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Embedding Digital Signature Using Encrypted-Hashing for Protection of DSP Cores in CE

机译:在CE中使用加密哈希嵌入数字签名以保护DSP内核

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摘要

Reusable intellectual property (IP) cores from signal processing and multimedia form an integral part of consumer electronics (CE) systems. However, owing to the value it represents, it needs protection against important threats, such as piracy and illegal claim of ownership. This paper presents a novel multi-level encoding and encrypted-hash-based digital signature for protection of complex reusable IP core used in CE systems. For the first time in the literature, a digital signature-based IP core protection is proposed for digital signal processing (DSP) kernels. The proposed methodology is capable of encoding a DSP kernel application, followed by creating a digest of the encoded application to finally form a digital signature using RSA, which is subsequently implanted into the same design during architectural synthesis. The proposed approach on DSP benchmarks is capable of achieving higher robustness in terms of lower probability of coincidence - indicating stronger proof of authorship. The proposed approach achieves stronger robustness (on average by similar to 24.8%) as well as requires lesser storage hardware (on average reduction of similar to 14%) compared to similar prior work.
机译:来自信号处理和多媒体的可重用知识产权(IP)核心构成了消费电子(CE)系统的组成部分。但是,由于其所代表的价值,它需要保护免受重大威胁,例如盗版和非法拥有所有权。本文提出了一种新颖的基于多层编码和基于加密哈希的数字签名,用于保护CE系统中使用的复杂可重用IP核。文献中首次提出了一种用于数字信号处理(DSP)内核的基于数字签名的IP内核保护。所提出的方法能够对DSP内核应用程序进行编码,然后创建经编码的应用程序的摘要,以最终使用RSA形成数字签名,随后将其植入体系结构综合过程中的同一设计中。提出的基于DSP基准的方法能够以较低的同时发生概率实现更高的鲁棒性-表示作者身份的更充分的证明。与类似的先前工作相比,所提出的方法具有更强的鲁棒性(平均约24.8%),并且所需的存储硬件更少(平均减少约14%)。

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