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PUFs: Myth, Fact or Busted? A Security Evaluation of Physically Unclonable Functions (PUFs) Cast in Silicon

机译:PUF:神话,事实还是破灭?硅中铸造的物理不可克隆功能(PUF)的安全性评估

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Physically Unclonable Functions (PUFs) are an emerging technology and have been proposed as central building blocks in a variety of cryptographic protocols and security architectures. However, the security features of PUFs are still under investigation: Evaluation results in the literature are difficult to compare due to varying test conditions, different analysis methods and the fact that representative data sets are publicly unavailable. In this paper, we present the first large-scale security analysis of ASIC implementations of the five most popular intrinsic electronic PUF types, including arbiter, ring oscillator, SRAM, flip-flop and latch PUFs. Our analysis is based on PUF data obtained at different operating conditions from 96 ASICs housing multiple PUF instances, which have been manufactured in TSMC 65 nm CMOS technology. In this context, we present an evaluation methodology and quantify the robustness and unpredictability properties of PUFs. Since all PUFs have been implemented in the same ASIC and analyzed with the same evaluation methodology, our results allow for the first time a fair comparison of their properties.
机译:物理上不可克隆的功能(PUF)是一项新兴技术,已被提议作为各种密码协议和安全性体系结构的核心组成部分。但是,PUF的安全性功能仍在研究中:由于测试条​​件的变化,分析方法的不同以及代表性数据集的公开缺乏,文献中的评估结果很难进行比较。在本文中,我们提出了对五个最受欢迎的固有电子PUF类型(包括仲裁器,环形振荡器,SRAM,触发器和锁存PUF)的ASIC实现的首次大规模安全性分析。我们的分析是基于在不同操作条件下,从采用多个TSF 65纳米CMOS技术制造的包含多个PUF实例的96种ASIC中获得的PUF数据得出的。在这种情况下,我们提出了一种评估方法并量化了PUF的鲁棒性和不可预测性。由于所有PUF都在同一ASIC中实现,并使用相同的评估方法进行分析,因此我们的结果首次使它们的性能得以公平比较。

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