Security Leftovers
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LWN.net Weekly Edition for June 30, 2016
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TP-Link forgets to register domain name, leaves config pages open to hijack
In common with many other vendors, TP-Link, one of the world's biggest sellers of Wi-Fi access points and home routers, has a domain name that owners of the hardware can use to quickly get to their router's configuration page. Unlike most other vendors, however, it appears that TP-Link has failed to renew its registration for the domain, leaving it available for anyone to buy. Any owner of the domain could feasibly use it for fake administration pages to phish credentials or upload bogus firmware. This omission was spotted by Amitay Dan, CEO of Cybermoon, and posted to the Bugtraq mailing list last week.
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Experimenting with Post-Quantum Cryptography
The study of cryptographic primitives that remain secure even against quantum computers is called “post-quantum cryptography”. Today we're announcing an experiment in Chrome where a small fraction of connections between desktop Chrome and Google's servers will use a post-quantum key-exchange algorithm in addition to the elliptic-curve key-exchange algorithm that would typically be used. By adding a post-quantum algorithm on top of the existing one, we are able to experiment without affecting user security. The post-quantum algorithm might turn out to be breakable even with today's computers, in which case the elliptic-curve algorithm will still provide the best security that today’s technology can offer. Alternatively, if the post-quantum algorithm turns out to be secure then it'll protect the connection even against a future, quantum computer.
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HTTPS crypto’s days are numbered. Here’s how Google wants to save it
Like many forms of encryption in use today, HTTPS protections are on the brink of a collapse that could bring down the world as we know it. Hanging in the balance are most encrypted communications sent over the last several decades. On Thursday, Google unveiled an experiment designed to head off, or at least lessen, the catastrophe.
In the coming months, Google servers will add a new, experimental cryptographic algorithm to the more established elliptic curve algorithm it has been using for the past few years to help encrypt HTTPS communications. The algorithm—which goes by the wonky name "Ring Learning With Errors"—is a method of exchanging cryptographic keys that's currently considered one of the great new hopes in the age of quantum computing. Like other forms of public key encryption, it allows two parties who have never met to encrypt their communications, making it ideal for Internet usage.
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