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My Traces Learn What You Did in the Dark: Recovering Secret Signals Without Key Guesses

机译:我的追踪了解你在黑暗中所做的内容:恢复没有关键猜测的秘密信号

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In side channel attack (SCA) studies, it is widely believed that unprotected implementations leak information about the intermediate states of the internal cryptographic process. However, directly recovering the intermediate states is not common practice in today's SCA study. Instead, most SCAs exploit the leakages in a "guess-and-determine" way, where they take a partial key guess, compute the corresponding intermediate states, then try to identify which one fits the observed leakages better. In this paper, we ask whether it is possible to take the other way around - directly learning the intermediate states from the side channel leakages. Under certain circumstances, we find that the intermediate states can be efficiently recovered with the well-studied Independent Component Analysis (ICA). Specifically, we propose several methods to convert the side channel leakages into effective ICA observations. For more robust recovery, we also present a specialized ICA algorithm which exploits the specific features of circuit signals. Experiments confirm the validity of our analysis in various circumstances, where most intermediate states can be correctly recovered with only a few hundred traces. Our approach brings new possibilities to the current SCA study, including building an alternative SCA distinguisher, directly attacking the middle encryption rounds and reverse engineering with fewer restrictions. Considering its potential in more advanced applications, we believe our ICA-based SCA deserves more research attention in the future study.
机译:在侧频攻击(SCA)研究中,广泛认为未受保护的实现泄漏关于内部密码过程的中间状态的信息。然而,直接恢复中间国家在今天的SCA研究中并不常见。相反,大多数SCAS以“猜测和确定”方式利用泄漏,在那里他们采取部分密钥猜测,计算相应的中间状态,然后尝试识别哪一个拟合观察到的泄漏更好。在本文中,我们询问是否有可能采取另一种方式 - 直接从侧沟泄漏中学习中间状态。在某些情况下,我们发现中间状态可以通过学习的独立组分分析(ICA)有效地恢复。具体地,我们提出了几种方法将侧通道泄漏转换为有效的ICA观察。为了更强大的恢复,我们还提出了一种专业的ICA算法,用于利用电路信号的特定功能。实验证实了我们在各种情况下进行了分析的有效性,大多数中间状态只能用几百个痕迹正确恢复。我们的方法为当前的SCA学习带来了新的可能性,包括建立替代SCA陈列柜,直接攻击中间加密轮流和逆向工程,限制较少。考虑到其在更先进的应用中的潜力,我们相信我们的ICA的SCA应该在未来的研究中获得更多研究。

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