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Functional obfuscation of digital circuits using observability don't care conditions

机译:使用可观察性的数字电路功能混淆不关心条件

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Contemporary integrated circuits are designed and manufactured in a globalized environment leading to concerns of piracy, overproduction and counterfeiting. Obfuscation has emerged as a promising approach to ensure supply chain security by countering the reverse engineering (RE) based attacks on integrated circuits. However, the state-of-the-art obfuscation methods use key gates or camouflage existing gates which incur large design overhead and high cost of RE. In this paper, we propose a new obfuscation method based on don't care primitives that not only modifies the sub-circuit functionality but also can be implemented during design process at the cost of little area and delay overhead. Most of the existing obfuscation techniques focus on hiding layout information from circuit attackers, our approach not only obfuscates but alters sub-circuit level functionality in an attempt to make IP piracy difficult and to increase the RE complexity while fulfilling overall circuit specifications. An analysis of RE complexity is provided by functionally obfuscating ISCAS-85 Benchmarks. Our experimental results clearly indicate that significant RE complexity can be achieved at minimal design overhead (average area overhead is 5.436% and average delay overhead is about 7.473%).
机译:现代的集成电路是在全球化的环境中设计和制造,导致盗版,过度生产和假冒困难。混淆已成为一种有希望的方法,以确保供应链安全通过对基于集成电路的逆向工程(RE)的攻击来确保供应链安全性。然而,最先进的混淆方法使用钥匙盖或伪装现有的门,其产生大的设计开销和高成本。在本文中,我们提出了一种基于不仅改变子电路功能的新的混淆方法,也可以在设计过程中以小区域和延迟开销的成本来实现。大多数现有的混淆技术侧重于躲藏来自电路攻击者的布局信息,我们的方法不仅会混淆,而是改变子电路级功能,以试图使IP盗版困难,并且在满足整体电路规格的同时增加重复性。通过功能混淆ISCAS-85基准来提供对RE复杂性的分析。我们的实验结果清楚地表明,在最小的设计开销(平均面积为5.436 %和平均延迟开销)下,可以实现显着的重复杂性。

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