Compact and short critical path finite field inverter for cryptographic S-box

M. Wong, M. Wong, C. Zhang, I. Hijazin
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引用次数: 3

Abstract

A substitution box (S-box) plays a crucial role in symmetric key cryptography with block ciphers, such as those found in the Data Encryption Standard (DES) and the Advanced Encryption Standard (AES). It serves as the predominant component in most block ciphers, of which the computational complexity impacts the security of the ciphers directly. In essence, a S-box performs a non-linear transformation of the input data block through a finite field inversion, which is incidentally the most expensive operation in digital computation of finite field arithmetic. Consequently, its computational cost will also increase the overall hardware requirements and in turn, decrease the overall performance of the ciphers. With the emergence of Internet of Things (IoT), the need for highly secured yet lightweight implementation protocols is becoming increasingly more observable. In this paper, we propose a new finite field inverter over GF(28) with a significant area cost saving, achieved through direct computation and followed by algebraic factorization and common sub-expression elimination (CSE). The proposed inverter could be deployed into AES cipher on highly area-constrained digital platforms.
密码学s盒的紧凑短关键径有限域逆变器
替换框(S-box)在使用分组密码的对称密钥加密中起着至关重要的作用,例如数据加密标准(DES)和高级加密标准(AES)中的分组密码。它是大多数分组密码的主要组成部分,其计算复杂度直接影响到密码的安全性。本质上,S-box通过有限域反演对输入数据块进行非线性变换,这是有限域算法数字计算中最昂贵的操作。因此,它的计算成本也会增加整体硬件需求,从而降低密码的整体性能。随着物联网(IoT)的出现,对高度安全且轻量级实现协议的需求变得越来越明显。在本文中,我们提出了GF(28)上的一种新的有限域逆变器,通过直接计算,然后进行代数分解和公共子表达式消去(CSE),可以显著节省面积成本。该逆变器可以在高度受限的数字平台上部署到AES密码中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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