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Dynamic File Access Characteristics Of A Production Parallel Scientific Workload by David Kotz

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1NASA Technical Reports Server (NTRS) 19950012166: Dynamic File-access Characteristics Of A Production Parallel Scientific Workload

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Multiprocessors have permitted astounding increases in computational performance, but many cannot meet the intense I/O requirements of some scientific applications. An important component of any solution to this I/O bottleneck is a parallel file system that can provide high-bandwidth access to tremendous amounts of data in parallel to hundreds or thousands of processors. Most successful systems are based on a solid understanding of the expected workload, but thus far there have been no comprehensive workload characterizations of multiprocessor file systems. This paper presents the results of a three week tracing study in which all file-related activity on a massively parallel computer was recorded. Our instrumentation differs from previous efforts in that it collects information about every I/O request and about the mix of jobs running in a production environment. We also present the results of a trace-driven caching simulation and recommendations for designers of multiprocessor file systems.

“NASA Technical Reports Server (NTRS) 19950012166: Dynamic File-access Characteristics Of A Production Parallel Scientific Workload” Metadata:

  • Title: ➤  NASA Technical Reports Server (NTRS) 19950012166: Dynamic File-access Characteristics Of A Production Parallel Scientific Workload
  • Author: ➤  
  • Language: English

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2Dynamic File-access Characteristics Of A Production Parallel Scientific Workload

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Multiprocessors have permitted astounding increases in computational performance, but many cannot meet the intense I/O requirements of some scientific applications. An important component of any solution to this I/O bottleneck is a parallel file system that can provide high-bandwidth access to tremendous amounts of data in parallel to hundreds or thousands of processors. Most successful systems are based on a solid understanding of the expected workload, but thus far there have been no comprehensive workload characterizations of multiprocessor file systems. This paper presents the results of a three week tracing study in which all file-related activity on a massively parallel computer was recorded. Our instrumentation differs from previous efforts in that it collects information about every I/O request and about the mix of jobs running in a production environment. We also present the results of a trace-driven caching simulation and recommendations for designers of multiprocessor file systems.

“Dynamic File-access Characteristics Of A Production Parallel Scientific Workload” Metadata:

  • Title: ➤  Dynamic File-access Characteristics Of A Production Parallel Scientific Workload
  • Authors:
  • Language: English

“Dynamic File-access Characteristics Of A Production Parallel Scientific Workload” Subjects and Themes:

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The book is available for download in "texts" format, the size of the file-s is: 5.20 Mbs, the file-s for this book were downloaded 168 times, the file-s went public at Sun May 22 2011.

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