Random Active Shield

Sébastien Briais, Jean-Michel Cioranesco, J. Danger, S. Guilley, D. Naccache, Thibault Porteboeuf
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引用次数: 35

Abstract

Recently, some active shielding techniques have been broken (e.g. by FlyLogic). The caveat is that their geometry is easy to guess, and thus they can be bypassed with an affordable price. This paper has two contributions. First of all, it provides a definition of the objectives of shielding, which is seldom found in publicly available sources. Notably, we precise the expected functionality, but also the constraints it must meet to be both manufacturable and secure. Second, we propose an innovative solution based on random shielding. The goal of this shielding is to make the geometry of the shield difficult to recognize, thereby making the "identification" phase of the attack harder than in previous schemes. Also, a proof of the shielding existence for two layers of metal is provided, which guarantees that the generation of the layout will succeed. Finally, we provide real tests of the shield generation algorithm, that show it is computationally tractable even for large areas to protect.
随机有源屏蔽
最近,一些主动屏蔽技术已经被打破(例如FlyLogic)。需要注意的是,它们的几何形状很容易猜测,因此可以以合理的价格绕过它们。这篇论文有两个贡献。首先,它提供了屏蔽目标的定义,这在公开来源中很少找到。值得注意的是,我们精确了预期的功能,但也精确了它必须满足的约束,以保证可制造性和安全性。第二,提出了一种基于随机屏蔽的创新解决方案。这种屏蔽的目标是使屏蔽的几何形状难以识别,从而使攻击的“识别”阶段比以前的方案更难。同时,给出了两层金属屏蔽存在的证明,保证了布局的生成成功。最后,我们提供了屏蔽生成算法的实际测试,表明即使对大面积保护,该算法在计算上也是可处理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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