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Gonzalo San Gil, PhD.

NoScript - JavaScript/Java/Flash blocker for a safer Firefox experience! - NoScript Rel... - 0 views

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    "Congratulations, you've got the latest version. If you find any bug or you'd like an enhancement, please report here or here. Many thanks! Main good news Script Surrogate replacement for googletagservices.com (thanks Guest and barbaz). Fixed XSS false positive in the new gmx.com webmail login and in other services (e.g. mail.com) using the same back-end. Better compatibility with script inclusion enforcers such as Require.js. Safer toStaticHTML() implementation (thanks .mario for reporting). Several XSS filter improvements (thanks Masato Kinugawa for reporting). CAPS-independent, finer-tuned version of the "Allow local links" feature."
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    "Congratulations, you've got the latest version. If you find any bug or you'd like an enhancement, please report here or here. Many thanks! Main good news Script Surrogate replacement for googletagservices.com (thanks Guest and barbaz). Fixed XSS false positive in the new gmx.com webmail login and in other services (e.g. mail.com) using the same back-end. Better compatibility with script inclusion enforcers such as Require.js. Safer toStaticHTML() implementation (thanks .mario for reporting). Several XSS filter improvements (thanks Masato Kinugawa for reporting). CAPS-independent, finer-tuned version of the "Allow local links" feature."
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    "Congratulations, you've got the latest version. If you find any bug or you'd like an enhancement, please report here or here. Many thanks! Main good news Script Surrogate replacement for googletagservices.com (thanks Guest and barbaz). Fixed XSS false positive in the new gmx.com webmail login and in other services (e.g. mail.com) using the same back-end. Better compatibility with script inclusion enforcers such as Require.js. Safer toStaticHTML() implementation (thanks .mario for reporting). Several XSS filter improvements (thanks Masato Kinugawa for reporting). CAPS-independent, finer-tuned version of the "Allow local links" feature."
Gonzalo San Gil, PhD.

Surveillance Self-Defense | Tips, Tools and How-tos for Safer Online Communications - 0 views

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    "Tips, Tools and How-tos for Safer Online Communications"
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    "Tips, Tools and How-tos for Safer Online Communications"
Paul Merrell

We're Halfway to Encrypting the Entire Web | Electronic Frontier Foundation - 0 views

  • The movement to encrypt the web has reached a milestone. As of earlier this month, approximately half of Internet traffic is now protected by HTTPS. In other words, we are halfway to a web safer from the eavesdropping, content hijacking, cookie stealing, and censorship that HTTPS can protect against. Mozilla recently reported that the average volume of encrypted web traffic on Firefox now surpasses the average unencrypted volume
  • Google Chrome’s figures on HTTPS usage are consistent with that finding, showing that over 50% of of all pages loaded are protected by HTTPS across different operating systems.
  • This milestone is a combination of HTTPS implementation victories: from tech giants and large content providers, from small websites, and from users themselves.
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  • Starting in 2010, EFF members have pushed tech companies to follow crypto best practices. We applauded when Facebook and Twitter implemented HTTPS by default, and when Wikipedia and several other popular sites later followed suit. Google has also put pressure on the tech community by using HTTPS as a signal in search ranking algorithms and, starting this year, showing security warnings in Chrome when users load HTTP sites that request passwords or credit card numbers. EFF’s Encrypt the Web Report also played a big role in tracking and encouraging specific practices. Recently other organizations have followed suit with more sophisticated tracking projects. For example, Secure the News and Pulse track HTTPS progress among news media sites and U.S. government sites, respectively.
  • But securing large, popular websites is only one part of a much bigger battle. Encrypting the entire web requires HTTPS implementation to be accessible to independent, smaller websites. Let’s Encrypt and Certbot have changed the game here, making what was once an expensive, technically demanding process into an easy and affordable task for webmasters across a range of resource and skill levels. Let’s Encrypt is a Certificate Authority (CA) run by the Internet Security Research Group (ISRG) and founded by EFF, Mozilla, and the University of Michigan, with Cisco and Akamai as founding sponsors. As a CA, Let’s Encrypt issues and maintains digital certificates that help web users and their browsers know they’re actually talking to the site they intended to. CAs are crucial to secure, HTTPS-encrypted communication, as these certificates verify the association between an HTTPS site and a cryptographic public key. Through EFF’s Certbot tool, webmasters can get a free certificate from Let’s Encrypt and automatically configure their server to use it. Since we announced that Let’s Encrypt was the web’s largest certificate authority last October, it has exploded from 12 million certs to over 28 million. Most of Let’s Encrypt’s growth has come from giving previously unencrypted sites their first-ever certificates. A large share of these leaps in HTTPS adoption are also thanks to major hosting companies and platforms--like WordPress.com, Squarespace, and dozens of others--integrating Let’s Encrypt and providing HTTPS to their users and customers.
  • Unfortunately, you can only use HTTPS on websites that support it--and about half of all web traffic is still with sites that don’t. However, when sites partially support HTTPS, users can step in with the HTTPS Everywhere browser extension. A collaboration between EFF and the Tor Project, HTTPS Everywhere makes your browser use HTTPS wherever possible. Some websites offer inconsistent support for HTTPS, use unencrypted HTTP as a default, or link from secure HTTPS pages to unencrypted HTTP pages. HTTPS Everywhere fixes these problems by rewriting requests to these sites to HTTPS, automatically activating encryption and HTTPS protection that might otherwise slip through the cracks.
  • Our goal is a universally encrypted web that makes a tool like HTTPS Everywhere redundant. Until then, we have more work to do. Protect your own browsing and websites with HTTPS Everywhere and Certbot, and spread the word to your friends, family, and colleagues to do the same. Together, we can encrypt the entire web.
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    HTTPS connections don't work for you if you don't use them. If you're not using HTTPS Everywhere in your browser, you should be; it's your privacy that is at stake. And every encrypted communication you make adds to the backlog of encrypted data that NSA and other internet voyeurs must process as encrypted traffic; because cracking encrypted messages is computer resource intensive, the voyeurs do not have the resources to crack more than a tiny fraction. HTTPS is a free extension for Firefox, Chrome, and Opera. You can get it here. https://www.eff.org/HTTPS-everywhere
Paul Merrell

New open-source router firmware opens your Wi-Fi network to strangers | Ars Technica - 0 views

  • We’ve often heard security folks explain their belief that one of the best ways to protect Web privacy and security on one's home turf is to lock down one's private Wi-Fi network with a strong password. But a coalition of advocacy organizations is calling such conventional wisdom into question. Members of the “Open Wireless Movement,” including the Electronic Frontier Foundation (EFF), Free Press, Mozilla, and Fight for the Future are advocating that we open up our Wi-Fi private networks (or at least a small slice of our available bandwidth) to strangers. They claim that such a random act of kindness can actually make us safer online while simultaneously facilitating a better allocation of finite broadband resources. The OpenWireless.org website explains the group’s initiative. “We are aiming to build technologies that would make it easy for Internet subscribers to portion off their wireless networks for guests and the public while maintaining security, protecting privacy, and preserving quality of access," its mission statement reads. "And we are working to debunk myths (and confront truths) about open wireless while creating technologies and legal precedent to ensure it is safe, private, and legal to open your network.”
  • One such technology, which EFF plans to unveil at the Hackers on Planet Earth (HOPE X) conference next month, is open-sourced router firmware called Open Wireless Router. This firmware would enable individuals to share a portion of their Wi-Fi networks with anyone nearby, password-free, as Adi Kamdar, an EFF activist, told Ars on Friday. Home network sharing tools are not new, and the EFF has been touting the benefits of open-sourcing Web connections for years, but Kamdar believes this new tool marks the second phase in the open wireless initiative. Unlike previous tools, he claims, EFF’s software will be free for all, will not require any sort of registration, and will actually make surfing the Web safer and more efficient.
  • Kamdar said that the new firmware utilizes smart technologies that prioritize the network owner's traffic over others', so good samaritans won't have to wait for Netflix to load because of strangers using their home networks. What's more, he said, "every connection is walled off from all other connections," so as to decrease the risk of unwanted snooping. Additionally, EFF hopes that opening one’s Wi-Fi network will, in the long run, make it more difficult to tie an IP address to an individual. “From a legal perspective, we have been trying to tackle this idea that law enforcement and certain bad plaintiffs have been pushing, that your IP address is tied to your identity. Your identity is not your IP address. You shouldn't be targeted by a copyright troll just because they know your IP address," said Kamdar.
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  • While the EFF firmware will initially be compatible with only one specific router, the organization would like to eventually make it compatible with other routers and even, perhaps, develop its own router. “We noticed that router software, in general, is pretty insecure and inefficient," Kamdar said. “There are a few major players in the router space. Even though various flaws have been exposed, there have not been many fixes.”
Gonzalo San Gil, PhD.

A newly discovered router virus actually fights off malware | The Verge - 1 views

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    "Routers are among the most hackable devices out there - rarely updated, easily compromised, and almost never scanned for viruses. But a new router virus might actually be making the devices safer, according to a report from the security firm Symantec."
Gonzalo San Gil, PhD.

Q4OS Is the Perfect Distro for People Who Want a Windows OS, Only Safer - Gallery - Sof... - 1 views

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    "There are many ways to make a Linux system look like its Windows counterpart. It's usually done with the help of themes and icons, and most of the times the resemblance is uncanny, but it's still not all that far away from the original base."
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    "There are many ways to make a Linux system look like its Windows counterpart. It's usually done with the help of themes and icons, and most of the times the resemblance is uncanny, but it's still not all that far away from the original base."
Paul Merrell

Mozilla Acquires Pocket | The Mozilla Blog - 0 views

  • e are excited to announce that the Mozilla Corporation has completed the acquisition of Read It Later, Inc. the developers of Pocket. Mozilla is growing, experimenting more, and doubling down on our mission to keep the internet healthy, as a global public resource that’s open and accessible to all. As our first strategic acquisition, Pocket contributes to our strategy by growing our mobile presence and providing people everywhere with powerful tools to discover and access high quality web content, on their terms, independent of platform or content silo. Pocket will join Mozilla’s product portfolio as a new product line alongside the Firefox web browsers with a focus on promoting the discovery and accessibility of high quality web content. (Here’s a link to their blog post on the acquisition).  Pocket’s core team and technology will also accelerate Mozilla’s broader Context Graph initiative.
  • “We believe that the discovery and accessibility of high quality web content is key to keeping the internet healthy by fighting against the rising tide of centralization and walled gardens. Pocket provides people with the tools they need to engage with and share content on their own terms, independent of hardware platform or content silo, for a safer, more empowered and independent online experience.” – Chris Beard, Mozilla CEO Pocket brings to Mozilla a successful human-powered content recommendation system with 10 million unique monthly active users on iOS, Android and the Web, and with more than 3 billion pieces of content saved to date. In working closely with Pocket over the last year around the integration within Firefox, we developed a shared vision and belief in the opportunity to do more together that has led to Pocket joining Mozilla today. “We’ve really enjoyed partnering with Mozilla over the past year. We look forward to working more closely together to support the ongoing growth of Pocket and to create great new products that people love in support of our shared mission.” – Nate Weiner, Pocket CEO As a result of this strategic acquisition, Pocket will become a wholly owned subsidiary of Mozilla Corporation and will become part of the Mozilla open source project.
Gonzalo San Gil, PhD.

OpenITP improving tools used to circumvent censorship and surveillance | opensource.com - 0 views

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    "Software tools that bypass censorship and surveillance, also known as circumvention technology, are used in variety of contexts. Chinese citizens get around the Great Firewall to access censored sites and popular international social media platforms. Activists in Iran bypass government surveillance to post photos and video of anti-government demonstrations. Journalists in Mexico circumvent cartel surveillance to report on local drug-related violence."
Paul Merrell

Safer email - Transparency Report - Google - 0 views

  • Email encryption in transit Many email providers don’t encrypt messages while they’re in transit. When you send or receive emails with one of these providers, these messages are as open to snoopers as a postcard in the mail. A growing number of email providers are working to change that, by encrypting messages sent to and from our services using Transport Layer Security (TLS). When an email is encrypted in transit with TLS, it makes it harder for others to read what you’re sending. The data below explains the current state of email encryption in transit.
  • Generally speaking, use of encryption in transit increases over time, as more providers enable and maintain their support. Factors such as varying volumes of email may explain other fluctuations.
  • Below is the percentage of email encrypted for the top domains in terms of volume of email to and from Gmail, in alphabetical order.
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  • Explore the data Search any domain (e.g. “example.com”) or string (e.g. “de”) to see how much of the email exchanged with Gmail is encrypted in transit. Or download the full dataset.
Gonzalo San Gil, PhD.

Protect your freedom and privacy; join us in creating an Internet that's safer from sur... - 0 views

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    "by Zak Rogoff - Published on Jul 18, 2013 05:10 PM eyes learing at emails Mass-scale surveillance like PRISM is disturbing, but is an unsurprising effect of how centralized the Web is today. "
Paul Merrell

Victory for Users: Librarian of Congress Renews and Expands Protections for Fair Uses |... - 0 views

  • The new rules for exemptions to copyright's DRM-circumvention laws were issued today, and the Librarian of Congress has granted much of what EFF asked for over the course of months of extensive briefs and hearings. The exemptions we requested—ripping DVDs and Blurays for making fair use remixes and analysis; preserving video games and running multiplayer servers after publishers have abandoned them; jailbreaking cell phones, tablets, and other portable computing devices to run third party software; and security research and modification and repairs on cars—have each been accepted, subject to some important caveats.
  • The exemptions are needed thanks to a fundamentally flawed law that forbids users from breaking DRM, even if the purpose is a clearly lawful fair use. As software has become ubiquitous, so has DRM.  Users often have to circumvent that DRM to make full use of their devices, from DVDs to games to smartphones and cars. The law allows users to request exemptions for such lawful uses—but it doesn’t make it easy. Exemptions are granted through an elaborate rulemaking process that takes place every three years and places a heavy burden on EFF and the many other requesters who take part. Every exemption must be argued anew, even if it was previously granted, and even if there is no opposition. The exemptions that emerge are limited in scope. What is worse, they only apply to end users—the people who are actually doing the ripping, tinkering, jailbreaking, or research—and not to the people who make the tools that facilitate those lawful activities. The section of the law that creates these restrictions—the Digital Millennium Copyright Act's Section 1201—is fundamentally flawed, has resulted in myriad unintended consequences, and is long past due for reform or removal altogether from the statute books. Still, as long as its rulemaking process exists, we're pleased to have secured the following exemptions.
  • The new rules are long and complicated, and we'll be posting more details about each as we get a chance to analyze them. In the meantime, we hope each of these exemptions enable more exciting fair uses that educate, entertain, improve the underlying technology, and keep us safer. A better long-terms solution, though, is to eliminate the need for this onerous rulemaking process. We encourage lawmakers to support efforts like the Unlocking Technology Act, which would limit the scope of Section 1201 to copyright infringements—not fair uses. And as the White House looks for the next Librarian of Congress, who is ultimately responsible for issuing the exemptions, we hope to get a candidate who acts—as a librarian should—in the interest of the public's access to information.
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.
Gonzalo San Gil, PhD.

Cloud Servers Are More Secure Than Your Data Center. Here's Why. - Datamation - 0 views

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    "Without the expertise, experience and security commitment a cloud vendor, your company's data center is unlikely to match the cloud for security."
Paul Merrell

NSA Based Malware Used In Massive Cyber-Attack Hitting 74 Countries - 0 views

  • Apparent National Security Agency (NSA) malware has been used in a global cyber-attack, including on British hospitals, in what whistleblower Edward Snowden described as the repercussion of the NSA’s reckless decision to build the tools. “Despite warnings, @NSAGov built dangerous attack tools that could target Western software. Today we see the cost,” Snowden tweeted Friday. At least two hospitals in London were forced to shut down and stop admitting patients after being attacked by the malware, which operates by locking out the user, encrypting data, and demanding a ransom to release it. The attacks hit dozens of other hospitals, ambulance operators, and doctors’ offices as well.
  • The Blackpool Gazette in the northwest reported that medical staff had resorted to using pen and paper when phone and computer systems shut down. Elsewhere, journalist Ollie Cowan tweeted a photo of ambulances “backed up” at Southport Hospital as the staff attempted to cope with the crisis.
  • Other disruptions were reported in at least 74 countries, including Russia, Spain, Turkey, and Japan, and the number is “growing fast,” according to Kaspersky Lab chief Costin Raiu. Security architect Kevin Beau said it was spreading into the U.S. as well. The malware, which Microsoft tested briefly earlier this year, was leaked by a group calling itself the Shadow Brokers, which has been releasing NSA hacking tools online since last year, the New York Times reports. Times journalists Dan Bilefsky and Nicole Perlroth wrote: Microsoft rolled out a patch for the vulnerability in March, but hackers apparently took advantage of the fact that vulnerable targets—particularly hospitals—had yet to update their systems. The malware was circulated by email. Targets were sent an encrypted, compressed file that, once loaded, allowed the ransomware to infiltrate its targets. Reuters reported that the National Health Service (NHS), England’s public health system, was warned about possible hacking earlier in the day, but that by then it was already too late.
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  • A Twitter account with the handle @HackerFantastic, the co-founder of the cyber security company Hacker House, tweeted that the firm had “warned the NHS with Sky news about vulnerabilities they had last year, this was inevitable and bound to happen at some stage.” “In light of today’s attack, Congress needs to be asking @NSAgov if it knows of any other vulnerabilities in software used in our hospitals,” Snowden tweeted. “If @NSAGov had privately disclosed the flaw used to attack hospitals when they *found* it, not when they lost it, this may not have happened.” Disclosing the vulnerability when it was found would have given hospitals years, not months, to update their systems and prepare for an attack, he added.
  • witter user @MalwareTechBlog added, “Something like this is incredibly significant, we’ve not seen P2P spreading on PC via exploits at this scale in nearly a decade.” Patrick Toomey, a staff attorney with the American Civil Liberties Union’s (ACLU) National Security Project, said, “It would be shocking if the NSA knew about this vulnerability but failed to disclose it to Microsoft until after it was stolen.” “These attacks underscore the fact that vulnerabilities will be exploited not just by our security agencies, but by hackers and criminals around the world,” Toomey said. “It is past time for Congress to enhance cybersecurity by passing a law that requires the government to disclose vulnerabilities to companies in a timely manner. Patching security holes immediately, not stockpiling them, is the best way to make everyone’s digital life safer.”
Paul Merrell

Google Engineer Leaks Nearly 1,000 Pages of Internal Documents, Alleging Bias, Censorship - 0 views

  • A former Google engineer has released nearly 1,000 pages of documents that he says prove that the company, at least in some of its products, secretly boosts or demotes content based on what it deems to be true or false, while publicly claiming to be a neutral platform. The software engineer, Zach Vorhies, first provided the documents to Project Veritas, a right-leaning investigative journalism nonprofit, as well as the Justice Department’s antitrust division, which has been investigating Google for potentially anti-competitive behavior.
  • When he returned to work, however, Google sent him a letter demanding, among other things, that he turn over his employee badge and work laptop, which he did, and “cease and desist” from disclosing “any non-public Google files.” Afraid for his safety, he posted on Twitter that if something would happen to him, all the documents he took would be released to the public.Google then did a “wellness check” on him, he said. The San Francisco police received a call that Vorhies may be mentally ill. A group of officers waited for him outside his house and put him in handcuffs. “This is a large way in which they intimidate their employees that go rogue on the company,” he said.Vorhies then decided that it would be safer for him to go public.
  • One of the goals of the effort was a “clean & regularly sanitized news corpus,” it reads.
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  • Robert Epstein, a psychologist who has spent years researching Google’s influence on its users, has published research showing that just by deciding the sequence of top search results, the company can sway undecided voters.Epstein determined that this has led to 2.6 million votes shifting in the 2016 presidential election to Trump’s opponent, former Secretary of State Hillary Clinton. He warned that in 2020, if companies such as Google and Facebook all support the same candidate, they will be able to shift 15 million votes—well beyond the margin most presidents have won by.
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