MAAS: Hiding Trojans in Approximate Circuits

Qazi Arbab Ahmed, M. Awais, M. Platzner
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引用次数: 0

Abstract

Automated frameworks for approximate accelerator synthesis employ an iterative search-based approach to generate approximate instances of hardware. While offering distinct savings in terms of hardware area and power consumption, approximate circuits are potentially at risk of being infected with hardware Trojans mainly due to the fact that the approximation is typically provided by third-party approximate accelerator synthesis frameworks which utilize components libraries to perform substitutions during the design space exploration phase. In this paper, we propose a threat model that discusses the potential of hardware Trojans insertion during the approximate accelerator synthesis. Moreover, we present MAAS, a framework that exploits a search-based approximate accelerator synthesis technique to demonstrate the applicability of our threat model by hiding Trojans in approximate circuits. The experimental results show that the approximate circuits generated by MAAS containing infected hardware Trojans are slightly larger than the approximate designs and are hard to identify via conventional area and power measurement techniques. To the best of our knowledge, this is the first effort to demonstrate the hardware Trojan insertion in the third-party approximate accelerator synthesis flow via library component substitution.
在近似电路中隐藏木马
近似加速器合成的自动化框架采用基于迭代搜索的方法来生成硬件的近似实例。虽然在硬件面积和功耗方面提供了明显的节省,但近似电路存在被硬件木马感染的潜在风险,这主要是因为近似电路通常是由第三方近似加速器合成框架提供的,该框架在设计空间探索阶段利用组件库执行替换。在本文中,我们提出了一个威胁模型,讨论了在近似加速器合成过程中硬件木马插入的可能性。此外,我们提出了MAAS框架,该框架利用基于搜索的近似加速器合成技术,通过将木马隐藏在近似电路中来证明我们的威胁模型的适用性。实验结果表明,含有感染硬件木马的MAAS生成的近似电路比近似设计略大,难以通过传统的面积和功率测量技术识别。据我们所知,这是第一次通过库组件替换在第三方近似加速器合成流中演示硬件木马插入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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