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Processing moldable tasks on the grid: Late job binding with lightweight user-level overlay

机译:在网格上处理可模制的任务:后期作业绑定和轻量级用户级覆盖

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摘要

Independent observations and everyday user experience indicate that performance and reliability oflarge grid infrastructures may suffer from large and unpredictable variations. In this paper we study the impact of the job queuing time on processing of moldable tasks which are commonly found in large-scale production grids. We use the mean value and variance of makespan as the quality of service indicators. We develop a general task processing model to provide a quantitative comparison between two models: early and late job binding in a user-level overlay applied to the EGEE Grid infrastructure. We find that the late-binding model effectively defines a transformation of the distribution of makespan according to the Central Limit Theorem. As demonstrated by Monte Carlo simulations using real job traces, this transformation allows to substantially reduce the mean value and variance of makespan. For certain classes of applications task granularity may be adjusted such that a speedup of an order of magnitude or more may be achieved. We use this result to propose a general strategy for managing access to resources and optimization of workload based on Ganga and DIANE user-level overlay tools. Key features of this approach include: a late-binding scheduler, an ability to interface to a wide range of distributed systems, an ability to extend and customize the system to cover application-specific scheduling and processing patterns and finally, ease of use and lightweight deployment in the user space. We discuss the impact of this approach for some practical applications where efficient processing of many tasks is required to solve scientific problems.
机译:独立的观察和每天的用户体验表明,大型网格基础架构的性能和可靠性可能会遭受较大且不可预测的变化。在本文中,我们研究了作业排队时间对可成型任务的处理的影响,而成型任务通常是在大型生产网格中发现的。我们使用制造期的平均值和方差作为服务质量指标。我们开发了一种通用的任务处理模型,以提供两种模型之间的定量比较:应用到EEEE Grid基础结构的用户级别叠加中的早期和晚期作业绑定。我们发现,后期绑定模型根据中央极限定理有效地定义了工期分布的变换。正如使用实际作业迹线的蒙特卡洛模拟所证明的那样,这种变换可以大大减少平均有效值和制造期的变化。对于某些类型的应用程序,可以调整任务粒度,以便可以实现一个数量级或更大数量级的加速。我们使用此结果提出一种基于Ganga和DIANE用户级覆盖工具的管理资源访问和优化工作负载的通用策略。该方法的主要功能包括:后期绑定调度程序,与广泛的分布式系统接口的能力,扩展和定制系统以覆盖特定于应用程序的调度和处理模式的能力,以及最终的易用性和轻量级在用户空间中部署。我们讨论了这种方法对一些实际应用的影响,在这些实际应用中,需要有效处理许多任务来解决科学问题。

著录项

  • 来源
    《Future generation computer systems》 |2011年第6期|p.725-736|共12页
  • 作者单位

    CERN, IT Department, CH-1211 Geneva, Switzerland,Faculty of Sciences, Computational Science, University of Amsterdam, Kruislaan 403, 1098 SJ Amsterdam, The Netherlands;

    CERN, IT Department, CH-1211 Geneva, Switzerland;

    Faculty of Sciences, Computational Science, University of Amsterdam, Kruislaan 403, 1098 SJ Amsterdam, The Netherlands,Institute of Computer Science, AGH, al. Mickiewicza 30, 30-059 Krakow, Poland;

    Faculty of Sciences, Computational Science, University of Amsterdam, Kruislaan 403, 1098 SJ Amsterdam, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    grid computing; quality of service; moldable task processing; late binding; agent scheduling; pilot jobs; applications; interoperability;

    机译:网格计算;服务质量;可成型的任务处理;后期装订;代理调度;试点工作;应用;互通性;
  • 入库时间 2022-08-18 02:17:12

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