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Heterogeneous Computing Workshop (2000)
Cancun, Mexico
May 1, 2000 to May 1, 2000
ISSN: 1097-5209
ISBN: 0-7695-0556-2
pp: 216
Holly Dail , University of California at San Diego
Graziano Obertelli , University of California at San Diego
Francine Berman , University of California at San Diego
Rich Wolski , University of Tennessee
Andrew Grimshaw , University of Virginia
ABSTRACT
Computational Grids have become an important and popular computing platform for both scientific and commercial distributed computing communities. However, users of such systems typically find achievement of application execution performance remains challenging. Although Grid infrastructures such as Legion and Globus provide basic resource selection functionality, work allocation functionality, and scheduling mechanisms, applications must interpret system performance information in terms of their own requirements in order to develop performance-efficient schedules.We describe a new high-performance scheduler that incorporates dynamic system information, application requirements, and a detailed performance model in order to create performance efficient schedules. While the scheduler is designed to provide improved performance for a magneto hydrodynamics simulation in the Legion Computational Grid infrastructure, the design is generalizable to other systems and other data-parallel, iterative codes. We describe the adaptive performance model, resource selection strategies, and scheduling policies employed by the scheduler. We demonstrate the improvement in application performance achieved by the scheduler in dedicated and shared Legion environments.
INDEX TERMS
application scheduling, computational grid, dynamic scheduling, Legion, high-performance computing, distributed computing
CITATION

R. Wolski, A. Grimshaw, H. Dail, G. Obertelli and F. Berman, "Application-Aware Scheduling of a Magnetohydrodynamics Application in the Legion Metasystem," Heterogeneous Computing Workshop(HCW), Cancun, Mexico, 2000, pp. 216.
doi:10.1109/HCW.2000.843746
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