A study of application-level recovery methods for transient network faults

I. Laguna, E. León, M. Schulz, M. Stephenson
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Abstract

With the increasing number of components in HPC systems, transient faults will become commonplace. Today, network transient faults, such as lost or corrupted network packets, are addressed by middleware libraries at the cost of high memory usage and packet retransmissions. These costs, however, can be eliminated using application-level fault tolerance. In this paper, we propose recovery methods for transient network faults at the application level. These methods reconstruct missing or corrupted data via interpolation. We derive a realistic fault model using network fault rates from a production HPC cluster and use it to demonstrate the effectiveness of our reconstruction methods in an FFT kernel. We found that the normalized root-mean-square error for FFT computations can be as low as 0.1% and, thus, demonstrates that network faults can be handled at the application level with low perturbation in applications that have smoothness in their computed data.
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网络暂态故障的应用层恢复方法研究
随着高性能计算系统中组件数量的增加,暂态故障将变得越来越普遍。目前,网络瞬态故障(如丢失或损坏的网络数据包)由中间件库解决,但代价是高内存使用和数据包重传。但是,可以使用应用程序级容错来消除这些成本。本文从应用层提出了网络暂态故障的恢复方法。这些方法通过插值重建丢失或损坏的数据。我们从生产HPC集群中使用网络故障率推导出一个真实的故障模型,并用它来证明我们的重建方法在FFT内核中的有效性。我们发现FFT计算的归一化均方根误差可以低至0.1%,因此,这表明网络故障可以在应用程序级别处理,在计算数据平滑的应用程序中具有低扰动。
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