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Scalable Input/Output (Achieving System Balance)

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SKU:
9780262681421
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  • Product Details

    Author:
    Daniel A. Reed
    Format:
    Paperback
    Pages:
    392
    Publisher:
    MIT Press (October 24, 2003)
    Language:
    English
    ISBN-13:
    9780262681421
    ISBN-10:
    0262681420
    Weight:
    13oz
    Dimensions:
    7" x 9"
    Case Pack:
    24
    File:
    RandomHouse-PRH_Book_Company_PRH_PRT_Onix_full_active_D20260705T121712_156890336-20260705.xml
    Folder:
    RandomHouse
    List Price:
    $40.00
    Series:
    Scientific and Engineering Computation
    As low as:
    $30.80
    Publisher Identifier:
    P-RH
    Discount Code:
    A
    QuickShip:
    Yes
    Audience:
    General/trade
    Country of Origin:
    United States
    Pub Discount:
    65
    Imprint:
    The MIT Press
  • Overview

    The major research results from the Scalable Input/Output Initiative, exploring software and algorithmic solutions to the I/O imbalance.

    As we enter the "decade of data," the disparity between the vast amount of data storage capacity (measurable in terabytes and petabytes) and the bandwidth available for accessing it has created an input/output bottleneck that is proving to be a major constraint on the effective use of scientific data for research. Scalable Input/Output is a summary of the major research results of the Scalable I/O Initiative, launched by Paul Messina, then Director of the Center for Advanced Computing Research at the California Institute of Technology, to explore software and algorithmic solutions to the I/O imbalance. The contributors explore techniques for I/O optimization, including: I/O characterization to understand application and system I/O patterns; system checkpointing strategies; collective I/O and parallel database support for scientific applications; parallel I/O libraries and strategies for file striping, prefetching, and write behind; compilation strategies for out-of-core data access; scheduling and shared virtual memory alternatives; network support for low-latency data transfer; and parallel I/O application programming interfaces.