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How-To Tutorials

7019 Articles
article-image-add-tools-and-theming-tips-plone-3
Packt
16 Oct 2009
10 min read
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Add-on Tools and Theming Tips for Plone 3

Packt
16 Oct 2009
10 min read
(For more resources on Plone, see here.) Popular add-on Plone products One of the best things about open source development is the proliferation of products to solve common use cases. Plone themers are fortunate to have a solid set of tools available to them to solve these use cases. Enabling drop downs using webcouturier.dropdownmenu As most themers know, a lot of clients desire drop-down menus. In the past, this required coding HTML strings and the use of a product by Quintagroup named qPloneDropDownMenu. This product is still the recommended drop-down menu product for Plone 2.5x, but for 3.x, the real star is Denys Mishunov's product, webcouturier.dropdownmenu. The joy of this product is that you install it, and it works instantly. The product works by subclassing the globalsections viewlet via the following code, found in the browser/configure.zcml file of the webcouturier.dropdownmenu product: <!-- Override global sections viewlet --> <browser:viewlet name="plone.global_sections" manager="plone.app.layout.viewlets.interfaces.IPortalHeader" class=".dropdown.DropdownMenuViewlet" layer=".interfaces.IDropdownSpecific" permission="zope2.View" /> In the event that you've already customized your globalsections viewlet, you will have to subclass the DropdownMenuViewlet class in the webcouturier.dropdownmenu product. Unlike older drop-down menu products, webcouturier.dropdownmenu does not require any ongoing maintenance or manual adjustment of URLs. It is controlled by the navigation settings found in the Site Setup area, so you can control what types of items display in the navigation. The product also provides some basic CSS styling that can be easily adjusted in your own theme product, if desired. It can be downloaded here: http://plone.org/products/webcouturier-dropdownmenu/ Collage Another helpful Plone product is Malthe Borch's Collage. Collage allows you to create a grid containing rows and columns, and within those columns you can pull in the contents of other objects—a folder, a page, a collection, or even an image. Using this mechanism, you can create a complex page layout without knowing any programming. Until very recently, Collage did not have hooks that allowed it to be styled using CSS, and it did not respect different views. For example, if you created a special mysection_view.pt (same as a homepage_view), and you assigned that view to your page, Collage would default to the original document_view. This behavior has now been altered so that CSS hooks are available and different views are respected. This is a huge win for sites that are heavily styled and need to maintain consistency. It's suggested that when using Collage, you do not create your objects within the Collage itself; you should instead create the objects in your normal Plone content tree, and pull those items in as aliases. The reason for suggesting this is that it is not possible to access the contents of a Collage via the standard folder_contents view that is normally possible in a folder. Hence, if you need to move that content to another area of your site, you cannot. This also invites some jeopardy when migrating to a new version of Plone. It's worth mentioning that Collage will not become part of core Plone in the future, as the mechanism for organizing blocks of content on a page in the future will be accomplished via a new drag-and-drop mechanism. The lead programmer for Collage has stated, however, that there will be a migration path, but the reality of this is unknown. Finally, the usability of the Collage product is a bit clunky, but with some common sense, it's easy to use and can be a quite powerful layout tool for Plone 3. It can be downloaded here: http://plone.org/products/collage. Tableless styling using Plone Tableless A popular product for CSS purists is Simon Kaeser's plone.tableless. Plone's default main_template is created using tables, which many themers do not wish to use. To get a tableless version of Plone's main_template, simply install this product; make sure your site's portal_css is in debug mode, and test the following code: #portal-column-one {float:right;}#portal-column-two {float:left;} If you're able to switch the position of these two columns, the product works and you can style in full tableless mode. There are a few issues with Plone and tableless layouts that are unrelated to this product, but in general it works. As of this writing, the product was not tested against some of the newer browsers. It can be downloaded here: http://plone.org/products/plone-tableless/. CSSManager End users often want to have some control over basic modifications to their site—background color, link colors, and so on. The WebLion Group from Penn State University created CSSManager, a product that gives a simple, through the web interface to let users change the colors, borders, site logo, and other visual characteristics of their Plone site. Essentially, it uses the DTML variables defined in the base_properties.props file available within Plone. The product can be downloaded here: http://plone.org/products/cssmanager. To use it, install the product, go to your site's Site Setup area, and find the configlet for this tool, and try changing a few options. The CSSManager tool will supersede a theme product's base_properties if the CSSManager skin layer is above the theme product's skin layers in portal_skins/properties in the ZMI. If uninstalled, your settings can still be found in the custom folder for your Plone site via this URL: http://localhost:8080/mysite/portal_skins/custom/base_properties/manage_propertiesForm. So you can feel confident removing it if you no longer need it. Products.EasyAsPiIE Until IE7, there was no fully native support for PNG alpha channel transparency in Internet Explorer. However, since IE5.5, there has been some support in the form of a proprietary filter called AlphaImageLoader. Internet Explorer filters can be applied directly in your CSS (for both inline and background images), or by setting the same CSS property with JavaScript. Unfortunately, there's no CSS property called filter in the W3C CSS spec. It's a proprietary extension added by Microsoft that could potentially cause other browsers to reject your entire CSS rule. Also, AlphaImageLoader does not magically add full PNG transparency support so that a PNG in the page will just start working. Instead, when applied to an element in the page, it draws a new rendering surface in the same space that element occupies and loads a PNG into it. If that sounds weird, it is. However, by and large the result is that PNGs with an alpha channel can be accommodated. The WebLion Group's Products.EasyAsPiIE product uses this filter approach to handle transparent PNGs with IE6. All it does is enable JavaScript written by Angus Turnbull: http://www.twinhelix.com. You can download it from here: http://plone.org/products/productseasyaspiie/ and follow the installation instructions. Optionally, if you choose not to use this product, you can also just export to PNG8 format, instead of PNG24, to get around IE6 problems, and of course there are a lot of alternative solutions out there as well. You can read more about PNGs here: http://www.sitepoint.com/blogs/2007/09/18/png8-the-clear-winner/. Both Photoshop and Fireworks can export to PNG8, though other graphical programs may not. collective.skinny Another Plone product that has surfaced is Daniel Nouri's collective.skinny, which can be downloaded from http://plone.org/products/collectiveskinny/. This product is an example implementation of a separate, public-facing skin that abstracts away some of the complexity of the theming process. According to the product page, it's been described as being vastly easier than skinning Plone the conventional way, but it also has a few drawbacks. For example, you can't use it for community sites where people other than your site editors log in and modify content. It's also a little confusing from my perspective, but it's a product adventurous themers might pay attention to. It's probable that Deliverance and collective.xdv (the future of theming for Plone) will make this product obsolete, as Deliverance removes a lot of complexity and makes theming accessible to individuals who don't even know what Plone is. FS Dump For themers who started their skin creation through the web or who have content they wish to extract from the ZMI, FS Dump is an excellent tool. To use it, download the product from http://www.plone.org/products/fsdump and follow the installation instructions. This is a product that lives in the Products namespace, so it is not installed like egg-based products. Once installed, use the Add drop-down menu, found at http://www.mysite.com/manage_main, and create a Dumper instance in a folder (or product) that contains the TTW code to be dumped. This tool appears to work best when trying to dump items from the custom/ folder, though, hypothetically, it should work for any other folder in the ZMI. Next, supply an absolute path to a directory on the filesystem in which the dumper is to create the files, for example /opt. (Note that the user for whom Zope is running needs write access to this directory.) Click the Change and Dump button to do the dump to the indicated directory, and then copy the dumped files into your theme product's skins/ folder in the appropriate locations. qPloneSkinDump Another popular dumper product is known as Plone Skin Dump (qPloneSkinDump) by Quintagroup. Plone Skin Dump allows users to create a Plone product in the Products namespace by exporting the custom/ folder. It creates an old-school Plone theme product for you, but it does not provide the plonetheme-type of product. The product has not been tested against Plone 3, so it may not be the best option. Moreover, at the time this article was written, it was not possible to download the product from its SourceForge repository. In the event you wish to try this product, you can find it here: http://plone.org/products/plone-skin-dump. Again, it is in the Products namespace, so all you need to do is drop it in your buildout's products/ folder. You can then follow the directions posted on the product page. It's a bit more complicated than FS Dump, but obviously it does a bit more. Collection and static portlets While portlets are not add-on products, they are tools that can greatly enhance the impact of your site and worth mentioning. Default Plone provides collection and static portlets that can be added on any page by clicking on the Manage Portlets link on your site. These portlets provide great power and can be styled using CSS. A collection portlet, for example, can be set to display random contents fitting certain criteria—maybe a randomized spotlight content type tagged with a special keyword. This keeps the look and feel of a site fresh and gives some power to the end user. These portlets have the same structure as other portlets, so they will use any default styling that may be applied.
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article-image-adding-interactive-course-material-moodle-19-part-1
Packt
16 Oct 2009
2 min read
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Adding Interactive Course Material in Moodle 1.9: Part 1

Packt
16 Oct 2009
2 min read
The following table gives you a brief description of each kind of activity. The sections that follow the table describe how and when to use these activities. Activity Description Assignment   An assignment is an activity completed offline, outside of Moodle. When the student completes the assignment, he or she either uploads a file for the instructor's review, or reports to the instructor in some other way. Regardless of whether the assignment requires uploading a file, the student receives a grade for the assignment. Choice   A choice is essentially a single, multiple-choice question that the instructor asks the class. The result can either be displayed to the class, or kept between the individual student and the instructor. Choices are a good way to get feedback from the students about the class. You can plant these choices in your course ahead of time, and keep them hidden until you need the students' feedback. You can also add them as needed. Journal   You can create an online journal, which will be unique for each student. A journal can be seen only by the student who writes it, and the instructor. Remember that a journal is attached to the course in which it appears. If you want to move a student's journal to another course, you'll need to make creative usage of the backup and restore functions.
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article-image-soa-service-component-architecture-and-enterprise-service-bus
Packt
16 Oct 2009
5 min read
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SOA with Service Component Architecture and Enterprise Service Bus

Packt
16 Oct 2009
5 min read
Service Component Architecture We have been creating IT assets in the form of programs and codes since many years, and been implementing SOA architecture. This doesn't mean that we follow a big bang approach and throw away all old assets in place of new. Instead, the success of any SOA effort depends largely on how we can make the existing assets co-exist with new architecture principles and patterns. To this end, Service Component Architecture (SCA) aims at creating new and transforms existing, IT assets into re-usable services more easily. These IT assets can then be rapidly adapted to changing business requirements. In this section, we will introduce SCA and also look into some working samples for the same. What is SCA? SCA introduces the notion of services and references. A component which implements some business logic offers their capabilities through service-oriented interfaces. Components may also consume functionality offered by other components through service-oriented interfaces, called service references. If you follow SOA best practices, you will perhaps appreciate the importance of fine-grained tight coupling and coarse-grained loose coupling between components. SCA composition aids recursive assembly of coarse-grained components out of fine-grained tightly coupled components. These coarse-grained components can even be recursively assembled to form higher levels of coarse-grained components. In SCA, a composite is a recursive assembly of fine-grained components. All these are shown in the SCA assembly model in the following screenshot: Apache Tuscany SCA Java Apache Tuscany SCA is a sub-project within open-source Apache Tuscany, which has got a Java implementation of SCA. Tuscany SCA is integrated with Tomcat, Jetty, and Geronimo. SCA Java runtime is composed of core and extensions. The core wires functional units together and provides SPIs that extensions can interact with. Extensions enhance SCA runtime functionality such as service discovery, reliability, support for transport protocols, and so on. Tuscany SCA Java is available for download at: http://incubator.apache.org/tuscany/sca-java.html. SCA Sample Using Tuscany SCA Java The sample here provides a single booking service with a default SCA (java) binding. The BookingAgentServiceComponent exercises this component by calling three other components that is, FlightServiceComponent, HotelServiceComponent, and CabServiceComponent as shown in the BookingAgent SCA assembly diagram shown below: Code the Sample Artifacts The sample consists of two sets of artifacts. The first set is the individual fine-grained service components. The second set is the coarse-grained service component, which wires the referenced fine-grained service components. Code Fine-Grained Service Components There are three fine-grained service components whose code is self explanatory and are listed below: FlightServiceComponent public interface IFlightService{ String bookFlight(String date, int seats, String flightClass); } public class FlightServiceImpl implements IFlightService{ public String bookFlight(String date, int seats, String flightClass){ System.out.println("FlightServiceImpl.bookFlight..."); return "Success"; }} HotelServiceComponent public interface IHotelService{ String bookHotel(String date, int beds, String hotelClass); } public class HotelServiceImpl implements IHotelService{ public String bookHotel(String date, int beds, String hotelClass){ System.out.println("HotelServiceImpl.bookHotel..."); return "Success"; }} CabServiceComponent public interface ICabService{ String bookCab(String date, String cabType); } public class CabServiceImpl implements ICabService{ public String bookCab(String date, String cabType){ System.out.println("CabServiceImpl.bookCab..."); return "Success"; }} Code BookingAgent Service Component BookingAgentServiceComponent depends on three referenced service components, which are the fine-grained service components listed previously. They are initialized by the dependency injection by the SCA runtime. Also, for the actual business method invocation, the call is delegated to the referenced service components as shown in the bookTourPackage method in the following code: import org.osoa.sca.annotations.Reference;public class BookingAgentServiceComponent implements IBookingAgent{ private IFlightService flightService; private IHotelService hotelService; private ICabService cabService; @Reference public void setFlightService(IFlightService flightService) { this.flightService = flightService; } @Reference public void setHotelService(IHotelService hotelService) { this.hotelService = hotelService; } @Reference public void setCabService(ICabService cabService) { this.cabService = cabService; } public String bookTourPackage(String date, int people, String tourPack){ System.out.println("BookingAgent.bookTourPackage..."); String flightBooked = flightService.bookFlight(date, people, tourPack); String hotelBooked = hotelService.bookHotel(date, people, tourPack); String cabBooked = cabService.bookCab(date, tourPack); if((flightBooked.equals("Success")) && (hotelBooked.equals("Success")) && (cabBooked.equals("Success"))){ return "Success"; } else{ return "Failure"; } }} Code BookingAgent Client The BookingAgentClient first creates an instance of SCADomain and then gets a reference of the BookingAgentServiceComponent using the name of the configured service component. Then it executes the business method, bookTourPackage. import org.apache.tuscany.sca.host.embedded.SCADomain;public class BookingAgentClient{ public static void main(String[] args) throws Exception { SCADomain scaDomain = SCADomain.newInstance("BookingAgent.composite"); IBookingAgent bookingAgent = scaDomain.getService(IBookingAgent.class, "BookingAgentServiceComponent"); System.out.println("BookingAgentClient.bookingTourPackage..."); String result = bookingAgent.bookTourPackage("20Dec2008", 5, "Economy"); System.out.println("BookingAgentClient.bookedTourPackage : "+ result); scaDomain.close(); }} Build and Run the SCA Sample You can download the required code for this article from http://www.packtpub.com/files//code/3216_Code.zip. Unzip the file and the code of our interest is in the folder 3216_04_Code. There is also a README.txt file, which gives detailed steps to build and run the samples. To build the sample in a single command, it is easy for you to go to ch04sca folder and execute the following command: cd ch04scaant Now, you can execute the BookingAgentClient program by executing: ant run You can see that the BookingAgentServiceComponent will delegates calls to book individual line items to the referred service components and if all the individual bookings are done right, the overall transaction is "success". The following figure shows the screenshot of such a success scenario:    
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article-image-drools-jboss-rules-50-flow-part-2
Packt
16 Oct 2009
8 min read
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Drools JBoss Rules 5.0 Flow (Part 2)

Packt
16 Oct 2009
8 min read
Transfer Funds work item We'll now jump almost to the end of our process. After a loan is approved, we need a way of transferring the specified sum of money to customer's account. This can be done with rules, or even better, with pure Java as this task is procedural in nature. We'll create a custom work item so that we can easily reuse this functionality in other ruleflows. Note that if it was a once-off task, it would probably be better suited to an action node. The Transfer Funds node in the loan approval process is a custom work item. A new custom work item can be defined using the following four steps (We'll see how they are accomplished later on): Create a work item definition. This will be used by the Eclipse ruleflow editor and by the ruleflow engine to set and get parameters. For example, the following is an extract from the default WorkDefinitions.conf file that comes with Drools. It describes 'Email' work definition. The configuration is written in MVEL. MVEL allows one to construct complex object graphs in a very concise format. This file contains a list of maps—List<map<string, Object>>. Each map defines properties of one work definition. The properties are: name, parameters (that this work item works with), displayName, icon, and customEditor (these last three are used when displaying the work item in the Eclipse ruleflow editor). A custom editor is opened after double-clicking on the ruleflow node. import org.drools.process.core.datatype.impl.type.StringDataType;[ [ "name" : "Email", "parameters" : [ "From" : new StringDataType(), "To" : new StringDataType(), "Subject" : new StringDataType(), "Body" : new StringDataType() ], "displayName" : "Email", "icon" : "icons/import_statement.gif", "customEditor" : "org.drools.eclipse.flow.common.editor. editpart.work.EmailCustomEditor" ]] Code listing 13: Excerpt from the default WorkDefinitions.conf file. Work item's parameters property is a map of parameterName and its value wrappers. The value wrapper must implement the org.drools.process.core.datatype.DataType interface. Register the work definitions with the knowledge base configuration. This will be shown in the next section. Create a work item handler. This handler represents the actual behavior of a work item. It will be invoked whenever the ruleflow execution reaches this work item node. All of the handlers must extend the org.drools.runtime.process.WorkItemHandler interface. It defines two methods. One for executing the work item and another for aborting the work item. Drools comes with some default work item handler implementations, for example, a handler for sending emails: org.drools.process.workitem.email.EmailWorkItemHandler. This handler needs a working SMTP server. It must be set through the setConnection method before registering the work item handler with the work item manager (next step). Another default work item handler was shown in code listing 2 (in the first part)-SystemOutWorkItemHandler. Register the work item handler with the work item manager. After reading this you may ask, why doesn't the work item definition also specify the handler? It is because a work item can have one or more work item handlers that can be used interchangeably. For example, in a test case, we may want to use a different work item handler than in production environment. We'll now follow this four-step process and create a Transfer Funds custom work item. Work item definition Our transfer funds work item will have three input parameters: source account, destination account, and the amount to transfer. Its definition is as follows: import org.drools.process.core.datatype.impl.type.ObjectDataType;[ [ "name" : "Transfer Funds", "parameters" : [ "Source Account" : new ObjectDataType("droolsbook.bank. model.Account"), "Destination Account" : new ObjectDataType("droolsbook.bank. model.Account"), "Amount" : new ObjectDataType("java.math.BigDecimal") ], "displayName" : "Transfer Funds", "icon" : "icons/transfer.gif" ]] Code listing 14: Work item definition from the BankingWorkDefinitions.conf file. The Transfer Funds work item definition from the code above declares the usual properties. It doesn't have a custom editor as was the case with email work item. All of the parameters are of the ObjectDataType type. This is a wrapper that can wrap any type. In our case, we are wrapping Account and BigDecimal  types. We've also specified an icon that will be displayed in the ruleflow's editor palette and in the ruleflow itself. The icon should be of the size 16x16 pixels. Work item registration First make sure that the BankingWorkDefinitions.conf file is on your classpath. We now have to tell Drools about our new work item. This can be done by creating a drools.rulebase.conf file with the following contents: drools.workDefinitions = WorkDefinitions.conf BankingWorkDefinitions.conf Code listing 15: Work item definition from the BankingWorkDefinitions.conf file (all in one one line). When Drools starts up, it scans the classpath for configuration files. Configuration specified in the drools.rulebase.conf file will override the default configuration. In this case, only the drools.workDefinitions setting is being overridden. We already know that the WorkDefinitions.conf file contains the default work items such as email and log. We want to keep those and just add ours. As can be seen from the code listing above, drools.workDefinitions settings accept list of configurations. They must be separated by a space. When we now open the ruleflow editor in Eclipse, the ruleflow palette should contain our new Transfer Funds work item. If you want to know more about the file based configuration resolution process, you can look into the org.drools.util.ChainedProperties class. Work item handler Next, we'll implement the work item handler. It must implement the org. drools.runtime.process.WorkItemHandler interface that defines two methods: executeWorkItem and abortWorkItem. The implementation is as follows: /** * work item handler responsible for transferring amount from * one account to another using bankingService.transfer method * input parameters: 'Source Account', 'Destination Account' * and 'Amount' */public class TransferWorkItemHandler implements WorkItemHandler { BankingService bankingService; public void executeWorkItem(WorkItem workItem, WorkItemManager manager) { Account sourceAccount = (Account) workItem .getParameter("Source Account"); Account destinationAccount = (Account) workItem .getParameter("Destination Account"); BigDecimal sum = (BigDecimal) workItem .getParameter("Amount"); try { bankingService.transfer(sourceAccount, destinationAccount, sum); manager.completeWorkItem(workItem.getId(), null); } catch (Exception e) { e.printStackTrace(); manager.abortWorkItem(workItem.getId()); } } /** * does nothing as this work item cannot be aborted */ public void abortWorkItem(WorkItem workItem, WorkItemManager manager) { } Code listing 16: Work item handler (TransferWorkItemHandler.java file). The executeWorkItem method retrieves the three declared parameters and calls the bankingService.transfer method (the implementation of this method won't be shown). If all went OK, the manager is notified that this work item has been completed. It needs the ID of the work item and optionally a result parameter map. In our case, it is set to null. If an exception happens during the transfer, the manager is told to abort this work item. The abortWorkItem method on our handler doesn't do anything because this work item cannot be aborted. Please note that the work item handler must be thread-safe. Many ruleflow instances may reuse the same work item instance. Work item handler registration The transfer work item handler can be registered with a WorkItemManager as follows: TransferWorkItemHandler transferHandler = new TransferWorkItemHandler(); transferHandler.setBankingService(bankingService); session.getWorkItemManager().registerWorkItemHandler( "Transfer Funds", transferHandler); Code listing 17: TransferWorkItemHandler registration (DefaultLoanApprovalServiceTest.java file). A new instance of this handler is created and the banking service is set. Then it is registered with WorkItemManager in a session. Next, we need to 'connect' this work item into our ruleflow. This means set its parameters once it is executed. We need to set the source/destination account and the amount to be transferred. We'll use the in-parameter mappings of Transfer Funds to set these parameters. As we can see the Source Account is mapped to the loanSourceAccount ruleflow variable. The Destination Account ruleflow variable is set to the destination account of the loan and the Amount ruleflow variable is set to loan amount. Testing the transfer work item This test will verify that the Transfer Funds work item is correctly executed with all of the parameters set and that it calls the bankingService.transfer method with correct parameters. For this test, the bankingService service will be mocked with jMock library (jMock is a lightweight Mock object library for Java. More information can be found at http://www.jmock.org/). First, we need to set up the banking service mock object in the following manner: mockery = new JUnit4Mockery();bankingService = mockery.mock(BankingService.class); Code listing 18: jMock setup of bankingService mock object (DefaultLoanApprovalServiceTest.java file). Next, we can write our test. We are expecting one invocation of the transfer method with loanSourceAccount and loan's destination and amount properties. Then the test will set up the transfer work item as in code listing 17, start the process, and approve the loan (more about this is discussed in the next section). The test also verifies that the Transfer Funds node has been executed. Test method's implementation is as follows: @Test public void transferFunds() { mockery.checking(new Expectations() { { one(bankingService).transfer(loanSourceAccount, loan.getDestinationAccount(), loan.getAmount()); } }); setUpTransferWorkItem(); setUpLowAmount(); startProcess(); approveLoan(); assertTrue(trackingProcessEventListener.isNodeTriggered( PROCESS_LOAN_APPROVAL, NODE_WORK_ITEM_TRANSFER)); } Code listing 19: Test for the Transfer Funds work item (DefaultLoanApprovalServiceTest.java file). The test should execute successfully.
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article-image-navigating-online-drupal-community
Packt
16 Oct 2009
9 min read
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Navigating the Online Drupal Community

Packt
16 Oct 2009
9 min read
Recipe 87: Creating an issue Page Bookmark IngredientsWeb Browser The issue queue is the central place of progress for Drupal modules. It serves as a place to find answers, patches, new ideas, and work on common concerns. Issues are referenced by number. On occasion, a web page will contain an issue queue number in text form rather than a full link to the issue. This recipe, once set up, simply saves the trouble of having to type drupal.org/node/ into the browser address bar. Just select the number and the bookmark will take you there. In Firefox add a new Bookmark onto the toolbar. Select Bookmarks | Organize Bookmarks | Bookmarks Toolbar | Organize | New Bookmark Set the Name to Drupal Issue and set the Location to the following: javascript:inum=escape(getSelection());location.href='http://www.drupal.org/node/'+inum. Visit a web page that contains an issue number and select the issue number text. For instance, try http://cvs.drupal.org/viewvc.py/drupal/contributions/modules/views/modules/views_taxonomy.inc. (Be sure to exclude the surrounding space and pound sign when selecting the number.) Click the Drupal Issue button in the bookmark toolbar. Recipe notes This bookmark approach may be replicated to visit a URL containing any selectable text. For instance, below is a variation to display all of your delicious bookmarks tagged with the selected text. (Delicious.com—also found at http://del.icio.us, is a wonderful online bookmark service.) Replace <ACCOUNTNAME> with your delicious.com account. Name: DeliciousLocation: javascript_tag=escape(getSelection());location.href='http://delicious.com/<ACCOUNTNAME>/'+tag Recipe 88: Searching the Views issue queue IngredientsWeb Browser In this recipe we look closely at how to search the Views issue queue. The lessons apply to all other Drupal projects as well. It is always a good idea to search the issue queue for related content before posting. Log on to drupal.org (if you are not already a member of the Drupal site, become a member). Basic Search Visit http://drupal.org/project/issues/views. At this main issue queue page you may search for text or filter by Status, Priority, Category, Version, or Component. These options are discussed in further detail below. You may also sort the table of issues by clicking on the table header. By default, the table is sorted by date. Advanced Search Go to the Views issue queue Advanced Search page. Visit the URL directly, at http://drupal.org/project/issues/search/views. From the project page (drupal.org/project/views), find the Issues block on the left, and click on the Advanced Search link. From the issue queue (drupal.org/project/issues/views), the Advanced Search Link appears under the title. There are a variety of routes to get there: Get to know the search options. Although there are ten form elements to choose, most users will routinely use just a few, leaving the other options blank. Search For (Routinely used): Enter search text. Use quotation marks to create a phrase. Assigned: This field is generally used by issue maintainers. Submitted by: This is most often used to find your own issues, though it could be used to see what other Drupal users are posting as well. Participant: This is also used to find your own posts. Note that Submitted by finds only the initial post by a user in the issue queue. Participant additionally includes responses to initial posts. Status: Leave blank to get all statuses. You may also select multiple options. For instance, you could select all issues designated as needs work, needs review, and reviewed & tested by the community. Scroll down the list and note Status filters such as closed issues, duplicates, issues that the maintainer won't fix, and features noted as by design. These are the statuses that are excluded if you select -Open Issues-. Priority: Leave blank to get all priorities. Category: Leave blank to get all categories. Version (Routinely used): A relative new option, 5.x issues saves you the trouble of having to Shift+click on each Drupal 5 release name. Component: The views module issue queue offers more component options than most modules. As a result, users may not always be familiar with properly assigning a component when they create an issue. A search of exposed filters components, for instance, may not find as many results as a text search of "exposed filters." Component can occasionally be a helpful selection, but is most often left blank. Issue Tags: These may be a challenge to search since few people add tag issues. This may become a more popular option in the future. Recipe notes Search ideas: Find all your posts by filling in your drupal.org user name under participant. Find patches by selecting all of the four patch statuses. Find all documentation issues connected to Views for Drupal 5.x. Go to another issue queue http://drupal.org/project/issues/search/<MODULENAME> and search for the word Views. From the module issue pages http://drupal.org/project/issues/<MODULENAME> you may also review module Statistics, and Subscribe to issues. Subscribe to your Own Issues (the default), None, or All Issues. I don't recommend the latter for the Views module as you will be setting yourself up for a deluge of email. Search across all projects at http://drupal.org/search/issues. Recipe 89: Posting an issue Posting a New issue If you are new to posting Drupal issues, consider just reading the issue queue for at least several days before posting. This will help you to get a sense of the culture of issue queue interaction. If you don't already have an account on drupal.org get one. Look for the User login block on the home page, and click on Create new account. Complete the steps to login. Search the issue queue before you post! (Recipe 88). If your topic already has an associated active issue, reply rather than posting a new issue.Also, before posting to the issue queue in a panic read the Drupal Troubleshooting FAQ http://drupal.org/Troubleshooting-FAQ. For instance, standard fare is to increase memory in the face of the White Screen of Death (WSOD) or to disable buggy modules by setting the status = 0 in the system table. Be sure to know which version of the module you're using. Is it the dev (development) version? Is it the latest recommended release? The version number can generally be found at http://YOURSITE.com/admin/build/modules. To start a new issue, go to http://drupal.org/project/issues/<MODULENAME> and click on Create a new issue. This directs the browser to: http://drupal.org/node/add/project-issue/<MODULENAME>. For the Views module, the link at http://drupal.org/node/add/project-issue/views offers guidance (in bold!) for posting. Read it! Much of it applies to Views 2 but it contains useful information for Views 1 users as well. Required fields for a new issue include Version, Component, Category, Title, and Description. Be thoughtful with these details. For instance, do not title your issue HELP??!! A much more useful description would be something like Missing taxonomy terms in filters. Priority should generally be left as normal. Critical is reserved for occasions then the module simply does not work. Responding to an existing issue You may also respond to an existing issue by selecting the Add New Comment link or one of the Reply links on an individual issue page. Another option is just to scroll down to the bottom of the issue page, and begin entering a response. Unlike some forum tools, in which replies are indented, all new comments are given a new comment number, and added to the bottom of the comments. When responding to an issue you may take a variety of actions: Change the Issue Title. In general, don't change this unless you have a very good reason (for instance, if the original title is misleading, or spelled wrong). Some people are used to forums where a response can have a different name as the original post. In the issue queue, changing the name when responding to an issue actually changes the name of the issue. This is generally best left untouched. Change the Project. A question that someone asks in the Views issue queue may be more appropriately managed in the issue queue for a different module. This is a rare change generally left to the maintainer of one of the two modules who will know in which issue queue a discussion belongs. Change the Version number, Component, Category, or Priority. These changes are rare (correcting the version number is probably the most common). When changes are made, they are noted in the post as shown below: Change Assign. Do not assign someone other than yourself to an issue. Assign yourself if you are sure that you will soon fix the issue. It is quite common to leave this as Unassigned. Change the Status. For instance: Mark an issue as a duplicate (always provide a pointer to the issue it duplicates). Note that a patch is reviewed and tested by the community. Post a question, patch, answer, or idea related to the issue in the Comment section. Open the Input format fieldset below the comment field to see what markup is available. Note the <code> tag, for instance (and remember to close it with a </code> tag). Attach a file. Recipe notes Remember that respondents and maintainers are volunteers. They are generally very busy people who want to help, but they do not have time to do free consulting. See the following pages for spirited discussions about issue queue etiquette: http://acko.net/blog/whats-wrong-with-drupal http://paul.leafish.co.uk/articles/drupal/on_subscribing_to_module_portingupdating_issues One discussion theme is the merit of simply sending the word subscribe to the issue queue. People sometimes do this so that they can track an issue—receiving an email alert each time something new is posted. On drupal.org it is possible to subscribe to a node only if you leave a comment, but most people prefer comments with substance. You may create functionality similar to the Drupal issue queue on your own site by installing the project, project_issue, and comment_upload modules.
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16 Oct 2009
2 min read
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A Primer to AGI: Asterisk Gateway Interface

Packt
16 Oct 2009
2 min read
How does AGI work Let's examine the following diagram: As the previous diagram illustrates, an AGI script communicates with Asterisk via two standard data streams—STDIN (Standard Input) and STDOUT (Standard Output). From the AGI script point-of-view, any input coming in from Asterisk would be considered STDIN, while output to Asterisk would be considered as STDOUT. The idea of using STDIN/STDOUT data streams with applications isn't a new one, even if you're a junior level programmer. Think of it as regarding any input from Asterisk with a read directive and outputting to Asterisk with a print or echo directive. When thinking about it in such a simplistic manner, it is clear that AGI scripts can be written in any scripting or programming language, ranging from BASH scripting, through PERL/PHP scripting, to even writing C/C++ programs to perform the same task. Let's now examine how an AGI script is invoked from within the Asterisk dialplan: exten => _X.,1,AGI(some_script_name.agi,param1,param2,param3) As you can see, the invocation is similar to the invocation of any other Asterisk dialplan application. However, there is one major difference between a regular dialplan application and an AGI script—the resources an AGI script consumes.While an internal application consumes a well-known set of resources from Asterisk, an AGI script simply hands over the control to an external process. Thus, the resources required to execute the external AGI script are now unknown, while at the same time, Asterisk consumes the resources for managing the execution of the AGI script.Ok, so BASH isn't much of a resource hog, but what about Java? This means that the choice of programming language for your AGI scripts is important. Choosing the wrong programming language can often lead to slow systems and in most cases, non-operational systems. While one may argue that the underlying programming language has a direct impact on the performance of your AGI application, it is imperative to learn the impact of each. To be more exact, it's not the language itself, but more the technology of the programming language runtime that is important. The following table tries to distinguish between three programming languages' families and their applicability to AGI development.
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article-image-joomla-15-template-reference-part-1
Packt
16 Oct 2009
2 min read
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Joomla! 1.5 Template Reference: Part 1

Packt
16 Oct 2009
2 min read
  Take note that we'll see how these Joomla! 1.5 items differ in use from a Joomla! 1.0 template, so that those of you looking to update a Joomla! 1.0 template to 1.5 can quickly get a handle on what to update in your templates and what new features to add. Consider this article your "cheat sheet". Jdoc include tags The jdoc include tags are new to Joomla! 1.5 templates. Previously in Joomla! 1.0, more complicated, abstract PHP code, originally created for Mambo, was used. The jdoc tags are much cleaner, visually make sense (no more guessing what attribute values like "-3" mean), and, thus, are much easier to remember. Site header information tag This is pretty simple: the tag outputs all the appropriate meta tags and header information that corresponds to your site and each individual page: <jdoc:include type="head" /> Joomla! 1.0 to 1.5 conversion If you're converting a 1.0 template to 1.5, you'll replace this PHP function in your 1.0 template's header with the above jdoc tag: <head>...<?php mosShowHead(); ?>... The component include tag Wherever you place this include, all component content will appear (from articles to poll results to contact forms, and so on): <jdoc:include type="component" /> Joomla! 1.0 to 1.5 conversion The 1.0 equivalent of this tag is the mosMainBody function. You'll replace this PHP function with the above jdoc include: <?php mosMainBody(); ?> Module position tags With module tags, we have a few options to work with. So, we can control what modules load into the area, thus assigning their positions as well as what style to output the module content with: <jdoc:include type="modules" name="position" style="styleName" /> Module position styles In the jdoc include example above, within the style attribute, you can place one of the following six style names to various effect:
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16 Oct 2009
8 min read
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Exceptions and Logging in Apache Struts 2

Packt
16 Oct 2009
8 min read
Handling exceptions in Struts 2 Struts 2 provides a declarative exception handling mechanism that can be configured globally (for an entire package), or for a specific action. This capability can reduce the amount of exception handling code necessary inside actions under some circumstances, most notably when underlying systems, such as our services, throw runtime exceptions (exceptions that we don't need to wrap in a try/catch or declare that a method throws). To sum it up, we can map exception classes to Struts 2 results. The exception handling mechanism depends on the exception interceptor. If we modify our interceptor stack, we must keep that in mind. In general, removing the exception interceptor isn't preferred. Global exception mappings Setting up a global exception handler result is as easy as adding a global exception mapping element to a Struts 2 configuration file package definition and configuring its result. For example, to catch generic runtime exceptions, we could add the following: <global-exception-mappings><exception-mapping result="runtime"exception="java.lang.RuntimeException"/></global-exception-mappings> This means that if a java.lang.RuntimeException (or a subclass) is thrown, the framework will take us to the runtime result. The runtime result may be declared in an element, an action configuration, or both. The most specific result will be used. This implies that an action's result configuration might take precedence over a global exception mapping. For example, consider the global exception mapping shown in the previous code snippet. If we configure an action as follows, and a RuntimeException is thrown, we'll see the locally defined runtime result, even if there is a global runtime result. <action name="except1"class="com.packt.s2wad.ch09.examples.exceptions.Except1"><result name="runtime">/WEB-INF/jsps/ch9/exceptions/except1-runtime.jsp</result>... This can occasionally lead to confusion if a result name happens to collide with a result used for an exception. However, this can happen with global results anyway (a case where a naming convention for global results can be handy). Action-specific exception mappings In addition to overriding the result used for an exception mapping, we can also override a global exception mapping on a per-action basis. For example, if an action needs to use a result named runtime2 as the destination of a RuntimeException, we can configure an exception mapping specific to that action. <action name="except2"class="com.packt.s2wad.ch09.examples.exceptions.Except1"><exception-mapping result="runtime2"exception="java.lang.RuntimeException"/>... As with our earlier examples, the runtime2 result may be configured either as a global result or as an action-specific result. Accessing the exception We have many options regarding how to handle exceptions. We can show the user a generic "Something horrible has happened!" page, we can take the user back and allow them to retry the operation or refill the input form, and so on. The appropriate course of action depends on the application and, most likely, on the type of exception. We can display exception-specific information as well. The exception interceptor pushes an exception encapsulation object onto the stack with the exception and exceptionStack properties. While the stack trace is probably not appropriate for user-level error pages, the exception can be used to help create a useful error message, provide I18N property keys for messages (or values used in messages), suggest possible remedies, and so on. The simplest example of accessing the exception property from our JSP is to simply display the exception message. For example, if we threw a RuntimeException, we might create it as follows: throw newRuntimeException("Runtime thrown from ThrowingAction"); Our exception result page, then, could access the message using the usual property tag (or JSTL, if we're taking advantage of Struts 2's custom request processor): <s:property value="exception.message"/> The underlying action is still available on the stack—it's the next object on the value stack. It can be accessed from the JSP as usual, as long as we're not trying to access properties named exception or exceptionStack, which would be masked by the exception holder. (We can still access an action property named exception using OGNL's immediate stack index notation—[1].exception.) Architecting exceptions and exception handling We have pretty good control over what is displayed for our application exceptions. It is customizable based on exception type, and may be overridden on a per-action basis. However, to make use of this flexibility, we require a well-thought-out exception policy in our application. There are some general principles we can follow to help make this easier. Checked versus unchecked exceptions Before we start, let's recall that Java offers two main types of exceptions—checked and unchecked. Checked exceptions are exceptions we declare with a throws keyword or wrapped in a try/catch block. Unchecked exceptions are runtime exceptions or a subclass. It isn't always clear what type we should use when writing our code or creating our exceptions. It's been the subject of much debate over the years, but some guidelines have become apparent. One clear thing about checked exceptions is that they aren't always worth the aggravation they cause, but may be useful when the programmer has a reasonable chance of recovering from the exception. One issue with checked exceptions is that unless they're caught and wrapped in a more abstract exception (coming up next), we're actually circumventing some of the benefits of encapsulation. One of the benefits being circumvented is that when exceptions are declared as being thrown all the way up a call hierarchy, all of the classes involved are forced to know something about the class throwing the exception. It's relatively rare that this exposure is justifiable. Application-specific exceptions One of the more useful exception techniques is to create application-specific exception classes. A compelling feature of providing our own exception classes is that we can include useful diagnostic information in the exception class itself. These classes are like any other Java class. They can contain methods, properties, and constructors. For example, let's assume a service that throws an exception when the user calling the service doesn't have access rights to the service. One way to create and throw this exception would be as follows: throw new RuntimeException("User " + user.getId()+ " does not have access to the 'update' service."); However, there are some issues with this approach. It's awkward from the Struts 2's standpoint. Because it's a RuntimeException, we have only one option for handling the exception—mapping a RuntimeException to a result. Yes, we could map the exception type per-action, but that gets unwieldy. It also doesn't help if we need to map two different types of RuntimeExceptions to two different results. Another potential issue would arise if we had a process that examined exceptions and did something useful with them. For example, we might send an email with user details based on the above exception. This would amount to parsing the exception message, pulling out the user ID, and using it to get user details for inclusion in the email. This is where we'd need to create an exception class of our own, subclassed from RuntimeException. The class would have encapsulated exception related information, and a mechanism to differentiate between the different types of exceptions. A third benefit comes when we wrap lower-level exceptions—for example, a Spring-related exception. Rather than create a Spring dependency up the entire call chain, we'd wrap it in our own exception, abstracting the lower-level exception. This allows us to change the underlying implementation and aggregate differing exception types under one (or more) application-specific exception. One way of creating the above scenario would be to create an exception class that takes a User object and a message as its constructor arguments: package com.packt.s2wad.ch09.exceptions;public class UserAccessException extends RuntimeException {private User user;private String msg;public UserAccessException(User user, String msg) {this.user = user;this.msg = msg;}public String getMessage() {return "User " + user.getId() + " " + msg;}} We can now create an exception mapping for a UserAccessException (as well as a generic RuntimeException if we need it). In addition, the exception carries along with it the information needed to create useful messages: throw new UserAccessException(user,"does not have access to the 'update' service."); "Self-documenting" of code could be made even safer, in the sense of ensuring that it's only used in the ways in which it is intended. We could add an enum to the class to encapsulate the reasons the exception can be thrown, including the text for each reason. We'll add the following inside  our UserAccessException: public enum Reason {NO_ROLE("does not have role"),NO_ACCESS("does not have access");private String message;private Reason(String message) {this.message = message;}public String getMessage() { return message; }}; We'll also modify the constructor and getMessage() method to use the new Reason enumeration. public UserAccessException(User user, Reason reason) {this.user = user;this.reason = reason;}public String getMessage() {return String.format("User %d %s.",user.getId(), reason.getMessage());} Now, when we throw the exception, we explicitly know that we're using the exception class correctly (at least type-wise). The string message for each of the exception reasons is encapsulated within the exception class itself. throw new UserAccessException(user,UserAccessException.Reason.NO_ACCESS); With Java 5's static imports, it might make even more sense to create static helper methods in the exception class, leading to the concise, but understandable code: throw userHasNoAccess(user);
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16 Oct 2009
4 min read
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Using Graphs to Manage Networks and Devices with Cacti 0.8

Packt
16 Oct 2009
4 min read
Creating graphs If you are familiar with RRDTool, then you know Cacti is designed to harness the power of RRDTool's data storage and graphing functionality. If you are not, don't worry—Cacti will create graphs without extensive configuration input from users. Built-in graph templates will make your life easier, so it is not necessary to understand the functionality of each field to create graphs for network-attached devices. Each graph stores different sets of parameters that control different aspects of each graph. If you want to know more about RRDTool, please visit http://oss.oetiker.ch/rrdtool/. At the time of creating graphs, you will face a bit of a stiff learning curve. Stay on course, it will be over soon and you will be able to create graphs for different devices very quickly. Cacti can create graphs for any SNMP-enabled, network-attached devices. This can be a switch, router, server, desktop computer, printer, IPS, UPS, and so on. Initially, we will not talk about the custom template and the data-query script development for any SNMP-enabled devices. Instead, we will use the default options in Cacti. In order to build a custom template, we need to understand the SNMP protocol and command-line tools of the Net-SNMP application suite. Let's create graphs based on the available templates and devices. Adding a device Before we add a graph, we need to add a device for which you want to create the graph. In order to do that, click on Devices under Management. Cacti will open the Devices view panel. It will look like this: If you click Add in the top right-hand corner, it will open a new form to add a new device. The first two fields, Description and Hostname, are both required for the default configuration. The other fields in the Device section (Notes and Disable Device) can be left as is. If your host template exists in the drop-down, be sure to select the template. Since we are starting with an SNMP-enabled device, if you are not sure which template to select, you can select the Generic SNMP-enabled host template. It is important to know that adding a template to a device will not lock down the device to any specific configuration, as graph templates and queries can be added and removed from a device at anytime. The following screenshot shows how the Add a device form looks. If you look closely at the drop-down, there are very few templates. But you can add device-specific templates as required. The following web site has an excellent collection of Cacti scripts and templates. This web site is aimed at providing tips and tricks to Debian users from novice to expert. The owner also collects and updates all sorts of scripts and templates from the Cacti forum for easy access: http://www.debianhelp.co.uk/cactitemplates.htm Device fields definition Every device that we add has different attributes and values. The following table will clarify the attributes. It is wise to understand all the fields before adding a device in Cacti. Fields Descriptions Description Giving host a meaningful name. This name will be shown in the first column of the device view panel. Hostname Fully qualified hostname or IP. If a fully qualified hostname is being used such as linuxbox1.example.com, Dynamic Name Services (DNS) will be used to resolve the hostname. Host Template Host template is responsible for the types of data that need to be gathered from a specific type of host. Notes Adding notes for the host, anything that is specific to the host. Disable Host Check this box to disable all the checks for this device. This means no polling for this device. Downed Device Detection NONE: Disable downed device detection. Ping and SNMP: Perform both tests. SNMP: Perform SNMP check. Ping: Use ping method. Ping Method ICMP Ping: Perform ICMP test. ICMP on Linux/Unix require root privileges. TCP Ping: Perform a TCP test. UDP Ping: Perform UDP test. Ping Port This option is available for only TCP and UDP Ping. Define the port number here and make sure the firewall is not blocking that port. Ping Timeout Value This value is measured in milliseconds. After the defined time, the test will fail. Ping Retry Count Defines how many times Cacti will ping a host before failing. SNMP Version Version 1: Supported by most of the SNMP-enabled devices. One thing you need to remember is that it doesn't support a 64-bit counter. Version 2: This is also known as SNMPv2c. Supported by most of the SNMP-enabled devices. Version 3: Version 3 supports authentication and encryption.
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16 Oct 2009
6 min read
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Oracle VM Management

Packt
16 Oct 2009
6 min read
Before we get to manage the VMs in the Oracle VM Manager, let's take a quick look at the Oracle VM Manager by logging into it. Getting started with Oracle VM Manager In this article, we will perform the following actions while exploring the Oracle VM Manager: Registering an account Logging in to Oracle VM Manager Create a Server Pool After we are done with the Oracle VM Manager installation, we will use one of the following links to log on to the Oracle VM Manager: Within the local machine: http://127.0.0.1:8888/OVS Logging in remotely: http://vmmgr:8888/OVS Here, vmmgr refers to the host name or IP address of your Oracle VM Manager host. How to register an account Registering of an account can be done in several ways. If, during the installation of Oracle VM Manager, we have chosen to configure the default admin account "admin", then we can use this account directly to log on to Oracle's IntraCloud portal we call Oracle VM Manager. We will explain later in detail about the user accounts and why we would need separate accounts for separate roles for fine-grained access control; something that is crucial for security purposes. So let's have a quick look at the three available options: Default installation: This option applies if we have performed the default installation ourselves and have gone ahead to create the account ourselves. Here we have the default administrator role. Request for account creation: Contacting the administrator of Oracle VM Manager is another way to attain an account with the privileges, such as administrator, manager, and user. Create yourself: If we need to conduct basic functions of a common user with operator's role such as creating and using virtual machines, or importing resources, we can create a new account ourselves. However, we will need the administrator to assign us the server pools and groups to our account before we can get started. Here by default we are granted a user role. We will talk more about roles later in this article. Now let's go about registering a new account with Oracle VM Manager. Once on the Oracle VM Manager Login page click on the Register link. We are presented with the following screen. We must enter a Username of our choice and a hard-to-crack password twice. Also, we have to fill in our First Name and Last Name and complete the registration with a valid email address. Click Next: Next, we need to confirm our account details by clicking on the Confirm button. Now our account will be created and a confirmation message is displayed on the Oracle VM Manager Login screen. It should be noted that we will need some Server Pools and groups before we can get started. We will have to ask the administrator to assign us access to those pools and groups. It's time now to login to our newly created account. Logging in to Oracle VM Manager Again we will need to either access the URL locally by typing http://127.0.0.1:8888/OVS or by typing the following: http://hostname:8888/ OVS. If we are accessing the Oracle VM Manager Portal remotely, replace the "hostname" with either the FQDN (Fully Qualified Distinguished Name) if the machine is registered in our DNS or just the hostname of the VM Manager machine. We can login to the portal by simply typing in our Username and Password that we just created. Depending on the role and the server pools that we have been assigned, we will be displayed with the tabs upon the screen as shown in the following table. To change the role, we will need to contact our enterprise domain administrator. Only administrators are allowed to change the roles of accounts. If we forget our password, we can click on Forgot Password and on submitting our account name, the password will be sent to the registered email address that we had provided when we registered the account. The following table discusses the assigned tabs that are displayed for each Oracle VM Manager roles:   Role Grants User Virtual Machines, Resources Administrator Virtual Machines, Resources, Servers, Server Pools, Administration Manager Virtual Machines, Resources, Servers, Server Pools   We can obviously change the roles by editing the Profile (on the upper-right section of the portal). As it can be seen in the following screenshot, we have access to the Virtual Machines pane and the Resources pane. We will continue to add Servers to the pool when logged in as admin. Oracle VM management: Managing Server Pool A Server Pool is logically an autonomous region that contains one or more physical servers and the dynamic nature of such pool and pools of pools makes what we call  an infinite Cloud infrastructure. Currently Oracle has its Cloud portal with Amazon but it is very much viable to have an IntraCloud portal or private Cloud where we can run all sorts of Linux and Windows flavors on our Cloud backbone. It eventually rests on the array of SAN, NAS, or other next generation storage substrate on which the VMs reside. We must ensure that we have the following prerequisites properly checked before creating the Virtual Machines on our IntraCloud Oracle VM. Oracle VM Servers: These are available to deploy as Utility Master, Server Master pool, and Virtual Machine Servers. Repositories: Used for Live Migration or Hot Migration of the VMs and for local storage on the Oracle VM Servers. FQDN/IP address of Oracle VM Servers: It is better to have the Oracle VM Servers known as OracleVM01.AVASTU.COM and OracleVM02.AVASTU. COM. This way you don't have to bother about the IP changes or infrastructural relocation of the IntraCloud to another location. Oracle VM Agent passwords: Needed to access the Oracle VM Servers. Let's now go about exploring the designing process of the Oracle VM. Then we will do the following systematically: Creating the Server Pool Editing Server Pool information Search and retrieval within Server Pool Restoring Server Pool Enabling HA Deleting a Server Pool However, we can carry out these actions only as a Manager or an Administrator. But first let's take a look at the decisions on what type of Server Pools will suit us the best and what the architectural considerations could be around building your Oracle VM farm.
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16 Oct 2009
7 min read
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Simplifying Parallelism Complexity in C#

Packt
16 Oct 2009
7 min read
Specializing the algorithms for segmentation with classes So far, we have been developing applications that split work into multiple independent jobs and created classes to generalize the algorithms for segmentation. We simplified the creation of segmented and parallelized algorithms, generalizing behaviors to simplify our code and to avoid repeating the same code on every new application. However, we did not do that using inheritance, a very powerful object-oriented capability that simplifies code re-use. C# is an object-oriented programming language that supports inheritance and offers many possibilities to specialize behaviors to simplify our code and to avoid some synchronization problems related to parallel programming. How can we use C# object-oriented capabilities to define specific segmented algorithms prepared for running each piece in an independent thread using ParallelAlgorithm and ParallelAlgorithmPiece as the base classes? The answer is very simple—by using inheritance and the factory method class creational pattern (also known as virtual constructor). Thus, we can advance into creating a complete framework to simplify the algorithm optimization process. Again, we can combine multithreading with object-oriented capabilities to reduce our development time and avoid synchronization problems. Besides, using classes to specialize the process of splitting a linear algorithm into many pieces will make it easier for the developers to focus on generating very independent parts that will work well in a multithreading environment, while avoiding side-effects. Time for action – Preparing the parallel algorithm classes for the factory method You made the necessary changes to the ParallelAlgorithmPiece and the ParallelAlgorithm classes to possibly find planets similar to Mars in the images corresponding to different galaxies. NASA's CIO was impressed with your parallel programming capabilities. Nevertheless, he is an object-oriented guru, and he gave you the advice to apply the factory method pattern to specialize the parallel algorithm classes in each new algorithm. That could make the code simpler, more re-usable, and easier to maintain. He asked you to do so. The NASA scientists would then bring you another huge image processing challenge for your parallel programming capabilities—a sunspot analyzer. If you resolve this problem using the factory method pattern or something like that, he will hire you! However, be careful, because you must avoid some synchronization problems! First, we are going to create a new project with tailored versions of the ParallelAlgorithmPiece and ParallelAlgorithm classes. This way, later, we will be able to inherit from these classes and apply the factory method pattern to specialize in parallel algorithms: Create a new C# Project using the Windows Forms Application template in Visual Studio or Visual C# Express. Use SunspotsAnalyzer as the project's name. Open the code for Program.cs. Replace the line [STAThread] with the following line (before the Main method declaration): [MTAThread] Copy the file that contains the original code of the ParallelAlgorithmPiece and the ParallelAlgorithm classes (ParallelAlgorithm.cs) and include them in the project. Add the abstract keyword before the declarations of theParallelAlgorithmPiece and the ParallelAlgorithm classes, as shown in the following lines (we do not want to create instances directly from these abstract classes): abstract class ParallelAlgorithmPieceabstract class ParallelAlgorithm Change the ThreadMethod method declaration in the ParallelAlgorithmPiece class (add the abstract keyword to force us to override it in subclasses): public abstract void ThreadMethod(object poThreadParameter); Add the following public abstract method to create each parallel algorithm piece in the ParallelAlgorithm class (the key to the factory method pattern): public abstract ParallelAlgorithmPieceCreateParallelAlgorithmPiece(int priThreadNumber); Add the following constructor with a parameter to the ParallelAlgorithmPiece class: public ParallelAlgorithmPiece(int priThreadNumberToAssign){priThreadNumber = priThreadNumberToAssign;} Copy the original code of the ParallelAlgorithmPiece class CreatePieces method and paste it in the ParallelAlgorithm class (we move it to allow creation of parallel algorithm pieces of different subclasses). Replace the lloPieces[i].priBegin and lloPieces[i].priEnd private variables' access with their corresponding public properties access lloPieces[i].piBegin and lloPieces[i].piEnd. Change the new CreatePieces method declaration in the ParallelAlgorithm class (remove the static clause and add the virtual keyword to allow us to override it in subclasses and to access instance variables): public virtual List<ParallelAlgorithmPiece>CreatePieces(long priTotalElements, int priTotalParts) Replace the line lloPieces[i] = new ParallelAlgorithmPiece(); in the CreatePieces method declaration in the ParallelAlgorithm class with the following line of code (now the creation is encapsulated in a method, and also, a great bug is corrected, which we will explain later): lloPieces.Add(CreateParallelAlgorithmPiece(i)); Comment the following line of code in the CreatePieces method in the ParallelAlgorithm class (now the new ParallelAlgorithmPiece constructor assigns the value to piThreadNumber): //lloPieces[i].piThreadNumber = i; Replace the line prloPieces = ParallelAlgorithmPiece. CreatePieces(priTotalElements, priTotalParts); in the CreateThreads method declaration in the ParallelAlgorithm class with the following line of code (now the creation is done in the new CreatePieces method): prloPieces = CreatePieces(priTotalElements, priTotalParts); Change the StartThreadsAsync method declaration in the ParallelAlgorithm class (add the virtual keyword to allow us to override it in subclasses): public virtual void StartThreadsAsync() Change the CollectResults method declaration in the ParallelAlgorithm class (add the abstract keyword to force us to override it in subclasses): public abstract void CollectResults(); What just happened? The code required to create subclasses to implement algorithms, following a variation of the factory method class creational pattern, is now held in the ParallelAlgorithmPiece and ParallelAlgorithm classes. Thus, when we create new classes that will inherit from these two classes, we can easily implement a parallel algorithm. We must just fill in the gaps and override some methods, and we can then focus on the algorithm problems instead of working hard on the splitting techniques. We also solved some bugs related to the previous versions of these classes. Using C# programming language's excellent object-oriented capabilities, we can avoid many problems related to concurrency and simplify the development process using high-performance parallel algorithms. Nevertheless, we must master many object-oriented design patterns to help us in reducing the complexity added by multithreading and concurrency. Defining the class to instantiate One of the main problems that arise when generalizing an algorithm is that the generalized code needed to coordinate the parallel algorithm must create instances of the subclasses that represent the pieces. Using the concepts introduced by the factory method class creational pattern, we solved this problem with great simplicity. We made the necessary changes to the ParallelAlgorithmPiece and ParallelAlgorithm classes to implement a variation of this design pattern. First, we added a constructor to the ParallelAlgorithmPiece class with the thread or piece number as a parameter. The constructor assigns the received value to the priThreadNumber private variable, accessed by the piThreadNumber property: public ParallelAlgorithmPiece(int priThreadNumberToAssign){priThreadNumber = priThreadNumberToAssign;} The subclasses will be able to override this constructor to add any additional initialization code. We had to move the CreatePieces method from the ParallelAlgorithmPiece class to the ParallelAlgorithm class. We did this because each ParallelAlgorithm subclass will know which ParallelAlgorithmPiece subclass to create for each piece representation. Thus, we also made the method virtual, to allow it to be overridden in subclasses. Besides, now it is an instance method and not a static one. There was an intentional bug left in the previous CreatePieces method. As you must master lists and collections management in C# in order to master parallel programming, you should be able to detect and solve this little problem. The method assigned the capacity, but did not add elements to the list. Hence, we must use the add method using the result of the new CreateParallelAlgorithmPiece method. lloPieces.Add(CreateParallelAlgorithmPiece(i)); The creation is now encapsulated in this method, which is virtual, and allows subclasses to override it. The original implementation is shown in the following lines: public virtual ParallelAlgorithmPiece CreateParallelAlgorithmPiece(int priThreadNumber){return (new ParallelAlgorithmPiece(priThreadNumber));} It returns a new ParallelAlgorithmPiece instance, sending the thread or piece number as a parameter. Overriding this method, we can return instances of any subclass of ParallelAlgorithmPiece. Thus, we let the ParallelAlgorithm subclasses decide which class to instantiate. This is the principle of the factory method design pattern. It lets a class defer instantiation to subclasses. Hence, each new implementation of a parallel algorithm will have its new ParallelAlgorithm and ParallelAlgorithmPiece subclasses. We made additional changes needed to keep conceptual integrity with this new approach for the two classes that define the behavior of a parallel algorithm that splits work into pieces using multithreading capabilities.
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16 Oct 2009
19 min read
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Views, URLs, and Generic Views in Django 1.0

Packt
16 Oct 2009
19 min read
An overview Views are at the heart of Django and hold most of your application logic. They are nothing more than Python functions that take an HTTP request as input and return an HTTP response or error. A mechanism called the dispatcher identifies an incoming URL against a set of URL patterns and their associated view functions. When a match is found, the associated view is called and the request gets handled. Since many views follow a common strategy of loading an object or list, loading a template, rendering the template, and returning a response, Django offers a way of doing this without writing a view function. These generic views are called from the URL dispatcher and go right to the template. Creating the application Before we start looking at views and URLs, let's create a sample application to experiment with. Since most books and examples use blog models as their demos, let's keep things fresh by making our demo a press release application for a company website. The press release object will have a title, body, published date, and author name. Create the data model In the root directory of your project (in the directory projects/mycompany), create the press application by using the startapp command: $ python manage.py startapp press This will create a press folder in your site. Edit the mycompany/press/models.py file: from django.db import modelsclass PressRelease(models.Model): title = models.CharField(max_length=100) body = models.TextField() pub_date = models.DateTimeField() author = models.CharField(max_length=100) def __unicode__(self): return self.title Create the admin file To take advantage of the automatic admin interface that Django gives us, we need to create a file called an admin file. Create a file called admin.py in the mycompany/press directory, adding these lines: from django.contrib import adminfrom mycompany.press.models import PressReleaseadmin.site.register(PressRelease) If you've used Django before version 1.0, this step is new. The admin configuration directives were taken out of the model and put into their own files starting in version 1.0. Add the press and admin applications to your INSTALLED_APPS variable in the settings.py file: INSTALLED_APPS = ( 'django.contrib.auth', 'django.contrib.admin', 'django.contrib.contenttypes', 'djan?go.contrib.sessions', 'django.contrib.sites', 'mycompany.press',) In the root directory of your project, run the syncdb command to add the new models to the database: $ python manage.py syncdb Because we have Django's authentication system listed as one of our installed applications, the initial syncdb process will ask us if we want to create a superuser. Go ahead and create a superuser account; you will be using it later to access the admin site. Configure the URLs Finally, edit the mycompany/urls.py file: from django.conf.urls.defaults import *from django.contrib import adminadmin.autodiscover()urlpatterns = patterns('', (r'^admin/(.*)', admin.site.root),) Add data in the admin application By adding django.contrib.admin to our INSTALLED_APPS setting and creating a URL mapping for it, we can access the admin site by browsing to http://localhost:8000/admin/. Go into the admin app and add two or three press releases so that we have some sample data to work with: Mapping URLs to views When Django accepts an incoming request, one of the first things it does is that it looks at the URL and tries to match it against a group of URL patterns. In order to identify patterns, Django uses regular expressions to see if the URLs follow a known format. Consider these URLs: http://localhost:8000/press/detail/1/ http://localhost:8000/press/detail/2/ These URLs appear to follow a pattern that they start with press/detail/ and end with a number that represents the ID of a press release. (Recall that we don't work with the domain name portion of the URL. Django takes care of this automatically for us and just sends us everything that follows the domain name.) With this pattern, we can add a new line to our mycompany/urls.py file: from django.conf.urls.defaults import *from django.contrib import adminadmin.autodiscover()urlpatterns = patterns('', (r'^admin/(.*)', admin.site.root), (r'^press/detail/d+/$', 'mycompany.press.views.detail'),) If you're not familiar with Python's regular expressions, this new line may look a bit wonky. This is the most important part: r'^press/detail/d+/$' It reads like this: "A string that starts with press/detail/ and ends with one or more digits followed by a slash". The second segment of the new line is the view function that will get called when an incoming URL matches this pattern. In this case, it will be a function called detail in the mycompany/press/views.py file. There's only one problem with this pattern—it recognizes that a number will be at the end of the URL, but doesn't do anything to pass that number to the view when it's called. We can use a Python regular expression group to capture that number: urlpatterns = patterns('', (r'^admin/', include('django.contrib.admin.urls')), (r'^press/detail/(?P<pid>d+)/$', 'mycompany.press.views.detail'),) This grouping syntax looks really funky, but it's easy to understand once you've seen it a few times. (?P ) is the Python syntax for a named group, which allows the regular expression to save the piece that matched, and put a label on it so that we can call it later. The <pid> part is where we assign the label of pid to the ID of the press release that was sent with the URL. In the case of this URL, the named group pid will be equal to 2: http://localhost:8000/press/detail/2/ Any named groups that we get from a URL are passed as arguments to our view function. In this example, our detail function in press/views.py will have a method signature like this: def detail(request, pid): p = PressRelease.object.get(id=pid) .. There are two keyword arguments to the detail function, request and pid. (Django automatically passes the keyword request, which we'll explore a little later.) Because we used a named group in the URL configuration to capture the press release ID, it's passed to our detail function as pid. You can use multiple named groups in your URL patterns to capture multiple pieces of information and pass them to your functions. Note: URL configurations and patterns are usually referred to as URLConf. Handling unmatched URL patterns URLs are matched up with view functions when they match patterns, but what happens when a match isn't found? This URL wouldn't match the patterns we created because it doesn't end in a number: http://localhost:8000/press/detail/abc/ In this case, the URL dispatcher wouldn't match against our pattern and would keep trying other patterns until a match is found. If no match is found, a 404 error is raised. If you have debug set to true (DEBUG=True) in your settings file, you'll see an error message like this: Splitting up the URL configurations We created the URL configurations for the press application in the mycompany/urls.py file. While this is perfectly acceptable, sticking all the configurations into the main urls.py file can get unwieldy for large projects with many applications. It also isn't very modular if we want to share applications with others or use applications that other people distribute. Instead of writing the press release configuration in our main mycompany/urls.py file, let's create a new file at mycompany/press/urls.py: from django.conf.urls.defaults import *urlpatterns = patterns('', (r'^detail/(?P<pid>d+)/$', 'press.views.detail'),) This looks very similar to what we already have, but note that we've dropped press from the beginning of the regular expression. This line will match URLs that start with detail. Open your mycompany/urls.py file and edit the highlighted line: from django.conf.urls.defaults import *from django.contrib import adminadmin.autodiscover()urlpatterns = patterns('', (r'^admin/(.*)', admin.site.root), (r'^press/', include('mycompany.press.urls')),) We've changed the regular expression portion to match URLs that start with press/. If one is found, Django will hop over to the press/urls.py file to try to match the rest of the URL (without the press/ prefix). With this setup, we are telling Django that any URLs that start with press will be handled in a separate urls.py file in the press directory. Creating views Now that we're matching a URL to a view and passing it information, we can look at how a view is structured. Views have two rules you must follow: The view must accept the request object as its first argument. The view must return an HTTP response or an exception. Beyond this, just remember that a view is a standard Python function and you can do just about anything in it that you can do in a Python program. Accepting the request object Our first rule for views states that a view must accept the request object as its first argument. What is this request object? Django automatically creates the request object when a page is requested. It contains data about the incoming HTTP request such as the requestor's IP address, user agent, request method, cookies, GET parameters, POST parameters, and so on. Everything you should need to know about an incoming request will be found in this object. When you build your view functions, always specify request as the first keyword argument: def detail(request): # Python code here If you forget to add request as the first parameter, you'll know quickly because your view will fail to load with some kind of error message about the arguments (the exact error depends on what other keyword arguments you might be using). Responding with an HTTP response The second rule for views is that a view must return an HTTP response or an exception. Let's start by talking about what an HTTP response is. In order for a browser to understand how to render a web page, it looks at some special hidden information called headers, which is sent by the server along with the content or document being requested. These headers tell the browser information such as what kind of web server is sending the response, which version of the HTTP protocol is being used, how big the content is, and what kind of content is being sent. Luckily, we don't have to worry about most of this because the web server and Django take care of it for us. All we have to do is make sure we send the response out of our view using the HttpResponse method. In your mycompany/press/views.py file, add the following lines: from django.http import HttpResponsedef detail(request, pid): return HttpResponse('This is just a test.') Point your browser to http://localhost:8000/press/detail/1/. Here's what it should look like: Obviously, our views are going to be more complicated than this one, but it illustrates how simple they can be. Responding with an exception The second part of our rule said that the view can respond with an exception instead of an HTTP response. When Django encounters an error during the processing of a view, we usually want to return a friendly error message to the user to let them know something went wrong (as opposed to just sending back a blank screen). Usually, these error messages are in the form of 404 or 500 Error pages. 404 errors are also known as page not found errors. Anyone who has spent time surfing the Web has undoubtedly encountered a 404 Error page when clicking an old link that is no longer valid. In traditional HTML publishing, 404 errors popped up when the user requested a filename that wasn't found on the server (that's where the "page" in "page not found" comes from). With Django, we don't have URLs that represent filenames on the server, but we still return a 404 error when the user is looking for a resource that does not exist. Django makes it easy to return a 404 page by returning the error using the HttpResponseNotFound function: from django.http import HttpResponseNotFounddef detail(request, pid): return HttpResponseNotFound('Page Not Found') Similarly, requests that cause errors on the server are usually referred to as 500 errors. (500 is the standard HTTP response code for a server error.) Django also makes it easy to serve a 500 error: from django.http import HttpResponseServerErrordef detail(request, pid): return HttpResponseServerError('An Error Has Occurred.') Putting the views together Now that we know how a view works and what it needs to do, let's write the real view to work with our sample application. Building the basic view In your mycompany/press/views.py file, replace any contents with the following lines: from django.http import HttpResponsefrom django.http import HttpResponseNotFoundfrom mycompany.press.models import PressReleasedef detail(request, pid): ''' Accepts a press release ID and returns the detail page ''' try: p = PressRelease.objects.get(id=pid) return HttpResponse(p.title) except PressRelease.DoesNotExist: return HttpResponseNotFound('Press Release Not Found') If you'd like to test it out, point your browser to http://localhost:8000/press/detail/1/. You should see the title of your press release. Change the number at the end of the press release to an ID that doesn't exist (such as 99) and you should get a Page Not Found error. This view doesn't return a very pretty output, but it follows the rule that the view must serve an HTTP response or an error/exception. The try/except error handling to make sure the press release exists is kind of ugly. Luckily, Django gives us a more elegant way of handling it. Cleaning up the error handling Instead of putting a try/except block around the object lookup, Django has a get_object_or_404 method that will automatically raise an error if the object is not found. Change the highlighted lines in your mycompany/press/views.py file: from django.http import HttpResponsefrom django.shortcuts import get_object_or_404from mycompany.press.models import PressReleasedef detail(request, pid): ''' Accepts a press release ID and returns the detail page ''' p = get_object_or_404(PressRelease, id=pid) return HttpResponse(p.title) That's a much cleaner way of doing things! Note: If you're getting a list instead of an object, Django has a get_list_or_404 method that you can use. We'll see this in a few pages. Adding the template files The last thing we need to do is add a way to load up the response with the output of a rendered template. We're going to load a template file, replace placeholders in that file with our data (called "rendering" the template), and then return the contents of the template as a string as an HTTP response. We create a templates directory at mycompany/templates, and configured the settings.py file to tell Django where to find it: TEMPLATE_DIRS = ( '/projects/mycompany/templates/',) Verify that you have configured your project this way before continuing. With this setting in place, we can load templates relative to this path. Create a directory under the mycompany/templates directory called press. (It's common practice to use subdirectories to group template files by the application they are associated with.) Create a new file at mycompany/templates/press/detail.html and add these lines: <html><head><title>{{ press.title }}</title></head><body><h1>{{ press.title }}</h1><p>Author: {{ press.author }}<br/>Date: {{ press.pub_date }}<br/></p><p>{{ press.body }}</p></body></html> This simple template file has placeholders for our title, author, pub_date, and body fields. When the template is rendered, these placeholders will be replaced with their respective values. Now that we have a template, we can tell the view to use it. Adding the template to the view In our mycompany/press/views.py file, let's add a few lines to load our template. Replace the contents of your file with these lines: from django.http import HttpResponsefrom django.shortcuts import get_object_or_404from django.template import loader, Contextfrom mycompany.press.models import PressReleasedef detail(request, pid): ''' Accepts a press release ID and returns the detail page ''' p = get_object_or_404(PressRelease, id=1) t = loader.get_template('press/detail.html') c = Context({'press': p}) rendered_template = t.render(c) return HttpResponse(rendered_template) In the function, we're retrieving the press/detail.html template file and creating a special data object called Context. So for now, just understand that it passes data to the template so that it can be rendered. The context object in this example passes our press release object to the template in a variable called press. Our template gets rendered into a string called rendered_template that is sent back to the browser via HttpResponse the same way we sent back simple lines of text in previous examples. The rendered_template variable was used for clarity. You can omit it and just return the response like this: def detail(request, pid): ''' Accepts a press release ID and returns the detail page ''' p = get_object_or_404(PressRelease, id=1) t = loader.get_template('press/detail.html') c = Context({'press': p}) return HttpResponse(t.render(c)) Point your browser to the URL http://localhost:8000/detail/1/. You should see something like this depending on what you entered earlier into the admin site as sample data: Creating the list view and template In addition to displaying the detail for a specific press release, we'll also need a way to display a list of press releases. The steps to add this will be very similar to what we just did to add our detail view. In your mycompany/press/views.py file, add the highlighted lines: from django.http import HttpResponsefrom django.shortcuts import get_object_or_404from django.shortcuts import get_list_or_404from django.template import loader, Contextfrom mycompany.press.models import PressReleasedef detail(request, pid): ''' Accepts a press release ID and returns the detail page ''' p = get_object_or_404(PressRelease, id=1) t = loader.get_template('press/detail.html') c = Context({'press': p}) return HttpResponse(t.render(c))def press_list(request): ''' Returns a list of press releases ''' pl = get_list_or_404(PressRelease) t = loader.get_template('press/list.html') c = Context({'press_list': pl}) return HttpResponse(t.render(c)) In your mycompany/press/urls.py file, add the highlighted line: from django.conf.urls.defaults import *urlpatterns = patterns('', (r'detail/(?P<pid>d+)/$','mycompany.press.views.detail'), (r'list/$', 'mycompany.press.views.press_list'),) Any incoming request starting with press/ will be sent to our press/urls.py file. If the remaining part of the URL is list/, it will be handled by the press_list function in our press/views.py file. If the remaining part is detail/<number> (such as detail/1 or detail/2), it will be handled by the detail function. Finally, create a new file at mycompany/templates/press/list.html: <html><head><title>Press Releases</title></head><body><h1>Press Releases</h1><ul>{% for press in press_list %}<li><a href="/press/detail/{{ press.id }}/">{{ press.title }}</a></li>{% endfor %}</ul></body></html> Point your browser to the URL http://localhost:8000/press/list/. You should see something like this, depending on what you entered earlier into the admin site: Using generic views to shorten development time What we've done so far in this article is pretty standard for web application development: We created a view to load an object by its ID. We created a view to load a list of objects. We retrieved our object using the data sent in from the URL or retrieved a list of objects. We loaded a template file. We rendered the template. We returned an HTTP response. Because these actions are so common, Django has a way to cut out the whole step of writing a view, called generic views. Generic views are called from the URL configuration file, which allows you to go right from the URL pattern to your template. Generic views come in a few types: Simple List/detail Date-based Create/update/delete We won't be covering the date-based or create/update/delete generic views. But after reading this article, you'll be well-prepared to read about them in the online documentation. Simple generic views The two simple generic views that handle loading of a template don't require any data lookup (going directly to a template) and redirecting from one URL to another. Loading a template directly If you just need to load and render a template when a URL is requested, you can use the direct_to_template generic view. For example, let's build a robots exclusion file (aka a robots.txt file) that search engine spiders will request at http://localhost:8000/robots.txt. (Search engines wouldn't index pages on a localhost domain, but pretend for this example that they would.) Since the file is rarely changed after being created, you may not want the overhead of a database lookup to serve it, so you just want to render a template when the URL is requested. Create a new file at mycompany/templates/robots.txt and add these lines: User-agent: *Disallow: /admin This very simple example will prevent spiders from trying to index your admin path (visit robotstxt.org for more info on how exclusion files work). In your mycompany/urls.py file, add the highlighted lines: from django.conf.urls.defaults import *from django.contrib import adminadmin.autodiscover()urlpatterns = patterns('', (r'^admin/(.*)', admin.site.root), (r'^press/', include('mycompany.press.urls')), (r'^robots.txt$', 'django.views.generic.simple.direct_to_template', 'template': 'robots.txt'}), ) Point your browser to the URL http://localhost:8000/robots.txt/. You'll get a response that looks like this:
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16 Oct 2009
8 min read
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Extending OpenCms: Developing a Custom Widget

Packt
16 Oct 2009
8 min read
Structured Content Types Support for structured content is a key feature of OpenCms. Structured content types allow different templates to be used to re-skin a site, or to share content with other sites that have a different look. Structured content types are defined by creating XSD schemas and placing them into modules. Once a new content type has been defined, the Workplace Explorer provides a user interface to create new instances of the content and allows it to be edited. There are some sample content types and templates that come with the Template One group of modules. These content types are very flexible and allow a site to be built using them right away. However, they may not fit our site requirements. In general, site requirements and features will determine the design of the structured content types and templates that need to be developed. BlogEntry Content Type For designing a blog website it is required that the content type contains blog entries. The schema file for the BlogEntry content type looks like the following : <!-- ======================================================== Content definition schema for the BlogEntry type ========================================================== --> <!-- 1. Root Element --> <xsd:schema elementFormDefault="qualified"> <!-- 2. Define the location of the schema location --> <xsd:include schemaLocation="opencms://opencms-xmlcontent.xsd"/> <!-- 3. Root element name and type of our XML type --> <xsd:element name="BlogEntrys" type="OpenCmsBlogEntrys"/> <!-- 4. Definition of the type described above --> <xsd:complexType name="OpenCmsBlogEntrys"> <xsd:sequence> <xsd:element name="BlogEntry" type="OpenCmsBlogEntry" minOccurs="0" maxOccurs="unbounded"/> </xsd:sequence> </xsd:complexType> <!-- 5. Data field definitions --> <xsd:complexType name="OpenCmsBlogEntry"> <xsd:sequence> <xsd:element name="Title" type="OpenCmsString" minOccurs="1" maxOccurs="1" /> <xsd:element name="Date" type="OpenCmsDateTime" minOccurs="1" maxOccurs="1" /> <xsd:element name="Image" type="OpenCmsVfsFile" minOccurs="0" maxOccurs="1" /> <xsd:element name="Alignment" type="OpenCmsString" minOccurs="1" maxOccurs="1" /> <xsd:element name="BlogText" type="OpenCmsHtml" minOccurs="1" maxOccurs="1" /> <xsd:element name="Category" type="OpenCmsString" minOccurs="0" maxOccurs="10" /> </xsd:sequence> <!-- 6. locale attribute is required --> <xsd:attribute name="language" type="OpenCmsLocale" use="required"/> </xsd:complexType> <!—optional code section --> <xsd:annotation> <xsd:appinfo> <!-- Mappings allow data fields to be mapped to content properties --> <mappings> <mapping element="Title" mapto="property:Title" /> <mapping element="Date" mapto="attribute:datereleased" /> </mappings><!-- Validation rules for fields --> <validationrules> <rule element="BlogText" regex="!.*[Bl]og.*" type= "warning" message="${key.editor.warning.BlogEntry. dontallowblog|${validation.path}}"/> </validationrules> <!-- Default values for fields --> <defaults> <default element="Date" value="${currenttime}"/> <default element="Alignment" value="left"/> </defaults> <!-- user interface widgets for data fields --> <layouts> <layout element="Image" widget="ImageGalleryWidget"/> <layout element="Alignment" widget="SelectorWidget" configuration="left|right|center" /> <layout element="Category" widget="SelectorWidget" configuration="silly|prudent|hopeful|fearful| worrisome|awesome" /> <layout element="BlogText" widget="HtmlWidget"/> </layouts> <!-- UI Localization --> <resourcebundle name="com.deepthoughts.templates.workplace"/> <!-- Relationship checking --> <relations> <relation element="Image" type="strong" invalidate="node" /> </relations> <!-- Previewing URI --> <preview uri="${previewtempfile}" /> <!-- Model Folder for content models --> <modelfolder uri="/system/modules/com.deepthoughts.templates /defaults/" /> </xsd:appinfo> </xsd:annotation> </xsd:schema> The BlogEntry content type file is named as blogentry.xsd and it placed in the folder named schemas in modules. Designing a Custom Widget Referring to the highlighted code in BlogEntry content type schema file we can see that the category field is populated from a drop-down list provided by SelectorWidget. The SelectorWidget obtains its values from the static configuration string defined within the blog schema file. This design is problematic as we would like category values to be easily changed or added. Ideally, the list of category values should be able to be updated by site content editors. Fortunately, we can create our own custom widget to handle this requirement. An OpenCms widget is a Java class that implements the I_CmsWidget interface, located in the org.opencms.widgets package. The interface contains a number of methods that must be implemented. First there are some methods dealing with instantiation and configuration of the widget: newInstance: This returns a new instance of the widget. setConfiguration: This method is called after the widget has been initialized to configure it. The configuration information is passed as a string value coming from the declaration of the widget within the schema file of the content type using it. getConfiguration: This is called to retrieve the configuration information for the widget. Next, there are some methods used to handle the rendering. These methods are called by widget enabled dialogs that might be used in a structured content editor or an administration screen. The methods provide any Javascript, CSS, or HTML needed by the widget dialogs: getDialogIncludes: This method is called to retrieve any Javascript or CSS includes that may be used by the widget. getDialogInitCall: This method may return Javascript code that performs initialization or makes calls to other Javascript initialization methods needed by the widget. getDialogInitMethod: This method may return Javascript code containing any functions needed by the widget. getDialogHtmlEnd: This method is called at the end of the dialog and may be used to return an HTML or Javascript needed by the widget. getDialogWidget: This method returns the actual HTML and Javascript used to render the widget along with its values. getHelpBubble: This method returns the HTML for displaying the help icon relating to this widget. getHelpText: This method returns the HTML for displaying the help text relating to this widget. Lastly, there are some methods used to get and set the widget value: getWidgetStringValue: This method returns the value selected from the widget. setEditorValue: This method sets the value into the widget. All these methods have base implementations in the A_CmsWidget class. In most cases, the base methods do not need to be overridden. As such, we will not cover all the methods in detail. If it is necessary to override the methods, the best way to get an idea of how to implement them is to look at the code using them. All widgets are used in dialog boxes which have been enabled for widgets, by implementing the I_CmsWidgetDialog interface. There are two general instances of these dialogs, one is used for editing structured XML content, the other is found in any dialog appearing in the Administration View. The two classes implementing this interface are: org.opencms.workplace.CmsWidgetDialog org.opencms.workplace.editors.CmsXmlContentEditor The CmsWidgetDialog class is itself a base class, which is used by all dialogs found in the Administrative View. Before designing a new widget, it is useful to examine the existing widget code. The default OpenCms widgets can be found in the org.opencms.widgets package. All the widgets in this package subclass the A_CmsWidget class mentioned earlier. Often, a new widget design may be subclassed from an existing widget. Designing the Widget As mentioned earlier, we would like to have a widget that obtains its option data values dynamically rather than from a fixed configuration string value. Rather than create a widget very specific to our needs, we will use a flexible design where the data source location can be specified in the configuration parameter. The design will allow for other data sources to be plugged into the widget. This way, we can use a single widget to obtain dynamic data from a variety of sources. To support this design, we will use the configuration parameter to contain the name of a Java class used as a data source. The design will specify a pluggable data source through a Java interface that a data source must implement. Furthermore, a data source can accept parameters via the widget configuration string. With this design, an example declaration for a widget named CustomSourceSelectWidget would look like this: <layout element="Category" widget="CustomSourceSelectWidget" configuration="source='com.widgets.sources.MySource'| option1='some config param'| option2='another param'" /> This declaration would appear in the schema of a content type, using the widget as covered earlier. The configuration parameter consists of name/value pairs, delimited by the vertical bar character. Each name/value pair is separated by the equal to sign and the value is always enclosed in single quotes. The design requires that at least the source parameter be specified. Additional parameters will depend upon the specific data source being used. The example declaration specifies that the data field named Category will use the CustomSourceSelectWidget widget for its layout. The configuration parameter contains the name of the Java class to be used to obtain the data source. The data source will receive the two parameters named option1 and option2 along with their values. Next, lets move on to the code to see how this all gets implemented.
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16 Oct 2009
11 min read
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Windows Development Using Visual Studio 2008

Packt
16 Oct 2009
11 min read
Visual Studio Visual Studio is an environment for developing applications in Windows. It has a number of tools, such as an editor, compilers, linkers, a debugger, and a project manager. It also has several Wizards—tools designed for rapid development. The Wizard you will first encounter is the Application Wizard. It generates code for an Application Framework. The idea is that we use the Application Wizard to design a skeleton application that is later completed with more application-specific code. There is no real magic about wizards, all they do is generate the skeleton code. We could write the code ourselves, but it is a rather tedious job. Moreover, an application can be run in either debug or release mode. In debug mode, additional information is added in order to allow debugging; in release mode, all such information is omitted in order to make the execution as fast as possible. The code of this article is developed with Visual Studio 2008. The Windows 32 bits Application Programming Interface (Win32 API) is a huge C function library. It contains a couple of thousand functions for managing the Windows system. With the help of Win32 API it is possible to totally control the Windows operating system. However, as the library is written in C, it could be a rather tedious job to develop a large application, even though it is quite possible. That is the main reason for the existence of the Microsoft Foundation Classes (MFC). It is a large C++ class library containing many classes encapsulating the functionality of Win32 API. It does also hold some generic classes to handle lists, maps, and arrays. MFC combines the power of Win32 API with the advantages of C++. However, on some occasions MFC is not enough. When that happens, we can simply call an appropriable Win32 API function, even though the application is written in C++ and uses MFC. Most of the classes of MFC belong to a class hierarchy with CObject at the top. On some occasions, we have to let our classes inherit CObject in order to achieve some special functionality. The baseclass Figure in the Draw and Tetris applications inherits CObject in order to read or write objects of unknown classes. The methods UpdateAllViews and OnUpdate communicate by sending pointers to CObject objects. The Windows main class is CWnd. In this environment, there is no function main. Actually, there is a main, but it is embedded in the framework. We do not write our own main function, and there is not one generated by the Application Wizard. Instead, there is the object theApp, which is an instance of the application class. The application is launched by its constructor. When the first version of MFC was released, there was no standard logical type in C++. Therefore, the type BOOL with the values TRUE and FALSE was introduced. After that, the type bool was introduced to C++. We must use BOOL when dealing with MFC method calls, and we could use bool otherwise. However, in order to keep things simple, let us use BOOL everywhere. In the same way, there is a MFC class CString that we must use when calling MFC methods. We could use the C++ built-in class string otherwise. However, let us use CString everywhere. The two classes are more or less equivalent. There are two types for storing a character, char and wchar_t. In earlier version of Windows, you were supposed to use char for handling text, and in more modern versions you use wchar_t. In order to make our application independent of which version it is run on, there are two macros TCHAR and TEXT. TCHAR is the character type that replaces char and wchar_t. TEXT is intended to encapsulate character and string constants. TCHAR *pBuffer;stScore.Format(TEXT("Score: %d."), iScore); There is also the MFC type BYTE which holds a value of the size of one byte, and UINT which is shorthand for unsigned integer. Finally, all generated framework classes have a capital C at the beginning of the name. The classes we write ourselves do not. The Document/View model The applications in this article are based on the Document/View model. Its main idea is to have two classes with different responsibilities. Let us say we name the application Demo, the Application Wizard will name the document class CDemoDoc and the view class will be named CDemoView. The view class has two responsibilities: to accept input from the user by the keyboard or the mouse, and to repaint the client area (partly or completely) at the request of the document class or the system. The document's responsibility is mainly to manage and modify the application data. The model comes in two forms: Single Document Interface (SDI) and Multiple Document Interface (MDI). When the application starts, a document object and a view object are created, and connected to each other. In the SDI, it will continue that way. In the MDI form, the users can then add or remove as many views they want to. There is always exactly one document object, but there may be one or more view objects, or no one at all. The objects are connected to each other by pointers. The document object has a list of pointers to the associated view objects. Each view object has a fieldm_pDocument that points at the document object. When a change in the document's data has occurred, the document instructs all of its views to repaint their client area by calling the method UpdateAllViews in order to reflect the change. The message system Windows is built on messages. When the users press one of the mouse buttons or a key, when they resize a window, or when they select a menu item, a message is generated and sent to the current appropriate class. The messages are routed by a message map. The map is generated by the Application Wizard. It can be modified manually or with the Properties Window View (the Messages or Events button). The message map is declared in the file class' header file as follows: DECLARE_MESSAGE_MAP() The message map is implemented in the class' implementation file as follows: BEGIN_MESSAGE_MAP(this_class, base_class)// Message handlers.END_MESSAGE_MAP() Each message has it own handle, and is connected to a method of a specific form that catches the message. There are different handlers for different types of messages. There are around 200 messages in Windows. Here follows a table with the most common ones. Note that we do not have to catch every message. We just catch those we are interested in, the rest will be handled by the framework. Message Handler/Method Sent WM_CREATE ON_WM_CREATE/OnCreate When the window is created, but not yet showed. WM_SIZE ON_WM_SIZE/OnSize When the window has been resized. WM_MOVE ON_WM_MOVE/OnMove When the window has been moved. WM_SETFOCUS ON_WM_SETFOCUS/ OnSetFocus When the window receives input focus. WM_KILLFOCUS ON_WM_KILLFOCUS/ OnKillFocus When the window loses input focus. WM_VSCROLL ON_WM_VSCROLL/ OnVScroll When the user scrolls the vertical bar. WM_HSCROLL ON_WM_HSCROLL/ OnHScroll When the user scrolls the horizontal bar. WM_LBUTTONDOWN   WM_MBUTTONDOWN   WM_RBUTTONDOWN ON_WM_LBUTTONDOWN/ OnLButtonDown ON_WM_MBUTTONDOWN/ OnMButtonDown ON_WM_RBUTTONDOWN/ OnRButtonDown When the user presses the left, middle, or right mouse button. WM_MOUSEMOVE ON_WM_MOUSEMOVE/ OnMouseMove When the user moves the mouse, there are flags available to decide whether the buttons are pressed. WM_LBUTTONUP   WM_MBUTTONUP   WM_RBUTTONUP ON_WM_LBUTTONUP/ OnLButtonUp ON_WM_MUTTONUP/ OnMButtonUp ON_WM_RUTTONUP/ OnRButtonUp When the user releases the left, middle, or right button. WM_CHAR ON_WM_CHAR/OnChar When the user inputs a writable character of the keyboard. WM_KEYDOWN ON_WM_KEYDOWN/ OnKeyDown When the user presses a key of the keyboard. WM_KEYUP ON_WM_KEYUP/ OnKeyUp When the user releases a key of the keyboard. WM_PAINT ON_WM_PAINT/OnPaint When the client area of the window needs to be repainted, partly or completely. WM_CLOSE ON_WM_CLOSE/OnClose When the user clicks at the close button in the upper right corner of the window. WM_DESTROY ON_WM_DESTROY/ OnDestroy When the window is to be closed. WM_COMMAND ON_COMMAND(Identifier, Name)/OnName   When the user selects a menu item, a toolbar button, or a accelerator key connected to the identifier. WM_COMMAND_ UPDATE ON_COMMAND_ UPDATE_UI(Identifier, Name)/OnUpdateName On idle time, when the system is not busy with any other task, this message is sent in order to enable/disable or to check menu items and toolbar buttons. When a user selects a menu item, a command message is sent to the application. Thanks to MFC, the message can be routed to virtually any class in the application. However, in the applications of this article, all menu messages are routed to the document class. It is possible to connect an accelerator key or a toolbar button to the same message, simply by giving it the same identity number. Moreover, when the system is in idle mode (not busy with any other task) thecommand update message is sent to the application. This gives us an opportunity to check or disable some of the menu items. For instance, the Save item in the File menu should be grayed (disabled) when the document has not been modified and does not have to be saved. Say that we have a program where the users can paint in one of three colors. The current color should be marked by a radio box. The message map and its methods can be written manually or be generated with the Resource View (the View menu in Visual Studio) which can help us generate the method prototype, its skeleton definition, and its entry in the message map. The Resource is a system of graphical objects that are linked to the application. When the framework is created by the Application Wizard, the standard menu bar and toolbar are included. We can add our own menus and buttons in Resource Editor, a graphical tool of Visual Studio. The coordinate system In Windows, there are device (physical) and logical coordinates. There are several logical coordinate mapping systems in Windows. The simplest one is the text system; it simply maps one physical unit to the size of a pixel, which means that graphical figures will have different size monitors with different sizes or resolutions. This system is used in the Ring and Tetris applications. The metric system maps one physical unit to a tenth of a millimeter (low metric) or a hundredth of a millimeter (high metric). There is also the British system that maps one physical unit to a hundredth of an inch (low English) or a thousandth of an inch (high English). The British system is not used in this article. The position of a mouse click is always given in device units. When a part of the client area is invalidated (marked for repainting), the coordinates are also given in device units, and when we create or locate the caret, we use device coordinates. Except for these events, we translate the positions into logical units of our choice. We do not have to write translation routines ourselves, there are device context methods LPtoDP (Logical Point to Device Point) and DPtoLP (Device Point to Logical Point) in the next section that do the job for us. The setting of the logical unit system is done in OnInitialUpdate and OnPrepareDC in the view classes. In the Ring and Tetris Applications, we just ignore the coordinates system and use pixels. In the Draw application, the view class is a subclass of the MFC class CScrollView. It has a method SetScrollSizes that takes the logical coordinate system and the total size of the client area (in logical units). Then the mapping between the device and logical system is done automatically and the scroll bars are set to appropriate values when the view is created and each time its size is changed. void SetScrollSizes(int nMapMode, CSize sizeTotal, const CSize& sizePage = sizeDefault, const CSize& sizeLine = sizeDefault); In the Calc and Word Applications, however, we set the mapping between the device and logical system manually by overriding the OnPrepareDC method. It calls the method SetMapMode which sets the logical horizontal and vertical units to be equal. This ensures that circles will be kept round. The MFC device context method GetDeviceCaps returns the size of the screen in pixels and millimeters. Those values are used in the call to SetWindowExt and SetViewportExt, so that the logical unit is one hundredth of a millimeter also in those applications. The SetWindowOrg method sets the origin of the view's client area in relation to the current positions of the scroll bars, which implies that we can draw figures and text without regarding the current positions of the scroll bars. int SetMapMode(int iMapMode);int GetDeviceCaps(int iIndex) const;CSize SetWindowExt(CSize szScreen);CSize SetViewportExt(CSize szScreen);CPoint SetWindowOrg(CPoint ptorigin);
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Packt
16 Oct 2009
4 min read
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Creating a matrix report using the Analysis Services Cube

Packt
16 Oct 2009
4 min read
Reviewing Jayaram's other OLAP related articles may greatly help in understanding this article. Creating the CUBE will be essential to work with this hands-on. If you are already experienced and have an appropriate CUBE to work with you may directly go to the section on deriving a dataset. The CUBE used in this hands-on is a simple one. It does not even have a "Time" dimension although Microsoft in Visual Studio gives a warning that you should have one. However for the purposes of demonstration and doing the hands-on a CUBE without the "Time" dimension should be adequate. The two previous articles on creating a CUBE provide the necessary background for this article. Create a data source with a CUBE Create an Analysis Services Cube (herein called MyNwind.cube) using the TestNorthwind as the database. The Measures and Dimensions for this cube are as shown in the next figure. Start your Report Builder 2.0. Make sure you have started the reporting services using the Reporting Services Configuration Manager. In Report Builder 2.0 click on New | Data source... under Report Data. Provide the following information: Name: SrcCubeSelect connection type: Microsoft SQL Server Analysis ServicesConnection String: Data Source=Hodentek2SANGAM; Initial Catalog=NwindRTM Herein NwindRTM is the name of the Datasource in the Analysis Server. (Alternately you may build this source as shown). Click OK on the Data Source Properties window. Add a dataset to the report Right click on SrcCube and choose Add DataSet... In the Dataset Properties window make the following changes: Name: QryCubeData source: SrcCubeQuery Type: text Click on Query Designer... button. At first you will see only the Metadata of the cube displayed as in the left side of the next figure. Expand Customers, Orders, and Products in the dimensions and drop them on the list header in the bottom pane on the right hand side of the next figure. Drag and drop Freight from Orders under Measures as shown. For each of the dimensions using an operator create a filter expression as shown. For example, the Products included in the query range from Product IDs 3 to 9; the Customer ID (some specific ones are chosen), similarly theCategory ID (only those with ID's 2, 3, 4, and 5 are included in the query). The design of the query with these filtering choices is as shown in the previous figure. The filtering tool is very flexible and all the items namely Dimension, Hierarchy, Operator and Filter Expression can be designed in this interface using either drop-down pick lists choices or drop-downs with checkboxes as shown here. Run the query by clicking on the toolbar item (!) and review the results. Click OK on the Query Designer. The Dataset Properties window shows up with this query designed according to your choices in the query item window as shown. Close the Dataset Properties window. Report Design In Report Builder 2.0 click on New Table or Matrix wizard. In the Choose a dataset window accept the default and click Next. Drag and drop Customer_ID in the Row Groups drop area. Drag and drop Order_ID below Customer_ID in the Row Groups drop area. Drag and drop Product_ID in the Column Groups drop area. Drag and drop Freight into the Values drop area and click on Next. In the Choose the layout window accept Expand/collapse groups and choose the option Stepped, subtotal above. Click Next and choose some style (herein Ocean) and click Finish. The final report design is as shown here. Click Home | Run. The report gets displayed after processing as shown here. The orders from a particular customer have been expended in this view. Summary Report Builder 2.0 can used to author reports based on Analysis Services Cubes. The interface is very flexible and the Query Designer is very easy to use as shown in this article. If you have read this article you may be interested to view : Creating an Analysis Services Cube with Visual Studio 2008 - Part 1 Creating an Analysis Services Cube with Visual Studio 2008 - Part 2
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