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Efficient Masked S-Boxes Processing: A Step Forward

机译:高效蒙面的S箱加工:前进

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To defeat side-channel attacks, the implementation of block cipher algorithms in embedded devices must include dedicated counter-measures. To this end, security designers usually apply secret sharing techniques and build masking schemes to securely operate an shared data. The popularity of this approach can be explained by the fact that it enables formal security proofs. The construction of masking schemes thwarting higher-order side-channel attacks, which correspond to a powerful adversary able to exploit the leakage of the different shares, has been a hot topic during the last decade. Several solutions have been proposed, usually at the cost of significant performance overheads. As a result, the quest for efficient masked S-box implementations is still ongoing. In this paper, we focus on the scheme proposed by Carlet et al at FSE 2012, and latter improved by Roy and Vivek at CHES 2013. This scheme is today the most efficient one to secure a generic S-box at any order. By exploiting an idea introduced by Coron et al at FSE 2013, we show that Carlet et al's scheme can still be improved for S-boxes with input dimension larger than four. We obtain this result thanks to a new definition for the addition-chain exponentiation used during the masked S-box processing. For the AES and DES S-boxes, we show that our improvement leads to significant efficiency gains.
机译:打败侧信道攻击的块加密算法在嵌入式设备中实现必须包括专用的对抗措施。为此,安全设计人员通常采用秘密共享技术和构建掩蔽方案,以安全操作的共享数据。这种方法的普及可以通过这样的事实,它使正式的安全证明来解释。掩蔽方案挫败高阶侧信道攻击,其对应于一个功能强大的对手能够利用不同股的泄漏的结构,已在过去十年中的一个热点。几种解决方案已经提出,通常在显著的性能开销成本。其结果是,高效蒙面S盒实现的任务仍在进行中。在本文中,我们专注于在2012 FSE提出卡尔莱特等人的方案,并在后者2013年CHES该方案由罗伊和维韦克改善是当今最有效的一个在任何为了保证通用的S-box。通过利用由科伦等人在FSE 2013引入了一个想法,我们表明,卡尔莱特等人的方案仍然可以为S盒输入次数大于4的提高。我们得到这样的结果得益于为掩盖S盒加工过程中使用的加链幂一个新的定义。对于AES和DES的S-box,我们证明了我们的改善导致显著提高效率。

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