High-speed KATAN ciphers on-a-chip

Fatma M. Qatan, I. Damaj
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引用次数: 9

Abstract

Security in embedded systems has become a main requirement in modern electronic devices. The demand for low-cost and highly secure cryptographic algorithms is increasingly growing in fields such as mobile telecommunications, handheld devices, etc. In this paper, we analyze and evaluate the development of cheap and relatively fast hardware implementations of the KATAN family of block ciphers. KATAN is a family of six hardware oriented block ciphers. All KATAN ciphers share an 80-bit key and have 32, 48, or 64-bit blocks. We use VHDL under Altera Quartus in conjunction with ModelSim to implement and analyze our hardware designs. The developed designs are mapped onto high-performance Field Programmable Gate Arrays. We compare our findings with similar hardware implementations and C software versions of the algorithms. The performance analysis of the C implementations is done using Intel Vtune Amplifier running on Dell precision T7500 with its dual quad-core Xeon processor and 24 GB of RAM. The obtained results show better performance when compared with existing hardware and software implementations.
片上高速KATAN密码
嵌入式系统的安全性已成为现代电子设备的主要要求。在移动通信、手持设备等领域,对低成本、高安全性的加密算法的需求日益增长。在本文中,我们分析和评估了KATAN系列分组密码的廉价和相对快速的硬件实现的发展。KATAN是一个由六个硬件组成的分组密码家族。所有KATAN密码共享一个80位密钥,并具有32位、48位或64位块。我们使用Altera Quartus下的VHDL与ModelSim结合来实现和分析我们的硬件设计。开发的设计被映射到高性能的现场可编程门阵列。我们将我们的发现与类似的硬件实现和算法的C软件版本进行比较。C实现的性能分析是使用英特尔Vtune放大器在戴尔精密T7500上进行的,该T7500具有双四核至强处理器和24gb RAM。与现有的硬件和软件实现相比,所获得的结果具有更好的性能。
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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