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New lightweight Anti-SAT block design and obfuscation technique to thwart removal attack

机译:新的轻质防星块设计和混淆技术挫败去除攻击

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摘要

Logic locking has emerged as a prominent technique to protect an integrated circuit from piracy, overbuilding, and hardware Trojans. Most of the well-known logic locking techniques are vulnerable to satisfiability (SAT) based attack. Though several SAT-resistant logic locking techniques such as Anti-SAT block (ASB) are reported that increase the time to decipher the secret key, the existing techniques are either vulnerable to signal probability skew (SPS) based removal attack or require significant design overhead. Therefore, a new lightweight ASB design and obfuscation technique is proposed that effectively integrate and obfuscates the ASB in the design to thwart removal attack. We first propose a new ASB design/integration approach that effectively thwarts the structural/functional analysis based removal attack with minimum overhead. Further, we also propose an ASB obfuscation approach that shifts the inverter deep in the circuit using De Morgan's law and replaces an ASB gate with a key-gate to thwart SPS based removal attack. Moreover, a new algorithm is proposed that inserts the ASB in the locked design to achieve desired output corruptibility. Finally, a new INV/BUFF key-gate is proposed that constructs the ASB with reduced overhead over the XOR/XNOR. Experimental evaluation on ISCAS-85 benchmarks shows that our ASB design and obfuscation approaches, on an average, reduce area overhead by 25.5% and 22% respectively, and effectively prevent removal attack without reducing any security.
机译:逻辑锁定已成为保护集成电路免受盗版,过度建设和硬件特洛伊木马的突出技术。大多数众所周知的逻辑锁定技术易于满足(SAT)基于攻击。虽然报告了几种抗SAT块(ASB)的耐饱和逻辑锁定技术,但是增加了破译秘密密钥的时间,但现有技术可以容易受到基于信号概率偏差(SPS)的去除攻击或需要显着的设计开销。因此,提出了一种新的轻量级ASB设计和混淆技术,从而有效地集成并使设计中的ASB组合在设计中以阻止去除攻击。我们首先提出了一种新的ASB设计/集成方法,有效地阻止了基于结构/功能分析的拆除攻击最小的倒置。此外,我们还提出了一种ASB混淆方法,使用De Morgan的定律将逆变器深入移动,并用钥匙门取代ASB门,以阻止基于SPS的去除攻击。此外,提出了一种新的算法,将ASB插入锁定设计中以实现所需的输出损坏。最后,提出了一种新的INV / BUFK键门,其构造ASB,其在XOR / XNOR上具有减少的开销。 ISCAS-85基准测试的实验评估表明,我们的ASB设计和混淆方法平均,分别将面积开销降低25.5%和22%,并有效地防止除去攻击而不会降低任何安全性。

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