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PODEM: A low-cost property-based design modification for detecting Hardware Trojans in resource-constraint IoT devices

机译:Podem:一种基于低成本的属性的设计修改,用于检测资源约束IOT设备中的硬件特洛伊木马

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With the rapid growth in design and fabrication outsourcing in semiconductor industry, concerns have increased about insuring the trustworthiness of underlying hardware, commonly known as hardware Trojans. This paper presents a new low-cost and high-speed design for trust methodology (DfTr) to detect hardware Trojans, especially for resource-constraint IoT devices. To relieve the stealthy nature of Trojans, the full controllable paths are created between the low transition probability nets and the primary inputs. The key idea is that instead of specifying the full controllable paths based on minimum logical depth, one can alternatively specify the paths with the aim of achieving minimum number of insertion-points to lower the area overhead in devices with limited hardware resources. Accordingly, this paper develops a formal Property-based design modification mechanism, called PODEM, targeting different objective functions so as to lower the area overhead as well as augmenting the hardware Trojan detection sensitivity. The experimental results on different benchmark circuits show that the number of required insertion-points for the proposed methodology is favorably decreased around 28% compared with the state-of-the-art method. In addition to the lower area and delay overheads, the side channel detection sensitivity of the proposed approach is also augmented about 11.5%, on average, thanks to the considerable reduction of 18.7% in the background circuit activity.
机译:随着半导体行业的设计和制造外包的快速增长,对确保底层硬件的可靠性,常见称为硬件特洛伊木马的担忧增加了担忧。本文提出了一种新的低成本和高速设计,可用于检测硬件特洛伊木马,特别是对于资源约束IOT设备。为了减轻特洛伊木马的隐秘性,可以在低过渡概率网和主要输入之间创建完整可控路径。关键思想是,不是基于最小逻辑深度指定完全可控路径,而可以替代地指定具有实现最小次数的路径,以降低具有有限硬件资源的设备中的区域开销。因此,本文开发了一种基于正式的基于物业的设计修改机制,称为Podem,瞄准不同的客观函数,以降低面积开销以及增强硬件特洛伊木马检测灵敏度。与不同的基准电路的实验结果表明,与最先进的方法相比,所提出的方法的所需插入点的数量约为28%。除了较低的区域和延迟开销之外,所提出的方法的侧通道检测灵敏度也增强了约11.5%,平均而言,由于背景电路活动中的显着降低了18.7%。

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