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Improved Power Analysis on Unrolled Architecture and Its Application to PRINCE Block Cipher

机译:展开架构的改进功率分析及其在PRINCE块密码中的应用

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This paper explores the feasibility of power analysis attacks against low-latency block ciphers implemented with unrolled architectures capable of encryption in a single clock cycle. Recently, low-latency block ciphers are attracting much attention due to the increasing requirement of real-time cryptosystems. Unrolled architectures have been expected to be somewhat resistant against side-channel attacks compared to typical loop architectures because of no memory (i.e. register) element storing intermediate results in a synchronous manner. In this paper, we present a systematic method for selecting Points-of-Interest for power analysis on unrolled architectures as well as calculating dynamic power consumption at a target function. Then, we apply the proposed method to PRINCE, which is known as one of the most efficient low-latency ciphers, and evaluate its validity with an experiment using a set of unrolled PRINCE processors implemented on an FPGA. Finally, a countermeasure against such analysis is discussed.
机译:本文探讨了针对采用可在单个时钟周期内进行加密的展开架构实现的低延迟分组密码进行功率分析攻击的可行性。近来,由于对实时密码系统的需求不断增长,低延迟分组密码引起了人们的极大关注。与没有使用同步方式存储中间结果的内存(即寄存器)元素相比,与典型的循环体系结构相比,展开的体系结构有望更好地抵抗侧信道攻击。在本文中,我们提出了一种系统的方法,用于选择兴趣点以在展开的架构上进行功耗分析,并计算目标功能处的动态功耗。然后,我们将所提出的方法应用于被称为最有效的低延迟密码之一的PRINCE,并通过使用一组在FPGA上实现的展开式PRINCE处理器的实验来评估其有效性。最后,讨论了针对这种分析的对策。

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