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On the Worst-Case Side-Channel Security of ECC Point Randomization in Embedded Devices

机译:嵌入式设备中ECC点随机化的最坏情况侧通道安全性

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Point randomization is an important countermeasure to protect Elliptic Curve Cryptography (ECC) implementations against side-channel attacks. In this paper, we revisit its worst-case security in front of advanced side-channel adversaries taking advantage of analytical techniques in order to exploit all the leakage samples of an implementation. Our main contributions in this respect are the following: first, we show that due to the nature of the attacks against the point randomization (which can be viewed as Simple Power Analyses), the gain of using analytical techniques over simpler divide-and-conquer attacks is limited. Second, we take advantage of this observation to evaluate the theoretical noise levels necessary for the point randomization to provide strong security guarantees and compare different elliptic curve coordinates systems. Then, we turn this simulated analysis into actual experiments and show that reasonable security levels can be achieved by implementations even on low-cost (e.g. 8-bit) embedded devices. Finally, we are able to bound the security on 32-bit devices against worst-case adversaries.
机译:点随机化是保护椭圆曲线密码(ECC)实现对侧通道攻击的重要对策。在本文中,我们在利用分析技术的高级侧通道对手前重新审视其最坏情况安全性,以利用实施的所有泄漏样本。我们在这方面的主要贡献如下:首先,我们表明,由于对角度随机化的攻击性质(可以被视为简单的功率分析),使用分析技术在更简单的分裂和征服中使用分析技术的增益攻击有限。其次,我们利用了这种观察来评估点随机化提供强烈的安全保证所需的理论噪声水平,并比较不同的椭圆曲线坐标系统。然后,我们将该模拟分析转化为实际实验,并表明即使在低成本(例如8位)嵌入式设备上也可以实现合理的安全级别。最后,我们能够对32位器件对抗最坏情况的对手的安全性。

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