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A study on the efficiency of hardware Trojan detection based on path-delay fingerprinting

机译:基于路径延迟指纹的硬件木马检测效率研究

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Hardware Trojan horses (HTHs) are among the most challenging treats to the security of integrated circuits. Path-delay fingerprinting has shown to be a promising HTH detection approach. However, previous work in this area incurs a large hardware cost or requires expensive testing techniques. Moreover, the relation between technology mapping and the efficiency of delay-based HTH detection have not yet been studied. In this paper, we present a HTH detection method which uses an effective test-vector selection scheme and a path-delay measurement structure. Furthermore, we demonstrate the large impact of technology mapping on the effectiveness of delay-based HTH detection. We also show that delay-based detection methods are highly scalable. In case of choosing an area-driven design strategy, the average HTH detection probability of our approach is about 63%, 78% and 90% if false alarm rate is 0%, 2% and 16%, respectively. However, with modifications in the technology mapping, the results show improvements to 85%, 94% and 99%, at the cost of about 20% area overhead. In addition, the efficiency of our method would not decrease for large benchmarks with thousands of gates.
机译:硬件特洛伊木马(HTH)是对集成电路安全性最具挑战性的手段之一。路径延迟指纹已显示是一种有前途的HTH检测方法。但是,该领域的先前工作会导致较大的硬件成本或需要昂贵的测试技术。此外,尚未研究技术映射与基于延迟的HTH检测效率之间的关系。在本文中,我们提出了一种HTH检测方法,该方法使用有效的测试向量选择方案和路径延迟测量结构。此外,我们证明了技术映射对基于延迟的HTH检测有效性的巨大影响。我们还表明,基于延迟的检测方法具有高度的可扩展性。在选择区域驱动设计策略的情况下,如果误报率分别为0%,2%和16%,则我们方法的平均HTH检测概率分别约为63%,78%和90%。但是,通过对技术映射进行修改,结果显示出将其分别提高了85%,94%和99%,而面积开销却约为20%。此外,对于具有数千个门的大型基准,我们的方法的效率不会降低。

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