SAFIRE:为并行多线程应用程序提供可伸缩和精确的故障注入

G. Georgakoudis, I. Laguna, H. Vandierendonck, Dimitrios S. Nikolopoulos, M. Schulz
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引用次数: 7

摘要

软错误可能会破坏超级计算的扩展。断层注入是了解断层对科学应用影响的关键技术。然而,在并行应用程序中注入错误非常缓慢、不准确且难以实现。在本文中,我们提出了第一个用于并行、多线程应用的快速、准确的故障注入框架。采用新颖的编译工具和代码生成技术,实现高精度和高速度。通过使用,我们展示了故障表现可能会有很大的不同,这取决于它们是发生在应用程序本身还是发生在并行运行时系统中。在我们对15个高性能计算并行程序的实验评估中,我们表明,与最先进的动态二进制仪器工具相比,故障注入的速度要快很多倍,而且同样准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SAFIRE: Scalable and Accurate Fault Injection for Parallel Multithreaded Applications
Soft errors threaten to disrupt supercomputing scaling. Fault injection is a key technique to understand the impact of faults on scientific applications. However, injecting faults in parallel applications has been prohibitively slow, inaccurate and hard to implement. In this paper, we present, the first fast and accurate fault injection framework for parallel, multi-threaded applications. uses novel compiler instrumentation and code generation techniques to achieve high accuracy and high speed. Using, we show that fault manifestations can be significantly different depending on whether they happen in the application itself or in the parallel runtime system. In our experimental evaluation on 15 HPC parallel programs, we show that is multiple factors faster and equally accurate in comparison with state-of-the-art dynamic binary instrumentation tools for fault injection.
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