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A study for scalable directory in parallel file systems.

机译:对并行文件系统中的可伸缩目录的研究。

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摘要

One of the challenges that the design of parallel file system for HPC (High Performance Computing) has to face today is maintaining the scalability to handle the I/O generated by parallel applications that involve accessing directories containing a large number of entries and performing hundreds of thousands of operations per second. Currently, highly concurrent access to large directories is poorly supported in parallel file systems. As a result, it is important to build a scalable directory service for parallel file systems to support efficient concurrent access to larger directories.;In this thesis we demonstrate a scalable directory service designed for parallel file systems (specifically for PVFS) that can achieve high throughput and scalability while minimizing bottlenecks and synchronization overheads. We describe important concepts and goals in scalable directory service design and its implementation in the parallel file system simulator--HECIOS. We also explore the simulation model of MPI programs and the PVFS file system in HECIOS, including the method to verify and validate it. Finally, we test our scalable directory service on HECIOS and analyze the performance and scalability based on the results.;In summary, we demonstrate that our scalable directory service can effectively handle highly concurrent access to large directories in parallel file systems. We are also able to show that our scalable directory service scales well with the number of I/O nodes in the cluster.
机译:HPC(高性能计算)并行文件系统设计今天必须面对的挑战之一是保持可伸缩性,以处理并行应用程序生成的I / O,并行应用程序涉及访问包含大量条目的目录并执行数百个目录。每秒数千次操作。当前,并行文件系统中很少支持对大型目录的高度并发访问。因此,为并行文件系统构建可伸缩目录服务以支持对更大目录的有效并发访问非常重要。;本论文中,我们演示了为并行文件系统(特别是针对PVFS)设计的可伸缩目录服务,它可以实现较高的吞吐量和可伸缩性,同时最大程度地减少瓶颈和同步开销。我们描述了可伸缩目录服务设计及其在并行文件系统模拟器HECIOS中的实现中的重要概念和目标。我们还探索了HECIOS中MPI程序和PVFS文件系统的仿真模型,包括验证和验证方法。最后,我们在HECIOS上测试了可伸缩目录服务,并根据结果分析了性能和可伸缩性。总之,我们证明了可伸缩目录服务可以有效地处理对并行文件系统中大型目录的高度并发访问。我们还能够证明我们的可伸缩目录服务可以随着群集中I / O节点的数量而很好地扩展。

著录项

  • 作者

    Wu, Yang.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Computer Science.
  • 学位 M.S.
  • 年度 2009
  • 页码 85 p.
  • 总页数 85
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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