MASHA – Low Cost Authentication with a New Stream Cipher
Identifieur interne : 000343 ( Main/Exploration ); précédent : 000342; suivant : 000344MASHA – Low Cost Authentication with a New Stream Cipher
Auteurs : Shinsaku Kiyomoto [Japon] ; Matt Henricksen [Singapour] ; Wun-She Yap [Singapour] ; Yuto Nakano [Japon] ; Kazuhide Fukushima [Japon]Source :
- Lecture Notes in Computer Science [ 0302-9743 ] ; 2011.
English descriptors
- Teeft :
- Algebraic, Algebraic attack, Algebraic attacks, Algorithm, Authentication, Blanking, Blanking rounds, Block ciphers, Byte, Cipher, Ciphertext, Cost authentication, Encryption, Estream, Estream report, Feedback, Feedback function, Feedback polynomial, Heidelberg, Initialization, Initialization process, Internal registers, Internal state, Keystream, Keystream generation, Keystream generation algorithm, Kiyomoto, Lncs, Masha, Message authentication, Message forgery, Plaintext, Plaintext message, Springer, Statistical properties, Stream ciphers.
Abstract
Abstract: In this paper, we propose a new high-speed stream cipher called MASHA (Message Authenticated Streaming-encryption Heterogeneous Algorithm) with integrated MAC functionality. It simultaneously encrypts plaintext and produces an authentication tag that assures data and origin integrity. On the Intel Core 2, its speed is 11.92 cycles/byte, which is faster than the time it takes to encrypt and authenticate using well-known primitives SNOW 2.0 and SHA-256 in conjunction. We show that MASHA is secure against all known attacks.
Url:
DOI: 10.1007/978-3-642-24861-0_5
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">Abstract: In this paper, we propose a new high-speed stream cipher called MASHA (Message Authenticated Streaming-encryption Heterogeneous Algorithm) with integrated MAC functionality. It simultaneously encrypts plaintext and produces an authentication tag that assures data and origin integrity. On the Intel Core 2, its speed is 11.92 cycles/byte, which is faster than the time it takes to encrypt and authenticate using well-known primitives SNOW 2.0 and SHA-256 in conjunction. We show that MASHA is secure against all known attacks.</div>
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