A Side-channel Attack Resistant Programmable PKC Coprocessor for Embedded Applications

N. Mentens, K. Sakiyama, L. Batina, B. Preneel, I. Verbauwhede
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引用次数: 14

Abstract

This paper describes the design of a programmable coprocessor for public key cryptography (PKC) on an FPGA. The implementation provides a very broad range of functions together with countermeasures against side-channel analysis (SCA) attacks. The functions are implemented in a hierarchical manner, where all levels are accessible by the user. This makes the coprocessor very flexible and particularly suitable to be used in embedded environments where the border between hardware and software needs to be decided depending on the application. Especially for RSA, the resulting implementation on an XC3S5000 FPGA, from the low-cost Spartan series of Xilinx, shows comparable performance figures compared to the state-of- the-art in PKC coprocessors.
用于嵌入式应用的抗侧信道攻击可编程PKC协处理器
本文介绍了一种基于FPGA的可编程公钥加密协处理器的设计。该实现提供了非常广泛的功能以及针对侧信道分析(SCA)攻击的对策。这些功能以分层方式实现,用户可以访问所有级别。这使得协处理器非常灵活,特别适合在需要根据应用决定硬件和软件之间边界的嵌入式环境中使用。特别是对于RSA,在Xilinx低成本Spartan系列的XC3S5000 FPGA上实现的结果显示,与最先进的PKC协处理器相比,其性能数据相当。
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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