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Gary Edwards

Apple, Microsoft Challenged By Streaming Software Plan - Cloud - 0 views

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    Very interesting the way JavaScript Libraries are continuing to challenge Native Code for Web Application dominance.    excerpt: "The code library, ORBX.js, can be thought of as a cloud-based alternative to Google's Native Client technology. It permits Linux, OS X and Windows applications to run on remote servers and to be presented in a Web browser." "With ORBX.js, native code and legacy applications can be hosted in the cloud (e.g. Amazon EC2), and stream interactive graphics, 3D rendering or low latency video to a standard HTML5 page without using plugins or native code, or even the video tag (which, like Google NaCL,is vendor specific - ORBX.js works on all five major browsers)," explained Otoy founder and CEO Jules Urbach in an email. "The video codec created for ORBX.js can decode 1080p60 at a quality on par with H.264, using only JavaScript." "With ORBX.js and a cloud service provider, you could conceivably run Value's PC Steam client on an Apple iMac or Google Chromebook. You could run Autodesk 3DS Max 2014 on an Android Nexus 7 tablet. You could run a big budget, graphically demanding game title like Left 4 Dead 2 in a Web browser, without any plugins, Flash, Java, NaCL or other supporting technology."
Gary Edwards

Google shows Native Client built into HTML 5 | Webware - CNET- Shankland - 0 views

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    Whoops. This is the better article! ZDNet got the dregs. CNET got the real thing: Google Native Client, HTML5, GWT, Wave, Web Worker Threads, webkit/chromium, Chrome, O3D "Google wants its Native Client technology to be a little more native. Google Native Client, still highly experimental, lets browsers run program modules natively on an x86 processor for higher performance than with Web programming technologies such as JavaScript or Flash that involve more software layers to process and execute the code. But to use it, there's a significant barrier: people must install a browser plug-in.
Gary Edwards

Google coding tool advances cloud computing | Deep Tech - CNET News - 0 views

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    Google has released a programming tool to help move its Native Client project--and more broadly, its cloud-computing ambitions--from abstract idea to practical reality. The new Native Client software developer kit, though only a developer preview version, is designed to make it easier for programmers to use the Net giant's browser-boosting Native Client technology. "The Native Client SDK preview...includes just the basics you need to get started writing an app in minutes," Google programmer David Springer said Wednesday in a blog post announcing the SDK, a week before the developer-oriented Google I/O conference. "We'll be updating the SDK rapidly in the next few months."
Gary Edwards

Google shows Native Client built into HTML 5 - ZDNet.co.uk - 0 views

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    Good article from Stephen Shankland describing how the Wave-HTML5-O3D-Web Worker pieces fit. He left out GWT. But this after all, one very big picture. Google has thrown down a game changer. Wave represents one of those rare inflection points where everything immediately changes. There is no way to ignore the elephant that just sat on your face. Google has been demonstrating its sandboxing technology for making web applications perform at similar levels to those associated with native desktop applications. Google Native Client, still highly experimental, lets browsers run program modules natively on an x86 processor for higher performance than with web-programming technologies, such as JavaScript or Flash, that involve more software layers to process and execute the code. But to use it, there is a significant barrier: people must install a browser plug-in.
Gary Edwards

How would you fix the Linux desktop? | ITworld - 0 views

  • VB integrates with COM
  • QL Server has a DCE/RPC interface. 
  • MS-Office?  all the components (Excel, Word etc.) have a COM and an OLE interface.
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    Comment posted 1 week ago in reply to Zzgomes .....  by Ed Carp.  Finally someone who gets it! OBTW, i replaced Windows 7 with Linux Mint over a year ago and hope to never return.  The thing is though, i am not a member of a Windows productivity workgroup, nor do i need to connect to any Windows databases or servers.  Essentially i am not using any Windows business process or systems.  It's all Internet!!! 100% Web and Cloud Services systems.  And that's why i can dump Windows without a blink! While working for Sursen Corp, it was a very different story.  I had to have Windows XP and Windows 7, plus MSOffice 2003-2007, plus Internet Explorer with access to SharePoint, Skydrive/Live.com.  It's all about the business processes and systems you're part of, or must join.   And that's exactly why the Linux Desktop has failed.  Give Cloud Computing the time needed to re-engineer and re-invent those many Windows business processes, and the Linux Desktop might suceed.  The trick will be in advancing both the Linux Desktop and Application developer layers to target the same Cloud Computing services mobility targets.  ..... Windows will take of itself.   The real fight is in the great transition of business systems and processes moving from the Windows desktp/workgroup productivity model to the Cloud.  Linux Communities must fight to win the great transition. And yes, in the end this all about a massive platform shift.  The fourth wave of computing began with the Internet, and will finally close out the desktop client/server computing model as the Web evolves into the Cloud. excerpt: Most posters here have it completely wrong...the *real* reason Linux doesn't have a decent penetration into the desktop market is quite obvious if you look at the most successful desktop in history - Windows.  All this nonsense about binary driver compatibility, distro fragmentation, CORBA, and all the other red herrings that people are talking about are completely irrelevant
Gary Edwards

Introducing CloudStack - 0 views

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    CloudStack Manifesto Before getting into the framework specifics, it would be worthwhile to cover some of the design principles we had in mind while we were building CloudStack: CloudStack brings together the best of the web and the desktop: We strongly believe in the convergence of the desktop and the web and will continually strive to expose more services that bring out the best from both. CloudStack enables rapid application development and deployment: Out of the box, CloudStack provides a fully brand able and deployable shell application that can be used as a starting point to jumpstart application development. CloudStack also provides a scalable deployment environment for hosting your applications. CloudStack leverages existing web technologies: We built the CloudStack P2WebServer container over the J2EE compliant Jetty web server. As a result, CloudStack applications are built using standard web technologies like AJAX, HTML, JavaScript, Flash, Flex, etc. CloudStack does not reinvent the wheel: We strive to reuse as much as possible from other open source projects and standards. By creatively stringing together seemingly disparate pieces, like P2P and HTTP, it?fs amazing to create something that's really much greater than the sum of the parts. CloudStack does aim to simplify existing technologies: We will abstract and simplify existing interfaces if needed. For example, we built simpler abstractions for JXTA (P2P) and Jena (RDF Store). CloudStack encourages HTML-based interfaces: We believe that the web browser is the most portable desktop application container with HTML being the lingua franca of the web. Rather than writing a native widget interface for the local desktop application and another web-based interface for the remote view, we encourage writing a single interface that can be reused across both local and remote views. HTML based interfaces are inherently cross-platform and provide good decoupling of design from code (versus having the UI as compiled
Gary Edwards

Strobe Launches Game-Changing HTML5 App Platform | TechCrunch - 1 views

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    Today, Strobe Inc. is launching a new platform that helps developers build HTML5-based Web applications for desktops, smartphones and tablets, and centrally manage them from a single interface. The launch is a major leap forward in HTML5 app development. From one interface, teams can manage code (both test code and production code), configure the app's deployment across platforms (Web, Android, iOS, etc.), add additional services (social, push notifications, authentication, etc.), and even track analytics within an easy-to-use dashboard. In short, it's a comprehensive platform that makes building apps with Web technologies, like HTML5 and JavaScript, not just possible, but easy, straightforward and fast. The company was co-founded by Ruby on Rails Core Team member Carl Lerche, Ruby on Rails, jQuery and SproutCore Core team member Yehuda Katz, and Charles Jolley, formerly the JavaScript Frameworks Manager for Apple. At Apple, Jolley worked on Apple's Web products like MobileMe and iCloud. He's also the creator of the open source JavaScript framework, SproutCore, which powered Apple's Web services and is now a key part of the Strobe platform. In addition to SproutCore, Strobe also uses PhoneGap, the popular HTML5 app platform. PhoneGap lets developers author apps using Web technologies then deliver them in a native wrapper to the iTunes App Store, Android Marketplace and other app stores. It also happens to integrate nicely with SproutCore.
Gary Edwards

Google plan to kill Javascript with Dart, fight off Apple * The Register - 0 views

  • Details on Dart on the Goto conference site were brief and Google has not officially said anything. Goto called Dart: "A new programming language for structured web programming." According to the email, though, Dash has been designed to hit three objectives: improved performance, developer usability and what Google is calling the "ability to be tooled".
  • Translated that last bit means an ability to be used with tools for coding activities such as refactoring used in large-scale programming projects.
  • Driving Dash/Dart is Google's fear of Apple and the rise of the closed web and what that could mean to Google as a programming platform for accessing the web. Google is apparently concerned innovation is moving off the web as we and Tim Berners-Lee know it, and on to the popular but fenced-off iPhone and iPad. That poses a huge problem for Google when you've built a search and ads empire on a web without fences.
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  • The web has succeeded historically to some extent in spite of the web platform, based primarily on the strength of its reach. The emergence of compelling alternative platforms like iOS has meant that the web platform must compete on its merits, not just its reach. Javascript as it exists today will likely not be a viable solution long-term. Something must change.
  • The language has been designed to be consumed in the browser VM, on the front-end server and different compilers
  • Google has folded the team behind its JSPrime successor to GWT into the effort building the new language, while Joy will be built in to provide templating and model-view controller (MVC) features for code development.
Gary Edwards

XML Production Workflows? Start with the Web and XHTML - 1 views

  • Challenges: Some Ugly Truths The challenges of building—and living with—an XML workflow are clear enough. The return on investment is a long-term proposition. Regardless of the benefits XML may provide, the starting reality is that it represents a very different way of doing things than the one we are familiar with. The Word Processing and Desktop Publishing paradigm, based on the promise of onscreen, WYSIWYG layout, is so dominant as to be practically inescapable. It has proven really hard to get from here to there, no matter how attractive XML might be on paper. A considerable amount of organizational effort and labour must be expended up front in order to realize the benefits. This is why XML is often referred to as an “investment”: you sink a bunch of time and money up front, and realize the benefits—greater flexibility, multiple output options, searching and indexing, and general futureproofing—later, over the long haul. It is not a short-term return proposition. And, of course, the returns you are able to realize from your XML investment are commensurate with what you put in up front: fine-grained, semantically rich tagging is going to give you more potential for searchability and recombination than a looser, more general-purpose approach, but it sure costs more. For instance, the Text Encoding Initiative (TEI) is the grand example of pouring enormous amounts of energy into the up-front tagging, with a very open-ended set of possibilities down the line. TEI helpfully defines a level to which most of us do not have to aspire.[5] But understanding this on a theoretical level is only part of the challenge. There are many practical issues that must be addressed. Software and labour are two of the most critical. How do you get the content into XML in the first place? Unfortunately, despite two decades of people doing SGML and XML, this remains an ugly question.
  • Practical Challenges In 2009, there is still no truly likeable—let alone standard—editing and authoring software for XML. For many (myself included), the high-water mark here was Adobe’s FrameMaker, substantially developed by the late 1990s. With no substantial market for it, it is relegated today mostly to the tech writing industry, unavailable for the Mac, and just far enough afield from the kinds of tools we use today that its adoption represents a significant hurdle. And FrameMaker was the best of the breed; most of the other software in decent circulation are programmers’ tools—the sort of things that, as Michael Tamblyn pointed out, encourage editors to drink at their desks. The labour question represents a stumbling block as well. The skill-sets and mind-sets that effective XML editors need have limited overlap with those needed by literary and more traditional production editors. The need to think of documents as machine-readable databases is not something that comes naturally to folks steeped in literary culture. In combination with the sheer time and effort that rich tagging requires, many publishers simply outsource the tagging to India, drawing a division of labour that spans oceans, to put it mildly. Once you have XML content, then what do you do with it? How do you produce books from it? Presumably, you need to be able to produce print output as well as digital formats. But while the latter are new enough to be generally XML-friendly (e-book formats being largely XML based, for instance), there aren’t any straightforward, standard ways of moving XML content into the kind of print production environments we are used to seeing. This isn’t to say that there aren’t ways of getting print—even very high-quality print—output from XML, just that most of them involve replacing your prepress staff with Java programmers.
  • Why does this have to be so hard? It’s not that XML is new, or immature, or untested. Remember that the basics have been around, and in production, since the early 1980s at least. But we have to take account of a substantial and long-running cultural disconnect between traditional editorial and production processes (the ones most of us know intimately) and the ways computing people have approached things. Interestingly, this cultural divide looked rather different in the 1970s, when publishers were looking at how to move to digital typesetting. Back then, printers and software developers could speak the same language. But that was before the ascendancy of the Desktop Publishing paradigm, which computerized the publishing industry while at the same time isolating it culturally. Those of us who learned how to do things the Quark way or the Adobe way had little in common with people who programmed databases or document-management systems. Desktop publishing technology isolated us in a smooth, self-contained universe of toolbars, grid lines, and laser proofs. So, now that the reasons to get with this program, XML, loom large, how can we bridge this long-standing divide?
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  • Using the Web as a Production Platform The answer, I think, is right in front of you. The bridge is the Web, a technology and platform that is fundamentally based on XML, and which many publishers are by now comfortably familiar with. Perhaps not entirely comfortably, but at least most publishers are already working with the Web; they already either know or have on staff people who understand it and can work with it. The foundation of our argument is this: rather than looking at jumping to XML in its full, industrial complexity, which seems to be what the O'Reilly-backed StartWithXML initiative[6] is suggesting, publishers instead leverage existing tools and technologies—starting with the Web—as a means of getting XML workflows in place. This means making small investments and working with known tools rather than spending tens of thousands of dollars on XML software and rarefied consultants. It means re-thinking how the existing pieces of the production toolchain fit together; re-thinking the existing roles of software components already in use. It means, fundamentally, taking the Web seriously as a content platform, rather than thinking of it as something you need to get content out to, somehow. If nothing else, the Web represents an opportunity to think about editorial and production from outside the shrink-wrapped Desktop Publishing paradigm.
  • Is the Web made of Real XML? At this point some predictable objections can be heard: wait a moment, the Web isn’t really made out of XML; the HTML that makes up most of the Web is at best the bastard child of SGML, and it is far too flaky/unstructured/underpowered to be taken seriously. We counter by arguing that although HTML on the Web exists in a staggering array of different incarnations, and that the majority of it is indeed an unstructured mess, this does not undermine the general principle that basic, ubiquitous Web technologies can make a solid platform for content management, editorial process, and production workflow.
  • With the advent of a published XML standard in the late 1990s came the W3C’s adoption of XHTML: the realization of the Web’s native content markup as a proper XML document type. Today, its acceptance is almost ubiquitous, even while the majority of actual content out there may not be strictly conforming. The more important point is that most contemporary Web software, from browsers to authoring tools to content management systems (from blogs to enterprise systems), are capable of working with clean, valid XHTML. Or, to put the argument the other way around, clean, valid XHTML content plays absolutely seamlessly with everything else on the Web.[7]
  • The objection which follows, then, will be that even if we grant that XHTML is a real XML document type, that it is underpowered for “serious” content because it is almost entirely presentation (formatting) oriented; it lacks any semantic depth. In XHTML, a paragraph is a paragraph is a paragraph, as opposed to a section or an epigraph or a summary.
  • n contrast, more “serious” XML document types like DocBook[8] or DITA-derived schemas[9] are capable of making semantic distinctions about content chunks at a fine level of granularity and with a high degree of specificity.
  • So there is an argument for recalling the 80:20 rule here. If XHTML can provide 80% of the value with just 20% of the investment, then what exactly is the business case for spending the other 80% to achieve that last 20% of value? We suspect the ratio is actually quite a bit steeper than 80:20 for most publishers.
  • Furthermore, just to get technical for a moment, XHTML is extensible in a fairly straightforward way, through the common “class” attribute on each element. Web developers have long leveraged this kind of extensibility in the elaboration of “microformats” for semantic-web applications.[10] There is no reason why publishers shouldn’t think to use XHTML’s simple extensibility in a similar way for their own ends.
  • XHTML, on the other hand, is supported by a vast array of quotidian software, starting with the ubiquitous Web browser. For this very reason, XHTML is in fact employed as a component part of several more specialized document types (ONIX and ePub among them).
  • Why re-invent a general-purpose prose representation when XHTML already does the job?
  • It is worth pausing for a moment to consider the role of XHTML in the ePub standard for ebook content. An ePub file is, anatomically, a simply disguised zip archive. Inside the zip archive are a few standard component parts: there are specialized files that declare metadata about the book, and about the format of the book. And then there is the book’s content, represented in XHTML. An ePub book is a Web page in a wrapper.
  • To sum up the general argument: the Web as it already exists presents incredible value to publishers, as a platform for doing XML content management with existing (and often free) tools, and without having to go blindly into the unknown. At this point, we can offer a few design guidelines: prefer existing and/or ubiquitous tools over specialized ones wherever possible; prefer free software over proprietary systems where possible; prefer simple tools controlled and coordinated by human beings over fully automated (and therefore complex) systems; play to our strengths: use Web software for storing and managing content, use layout software for layout, and keep editors and production people in charge of their own domains.
  • Putting the Pieces Together: A Prototype
  • At the SFU Master of Publishing Program, we have been chipping away at this general line of thinking for a few years. Over that time, Web content management systems have been getting more and more sophisticated, all the while getting more streamlined and easier to use. (NB: if you have a blog, you have a Web content management system.) The Web is beginning to be recognized as a writing and editing environment used by millions of people. And the ways in which content is represented, stored, and exchanged online have become increasingly robust and standardized.
  • The missing piece of the puzzle has been print production: how can we move content from its malleable, fluid form on line into the kind of high-quality print production environments we’ve come to expect after two decades of Desktop Publishing?
  • Anyone who has tried to print Web content knows that the existing methods leave much to be desired (hyphenation and justification, for starters). In the absence of decent tools for this, most publishers quite naturally think of producing the print content first, and then think about how to get material onto the Web for various purposes. So we tend to export from Word, or from Adobe, as something of an afterthought.
  • While this sort of works, it isn’t elegant, and it completely ignores the considerable advantages of Web-based content management.
  • Content managed online is stored in one central location, accessible simultaneously to everyone in your firm, available anywhere you have an Internet connection, and usually exists in a much more fluid format than Word files. If only we could manage the editorial flow online, and then go to print formats at the end, instead of the other way around. At SFU, we made several attempts to make this work by way of the supposed “XML import” capabilities of various Desktop Publishing tools, without much success.[12]
  • In the winter of 2009, Adobe solved this part of the problem for us with the introduction of its Creative Suite 4. What CS4 offers is the option of a complete XML representation of an InDesign document: what Adobe calls IDML (InDesign Markup Language).
  • The IDML file format is—like ePub—a simply disguised zip archive that, when unpacked, reveals a cluster of XML files that represent all the different facets of an InDesign document: layout spreads, master pages, defined styles, colours, and of course, the content.
  • IDML is a well thought-out XML standard that achieves two very different goals simultaneously: it preserves all of the information that InDesign needs to do what it does; and it is broken up in a way that makes it possible for mere mortals (or at least our Master of Publishing students) to work with it.
  • What this represented to us in concrete terms was the ability to take Web-based content and move it into InDesign in a straightforward way, thus bridging Web and print production environments using existing tools and skillsets, with a little added help from free software.
  • We would take clean XHTML content, transform it to IDML-marked content, and merge that with nicely designed templates in InDesign.
  • The result is an almost push-button publication workflow, which results in a nice, familiar InDesign document that fits straight into the way publishers actually do production.
  • Tracing the steps To begin with, we worked backwards, moving the book content back to clean XHTML.
  • The simplest method for this conversion—and if you want to create Web content, this is an excellent route—was to use Adobe’s “Export to Digital Editions” option, which creates an ePub file.
  • Recall that ePub is just XHTML in a wrapper, so within the ePub file was a relatively clean XHTML document. It was somewhat cleaner (that is, the XHTML tagging was simpler and less cluttered) than InDesign’s other Web-oriented exports, possibly because Digital Editions is a well understood target, compared with somebody’s website.
  • In order to achieve our target of clean XHTML, we needed to do some editing; the XHTML produced by InDesign’s “Digital Editions” export was presentation-oriented. For instance, bulleted list items were tagged as paragraphs, with a class attribute identifying them as list items. Using the search-and-replace function, we converted such structures to proper XHTML list and list-item elements. Our guiding principle was to make the XHTML as straightforward as possible, not dependent on any particular software to interpret it.
  • We broke the book’s content into individual chapter files; each chapter could then carry its own basic metadata, and the pages conveniently fit our Web content management system (which is actually just a wiki). We assembled a dynamically generated table of contents for the 12 chapters, and created a cover page. Essentially, the book was entirely Web-based at this point.
  • When the book chapters are viewed online, they are formatted via a CSS2 stylesheet that defines a main column for content as well as dedicating screen real estate for navigational elements. We then created a second template to render the content for exporting; this was essentially a bare-bones version of the book with no navigation and minimal styling. Pages (or even the entire book) can be exported (via the “Save As...” function in a Web browser) for use in either print production or ebook conversion. At this point, we required no skills beyond those of any decent Web designer.
  • Integrating with CS4 for Print Adobe’s IDML language defines elements specific to InDesign; there is nothing in the language that looks remotely like XHTML. So a mechanical transformation step is needed to convert the XHTML content into something InDesign can use. This is not as hard as it might seem.
  • Both XHTML and IDML are composed of straightforward, well-documented structures, and so transformation from one to the other is, as they say, “trivial.” We chose to use XSLT (Extensible Stylesheet Language Transforms) to do the work. XSLT is part of the overall XML specification, and thus is very well supported in a wide variety of tools. Our prototype used a scripting engine called xsltproc, a nearly ubiquitous piece of software that we found already installed as part of Mac OS X (contemporary Linux distributions also have this as a standard tool), though any XSLT processor would work.
  • In other words, we don’t need to buy InCopy, because we just replaced it with the Web. Our wiki is now plugged directly into our InDesign layout. It even automatically updates the InDesign document when the content changes. Credit is due at this point to Adobe: this integration is possible because of the open file format in the Creative Suite 4.
  • We wrote an XSLT transformation script[18] that converted the XHTML content from the Web into an InCopy ICML file. The script itself is less than 500 lines long, and was written and debugged over a period of about a week by amateurs (again, the people named at the start of this article). The script runs in a couple of seconds, and the resulting .icml file can then be “placed” directly into an InDesign template. The ICML file references an InDesign stylesheet, so the template file can be set up with a house-styled layout, master pages, and stylesheet definitions for paragraphs and character ranges.
  • Rather than a public-facing website, our system relies on the Web as a content management platform—of course a public face could easily be added.
  • It should be noted that the Book Publishing 1 proof-of-concept was artificially complex; we began with a book laid out in InDesign and ended up with a look-alike book laid out in InDesign. But next time—for instance, when we publish Book Publishing 2—we can begin the process with the content on the Web, and keep it there throughout the editorial process. The book’s content could potentially be written and edited entirely online, as Web content, and then automatically poured into an InDesign template at proof time. “Just in time,” as they say. This represents an entirely new way of thinking of book production. With a Web-first orientation, it makes little sense to think of the book as “in print” or “out of print”—the book is simply available, in the first place online; in the second place in derivative digital formats; and third, but really not much more difficult, in print-ready format, via the usual InDesign CS print production system publishers are already familiar with.
  • Creating Ebook Files Creating electronic versions from XHTML source is vastly simpler than trying to generate these out of the existing print process. The ePub version is extremely easy to generate; so is online marketing copy or excerpts for the Web, since the content begins life Web-native.
  • Since an ePub file is essentially XHTML content in a special wrapper, all that is required is that we properly “wrap” our XHTML content. Ideally, the content in an ePub file is broken into chapters (as ours was) and a table of contents file is generated in order to allow easy navigation within an ebook reader. We used Julian Smart’s free tool eCub[19] to simply and automatically generate the ePub wrapper and the table of contents. The only custom development we did was to create a CSS stylesheet for the ebook so that headings and paragraph indents looked the way we wanted. Starting with XHTML content, creating ePub is almost too easy.
  • today, we are able to put the process together using nothing but standard, relatively ubiquitous Web tools: the Web itself as an editing and content management environment, standard Web scripting tools for the conversion process, and the well-documented IDML file format to integrate the layout tool.
  • Our project demonstrates that Web technologies are indeed good enough to use in an XML-oriented workflow; more specialized and expensive options are not necessarily required. For massive-scale enterprise publishing, this approach may not offer enough flexibility, and the challenge of adding and extracting extra semantic richness may prove more trouble than it's worth.
  • But for smaller firms who are looking at the straightforward benefits of XML-based processes—single source publishing, online content and workflow management, open and accessible archive formats, greater online discoverability—here is a way forward.
  • The result is very simple and easy to use. Our demonstration requires that a production editor run the XSLT transformation script manually, but there is no reason why this couldn’t be built directly into the Web content management system so that exporting the content to print ran the transformation automatically. The resulting file would then be “placed” in InDesign and proofed.
  • The final piece of our puzzle, the ability to integrate print production, was made possible by Adobe's release of InDesign with an open XML file format. Since the Web's XHTML is also XML, is can be easily and confidently transformed to the InDesign format.
  • Such a workflow—beginning with the Web and exporting to print—is surely more in line with the way we will do business in the 21st century, where the Web is the default platform for reaching audiences, developing content, and putting the pieces together. It is time, we suggest, for publishers to re-orient their operations and start with the Web.
  • Using the Web as a Production Platform
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    I was looking for an answer to a problem Marbux had presented, and found this interesting article.  The issue was that of the upcoming conversion of the Note Case Pro (NCP) layout engine to the WebKit layout engine, and what to do about the NCP document format. My initial reaction was to encode the legacy NCP document format in XML, and run an XSLT to a universal pivot format like TEI-XML.  From there, the TEI-XML community would provide all the XSLT transformation routines for conversion to ODF, OOXML, XHTML, ePUB and HTML/CSS. Researching the problems one might encounter with this approach, I found this article.  Fascinating stuff. My take away is that TEI-XML would not be as effective a "universal pivot point" as XHTML.  Or perhaps, if NCP really wants to get aggressive; IDML - InDesign Markup Language. As an after thought, i was thinking that an alternative title to this article might have been, "Working with Web as the Center of Everything".
Gary Edwards

HTML5 Will Transform Mobile Business Intelligence and CRM - 0 views

  • "HTML5 is a big push forward, especially considering how it handles different media as well as cross-device portability," said Tiemo Winterkamp, senior vice president of global marketing at business intelligence (BI) vendor arcplan
  • one big benefit of HTML5 is that browsers will be able to integrate additional content like multimedia, mail and RIA with enhanced rendering capabilities. And plans have been made to allow future HTML5 browsers to securely access sensor and touch information, which makes HTML5 a viable alternative to native application development for such functions.
    • Gary Edwards
       
      The browser becomes the compound document container, but HTML5 is clearly the document format.  Any application or Office Suite capable of creating HTML5 documents, or connecting, linking and embedding information and application services in another apps HTML5 document would be cloud productivity platform ready.  Similar to a local Windows workgroup, the database and transaction processing servers can be in the cloud, connecting to browser based apps and interfaces where the essence of the new compound document is created or interactively expressed.  Kind of cool having GPS built into the information stream instead of having to type in a zip code, and refreshing a legacy compound document or compound chart.
  • With HTML5, nearly every piece of internet content we can envision today will be able to be coded in HTML, Javascript and Cascading Style Sheets (CSS), and therefore automatically portable to all environments and browsers supporting HTML5.
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  • "This approach is very attractive for BI vendors who aim to provide business critical information anywhere, anytime and on any device," said Winterkamp. "The result is an attractive, multi-functional user interface with as little design and deployment effort as possible. And more importantly, you only need to develop these apps once for all devices."
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    Good article on the increasing use of HTML5 for business apps.  The focus is on mobile devices, even though HTML5 clearly targets anything capable of running a WebKit class browser.  The article also demonstrates, albeit unwittingly, the use of HTML5 as a cloud platform "Compound Document" model.  Something far more important than the comparatively limited focus of BI and CRM mobility apps.   A Cloud Producitvity Platform will replace the legacy Desktop Productivity Platform anchored on Microsoft's Windows-MSOffice workgroup networking.  Just as Compound Documents were the fuel of desktop productivity apps and services, a new breed of compound documents will fuel cloud productivity based workgroups.  The article even demonstrates the basics of embedding charts, interactive feeds, media  and database streams in HTML5 document interfaces.  Still missing real time messaging between apps, but clearly the HTML5 cloud compound document model has arrived. excerpt: HTML5 will lead to richer mobile BI and CRM apps that can be used across browsers and devices. HTML has evolved considerably since it was first mapped out by Tim Berners-Lee more than 20 years ago. Now we're up to HTML 5.0, which could have a significant effect on the business intelligence and CRM landscape.
Paul Merrell

[Phoronix] Google Web Designer Is Now Natively Available On Linux - 0 views

  • Last year Google unveiled the Google Web Designer as a program to put out clean, human-readable HTML5 code and this WYSIWYG editor can take advantage of the full realm of new HTML5 and JavaScript possibilities. That tool for web developers is now finally available to Linux users.
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