Query regarding JMX - jmx

Need answers to below two questions:
Q1) Which JMX layer consists of resources
Options:
1.Agent
2.Instrumentation
3.Distributed Services
4.None
and
Q2) JMX does not contain
Options:
1.Instrumentation
2.Agent
3.management
4.Distributed Services.
Some document enlightening me on these very aspects of JMX will be helpful.

You can refer to : Understanding JMX
You will find out that :
the JMX layer dealing with resources is the Instrumentation
JMX do not include Management (but provides interfaces for clients to implement it)

The link mentioned in the answer has changed to - http://docs.oracle.com/cd/E13222_01/wls/docs100/jmxinst/understanding.html

Related

Spring Integration JMX support not work

As far as I know Spring Integration has out of the box JMX support. What documentation says is that I can obtain numerous statistics regarding channels, routers, etc.
I have the following configuration added to Spring context file:
<context:mbean-server />
<context:mbean-export/>
However, only one element has been auto detected for JMX exposure. It is a simple delayer.
I have multiple flows defined and no more elements are exposed through JMX.
I have no clue what is wrong.
Are there any other configuration changes I need to make?
Thank you for any help.
You need to use <int-jmx:mbean-export> instead.
Sorry for the short answer, but there is no more to say, if already have taken a look into Docs.
However here is a sample on the matter.
UPDATE
H-m. No, wrong sample. See Spring Integration tests.
UPDATE2
<context:mbean-export/> registers MBeans for those Spring Beans which are #ManagedResource. The <int-jmx:mbean-export> goes a bit further and wraps to MBeans almost all Spring Integration components: channels, MessageHandlers, MessageSources.
And yes, adds for them #ManagedMetrics.

Exposing wsdl through WSO2

How can I expose the wsdl through WSO2 governance registry. I have promoted the service lifecylce through to production and was hoping to get an URL some which I can share with the service consumers for discovering the service and the contract. Any pointers are appreciated.
Update: "URL some " is a typo.. apologies. In a nutshell I am unable to comprehend how to accomplish UDDI / WS-Discovery aspects with instructions in the document. I am simply looking to expose the wsdl through a url such as this "host:port/services/environment/myservice?wsdl" and would like to have the flexibility of managing service endpoints for each environment. I have a client which has to discover the wsdl's dynamically and i am figuring out ways to expose it to them. In the process, stumbled upon the wso2 product and trying to figure out.
You can use ws-discovery
another option is , you can use UDDI registry to find your services..

enable SNMP monitoring for Java app with existing MBeans

I'm looking for an example to expose the methods already exposed via MBean server with SNMP.
I read that since Java6 this is already supported in the JDK, but I also found snmp4j as a library. But I couldn't find any example that fits my scenario, or would be helpful.
I already have MBeans registered to the MBeanServer, and I'm looking for a way to enhance the classes I already have in order to make them suitable for SNMP. I can't use mibgen, as it would be the other way around.
Maybe someone can give me an example on what I need to do in order to be able to monitor my application via some SNMP manager.
An example MBean would be
public interface ExporterMXBean {
public static String BEANNAME = "exporter:type=Exporter,name=Exporter";
String getOutputDirectory();
void setOutputDirectory(String outputDirectory);
void startExport();
int getNumberOfThreadsWorking();
}
What would I need to add to the implementation of the interface, how would I register this to a MIB, and how would it be exposed/viewable to a Manager?
Thanks in advance.
I would recommend using SNMP4J-AgentJMX on top of SNMP4J-Agent and SNMP4J like the in the example of SNMP4J-AgentJMX called JvmManagementMibInst.java.
With this approach you do not modify your existing classes (MBeans). Instead your programm or generate a mapping which makes use of the above APIs.
A basic How-To on the necessary steps to create a SNMP agent based on some MBeans of a MBean server is described in the SNMP4J-AgentJMX HowTo

Way to manage resources like JMX does in Netty

Does Netty provide any mechanism to monitor resources like JMX does?
I did find an article on http://community.jboss.org/wiki/Netty4andJMXIntegration [Netty4 and JMX Integration] but it is only a proposal.
No there is no JMX support in netty yet.

What is JNDI? What is its basic use? When is it used?

What is JNDI?
What is its basic use?
When is it used?
What is JNDI ?
It stands for Java Naming and Directory Interface.
What is its basic use?
JNDI allows distributed applications to look up services in an abstract, resource-independent way.
When it is used?
The most common use case is to set up a database connection pool on a Java EE application server. Any application that's deployed on that server can gain access to the connections they need using the JNDI name java:comp/env/FooBarPool without having to know the details about the connection.
This has several advantages:
If you have a deployment sequence where apps move from devl->int->test->prod environments, you can use the same JNDI name in each environment and hide the actual database being used. Applications don't have to change as they migrate between environments.
You can minimize the number of folks who need to know the credentials for accessing a production database. Only the Java EE app server needs to know if you use JNDI.
What is JNDI ?
The Java Naming and Directory InterfaceTM (JNDI) is an application programming interface (API) that provides naming and directory functionality to applications written using the JavaTM programming language. It is defined to be independent of any specific directory service implementation. Thus a variety of directories(new, emerging, and already deployed) can be accessed in a common way.
What is its basic use?
Most of it is covered in the above answer but I would like to provide architecture here so that above will make more sense.
To use the JNDI, you must have the JNDI classes and one or more service providers. The Java 2 SDK, v1.3 includes three service providers for the following naming/directory services:
Lightweight Directory Access Protocol (LDAP)
Common Object Request Broker Architecture (CORBA) Common Object Services (COS) name service
Java Remote Method Invocation (RMI) Registry
So basically you create objects and register them on the directory services which you can later do lookup and execute operation on.
JNDI in layman's terms is basically an Interface for being able to get instances of internal/External resources such as
javax.sql.DataSource,
javax.jms.Connection-Factory,
javax.jms.QueueConnectionFactory,
javax.jms.TopicConnectionFactory,
javax.mail.Session, java.net.URL,
javax.resource.cci.ConnectionFactory,
or any other type defined by a JCA resource adapter.
It provides a syntax in being able to create access whether they are internal or external. i.e (comp/env in this instance means where component/environment, there are lots of other syntax):
jndiContext.lookup("java:comp/env/persistence/customerDB");
JNDI Overview
JNDI is an API specified in Java
technology that provides naming and
directory functionality to
applications written in the Java
programming language. It is designed
especially for the Java platform using
Java's object model. Using JNDI,
applications based on Java technology
can store and retrieve named Java
objects of any type. In addition, JNDI
provides methods for performing
standard directory operations, such as
associating attributes with objects
and searching for objects using their
attributes.
JNDI is also defined independent of
any specific naming or directory
service implementation. It enables
applications to access different,
possibly multiple, naming and
directory services using a common API.
Different naming and directory service
providers can be plugged in seamlessly
behind this common API. This enables
Java technology-based applications to
take advantage of information in a
variety of existing naming and
directory services, such as LDAP, NDS,
DNS, and NIS(YP), as well as enabling
the applications to coexist with
legacy software and systems.
Using JNDI as a tool, you can build
new powerful and portable applications
that not only take advantage of Java's
object model but are also
well-integrated with the environment
in which they are deployed.
Reference
What is JNDI ?
JNDI stands for Java Naming and Directory Interface. It comes standard with J2EE.
What is its basic use?
With this API, you can access many types of data, like objects, devices, files of naming and directory services, eg. it is used by EJB to find remote objects. JNDI is designed to provide a common interface to access existing services like DNS, NDS, LDAP, CORBA and RMI.
When it is used?
You can use the JNDI to perform naming operations, including read operations and operations for updating the namespace. The following operations are described here.
I will use one example to explain how JNDI can be used to configure database without any application developer knowing username and password of the database.
1) We have configured the data source in JBoss server's standalone-full.xml. Additionally, we can configure pool details also.
<datasource jta="false" jndi-name="java:/DEV.DS" pool-name="DEV" enabled="true" use-ccm="false">
<connection-url>jdbc:oracle:thin:#<IP>:1521:DEV</connection-url>
<driver-class>oracle.jdbc.OracleDriver</driver-class>
<driver>oracle</driver>
<security>
<user-name>usname</user-name>
<password>pass</password>
</security>
<security>
<security-domain>encryptedSecurityDomain</security-domain>
</security>
<validation>
<validate-on-match>false</validate-on-match>
<background-validation>false</background-validation>
<background-validation-millis>1</background-validation-millis>
</validation>
<statement>
<prepared-statement-cache-size>0</prepared-statement-cache-size>
<share-prepared-statements>false</share-prepared-statements>
<pool>
<min-pool-size>5</min-pool-size>
<max-pool-size>10</max-pool-size>
</pool>
</statement>
</datasource>
Now, this jndi-name and its associated datasource object will be available for our application.application.
2) We can retrieve this datasource object using JndiDataSourceLookup class.
Spring will instantiate the datasource bean, after we provide the jndi-name.
Now, we can change the pool size, user name or password as per our environment or requirement, but it will not impact the application.
Note : encryptedSecurityDomain, we need to configure it separately in JBoss server like
<security-domain name="encryptedSecurityDomain" cache-type="default">
<authentication>
<login-module code="org.picketbox.datasource.security.SecureIdentityLoginModule" flag="required">
<module-option name="username" value="<usernamefordb>"/>
<module-option name="password" value="894c8a6aegc8d028ce169c596d67afd0"/>
</login-module>
</authentication>
</security-domain>
This is one of the use cases. Hope it clarifies.
A naming service associates names with objects and finds objects based on their given names.(RMI registry is a good example of a naming service.) JNDI provides a common interface to many existing naming services, such as LDAP, DNS.
Without JNDI, the location or access information of remote resources would have to be hard-coded in applications or made available in a configuration. Maintaining this information is quite tedious and error prone.
The best explanation to me is given here
What is JNDI
It is an API to providing access to a directory service, that is, a service mapping name (strings) with objects, reference to remote objects or simple data. This is called
binding. The set of bindings is called the context. Applications use the JNDI interface to access resources.
To put it very simply, it is like a hashmap with a String key and Object values representing resources on the web.
What Issues Does JNDI Solve
Without JNDI, the location or access information of remote resources would have to be hard-coded in applications or made available in a configuration. Maintaining this information is quite tedious and error prone.
If a resources has been relocated on another server, with another IP address, for example, all applications using this resource would have to be updated with this new information. With JNDI, this is not necessary. Only the corresponding resource binding has to be updated. Applications can still access it with its name and the relocation is transparent.
I am just curious why the official docs are so ignored which elaborate the details meticulously already.
But if you'd like to understand the cases, please refer to duffymo's answer.
The Java Naming and Directory InterfaceTM (JNDI) is an application programming interface (API) that provides naming and directory functionality to applications written using the JavaTM programming language. It is defined to be independent of any specific directory service implementation. Thus a variety of directories--new, emerging, and already deployed--can be accessed in a common way.
And its architecture
And normally how you use it.
The Java Naming and Directory InterfaceTM (JNDI) is an application programming interface (API) that provides naming and directory functionality to applications written using the JavaTM programming language. It is defined to be independent of any specific directory service implementation. Thus a variety of directories--new, emerging, and already deployed--can be accessed in a common way.
While JNDI plays less of a role in lightweight, containerized Java applications such as Spring Boot, there are other uses. Three Java technologies that still use JNDI are JDBC, EJB, and JMS. All have a wide array of uses across Java enterprise applications.
For example, a separate DevOps team may manage environment variables such as username and password for a sensitive database connection in all environments. A JNDI resource can be created in the web application container, with JNDI used as a layer of consistent abstraction that works in all environments.
This setup allows developers to create and control a local definition for development purposes while connecting to sensitive resources in a production environment through the same JNDI name.
reference :
https://docs.oracle.com/javase/tutorial/jndi/overview/index.html

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