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BitTorrent downloads linked to Hollywood film studios - Neowin - 1 views

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    # ! #Entertainment #Politics. [# ! Guess who -mainly- drives piracy to manipulate politics... #clue: http://www.neowin.net/news/bittorrent-downloads-linked-to-hollywood-film-studios] "By John Callaham @JCalmn · Dec 14, 2011 · Hot! 36 There's a lot of pirated movies, TV shows, games and other copyrighted content that's transferred via BitTorrent web sites. Now there's a new web site, YouHaveDownloaded.com, that can not only trace the IP addresses that have been used for BitTorrent file downloading but also what kinds of files those IP addresses have accessed in their history."
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    [# ! they create piracy manipulate laws Intenet media else. ee below...] "By John Callaham @JCalmn · Dec 14, 2011 · Hot! 36 There's a lot of pirated movies, TV shows, games and other copyrighted content that's transferred via BitTorrent web sites. Now there's a new web site, YouHaveDownloaded.com, that can not only trace the IP addresses that have been used for BitTorrent file downloading but also what kinds of files those IP addresses have accessed in their history."
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United States Hosts Most Pirate Sites, UK Crime Report Finds | TorrentFreak - 0 views

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    " Ernesto on October 17, 2014 C: 27 Breaking The latest UK IP Crime Report reveals that significant progress is being made in the fight against online piracy but still many challenges remain. One of the main problems traces back to U.S. hosting companies, who according to the report give shelter to most of the investigated pirate sites."
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    " Ernesto on October 17, 2014 C: 27 Breaking The latest UK IP Crime Report reveals that significant progress is being made in the fight against online piracy but still many challenges remain. One of the main problems traces back to U.S. hosting companies, who according to the report give shelter to most of the investigated pirate sites."
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Free VPN - Free download and software reviews - CNET Download.com - 1 views

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    "CNET Editors' review by: CNET staff on August 20, 2012 A VPN is a virtual private network, an isolated subset of the Internet that allows for much greater security and privacy without sacrificing the Internet's ability to connect far-flung PCs and users together. VPNs have lots of uses, such as telecommuting into a corporate network, secure collaboration with others -- even on the other side of the world -- and private browsing. With a VPN, you can surf the Web anonymously and securely, leaving no traces. Free VPN from VPN Master is an easy-to-use VPN tool for Windows. Free VPN comes with more than 1,400 minutes of free access on VPN Master's network. After that, you can opt for an inexpensive monthly plan, if you'd like. We looked around for some sort of limitations or fine print, but it appears that your free minutes start when you start using Free VPN and end when they run out."
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Edward Snowden Explains How To Reclaim Your Privacy - 0 views

  • Micah Lee: What are some operational security practices you think everyone should adopt? Just useful stuff for average people. Edward Snowden: [Opsec] is important even if you’re not worried about the NSA. Because when you think about who the victims of surveillance are, on a day-to-day basis, you’re thinking about people who are in abusive spousal relationships, you’re thinking about people who are concerned about stalkers, you’re thinking about children who are concerned about their parents overhearing things. It’s to reclaim a level of privacy. The first step that anyone could take is to encrypt their phone calls and their text messages. You can do that through the smartphone app Signal, by Open Whisper Systems. It’s free, and you can just download it immediately. And anybody you’re talking to now, their communications, if it’s intercepted, can’t be read by adversaries. [Signal is available for iOS and Android, and, unlike a lot of security tools, is very easy to use.] You should encrypt your hard disk, so that if your computer is stolen the information isn’t obtainable to an adversary — pictures, where you live, where you work, where your kids are, where you go to school. [I’ve written a guide to encrypting your disk on Windows, Mac, and Linux.] Use a password manager. One of the main things that gets people’s private information exposed, not necessarily to the most powerful adversaries, but to the most common ones, are data dumps. Your credentials may be revealed because some service you stopped using in 2007 gets hacked, and your password that you were using for that one site also works for your Gmail account. A password manager allows you to create unique passwords for every site that are unbreakable, but you don’t have the burden of memorizing them. [The password manager KeePassX is free, open source, cross-platform, and never stores anything in the cloud.]
  • The other thing there is two-factor authentication. The value of this is if someone does steal your password, or it’s left or exposed somewhere … [two-factor authentication] allows the provider to send you a secondary means of authentication — a text message or something like that. [If you enable two-factor authentication, an attacker needs both your password as the first factor and a physical device, like your phone, as your second factor, to login to your account. Gmail, Facebook, Twitter, Dropbox, GitHub, Battle.net, and tons of other services all support two-factor authentication.]
  • We should armor ourselves using systems we can rely on every day. This doesn’t need to be an extraordinary lifestyle change. It doesn’t have to be something that is disruptive. It should be invisible, it should be atmospheric, it should be something that happens painlessly, effortlessly. This is why I like apps like Signal, because they’re low friction. It doesn’t require you to re-order your life. It doesn’t require you to change your method of communications. You can use it right now to talk to your friends.
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  • Lee: What do you think about Tor? Do you think that everyone should be familiar with it, or do you think that it’s only a use-it-if-you-need-it thing? Snowden: I think Tor is the most important privacy-enhancing technology project being used today. I use Tor personally all the time. We know it works from at least one anecdotal case that’s fairly familiar to most people at this point. That’s not to say that Tor is bulletproof. What Tor does is it provides a measure of security and allows you to disassociate your physical location. … But the basic idea, the concept of Tor that is so valuable, is that it’s run by volunteers. Anyone can create a new node on the network, whether it’s an entry node, a middle router, or an exit point, on the basis of their willingness to accept some risk. The voluntary nature of this network means that it is survivable, it’s resistant, it’s flexible. [Tor Browser is a great way to selectively use Tor to look something up and not leave a trace that you did it. It can also help bypass censorship when you’re on a network where certain sites are blocked. If you want to get more involved, you can volunteer to run your own Tor node, as I do, and support the diversity of the Tor network.]
  • Lee: So that is all stuff that everybody should be doing. What about people who have exceptional threat models, like future intelligence-community whistleblowers, and other people who have nation-state adversaries? Maybe journalists, in some cases, or activists, or people like that? Snowden: So the first answer is that you can’t learn this from a single article. The needs of every individual in a high-risk environment are different. And the capabilities of the adversary are constantly improving. The tooling changes as well. What really matters is to be conscious of the principles of compromise. How can the adversary, in general, gain access to information that is sensitive to you? What kinds of things do you need to protect? Because of course you don’t need to hide everything from the adversary. You don’t need to live a paranoid life, off the grid, in hiding, in the woods in Montana. What we do need to protect are the facts of our activities, our beliefs, and our lives that could be used against us in manners that are contrary to our interests. So when we think about this for whistleblowers, for example, if you witnessed some kind of wrongdoing and you need to reveal this information, and you believe there are people that want to interfere with that, you need to think about how to compartmentalize that.
  • Tell no one who doesn’t need to know. [Lindsay Mills, Snowden’s girlfriend of several years, didn’t know that he had been collecting documents to leak to journalists until she heard about it on the news, like everyone else.] When we talk about whistleblowers and what to do, you want to think about tools for protecting your identity, protecting the existence of the relationship from any type of conventional communication system. You want to use something like SecureDrop, over the Tor network, so there is no connection between the computer that you are using at the time — preferably with a non-persistent operating system like Tails, so you’ve left no forensic trace on the machine you’re using, which hopefully is a disposable machine that you can get rid of afterward, that can’t be found in a raid, that can’t be analyzed or anything like that — so that the only outcome of your operational activities are the stories reported by the journalists. [SecureDrop is a whistleblower submission system. Here is a guide to using The Intercept’s SecureDrop server as safely as possible.]
  • And this is to be sure that whoever has been engaging in this wrongdoing cannot distract from the controversy by pointing to your physical identity. Instead they have to deal with the facts of the controversy rather than the actors that are involved in it. Lee: What about for people who are, like, in a repressive regime and are trying to … Snowden: Use Tor. Lee: Use Tor? Snowden: If you’re not using Tor you’re doing it wrong. Now, there is a counterpoint here where the use of privacy-enhancing technologies in certain areas can actually single you out for additional surveillance through the exercise of repressive measures. This is why it’s so critical for developers who are working on security-enhancing tools to not make their protocols stand out.
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    Lots more in the interview that I didn't highlight. This is a must-read.
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FBI Investigates Hollywood Ties to Pirated 'Hateful Eight' Screener - TorrentFreak [# !... - 0 views

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    " Ernesto on December 23, 2015 C: 143 Breaking The pirated screener of Tarantino's "The Hateful Eight" has been traced back to a copy sent to a top Hollywood executive. The FBI is currently investigating the breach, which is part of series of leaked screeners that appeared online in recent days. Meanwhile, The Hateful Eight has been shared more than a million times through various unauthorized channels."
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Skynet rising: Google acquires 512-qubit quantum computer; NSA surveillance to be turne... - 0 views

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    "The ultimate code breakers" If you know anything about encryption, you probably also realize that quantum computers are the secret KEY to unlocking all encrypted files. As I wrote about last year here on Natural News, once quantum computers go into widespread use by the NSA, the CIA, Google, etc., there will be no more secrets kept from the government. All your files - even encrypted files - will be easily opened and read. Until now, most people believed this day was far away. Quantum computing is an "impractical pipe dream," we've been told by scowling scientists and "flat Earth" computer engineers. "It's not possible to build a 512-qubit quantum computer that actually works," they insisted. Don't tell that to Eric Ladizinsky, co-founder and chief scientist of a company called D-Wave. Because Ladizinsky's team has already built a 512-qubit quantum computer. And they're already selling them to wealthy corporations, too. DARPA, Northrup Grumman and Goldman Sachs In case you're wondering where Ladizinsky came from, he's a former employee of Northrup Grumman Space Technology (yes, a weapons manufacturer) where he ran a multi-million-dollar quantum computing research project for none other than DARPA - the same group working on AI-driven armed assault vehicles and battlefield robots to replace human soldiers. .... When groundbreaking new technology is developed by smart people, it almost immediately gets turned into a weapon. Quantum computing will be no different. This technology grants God-like powers to police state governments that seek to dominate and oppress the People.  ..... Google acquires "Skynet" quantum computers from D-Wave According to an article published in Scientific American, Google and NASA have now teamed up to purchase a 512-qubit quantum computer from D-Wave. The computer is called "D-Wave Two" because it's the second generation of the system. The first system was a 128-qubit computer. Gen two
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    Normally, I'd be suspicious of anything published by Infowars because its editors are willing to publish really over the top stuff, but: [i] this is subject matter I've maintained an interest in over the years and I was aware that working quantum computers were imminent; and [ii] the pedigree on this particular information does not trace to Scientific American, as stated in the article. I've known Scientific American to publish at least one soothing and lengthy article on the subject of chlorinated dioxin hazard -- my specialty as a lawyer was litigating against chemical companies that generated dioxin pollution -- that was generated by known closet chemical industry advocates long since discredited and was totally lacking in scientific validity and contrary to established scientific knowledge. So publication in Scientific American doesn't pack a lot of weight with me. But checking the Scientific American linked article, notes that it was reprinted by permission from Nature, a peer-reviewed scientific journal and news organization that I trust much more. That said, the InfoWars version is a rewrite that contains lots of information not in the Nature/Scientific American version of a sensationalist nature, so heightened caution is still in order. Check the reprinted Nature version before getting too excited: "The D-Wave computer is not a 'universal' computer that can be programmed to tackle any kind of problem. But scientists have found they can usefully frame questions in machine-learning research as optimisation problems. "D-Wave has battled to prove that its computer really operates on a quantum level, and that it is better or faster than a conventional computer. Before striking the latest deal, the prospective customers set a series of tests for the quantum computer. D-Wave hired an outside expert in algorithm-racing, who concluded that the speed of the D-Wave Two was above average overall, and that it was 3,600 times faster than a leading conventional comput
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Tutorial para darse de baja de Facebook definitivamente sin dejar rastro - 0 views

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    " Hace unos meses y por motivos de seguridad decidí darme de baja de Facebook. Lo primero que hice fue desactivar una cuenta que tenía para pruebas pero me dí cuenta que aún haciéndolo con el botón de Facebook seguía saliendo el nombre de la cuenta y muchos datos en buscadores como Bing, Google y Yahoo. También observé que los "amigos" que tenía esa cuenta seguían nombrandola e interactuando con ella."
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XML Production Workflows? Start with the Web and XHTML - 0 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.
  • 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.
  • 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.
  • 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.
  • 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.
  • 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.
  • 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.
  • 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.
  • Using the Web as a Production Platform
  •  
    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. The important point though is that XHTML is a browser specific version of XML, and compatible with the Web Kit layout engine Miro wants to move NCP to. The concept of encoding an existing application-specific format in XML has been around since 1998, when XML was first introduced as a W3C standard, a "structured" subset of SGML. (HTML is also a subset of SGML). The multiplatform StarOffice productivity suite became "OpenOffice" when Sun purchased the company in 1998, and open sourced the code base. The OpenOffice developer team came out with a XML encoding of their existing document formats in 2000. The application specific encoding became an OASIS document format standard proposal in 2002 - also known as ODF. Microsoft followed OpenOffice with a XML encoding of their application-specific binary document formats, known as OOXML. Encoding the existing NCP format in XML, specifically targeting XHTML as a "universal pivot point", would put the NCP Outliner in the Web editor category, without breaking backwards compatibility. The trick is in the XSLT conversion process. But I think that is something much easier to handle then trying to
  •  
    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. The important point though is that XHTML is a browser specific version of XML, and compatible with the Web Kit layout engine Miro wants to move NCP to. The concept of encoding an existing application-specific format in XML has been around since 1998, when XML was first introduced as a W3C standard, a "structured" subset of SGML. (HTML is also a subset of SGML). The multiplatform StarOffice productivity suite became "OpenOffice" when Sun purchased the company in 1998, and open sourced the code base. The OpenOffice developer team came out with a XML encoding of their existing document formats in 2000. The application specific encoding became an OASIS document format standard proposal in 2002 - also known as ODF. Microsoft followed OpenOffice with a XML encoding of their application-specific binary document formats, known as OOXML. Encoding the existing NCP format in XML, specifically targeting XHTML as a "universal pivot point", would put the NCP Outliner in the Web editor category, without breaking backwards compatibility. The trick is in the XSLT conversion process. But I think that is something much easier to handle then trying to
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Here Are All the Sketchy Government Agencies Buying Hacking Team's Spy Tech | Motherboard - 0 views

  • They say what goes around comes around, and there's perhaps nowhere that rings more true than in the world of government surveillance. Such was the case on Monday morning when Hacking Team, the Italian company known for selling electronic intrusion tools to police and federal agencies around the world, awoke to find that it had been hacked itself—big time—apparently exposing its complete client list, email spools, invoices, contracts, source code, and more. Those documents show that not only has the company been selling hacking tools to a long list of foreign governments with dubious human rights records, but it’s also establishing a nice customer base right here in the good old US of A. The cache, which sources told Motherboard is legitimate, contains more than 400 gigabytes of files, many of which confirm previous reports that the company has been selling industrial-grade surveillance software to authoritarian governments. Hacking Team is known in the surveillance world for its flagship hacking suite, Remote Control System (RCS) or Galileo, which allows its government and law enforcement clients to secretly install “implants” on remote machines that can steal private emails, record Skype calls, and even monitor targets through their computer's webcam. Hacking Team in North America
  • According to leaked contracts, invoices and an up-to-date list of customer subscriptions, Hacking Team’s clients—which the company has consistently refused to name—also include Kazakhstan, Azerbaijan, Oman, Saudi Arabia, Uzbekistan, Bahrain, Ethiopia, Nigeria, Sudan and many others. The list of names matches the findings of Citizen Lab, a research lab at the University of Toronto's Munk School of Global Affairs that previously found traces of Hacking Team on the computers of journalists and activists around the world. Last year, the Lab's researchers mapped out the worldwide collection infrastructure used by Hacking Team's customers to covertly transport stolen data, unveiling a massive network comprised of servers based in 21 countries. Reporters Without Borders later named the company one of the “Enemies of the Internet” in its annual report on government surveillance and censorship.
  • we’ve only scratched the surface of this massive leak, and it’s unclear how Hacking Team will recover from having its secrets spilling across the internet for all to see. In the meantime, the company is asking all customers to stop using its spyware—and likely preparing for the worst.
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XKeyscore Exposé Reaffirms the Need to Rid the Web of Tracking Cookies | Elec... - 0 views

  • The Intercept published an expose on the NSA's XKeyscore program. Along with information on the breadth and scale of the NSA's metadata collection, The Intercept revealed how the NSA relies on unencrypted cookie data to identify users. As The Intercept says: "The NSA’s ability to piggyback off of private companies’ tracking of their own users is a vital instrument that allows the agency to trace the data it collects to individual users. It makes no difference if visitors switch to public Wi-Fi networks or connect to VPNs to change their IP addresses: the tracking cookie will follow them around as long as they are using the same web browser and fail to clear their cookies." The NSA slides released by The Intercept give detailed guides to understanding the data transmitted by these cookies, as well as how to find unique machine identifiers that analysts can use to differentiate between multiple machines using the same IP address. We've written before about how spy agencies piggyback on social media account data to find Internet users' names or other identifying info, and these slides drive home the point that HTTP cookies leave users vulnerable to government surveillance, since any intermediary (or spy agency) can read the sensitive data they contain.
  • Worse yet, most of the time these identifying cookies come from third-party sources on webpages, and users have no meaningful way to opt out of receiving them (short of blocking all third party cookies) since advertisers (the main server of these types of cookies) refuse to honor the Do Not Track header.  Browser makers could help address this sort of non-consensual tracking by both advertisers and the NSA with some simple technical changes—changes that have been shown to reduce the number of third party cookies received by 67%. So far, though, they've been unwilling to build privacy protecting features in by default. Until they do, the best way for users to protect themselves is by installing a privacy protecting app like Privacy Badger, which is designed to block these types of uniquely identifying tracking cookies, or HTTPS Everywhere to block the transmission of HTTP cookies.
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Popular Security Software Came Under Relentless NSA and GCHQ Attacks - The Intercept - 0 views

  • The National Security Agency and its British counterpart, Government Communications Headquarters, have worked to subvert anti-virus and other security software in order to track users and infiltrate networks, according to documents from NSA whistleblower Edward Snowden. The spy agencies have reverse engineered software products, sometimes under questionable legal authority, and monitored web and email traffic in order to discreetly thwart anti-virus software and obtain intelligence from companies about security software and users of such software. One security software maker repeatedly singled out in the documents is Moscow-based Kaspersky Lab, which has a holding registered in the U.K., claims more than 270,000 corporate clients, and says it protects more than 400 million people with its products. British spies aimed to thwart Kaspersky software in part through a technique known as software reverse engineering, or SRE, according to a top-secret warrant renewal request. The NSA has also studied Kaspersky Lab’s software for weaknesses, obtaining sensitive customer information by monitoring communications between the software and Kaspersky servers, according to a draft top-secret report. The U.S. spy agency also appears to have examined emails inbound to security software companies flagging new viruses and vulnerabilities.
  • The efforts to compromise security software were of particular importance because such software is relied upon to defend against an array of digital threats and is typically more trusted by the operating system than other applications, running with elevated privileges that allow more vectors for surveillance and attack. Spy agencies seem to be engaged in a digital game of cat and mouse with anti-virus software companies; the U.S. and U.K. have aggressively probed for weaknesses in software deployed by the companies, which have themselves exposed sophisticated state-sponsored malware.
  • The requested warrant, provided under Section 5 of the U.K.’s 1994 Intelligence Services Act, must be renewed by a government minister every six months. The document published today is a renewal request for a warrant valid from July 7, 2008 until January 7, 2009. The request seeks authorization for GCHQ activities that “involve modifying commercially available software to enable interception, decryption and other related tasks, or ‘reverse engineering’ software.”
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  • The NSA, like GCHQ, has studied Kaspersky Lab’s software for weaknesses. In 2008, an NSA research team discovered that Kaspersky software was transmitting sensitive user information back to the company’s servers, which could easily be intercepted and employed to track users, according to a draft of a top-secret report. The information was embedded in “User-Agent” strings included in the headers of Hypertext Transfer Protocol, or HTTP, requests. Such headers are typically sent at the beginning of a web request to identify the type of software and computer issuing the request.
  • According to the draft report, NSA researchers found that the strings could be used to uniquely identify the computing devices belonging to Kaspersky customers. They determined that “Kaspersky User-Agent strings contain encoded versions of the Kaspersky serial numbers and that part of the User-Agent string can be used as a machine identifier.” They also noted that the “User-Agent” strings may contain “information about services contracted for or configurations.” Such data could be used to passively track a computer to determine if a target is running Kaspersky software and thus potentially susceptible to a particular attack without risking detection.
  • Another way the NSA targets foreign anti-virus companies appears to be to monitor their email traffic for reports of new vulnerabilities and malware. A 2010 presentation on “Project CAMBERDADA” shows the content of an email flagging a malware file, which was sent to various anti-virus companies by François Picard of the Montréal-based consulting and web hosting company NewRoma. The presentation of the email suggests that the NSA is reading such messages to discover new flaws in anti-virus software. Picard, contacted by The Intercept, was unaware his email had fallen into the hands of the NSA. He said that he regularly sends out notification of new viruses and malware to anti-virus companies, and that he likely sent the email in question to at least two dozen such outfits. He also said he never sends such notifications to government agencies. “It is strange the NSA would show an email like mine in a presentation,” he added.
  • The NSA presentation goes on to state that its signals intelligence yields about 10 new “potentially malicious files per day for malware triage.” This is a tiny fraction of the hostile software that is processed. Kaspersky says it detects 325,000 new malicious files every day, and an internal GCHQ document indicates that its own system “collect[s] around 100,000,000 malware events per day.” After obtaining the files, the NSA analysts “[c]heck Kaspersky AV to see if they continue to let any of these virus files through their Anti-Virus product.” The NSA’s Tailored Access Operations unit “can repurpose the malware,” presumably before the anti-virus software has been updated to defend against the threat.
  • The Project CAMBERDADA presentation lists 23 additional AV companies from all over the world under “More Targets!” Those companies include Check Point software, a pioneering maker of corporate firewalls based Israel, whose government is a U.S. ally. Notably omitted are the American anti-virus brands McAfee and Symantec and the British company Sophos.
  • As government spies have sought to evade anti-virus software, the anti-virus firms themselves have exposed malware created by government spies. Among them, Kaspersky appears to be the sharpest thorn in the side of government hackers. In the past few years, the company has proven to be a prolific hunter of state-sponsored malware, playing a role in the discovery and/or analysis of various pieces of malware reportedly linked to government hackers, including the superviruses Flame, which Kaspersky flagged in 2012; Gauss, also detected in 2012; Stuxnet, discovered by another company in 2010; and Regin, revealed by Symantec. In February, the Russian firm announced its biggest find yet: the “Equation Group,” an organization that has deployed espionage tools widely believed to have been created by the NSA and hidden on hard drives from leading brands, according to Kaspersky. In a report, the company called it “the most advanced threat actor we have seen” and “probably one of the most sophisticated cyber attack groups in the world.”
  • Hacks deployed by the Equation Group operated undetected for as long as 14 to 19 years, burrowing into the hard drive firmware of sensitive computer systems around the world, according to Kaspersky. Governments, militaries, technology companies, nuclear research centers, media outlets and financial institutions in 30 countries were among those reportedly infected. Kaspersky estimates that the Equation Group could have implants in tens of thousands of computers, but documents published last year by The Intercept suggest the NSA was scaling up their implant capabilities to potentially infect millions of computers with malware. Kaspersky’s adversarial relationship with Western intelligence services is sometimes framed in more sinister terms; the firm has been accused of working too closely with the Russian intelligence service FSB. That accusation is partly due to the company’s apparent success in uncovering NSA malware, and partly due to the fact that its founder, Eugene Kaspersky, was educated by a KGB-backed school in the 1980s before working for the Russian military.
  • Kaspersky has repeatedly denied the insinuations and accusations. In a recent blog post, responding to a Bloomberg article, he complained that his company was being subjected to “sensationalist … conspiracy theories,” sarcastically noting that “for some reason they forgot our reports” on an array of malware that trace back to Russian developers. He continued, “It’s very hard for a company with Russian roots to become successful in the U.S., European and other markets. Nobody trusts us — by default.”
  • Documents published with this article: Kaspersky User-Agent Strings — NSA Project CAMBERDADA — NSA NDIST — GCHQ’s Developing Cyber Defence Mission GCHQ Application for Renewal of Warrant GPW/1160 Software Reverse Engineering — GCHQ Reverse Engineering — GCHQ Wiki Malware Analysis & Reverse Engineering — ACNO Skill Levels — GCHQ
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Leaked docs show spyware used to snoop on US computers | Ars Technica - 0 views

  • Software created by the controversial UK-based Gamma Group International was used to spy on computers that appear to be located in the United States, the UK, Germany, Russia, Iran, and Bahrain, according to a leaked trove of documents analyzed by ProPublica. It's not clear whether the surveillance was conducted by governments or private entities. Customer e-mail addresses in the collection appeared to belong to a German surveillance company, an independent consultant in Dubai, the Bosnian and Hungarian Intelligence services, a Dutch law enforcement officer, and the Qatari government.
  • The leaked files—which were posted online by hackers—are the latest in a series of revelations about how state actors including repressive regimes have used Gamma's software to spy on dissidents, journalists, and activist groups. The documents, leaked last Saturday, could not be readily verified, but experts told ProPublica they believed them to be genuine. "I think it's highly unlikely that it's a fake," said Morgan Marquis-Bore, a security researcher who while at The Citizen Lab at the University of Toronto had analyzed Gamma Group's software and who authored an article about the leak on Thursday. The documents confirm many details that have already been reported about Gamma, such as that its tools were used to spy on Bahraini activists. Some documents in the trove contain metadata tied to e-mail addresses of several Gamma employees. Bill Marczak, another Gamma Group expert at the Citizen Lab, said that several dates in the documents correspond to publicly known events—such as the day that a particular Bahraini activist was hacked.
  • The leaked files contain more than 40 gigabytes of confidential technical material, including software code, internal memos, strategy reports, and user guides on how to use Gamma Group software suite called FinFisher. FinFisher enables customers to monitor secure Web traffic, Skype calls, webcams, and personal files. It is installed as malware on targets' computers and cell phones. A price list included in the trove lists a license of the software at almost $4 million. The documents reveal that Gamma uses technology from a French company called Vupen Security that sells so-called computer "exploits." Exploits include techniques called "zero days" for "popular software like Microsoft Office, Internet Explorer, Adobe Acrobat Reader, and many more." Zero days are exploits that have not yet been detected by the software maker and therefore are not blocked.
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  • Many of Gamma's product brochures have previously been published by the Wall Street Journal and Wikileaks, but the latest trove shows how the products are getting more sophisticated. In one document, engineers at Gamma tested a product called FinSpy, which inserts malware onto a user's machine, and found that it could not be blocked by most antivirus software. Documents also reveal that Gamma had been working to bypass encryption tools including a mobile phone encryption app, Silent Circle, and were able to bypass the protection given by hard-drive encryption products TrueCrypt and Microsoft's Bitlocker.
  • The documents also describe a "country-wide" surveillance product called FinFly ISP which promises customers the ability to intercept Internet traffic and masquerade as ordinary websites in order to install malware on a target's computer. The most recent date-stamp found in the documents is August 2, coincidung with the first tweet by a parody Twitter account, @GammaGroupPR, which first announced the hack and may be run by the hacker or hackers responsible for the leak. On Reddit, a user called PhineasFisher claimed responsibility for the leak. "Two years ago their software was found being widely used by governments in the middle east, especially Bahrain, to hack and spy on the computers and phones of journalists and dissidents," the user wrote. The name on the @GammaGroupPR Twitter account is also "Phineas Fisher." GammaGroup, the surveillance company whose documents were released, is no stranger to the spotlight. The security firm F-Secure first reported the purchase of FinFisher software by the Egyptian State Security agency in 2011. In 2012, Bloomberg News and The Citizen Lab showed how the company's malware was used to target activists in Bahrain. In 2013, the software company Mozilla sent a cease-and-desist letter to the company after a report by The Citizen Lab showed that a spyware-infected version of the Firefox browser manufactured by Gamma was being used to spy on Malaysian activists.
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Canada Casts Global Surveillance Dragnet Over File Downloads - The Intercept - 0 views

  • Canada’s leading surveillance agency is monitoring millions of Internet users’ file downloads in a dragnet search to identify extremists, according to top-secret documents. The covert operation, revealed Wednesday by CBC News in collaboration with The Intercept, taps into Internet cables and analyzes records of up to 15 million downloads daily from popular websites commonly used to share videos, photographs, music, and other files. The revelations about the spying initiative, codenamed LEVITATION, are the first from the trove of files provided by National Security Agency whistleblower Edward Snowden to show that the Canadian government has launched its own globe-spanning Internet mass surveillance system. According to the documents, the LEVITATION program can monitor downloads in several countries across Europe, the Middle East, North Africa, and North America. It is led by the Communications Security Establishment, or CSE, Canada’s equivalent of the NSA. (The Canadian agency was formerly known as “CSEC” until a recent name change.)
  • The latest disclosure sheds light on Canada’s broad existing surveillance capabilities at a time when the country’s government is pushing for a further expansion of security powers following attacks in Ottawa and Quebec last year. Ron Deibert, director of University of Toronto-based Internet security think tank Citizen Lab, said LEVITATION illustrates the “giant X-ray machine over all our digital lives.” “Every single thing that you do – in this case uploading/downloading files to these sites – that act is being archived, collected and analyzed,” Deibert said, after reviewing documents about the online spying operation for CBC News. David Christopher, a spokesman for Vancouver-based open Internet advocacy group OpenMedia.ca, said the surveillance showed “robust action” was needed to rein in the Canadian agency’s operations.
  • In a top-secret PowerPoint presentation, dated from mid-2012, an analyst from the agency jokes about how, while hunting for extremists, the LEVITATION system gets clogged with information on innocuous downloads of the musical TV series Glee. CSE finds some 350 “interesting” downloads each month, the presentation notes, a number that amounts to less than 0.0001 per cent of the total collected data. The agency stores details about downloads and uploads to and from 102 different popular file-sharing websites, according to the 2012 document, which describes the collected records as “free file upload,” or FFU, “events.” Only three of the websites are named: RapidShare, SendSpace, and the now defunct MegaUpload.
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  • “The specific uses that they talk about in this [counter-terrorism] context may not be the problem, but it’s what else they can do,” said Tamir Israel, a lawyer with the University of Ottawa’s Canadian Internet Policy and Public Interest Clinic. Picking which downloads to monitor is essentially “completely at the discretion of CSE,” Israel added. The file-sharing surveillance also raises questions about the number of Canadians whose downloading habits could have been swept up as part of LEVITATION’s dragnet. By law, CSE isn’t allowed to target Canadians. In the LEVITATION presentation, however, two Canadian IP addresses that trace back to a web server in Montreal appear on a list of suspicious downloads found across the world. The same list includes downloads that CSE monitored in closely allied countries, including the United Kingdom, United States, Spain, Brazil, Germany and Portugal. It is unclear from the document whether LEVITATION has ever prevented any terrorist attacks. The agency cites only two successes of the program in the 2012 presentation: the discovery of a hostage video through a previously unknown target, and an uploaded document that contained the hostage strategy of a terrorist organization. The hostage in the discovered video was ultimately killed, according to public reports.
  • LEVITATION does not rely on cooperation from any of the file-sharing companies. A separate secret CSE operation codenamed ATOMIC BANJO obtains the data directly from internet cables that it has tapped into, and the agency then sifts out the unique IP address of each computer that downloaded files from the targeted websites. The IP addresses are valuable pieces of information to CSE’s analysts, helping to identify people whose downloads have been flagged as suspicious. The analysts use the IP addresses as a kind of search term, entering them into other surveillance databases that they have access to, such as the vast repositories of intercepted Internet data shared with the Canadian agency by the NSA and its British counterpart Government Communications Headquarters. If successful, the searches will return a list of results showing other websites visited by the people downloading the files – in some cases revealing associations with Facebook or Google accounts. In turn, these accounts may reveal the names and the locations of individual downloaders, opening the door for further surveillance of their activities.
  • Canada’s leading surveillance agency is monitoring millions of Internet users’ file downloads in a dragnet search to identify extremists, according to top-secret documents. The covert operation, revealed Wednesday by CBC News in collaboration with The Intercept, taps into Internet cables and analyzes records of up to 15 million downloads daily from popular websites commonly used to share videos, photographs, music, and other files. The revelations about the spying initiative, codenamed LEVITATION, are the first from the trove of files provided by National Security Agency whistleblower Edward Snowden to show that the Canadian government has launched its own globe-spanning Internet mass surveillance system. According to the documents, the LEVITATION program can monitor downloads in several countries across Europe, the Middle East, North Africa, and North America. It is led by the Communications Security Establishment, or CSE, Canada’s equivalent of the NSA. (The Canadian agency was formerly known as “CSEC” until a recent name change.)
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The Great SIM Heist: How Spies Stole the Keys to the Encryption Castle - 0 views

  • AMERICAN AND BRITISH spies hacked into the internal computer network of the largest manufacturer of SIM cards in the world, stealing encryption keys used to protect the privacy of cellphone communications across the globe, according to top-secret documents provided to The Intercept by National Security Agency whistleblower Edward Snowden. The hack was perpetrated by a joint unit consisting of operatives from the NSA and its British counterpart Government Communications Headquarters, or GCHQ. The breach, detailed in a secret 2010 GCHQ document, gave the surveillance agencies the potential to secretly monitor a large portion of the world’s cellular communications, including both voice and data. The company targeted by the intelligence agencies, Gemalto, is a multinational firm incorporated in the Netherlands that makes the chips used in mobile phones and next-generation credit cards. Among its clients are AT&T, T-Mobile, Verizon, Sprint and some 450 wireless network providers around the world. The company operates in 85 countries and has more than 40 manufacturing facilities. One of its three global headquarters is in Austin, Texas and it has a large factory in Pennsylvania. In all, Gemalto produces some 2 billion SIM cards a year. Its motto is “Security to be Free.”
  • With these stolen encryption keys, intelligence agencies can monitor mobile communications without seeking or receiving approval from telecom companies and foreign governments. Possessing the keys also sidesteps the need to get a warrant or a wiretap, while leaving no trace on the wireless provider’s network that the communications were intercepted. Bulk key theft additionally enables the intelligence agencies to unlock any previously encrypted communications they had already intercepted, but did not yet have the ability to decrypt.
  • Leading privacy advocates and security experts say that the theft of encryption keys from major wireless network providers is tantamount to a thief obtaining the master ring of a building superintendent who holds the keys to every apartment. “Once you have the keys, decrypting traffic is trivial,” says Christopher Soghoian, the principal technologist for the American Civil Liberties Union. “The news of this key theft will send a shock wave through the security community.”
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  • According to one secret GCHQ slide, the British intelligence agency penetrated Gemalto’s internal networks, planting malware on several computers, giving GCHQ secret access. We “believe we have their entire network,” the slide’s author boasted about the operation against Gemalto. Additionally, the spy agency targeted unnamed cellular companies’ core networks, giving it access to “sales staff machines for customer information and network engineers machines for network maps.” GCHQ also claimed the ability to manipulate the billing servers of cell companies to “suppress” charges in an effort to conceal the spy agency’s secret actions against an individual’s phone. Most significantly, GCHQ also penetrated “authentication servers,” allowing it to decrypt data and voice communications between a targeted individual’s phone and his or her telecom provider’s network. A note accompanying the slide asserted that the spy agency was “very happy with the data so far and [was] working through the vast quantity of product.”
  • The U.S. and British intelligence agencies pulled off the encryption key heist in great stealth, giving them the ability to intercept and decrypt communications without alerting the wireless network provider, the foreign government or the individual user that they have been targeted. “Gaining access to a database of keys is pretty much game over for cellular encryption,” says Matthew Green, a cryptography specialist at the Johns Hopkins Information Security Institute. The massive key theft is “bad news for phone security. Really bad news.”
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    Remember all those NSA claims that no evidence of their misbehavior has emerged? That one should never take wing again. Monitoring call content without the involvement of any court? Without a warrant? Without probable cause?  Was there even any Congressional authorization?  Wiretapping unequivocally requires a judicially-approved search warrant. It's going to be very interesting to learn the government's argument for this misconduct's legality. 
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RIOT gear: your online trail just got way more visible - 0 views

  • The recent publication of a leaked video demonstrating American security firm Raytheon’s social media mining tool RIOT (Rapid Information Overlay Technology) has rightly incensed individuals and online privacy groups. In a nutshell, RIOT – already shared with US government and industry as part of a joint research and development effort in 2010 – uses social media traces to profile people’s activities, map their contacts, and predict their future activities. Yet the most surprising thing isn’t how RIOT works, but that the information it mines is what we’ve each already shared publicly.
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    Privacy Act, 5 U.S.C.552a(e) "Each agency that maintains a system of rec­ords shall- ... "(7) maintain no record describing how any individual exercises rights guaranteed by the First Amendment unless expressly authorized by statute or by the individual about whom the record is maintained or unless pertinent to and within the scope of an authorized law enforcement activity"
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Mass. health officials worked with Google to covertly install COVID 'spyware' into 1M p... - 1 views

  • The Massachusetts Department of Public Health (DPH) is facing a class-action lawsuit for allegedly using Google technology to covertly install tracking apps on over one million Android phones as part of the state government’s efforts to slow the spread of COVID-19 through contact tracing. In a lawsuit filed Tuesday, the New Civil Liberties Alliance (NCLA), a nonpartisan civil rights firm, accused the Bay State’s health department of "brazen disregard for civil liberties" by installing "spyware that deliberately tracks and records movement and personal contacts onto over a million mobile devices without their owners’ permission and awareness." The class-action suit claims DPH is in violation of both the Massachusetts and U.S. Constitutions.
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