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Paul Merrell

Is Apple an Illegal Monopoly? | OneZero - 0 views

  • That’s not a bug. It’s a function of Apple policy. With some exceptions, the company doesn’t let users pay app makers directly for their apps or digital services. They can only pay Apple, which takes a 30% cut of all revenue and then passes 70% to the developer. (For subscription services, which account for the majority of App Store revenues, that 30% cut drops to 15% after the first year.) To tighten its grip, Apple prohibits the affected apps from even telling users how they can pay their creators directly.In 2018, unwilling to continue paying the “Apple tax,” Netflix followed Spotify and Amazon’s Kindle books app in pulling in-app purchases from its iOS app. Users must now sign up elsewhere, such as on the company’s website, in order for the app to become usable. Of course, these brands are big enough to expect that many users will seek them out anyway.
  • Smaller app developers, meanwhile, have little choice but to play by Apple’s rules. That’s true even when they’re competing with Apple’s own apps, which pay no such fees and often enjoy deeper access to users’ devices and information.Now, a handful of developers are speaking out about it — and government regulators are beginning to listen. David Heinemeier Hansson, the co-founder of the project management software company Basecamp, told members of the U.S. House antitrust subcommittee in January that navigating the App Store’s fees, rules, and review processes can feel like a “Kafka-esque nightmare.”One of the world’s most beloved companies, Apple has long enjoyed a reputation for user-friendly products, and it has cultivated an image as a high-minded protector of users’ privacy. The App Store, launched in 2008, stands as one of its most underrated inventions; it has powered the success of the iPhone—perhaps the most profitable product in human history. The concept was that Apple and developers could share in one another’s success with the iPhone user as the ultimate beneficiary.
  • But critics say that gauzy success tale belies the reality of a company that now wields its enormous market power to bully, extort, and sometimes even destroy rivals and business partners alike. The iOS App Store, in their telling, is a case study in anti-competitive corporate behavior. And they’re fighting to change that — by breaking its choke hold on the Apple ecosystem.
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  • Whether Apple customers have a real choice in mobile platforms, once they’ve bought into the company’s ecosystem, is another question. In theory, they could trade in their pricey hardware for devices that run Android, which offers equivalents of many iOS features and apps. In reality, Apple has built its empire on customer lock-in: making its own gadgets and services work seamlessly with one another, but not with those of rival companies. Tasks as simple as texting your friends can become a migraine-inducing mess when you switch from iOS to Android. The more Apple products you buy, the more onerous it becomes to abandon ship.
  • The case against Apple goes beyond iOS. At a time when Apple is trying to reinvent itself as a services company to offset plateauing hardware sales — pushing subscriptions to Apple Music, Apple TV+, Apple News+, and Apple Arcade, as well as its own credit card — the antitrust concerns are growing more urgent. Once a theoretical debate, the question of whether its App Store constitutes an illegal monopoly is now being actively litigated on multiple fronts.
  • The company faces an antitrust lawsuit from consumers; a separate antitrust lawsuit from developers; a formal antitrust complaint from Spotify in the European Union; investigations by the Federal Trade Commission and the Department of Justice; and an inquiry by the antitrust subcommittee of the U.S House of Representatives. At stake are not only Apple’s profits, but the future of mobile software.Apple insists that it isn’t a monopoly, and that it strives to make the app store a fair and level playing field even as its own apps compete on that field. But in the face of unprecedented scrutiny, there are signs that the famously stubborn company may be feeling the pressure to prove it.
  • Tile is hardly alone in its grievances. Apple’s penchant for copying key features of third-party apps and integrating them into its operating system is so well-known among developers that it has a name: “Sherlocking.” It’s a reference to the time—in the early 2000s—when Apple kneecapped a popular third-party web-search interface for Mac OS X, called Watson. Apple built virtually all of Watson’s functionality into its own feature, called Sherlock.In a 2006 blog post, Watson’s developer, Karelia Software, recalled how Apple’s then-CEO Steve Jobs responded when they complained about the company’s 2002 power play. “Here’s how I see it,” Jobs said, according to Karelia founder Dan Wood’s loose paraphrase. “You know those handcars, the little machines that people stand on and pump to move along on the train tracks? That’s Karelia. Apple is the steam train that owns the tracks.”From an antitrust standpoint, the metaphor is almost too perfect. It was the monopoly power of railroads in the late 19th century — and their ability to make or break the businesses that used their tracks — that spurred the first U.S. antitrust regulations.There’s another Jobs quote that’s relevant here. Referencing Picasso’s famous saying, “Good artists copy, great artists steal,” Jobs said of Apple in 2006. “We have always been shameless about stealing great ideas.” Company executives later tried to finesse the quote’s semantics, but there’s no denying that much of iOS today is built on ideas that were not originally Apple’s.
Gonzalo San Gil, PhD.

Breaking: A2IM Advises Against Licensing Apple Music... - Digital Music NewsDigital Mus... - 0 views

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    "Yesterday, Digital Music News published a leaked Apple Music contract confirming that no royalties will be paid to rights owners during a three-month trial period. In response, highly-influential independent label organization A2IM offered this word if caution to its members."
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    "Yesterday, Digital Music News published a leaked Apple Music contract confirming that no royalties will be paid to rights owners during a three-month trial period. In response, highly-influential independent label organization A2IM offered this word if caution to its members."
Paul Merrell

Cy Vance's Proposal to Backdoor Encrypted Devices Is Riddled With Vulnerabilities | Jus... - 0 views

  • Less than a week after the attacks in Paris — while the public and policymakers were still reeling, and the investigation had barely gotten off the ground — Cy Vance, Manhattan’s District Attorney, released a policy paper calling for legislation requiring companies to provide the government with backdoor access to their smartphones and other mobile devices. This is the first concrete proposal of this type since September 2014, when FBI Director James Comey reignited the “Crypto Wars” in response to Apple’s and Google’s decisions to use default encryption on their smartphones. Though Comey seized on Apple’s and Google’s decisions to encrypt their devices by default, his concerns are primarily related to end-to-end encryption, which protects communications that are in transit. Vance’s proposal, on the other hand, is only concerned with device encryption, which protects data stored on phones. It is still unclear whether encryption played any role in the Paris attacks, though we do know that the attackers were using unencrypted SMS text messages on the night of the attack, and that some of them were even known to intelligence agencies and had previously been under surveillance. But regardless of whether encryption was used at some point during the planning of the attacks, as I lay out below, prohibiting companies from selling encrypted devices would not prevent criminals or terrorists from being able to access unbreakable encryption. Vance’s primary complaint is that Apple’s and Google’s decisions to provide their customers with more secure devices through encryption interferes with criminal investigations. He claims encryption prevents law enforcement from accessing stored data like iMessages, photos and videos, Internet search histories, and third party app data. He makes several arguments to justify his proposal to build backdoors into encrypted smartphones, but none of them hold water.
  • Before addressing the major privacy, security, and implementation concerns that his proposal raises, it is worth noting that while an increase in use of fully encrypted devices could interfere with some law enforcement investigations, it will help prevent far more crimes — especially smartphone theft, and the consequent potential for identity theft. According to Consumer Reports, in 2014 there were more than two million victims of smartphone theft, and nearly two-thirds of all smartphone users either took no steps to secure their phones or their data or failed to implement passcode access for their phones. Default encryption could reduce instances of theft because perpetrators would no longer be able to break into the phone to steal the data.
  • Vance argues that creating a weakness in encryption to allow law enforcement to access data stored on devices does not raise serious concerns for security and privacy, since in order to exploit the vulnerability one would need access to the actual device. He considers this an acceptable risk, claiming it would not be the same as creating a widespread vulnerability in encryption protecting communications in transit (like emails), and that it would be cheap and easy for companies to implement. But Vance seems to be underestimating the risks involved with his plan. It is increasingly important that smartphones and other devices are protected by the strongest encryption possible. Our devices and the apps on them contain astonishing amounts of personal information, so much that an unprecedented level of harm could be caused if a smartphone or device with an exploitable vulnerability is stolen, not least in the forms of identity fraud and credit card theft. We bank on our phones, and have access to credit card payments with services like Apple Pay. Our contact lists are stored on our phones, including phone numbers, emails, social media accounts, and addresses. Passwords are often stored on people’s phones. And phones and apps are often full of personal details about their lives, from food diaries to logs of favorite places to personal photographs. Symantec conducted a study, where the company spread 50 “lost” phones in public to see what people who picked up the phones would do with them. The company found that 95 percent of those people tried to access the phone, and while nearly 90 percent tried to access private information stored on the phone or in other private accounts such as banking services and email, only 50 percent attempted contacting the owner.
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  • Vance attempts to downplay this serious risk by asserting that anyone can use the “Find My Phone” or Android Device Manager services that allow owners to delete the data on their phones if stolen. However, this does not stand up to scrutiny. These services are effective only when an owner realizes their phone is missing and can take swift action on another computer or device. This delay ensures some period of vulnerability. Encryption, on the other hand, protects everyone immediately and always. Additionally, Vance argues that it is safer to build backdoors into encrypted devices than it is to do so for encrypted communications in transit. It is true that there is a difference in the threats posed by the two types of encryption backdoors that are being debated. However, some manner of widespread vulnerability will inevitably result from a backdoor to encrypted devices. Indeed, the NSA and GCHQ reportedly hacked into a database to obtain cell phone SIM card encryption keys in order defeat the security protecting users’ communications and activities and to conduct surveillance. Clearly, the reality is that the threat of such a breach, whether from a hacker or a nation state actor, is very real. Even if companies go the extra mile and create a different means of access for every phone, such as a separate access key for each phone, significant vulnerabilities will be created. It would still be possible for a malicious actor to gain access to the database containing those keys, which would enable them to defeat the encryption on any smartphone they took possession of. Additionally, the cost of implementation and maintenance of such a complex system could be high.
  • Privacy is another concern that Vance dismisses too easily. Despite Vance’s arguments otherwise, building backdoors into device encryption undermines privacy. Our government does not impose a similar requirement in any other context. Police can enter homes with warrants, but there is no requirement that people record their conversations and interactions just in case they someday become useful in an investigation. The conversations that we once had through disposable letters and in-person conversations now happen over the Internet and on phones. Just because the medium has changed does not mean our right to privacy has.
  • In addition to his weak reasoning for why it would be feasible to create backdoors to encrypted devices without creating undue security risks or harming privacy, Vance makes several flawed policy-based arguments in favor of his proposal. He argues that criminals benefit from devices that are protected by strong encryption. That may be true, but strong encryption is also a critical tool used by billions of average people around the world every day to protect their transactions, communications, and private information. Lawyers, doctors, and journalists rely on encryption to protect their clients, patients, and sources. Government officials, from the President to the directors of the NSA and FBI, and members of Congress, depend on strong encryption for cybersecurity and data security. There are far more innocent Americans who benefit from strong encryption than there are criminals who exploit it. Encryption is also essential to our economy. Device manufacturers could suffer major economic losses if they are prohibited from competing with foreign manufacturers who offer more secure devices. Encryption also protects major companies from corporate and nation-state espionage. As more daily business activities are done on smartphones and other devices, they may now hold highly proprietary or sensitive information. Those devices could be targeted even more than they are now if all that has to be done to access that information is to steal an employee’s smartphone and exploit a vulnerability the manufacturer was required to create.
  • Vance also suggests that the US would be justified in creating such a requirement since other Western nations are contemplating requiring encryption backdoors as well. Regardless of whether other countries are debating similar proposals, we cannot afford a race to the bottom on cybersecurity. Heads of the intelligence community regularly warn that cybersecurity is the top threat to our national security. Strong encryption is our best defense against cyber threats, and following in the footsteps of other countries by weakening that critical tool would do incalculable harm. Furthermore, even if the US or other countries did implement such a proposal, criminals could gain access to devices with strong encryption through the black market. Thus, only innocent people would be negatively affected, and some of those innocent people might even become criminals simply by trying to protect their privacy by securing their data and devices. Finally, Vance argues that David Kaye, UN Special Rapporteur for Freedom of Expression and Opinion, supported the idea that court-ordered decryption doesn’t violate human rights, provided certain criteria are met, in his report on the topic. However, in the context of Vance’s proposal, this seems to conflate the concepts of court-ordered decryption and of government-mandated encryption backdoors. The Kaye report was unequivocal about the importance of encryption for free speech and human rights. The report concluded that:
  • States should promote strong encryption and anonymity. National laws should recognize that individuals are free to protect the privacy of their digital communications by using encryption technology and tools that allow anonymity online. … States should not restrict encryption and anonymity, which facilitate and often enable the rights to freedom of opinion and expression. Blanket prohibitions fail to be necessary and proportionate. States should avoid all measures that weaken the security that individuals may enjoy online, such as backdoors, weak encryption standards and key escrows. Additionally, the group of intelligence experts that was hand-picked by the President to issue a report and recommendations on surveillance and technology, concluded that: [R]egarding encryption, the U.S. Government should: (1) fully support and not undermine efforts to create encryption standards; (2) not in any way subvert, undermine, weaken, or make vulnerable generally available commercial software; and (3) increase the use of encryption and urge US companies to do so, in order to better protect data in transit, at rest, in the cloud, and in other storage.
  • The clear consensus among human rights experts and several high-ranking intelligence experts, including the former directors of the NSA, Office of the Director of National Intelligence, and DHS, is that mandating encryption backdoors is dangerous. Unaddressed Concerns: Preventing Encrypted Devices from Entering the US and the Slippery Slope In addition to the significant faults in Vance’s arguments in favor of his proposal, he fails to address the question of how such a restriction would be effectively implemented. There is no effective mechanism for preventing code from becoming available for download online, even if it is illegal. One critical issue the Vance proposal fails to address is how the government would prevent, or even identify, encrypted smartphones when individuals bring them into the United States. DHS would have to train customs agents to search the contents of every person’s phone in order to identify whether it is encrypted, and then confiscate the phones that are. Legal and policy considerations aside, this kind of policy is, at the very least, impractical. Preventing strong encryption from entering the US is not like preventing guns or drugs from entering the country — encrypted phones aren’t immediately obvious as is contraband. Millions of people use encrypted devices, and tens of millions more devices are shipped to and sold in the US each year.
  • Finally, there is a real concern that if Vance’s proposal were accepted, it would be the first step down a slippery slope. Right now, his proposal only calls for access to smartphones and devices running mobile operating systems. While this policy in and of itself would cover a number of commonplace devices, it may eventually be expanded to cover laptop and desktop computers, as well as communications in transit. The expansion of this kind of policy is even more worrisome when taking into account the speed at which technology evolves and becomes widely adopted. Ten years ago, the iPhone did not even exist. Who is to say what technology will be commonplace in 10 or 20 years that is not even around today. There is a very real question about how far law enforcement will go to gain access to information. Things that once seemed like merely science fiction, such as wearable technology and artificial intelligence that could be implanted in and work with the human nervous system, are now available. If and when there comes a time when our “smart phone” is not really a device at all, but is rather an implant, surely we would not grant law enforcement access to our minds.
  • Policymakers should dismiss Vance’s proposal to prohibit the use of strong encryption to protect our smartphones and devices in order to ensure law enforcement access. Undermining encryption, regardless of whether it is protecting data in transit or at rest, would take us down a dangerous and harmful path. Instead, law enforcement and the intelligence community should be working to alter their skills and tactics in a fast-evolving technological world so that they are not so dependent on information that will increasingly be protected by encryption.
Paul Merrell

Hackers Prove Fingerprints Are Not Secure, Now What? | nsnbc international - 0 views

  • The Office of Personnel Management (OPM) recently revealed that an estimated 5.6 million government employees were affected by the hack; and not 1.1 million as previously assumed.
  • Samuel Schumach, spokesman for the OPM, said: “As part of the government’s ongoing work to notify individuals affected by the theft of background investigation records, the Office of Personnel Management and the Department of Defense have been analyzing impacted data to verify its quality and completeness. Of the 21.5 million individuals whose Social Security Numbers and other sensitive information were impacted by the breach, the subset of individuals whose fingerprints have been stolen has increased from a total of approximately 1.1 million to approximately 5.6 million.” This endeavor expended the use of the Department of Defense (DoD), the Department of Homeland Security (DHS), the National Security Agency (NSA), and the Pentagon. Schumer added that “if, in the future, new means are developed to misuse the fingerprint data, the government will provide additional information to individuals whose fingerprints may have been stolen in this breach.” However, we do not need to wait for the future for fingerprint data to be misused and coveted by hackers.
  • Look no further than the security flaws in Samsung’s new Galaxy 5 smartphone as was demonstrated by researchers at Security Research Labs (SRL) showing how fingerprints, iris scans and other biometric identifiers could be fabricated and yet authenticated by the Apple Touch ID fingerprints scanner. The shocking part of this demonstration is that this hack was achieved less than 2 days after the technology was released to the public by Apple. Ben Schlabs, researcher for SRL explained: “We expected we’d be able to spoof the S5’s Finger Scanner, but I hoped it would at least be a challenge. The S5 Finger Scanner feature offers nothing new except—because of the way it is implemented in this Android device—slightly higher risk than that already posed by previous devices.” Schlabs and other researchers discovered that “the S5 has no mechanism requiring a password when encountering a large number of incorrect finger swipes.” By rebotting the smartphone, Schlabs could force “the handset to accept an unlimited number of incorrect swipes without requiring users to enter a password [and] the S5 fingerprint authenticator [could] be associated with sensitive banking or payment apps such as PayPal.”
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  • Schlab said: “Perhaps most concerning is that Samsung does not seem to have learned from what others have done less poorly. Not only is it possible to spoof the fingerprint authentication even after the device has been turned off, but the implementation also allows for seemingly unlimited authentication attempts without ever requiring a password. Incorporation of fingerprint authentication into highly sensitive apps such as PayPal gives a would-be attacker an even greater incentive to learn the simple skill of fingerprint spoofing.” Last year Hackers from the Chaos Computer Club (CCC) proved Apple wrong when the corporation insisted that their new iPhone 5S fingerprint sensor is “a convenient and highly secure way to access your phone.” CCC stated that it is as easy as stealing a fingerprint from a drinking glass – and anyone can do it.
Gonzalo San Gil, PhD.

Apple Stole My Music. No, Seriously. | vellumatlanta - 1 views

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    "May 4, 2016 / jamespinkstone "The software is functioning as intended," said Amber. "Wait," I asked, "so it's supposed to delete my personal files from my internal hard drive without asking my permission?" "Yes," she replied."
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    "May 4, 2016 / jamespinkstone "The software is functioning as intended," said Amber. "Wait," I asked, "so it's supposed to delete my personal files from my internal hard drive without asking my permission?" "Yes," she replied."
Gonzalo San Gil, PhD.

Wix gets caught "stealing" GPL code from WordPress | Ars Technica UK [# ! Note] - 0 views

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    "In which Wix forgets what happens when you add GPL code to your closed-source app. Sean Gallagher (US) - Nov 2, 2016 6:10 am UTC"
Paul Merrell

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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