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Gary Edwards

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
Paul Merrell

Rapid - Press Releases - EUROPA - 0 views

  • The Commission found that Intel engaged in two specific forms of illegal practice. First, Intel gave wholly or partially hidden rebates to computer manufacturers on condition that they bought all, or almost all, their x86 CPUs from Intel. Intel also made direct payments to a major retailer on condition it stock only computers with Intel x86 CPUs. Such rebates and payments effectively prevented customers - and ultimately consumers - from choosing alternative products. Second, Intel made direct payments to computer manufacturers to halt or delay the launch of specific products containing competitors’ x86 CPUs and to limit the sales channels available to these products.
  • Intel awarded major computer manufacturers rebates on condition that they purchased all or almost all of their supplies, at least in certain defined segments, from Intel: Intel gave rebates to computer manufacturer A from December 2002 to December 2005 conditional on this manufacturer purchasing exclusively Intel CPUs Intel gave rebates to computer manufacturer B from November 2002 to May 2005 conditional on this manufacturer purchasing no less than 95% of its CPU needs for its business desktop computers from Intel (the remaining 5% that computer manufacturer B could purchase from rival chip maker AMD was then subject to further restrictive conditions set out below) Intel gave rebates to computer manufacturer C from October 2002 to November 2005 conditional on this manufacturer purchasing no less than 80% of its CPU needs for its desktop and notebook computers from Intel Intel gave rebates to computer manufacturer D in 2007 conditional on this manufacturer purchasing its CPU needs for its notebook computers exclusively from Intel.
  • Furthermore, Intel made payments to major retailer Media Saturn Holding from October 2002 to December 2007 on condition that it exclusively sold Intel-based PCs in all countries in which Media Saturn Holding is active.
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  • In its decision, the Commission does not object to rebates in themselves but to the conditions Intel attached to those rebates.
  • Intel structured its pricing policy to ensure that a computer manufacturer which opted to buy AMD CPUs for that part of its needs that was open to competition would consequently lose the rebate (or a large part of it) that Intel provided for the much greater part of its needs for which the computer manufacturer had no choice but to buy from Intel. The computer manufacturer would therefore have to pay Intel a higher price for each of the units supplied for which the computer manufacturer had no alternative but to buy from Intel. In other words, should a computer manufacturer fail to purchase virtually all its x86 CPU requirements from Intel, it would forego the possibility of obtaining a significant rebate on any of its very high volumes of Intel purchases. Moreover, in order to be able to compete with the Intel rebates, for the part of the computer manufacturers' supplies that was up for grabs, a competitor that was just as efficient as Intel would have had to offer a price for its CPUs lower than its costs of producing those CPUs, even if the average price of its CPUs was lower than that of Intel.
  • For example, rival chip manufacturer AMD offered one million free CPUs to one particular computer manufacturer. If the computer manufacturer had accepted all of these, it would have lost Intel's rebate on its many millions of remaining CPU purchases, and would have been worse off overall simply for having accepted this highly competitive offer. In the end, the computer manufacturer took only 160,000 CPUs for free.
  • Intel also interfered directly in the relations between computer manufacturers and AMD. Intel awarded computer manufacturers payments - unrelated to any particular purchases from Intel - on condition that these computer manufacturers postponed or cancelled the launch of specific AMD-based products and/or put restrictions on the distribution of specific AMD-based products. The Commission found that these payments had the potential effect of preventing products for which there was a consumer demand from coming to the market. The Commission found the following specific cases: For the 5% of computer manufacturer B’s business that was not subject to the conditional rebate outlined above, Intel made further payments to computer manufacturer B provided that this manufacturer : sold AMD-based business desktops only to small and medium enterprises sold AMD-based business desktops only via direct distribution channels (as opposed to through distributors) and postponed the launch of its first AMD-based business desktop in Europe by 6 months. Intel made payments to computer manufacturer E provided that this manufacturer postponed the launch of an AMD-based notebook from September 2003 to January 2004. Before the conditional rebate to computer manufacturer D outlined above, Intel made payments to this manufacturer provided that it postponed the launch of AMD-based notebooks from September 2006 to the end of 2006.
  • The Commission obtained proof of the existence of many of the conditions found to be illegal in the antitrust decision even though they were not made explicit in Intel’s contracts. Such proof is based on a broad range of contemporaneous evidence such as e-mails obtained inter alia from unannounced on-site inspections, in responses to formal requests for information and in a number of formal statements made to the Commission by the other companies concerned. In addition, there is evidence that Intel had sought to conceal the conditions associated with its payments.
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    This is an uncharacteristically strong press release from DG Competition. I still must read the order, but the description of the evidence is incredible, particularly the finding of concealment of its rebate conditions by Intel.
Paul Merrell

DOJ Pushes to Expand Hacking Abilities Against Cyber-Criminals - Law Blog - WSJ - 0 views

  • The U.S. Department of Justice is pushing to make it easier for law enforcement to get warrants to hack into the computers of criminal suspects across the country. The move, which would alter federal court rules governing search warrants, comes amid increases in cases related to computer crimes. Investigators say they need more flexibility to get warrants to allow hacking in such cases, especially when multiple computers are involved or the government doesn’t know where the suspect’s computer is physically located. The Justice Department effort is raising questions among some technology advocates, who say the government should focus on fixing the holes in computer software that allow such hacking instead of exploiting them. Privacy advocates also warn government spyware could end up on innocent people’s computers if remote attacks are authorized against equipment whose ownership isn’t clear.
  • The government’s push for rule changes sheds light on law enforcement’s use of remote hacking techniques, which are being deployed more frequently but have been protected behind a veil of secrecy for years. In documents submitted by the government to the judicial system’s rule-making body this year, the government discussed using software to find suspected child pornographers who visited a U.S. site and concealed their identity using a strong anonymization tool called Tor. The government’s hacking tools—such as sending an email embedded with code that installs spying software — resemble those used by criminal hackers. The government doesn’t describe these methods as hacking, preferring instead to use terms like “remote access” and “network investigative techniques.” Right now, investigators who want to search property, including computers, generally need to get a warrant from a judge in the district where the property is located, according to federal court rules. In a computer investigation, that might not be possible, because criminals can hide behind anonymizing technologies. In cases involving botnets—groups of hijacked computers—investigators might also want to search many machines at once without getting that many warrants.
  • Some judges have already granted warrants in cases when authorities don’t know where the machine is. But at least one judge has denied an application in part because of the current rules. The department also wants warrants to be allowed for multiple computers at the same time, as well as for searches of many related storage, email and social media accounts at once, as long as those accounts are accessed by the computer being searched. “Remote searches of computers are often essential to the successful investigation” of computer crimes, Acting Assistant Attorney General Mythili Raman wrote in a letter to the judicial system’s rulemaking authority requesting the change in September. The government tries to obtain these “remote access warrants” mainly to “combat Internet anonymizing techniques,” the department said in a memo to the authority in March. Some groups have raised questions about law enforcement’s use of hacking technologies, arguing that such tools mean the government is failing to help fix software problems exploited by criminals. “It is crucial that we have a robust public debate about how the Fourth Amendment and federal law should limit the government’s use of malware and spyware within the U.S.,” said Nathan Wessler, a staff attorney at the American Civil Liberties Union who focuses on technology issues.
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  • A Texas judge who denied a warrant application last year cited privacy concerns associated with sending malware when the location of the computer wasn’t known. He pointed out that a suspect opening an email infected with spyware could be doing so on a public computer, creating risk of information being collected from innocent people. A former computer crimes prosecutor serving on an advisory committee of the U.S. Judicial Conference, which is reviewing the request, said he was concerned that allowing the search of multiple computers under a single warrant would violate the Fourth Amendment’s protections against overly broad searches. The proposed rule is set to be debated by the Judicial Conference’s Advisory Committee on Criminal Rules in early April, after which it would be opened to public comment.
Gary Edwards

Wolfram Alpha is Coming -- and It Could be as Important as Google | Twine - 0 views

  • The first question was could (or even should) Wolfram Alpha be built using the Semantic Web in some manner, rather than (or as well as) the Mathematica engine it is currently built on. Is anything missed by not building it with Semantic Web's languages (RDF, OWL, Sparql, etc.)? The answer is that there is no reason that one MUST use the Semantic Web stack to build something like Wolfram Alpha. In fact, in my opinion it would be far too difficult to try to explicitly represent everything Wolfram Alpha knows and can compute using OWL ontologies. It is too wide a range of human knowledge and giant OWL ontologies are just too difficult to build and curate.
  • However for the internal knowledge representation and reasoning that takes places in the system, it appears Wolfram has found a pragmatic and efficient representation of his own, and I don't think he needs the Semantic Web at that level. It seems to be doing just fine without it. Wolfram Alpha is built on hand-curated knowledge and expertise. Wolfram and his team have somehow figured out a way to make that practical where all others who have tried this have failed to achieve their goals. The task is gargantuan -- there is just so much diverse knowledge in the world. Representing even a small segment of it formally turns out to be extremely difficult and time-consuming.
  • It has generally not been considered feasible for any one group to hand-curate all knowledge about every subject. This is why the Semantic Web was invented -- by enabling everyone to curate their own knowledge about their own documents and topics in parallel, in principle at least, more knowledge could be represented and shared in less time by more people -- in an interoperable manner. At least that is the vision of the Semantic Web.
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  • Where Google is a system for FINDING things that we as a civilization collectively publish, Wolfram Alpha is for ANSWERING questions about what we as a civilization collectively know. It's the next step in the distribution of knowledge and intelligence around the world -- a new leap in the intelligence of our collective "Global Brain." And like any big next-step, Wolfram Alpha works in a new way -- it computes answers instead of just looking them up.
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    A Computational Knowledge Engine for the Web In a nutshell, Wolfram and his team have built what he calls a "computational knowledge engine" for the Web. OK, so what does that really mean? Basically it means that you can ask it factual questions and it computes answers for you. It doesn't simply return documents that (might) contain the answers, like Google does, and it isn't just a giant database of knowledge, like the Wikipedia. It doesn't simply parse natural language and then use that to retrieve documents, like Powerset, for example. Instead, Wolfram Alpha actually computes the answers to a wide range of questions -- like questions that have factual answers such as "What country is Timbuktu in?" or "How many protons are in a hydrogen atom?" or "What is the average rainfall in Seattle this month?," "What is the 300th digit of Pi?," "where is the ISS?" or "When was GOOG worth more than $300?" Think about that for a minute. It computes the answers. Wolfram Alpha doesn't simply contain huge amounts of manually entered pairs of questions and answers, nor does it search for answers in a database of facts. Instead, it understands and then computes answers to certain kinds of questions.
Gary Edwards

Can Cloud Computing Achieve Interoperable Platforms? - 0 views

  • the fact is that today if a customer has heavily invested in either platform then there isn't a straightforward way for customers to extricate themselves from the platform and switch to another vendor. In addition there is not a competitive marketplace of vendors providing standard/interoperable platforms as there are with email hosting or Web hosting providers.
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    Response from Microsoft's Dare Obasanjo to the Tim Bray blog: Get in the Cloud. .. "When it comes to cloud computing platforms, you have all of the same problems described above and a few extra ones. The key wrinkle with cloud computing platforms is that there is no standardization of the APIs and platform technologies that underlie these services. The APIs provided by Amazon's cloud computing platform (EC2/S3/EBS/etc) are radically different from those provided by Google App Engine (Datastore API/Python runtime/Images API/etc). For zero lock-in to occur in this space, there need to be multiple providers of the same underlying APIs. Otherwise, migrating between cloud computing platforms will be more like switching your application from Ruby on Rails and MySQL to Django and PostgreSQL (i.e. a complete rewrite)...." Although cloud computing vendors are not explicitly trying to lock-in customers to their platform, the fact is that today if a customer has heavily invested in either platform then there isn't a straightforward way for customers to extricate themselves from the platform and switch to another vendor. In addition there is not a competitive marketplace of vendors providing standard/interoperable platforms as there are with email hosting or Web hosting providers.
Gary Edwards

The Cloud Computing Tsunami | The Numbers from Gartner and Cyrus Golkar - 0 views

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    The cloud computing wave is the most dramatic change I have observed in the computing industry since the wave of the Internet. Cloud computing will significantly change data centers and IT organizations as well as the infrastructure and software vendors' business models. In fact, the cloud computing wave is not just a wave - it is more like a tsunami. What is causing this cloud tsunami? I start with listing 4 of the Gartner top 10 IT predictions for the next three to five years for cloud computing, software as service (SaaS), data center power/cooling efficiency and open source software. All of these predictions indicate that data center efficiency and cost containment will transform the IT industry over the next 5 years. Key Gartner predictions for the data center for the next 5 years:
Gary Edwards

Cloud computing and the return of the platform wars | The Open Web takes on the Open Cl... - 0 views

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    Excellent article on Cloud Computing and the need for an Open API from Dion Hinchcliffe. Solid analysis, deeply linked, with some good graphics: "....The final outcome of this struggle, as it's been in many earlier platform battles over personal computer hardware, operating systems, databases, and even the Web itself, will be the result of a fairly predictable and oft-repeated cycle of events (see diagram below) for which a small number of large winners are likely to emerge victorious...." "When we look back many years from now, it's probable that cloud computing will be regarded as both a momentous and major change of course in the history of software; many future computing platforms will be created and operated by what seemingly amount to utility companies. While this might seem like a boring future for computing, it's a necessarily pragmatic evolution as the very size and scope of modern software requires new economic models in order to remain cost effective. Virtually any online application these days has to scale to a few million users as quickly and inexpensively as possible....."
Paul Merrell

He Was a Hacker for the NSA and He Was Willing to Talk. I Was Willing to Listen. - 2 views

  • he message arrived at night and consisted of three words: “Good evening sir!” The sender was a hacker who had written a series of provocative memos at the National Security Agency. His secret memos had explained — with an earthy use of slang and emojis that was unusual for an operative of the largest eavesdropping organization in the world — how the NSA breaks into the digital accounts of people who manage computer networks, and how it tries to unmask people who use Tor to browse the web anonymously. Outlining some of the NSA’s most sensitive activities, the memos were leaked by Edward Snowden, and I had written about a few of them for The Intercept. There is no Miss Manners for exchanging pleasantries with a man the government has trained to be the digital equivalent of a Navy SEAL. Though I had initiated the contact, I was wary of how he might respond. The hacker had publicly expressed a visceral dislike for Snowden and had accused The Intercept of jeopardizing lives by publishing classified information. One of his memos outlined the ways the NSA reroutes (or “shapes”) the internet traffic of entire countries, and another memo was titled “I Hunt Sysadmins.” I felt sure he could hack anyone’s computer, including mine. Good evening sir!
  • The sender was a hacker who had written a series of provocative memos at the National Security Agency. His secret memos had explained — with an earthy use of slang and emojis that was unusual for an operative of the largest eavesdropping organization in the world — how the NSA breaks into the digital accounts of people who manage computer networks, and how it tries to unmask people who use Tor to browse the web anonymously. Outlining some of the NSA’s most sensitive activities, the memos were leaked by Edward Snowden, and I had written about a few of them for The Intercept. There is no Miss Manners for exchanging pleasantries with a man the government has trained to be the digital equivalent of a Navy SEAL. Though I had initiated the contact, I was wary of how he might respond. The hacker had publicly expressed a visceral dislike for Snowden and had accused The Intercept of jeopardizing lives by publishing classified information. One of his memos outlined the ways the NSA reroutes (or “shapes”) the internet traffic of entire countries, and another memo was titled “I Hunt Sysadmins.” I felt sure he could hack anyone’s computer, including mine.
  • I got lucky with the hacker, because he recently left the agency for the cybersecurity industry; it would be his choice to talk, not the NSA’s. Fortunately, speaking out is his second nature.
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  • He agreed to a video chat that turned into a three-hour discussion sprawling from the ethics of surveillance to the downsides of home improvements and the difficulty of securing your laptop.
  • In recent years, two developments have helped make hacking for the government a lot more attractive than hacking for yourself. First, the Department of Justice has cracked down on freelance hacking, whether it be altruistic or malignant. If the DOJ doesn’t like the way you hack, you are going to jail. Meanwhile, hackers have been warmly invited to deploy their transgressive impulses in service to the homeland, because the NSA and other federal agencies have turned themselves into licensed hives of breaking into other people’s computers. For many, it’s a techno sandbox of irresistible delights, according to Gabriella Coleman, a professor at McGill University who studies hackers. “The NSA is a very exciting place for hackers because you have unlimited resources, you have some of the best talent in the world, whether it’s cryptographers or mathematicians or hackers,” she said. “It is just too intellectually exciting not to go there.”
  • The Lamb’s memos on cool ways to hunt sysadmins triggered a strong reaction when I wrote about them in 2014 with my colleague Ryan Gallagher. The memos explained how the NSA tracks down the email and Facebook accounts of systems administrators who oversee computer networks. After plundering their accounts, the NSA can impersonate the admins to get into their computer networks and pilfer the data flowing through them. As the Lamb wrote, “sys admins generally are not my end target. My end target is the extremist/terrorist or government official that happens to be using the network … who better to target than the person that already has the ‘keys to the kingdom’?” Another of his NSA memos, “Network Shaping 101,” used Yemen as a theoretical case study for secretly redirecting the entirety of a country’s internet traffic to NSA servers.
  • “If I turn the tables on you,” I asked the Lamb, “and say, OK, you’re a target for all kinds of people for all kinds of reasons. How do you feel about being a target and that kind of justification being used to justify getting all of your credentials and the keys to your kingdom?” The Lamb smiled. “There is no real safe, sacred ground on the internet,” he replied. “Whatever you do on the internet is an attack surface of some sort and is just something that you live with. Any time that I do something on the internet, yeah, that is on the back of my mind. Anyone from a script kiddie to some random hacker to some other foreign intelligence service, each with their different capabilities — what could they be doing to me?”
  • “You know, the situation is what it is,” he said. “There are protocols that were designed years ago before anybody had any care about security, because when they were developed, nobody was foreseeing that they would be taken advantage of. … A lot of people on the internet seem to approach the problem [with the attitude of] ‘I’m just going to walk naked outside of my house and hope that nobody looks at me.’ From a security perspective, is that a good way to go about thinking? No, horrible … There are good ways to be more secure on the internet. But do most people use Tor? No. Do most people use Signal? No. Do most people use insecure things that most people can hack? Yes. Is that a bash against the intelligence community that people use stuff that’s easily exploitable? That’s a hard argument for me to make.”
  • I mentioned that lots of people, including Snowden, are now working on the problem of how to make the internet more secure, yet he seemed to do the opposite at the NSA by trying to find ways to track and identify people who use Tor and other anonymizers. Would he consider working on the other side of things? He wouldn’t rule it out, he said, but dismally suggested the game was over as far as having a liberating and safe internet, because our laptops and smartphones will betray us no matter what we do with them. “There’s the old adage that the only secure computer is one that is turned off, buried in a box ten feet underground, and never turned on,” he said. “From a user perspective, someone trying to find holes by day and then just live on the internet by night, there’s the expectation [that] if somebody wants to have access to your computer bad enough, they’re going to get it. Whether that’s an intelligence agency or a cybercrimes syndicate, whoever that is, it’s probably going to happen.”
  • There are precautions one can take, and I did that with the Lamb. When we had our video chat, I used a computer that had been wiped clean of everything except its operating system and essential applications. Afterward, it was wiped clean again. My concern was that the Lamb might use the session to obtain data from or about the computer I was using; there are a lot of things he might have tried, if he was in a scheming mood. At the end of our three hours together, I mentioned to him that I had taken these precautions—and he approved. “That’s fair,” he said. “I’m glad you have that appreciation. … From a perspective of a journalist who has access to classified information, it would be remiss to think you’re not a target of foreign intelligence services.” He was telling me the U.S. government should be the least of my worries. He was trying to help me. Documents published with this article: Tracking Targets Through Proxies & Anonymizers Network Shaping 101 Shaping Diagram I Hunt Sys Admins (first published in 2014)
Paul Merrell

The coming merge of human and machine intelligence - 0 views

  • Now, as the Internet revolution unfolds, we are seeing not merely an extension of mind but a unity of mind and machine, two networks coming together as one. Our smaller brains are in a quest to bypass nature's intent and grow larger by proxy. It is not a stretch of the imagination to believe we will one day have all of the world's information embedded in our minds via the Internet.
  • BCI stands for brain-computer interface, and Jan is one of only a few people on earth using this technology, through two implanted chips attached directly to the neurons in her brain. The first human brain implant was conceived of by John Donoghue, a neuroscientist at Brown University, and implanted in a paralyzed man in 2004. These dime-sized computer chips use a technology called BrainGate that directly connects the mind to computers and the Internet. Having served as chairman of the BrainGate company, I have personally witnessed just how profound this innovation is. BrainGate is an invention that allows people to control electrical devices with nothing but their thoughts. The BrainGate chip is implanted in the brain and attached to connectors outside of the skull, which are hooked up to computers that, in Jan Scheuermann's case, are linked to a robotic arm. As a result, Scheuermann can feed herself chocolate by controlling the robotic arm with nothing but her thoughts.
  • Mind meld But imagine the ways in which the world will change when any of us, disabled or not, can connect our minds to computers.
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  • Back in 2004, Google's founders told Playboy magazine that one day we'd have direct access to the Internet through brain implants, with "the entirety of the world's information as just one of our thoughts." A decade later, the road map is taking shape. While it may be years before implants like BrainGate are safe enough to be commonplace—they require brain surgery, after all—there are a host of brainwave sensors in development for use outside of the skull that will be transformational for all of us: caps for measuring driver alertness, headbands for monitoring sleep, helmets for controlling video games. This could lead to wearable EEGs, implantable nanochips or even technology that can listen to our brain signals using the electromagnetic waves that pervade the air we breathe. Just as human intelligence is expanding in the direction of the Internet, the Internet itself promises to get smarter and smarter. In fact, it could prove to be the basis of the machine intelligence that scientists have been racing toward since the 1950s.
  • Neurons may be good analogs for transistors and maybe even computer chips, but they're not good building blocks of intelligence. The neural network is fundamental. The BrainGate technology works because the chip attaches not to a single neuron, but to a network of neurons. Reading the signals of a single neuron would tell us very little; it certainly wouldn't allow BrainGate patients to move a robotic arm or a computer cursor. Scientists may never be able to reverse engineer the neuron, but they are increasingly able to interpret the communication of the network. It is for this reason that the Internet is a better candidate for intelligence than are computers. Computers are perfect calculators composed of perfect transistors; they are like neurons as we once envisioned them. But the Internet has all the quirkiness of the brain: it can work in parallel, it can communicate across broad distances, and it makes mistakes. Even though the Internet is at an early stage in its evolution, it can leverage the brain that nature has given us. The convergence of computer networks and neural networks is the key to creating real intelligence from artificial machines. It took millions of years for humans to gain intelligence, but with the human mind as a guide, it may only take a century to create Internet intelligence.
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    Of course once the human brain is interfaced with the internet, then we will be able to do the Vulcan mind-meld thing. And NSA will be busily crawling the Internet for fresh brain dumps to their data center, which then encompasses the entire former state of Utah. Conventional warfare is a thing of the past as the cyberwar commands of great powers battle for control of the billions of minds making up BrainNet, the internet's successor.  Meanwhile, a hackers' Reaper malware trawls BrainNet for bank account numbers and paswords that it forwards for automated harvesting of personal funds. "Ah, Houston ... we have a problem ..."  
Paul Merrell

Google Chrome Listening In To Your Room Shows The Importance Of Privacy Defense In Depth - 0 views

  • Yesterday, news broke that Google has been stealth downloading audio listeners onto every computer that runs Chrome, and transmits audio data back to Google. Effectively, this means that Google had taken itself the right to listen to every conversation in every room that runs Chrome somewhere, without any kind of consent from the people eavesdropped on. In official statements, Google shrugged off the practice with what amounts to “we can do that”.It looked like just another bug report. "When I start Chromium, it downloads something." Followed by strange status information that notably included the lines "Microphone: Yes" and "Audio Capture Allowed: Yes".
  • Without consent, Google’s code had downloaded a black box of code that – according to itself – had turned on the microphone and was actively listening to your room.A brief explanation of the Open-source / Free-software philosophy is needed here. When you’re installing a version of GNU/Linux like Debian or Ubuntu onto a fresh computer, thousands of really smart people have analyzed every line of human-readable source code before that operating system was built into computer-executable binary code, to make it common and open knowledge what the machine actually does instead of trusting corporate statements on what it’s supposed to be doing. Therefore, you don’t install black boxes onto a Debian or Ubuntu system; you use software repositories that have gone through this source-code audit-then-build process. Maintainers of operating systems like Debian and Ubuntu use many so-called “upstreams” of source code to build the final product.Chromium, the open-source version of Google Chrome, had abused its position as trusted upstream to insert lines of source code that bypassed this audit-then-build process, and which downloaded and installed a black box of unverifiable executable code directly onto computers, essentially rendering them compromised. We don’t know and can’t know what this black box does. But we see reports that the microphone has been activated, and that Chromium considers audio capture permitted.
  • This was supposedly to enable the “Ok, Google” behavior – that when you say certain words, a search function is activated. Certainly a useful feature. Certainly something that enables eavesdropping of every conversation in the entire room, too.Obviously, your own computer isn’t the one to analyze the actual search command. Google’s servers do. Which means that your computer had been stealth configured to send what was being said in your room to somebody else, to a private company in another country, without your consent or knowledge, an audio transmission triggered by… an unknown and unverifiable set of conditions.Google had two responses to this. The first was to introduce a practically-undocumented switch to opt out of this behavior, which is not a fix: the default install will still wiretap your room without your consent, unless you opt out, and more importantly, know that you need to opt out, which is nowhere a reasonable requirement. But the second was more of an official statement following technical discussions on Hacker News and other places. That official statement amounted to three parts (paraphrased, of course):
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  • 1) Yes, we’re downloading and installing a wiretapping black-box to your computer. But we’re not actually activating it. We did take advantage of our position as trusted upstream to stealth-insert code into open-source software that installed this black box onto millions of computers, but we would never abuse the same trust in the same way to insert code that activates the eavesdropping-blackbox we already downloaded and installed onto your computer without your consent or knowledge. You can look at the code as it looks right now to see that the code doesn’t do this right now.2) Yes, Chromium is bypassing the entire source code auditing process by downloading a pre-built black box onto people’s computers. But that’s not something we care about, really. We’re concerned with building Google Chrome, the product from Google. As part of that, we provide the source code for others to package if they like. Anybody who uses our code for their own purpose takes responsibility for it. When this happens in a Debian installation, it is not Google Chrome’s behavior, this is Debian Chromium’s behavior. It’s Debian’s responsibility entirely.3) Yes, we deliberately hid this listening module from the users, but that’s because we consider this behavior to be part of the basic Google Chrome experience. We don’t want to show all modules that we install ourselves.
  • If you think this is an excusable and responsible statement, raise your hand now.Now, it should be noted that this was Chromium, the open-source version of Chrome. If somebody downloads the Google product Google Chrome, as in the prepackaged binary, you don’t even get a theoretical choice. You’re already downloading a black box from a vendor. In Google Chrome, this is all included from the start.This episode highlights the need for hard, not soft, switches to all devices – webcams, microphones – that can be used for surveillance. A software on/off switch for a webcam is no longer enough, a hard shield in front of the lens is required. A software on/off switch for a microphone is no longer enough, a physical switch that breaks its electrical connection is required. That’s how you defend against this in depth.
  • Of course, people were quick to downplay the alarm. “It only listens when you say ‘Ok, Google’.” (Ok, so how does it know to start listening just before I’m about to say ‘Ok, Google?’) “It’s no big deal.” (A company stealth installs an audio listener that listens to every room in the world it can, and transmits audio data to the mothership when it encounters an unknown, possibly individually tailored, list of keywords – and it’s no big deal!?) “You can opt out. It’s in the Terms of Service.” (No. Just no. This is not something that is the slightest amount of permissible just because it’s hidden in legalese.) “It’s opt-in. It won’t really listen unless you check that box.” (Perhaps. We don’t know, Google just downloaded a black box onto my computer. And it may not be the same black box as was downloaded onto yours. )Early last decade, privacy activists practically yelled and screamed that the NSA’s taps of various points of the Internet and telecom networks had the technical potential for enormous abuse against privacy. Everybody else dismissed those points as basically tinfoilhattery – until the Snowden files came out, and it was revealed that precisely everybody involved had abused their technical capability for invasion of privacy as far as was possible.Perhaps it would be wise to not repeat that exact mistake. Nobody, and I really mean nobody, is to be trusted with a technical capability to listen to every room in the world, with listening profiles customizable at the identified-individual level, on the mere basis of “trust us”.
  • Privacy remains your own responsibility.
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    And of course, Google would never succumb to a subpoena requiring it to turn over the audio stream to the NSA. The Tor Browser just keeps looking better and better. https://www.torproject.org/projects/torbrowser.html.en
Alexandra IcecreamApps

How to Check the Computer Specs on Windows 10, 8, 7, Vista, and XP - Icecream Tech Digest - 0 views

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    Learn how to check the computer specs on Windows 10, 8, 7, Vista, and XP
Paul Merrell

Cloud computing with Amazon Web Services, Part 1: Introduction - 0 views

  • Cloud computing is a paradigm shift in how we architect and deliver scalable applications. In the past, successful companies spent precious time and resources building an infrastructure that in turn provided them a competitive advantage. It was frequently a case of "You build it first and they will come." In most cases, this approach: Left large tracts of unused computing capacity that took up space in big data centers. Required someone to babysit the servers. Had associated energy costs. The unused computing power wasted away, with no way to push it out to other companies or users who might be willing to pay for additional compute cycles. With cloud computing, excess computing capacity can be put to use and be profitably sold to consumers. This transformation of computing and IT infrastructure into a utility, which is available to all, somewhat levels the playing field.
  • According to Amazon’s estimates, businesses spend about 70 percent of their time on building and maintaining their infrastructures while using only 30 percent of their precious time actually working on the ideas that power their businesses.
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Paul Merrell

German Parliament Says No More Software Patents | Electronic Frontier Foundation - 0 views

  • The German Parliament recently took a huge step that would eliminate software patents (PDF) when it issued a joint motion requiring the German government to ensure that computer programs are only covered by copyright. Put differently, in Germany, software cannot be patented. The Parliament's motion follows a similar announcement made by New Zealand's government last month (PDF), in which it determined that computer programs were not inventions or a manner of manufacture and, thus, cannot be patented.
  • The crux of the German Parliament's motion rests on the fact that software is already protected by copyright, and developers are afforded "exploitation rights." These rights, however, become confused when broad, abstract patents also cover general aspects of computer programs. These two intellectual property systems are at odds. The clearest example of this clash is with free software. The motion recognizes this issue and therefore calls upon the government "to preserve the precedence of copyright law so that software developers can also publish their work under open source license terms and conditions with legal security." The free software movement relies upon the fact that software can be released under a copyright license that allows users to share it and build upon others' works. Patents, as Parliament finds, inhibit this fundamental spread.
  • Just like in the New Zealand order, the German Parliament carved out one type of software that could be patented, when: the computer program serves merely as a replaceable equivalent for a mechanical or electro-mechanical component, as is the case, for instance, when software-based washing machine controls can replace an electromechanical program control unit consisting of revolving cylinders which activate the control circuits for the specific steps of the wash cycle This allows for software that is tied to (and controls part of) another invention to be patented. In other words, if a claimed process is purely a computer program, then it is not patentable. (New Zealand's order uses a similar washing machine example.) The motion ends by calling upon the German government to push for this approach to be standard across all of Europe. We hope policymakers in the United States will also consider fundamental reform that deals with the problems caused by low-quality software patents. Ultimately, any real reform must address this issue.
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    Note that an unofficial translation of the parliamentary motion is linked from the article. This adds substantially to the pressure internationally to end software patents because Germany has been the strongest defender of software patents in Europe. The same legal grounds would not apply in the U.S. The strongest argument for the non-patentability in the U.S., in my opinion, is that software patents embody embody both prior art and obviousness. A general purpose computer can accomplish nothing unforeseen by the prior art of the computing device. And it is impossible for software to do more than cause different sequences of bit register states to be executed. This is the province of "skilled artisans" using known methods to produce predictable results. There is a long line of Supreme Court decisions holding that an "invention" with such traits is non-patentable. I have summarized that argument with citations at . 
Gonzalo San Gil, PhD.

Endless: A complete Linux computer the rest of the world can afford - 1 views

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    " Designed for developing economies, the Endless computer (which runs Linux) aims to deliver affordable and useful computing "
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    " Designed for developing economies, the Endless computer (which runs Linux) aims to deliver affordable and useful computing "
Paul Merrell

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
Gary Edwards

Clouds Should Be Open, Not Proprietary - 0 views

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    The nine essential considerations of cloud computing. This may be the best article yet written about cloud computing. A must read! ,,, ""What sort of cloud computer(s) should we be building or expecting from vendors? Are there issues of lock-in that should concern customers of either SaaS clouds or PaaS clouds? I've been thinking about this problem as the CEO of a PaaS cloud computing company for some time. Clouds should be open. They shouldn't be proprietary. More broadly, I believe no vendor currently does everything that's required to serve customers well."
Gonzalo San Gil, PhD.

Omega2: $5 Linux Computer with Wi-Fi, Made for IoT | Indiegogo - 0 views

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    "Introducing the Omega2, the $5 IoT computer. What the heck is an IoT computer? It is a Linux computer designed specifically for building connected hardware applications. It combines the tiny form factor and power-efficiency of the Arduino, with the power and flexibilities of the Raspberry Pi. "
Gonzalo San Gil, PhD.

Trusted Computing Group - Benefits - 1 views

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    "Benefits Trusted Computing makes computing more secure. Systems based on Trusted Computing: Protect critical data and systems agains a variety of attacks Enable secure authentication and strong protection of unlimited certificates, keys, and passwords that otherwise are accessible Establish strong machine identity and integrity Help satisfy regulatory compliance with hardware-based security Cost less to manage, removing need for expensive tokens and peripherals"
Gary Edwards

Out in the Open: Inside the Operating System Edward Snowden Used to Evade the NSA | Ent... - 0 views

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    TAILS anonymous Operating System- excerpt: "When NSA whistle-blower Edward Snowden first emailed Glenn Greenwald, he insisted on using email encryption software called PGP for all communications. But this month, we learned that Snowden used another technology to keep his communications out of the NSA's prying eyes. It's called Tails. And naturally, nobody knows exactly who created it. Tails is a kind of computer-in-a-box. You install it on a DVD or USB drive, boot up the computer from the drive and, voila, you're pretty close to anonymous on the internet. At its heart, Tails is a version of the Linux operating system optimized for anonymity. It comes with several privacy and encryption tools, most notably Tor, an application that anonymizes a user's internet traffic by routing it through a network of computers run by volunteers around the world. Snowden, Greenwald and their collaborator, documentary film maker Laura Poitras, used it because, by design, Tails doesn't store any data locally. This makes it virtually immune to malicious software, and prevents someone from performing effective forensics on the computer after the fact. That protects both the journalists, and often more importantly, their sources. "The installation and verification has a learning curve to make sure it is installed correctly," Poitras told WIRED by e-mail. "But once the set up is done, I think it is very easy to use." An Operating System for Anonymity Originally developed as a research project by the U.S. Naval Research Laboratory, Tor has been used by a wide range of people who care about online anonymity: everyone from Silk Road drug dealers, to activists, whistleblowers, stalking victims and people who simply like their online privacy. Tails makes it much easier to use Tor and other privacy tools. Once you boot into Tails - which requires no special setup - Tor runs automatically. When you're done using it, you can boot back into your PC's normal operating
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