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DARS: An EDA Framework for Reliability and Functional Safety Management of System-on-Chips

机译:DARS:用于芯片系统可靠性和功能安全管理的EDA框架

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Electronic design automation tools used for Design-For-Test infrastructure insertion have often relied on test standards (e.g. IEEE 1149.1, 1500 and 1687) as a structured methodology for IC test access, which consequently reduce the design cost for DFT. The IEEE 1687 standard introduces an efficient methodology for the off-chip access of the increasing number of embedded instruments that are used for test, debug and other purposes. A subset of these instruments is also used for Reliability and functional Safety (RaS) management, while accessing them via an on-chip manager. In this paper, we present a design automation framework for the RaS management of System-on-Chips using embedded instruments, by utilizing the IEEE 1687 standard as the key enabler of this automation. The framework enables the on-chip execution of cross-layer RaS procedures by the automatic generation of a dedicated design layer for the procedures execution. The framework utilizes the IEEE 1687-defined PDL language and the pattern retargeting process for enabling a programming model for developing the RaS procedures with no regard to the instruments access procedures and their physical locations, which consequently reduce the development time of RaS procedures and enable their scalability and reusability, and hence their automation.
机译:用于测试设计基础设施插入的电子设计自动化工具通常依赖于测试标准(例如IEEE 1149.1、1500和1687)作为用于IC测试访问的结构化方法,从而降低了DFT的设计成本。 IEEE 1687标准引入了一种有效的方法,可以对越来越多的用于测试,调试和其他目的的嵌入式仪器进行片外访问。这些工具的一部分还用于可靠性和功能安全(RaS)管理,同时通过片上管理器进行访问。在本文中,我们通过利用IEEE 1687标准作为该自动化的关键推动力,提出了一种使用嵌入式仪器对芯片系统进行RaS管理的设计自动化框架。该框架通过自动生成专用的设计层来执行跨层RaS程序,从而在片上执行该程序。该框架利用IEEE 1687定义的PDL语言和模式重新定向过程来实现用于开发RaS程序的编程模型,而无需考虑仪器的访问程序及其物理位置,从而减少了RaS程序的开发时间并使其能够可扩展性和可重用性,以及它们的自动化。

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