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Defeating classical Hardware Countermeasures: a new processing for Side Channel Analysis

机译:击败古典硬件对策:侧通道分析的新加工

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In the field of the Side Channel Analysis, hardware distortions such as glitches and random frequency are classical countermeasures. A glitch influences the side channel amplitude while a random frequency damages the signal both in time and in amplitude. For minimizing these countermeasures effects, some trace treatments based on peak extraction or auto-correlation methods exist. However, none of them takes into account the amplitude mistake. In this paper, we show that this amplitude mistake is created by glitches but also by a random frequency. We propose then a reshaping processing that erases these effects on side channel traces both on the time and amplitude axis. The solution reconstructed a side channel signal, avoiding the hardware countermeasures and the clock relativity consequences which can be meaningful for Side Channel Attacks. Its efficiency is demonstrated on a Differential Power Attack performed on a DES implementation and on a Template Attack performed on a RSA implementation.
机译:在侧通道分析的领域中,诸如毛刺和随机频率之类的硬件失真是经典的对策。在随机频率在时间和幅度下,毛刺影响侧通道幅度。为了最大限度地减少这些对策效果,存在基于峰提取或自相关方法的一些痕量处理。但是,他们都没有考虑幅度错误。在本文中,我们表明,该幅度错误是由羽毛创建的,而且通过随机频率创建。我们提出了一种重塑处理,可以在时间和幅度轴上擦除侧通道迹线的这些效果。解决方案重建了侧通道信号,避免了硬件对策和时钟相对性后果,这对侧信道攻击有意义。在对DES实现和对RSA实现执行的模板攻击上执行的差分电力攻击上证明了其效率。

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