A high performance reconfigurable implementation of DES-like algorithms

A. Valizadeh, M. Saheb Zamani, B. Sadeghian, Farhad Mehdipour, B. Najafi
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引用次数: 2

Abstract

Reconfigurable computing has grown to become an important and large field of research. It offers advantages over traditional hardware and software implementation of computational algorithms. It is based on using field programmable gate arrays (FPGAs), which can be configured after fabrication to take advantage of a hardware design but still maintain the flexibility of software. Particular applications, including encryption, which involve repetitive computation, and have inherent parallelism, are specifically well suited to the use of FPGAs. In this paper, we implemented four DES-like algorithms namely DES, DESX, Biham-DES, and S/sup n/ DES on a reconfigurable hardware so that each algorithm could be replaced by another with low reconfiguration overhead time. This kind of implementation not only has high flexibility but also has an acceptable encryption rate compared with the fastest implementation of DES.
类des算法的高性能可重构实现
可重构计算已经发展成为一个重要而庞大的研究领域。它提供了优于传统硬件和软件实现计算算法的优点。它基于现场可编程门阵列(fpga),可以在制造后进行配置,以利用硬件设计的优势,但仍保持软件的灵活性。特定的应用,包括加密,涉及重复计算,并具有固有的并行性,特别适合使用fpga。在本文中,我们在可重构硬件上实现了四种类DES算法,即DES, DESX, Biham-DES和S/sup n/ DES,以便每种算法都可以被另一种算法替换,并且重构开销时间较低。与最快的DES实现相比,这种实现不仅具有较高的灵活性,而且具有可接受的加密速率。
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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