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A Leakage-Resilient FPGA-Based IP Identity Authentication Protocol

机译:基于泄漏的基于FPGA的IP身份认证协议

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摘要

Protection of IPs through watermarking techniques is prevalent to prevent IP infringement. In previous researches, authentication of watermark in IPs easily disclosures sensitive information of real embedded watermarks, where the evidence of identifying IP ownership may be attacked by illegal verifiers. Despite several watermark detection techniques can address the disclosure of sensitive information in detection procedure, the efficiency for such a detection remains relatively low. Besides, it may yield to large communication overhead on multiple authentication rounds. Motivated by the needs of robustness and efficiency, it is proposed in this work a leakage-resilient protocol to authenticate ownership of Field Programmable Gate Array (FPGA) bitfile design using zero-knowledge proof. The prover can convince the verifier that he knows a secret in the suspected bitfile design via only one interaction. Real locations of watermarks are concealed through location anonymity. With the received authentication package from the prover, the verifier cannot obtain other useful information about watermarks. From experiments, we show that the proposed authentication technique achieves high efficiency and robustness on watermark detection.
机译:通过水印技术保护IPS是普遍存在的,以防止IP侵权。在以前的研究中,IPS中的水印认证容易披露真实嵌入式水印的敏感信息,其中识别知识产权所有权的证据可能被非法验证者攻击。尽管有几种水印检测技术可以解决检测过程中的敏感信息的披露,但这种检测的效率仍然相对较低。此外,它可能会在多个认证轮上产生大的通信开销。通过稳健性和效率的需求,提出了在这项工作中提出了一种泄漏弹性协议,用于使用零知识证明验证现场可编程门阵列(FPGA)BitFile设计的所有权。箴言可以说明验证者,他只通过一个交互了解疑似Bitfile设计中的秘密。水印的实际位置是通过位置匿名隐藏的。使用来自谚语的已接收的身份验证包,验证者无法获得有关水印的其他有用信息。从实验开始,我们表明所提出的认证技术实现了对水印检测的高效率和鲁棒性。

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