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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >A Blind Dynamic Fingerprinting Technique for Sequential Circuit Intellectual Property Protection
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A Blind Dynamic Fingerprinting Technique for Sequential Circuit Intellectual Property Protection

机译:用于顺序电路知识产权保护的盲动态指纹技术

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摘要

Design fingerprinting is a means to trace the illegally redistributed intellectual property (IP) by creating a unique IP instance with a different signature for each user. Existing fingerprinting techniques for hardware IP protection focus on lowering the design effort to create a large number of different IP instances without paying much attention on the ease of fingerprint detection upon IP integration. This paper presents the first dynamic fingerprinting technique on sequential circuit IPs to enable both the owner and legal buyers of an IP embedded in a chip to be readily identified in the field. The proposed fingerprint is an oblivious ownership watermark independently endorsed by each user through a blind signature protocol. Thus, the authorship can also be proved through the detection of different user's fingerprints without the need to separately embed an identical IP owner's signature in all fingerprinted instances. The proposed technique is applicable to both application-specific integrated circuit and field-programmable gate array IPs. Our analyses show that the fingerprint is immune to collusion attack and can withstand all perceivable attacks, with a lower probability of removal than state-of-the-art FSM watermarking schemes. The probability of coincidence of a 32-bit fingerprint is in the order of $10^{-10}$ and up to $10^{35}$ 32-bit fingerprinted instances can be generated for a small design of 100 flip-flops.
机译:设计指纹是一种通过创建每个用户具有不同签名的唯一IP实例来跟踪非法重新分配的IP(IP)的方法。现有的用于硬件IP保护的指纹技术着重于减少创建大量不同IP实例的设计工作,而没有过多地关注IP集成时指纹检测的简便性。本文介绍了第一种基于顺序电路IP的动态指纹识别技术,该技术可在现场轻松识别嵌入式芯片中IP的所有者和合法购买者。所提出的指纹是遗忘的所有权水印,每个用户都通过盲签名协议独立地认可了该指纹。因此,还可以通过检测不同用户的指纹来证明作者身份,而无需在所有指纹实例中分别嵌入相同IP所有者的签名。所提出的技术适用于专用集成电路和现场可编程门阵列IP。我们的分析表明,指纹不受共谋攻击,可以承受所有可察觉的攻击,并且与最新的FSM水印方案相比,其删除概率更低。一个32位指纹的重合概率大约为$ 10 ^ {-10} $,对于100个触发器的小型设计,最多可以生成$ 10 ^ {35} $的32位指纹实例。

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