A Methodology for Soft Errors Detection and Automatic Recovery

Jorge Villamayor, Dolores Rexachs, E. Luque, Diego Montezanti, A. D. Giusti, M. Naiouf
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引用次数: 3

Abstract

Handling faults is a growing concern in HPC; higher error rates, larger detection intervals and silent faults are expected in the future. It is projected that, in exascale systems, errors will occur several times a day, and they will propagate to generate errors that will range from process crashes to corrupted results because of undetected errors. In this article, we propose a methodology that improves system reliability against transient faults, when running parallel message-passing applications. The proposed solution, based on process replication, has the goal of helping programmers and users of parallel scientific applications to achieve reliable executions with correct results. This work presents a characterization of the strategy, defining its behavior in the presence of faults and modeling the temporal costs of employing it. As a result, we show its efficacy and viability to tolerate transient faults in HPC systems.
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一种软错误检测与自动恢复方法
在高性能计算中,故障处理日益受到关注;预计未来会出现更高的错误率、更大的检测间隔和无声故障。据预测,在百亿亿级系统中,错误每天会发生几次,并且它们会传播以产生各种错误,从进程崩溃到由于未检测到的错误而损坏的结果。在本文中,我们提出了一种方法,可以在运行并行消息传递应用程序时提高系统对瞬态故障的可靠性。建议的解决方案基于流程复制,其目标是帮助并行科学应用程序的程序员和用户实现具有正确结果的可靠执行。这项工作提出了该策略的特征,定义了其在存在故障时的行为,并对采用该策略的时间成本进行了建模。结果表明了该方法在高性能计算系统中容忍暂态故障的有效性和可行性。
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