High output hamming-distance achievement by a greedy logic masking approach

Seyyed Mohammad Saleh Samimi, Ehsan Aerabi, Arash Nejat, M. Fazeli, D. Hély, V. Beroulle
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引用次数: 3

Abstract

Fabless semiconductor business model includes different third party roles. Among these roles, untrusted fabrication foundries can take the opportunity to overbuild the layout or extract its IPs and resell them. Logic masking methods modify the IPs/ICs to harden them against such threats. Masked circuits have extra inputs and components (the so-called key-inputs, and keygates) which make two modes for the circuit: a functional mode and an incorrect masked one. Masked circuits work correctly/incorrectly (in the functional/locked mode) depending on the correctness of the key. A proper logic masking method aims at modifying a circuit such that for any wrong key, the hamming distance between the produced output and the correct output tends to 50% as much as possible. To this end, we propose a greedy algorithm that investigates the circuit signals to find the best candidates for inserting keygates. Simulation results show that the algorithm can mask the original functionality of circuits for 99.6% on average.
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利用贪婪逻辑掩蔽方法实现高输出敲打距离
无晶圆厂半导体商业模式包括不同的第三方角色。在这些角色中,不可信的制造代工厂可以借此机会过度构建布局或提取其ip并转售它们。逻辑屏蔽方法通过修改ip / ic来增强ip / ic抵御此类威胁的能力。屏蔽电路有额外的输入和组件(所谓的键输入和键门),这使电路有两种模式:功能模式和不正确的屏蔽模式。屏蔽电路的工作是否正确(在功能/锁定模式下)取决于密钥的正确性。适当的逻辑屏蔽方法旨在修改电路,使对于任何错误的键,所产生的输出与正确输出之间的汉明距离尽可能趋于50%。为此,我们提出了一种贪婪算法,该算法研究电路信号以找到插入钥匙门的最佳候选。仿真结果表明,该算法对电路原有功能的平均屏蔽率为99.6%。
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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