Enhanced Functional Obfuscation of DSP core using Flip-Flops and Combinational logic

Mahendra Rathor, A. Sengupta
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引用次数: 1

Abstract

Due to globalization of Integrated Circuit (IC) design flow, Intellectual Property (IP) cores have increasingly become susceptible to various hardware threats such as Trojan insertion, piracy, overbuilding etc. An IP core can be secured against these threats using functional obfuscation based security mechanism. This paper presents a functional obfuscation of digital signal processing (DSP) core for consumer electronics systems using a novel IP core locking block (ILB) logic that leverages the structure of flip-flops and combinational circuits. These ILBs perform the locking of the functionality of a DSP design and actuate the correct functionality only on application of a valid key sequence. In existing approaches so far, executing exhaustive trials are sufficient to extract the valid keys from an obfuscated design. However, proposed work is capable of hindering the extraction of valid keys even on exhaustive trials, unless successfully applied in the first attempt only. In other words, the proposed work drastically reduces the probability of obtaining valid key of a functionally obfuscated design in exhaustive trials. Experimental results indicate that the proposed approach achieves higher security and lower design overhead than previous works.
利用触发器和组合逻辑增强DSP核心功能混淆
由于集成电路(IC)设计流程的全球化,知识产权(IP)内核越来越容易受到各种硬件威胁,如木马插入、盗版、过度构建等。可以使用基于功能混淆的安全机制来保护IP核免受这些威胁。本文提出了一种用于消费电子系统的数字信号处理(DSP)核心的功能混淆,使用一种新颖的IP核锁定块(ILB)逻辑,该逻辑利用触发器和组合电路的结构。这些ilb执行DSP设计的功能锁定,并仅在应用有效密钥序列时才启动正确的功能。到目前为止,在现有的方法中,执行详尽的试验足以从混淆的设计中提取有效的键。然而,除非在第一次尝试中成功应用,否则即使在详尽的试验中,所建议的工作也可能阻碍有效密钥的提取。换句话说,所提出的工作大大降低了在穷举试验中获得功能混淆设计的有效密钥的概率。实验结果表明,该方法具有较高的安全性和较低的设计开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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