On the algebraic immunity of multiplexer Boolean functions

Author:

Mishra Prasanna R.1,Pandey Shashi Kant2

Affiliation:

1. SAG, DRDO, Metcalfe House , Delhi 110054 , India

2. Department of Mathematics, MSI, GGSIP University , Delhi 110058 , India

Abstract

Abstract A multiplexer generator is a device that accepts two or more inputs and based on some logic sends one of them as output. In a special case when inputs to a multiplexer generator are 2 k {2}^{k} bits and one of them is selected according to the value of a k k -bit number, a multiplexer generator can be regarded as a Boolean function in 2 k + k {2}^{k}+k variables. We call this generator a multiplexer Boolean function. Boolean functions serve as combiners and filters in cryptographic designs. The study of their cryptographic strength attracts the cryptographer because of the extremely simple and cost effective of their design. The study of algebraic attacks on multiplexer generators is another major concern to judging the suitability for its use in cryptographic designs. In this article, we calculate the algebraic immunity of the multiplexer Boolean function, which is not an obvious task in the case of a Boolean function like a multiplexer generator.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Computational Mathematics,Computer Science Applications

Reference19 articles.

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3. Carlet C. Vectorial Boolean functions for cryptography. http://www.math.univ-paris13.fr/ carlet/chap-vectorial-fcts-corr.pdf.

4. Rothaus OS. On “bent” functions. J Combinatorial Theory Ser A. 1976;20(3):300–5.

5. Carlet C, Dobbertin H, Leander G. Normal extensions of bent functions. IEEE Trans Inform Theory. 2004;50(11):2880–5.

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