever database you may be using. For convenience, I've copied the MySQL Inno DB script here :


DROP TABLE IF EXISTS QRTZ_JOB_LISTENERS;
DROP TABLE IF EXISTS QRTZ_TRIGGER_LISTENERS;
DROP TABLE IF EXISTS QRTZ_FIRED_TRIGGERS;
DROP TABLE IF EXISTS QRTZ_PAUSED_TRIGGER_GRPS;
DROP TABLE IF EXISTS QRTZ_SCHEDULER_STATE;
DROP TABLE IF EXISTS QRTZ_LOCKS;
DROP TABLE IF EXISTS QRTZ_SIMPLE_TRIGGERS;
DROP TABLE IF EXISTS QRTZ_CRON_TRIGGERS;
DROP TABLE IF EXISTS QRTZ_BLOB_TRIGGERS;
DROP TABLE IF EXISTS QRTZ_TRIGGERS;
DROP TABLE IF EXISTS QRTZ_JOB_DETAILS;
DROP TABLE IF EXISTS QRTZ_CALENDARS;
CREATE TABLE QRTZ_JOB_DETAILS(
JOB_NAME VARCHAR(200) NOT NULL,
JOB_GROUP VARCHAR(200) NOT NULL,
DESCRIPTION VARCHAR(250) NULL,
JOB_CLASS_NAME VARCHAR(250) NOT NULL,
IS_DURABLE VARCHAR(1) NOT NULL,
IS_VOLATILE VARCHAR(1) NOT NULL,
IS_STATEFUL VARCHAR(1) NOT NULL,
REQUESTS_RECOVERY VARCHAR(1) NOT NULL,
JOB_DATA BLOB NULL,
PRIMARY KEY (JOB_NAME,JOB_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_JOB_LISTENERS (
JOB_NAME VARCHAR(200) NOT NULL,
JOB_GROUP VARCHAR(200) NOT NULL,
JOB_LISTENER VARCHAR(200) NOT NULL,
PRIMARY KEY (JOB_NAME,JOB_GROUP,JOB_LISTENER),
INDEX (JOB_NAME, JOB_GROUP),
FOREIGN KEY (JOB_NAME,JOB_GROUP)
REFERENCES QRTZ_JOB_DETAILS(JOB_NAME,JOB_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_TRIGGERS (
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
JOB_NAME VARCHAR(200) NOT NULL,
JOB_GROUP VARCHAR(200) NOT NULL,
IS_VOLATILE VARCHAR(1) NOT NULL,
DESCRIPTION VARCHAR(250) NULL,
NEXT_FIRE_TIME BIGINT(13) NULL,
PREV_FIRE_TIME BIGINT(13) NULL,
PRIORITY INTEGER NULL,
TRIGGER_STATE VARCHAR(16) NOT NULL,
TRIGGER_TYPE VARCHAR(8) NOT NULL,
START_TIME BIGINT(13) NOT NULL,
END_TIME BIGINT(13) NULL,
CALENDAR_NAME VARCHAR(200) NULL,
MISFIRE_INSTR SMALLINT(2) NULL,
JOB_DATA BLOB NULL,
PRIMARY KEY (TRIGGER_NAME,TRIGGER_GROUP),
INDEX (JOB_NAME, JOB_GROUP),
FOREIGN KEY (JOB_NAME,JOB_GROUP)
REFERENCES QRTZ_JOB_DETAILS(JOB_NAME,JOB_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_SIMPLE_TRIGGERS (
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
REPEAT_COUNT BIGINT(7) NOT NULL,
REPEAT_INTERVAL BIGINT(12) NOT NULL,
TIMES_TRIGGERED BIGINT(7) NOT NULL,
PRIMARY KEY (TRIGGER_NAME,TRIGGER_GROUP),
INDEX (TRIGGER_NAME, TRIGGER_GROUP),
FOREIGN KEY (TRIGGER_NAME,TRIGGER_GROUP)
REFERENCES QRTZ_TRIGGERS(TRIGGER_NAME,TRIGGER_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_CRON_TRIGGERS (
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
CRON_EXPRESSION VARCHAR(120) NOT NULL,
TIME_ZONE_ID VARCHAR(80),
PRIMARY KEY (TRIGGER_NAME,TRIGGER_GROUP),
INDEX (TRIGGER_NAME, TRIGGER_GROUP),
FOREIGN KEY (TRIGGER_NAME,TRIGGER_GROUP)
REFERENCES QRTZ_TRIGGERS(TRIGGER_NAME,TRIGGER_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_BLOB_TRIGGERS (
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
BLOB_DATA BLOB NULL,
PRIMARY KEY (TRIGGER_NAME,TRIGGER_GROUP),
INDEX (TRIGGER_NAME, TRIGGER_GROUP),
FOREIGN KEY (TRIGGER_NAME,TRIGGER_GROUP)
REFERENCES QRTZ_TRIGGERS(TRIGGER_NAME,TRIGGER_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_TRIGGER_LISTENERS (
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
TRIGGER_LISTENER VARCHAR(200) NOT NULL,
PRIMARY KEY (TRIGGER_NAME,TRIGGER_GROUP,TRIGGER_LISTENER),
INDEX (TRIGGER_NAME, TRIGGER_GROUP),
FOREIGN KEY (TRIGGER_NAME,TRIGGER_GROUP)
REFERENCES QRTZ_TRIGGERS(TRIGGER_NAME,TRIGGER_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_CALENDARS (
CALENDAR_NAME VARCHAR(200) NOT NULL,
CALENDAR BLOB NOT NULL,
PRIMARY KEY (CALENDAR_NAME))
TYPE=InnoDB;

CREATE TABLE QRTZ_PAUSED_TRIGGER_GRPS (
TRIGGER_GROUP VARCHAR(200) NOT NULL,
PRIMARY KEY (TRIGGER_GROUP))
TYPE=InnoDB;

CREATE TABLE QRTZ_FIRED_TRIGGERS (
ENTRY_ID VARCHAR(95) NOT NULL,
TRIGGER_NAME VARCHAR(200) NOT NULL,
TRIGGER_GROUP VARCHAR(200) NOT NULL,
IS_VOLATILE VARCHAR(1) NOT NULL,
INSTANCE_NAME VARCHAR(200) NOT NULL,
FIRED_TIME BIGINT(13) NOT NULL,
PRIORITY INTEGER NOT NULL,
STATE VARCHAR(16) NOT NULL,
JOB_NAME VARCHAR(200) NULL,
JOB_GROUP VARCHAR(200) NULL,
IS_STATEFUL VARCHAR(1) NULL,
REQUESTS_RECOVERY VARCHAR(1) NULL,
PRIMARY KEY (ENTRY_ID))
TYPE=InnoDB;

CREATE TABLE QRTZ_SCHEDULER_STATE (
INSTANCE_NAME VARCHAR(200) NOT NULL,
LAST_CHECKIN_TIME BIGINT(13) NOT NULL,
CHECKIN_INTERVAL BIGINT(13) NOT NULL,
PRIMARY KEY (INSTANCE_NAME))
TYPE=InnoDB;

CREATE TABLE QRTZ_LOCKS (
LOCK_NAME VARCHAR(40) NOT NULL,
PRIMARY KEY (LOCK_NAME))
TYPE=InnoDB;

INSERT INTO QRTZ_LOCKS values('TRIGGER_ACCESS');
INSERT INTO QRTZ_LOCKS values('JOB_ACCESS');
INSERT INTO QRTZ_LOCKS values('CALENDAR_ACCESS');
INSERT INTO QRTZ_LOCKS values('STATE_ACCESS');
INSERT INTO QRTZ_LOCKS values('MISFIRE_ACCESS');
commit;


Once this is done, you'll need to integrate Quartz with Spring. If you're using Maven 2, getting Quartz into your project is as simple as adding the following snippet to the <dependencies> section of your pom.xml configuration file.


<dependency>
<groupId>opensymphony</groupId>
<artifactId>quartz</artifactId>
<version>1.6.0</version>
<scope>provided</scope>
</dependency>


Note that you're going to need Quartz version 1.6.0 to work with Spring 2.5.3 or greater, otherwise you can use Quartz 1.5.x. After you've got Quartz into your project, you'll need to define a Scheduler that accesses your database to schedule your jobs. Fortunately, Spring happens to come with a handy FactoryBean for defining Quartz schedulers. I've used the following :


<bean class="org.springframework.scheduling.quartz.SchedulerFactoryBean">
<property name="jobFactory">
<bean class="org.springframework.scheduling.quartz.SpringBeanJobFactory"/>
</property>
<property name="dataSource" ref="mainDataSource" />
<property name="transactionManager" ref="mainDataSourceTransactionManager" />
<property name="quartzProperties">
<util:properties location="/WEB-INF/config/quartz.properties"/>
</property>
<property name="applicationContextSchedulerContextKey" value="applicationContext"/>
<property name="waitForJobsToCompleteOnShutdown" value="true" />
</bean>


The above Spring beans configuration snippet requires some explanation, so let's go through it.

  • The property 'jobFactory' is a Spring implementation of the Quartz JobFactory interface. When the scheduler encounters a trigger in the database that's to be fired, it loads the corresponding JobDetails from the database, loads it into a JobDetail object, places that JobDetail object into a TriggerFiredBundle, and passes the TriggerFiredBundle to the JobFactory interface to obtain a Job that's to be run. Now, you might think that because of the name of Spring's JobFactory implementation, it's going to do something with a bean defined in the Spring ApplicationContext, right ? Wrong. What this implementation does is get the Job class provided by JobDetail.getClass(), instantiate a new instance of it with a default no-arg constructor, possibly populate it with properties, and then run the Job. Which sucks, and is kind of useless, because no Jobs I need can do so without getting something from Spring's ApplicationContext. More on this later.

  • The 'dataSource' property should be the javax.sql.DataSource used by your application to connect to whatever database you're using that stores the persistent Jobs in the tables used by Quartz.

  • The 'transactionManager' property should be set to a org.springframework.transaction.PlatformTransactionManager implementation that's used to demarcate transactions in the database. If you don't have one for your dataSource already defined, then it's fortunate that Spring comes with one that you can define and use, like so :

    <bean id="mainDataSourceTransactionManager" class="org.springframework.jdbc.datasource.DataSourceTransactionManager" p:dataSource-ref="mainDataSource" />


  • The 'quartzProperties' property should be configured with a java.util.Properties instance containing configuration values for Quartz. A sample is posted here for you :

    org.quartz.threadPool.class=org.quartz.simpl.SimpleThreadPool
    org.quartz.threadPool.threadCount=5
    org.quartz.threadPool.threadPriority=4

    org.quartz.jobStore.tablePrefix=qrtz_
    org.quartz.jobStore.isClustered=false
    org.quartz.jobStore.driverDelegateClass=org.quartz.impl.jdbcjobstore.StdJDBCDelegate

    This sample contains a few simple properties that should be enough to get you started. There are numerous others that you should look into in the Quartz documentation. The first three properties are for configuring Quartz' thread-pooling capabilities. The latter three are for configuring the database (and access thereto-) that Quartz uses for storing persistent jobs. The table prefix is used to prefix Quartz' tables so that they don't conflict with any pre-existing tables in your database. The 'isClustered' property is used to determine whether Quartz is acting in a cluster. Clustered Quartz configurations are beyond the scope of this article. The 'driverDelegateClass' property is used to determine the class Quartz will use for dealing with your specific dialect of SQL (ie MySQL, MS-SQL, PostgreSQL, etc).

  • The 'applicationContextSchedulerContextKey' property sets a key that's used to access the Spring ApplicationContext in the JobExecutionContext given to a Job implementation at run time after the SpringBeanJobFactory has populated it for you. This is important as this property does not have a default value and will not put the ApplicationContext into the JobExecutionContext for you unless you specify one.

  • The 'waitForJobsToCompleteOnShutdown' property specifies, well, I think you can figure that one out.



At this point in time, you've got the tables which Quartz requires for persistent jobs defined (and presumably accessible) in your database, you've got the Quartz libraries present in your classpath, and you've got Quartz configured within Spring so that Quartz will run and check the database for jobs to be run. However, we're still missing a few more important pieces of information.


  1. JobDetails stored in the database describing jobs to be run

  2. Triggers defined in the database for describing when JobDetails will be executed



For the rest of this article, lets assume that you've set your Quartz table prefix as 'qrtz_'. In your database, lets look at the definition of the 'qrtz_job_details' table. It includes columns for defining job_name, job_group, description, job_class_name, is_durable, is_volatile, is_stateful, requests_recovery, and job_data.

The 'job_name' field is, as you've almost certainly guessed, the name of the job that you want to define. The job must also have a 'job_group' specified because triggers can be used to signal the execution of entire groups of jobs at once, not just single jobs. The two of these fields together form a unique key for the table. If you really don't give a shit about grouping jobs, you can just use Quartz' default group name, which is 'DEFAULT'. You also need to set a 'job_class_name'. This value is a fully qualified Java class name that must have a default, no-arg constructor (ie it's a bean, according to the Java Beans specification). This class will get instantiated at run time by the SpringBeanJobFactory and run as a Quartz job. Note that this class, obviously, must implement the org.quartz.Job interface. A decription of the job can be put in the 'description' field if you want to have a log-friendly message available to you. The is_durable, is_volatile, is_stateful, and requests_recovery fields are all (essentially) boolean fields that Quartz defines as being single characters. These fields can have the values 'Y' or 'N'. See the Quartz API for org.quartz.JobDetail for further elaboration on the meaning of these fields. The 'job_data' field is a BLOB object that's used to serialize the 'jobDataMap' (java.util.Map) associated with the JobDetail. In order to populate this field, you'll obviously have to write some JDBC code.

The 'qrtz_job_details' table is, obviously, where you store the information for the org.quartz.Jobs you want to run. Anytime you need to define a new job, you'll need to insert a new row into this table, properly configured of course and paying particular attention to the 'job_class_name' field.

Ok, so assuming you've got a couple rows in this table (ie defined a couple of jobs), now you'll need to schedule them so that, at some point, they'll actually run. This is where triggers come in. Now, in Quartz, there are a few different methods of triggering off Jobs, by far the most common being org.quartz.SimpleTriggers (qrtz_simple_triggers table) and org.quartz.CronTriggers (qrtz_cron_triggers table). SimpleTriggers have their use, but our company uses some pretty complex scheduling at times, so I'm going to do an example of using the cron triggers.

The 'qrtz_cron_triggers' table is pretty simple, it only has four fields : 'trigger_name', 'trigger_group', 'cron_expression' and 'time_zone_id', all of which should be pretty indicative of their content. The 'time_zone_id' field should be a valid id for a java.util.TimeZone, ie 'America/Denver'. See the documentation for that class for more on valid IDs.

Once you've set up a trigger with a valid name, group (ie DEFAULT), cron expression and TimeZone ID, you're pretty much ready to go. When Quartz starts up with your application, it'll consult the 'qrtz_triggers' table and ensure that entries exist for all of your corresponding cron / simple / blob triggers. It'll then proceed to fire off triggers and the Scheduler will pass off jobs to the SpringBeanJobFactory for execution. Now, if you haven't figured it out already, if you've got a lot of jobs, so far from what this article has shown you, you'll have to create a Quartz Job implementation for each job you want to run off, and even then, it'll have to be pretty simple, since you'll have to be able to instantiate it with a no-arg constructor, and so far you've got no way of injecting it with anything from Spring, aside from simple properties that are defined by the 'schedulerContextAsMap' property on the Spring SchedulerFactoryBean. So, what I did was create a class that uses its JobDetail#name as a convention for getting a bean from the application context, assumes it's an org.quartz.Job implementation, and executes it. The code is attached :


public class SpringBeanDelegatingJob implements Job {

private static final Log LOGGER = LogFactory.getLog(SpringBeanDelegatingJob.class);

public static final String APPLICATION_CONTEXT_KEY = "applicationContext";

@SuppressWarnings("unchecked")
public void execute(JobExecutionContext arg0) throws JobExecutionException {

JobDetail jobDetail = arg0.getJobDetail();

String beanName = substringBefore(jobDetail.getName(), "Detail");

if (LOGGER.isInfoEnabled()) {
LOGGER.info ("Running SpringBeanDelegatingJob - Job Name ["+jobDetail.getName()+"], Group Name ["+jobDetail.getGroup()+"]");
LOGGER.info ("Delegating to bean ["+beanName+"]");
}

ApplicationContext applicationContext = null;

try {
applicationContext = (ApplicationContext) arg0.getScheduler().getContext().get(APPLICATION_CONTEXT_KEY);
} catch (SchedulerException e2) {
throw new JobExecutionException("Holy fuck, there was some kind of god-damned problem with the fucking Scheduler", e2);
}

Job bean = null;

try {
bean = (Job) applicationContext.getBean (beanName, Job.class);
} catch (BeansException e1) {
throw new JobExecutionException("Unable to retrieve target bean that is to be used as a job source", e1);
}

bean.execute (arg0);

return;
}

}


Now, this makes the persisted jobs a lot more capable : we can now run org.quartz.Job beans that are declared in our Spring ApplicationContext. What if we want to be able to run arbitrary methods on arbitrary beans as jobs ? Well, we can write an adapter class for that too, quite similar (though not as functional as) Spring's MethodInvokingJobDetailFactoryBean :


public class SpringBeanMethodInvokingJob implements InitializingBean, Job {

private Object targetBean;
private String targetMethod;

//Constructors

public SpringBeanMethodInvokingJob() {
super();
}

//Behaviour Methods

public void execute(JobExecutionContext arg0) throws JobExecutionException {

Method method = null;

try {
method = targetBean.getClass().getMethod(targetMethod);
} catch (Exception e) {
throw new JobExecutionException("Unable to get targetMethod ["+targetMethod+
"] on bean with class ["+targetBean.getClass().getName()+"]");
}

try {
method.invoke(targetBean);
} catch (Exception e) {
throw new JobExecutionException("Unable to invoke method ["+method.getName()+"] on bean ["+targetBean.toString()+"]");
}

return; //done
}

public void afterPropertiesSet() throws Exception {
Assert.notNull(targetBean, "'targetBean' cannot be null");
Assert.isTrue(isNotBlank(targetMethod), "'targetMethod' cannot be blank");
}

//Property Accessors

@Required
public final void setTargetBean(Object targetBean) {
this.targetBean = targetBean;
}

@Required
public final void setTargetMethod(String targetMethod) {
this.targetMethod = targetMethod;
}

}


Note that the class above is implements org.quartz.Job, not org.quartz.JobDetail as is the product of MethodInvokingJobDetailFactoryBean. I hope this article has been useful for anybody reading it, feel free to comment on it.

Friday, December 05, 2008

The greatest MySQL companion ever

I just recently found out about the 'show processlist' command in MySQL that lets you get a resultset of all the processes MySQL is currently using and what query they're running. Today I was working in top monitoring the performance of our servers as I restarted our production server. MySQL popped up briefly on the top list of running processes and it occurred to me, "Wouldn't it be great of there was something like this for MySQL?". So while I was waiting, I popped open google, and ran a query for a MySQL and top. To my surprise, up came mytop. It's literally top for MySQL and it's so ridiculously useful you wouldn't believe it. Even better, it's got a .deb made for it and it's in the Ubuntu repositories, so installing it is as simple as running :

apt-get install mytop


It's a good day today :)

Setting a user's password in MySQL

I've recently found the need to change a bunch of passwords in MySQL. The command to do it is as follows :

SET PASSWORD FOR 'myuser'@'%.wherever.com' = PASSWORD('newpass');


You can also read the documentation on the MySQL website.

Wednesday, December 03, 2008

Finding out what MySQL is doing

I was recently updating our production system when I noticed that our main MySQL database was going unusually hard. On a quad-core processor system, it was using up three processors simaltaneously. This prompted me to find out what MySQL is doing, and after being unable to read the logs, I did a Google search and ran across this useful little command :

show processlist


This runs a query (can be run from either the command line or the query browser) and shows you a summary of all the processes that MySQL is currently using.

Wednesday, November 26, 2008

Migrating from Spring Webflow 1 to Webflow 2

...was relatively painless. At least in the very small app that I'm currently working on as a helper application for dealing with one of our partners' systems. The flow definition migration assistant that comes with Webflow 2 is a huge help. There are, however, a few things to take note of when it comes to differences between Webflow 1 and Webflow 2. They are significantly different beasts to say the least :



  • My configuration went from this (in Webflow 1) :



    <flow:registry id="flowRegistry">
    <flow:location path="/WEB-INF/flows/**/*-flow.xml"/>
    </flow:registry>

    <flow:executor id="flowExecutor" registry-ref="flowRegistry">
    <!--flow:execution-listeners>
    <flow:listener ref="webflowDebugListener"/>
    </flow:execution-listeners-->
    </flow:executor>

    <!--bean id="webflowDebugListener" class="org.springframework.webflow.execution.DebuggingListener"/-->

    <bean name="flowController" class="org.springframework.webflow.executor.mvc.FlowController">
    <property name="flowExecutor" ref="flowExecutor" />
    <property name="argumentHandler">
    <bean class="org.springframework.webflow.executor.support.RequestParameterFlowExecutorArgumentHandler" />
    </property>
    </bean>


    To this (in Webflow 2) :



    <webflow:flow-registry id="flowRegistry" flow-builder-services="flowBuilderServices">
    <webflow:flow-location-pattern value="/WEB-INF/flows/**/*-flow.xml"/>
    </webflow:flow-registry>

    <webflow:flow-executor id="flowExecutor" flow-registry="flowRegistry">
    <webflow:flow-execution-listeners>
    <!-- webflow:listener ref="webflowDebugListener"/ -->
    <webflow:listener ref="securityFlowExecutionListener"/>
    </webflow:flow-execution-listeners>
    </webflow:flow-executor>

    <bean id="securityFlowExecutionListener" class="org.springframework.webflow.security.SecurityFlowExecutionListener" />

    <webflow:flow-builder-services id="flowBuilderServices" view-factory-creator="viewFactoryCreator" conversion-service="webflowConversionService"/>

    <bean id="webflowConversionService" class="com.mypackage.modules.springframework.webflow2.ConversionServiceFactoryBean">
    <property name="editorMappings">
    <map>
    <entry key="java.util.Calendar"><idref bean="sqlDateCalendarEditor"/></entry>
    </map>
    </property>
    </bean>

    <bean id="viewFactoryCreator" class="org.springframework.webflow.mvc.builder.MvcViewFactoryCreator">
    <property name="viewResolvers">
    <list>
    <ref local="xmlViewResolver"/>
    <ref local="decoratedJstlViewResolver"/>
    <ref local="urlBasedViewResolver"/>
    </list>
    </property>
    </bean>

    <bean id="webflowDebugListener" class="org.springframework.webflow.execution.DebuggingListener"/>

    <bean name="flowController" class="org.springframework.webflow.mvc.servlet.FlowController">
    <property name="flowExecutor" ref="flowExecutor" />
    <property name="flowUrlHandler">
    <bean class="org.springframework.webflow.context.servlet.DefaultFlowUrlHandler" />
    </property>
    </bean>


    Now, you may be asking yourself, "Why would there be more configuration in Spring Webflow 2 ? Doesn't Spring generally improve on things like configuration syntax between major versions ? The answer is, of course, yes. However, there are a number of new features that come with Webflow 2 that need to be configured, hence the extra beans for configuration. Note also, that the syntax has changed. I direct your attention to the added 'flow-' prefixes on element names of the previously existing Webflow elements.




  • Webflow 2 has much better, much closer integration with Spring Security, hence the need for SecurityFlowExecutionListener listed above. I haven't had a chance to play around with the new integration between Spring Security 2 and Spring Webflow 2, but I'm quickly getting there.


  • Thanks to the built in model binding and validation that comes with Spring Webflow 2, there's much less syntax for views that simply bind to a model object on transitions. Instead of having to add in FormActions and adding action elements to the view-state you want them applied to, you can now simply specify a model name for the 'model' attribute of the view state, and Webflow 2 will automatically bind the form object for you (which leads us into our next point). Of course, the Spring developers maintained their usual style of keeping things as configurable as possible, so you can not only choose not to bind the model object for particular state transitions, but you can disable validation as well, using the new 'bind' and 'validate' attributes of Webflow 2 'transition' elements.


  • Because Webflow 2 can now do binding and validation for us right in the flow definition without having to define FormAction beans in our Spring ApplicationContext, Webflow 2 comes with its own updates to the spring-binding framework, hence the need for the 'webflowConversionService' bean in the configuration above. Now, you're probably saying to yourself right now, "Well what the fuck am I supposed to do with the custom PropertyEditors I wrote for my objects when dealing with Spring / Webflow 1 ?". Don't worry, all is not lost. There's a PropertyEditorConverter class that adapts PropertyEditor implementations to the new Webflow 2 Converter interface. You can use this to interface your editors with Webflow 2, and in fact that's what I did.


  • Webflow 1 left it up to the Spring framework to resolve and render views. Some people found this inconvenient, so Webflow 2 now allows you to have Webflow directly resolve and render views itself. However, since I'm already using the Spring framework and don't need Webflow's abstraction away from the underlaying framework, I chose to keep the Webflow 1 style of resolution and view rendering, hence the need for the 'viewFactoryCreator' bean above.



Once all the new configuration was done and out of the way, it was simply a matter of upgrading my existing flows to the new Webflow 2 syntax, which was almost entirely taken care of by the migrator that comes with Webflow 2. Previously, I used the 'var' element heavily to make use of beans in my Spring ApplicationContext, but the 'var' element has since had its usage completely reworked for Webflow 2, so I'm going to have to refactor a couple of my flows and change my style of design with Webflow 2.

One other feature that I'm learning about as I write this post is the Webflow 2 PersistenceContext. It's a solution for the use case where you want to be able to load objects from a database, and only allow a single user to be able to access them at once, ie you wouldn't want multiple people logging into a database and being able to access data on a particular user at the same time and potentially overwrite each others' changes. I'll post more about that later.

Friday, November 21, 2008

Migrating from Acegi Security to Spring Security 2

In an effort to keep our applications current, I've been looking at upgrading from Acegi Security to Spring Security 2 in one of our smaller applications as a test, to see how well it'd go over for our larger applications. So far, the tests are pretty positive. The main advantage to the migration that I can see is improved Web Service security (which I'll definitely be needing), as well as a considerably simplified configuration syntax. The following is a small migration guide :

0. If you haven't already, update your project to use Spring 2.5.4 or greater. This is necessary because of changes to Spring that Spring Security (as well as other Spring subprojects) requires. If you're using Maven 2, this is dead easy, you need only update the <version> elements of the appropriate dependencies.

1. Change all package references starting with 'org.acegisecurity' to 'org.springframework.security' in your code. If you've architected your system right, this should mean very few changes.

2. In your POM, remove all mention of Acegi security and replace it with the following :

<dependency>
<groupId>org.springframework.security</groupId>
<artifactId>spring-security-core-tiger</artifactId>
<version>${spring.security.version}</version>

<exclusions>
<exclusion>
<groupId>org.springframework</groupId>
<artifactId>spring-core</artifactId>
</exclusion>

<exclusion>
<groupId>org.springframework</groupId>
<artifactId>spring-support</artifactId>
</exclusion>
</exclusions>

</dependency>
...
<dependency>
<groupId>org.springframework.security</groupId>
<artifactId>spring-security-taglibs</artifactId>
<version>${spring.security.version}</version>

<exclusions>
<exclusion>
<groupId>org.springframework</groupId>
<artifactId>spring-web</artifactId>
</exclusion>

</exclusions>
</dependency>


The exclusions are necessary to prevent Spring 2.0.x dependencies from being unnecessarily pulled in.

3. Go through your JSPs and remove all xmlns:authz="..." declarations and replace them with :


xmlns:security="http://www.springframework.org/security/tags"


4. Go through your applicationContext*.xml files and replace any constants you may have referring to Acegi security with their proper Spring Security 2 counterparts. This means replacing the package prefixes 'org.acegisecurity' with 'org.springframework.security' and in some cases replacing ACEGI with SPRING_SECURITY in some static constant names.

This migration guide was based on (and expanded from) the one provided by Matt Raible. If you get the time, I recommend you check out his site, he has a lot of good wisdom and examples to share.

On Hibernate UserTypes

Hibernate UserTypes are a great way for persisting complex classes which may require more than one column in a table in order to be properly represented in a database. Many people have used them successfully in order to be able to simplify storage of complex objects and thus simplify their applications at the same time. One simpler use case of them was to create Enum types before support for Java 5+ enums came along.
Now, you'd think that once you've got Java 5 support with Hibernate, you'd never have to use such a simple use case again because you've got the Enums themselves, along with the @Enumerated annotation you can place on fields and properties, right ? Wrong. I've recently started migrating my projects to Spring Security from Acegi Security, and I've found that in the process, they've made the GrantedAuthority interface extend Comparable. This conflicts with the fact that Java 5+ Enums already implemented the Comparable interface with a generic parameter, and as such your code won't compile if you have an Enum that also implements GrantedAuthority, such as the following :


public enum Role implements GrantedAuthority, ConfigAttribute
{
ROLE_ADMINISTRATOR;

public String getAuthority() {
return name();
}

public String getAttribute() {
return name();
}

public String getMessageKey() {
return "enum.Role.".concat(name());
}
}


In order to remedy the conflict, I've had to convert my nice, pretty, simple Enum into a class, and simulate Java 5+'s enum behaviour, like so :


public final class Role implements GrantedAuthority, ConfigAttribute, Serializable, Cloneable {

private static final long serialVersionUID = 1L;

public static final Role ROLE_ADMINISTRATOR = new Role(0, "ROLE_ADMINISTRATOR");

private static final Role[] VALUES = new Role[] {
ROLE_ADMINISTRATOR
};

private static final Map NAME_MAPPINGS = new HashMap();

static {
Arrays.sort(VALUES, new Comparator() {
public int compare(Role o1, Role o2) {
return o1.ordinal - o2.ordinal;
}
});

for (Role r : VALUES) {
NAME_MAPPINGS.put (r.getName(), r);
}
}

private int ordinal;
private String name;

//Constructors

/*
* DO NOT EVER USE THIS! It exists only for serialization purposes.
*/
public Role() {
super();
}

private Role(Role r) {
this(r.ordinal, r.name);
}

private Role(int ordinal, String name) {
super();
this.ordinal = ordinal;
this.name = name;
}

//Behaviour Methods

public int compareTo(Object o) {

if (o == null || o.getClass() != Role.class) {
throw new IllegalArgumentException(
"Comparison object may not be null, and must be a Role");
}

return this.ordinal - ((Role) o).ordinal;
}

public String getAuthority() {
return getName();
}

public String getAttribute() {
return getName();
}

//Pseudo-properties

public String getMessageKey() {
return "enum.Role.".concat(getName());
}

//Property Accessors

public final int getOrdinal() {
return this.ordinal;
}

public final String getName() {
return this.name;
}

//Helper Methods

public static final int hashCode(Role r) {
return r == null ? 0 : r.hashCode();
}

public static final boolean equals(Role x, Role y) {
return x == null ? (y == null) : x.equals(y);
}

public static final Role clone(Role r) {
return r == null ? null : r.clone();
}

public static final Role[] values() {
return VALUES;
}

public static final Role valueOf(String s) throws IllegalArgumentException {

String key = defaultString(s).toUpperCase();

if (NAME_MAPPINGS.containsKey(key)) {
return NAME_MAPPINGS.get(key);
} else {
throw new IllegalArgumentException("No role by the name ["+s+"] exists");
}
}

//Object Overrides

@Override
public String toString() {
return new StringBuffer().append(this.name)
.append("(").append(this.ordinal).append(")")
.toString();
}

@Override
public Role clone() {
return new Role(this);
}

@Override
public int hashCode() {
final int prime = 31;
int result = 1;
result = prime * result + ((this.name == null) ? 0 : this.name.hashCode());
result = prime * result + this.ordinal;
return result;
}

@Override
public boolean equals(Object obj) {
if (this == obj)
return true;
if (obj == null)
return false;
if (getClass() != obj.getClass())
return false;
final Role other = (Role) obj;
if (this.name == null) {
if (other.name != null)
return false;
} else if (!this.name.equals(other.name))
return false;
if (this.ordinal != other.ordinal)
return false;
return true;
}

}


Once this was done, I created a Hibernate UserType implementation for Role, so that Hibernate could persist Roles as Integers, just as was already being done for the Enum version of Role:


public class RoleUserType implements UserType {

private static final int[] SQL_TYPES = new int[] { Types.INTEGER };

public static final String HIBERNATE_TYPE_NAME = "RoleUserType";

public Object deepCopy(Object value) throws HibernateException {
return value;
}

public Object assemble(Serializable cached, Object owner) throws HibernateException {
return (Role)cached;
}

public Serializable disassemble(Object value) throws HibernateException {
return (Role)value;
}

public boolean equals(Object x, Object y) throws HibernateException {
return Role.equals((Role)x, (Role)y);
}

public int hashCode(Object x) throws HibernateException {
return Role.hashCode((Role)x);
}

public boolean isMutable() {
return false;
}

public Object nullSafeGet(ResultSet resultSet, String[] names, Object owner) throws HibernateException, SQLException {
int roleOrdinal = resultSet.getInt(names[0]);

return resultSet.wasNull() ? null : Role.values()[roleOrdinal];
}

public void nullSafeSet(PreparedStatement statement, Object value, int index)
throws HibernateException, SQLException {
if (value == null) {
statement.setNull(index, Types.INTEGER);
} else {
statement.setInt(index, ((Role)value).getOrdinal());
}
}

public Object replace(Object original, Object target, Object owner) throws HibernateException {
return original;
}

@SuppressWarnings("unchecked")
public Class returnedClass() {
return Role.class;
}

public int[] sqlTypes() {
return SQL_TYPES;
}

}


Once the Hibernate UserType implementation was written, it was just a matter of adding my model package to Hibernate's list of annotated packages (using Java 5 after all) :


@TypeDef(name = RoleUserType.HIBERNATE_TYPE_NAME, typeClass = RoleUserType.class)
package com.mypackage.model;

import org.hibernate.annotations.TypeDef;
import eu.alenislimited.acshelper.support.hibernate.RoleUserType;


After defining the Hibernate UserType type, it was then just a matter of going around to all my fields that used Role, and replacing ...


@Enumerated(EnumType.ORDINAL)


... with ...


@Type(type = RoleUserType.HIBERNATE_TYPE_NAME)


Fortunately, doing the conversion was just extra work, and didn't require any special changes to any of my Spring configuration, or even my Hibernate configuration (beyond adding the @TypeDef to my model package and adding it to my Hibernate SessionFactory's list of annotatedPackages).

Tuesday, November 04, 2008

A first time gem creator's addendum

I recently started researching how to create Ruby Gems because I was working on on a Ruby application that is a reference application for accessing our production system at work, and I wanted to make the specific access code for our production system a Gem in Ruby so that I could just hand it off to future clients who want to integrate with Ruby. Further to that end, I read about the Newgem gem, and so I decided to use it, since it had recently hit 1.0.1. You can read the documentation there, so I won't repeat it here, but there's a couple of things you should do, prior to following their instructions.

  1. Set a 'HOME' environment variable if you're using Windows (as I am)

  2. gem install cucumber newgem

  3. rake config_hoe


The first step is to install newgem, but to also ensure that cucumber is installed as well because it's an unlisted dependency. The second step is to ensure that there's a basic .hoerc file created in your home directory that's ready to go whenever you want to run any tasks on your gem while testing / packaging it. I'm guessing it's automatically created in Linux, but I had to manually set the 'HOME' environment variable and run the configuration task myself in order to have the proper configuration file generated for me to run the tasks for creating and testing my gem.

Wednesday, October 29, 2008

A quick note on ActiveResource in Ruby on Rails

I've learned a bunch of new things about Ruby on Rails in the past few days, specifically when it comes to RESTful web services.


  • ActiveResource uses the built in Ruby XML::Mapping library for its OXM (Object to XML mapping) layer

  • Apparently, no Ruby library out there properly handles namespaces. Not a one : REXML, ROXML, XML::Mapping

  • ActiveResource can be highly customized to adjust to other RESTful web service schemes, just not when it comes to the generated XML.



Unfortunately this makes it very hard to integrate (in ruby) with the RESTful web service that I've written for our company's production web site. Ironically, I wanted to make the service very Ruby friendly. I really wish there was more in depth documentation out there for Ruby APIs. It would have made things so much easier when I was designing our API, which runs in Java, using JAXB.

Monday, October 13, 2008

A quick note on Maven plugins

I've recently had to go abroad to various other countries for work, and I've found that porting my projects around to various workspaces hasn't been as easy as it otherwise should have been, and here's why : I use Maven, especially the plugins. I've used others, and I've even written my own. I've also learned that one should specify versions of all plugins used, because the behaviour of a plugin may change between versions and if you're unaware of that and you start getting strange behaviour from your project build, this can lead to hours of wasted time trying to figure out what the hell is going on. I'm referring specifically to the maven-war-plugin for building web application WAR files. I had previously left the version unspecified, and when I ported my workspace to my laptop, Maven chose to use a different version of the plugin than that of my desktop, and as a result was including files I didn't want in my WAR file. This led to classpath errors, and me spending several hours trying to find out where the problem was. So in short, always specify versions of the plugins you use to ensure consistent behaviour in your build, wherever you may be working on your project.

Friday, August 29, 2008

Reflection in Ruby

I've recently gotten started going on a Ruby on Rails project for my company, that's meant to be a simple app that we'll throw up and let run for any prospective customers. But I ran into a problem with copying property values between objects, since I'm not as familiar with the language as I'd like to be. The Object type defines a method called 'send' which lets you invoke a method with given arguments. However, I wanted to be able to assign property values via this method, and just sending the name of the property as the name of the method to invoke wasn't working. (Works just fine if you want to get the property). As it turns out, the method for invoking the setter of a property is brain-dead simple : use the name of the method as you'd define it if you were overriding the setter for the property. For example, if you have a property called 'name', you'd define the setter for it as follows :

def name= (name)
@name = name
end

So if you wanted to set the value of this property reflectively, you'd do something like :

@person_instance.send "name=", "John Smith"

Saturday, August 16, 2008

A moment of developer clarity and zen

I had a moment today where I was just letting my mind wander. It was one of those moments where you have a brilliant idea that just seems so common sense that you can only ask yourself "Why the hell didn't I think of that before ?" This moment of clarity happened to be concerning my horribly slow laptop, with it's horribly old ATA 100, 5400 rpm hard drive. Then it occurred to me : just like with video encoding that I had setup months ago, I could setup a RAM disk to speed up Eclipse by storing my workspace on the RAM disk to speed up access to all the (ridiculous number of) temp files that Eclipse uses. On Ubuntu Linux, it turns out this was ridiculously easy : http://ubuntuforums.org/showthread.php?t=182764

The really amazing part was just how much this sped things up : it took my project build time from 6 mins, 30 seconds down to 35 seconds. And those are real numbers (plus or minus a couple seconds, due to slight variations in repeated builds.)

Monday, August 11, 2008

More JAXB quirks

Today I ran across yet more quirks of JAXB 2.0. I'm getting really tired of running across stupid errors that are difficult to debug because the programmers who wrote JAXB are lazy. Today, I was receiving a java.lang.InternalError when I tried to compile a schema from beans I'd recently refactored. The error I received was something along the lines of "could not escape schema namespace". As it turns out, it was caused by the lack of an @XmlType annotation on the enums I had added to one of my XML serializable beans. I hope this helps anybody who has the same problem.

Wednesday, July 30, 2008

A quick note about JAXB

JAXB (the Java API for XML Binding) is a great piece of technology (2.x, not 1.x). However, if you're starting an application and your JAXBContext is throwing an exception saying that it's unaware of a given class, there's a quick fix. At this point, I'm guessing you've configured your JAXB context to use a package, and the class that the JAXBContext is unaware of is in the given package, and you're scratching your head as to why it can't seem to find a class that's in the proper package. Well, here's the most probable answer : if you're using package-configured JAXBContexts, you need to have factory methods for all top level elements, similar to the following :



/**
* Create an instance of {@link PurchaseOrder }
*
*/
public PurchaseOrder createPurchaseOrder() {
return new PurchaseOrder();
}



... assuming that mypackage.PurchaseOrder is the class the JAXBContext is complaining that it's unaware of. This little quirk took me a couple hours to debug because I had just regenerated some web services code using Apache CXF 2.1.1 from an updated WSDL document for an updated Web Service that our company uses. Little did I know, that in comparing the two ObjectFactory files in Eclipse, I had missed copying over certain important functions. Hopefully this helps you.

Friday, July 11, 2008

Pure FTP on Ubuntu


Pure FTP is a great FTP server and I love it because it's ridiculously fast, reliable and works well for our company. The only problem is that it's tricky to configure on Ubuntu because just like with numerous other programs, the people at Ubuntu, in their infinite wisdom, felt the need to fuck with the program's default way of doing things. Specifically, in Ubuntu, command line arguments for starting the FTP service are done through individual files for each command line option you want the service to be started with, with values for the options placed inside each of the files. This is a stupid way of doing things, but that's not the topic of this post.


The problem I've been having lately is that I recently deployed new projects within our production network, and these new projects required access to the FTP server, and aren't on the same box as the server, as is the sole other project that has been using the FTP server. I'd been getting problems trying to connect to the server from any LAN box, but not any external boxes nor the machine itself (localhost). The error I got back was "421 Service not available". I googled around for hours and found nothing useful, until I started realizing that other people were getting 421 errors when their PureFTP instance was misconfigured, but with different messages, and then it got me thinking that maybe my instance was somehow misconfigured.


I re-read the documentation for PureFTP and after an hour or so, it hit me that the server does reverse lookups to resolve fully qualified names, and such resolution doesn't work properly on our network (for good reasons that I'm not going to go into). After disabling reverse DNS resolution with the -H startup option (`echo "yes" >> DontResolve` in the configuration directory in Ubuntu), the problem went away.


I hope this helps anybody else who runs into the same problem.

Tuesday, July 08, 2008

More Tomcat quirks

I recently ran across a problem with receiving a LinkageError in one of my web applications. The problem occurred when Acegi security tried to use libraries that were not yet loaded and tried to load them itself. Strangely, the error only occurred while using my RESTful API with a Spring Framework controller. If I logged in through my web interface which uses Acegi and Spring MVC, then the linkage error didn't occur.

After numerous hours of Googling around, I found a small company's JIRA issue tracker that reported the same bug, but also that it only occurred when using the security manager. After disabling the security manager on my own Tomcat instance, I found that the problem went away. I'd very much like to have a better resolution, but it's going to have to do for the time being.

Monday, July 07, 2008

Tomcat quirks

In recent weeks, we've had problems with our company's servers going down because of power problems at our colocation provider. As a result, the fact that Tomcat hadn't been properly configured to boot at startup had really burned us. Consequentially, I've been spending the past few days troubleshooting why the servers wouldn't startup, and ensuring that they do come up properly at boot time in future. The following are some of the things I've run across.



  • The JAVA_HOME and JRE_HOME variables must be set. If they're not, then Tomcat won't start, at least on Ubuntu Gutsy Gibbon Server. This is a problem I encountered with the default installation of JIRA on one of our production servers.


  • When using EhCache with Hibernate, the tmp directories don't get deleted, regardless of whether or not Tomcat is shutdown properly. This will block the container from starting up again, so these temp files must be deleted. I encountered this problem with my own applications.

Wednesday, July 02, 2008

Finally! The trick to proper Java Date and Calendar formatting

It's well documented in the Java API as well as numerous forums and blogs, that the Java API is not properly implemented, and in some respects flat out broken, hence why Java 7 is going to have a brand spanking new Date/Time API based on the Joda Time library hosted at sourceforge.net. In implementing Dates / TimeZones in Java, the developers of Java saw fit to separate time zones from date implementations because, really, a date is just a number of milliseconds from Jan 1, 1970 at 00:00:00.000 GMT in the morning. This is a noble goal which I whole heartedly agree with : dates should be represented separately from their timezones because the printed representation of a date will change depending on time zone, whereas no matter where you are in the world, the number of milliseconds from the Epoch has not changed. However, the Java developers implemented this concept poorly. They chose to attach TimeZones to Calendars and then not have them affect any of the time fields, which is fine. But the TimeZone attached to a calendar is not used when using a DateFormat directly. Here's the key : the DateFormat object uses its own internal TimeZone during formatting (which it takes from the currently running JVM) by default. In order to format using the TimeZone attached to a Calendar, you have to explicitly set the TimeZone of the DateFormat to that of the Calendar instance you want to format.

Friday, June 13, 2008

An interesting 'accesskey's quirk

Since I learned about accesskey support in HTML, I've been including them where appropriate in my web applications to speed up my access and usage of said applications. However, when trying to use the accesskey for a password field, P, I ran across an interesting quirk. The accesskey modifier is different for various browsers. In order to use access keys in IE, the modifier is Alt, for Firefox it's Alt+Shift, for Opera you press Shift+Esc, then the accesskey. I primarily use Firefox (go open source), so when I pressed Alt+Shift+P to access a password field, it opened Windows Media Player. As it turns out, this is the hotkey for accessing WMP from the toolbar (ie the miniplayer). To prevent this hotkey combination from opening WMP, you'll have to disable the toolbar by going to the taskbar, Right-Click -> Toolbars and uncheck Windows Media Player (I don't like the mini-player toolbar that much anyway).