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Characterization of the Impact of Soft Errors on Iterative Methods

机译:表征软错误对迭代方法的影响

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Soft errors caused by transient bit flips have the potential to significantly impact an application's behavior. This has motivated the design of an array of techniques to detect, isolate, and correct soft errors using microarchitectural, architectural, compilation-based, or application-level techniques to minimize their impact on the executing application. The first step toward the design of good error detection/correction techniques involves an understanding of an application's vulnerability to soft errors. In this paper, we present the first comprehensive characterization of the impact of soft errors on the convergence characteristics of six iterative methods using application-level fault injection. In particular, we consider the use of iterative methods to incrementally solve a linear system of equations, which constitute the core kernel in many scientific applications. We analyze the impact of soft errors in terms of the type of error (single-vs multi-bit), the distribution and location of bits affected, the data structure and statement impacted, and variation with time. In addition to understanding the vulnerability of iterative solvers to soft errors, this characterization can aid the design of fault injection campaigns that ensure systematic coverage.
机译:由瞬态位翻转引起的软错误可能会严重影响应用程序的行为。这激发了使用微体系结构,体系结构,基于编译或应用程序级别的技术来检测,隔离和纠正软错误的一系列技术的设计,以最大程度地减少其对正在执行的应用程序的影响。设计良好的错误检测/纠正技术的第一步涉及到了解应用程序对软错误的脆弱性。在本文中,我们提出了使用应用程序级故障注入对软错误对六种迭代方法的收敛特性的影响进行的首次全面表征。特别是,我们考虑使用迭代方法来逐步求解线性方程组,而线性方程组构成了许多科学应用中的核心内核。我们从错误类型(单对多位),受影响位的分布和位置,受影响的数据结构和语句以及随时间变化的角度分析软错误的影响。除了了解迭代求解器对软错误的脆弱性之外,这种表征还可以帮助设计确保系统覆盖的故障注入活动。

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