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2012 | OriginalPaper | Chapter

PRINCE – A Low-Latency Block Cipher for Pervasive Computing Applications

Extended Abstract

Authors : Julia Borghoff, Anne Canteaut, Tim Güneysu, Elif Bilge Kavun, Miroslav Knezevic, Lars R. Knudsen, Gregor Leander, Ventzislav Nikov, Christof Paar, Christian Rechberger, Peter Rombouts, Søren S. Thomsen, Tolga Yalçın

Published in: Advances in Cryptology – ASIACRYPT 2012

Publisher: Springer Berlin Heidelberg

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This paper presents a block cipher that is optimized with respect to latency when implemented in hardware. Such ciphers are desirable for many future pervasive applications with real-time security needs. Our cipher, named

PRINCE

, allows encryption of data within one clock cycle with a very competitive chip area compared to known solutions. The fully unrolled fashion in which such algorithms need to be implemented calls for innovative design choices. The number of rounds must be moderate and rounds must have short delays in hardware. At the same time, the traditional need that a cipher has to be iterative with very similar round functions disappears, an observation that increases the design space for the algorithm. An important further requirement is that realizing decryption and encryption results in minimum additional costs.

PRINCE

is designed in such a way that the overhead for decryption on top of encryption is negligible. More precisely for our cipher it holds that decryption for one key corresponds to encryption with a related key. This property we refer to as

α

-reflection is of independent interest and we prove its soundness against generic attacks.

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Metadata
Title
PRINCE – A Low-Latency Block Cipher for Pervasive Computing Applications
Authors
Julia Borghoff
Anne Canteaut
Tim Güneysu
Elif Bilge Kavun
Miroslav Knezevic
Lars R. Knudsen
Gregor Leander
Ventzislav Nikov
Christof Paar
Christian Rechberger
Peter Rombouts
Søren S. Thomsen
Tolga Yalçın
Copyright Year
2012
Publisher
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-642-34961-4_14

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