Wednesday, September 28, 2011
Overcoming the top three mobile app design & development constraints
Wednesday, September 14, 2011
If Chuck Norris Were A Programmer
Tuesday, September 13, 2011
A Trip to the .NET Forms Library with uniPaaS 2.0
- When you want to use .NET forms capabilities, you can. It is not mandatory. Very rich applications can be designed using the core GUI capabilities within uniPaaS.
- Adding .NET managed code is simplified because your overall application leverages the benefits of the uniPaaS metadata-driven platform. Low-level programming is never required.
- uniPaaS’ tab and table driven interface allows you to avoid complex line-by-line scripting and coding. uniPaaS takes care of the typical programmer “housekeeping chores” so that there is less effort than normally expected to create a program.
Control, User Control and Form classes. The Control class constitutes the majority of classes available in the System.Windows.Forms namespace. Controls are key to visibility. In other words, a control class is sued to provide the base functionality for all program controls that are displayed on a form in your application. You can think of a form as a window within your application such as a dialog box, modeless windows, Multiple Document Interface (MDI) client and parent windows.
Menu and Toolbar classes. The library also includes a category of classes for building custom toolbars and menus with your desired look and feel. ToolStrip is used for creating toolbars. MenuStrip is used for creating menu bars. ContextMenuStrip is used to create context menus. And StatusStrip can be used to create status bars.
Standard GUI Control classes. The Windows forms library included a number of mainstream controls for input (such as TextBox and ComboBox) display of data (such as Label and ListView) and firing of commands (such as Button).
Layout classes. The layout classes in Windows Forms help control the layout of controls on a display surface, such as a form or control. For example, the FlowLayoutPanel lays out all the controls it contains in a series, and the TableLayoutPanel provides a control for laying out data in a fixed grid. More sophisticated layouts can be managed through the SplitContainer class which is a control that divides your display area into adjustable parts.
Data and Data Binding classes. You can also use Windows Forms to create the interfaces for binding to data sources such as databases, XML and flat files. The DataGridView is a sophisticated data control that allows for custom tables displaying information with specific cell, row, column, and border properties. Also, the BindingNavigator and BindingSource controls allow you to develop interfaces that navigate and work with data on a form in a standard way.
Helpful classes. It is possible to use a number of other helpful classes within the Windows Forms namespace that aid in the display of application related information in your application. Certain classes, provide Windows standard ways of displaying a ToolTip or an error (ErrorProvider). And the Help and HelpProvider classes are useful for displaying relevant Help information to a user of your applications.
Traditional Dialog Boxes. The final category of Windows Forms classes that we’d like to discuss are common dialog boxes. Dialog boxes give your application a consistent look and feel for common and repetitive functionality such as opening or saving a file, manipulating text properties such as font, size or color, printing or any of a number of other common processes within your application. For example, the OpenFileDialog and SaveFileDialog classes display dialog boxes for opening and saving files by users. The FontDialog class provides a user dialog box set Font properties used in a particular aspect of your application. The PageSetupDialog, PrintPreviewDialog, and PrintDialog classes display well-known and easily understood functionality in a standardized way as well. In addition to the common dialog boxes, a MessageBox class is also available to create a simple box to display and retrieve data from the user.
Conclusion. In addition to all the standard classes within the System.Windows.Formsnamespace, there are of course a number of very interesting third party controls libraries that are worth exploring when you’re looking for that “something extra” or special pizzazz in your user interface. The trick is finding the right balance between uniPaaS, standard .NET and third-party controls within your application. That’s all for this trip to the library.
Thursday, September 8, 2011
The Benefits of Metadata Driven Development
Wednesday, September 7, 2011
Welcome to the Magic Application Platform Blog
Tuesday, August 2, 2011
The New Magic Software Application Platform and the .NET Framework: The Best of Both Worlds

The new Magic Software Application Platform, uniPaaS 2.0, implements a new .NET deployment engine, which turns any existing uniPaaS application into a native .NET application. According to Microsoft, the .NET framework is comprised of a Common Language Runtime (CLR) that provides an abstraction layer over the operating system; Base Class Libraries that deliver pre-built code for common low-level programming tasks; and development frameworks and technologies offering reusable, customizable solutions for larger programming tasks. The new uniPaaS 2.0 engine uses the Windows Forms .NET library as the GUI front-end for applications. To be clear, Windows Forms is the name given by Microsoft to the graphical application programming interface (API) included in the Microsoft .NET Framework. Windows Forms provide access to native Microsoft Windows interface elements by wrapping the existing Windows API in managed code. uniPaaS 2.0 seamlessly leverages this capability to provide superb RIA and client/server GUI capabilities. In fact, uniPaaS 2.0 provides full integration with the Microsoft .NET framework to significantly enhance application design, functionality, and overall user experience. uniPaaS 2.0 also offers new RIA-related enhancements.
With uniPaaS 2.0, Magic Software will soon be offering its first Mobile Enterprise Application Platform with support for devices running the BlackBerry OS or Windows Mobile 6.5 as a client deployment platform immediately and both iPhone and Android in the near future .
In a press release last month, Magic Software Enterprises (NASDAQ:MGIC) included a quote from a Microsoft product manager regarding use of Magic Software’s integration platform for SharePoint integration. With the release of uniPaaS 2.0, it becomes clear that Magic Software is now even more closely aligned to leverage underlying Microsoft Windows and .NET framework technologies.
In fact, one might even say that uniPaaS 2.0 is a .NET programming language (just as one might also say that it is an IBM i programming language or an AIX programming language or a Linux programming language). So the difference is that last week you could only really say of uniPaaS 1.9 client/server programming was that it was a Windows programming language. Now, one can see Magic’s application platform as fully supporting and being fully supported by the .NET framework. In this sense it can sit alongside Visual Basic.NET and other .NET programming languages for Windows servers and clients just as it can sit alongside RPG and COBOL for creating IBM i server applications, etc.
The good news for enterprise IT departments that have adopted .NET application development as an enterprise standard is that uniPaaS 2.0 now meets (and even exceeds) the requirements for being a .NET framework application platform. This is good news because unlike existing .NET languages, uniPaaS supercharges .NET in a way that no other approach can.
How does Magic Software’s uniPaaS 2.0 application platform turbocharge the development and deployment of business applications? First, uniPaaS accelerates the development on .NET framework application by providing straightforward and streamlined development methodology that further abstracts the development process without sacrificing control. Then, it stabilizes the performance and operational integrity of applications by leveraging our proven, highly scalable application platform technologies.
This release is just another example of Magic Software's long history of providing solutions that protect your applications from the underlying changes in operating system , client, server and other technologies. By future-proofing your business applications with the use of the Magic Software application platform, you are able to outperform your competition and surpass all expectations for your ability to adapt to whatever changes the future may bring. To learn more, please access these resources.
Wednesday, June 15, 2011
Take A Load Off: Use RESTful Web Services in uniPaaS
Take A Load Off: Use RESTful Web Services in uniPaaS
What are RESTful web services?
- the URL address for the web service (you may call it a URI if you want, it is basically the same thing). The URL is the equivalent of a noun.
- the supported Internet media data type of the web service.
- the set of HTTP operations supported by the web service. Think of this as the verb.
HTTPCall runs an HTTP request and returns the results. You can consume REST services by using HTTPCall with any and all verbs. This function can be used instead of the HTTPGet and HTTPPost functions, thereby simplifying implementation of RESTful Web Services in uniPaaS. The syntax within uniPaaS for the use of HTTPCall is as follows: | ||
HTTPCall (verb, service URL, message, [header1], [header2], …) | ||
The “verb” is a string indicating the method. The options include GET, POST, PUT, DELETE, and HEAD. You can GET a list or a specific member of a collection. POST is like an append operation in that it adds a member to a collection. PUT replaces an entire collection or a specified member of the collection. DELETE erases the entire collection or a specific member of the collection. HEAD is a header that provides additional header information. The “service URL” is the string that represents the HTTP address where you will retrieve the HTTP request. The HTTPCall function can easily pass a user name and password to the service URL for a secure, rights-based approach to Web Services. For example, when a uniPaaS client is accessing a web server that requires a user name and password, the URL should be HTTP://User:Password@[URL]. uniPaaS will also support secret names by following this approach: HTTP://%user_secretname%:%pass_secretname%@[URL] Obviously, the “message” is a string with the text of the message. There is no limitation on the message content. Messages are self-descriptive and stateless. The use of “headers” is strictly optional and you may include as many as needed. Each header may contain a string that provides additional header information as requested. | ||
As one might expect, the HTTPCall returns a BLOB containing whatever information results from the HTTP request. If the function fails to make the connection, a blank value is returned. You can get the response headers using the HTTPLastHeader function. Magic Software provides both Online and Rich Client sample programs that detail the use of the HTTPCall function. Look for sample programs EL23 and REL23 to get an idea of how this function can be implemented. One of the traditional disadvantages of REST is that it doesn’t do well with complex data architectures such as those of relational databases. In this regard, using uniPaaS allows you to bridge the gap between REST and traditional databases. With uniPaaS, information is exchanged and represented using RESTful Web Services while at the same time you can store enterprise data in industry standard databases. REST advocates will simply say databases are too complex and should change to conform to the way the Web works. With uniPaaS, you avoid that argument altogether. It just works. | ||





