GPU Lifetimes on Titan Supercomputer: Survival Analysis and Reliability

G. Ostrouchov, Don E. Maxwell, R. Ashraf, C. Engelmann, M. Shankar, James H. Rogers
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引用次数: 10

Abstract

The Cray XK7 Titan was the top supercomputer system in the world for a long time and remained critically important throughout its nearly seven year life. It was an interesting machine from a reliability viewpoint as most of its power came from 18,688 GPUs whose operation was forced to execute three rework cycles, two on the GPU mechanical assembly and one on the GPU circuitboards. We write about the last rework cycle and a reliability analysis of over 100,000 years of GPU lifetimes during Titan’s 6-year-long productive period. Using time between failures analysis and statistical survival analysis techniques, we find that GPU reliability is dependent on heat dissipation to an extent that strongly correlates with detailed nuances of the cooling architecture and job scheduling. We describe the history, data collection, cleaning, and analysis and give recommendations for future supercomputing systems. We make the data and our analysis codes publicly available.
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泰坦超级计算机上的GPU寿命:生存分析和可靠性
克雷XK7泰坦在很长一段时间内都是世界上最顶级的超级计算机系统,在其近7年的生命周期中一直至关重要。从可靠性的角度来看,这是一台有趣的机器,因为它的大部分功率来自18,688个GPU,其操作被迫执行三个返工周期,两个在GPU机械组件上,一个在GPU电路板上。在泰坦6年的生产周期中,我们写了最近的返工周期和超过10万年GPU寿命的可靠性分析。使用故障间隔时间分析和统计生存分析技术,我们发现GPU可靠性在一定程度上依赖于散热,这与冷却架构和作业调度的详细细微差别密切相关。我们描述了历史、数据收集、清理和分析,并对未来的超级计算系统提出了建议。我们将数据和分析代码公开。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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