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Helper Data Algorithms for PUF-Based Key Generation: Overview and Analysis

机译:基于PUF的密钥生成的辅助数据算法:概述和分析

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摘要

Security-critical products rely on the secrecy and integrity of their cryptographic keys. This is challenging for low-cost resource-constrained embedded devices, with an attacker having physical access to the integrated circuit (IC). Physically, unclonable functions are an emerging technology in this market. They extract bits from unavoidable IC manufacturing variations, remarkably analogous to unique human fingerprints. However, post-processing by helper data algorithms (HDAs) is indispensable to meet the stringent key requirements: reproducibility, high-entropy, and control. The novelty of this paper is threefold. We are the first to provide an in-depth and comprehensive literature overview on HDAs. Second, our analysis does expose new threats regarding helper data leakage and manipulation. Third, we identify several hiatuses/open problems in existing literature.
机译:关键安全产品依赖于其加密密钥的保密性和完整性。对于攻击者具有对集成电路(IC)的物理访问权的低成本资源受限的嵌入式设备而言,这是一个挑战。从物理上讲,不可克隆的功能是该市场中的新兴技术。他们从不可避免的IC制造变化中提取比特,这非常类似于独特的人类指纹。但是,通过辅助数据算法(HDA)进行后处理对于满足严格的关键要求是不可或缺的:可再现性,高熵和控制性。本文的新颖性是三个方面。我们是第一个提供有关HDA的深入而全面的文献概述的人。其次,我们的分析确实暴露了有关助手数据泄漏和操纵的新威胁。第三,我们确定了现有文献中的几个问题/开放性问题。

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