|Exam Name||:||IBM WebSphere Portal 8.0 Deployment and Administration Update|
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|Updated On||:||April 22, 2019|
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C2040-929 exam Dumps Source : IBM WebSphere Portal 8.0 Deployment and Administration Update
Test Code : C2040-929
Test Name : IBM WebSphere Portal 8.0 Deployment and Administration Update
Vendor Name : IBM
Q&A : 26 Real Questions
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As expected, IBM has eradicated Host writer with the latest liberate of the iSeries and multiplatform editions of WebSphere Host Integration solution. Host publisher become the abnormal tool out as IBM sought to simplify a difficult array of competing internet-enablement equipment. This paves the manner for Host entry Transformation features (HATS) to develop into the genuine Blue aficionado’s device of choice for reveal rejuvenation jobs, for legacy OS/four hundred and Unix applications.
WebSphere Host Integration answer is a group of application for accessing, integrating, and publishing utility screens for OS/four hundred, Unix, and mainframe applications. whereas Host Integration answer contained different net-enablement tools, Host writer became the suite’s heavy hitter when it came to getting ready green-reveal functions for the community world.
ultimate November, IBM introduced it could cease promoting Host writer version four.0 on February eleven, 2004. Technical guide for the product, which turned into delivered in September 2002, will stop on September 27, 2004. In December, IBM introduced that Host publisher edition four.1 (which shipped electronically December 19, 2003, and should develop into purchasable as shrink-wrapped products on January 31, 2004) will no longer include Host publisher.
IBM’s replacement for Host writer is HATS, a rules-based mostly monitor converter that IBM officers say is more productive and more straightforward to make use of than Host writer. HATS has shipped with Host Integration answer when you consider that the edition 3 liberate of the device, and IBM has been enhancing it ever given that. remaining June, IBM delivered a decrease-cost, iSeries-only version of Host Integration answer to motivate OS/four hundred shops to internet-allow their legacy functions (see “IBM Introduces iSeries-only edition of Host Integration Suite”).
Host Integration solution 4.1 comprises a brand new release of HATS, edition 5.0. Enhancements IBM has made to Host entry Transformation features with version 5.0 consist of the skill to combine displays from multiple host purposes into a single web interface (in the past the realm of Host publisher), greater integration and help for WebSphere Portal, greater access to host transactions through web features requisites, and new support for the customization of default rules.
corporations the usage of Host writer four.0 might be comfortable to hear IBM has not forgotten about them. IBM says HATS 5.0 allows for for an automated migration of Host publisher four.0 initiatives to HATS 5.0.
there's a powerful push for features with the 4.1 Host Integration answer liberate. depending on how huge your company is, and how much funds you spend with large Blue, you are entitled to two to five days of functions from IBM’s Host Integration features community to deploy your Host Integration answer utility. services have to be requested inside 90 days of purchase of Host Integration answer for iSeries and should be completed inside a hundred and fifty days of buy.
IBM has also changed the name of its HATS product in easy of this brave new services world. IBM’s literature for previous releases of the device discuss with “Host entry Transformation Server,” but the new literature calls the product Host entry Transformation services.
Host Integration answer four.1 additionally includes Personnel Communications for home windows edition 5.7 and WebSphere Host On-Demand version 8.0, which IBM first shipped with another assortment of application, Host entry client kit for iSeries four.0, in September 2003 (see “IBM Updates fat and skinny customer 5250 Emulation choices”).
other accessories that make up Host Integration answer 4.1 include IBM verbal exchange Server, WebSphere utility Server specific (become express) version 5.02, WebSphere Studio site Developer (WSSD), and WebSphere construction Studio customer for iSeries (WDSc). WSSD and WSDc are considered components of was specific.
IBM offers two tips on how to buy licenses for Host Integration solution. companies deploying the utility over a LAN inner the firewall are inspired to purchase registered copies of Host Integration answer, whereas those deploying it over the cyber web are better off buying concurrent user seats. Pricing for the registered person version is $218 per user. Pricing for the concurrent person version is $320 per person.
informationIBM Buffs office and WebSphere Portal IBM this week announced new and up to date products in its workplace household of collaboration items, including 19 role-based integrated functions for medium and small enterprise shoppers. The enterprise also mentioned it is going to give advert hoc internet conferencing as a service for clients beginning in December.
The options give customizable business functions for selected industries or categories of business tasks and operations – all developed the use of IBM place of work items and selected third-birthday celebration functions.
notwithstanding possibly a cliché with the aid of now, IBM officials additionally persisted to emphasize the alterations between a “network-delivered” collaboration environment and one based mostly basically on personal computer systems – in particular Microsoft’s view. “[With Workplace Solutions] you would not have to have Microsoft office,” says Larry Bowden, vice president, of IBM place of work utility options.
IBM designed the solutions via studying the job roles required for performing regular units of initiatives or operations inside a set of vertical markets. on the identical time, it regarded the way to put into effect horizontal company roles inside standard companies’ IT environments, including procurement, finance and administration, consumer service, and human elements. the brand new workplace solutions provide built-in utility units that meet at that nexus; for instance, systems to provide department banking or retail store management features.
“They’ve taken classes out of IBM’s features neighborhood and . . . they've designed these programs to make these americans with the important thing company roles more advantageous,” says Robert Mahowald, analysis supervisor at IDC. That may still, the reasoning goes, make these corporations that undertake these solutions greater successful.
because the solutions and IBM workplace products support trade necessities, including Java and XML, different items may also be integrated with other techniques as well. IBM workplace comprises Lotus office, WebSphere Portal, Lotus Notes and Domino, and WebSphere Everyplace, in accordance with the company’s net web site.
“Our center of attention is on organizational productiveness,” says Bowden, including, “Having a competitive facet isn't nearly as good as having a sustainable aggressive aspect.”
really, imposing whole built-in systems in keeping with the services that a business should function as neatly because the roles of the individuals who function the quintessential projects, and proposing that to consumers in an answer kit this is the subsequent smartest thing – or so IBM officers hope – to a turnkey solution, offers that sustainable edge, company executives put up.
The options don’t do everything. Implementation details stay but IBM’s intent is to take a part of the ache out of the system for small and medium-sized organizations that don’t have a division committed to featuring IT. “Why don’t we get you 70 % of the way?” asks Bowden rhetorically.
in one of IBM’s demonstration eventualities, a financial institution department teller receives a large determine and wishes to obtain the approval of a client carrier grownup, and additionally needs to clear the deposit for regulatory compliance and auditing. The branch banking answer provides job roles for three distinct worker task units to fulfill the mandatory company services. indeed, the new office solutions encompass greater than 30 job services or employee roles, enterprise spokespeople mentioned.
among the many areas where IBM is providing new office solutions are: retail, electronics, manufacturing, finance, telecommunications, government, life sciences, healthcare and car businesses. moreover, the business has updated its branch Banking solution as well as its company Controls and Reporting solution (now at version 2.5).
basically, youngsters, IBM is taking a a little bit distinct tack on coopetition. To agencies like Oracle, SAP and PeopleSoft, “They’re saying, ‘we’re going to deliver the plumbing for you,’” says IDC’s Mahowald, leaving a part of the pie for other players.
IBM will additionally start providing on demand internet conferencing subsequent month, officials stated. “when you have a browser and a telephone, that you can set up a web convention,” Bowden says. “as a substitute of buying the utility from us, which you could just buy the provider.” This comes as a direct try to take enterprise far from Microsoft’s live assembly, says Mahowald.
in addition, IBM also announced a new product in the place of work family. IBM workplace services express v2.0 is a brand new product designed for small and mid-sized groups and departments in colossal firms. It comprises team collaboration, document administration, net kinds, task lists, and portal functions as neatly person customization points. IBM workplace features express additionally integrates with the user's latest purposes and facts, in addition to e-mail, calendar and address publication, and provides a range of collaboration tools including integrated immediate messaging. it's going to ship in December, officials spoke of.
ultimately, IBM debuted the newest unlock of WebSphere Portal – edition 5.1 – which provides virtual portals, company manner workflow elements, and superior content management capabilities. version 5.1 might be purchasable by using the end of November.
The company will announce pricing for the entire products and features when the items are available, business officials stated.
Stuart J. Johnston has coated expertise, certainly Microsoft, given that February 1988 for InfoWorld, Computerworld, suggestions Week, and computer World, as well as for commercial enterprise Developer, XML & web services, and .net magazines.
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IBM iSeries users who are also part of the Lotus Notes/Domino installed base, particularly those where Domino applications are considered mission critical, are taking an infrastructure streamlining approach as they upgrade to newer versions of N/D and the System i. It’s not a universal occurrence, but could be considered a trend according to Jean Heidelberg, an IBM executive with knowledge of both the Lotus and the System i sides of the business.
“It aligns with doing Domino release upgrades,” Heidelberg says of the infrastructure streamlining. “People step back and say this would be a good time to simplify an infrastructure which has grown willy-nilly.” She says server consolidation is often part of this process as organizations upgrade servers and then upgrade the clients. “The upgrades are easier when there are fewer servers,” she notes.
When Heidelberg or others at IBM talk about server consolidation, the emphasis is on consolidating Microsoft Windows boxes on System i. There’s no statistical evidence to quantify this, however, only anecdotal observations. The same is true when talking about consolidating older iSeries boxes on newer System i iron, which perhaps is happening with greater regularity than Windows consolidation.
Regardless of the type of servers being consolidated, another important streamlining aspect for Domino users is that the software allows partitioning. With one copy of i5/OS and one copy of Domino, there can be multiple Domino servers. It doesn’t require carving the hardware and there is no relationship between the number of instances of Domino and the number of processors. It allows the Domino administrator to partition applications. For instance, a partition for the Domino mail server can be separate from a partition for application development without requiring additional servers for each application.
Partitioning comes into play with the new Lotus Quickr, which Heidelberg does not hesitate to mention. She is, after all, the senior offering manager for that product, after spending several years as the eServer business development manager for Lotus.
Quickr, which was announced at the Lotusphere conference in late January, is a content-sharing program that supports collaborative tools–such as wikis, team blogs, content libraries, and RSS feeds–and links them to desktop applications.
The purpose of embedding these communication services within collaborative applications is to allow users to spontaneously share ideas in ways that enhance the workflow and subsequently the employee and business performance.
“It is a way to easily share content with your team and collaborate,” Heidelberg says. “Under the covers there are two deployment options. One is Domino-based; the other is WebSphere Portal-based. The System i customers that are Domino customers tend to use the Domino-based version,” she says. “It is easiest to deploy for them.”
Lotus Quickr software, which becomes available in the second quarter of 2007 in its standard edition format, integrates with the 7.x versions of Lotus Notes as well as Notes 8.0, which is scheduled for a mid-year release. It also integrates with Microsoft Office 2000, XP, and 2003 and Microsoft Windows 2000, XP and 2003. The software will also support multiple repositories including Lotus Domino and IBM WebSphere Portal.
“Quickr, from a deployment perspective, should be well received by the System i users,” Heidelberg says, “because System i has advantages. Domino has partitions and it has good tools to keep the partitions separated. They are actual sub-systems when running on an iSeries and are easy to manage.”
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Some stars take a little longer to shine. If you would have come to the IBM conference in ICC in Berlin, which took place in October 2011 and you wanted to attend one of the two presentations titled “Lean WebSphere environment for development”, you most likely wouldn’t have been able to find a seat, and you would have witnessed cheers and extended applause. What happened? It was an audience that, aside from the undeniable strengths of the IBM WebSphere Application Server (WAS), had most likely got used to its somewhat poor attributes: complex configuration, high resource consumption and long start times for the server or application. In a worldwide premiere, Ian Robinson (WAS Chief Architect) and his colleague Tim deBoer presented an application server of a completely different kind: a start time of 2 s (seconds!) using an old-fashioned notebook and a 60 MB ZIP file for the installation of the entire application server – no more DVD stacks.IBM understands
An unequivocal and clear statement was met with even more enthusiasm: We are not unaware of what ails the developers, in particular. Yes, it has taken a while. As of today, however, everything is different. The presentation introduced the “Liberty Profile”, a completely new version of the IBM WebSphere Application Server.
And what’s up with that star, five years later? Back then it was a pre-release version of an application server. Today, IBM WebSphere Liberty – some may have to overcome their antipathy to the name and look at things in perspective – is a valuable server, certified for Java EE 7 Full Profile, that remains slim, fully suitable for production and supported by the manufacturer. As was the case before, the transition to the application server is very simple: after a download of only 50-100 MB, depending on the version, a simple unzip is all that’s needed and Liberty is installed. One more command and the server can be started.
The configuration is just as simple: if you like, a single XML file is all you need. Whoever uses Tomcat will be familiar with it. Anyone used to the IBM configuration has been unfamiliar with this kind of elegance and simplicity, until now.Even though Liberty is far less known than Tomcat or JBoss/WildFly, some myths die hard. We want to explicitly clear up a few of them.
Myth #1 about the configuration: “There’s no graphical configuration tool”. Yes, there is. If you want one, you can use the practical IBM WebSphere Liberty Server configuration tool , a browser-based administration and configuration tool. There is also the option to use the graphical editors from the Eclipse-based WebSphere Developer Tools (WDT) to edit the XML configuration files. WDT can be downloaded via the Eclipse marketplace, and thus Myth #2 is exposed: „You need expensive Rationals Tools to work with WebSphere“.
The configuration via XML file or UI serves another purpose, however, that you won’t know from other Java EE application servers, namely the definition of the features to be prepared by the application server. This partly explains the puzzle of how IBM has been so successful in making such a slim server. It is completely modular. The developer or administrator tailors their server precisely using the selection of modules in the configuration.Liberty consists of modules
IBM developed the Liberty Profile as a modular server with fine granularity from the bottom up. Standardized and proven OSGi technology is used for modularization, which is known to properly depict the ideas of versioning and dependencies between components.
A kernel of the server loads the specified Liberty modules at startup. It loads further modules automatically when they are needed. IBM started using internal modularization by way of OSGi in the classic WebSphere Application Server V6.1 back in 2006. In that case, however, you could ban the portlet container or JCA container that is not being used from the central memory. The granularity of the modularization of Liberty is much finer and, in our view, unique to Java EE servers. In order to clear up an obvious misunderstanding: Though OSGi is hidden from the normal Java EE user, you can also use it for the program code comprehensively in Liberty, of course – as is the case for many application servers. The list of features and their modules is too comprehensive for this article, so we’ve included a link . We think an example might be useful here:
Imagine the Java EE application you use requires JSF. The JSF feature is loaded in Liberty through the corresponding configuration. Liberty automatically obtains the servlet and JSP features and their modules, thanks to OSGi. If the application does not use any JSF or JSP-based UI, but rather just servlet calls, only the servlet feature loads. As a result, no CPU cycle or central memory is used for the JSP or JSF functionality.
SEE ALSO: IBM software engineers: “We needed to be more agile”Liberty is completely Java EE 7 certified
Myth #3 about specification: “Liberty only supports the limited JEE Web Profile.” From the developer’s perspective it is great that, for the above-named feature concept, Liberty has been a fully certified Java EE 7 application server since Version 220.127.116.11 .This makes it much more than the classic WAS as far as this current programming model is concerned. It also supports the use of Java SE 1.6, 7.0 and 8.0, and not only in the in-house implementation of IBM, but also Oracle, for example. IBM offers comprehensive, production-ready support for Liberty via the standard agreements. This depends on what edition of Liberty you have. The selection ranges from a simple version certified only for Java EE 7 Web Profile to a clusterable edition that offers much more than only Java EE 7.Zero migration with Liberty
The above-described modularity allows IBM to break new ground with Liberty in order to make using Java EE technology as efficient and agile as possible. A migration of the runtime environment to a higher version eliminates the significant efforts involved in testing and, if necessary, adapting the existing applications for the new version. Given the backward compatibility of many specifications, the extent of adjustment for a single application is generally minor. However, it can’t be avoided. In addition, there are often a hundred or more applications that can be affected particularly in larger environments. And the migration process is not complete until the final application has been adapted. The result: unpredictable project durations that can often go on for many months.
Thanks to its modular structure, Liberty offers a surprisingly elegant solution for this. The migration of Liberty means that an old existing feature would have to make way for a new version; the new version does not simply replace the old one. Instead, the new version is added, which means that both are available.
An example: Liberty currently has the features “servlet-3.0” and “servlet-3.1”. If applications only require “servlet-3.0”, the server can be configured so that only this feature is loaded. In this way, the servlet runtime environment doesn’t change (from the application perspective). If this applies to all features required by the application, the application migration is no longer required here.
In addition, the OSGi-based architecture ensures that incompatibilities between features or certain versions of features are reported at server startup and not only at the runtime. For example, the simultaneous use of “servlet-3.0” and “websocket-1.1” is blocked from the start.
SEE ALSO: IBM technology evangelist: Outsourcers are “like pizza boxes”Continuous delivery of new features
IBM is breaking the mold when it comes to the development of and support for Liberty. The traditional way of adding functions through new releases and refresh packs can slow progress in many projects. Too rarely are there updates.
Here, IBM has two approaches to the solution, marketed under the slogan “Continuous Delivery Model”. It is now common that new functionality is made available through the quarterly fix packs. Something that was only available in a restricted format, mainly in the form of additional properties for fine configuration of individual components of the application server. Now, entirely new features are rolled out as follows:ejb-3.2, batch-1.0, jacc-1.5 and countless others were introduced in fix pack 18.104.22.168, so that the Java EE 7 certification was possible at this level and above.The real innovation, however, is the Liberty Repository. Here, IBM is providing new functions for Liberty continuously, without fixed schedules and lengthy announcements. This could involve new APIs, features, or tools, as well as scripts or “snippets” for the configuration of the server. Anyone looking for open source components like Struts, RichFaces, Hibernate or others with Liberty will find everything they need there.
The Repository is accessed from the IBM Installation Manager, directly via the website , or from the developer tools available for Eclipse environments (these in turn must be installed via the Eclipse Marketplace). Search and filter functions help you find suitable downloads from the well over 150 entries that are already there. For existing Liberty installations, it is also possible to access the Repository via the command line. In this case, the dependencies of features are taken into account automatically.Sweet spots in modern architectures
Despite all the euphoria, you have to look at the reality of the data centers, of course, in order to find the best application scenarios for Liberty. Often, a Java EE Application Server already exists, with recorded and possibly automated procedures for server installations, deployment and testing of applications, etc. Adding a new product here would have to be carefully considered. Since there is no “wsadmin” scripting language from the traditional WebSphere Application Server (WAS) for Liberty, such processes cannot be transferred from a WAS to Liberty without some effort.
Myth #4 about the target group: “Liberty is intended only for developers”.
It must be mentioned that Liberty can be used in production environments without restriction. There are cluster mechanisms that enable reliability and load balancing. Larger environments can be administered centrally via an interface (keyword: “collectives”). The scaling potential here is even better than in a classic WAS.
Therefore, using Liberty is less about replacing an existing infrastructure in one fell swoop. Instead, it makes more sense to select the projects that best take advantage of Liberty’s strengths. These are, for example, dynamic and modern runtime architectures like Docker or Cloud. Here, IBM has already created the best prerequisites for Liberty with the platform as a service solution Bluemix. Liberty is likewise recommended for highly scalable server environments with potentially thousands of specialized servers, since the slim and module structure of Liberty works particularly well in that context. Software architectures based on microservices would be a perfect scenario for that.
Even if you don’t take existing Java EE landscapes into account, there are still plenty of arguments in favor of Liberty: a certified programming model with Java EE 7, production capability through scalability and reliability mechanisms and the reliable support from IBM.
And on top of that, the IBM contingents in companies finally have a really cool product to show off again.
Links & literature
 Liberty Repository: https://developer.ibm.com/wasdev/downloads/
A top-tier New England University has adopted a strategic multi-year infrastructure modernization project to replace out-of-date systems, and increase IT capabilities while maximizing the return on all IT investments. The project involves upgrading hardware, purchasing new software and training the development and operational groups. Central to the modernization strategy is the implementation of a Service Oriented Architecture (SOA).
SOA is an architectural approach to development that emphasizes an overall platform for the design of distributed applications rather than specific technologies. The mainstay of SOA is the definition and implementation of software services, regardless of location or ownership, that map directly to a system or business processes-services include interfaces and the policies that govern them at run-time. SOA benefits include loose coupling between interacting systems and platforms, a ubiquitous integration mechanism based on industry standards, support for on-demand creation of composite services and the ability to leverage existing assets while improving operational efficiency.
Figure 1 Service Oriented Architecture
The transition from traditional application development and deployment to a service-based approach is significant and cannot be put into practice overnight. Working with their partner, Collaborative Consulting, the University's IT department outlined a roadmap for incremental adoption of SOA. One advantage of the incremental approach is an immediate return on investment and the ability to select the ordering of conversions to best meet the short and long terms goals of the University. The remainder of this article describes a six-month project that launched the SOA adoption process by implementing a Resource Oriented Enterprise Service Bus (ESB) using 1060 Research's NetKernel.Problem Domain
Higher educational institutions are under constant pressure from students, staff and alumni to provide the type of on-line services they have grown accustomed to in their lives including real-time 24/7 access to information via intuitive interfaces and streamlined automated processes. At the same time there is increasing pressure from management, steering committees, and boards to control costs. Consequently, higher educational institutions IT departments such as the University's must be ingenious and pragmatic when investing in new capabilities.
The University IT department supports a wide variety of applications including Commercial off the Shelf (COTS) products such as PeopleSoft, mainframe legacy applications built on top of a Customer Information Control System (CICS) and modern J2EE web applications built using Oracle Application Server Portal. In addition, many of the applications interact with third party Application Service Providers (ASP) and provide historical information to a Data Warehouse (DW). All of these must be integrated and coordinated with the new SOA approach.
The University historically has integrated business systems using IBM MQ and FTP. This traditional approach resulted in a number of point-to-point (P2P) integrations. These P2P integrations are costly to maintain and have resulted in tight coupling between the consumer and provider. However, the existing environment was already using a light-weight message exchange state transfer (MEST) approach that is leveraged to allow for further innovation. An enterprise service bus (ESB)-a sub-type of a message bus architecture-provides for a more decoupled environment and, while it has a higher up-front cost of deployment, it was determined that the value of an ESB increases exponentially over time while the costs of extending the system remain linear and predictable 1.
The University's IT department has a small group of dedicated architects and software engineers, many of whom have developed expertise in the higher education domain through their tenure. Because the group is small, each member often takes on multiple roles including support and administration. Due to this, the IT department required a solution that would accomplish the following:
Service Oriented Architectures can be implemented using a number of different patterns and technologies. The conventional approach uses patterns outlined in the WS-* specifications and one can select from a broad spectrum of technology products ranging from open source solutions such as Apache ServiceMix to commercial suites such as Cape Clear and Sonic Software. Unfortunately, the WS-* specifications are in a constant state of flux and can overwhelm developers attempting to digest over 1300 pages of detail. For example, if adhering to the all specifications, it would take the following steps/tasks to implement a SOAP service:
The commercial ESB suites in the market were evaluated and since the IT group is relatively small, the decision was made to look for a solution that would result in a low-friction system that could foster the type of innovation a small group of IT resources could undertake and wouldn't force the group into a centralized service ownership model that relied on a single vendor. The University's domain is extremely fluid, with process changes, application changes and integration changes; therefore what was needed was an overall architecture and strategy that was a reflection of the true nature of the university.
Since message requests already were established as the central transfer mechanism across the university, a RESTful or Resource-Oriented approach was employed to implement an SOA. REST is based on a small set of widely-accepted standards, such as HTTP and XML and requires far fewer development steps, toolkits and execution engines. The three key benefits of a RESTful approach to SOA include a lower cost of entry, quicker time to market, and flexible architecture. A Resource-Oriented approach goes beyond a RESTful approach and provides a deeper more extensible and transport independent foundation. While REST design patterns advocate the use of HTTP a Resource-Oriented architecture supports services connected to HTTP as well as transports such as JMS or SMTP.
Although several ESB implementations such as Codehaus Mule support REST, only 1060 NetKernel is built upon a Resource-Oriented Computing Platform 2 (hence, “ROC”). The core of resource-oriented computing is the separation of logical requests for information (resources) from the physical mechanism (code) which delivers the requests. Services built using ROC have proven to be small, simple, flexible and require less code compared conventional approaches. This made it the ideal technology to build a technology platform.2. Technology Platform
NetKernel is resource-oriented middleware that provides core Enterprise Service Bus (ESB) capabilities, addressing, routing and data transformations and can act as a service registry orchestration engine. NetKernel is a rich offering and also provides advanced capabilities for XML transformations, cache management and multi-threaded processing along with multiple transport protocols, including HTTP and JMS and a SOAP engine enabling it to provision conventional web services. NetKernel is a solid foundation for heterogeneous enterprise integration.
Conceptually, NetKernel provides access to resources identified by a Universal Resource Identifier (URI) address. All URI addresses are managed within a logical address space. A REST-based micro-kernel handles all requests for resources, resolving the URI from the address space and returning a representation of that resource. Requests to the micro-kernel can also be made to create new resources or update or delete existing resources.
Physically, a NetKernel system is composed of modules which expose public service interfaces and resources via URI addresses. Similar to a Java EAR, a module contains source code and resource configurations. Modules may logically import another module's publicly exposed services and resources incorporating them into the address space. Since imports refer to a module's logical name and can specify a version number, multiple versions simultaneously can be run and updated in a live system. Service requests are injected into NetKernel by transports, which are event detectors residing at the edge of a system. Service consumers can send requests via any supported transport such as HTTP or JMS.
Figure 2 Technology Platform
HTTP is a stateless request-response application protocol. The request message structure is comprised of a command, headers, and a body. The response message is comprised of a status, header and a body. Clients and servers exchange these messages using Transmission Control Protocol (TCP) sockets. The client-server interactions can be secured at the transport layer using the Secure Sockets Layer (SSL) protocol while the message itself can be secured using encryption and a digital signature. Finally, a client can be authenticated using HTTP-Basic or HTTP-Digest authentication schemas 3.
The Java Message Service (JMS) API provides the platform for implementing asynchronous services. However, the API requires a provider, in this case IBM WebSphere MQ. IBM MQ is Message Oriented Middleware (MOM) and provides queue-based communication channels among applications. Channels are implemented using Point-to-Point or Hub & Spoke topology. In addition to transporting messages, MQ can also handle workflow, process automation, data transformation, monitoring and management.3. Resource-Oriented Services
A resource-oriented service provides transport-independent stateless access to a resource. A resource is an abstraction of information. For example, a student's registration is an abstraction which can have representational forms such as a web page, an XML document, or a PDF file. A service exposes each resource representation using a resource identifier or address. The resource identifier is actually a relative Universal Resource Indicator (URI). A URI is composed of two parts, the scheme (e.g. HTTP and FTP) and the address. The second part of the URI is relative. The address, /domain/account/45322, is relative until it is associated to a scheme such as http, http://domain/account45322.
Figure 3 Resource Oriented Service Conceptual Model
The service defines a set of actions, Create, Read, Update, and Delete, that can be invoked on a resource. In addition, certain actions may trigger rules or business logic. When a resource is requested, a physical immutable representation of that abstract resource is returned. Different types of representations can be returned based on business logic, such as the type of consumer. For instance, most back-end processes require an XML document while a front-end process may require a JSON object. The service also can receive a representation creating a new resource, or updating an existing resource. Finally, the service can receive a request to delete a resource.
Figure 4 Resource Oriented Service Interaction Model
A transport resides at the edge of a system and when it detects an event it issues a corresponding internal root request. For example, the HTTP transport listens for a consumer's request for a Uniform Resource Locator (URL), specifying an access method (e.g. GET, PUT, POST, & DELETE). The URL is transformed into an internal relative URI and the access method is translated into an action. In the case of a request over JMS, the URI and action are passed as message header parameters. In addition, if a resource representation should be returned, a return queue parameter is specified in the header.
In a RESTful system, access to resources is stateless which means each request must have a way to pass context as meta-information. In general, the transport defines a message structure comprising a header and a body. The header is used to pass the meta-information while the body is used to pass the resource representation. For instance, if a resource-oriented service is exposed over HTTP, authentication information can be passed in the header, and if the service is exposed over JMS that same information can be passed as an encrypted header parameter.
Resource-oriented services are built using Maven 4 and packaged as NetKernel Modules. Maven is a tool for building and managing software within the context of a “project.” Maven projects are defined by a Project Object Model (POM) XML. The POM defines the software's dependencies, build process and deployment structure (e.g. JAR, WAR, EAR). In addition, a Maven project can be used to generate a project web site and deploy software. In this case, Maven packages services within a NetKernel Module and publishes information about those services to a registry.
Figure 5 Resource Oriented Service Development4. Resource-Oriented Enterprise Service Bus (ESB)
A Resource-Oriented Enterprise Service Bus (ESB) was implemented using NetKernel. At the heart of NetKernel is a RESTful or resource-oriented microkernel responsible for resolving logical URI requests to physical code endpoints and scheduling the request on an available CPU core. While the mapping of logical address to physical code is defined in the application structure, the actual binding of logical address to physical code occurs only for the duration of a request and is then discarded.
Because each request to the micro-kernel is bound anew, system administrators are free to change the association between logical address and physical code while the system is running enabling capabilities such as real-time live code updates. Performance in practice is paradoxically not degraded by this indirection and binding but rather enhanced as the URI address acts as a key to NetKernel internal cache. If any resource is re-requested and dependencies have not changed then the cached representation is returned instead of being recomputed.
The use of a resource-oriented microkernel has several key benefits. First, service interaction is at a logical rather than physical level. This results in loosely coupled interactions, thereby decreasing the impact to the consumer and provider when changes are made to the physical implementations. Second, the results of requests are cached, thus decreasing the overall cost of service composition and orchestration. For instance, if a set of orchestrated services relies on a common service, the underlying physical code of that common service seldom will be executed. Finally, all internal requests to the microkernel are asynchronous, allowing processing to scale linearly as more CPUs are added to the host server.
The ESB is primarily responsible for service provisioning and security. Service provisioning involves exposing resource-oriented services to consumers over transports such as HTTP and JMS. The transports map the external URI and access method to an internal resource-oriented service and action. Regardless of the transport, the body of the request, such as an XML Document or JSON object, is passed as a parameter named ‘param.' Consequently, the resource-oriented services are decoupled from details of transport specific logic and in fact, additional protocols can be added at any time without impacting existing code.
Figure 6 Resource Oriented Service Provisioning
The resource-oriented services, in turn, delegate to a set of custom infrastructure services and core services provided by NetKernel. NetKernel provides an extensive set of core services. For instance, core services exist for XML and SOAP processing, CRON Job scheduling, and SMTP interactions. The core services dramatically reduce the amount of code that needs to be written to implement a resource-oriented service. Custom infrastructure services are used to expose capabilities which can be leveraged in the higher education domain.
Each request to the ESB is first authenticated, then authorized and (in some cases) audited. Transports authenticate an incoming request based on a user-name password combination and then delegate authorization and auditing to a security service. Authorization involves verifying that the identified consumer has the appropriate privilege. A privilege is comprised of a relative URI and an action. As an example, a consumer could be authorized to read but not to update or delete the resource student profile, identified by the relative URI /domain/student/identifier/profile. Unauthorized requests automatically are audited and there exists the option to audit based on the identified consumer or privilege. The account, privilege and audit information is stored in an embedded Hypersonic database.
Figure 7 Resource Oriented Service SecuritySummary
Other than a run-time service governance solution, such as Actional or ManagedMethods, middleware for implementing an ESB is essential to any successful SOA initiative. Without an ESB, an organization is simply increasing the number of costly point-to-point (P2P) interactions using web services. While there is wide disagreement as to the composition and purpose of an ESB, most can agree on a set of core capabilities including service addressing, message transformations and message routing. An ESB implemented using NetKernel middleware provides these capabilities and more advanced capabilities such as service registration and orchestration.
The NetKernel product allowed the University to implement a resource-oriented ESB. A resource-oriented ESB is essentially an open standards-based enterprise integration framework. This framework enables an enterprise to reduce or eliminate costly point-to-point interactions and decreases the time to market for introducing new capabilities. Furthermore, this framework has a lower initial cost of entry than a conventional enterprise integration framework based on the WS-* standards. Additionally, since NetKernel and ROC provide for integration on a per-service basis, the University can push the integration functionality to the edge of the network (as a URI), which translates into better service management and scalability. In short, this framework provides an organization unprecedented enterprise architectural agility.
In less than six months, a team of three software architects was able to implement a resource-oriented ESB and several initial resource-oriented services using NetKernel middleware. The successful implementation of the ESB launched the University's incremental adoption of SOA. A resource-oriented approach allowed the team to leveraged existing assets and technical skills. Going forward, the University's IT department now has the ability to meet the ever increasing consumer demand by taking advantage of reusable services and composite applications while reducing or eliminating the P2P integrations.About the author
Jeremy Deane is a Technical Architect at Collaborative Consulting. He has over 12 years of software engineering experience in leadership positions. His areas of expertise include Enterprise Architecture, Performance Engineering and Software Process Improvement. In addition, he has Masters in Information Systems from Drexel University and has recently published a white paper, Document Centric SOA.
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