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Characterizing System-Level Vulnerability for Instruction Caches against Soft Errors

机译:用于对柔软误差的指令缓存的系统级漏洞

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With continuous scaling down of the semiconductor technology, the soft errors induced by energetic particles have become an increasing challenge in designing current and next-generation reliable microprocessors. Due to their large share of the transistor budget and die area, cache memories suffer from an increasing vulnerability against soft errors. Previous work based on the vulnerability factor (VF) analysis proposed analytical models to evaluate the reliability of on-chip data and instruction caches. However, we have no possession of a system-level study on the vulnerability of instruction caches. In this paper, we propose a new analytical model to estimate the system-level vulnerability factor for on-chip instruction caches. In our model, the error masking/detection effects in instructions based on the Instruction Set Architecture (ISA) are studied. Our experimental results using SPEC benchmark suite show that the self-error-masking/detection in instructions will reduce the VF of the instruction caches compared to the previous study. We also conduct an evaluation on the effectiveness of the reliability optimization techniques for instruction caches under our system-level VF characterization. Our proposed vulnerability model can provide an insightful guidance for the reliable instruction cache and ISA design.
机译:通过连续缩放半导体技术,精力粒子诱导的软误差已成为设计电流和下一代可靠微处理器的越来越大。由于其晶体管预算和模具区域的大量份额大,缓存存储器遭受了对软误差的脆弱性增加。以前的工作基于漏洞因素(VF)分析,提出了分析模型,以评估片上数据和指令高速缓存的可靠性。但是,我们没有拥有对指令缓存脆弱性的系统级研究。在本文中,我们提出了一种新的分析模型来估计片上指令高速缓存的系统级漏洞因素。在我们的模型中,研究了基于指令集架构(ISA)的指令中的错误屏蔽/检测效果。我们使用规范基准套件的实验结果表明,与前一项研究相比,指令中的自错误屏蔽/检测将减少指令缓存的VF。我们还对我们的系统级VF表征下的指令高速缓存的可靠性优化技术的有效性进行了评估。我们所提出的漏洞模型可以为可靠的指令缓存和ISA设计提供富有识别的指导。

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