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ChaoLock: Yet Another SAT-hard Logic Locking using Chaos Computing

机译:Chaolock:使用混沌计算,另一个SAT-Hard Logic锁定

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Logic locking has been widely evaluated as a proactive countermeasure against the hardware security threats within the IC supply chain. However, the introduction of the SAT attack, and many of its derivatives, has raised big concern about this form of countermeasure. In this paper, we explore the possibility of exploiting chaos computing as a new means of logic locking. We introduce the concept of chaotic logic locking, called ChaoLock, in which, by leveraging asymmetric inputs in digital chaotic Boolean gates, we define the concept of programmability (key-configurability) to the sets of underlying initial conditions and system parameters. These initial conditions and system parameters determine the operation (functionality) of each digital chaotic Boolean gate. Also, by proposing dummy inputs in chaotic Boolean gates, we show that during reverse-engineering, the dummy inputs conceal the main functionality of the chaotic Boolean gates, which make the reverse-engineering almost impossible. By performing a security analysis of ChaoLock, we show that with no restriction on conventional CMOS-based ASIC implementation and with no test/debug compromising, none of the state-of-the-art attacks on logic locking, including the SAT attack, could reformulate chaotic Boolean gates while dummy inputs are involved and their parameters are locked. Our analysis and experimental results show that with a low number of chaotic Boolean gates mixed with CMOS digital gates, ChaoLock can guarantee resiliency against the state-of-the-art attacks on logic locking at low overhead.
机译:逻辑锁定已被广泛评估为对IC供应链内的硬件安全威胁的主动对策。然而,坐落的攻击和许多衍生品的引入提出了对这种对策的重要关注。在本文中,我们探讨了利用混沌计算作为一种新的逻辑锁定手段的可能性。我们介绍了混沌逻辑锁定的概念,称为Chaolock,其中,通过利用数字混沌布尔门的不对称输入,我们将可编程性(键可配置性)的概念定义为基础初始条件和系统参数集。这些初始条件和系统参数确定每个数字混沌布尔门的操作(功能)。此外,通过提出在混沌布尔门中的虚拟输入,我们认为在逆向工程期间,虚拟输入隐藏了混沌布尔门的主要功能,这几乎不可能使逆向工程。通过对Chaolock进行安全分析,我们表明,没有对以往的基于CMOS的ASIC实现而没有限制,并且没有测试/调试损害,没有关于逻辑锁定的最先进的攻击,包括SAT攻击在涉及虚拟输入并锁定其参数时重新装饰混沌布尔门。我们的分析和实验结果表明,随着CMOS数字盖茨的混乱布尔盖茨的数量较少,Chaolock可以保证对逻辑锁定在低开销时逻辑锁定的最先进攻击的弹性。

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