N-variant IC design: Methodology and applications

Y. Alkabani, F. Koushanfar
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引用次数: 20

Abstract

We propose the first method for designing N-variant sequential circuits. The flexibility provided by the N-variants enables a number of important tasks, including IP protection, IP metering, security, design optimization, self-adaptation and fault-tolerance. The method is based on extending the finite state machine (FSM) of the design to include multiple variants of the same design specification. The state transitions are managed by added signals that may come from various triggers depending on the target application. We devise an algorithm for implementing the N-variant IC design. We discuss the necessary manipulations of the added signals that would facilitate the various tasks. The key advantage to integrating the heterogeneity in the functional specification of the design is that we can configure the variants during or post-manufacturing, but removal, extraction or deletion of the variants is not viable. Experimental results on benchmark circuits demonstrate that the method can be automatically and efficiently implemented. Because of its lightweight, N-variant design is particularly well-suited for securing embedded systems. As a proof-of-concept, we implement the N-variant method for content protection in portable media players, e.g., iPod. We discuss how the N-variant design methodology readily enables new digital rights management methods.
n型集成电路设计:方法和应用
我们提出了设计n变顺序电路的第一种方法。n -变体提供的灵活性支持许多重要任务,包括IP保护、IP计量、安全性、设计优化、自适应和容错。该方法基于扩展设计的有限状态机(FSM),使其包含同一设计规范的多个变体。状态转换由添加的信号管理,这些信号可能来自不同的触发器,具体取决于目标应用程序。我们设计了一种实现n变IC设计的算法。我们讨论了增加的信号的必要操作,以方便各种任务。在设计的功能规范中集成异构的关键优势是,我们可以在制造期间或制造后配置变体,但是移除、提取或删除变体是不可用的。在基准电路上的实验结果表明,该方法可以自动有效地实现。由于其轻量级,N-variant设计特别适合保护嵌入式系统。作为概念验证,我们在便携式媒体播放器(例如iPod)中实现了n变体方法来保护内容。我们讨论了n变量设计方法如何容易地实现新的数字版权管理方法。
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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