Template Attacks of a Masked S-Box Circuit: A Comparison Between Static and Dynamic Power Analyses

Jiming Xu, H. Heys
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引用次数: 4

Abstract

Static-power-based side-channel attacks have developed rapidly in the past few years. Many classical side channel attack algorithms have been adapted to exploit static power consumption. There have been successful applications of side-channel attacks based on static power dissipation of cryptographic circuits designed in different technology sizes. In this paper we perform template attacks on a masked s-box circuit designed and simulated using 45-nm CMOS standard cell library. We are the first to compare template attacks using static power and dynamic power in the context of masked sbox implementations. We are able to achieve successful results using both types of power leakage. However, we observe that, in the 45-nm environment, dynamic power analysis requires a high sampling rate for the oscilloscopes used to collect data, while the results of static power analysis are more sensitive to additive noise.
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屏蔽s盒电路的模板攻击:静态和动态功率分析的比较
近年来,基于静功率的旁信道攻击得到了迅速发展。许多经典的侧信道攻击算法已经被用来利用静态功耗。基于静态功耗的侧信道攻击已经成功地应用于不同技术尺寸的加密电路。在本文中,我们使用45纳米CMOS标准单元库对设计和模拟的掩模s盒电路进行模板攻击。我们是第一个在屏蔽sbox实现的背景下比较使用静态功率和动态功率的模板攻击。我们能够使用两种类型的电源泄漏获得成功的结果。然而,我们观察到,在45纳米环境中,动态功率分析需要用于收集数据的示波器的高采样率,而静态功率分析的结果对加性噪声更敏感。
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