A new combinational logic minimization technique with applications to cryptology

Joan Boyar, Rene Peralta

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Abstract

A new technique for combinational logic optimization is described. The technique is a two-step process. In the first step, the non-linearity of a circuit – as measured by the number of non-linear gates it contains – is reduced. The second step reduces the number of gates in the linear components of the already reduced circuit. The technique can be applied to arbitrary combinational logic problems, and often yields improvements even after optimization by standard methods has been performed. In this paper we show the results of our technique when applied to the S-box of the Advanced Encryption Standard (AES [6]). This is an experimental proof of concept, as opposed to a full-fledged circuit optimization effort. Nevertheless the result is, as far as we know, the circuit with the smallest gate count yet constructed for this function. We have also used the technique to improve the performance (in software) of several candidates to the Cryptographic Hash Algorithm Competition. Finally, we have experimentally verified that the second step of our technique yields significant improvements over conventional methods when applied to randomly chosen linear transformations.
OriginalsprogEngelsk
TitelExperimental Algorithms : 9th International Symposium
ForlagSpringer
Publikationsdato2010
Sider178-189
ISBN (Trykt)978-3-642-13192-9
ISBN (Elektronisk)978-3-642-13193-6
DOI
StatusUdgivet - 2010
Begivenhed9th International Symposium on Experimental Algorithms, SEA 2010 - Ischia, Italien
Varighed: 19. maj 201022. maj 2010
Konferencens nummer: 9

Konference

Konference9th International Symposium on Experimental Algorithms, SEA 2010
Nummer9
Land/OmrådeItalien
ByIschia
Periode19/05/201022/05/2010
AndetSession chair
NavnLecture Notes in Computer Science
ISSN0302-9743

Bibliografisk note

Serie: Lecture Notes in Computer Science, Springer, 6049, 0302-9743
Sider: 178-189

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