计算工作流调度的检查点策略

G. Aupy, A. Benoit, H. Casanova, Y. Robert
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引用次数: 14

摘要

我们研究了在经历指数分布故障的计算资源上的计算工作流调度。发生故障时,使用回滚和恢复从最后一个检查点状态恢复执行。调度问题是通过决定在工作流中以何种顺序执行任务以及决定每个任务在完成后是否对其进行检查点来最小化预期的执行时间。给出了叉形有向无环图的一个多项式时间最优算法,并证明了该问题具有连接的有向无环图是np完全的。我们还研究了没有任务被检查点的简单情况的复杂性。我们的主要成果是一个多项式时间算法,用于计算给定任务执行顺序和指定待检查点任务的工作流的预期执行时间。在此基础上,提出了几种求解调度问题的启发式算法。我们评估这些启发式的代表性工作流configurations.Â
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Checkpointing Strategies for Scheduling Computational Workflows
We study the scheduling of computational workflows on compute resources that experience exponentially distributed failures. When a failure occurs, rollback and recovery is used to resume the execution from the last checkpointed state. The scheduling problem is to minimize the expected execution time by deciding in which order to execute the tasks in the workflow and deciding for each task whether to checkpoint it or not after it completes. We give a polynomial-time optimal algorithm for fork DAGs (Directed Acyclic Graphs) and show that the problem is NP-complete with join DAGs. We also investigate the complexity of the simple case in which no task is checkpointed. Our main result is a polynomial-time algorithm to compute the expected execution time of a workflow, with a given task execution order and specified to-be-checkpointed tasks. Using this algorithm as a basis, we propose several heuristics for solving the scheduling problem. We evaluate these heuristics for representative workflow configurations.Â
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