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C2180-184 IBM WebSphere Message Broker V7.0 System Administration

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C2180-184 exam Dumps Source : IBM WebSphere Message Broker V7.0 System Administration

Test Code : C2180-184
Test designation : IBM WebSphere Message Broker V7.0 System Administration
Vendor designation : IBM
: 103 real Questions

Dumps of C2180-184 exam are available now.
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IBM IBM WebSphere Message Broker

Correlsense announces SharePath for IBM WebSphere Message broker, Improves carrier-degree administration, oversight Identification and Bottleneck Isolation | killexams.com real Questions and Pass4sure dumps

FRAMINGHAM, MA--(Marketwired - Jun 11, 2013) - Correlsense, a number one IT monitoring application company, today introduced SharePath for IBM® WebSphere Message broker (WMB). This latest enhancement to SharePath 3.0, the business's business-classification APM solution for managing advanced interconnected functions, is foremost for any organization counting on IBM middleware for its transactional spine.

As functions develop into increasingly linked, organizations are employing commercial enterprise provider Buses (ESBs) to wield the communications between disparate functions and services. the employ of an ESB, besides the fact that children, introduces modern management challenges. They are sometimes decoupled from the core software and execute commerce logic and code which adds complexity whereas expanding the time to detect and sequester performance issues. unlike other middleware management options that focal point on infrastructure monitoring, SharePath for IBM WebSphere Message broker offers extra granular visibility into the finished stream of individual message flows into, inside and out of the ESB. This provides indisputable proof about the area efficiency issues and mistakes occur, even if inside message broking service, in which node, or in the backend functions or applications.

SharePath follows each message tide through its nodes and external features, and logs bar no one this exact assistance in a scalable great records repository, together with parameters, values and exception mistakes of every execution. in addition to huge built-in logging, auditing, and monitoring of bar no one messages, SharePath offers trending and change evaluation to track efficiency over time.

SharePath for WebSphere Message broker gives middleware homeowners, IT operations and creation assist groups the skill to instantly be conscious dependencies and determine middleware bottlenecks. Most peculiarly, SharePath for IBM WebSphere Message broker:

  • allows for IT operations groups to effectively ascertain "lost messages" through any search criteria via an smooth full-textual content search.
  • offers the most rectify bottleneck detection on the market today by monitoring and logging every sole message stream across its execution, together with usage of exterior features and resources, and suggests whether bottlenecks are within WMB or outdoor of it.
  • automatically detects bar no one message flows and their exterior dependencies to give an always up to date dependency mapping. No manual configuration is required when message flows are updated or modern message flows are deployed.
  • "SharePath for IBM WebSphere Message broker empowers groups to profit manage over a distinguished commerce element," pointed out Nir Livni, VP of products. "companies the employ of SharePath now not requisite to build wide, costly and error-susceptible logging and monitoring mechanisms to be conscious what came about to a selected message and even if it succeeded or failed."

    SharePath for IBM WebSphere Message broker is obtainable automatically as a standalone offering or as fraction of an entire conclusion-to-end APM acknowledge in response to SharePath three.0. more information can be discovered at http://www.correlsense.com/options/business-need/sharepath-for-ibm-websphere-message-broking service/

    About Correlsense Correlsense develops utility efficiency management and IT monitoring application. it is the APM made from altenative for enterprise and IT operations managers that depend on complicated and distinguished commerce functions. Correlsense paints a complete and dynamic graphic of IT service tiers and performance for functions that span mobile, SaaS, cloud, information middle and legacy mainframes. Correlsense was based in 2005, is privately held and SharePath shoppers comprise one of the world's greatest economic, telecom and retail organizations. For greater information, visit www.correlsense.com.


    IBM App unite XML facts XML exterior Entity [CVE-2018-1801] | killexams.com real Questions and Pass4sure dumps

    A vulnerability was present in IBM App join, Integration Bus and WebSphere Message broker (utility Server utility) and categorized as crucial. This theme impacts a fraction of the component XML facts Handler. The manipulation with an unknown input results in a privilege escalation vulnerability (XXE). using CWE to declare the problem leads to CWE-611. Impacted is confidentiality, integrity, and availability.

    The weakness became launched 02/04/2019. it's workable to read the advisory at change.xforce.ibmcloud.com. The identification of this vulnerability is CVE-2018-1801 in view that 12/13/2017. The assault can be initiated remotely. The technical particulars are unknown and an get the most isn't publicly attainable. The pricing for an exploit might be around USD $25k-$100k in the weigh in time (estimation calculated on 02/05/2019).

    There isn't any counsel about viable countermeasures universal. It may well be cautioned to change the affected object with an altenative product.

    CPE CVSSv3 VulDB Meta ground ranking: 6.3VulDB Meta Temp ranking: 6.3

    VulDB ground rating: ≈6.3VulDB Temp rating: ≈6.3VulDB Vector: 🔒VulDB Reliability: 🔍

    CVSSv2 VulDB ground rating: 🔒VulDB Temp ranking: 🔒VulDB Reliability: 🔍Exploiting classification: Privilege escalation / XXE (CWE-611)local: NoRemote: sure

    Availability: 🔒

    fee Prediction: 🔍present cost Estimation: 🔒

    probability Intelligence risk: 🔍Adversaries: 🔍Geopolitics: 🔍economic climate: 🔍Predictions: 🔍actions: 🔍 Countermeasures advised: no mitigation known0-Day Time: 🔒 Timeline 12/13/2017 CVE assigned02/04/2019 Advisory disclosed02/05/2019 VulDB entry created02/05/2019 VulDB ultimate update assetsAdvisory: trade.xforce.ibmcloud.comConfirmation: 🔒

    CVE: CVE-2018-1801 (🔒)

    accessCreated: 02/05/2019Complete: 🔍

    Lien vers l'article source


    lightweight trying out of Heavyweight IBM Message broking service solutions | killexams.com real Questions and Pass4sure dumps

    this article indicates a hands-on manner of how one can test your IBM WebSphere Message broker solutions in a simple approach the employ of coincident Groovy and Java tools.

    The strategy taken could definitely be used with greater or much less any integration platform despite the fact some in reality attain Have constructed-in methods of doing it, fancy Apache Camel.

    Introduction

    testing disbursed commercial enterprise integration using in their case IBM WebSphere MQ and IBM WebSphere Message broker (IBM convoke it for their advanced ESB) isn't any so without problems carried out as it Have to be.

    The in-built aid for testing isn't helping us a lot (see verify customer in supplies).

    At my current project there is a wealth of different strategies: JMeter, SoapUI, RFHUtil, MbTest, JUnit, conclusion-to-conclusion consumer checking out, in-condominium developed checking out equipment.

    I requisite a far better approach that works well with their CI server and here is the delivery of that event. To exhibit i'll employ a vanilla IBM WebSphere Message broker with default configuration (see appendix for hyperlinks) and then some of the basic utility samples for coordinated request/reply.

    think about bar no one you had to write become… the place: testFileName | expectedFileName | requestQ | replyQ | ignoreNamedElementsNames 'request1.xml' | 'reply1.xml' | 'GET_REQREP_IN' | 'GET_REQREP_OUT' | [ 'CompletionTime', ‘e2’] 'request2.xml' | 'reply2.xml' | 'GET_REQREP_IN' | 'GET_REQREP_OUT' | [ 'CompletionTime' ]

    To “inject” the information into the gape at various that should be elope once per row above (omitting the details)

    given: "A XML payload to send" and: "An anticipated reply XML payload" and: "Ignoring variations for configured factor names" when: "The request is distributed" then: "A reply is got" and: "The reply payload consists of an identical XML"

    considering the fact that I are not capable of properly layout this article relating to photographs and many others., you'll ought to examine the all epic at my GitHub wiki instead.


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    IBM WebSphere Message Broker V7.0 System Administration

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    IBM: edifice Up | killexams.com real questions and Pass4sure dumps

    IBM has parlayed its middleware background into what customers recount as a broad set of service-oriented architecture (SOA) products and services.

    IBM's MQSeries middleware became an application integration linchpin for many enterprises during the 1990s. The vendor has since retooled its products for an SOA environment, adopting Web services standards, which software firms employ to increase interoperability between disparate systems. The company has besides added to its product line via acquisition: terminal year IBM purchased Webify, an Austin, Texas, company that makes software for edifice service-oriented architectures, for an undisclosed amount.

    WinterGreen Research, a Lexington, Mass.-based market research firm, cites IBM as the market leader in SOA infrastructure, with a 53% market share.

    A great portion of IBM's SOA offering resides under WebSphere, integration middleware that encompasses IBM's enterprise service bus and message broker products. WebSphere besides covers application server and service registry elements.

    Other product families besides play a part. Rational, for example, provides tools for creating services, while Tivoli offers software for managing SOA deployments.

    Vijay Sonty, chief information officer at Broward County (Fla.) Public Schools, calls IBM the "Rolls-Royce" of SOA—a best-in-class solution. He besides points to the breadth of IBM's offerings and the fact that the school system has been an IBM shop for years.

    Sonty says not every customer needs a Rolls-Royce solution, but notes that Broward County Public Schools required middleware capable of bringing together 300-plus applications and a "world-class portal" to provide an on-ramp for administrators, teachers and students. Sonty and his team are using IBM's WebSphere to provide a middleware layer that enables unified access to legacy applications.

    The school system is pursuing its SOA-driven integration project in phases. side one, completed terminal year, involved the creation of a portal for administrators and guidance counselors that brought together the district's student information system and data warehouse.

    Ameriprise Financial, meanwhile, brought in IBM to aid unify its account administration systems so customers could more readily budge funds from one account to another.

    Tracy LeGrand, chief architect and vice president of technology strategy and architecture at Ameriprise Financial, says one of the reasons the company went with IBM for SOA was the firm's software and service scope.

    As Ameriprise pursued the services approach, IBM provided its WebSphere MQ and WebSphere commerce Integration for standards-based integration. Ameriprise designed services with Rational software.

    According to LeGrand, IBM's current SOA product set contrasts with its previous lineup, which left gaps in places such as a service registry, which is used to keep track of the services available to internal developers. IBM terminal October announced an expansion of its service-oriented architecture offerings, which had focused on the integration and middleware aspects of the category. Additions to IBM's portfolio comprise commerce process management software and a registry.

    Still, IBM's extensive portfolio—the company lists 23 offerings on its SOA Web page—can prove difficult to navigate, according to Sonty, who would fancy IBM to communicate a big-picture message on how it intends to bring its products together.

    "They clearly requisite to attain a better job of packaging and explaining how five software divisions work together," he says. "The message is not there."

    Sandy Carter, vice president of SOA and WebSphere strategy, channels and marketing at IBM, says vast Blue aims to achieve customer groups who want different levels of product integration. Some customers, she says, hold a do-it-yourself approach, while others want IBM's SOA technology packaged together so it's easier to accumulate started.

    IBMNew Orchard RoadArmonk, NY 10504(914) 499-1900www.ibm.com

    TICKER: IBM (NYSE)

    EMPLOYEES: 356,000

    Sam Palmisano Chariman & CEO

    Steve Mills SVP & Group Executive, Software Group

    PRODUCTS: WebSphere features an application server, enterprise service bus, portal and messaging tools.

    CUSTOMERS: Boscov's, Cerner Corp., Fifth Third bank, HSBC, Pitney Bowes, VF Corp., Wachovia

    FINANCIALS

    2007FYTD* 2006FY 2005FY Revenue $22.03B $91.42B $91.13B Net Income $1.84B $9.49B $7.99B R&D Spending $1.51B $6.11B $5.84B

    *For first three months ended March 21, 2007. Fiscal year ends December 31.

    Source: Company Reports


    IBM Introduces System z Workload Acceleration Software | killexams.com real questions and Pass4sure dumps

    Nov 23, 2009

    IBM announced 10 modern software products to aid companies lower application management costs by optimizing the System z mainframe for more workloads, such as data analytics, collaborative application development, application maintenance and other key commerce processes.

    Given System z's competence to reduce costs through server consolidation, IBM and the industry Have extended the breadth of modern workloads for the mainframe via 3,800 z/OS-based and 3,000 Linux-based applications. The competence of the mainframe to host many application services on one system has helped System z achieve one of the industry's lowest application costs per user. Minimal application costs are distinguished for companies which trust on multiple applications to elope their business.

    The modern products span IBM's software portfolio to provide a purview of benefits for System z customers. The benefits comprise optimal application connectivity, productivity, security and data management.

    The modern offerings complement IBM's recent announcement of seven integrated hardware, software and services packages-IBM System z Solution Editions-to aid customers deploy modern enterprise workloads, such as data warehousing, electronic payments and disaster recovery.

    The modern products comprise IMS 11, which provides direct SQL access to IMS data from any distributed platform. This simplifies and speeds the process of connecting applications and data, while besides enabling easier data replication and change capture processes. Enhanced Java back expands the number of developers available to back IMS applications and commerce services.

    IBM besides announced modern products from WebSphere to enhance commerce process management, connectivity and integration including: WebSphere Process Server for z/OS V7, IBM WebSphere ILOG commerce Rule Management Systems, WebSphere MQ for z/OS V7.0.1, WebSphere Message Broker for z/OS V7.0, and IBM Problem Determination Tools V10. These products are designed to aid clients ascertain insights that enable innovation, maximize the value of commerce interactions, and optimize productivity and resources.

    IBM besides announced Rational Developer for System z version 7.6, which provides a modern GUI evolution environment, to increase developer productivity and lower the costs associated with maintaining and edifice multi-platform applications. The modern offering helps attract next-generation workers, consolidates multi-language evolution into a sole environment and dramatically reduces CPU usage of up to 50 percent, minimizing budget expenditures.

    IBM is besides shipping Rational Team Concert for System z version 2.0, which uses a modern common repository to aid teams to work together, partake assets, automate processes and deliver software faster. The software expedites response times and cuts costs by consolidating disparate evolution team infrastructures and automating software evolution across multiple platforms, which is distinguished for tiered applications.

    An enhanced set of IBM Rational Compilers for C/C++, COBOL and PL/I reduce application MIP requirements, while increasing developer productivity and reducing both capital expense and overall evolution costs.

    On the systems management side, IBM announced Tivoli Asset Discovery for z/OS removes unused and obsolete software and helps determine software usage to plot effectively for the future and to elope smarter systems. IBM Tivoli NetView for z/OS 5.4 is designed to better network and automation control for data centers and change management. It provides an understanding of how network availability and events repercussion the business, helping customers deliver smarter, more automated systems. IBM Tivoli zSecure provides a mainframe security solution for automated analysis and reporting of mainframe events and compliance dashboards that lower auditing costs helping companies elope a smarter more cost efficient system.

    For more information about System z software, visit here.


    Typical Usages of Appliances | killexams.com real questions and Pass4sure dumps

    This chapter is from the engage 

    While the appliances are quite multifarious and can thus be used to resolve many different types of problems (and implementers Have been quite creative in this regard), they find there are a few common employ cases that are typical. These generally focus around security, performance, cost savings, and integration. In the following sections, they discuss each of these in more detail.

    Solving Security Problems

    Let’s mediate about what it would hold to deploy a software-based proxy product in the DMZ. Each of the layers of the ‘typical server’ shown in figure 1-2 requires specialized skills to install and maintain. Particularly for DMZ deployments, the server hardware itself must be hardened. In highly secure environments, this can involve removing any components that might allow information to be taken from the server, such as USB ports and writeable CD/DVD drives. The operating system must besides be hardened, removing components such as telnet and sendmail.3 Often, this results in other layers of the software stack not installing or operating properly! If you are successful in installing the application software stack, it must be hardened as well. These are common requirements for tall security environments such as pecuniary companies, intelligence services, and military applications.

    Although software-based DMZ components can be hardened successfully, it is a lot of work. Compare this with the simplicity of installing a dedicated, highly secure hardware appliance, purpose built to attain a few things well with fairly simple administrative interfaces, as shown in figure 1-3.

    The appliances are hardened out of the box. For example:

  • They are designed with security in intellect from the ground up, before anything else.
  • They are shipped secure by default; virtually every feature is disabled, including the network adapters and administrative interfaces (except for the serial port used to attain initial bootstrap). If you want something, you must eddy it on!
  • They Have an encrypted file system.
  • They Have no Java, print services, or shareable file system.
  • They are tamper-proof—backing out the screws on the case disables the appliance.
  • They Have specialized secure handling of crypto keys and certificates.
  • They Have an embedded operating system, not supine to known exposures of common OSs.
  • They reject messages by default, unless specifically accepted by configured policies.
  • The age-old rule for the DMZ is to terminate client connections there and then proxy connections to the backend from the trusted DMZ servers. However, in the field they find even more stringent security policies that attain not warrant any traffic (even proxied through these secure intermediaries) to the backend until the client is authenticated and authorized. This is referred to as perimeter security and is an increasingly common requirement, driving sales of DMZ security products such as TAM. Later, they present how DataPower appliances can besides resolve this problem.

    Another requirement for DMZ components is to virtualize or veil the implementation details of backend servers and applications. Typical DMZ products interact only with the protocol layer of the network stack, so they can veil things fancy hostname/IP, ports, and URIs, whereas XML-centric application proxies such as DataPower appliances can virtualize on a much more brilliant basis and can analyze the entire message stream.

    A tenacious reason for using these types of appliances is the burgeoning risk of systems becoming compromised by XML-based threats. Just as once upon a time they felt HTTP to be innocuous, today they are susceptible to underestimating what can be done by virtue of XML. In Chapter 20 “XML Threats,” they present how entire infrastructures can be brought down using small, simple, well-formed XML files. Only hardware appliances Have the processing power to check for the many variations of XML threats.

    Another common security problem is a mismatch in the specification levels or credential formats of various technologies across great corporate IT infrastructures. For example, consider a marketing IT silo running on Microsoft®.NET using WS-Security 1.0 and SPNEGO credentials for identity and a manufacturing silo using IBM WebSphere Application Server (WAS), WS-Security 1.1, and LTPA credentials for identity. In today’s ESB-driven SOA architectures, a sole transaction may Have to pass through both environments, so this presents challenges. Because DataPower appliances incorporate a wide purview of the latest specification implementations and credential formats, they can be used to transform messages and credentials to happy the target each step of the way. Notice that this can be used to achieve cross-platform single-signon (SSO), although that besides depends on other factors such as having a common registry.

    To Lower Total Cost of Ownership (TCO)

    Refer back to the scenario in figure 1-2, where there are numerous skills required to install and maintain a typical server and software stack. Now mediate of this in terms of the staff required and cost to the organization. With self-contained appliances where the operating system and file system characteristics are immaterial from an administrative perspective, this becomes much less work. The duty of the appliances is dedicated and streamlined, hence the administrative tasks and interfaces mind to be as well. For example, in the scenario in figure 1-2, you Have to continually install fixes and updates at every layer of the stack. However, for appliances, you typically attain this by uploading a diminutive firmware update and rebooting, which takes only minutes. In the server scenario, you Have multiple different administrative consoles to manage the layers of the stack; with the appliances, you Have only one console.

    The TCO recur does not solely manifest itself in the setup and administration of the platform. consider the silo case in the prior section—where various areas of a corporate IT infrastructure are running Web services across different platforms, such as those from IBM, Microsoft, and BEA. If the corporation has one set of policies for security and SLM that requisite to be implemented across bar no one these platforms, then it must be done multiple times, by multiple people, with skills on each platform. Not only is the configuration redundant and therefore expensive, but this problem is repeated each time it needs to change, and there is always the risk that the policy will not be implemented exactly the selfsame on each platform, which can lead to security holes or application failures. This is depicted in figure 1-4.

    Figure 1-4

    Figure 1-4 Redundant administration versus simplified appliance model.

    A more concrete case can be implemented by creating a sole service that acts as a Web service proxy on the DataPower appliance, importing the WSDL files for the Web services providers on each of those backend platforms, and then applying the security and SLM policies on the proxy, thereby gaining policy definition and enforcement one time for bar no one platforms. bar no one this is based on standards that they discuss later, not only Web services itself, but besides the accompanying standards such as WS-Security for security, WS-Policy for policy definition, WS-Addressing for endpoint resolution, and WS-Management and WSDM4 for management.

    Enhancing Performance

    XML is the foundation on which many modern architectures are built—it has evolved into SOAP for Web services and is found across the breadth and depth of the SOA stack and related specifications. Over time, it has evolved from a simple markup language to something quite complicated and sophisticated. Of course, the problem as far as performance is concerned is that XML is fairly smooth for humans to read, but not for computers. It is a verbose representation of data and typically requires significant resources in terms of CPU power and recollection to process. This overhead is typically found in parsing the XML document into an in-memory representation and in validating the XML against its schema file.5

    Consider the repercussion of parsing and validating the storm of XML/SOAP documents that hit your systems during peak production levels. Now consider the overhead of security that may be embedded in those messages—validating client identities against LDAP servers, verifying digital signatures, and decrypting encrypted data. This requires a tremendous amount of processing power and time and robs precious cycles away from what your backend systems should really be doing—focusing on transactional commerce logic! besides consider the absolute squander of expending these cycles for messages that approach in badly formed, with schema violations or illegitimate security issues. The cycles expended on processing them and handling the errors are wasted. figure 1-5 shows a graph demonstrating the CPU overhead of various common tasks. (Notice the parsing flat is low here—the main hit when parsing is recollection utilization.) Notice the repercussion of security operations. This can be helped fairly with hardware-assisted acceleration, but the cost-benefit of hardware acceleration boards is often debated. besides note that abusing these security features to consume CPU resources is one course of mounting attacks.

    A stately solution for this, of course, is to employ appliances to attain bar no one that ponderous lifting at near wire speed. As you will note when they discuss the appliance characteristics, they are amazingly hasty and can wield these tasks at orders of magnitude faster than software-based solutions running on criterion servers. Now focus on another scenario—one where the appliance makes certain that only antiseptic traffic gets to the backend systems. Imagine the huge differential in available processing power on the backend if the validation and security tasks are done by the time the traffic gets there. The appliances can validate schemas, verify signatures, decrypt the data, and more. This can often result in huge performance returns, depending on considerations such as message sizes, cipher strengths, network latency, and so forth.

    Speaking of message sizes, this is often another major stumbling obstruct for Java-based software systems processing XML. In modern day real-world systems, they are now seeing huge SOAP messages on the order of hundreds of megabytes or even gigabytes in size. The conundrum is how to process these, given constraints on maximum JVM stack sizes in many platforms. Due to aggressive built-in streaming and compression, appliances can wield messages larger than their actual recollection space.

    On another message-related topic, consider applications that attain XML transformation between differing schemas; for example, an application that consumes XML purchase orders and must understand a variety of incoming purchase order formats from commerce partners, and then transforms each into the one “golden” purchase order schema that this company uses. These transformations can be quite expensive to process (see figure 1-5) and result in bloated application code. They bar no one know that line-for-line, application code is expensive in terms of programmer time, testing, and debugging. Now consider the sequel on the application if the transformations were moved out to the appliance on the frontend so that the backend application now gets only the one “golden” schema format. Yes, their application has gone on quite a diet, is less expensive to maintain, and is much faster. One field scenario consisted of a frontend cluster of Java EE applications to attain such transformations to keep the cluster of commerce logic applications behind it lightweight. However, since this was running on a platform that charged for CPU time, and given the overhead of XML transformations shown in figure 1-5, it was expensive. The solution was to budge the transformation layer out to DataPower appliances. The result was a huge cost savings and orders of magnitude faster processing.

    Integrating Platforms

    In the previous section, they discussed a scenario in which the appliance could be used to bridge differences in standards specifications (WS-Security v1.0 versus. v1.1) and identity credentials (SPNEGO versus LTPA) across systems. This is one noble case of easily integrating disparate platforms, particularly when the standards and specifications are in flux. It is difficult for software-based solutions running on criterion servers and products to keep up with this. On the appliance, you load a firmware update to accumulate the latest and greatest.

    However, there are other issues that arise when integrating different platforms. consider a scenario in which a medium-sized commerce XYZ Corp has its infrastructure running on legacy platforms and technologies, perhaps mainframe-based EDI. The commerce partners that they depend on Have long since moved their platforms to Web services and are telling destitute XYZ Corp that they can no longer afford to back XYZ’s legacy interface to that system, and they must provide a modern SOA or Web services interface or lose the business. This puts XYZ in a imperfect position; what will it cost to retrain its programmers, rewrite its COBOL applications, and revamp the backends to its Java EE platforms? Likely, it would be a staggering amount! A common solution to this problem is to area appliances at the front of the network as proxies, cook up a WSDL file to recount some Web services, initiate receiving the ASCII SOAP messages from the now-happy commerce partners, and transform them on-the-fly to EBCDIC EDI or COBOL Copybook messages and forward them over MQ or IMS Connect to the legacy backend. The backend does not Have to change, and no programs Have to be rewritten—a win-win!

    Due to the variety of protocols (HTTP(S), FTP, MQ, JMS/JFAP, IMS, NFS, TIBCO, MQ, ODBC, SNMP, and so on) supported by the DataPower appliances, there is a wealth of break for protocol bridging, content enrichment, and integration between platforms. Notice that the previous scenario involved message transformation. The XI50 DataPower appliance can wield either XML-to-XML or non-XML transformation scenarios, significance that messages can be transformed to the appropriate format for any intended backend.

    Another common and age-old scenario related to integrating platforms is dynamic routing. Because it is often a requirement to get dynamic routing decisions “on the edge of the network,” they Have DMZ Web servers, proxies, and load balancers wield this. The problem is that they can understand only the protocol and not the payload of the message. To accomplish the goal, applications area some value in the protocol header to facilitate the content-based routing. As an example, if they want any purchase orders over one million dollars to be routed to high-priority servers, the sending application would area a cookie or credit in an HTTP header or URL parameter. The Web server, proxy. or load balancer in the DMZ would be configured to check for this and then route the traffic accordingly. The problem with this scenario is that you Have to reclaim this hack in the applications and the HTTP payload, potentially disclose message data to attackers, and involve the sender/client. This solution doesn’t scale because if you continually attain this, the HTTP header and application code bloat.

    Because SOA appliances are XML-savvy and can employ technologies such as XPath, they can check inside the message payload to gape for the actual <po_value> ingredient rather than alter the application and HTTP header. If the message is encrypted, you don’t requisite to expose this by externalizing the data; you can just decrypt the message and check the value, and then route accordingly. The client in this case does not Have to be complicit—the routing is truly dynamic and transparent. The XML conscious Network layer is shown in figure 1-6.

    One terminal distinguished feature in esteem to the integration epic is the employ of appliances as ESBs. The appliances fulfill the model of an ESB by virtue of their tenacious routing, transformation, mediation, and protocol-switching capabilities. IBM has other ESB products capable of implementing the ESB pattern—WebSphere Message Broker (WMB) and WebSphere Enterprise Service Bus (WESB). Each of these Have unique capabilities that may suit them for particular usages. Although DataPower may be thought of as a highly secure and performant ESB, the others Have features that DataPower does not Have in the arenas of transactionality, persistent message handling, and the capability to work in other programming languages. They discuss ESBs in Chapter 5, “Common DataPower Deployment Patterns,” and Chapter 9, “Multi-Protocol Gateway.”



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