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Rescuing Logic Encryption in Post-SAT Era by Locking Obfuscation

机译:通过锁定和混淆处理在后SAT时代挽救逻辑加密

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The active participation of external entities in the manufacturing flow has produced numerous hardware security issues in which piracy and overproduction are likely to be the most ubiquitous and expensive ones. The main approach to prevent unauthorized products from functioning is logic encryption that inserts key-controlled gates to the original circuit in a way that the valid behavior of the circuit only happens when the correct key is applied. The challenge for the security designer is to ensure neither the correct key nor the original circuit can be revealed by different analyses of the encrypted circuit. However, in state-of-the-art logic encryption works, a lot of performance is sold to guarantee security against powerful logic and structural attacks. This contradicts the primary reason of logic encryption that is to protect a precious design from being pirated and overproduced. In this paper, we propose a bilateral logic encryption platform that maintains high degree of security with small circuit modification. The robustness against exact and approximate attacks is also demonstrated.
机译:外部实体在制造流程中的积极参与产生了许多硬件安全问题,其中盗版和生产过剩可能是最普遍和最昂贵的问题。防止未经授权的产品运行的主要方法是逻辑加密,该逻辑加密将密钥控制的门插入原始电路,从而使电路的有效行为仅在应用正确的密钥时发生。安全设计人员面临的挑战是确保通过对加密电路的不同分析无法揭示正确的密钥或原始电路。但是,在最先进的逻辑加密技术中,出售了许多性能以保证抵御强大的逻辑和结构攻击的安全性。这与逻辑加密的主要原因相抵触,后者是为了保护珍贵的设计不被盗版和过度生产。在本文中,我们提出了一种双边逻辑加密平台,该平台可通过较小的电路修改来保持较高的安全性。还展示了针对精确和近似攻击的鲁棒性。

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