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Efficient MPC from Syndrome Decoding (or: Honey, I Shrunk the Keys)
multi-party computation oblivious transfer syndrome decoding
2018/3/5
We present a new approach to designing concretely efficient MPC protocols with semi-honest security in the dishonest majority setting. Motivated by the fact that within the dishonest majority setting ...
Honey Encryption (HE), introduced by Juels and Ristenpart (Eurocrypt 2014), is an encryption paradigm designed to produce ciphertexts yielding plausible-looking but bogus plaintexts upon decryption wi...
Honey encryption (HE) is a new technique to overcome the weakness of conventional password-based encryption (PBE). However, conventional honey encryption still has the limitation that it works only fo...
Honey Chatting: A novel instant messaging system robust to eavesdropping over communication
Honey Encryption Language model
2017/2/20
There have been many efforts to strengthen security of Instant Messaging (IM) system. One of the typical technologies is the conventional message encryption using a secret or private key. However, the...
The surprising success of cryptocurrencies has led to a surge of interest in deploying large scale, highly robust, Byzantine fault tolerant (BFT) proto- cols for mission-critical applications, such as...
Juels and Ristenpart introduced honey encryption (HE) and showed how to achieve message
recovery security even in the face of attacks that can exhaustively try all likely keys. This is
important in ...
Honey Encryption: Security Beyond the Brute-Force Bound
Brute-Force Bound high min-entropy keys
2016/1/25
We introduce honey encryption (HE), a simple, general approach to encrypting messages using low min-entropy
keys such as passwords. HE is designed to produce a ciphertext which, when decrypted with a...