CoARX: A coprocessor for ARX-based cryptographic algorithms

Khawar Shahzad, A. Khalid, Z. Rákossy, G. Paul, A. Chattopadhyay
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引用次数: 23

Abstract

Cryptographic coprocessors are inherent part of modern Systemon-Chips. It serves dual purpose-efficient execution of cryptographic kernels and supporting protocols for preventing IP-piracy. Flexibility in such coprocessors is required to provide protection against emerging cryptanalytic schemes and to support different cryptographic functions like encryption and authentication. In this context, a novel crypto-coprocessor, named CoARX, supporting multiple cryptographic algorithms based on Addition (A), Rotation (R) and eXclusive-or (X) operations is proposed. CoARX supports diverse ARX-based cryptographic primitives. We show that compared to dedicated hardware implementations and general-purpose microprocessors, it offers excellent performance-flexibility trade-off including adaptability to resist generic cryptanalysis.
CoARX:基于arx的加密算法的协处理器
密码协处理器是现代系统芯片的固有组成部分。它具有双重目的:有效地执行加密内核和支持防止ip盗版的协议。这种协处理器需要灵活性,以提供对新兴密码分析方案的保护,并支持不同的加密功能,如加密和身份验证。在此背景下,提出了一种新的加密协处理器CoARX,支持基于加法(a),旋转(R)和异或(X)操作的多种加密算法。CoARX支持多种基于arx的加密原语。我们表明,与专用硬件实现和通用微处理器相比,它提供了出色的性能-灵活性权衡,包括抗通用密码分析的适应性。
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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