DocumentCode :
1560830
Title :
Scheduling a job mix in a partitionable parallel system
Author :
Karatza, Helen D. ; Hilzer, Ralph C.
Author_Institution :
Dept. of Informatics, Aristotle Univ. of Thessaloniki, Greece
fYear :
2002
Firstpage :
115
Lastpage :
121
Abstract :
Efficient scheduling of jobs on parallel processors is essential for good performance. However, design of such schedulers is challenging because of the complex interaction between system and workload parameters. This paper studies the performance of a partitionable parallel system in which job scheduling depends on job characteristics. Jobs consist of a different number of tasks and are characterized as sequential or parallel depending on whether the tasks are processed sequentially on the same processor or at different processors. Jobs that consist of parallel tasks are called gangs, that is, they have to be scheduled to execute concurrently on processor partitions, where each task starts at the same time and computes at the same pace. The goal is to achieve good performance of sequential and parallel jobs. The performance of different scheduling schemes is compared over various workloads. Simulated results indicate that sequential jobs should not arbitrary overtake the execution of parallel jobs.
Keywords :
parallel machines; performance evaluation; resource allocation; scheduling; shared memory systems; virtual machines; job characteristics; job mix scheduling; parallel processors; parallel tasks; partitionable parallel system; performance; resource allocation; scheduler design; sequential jobs; sequential tasks; shared memory system; workload parameters; workloads; Computer science; Concurrent computing; Hardware; Informatics; Job listing service; Parallel machines; Processor scheduling; Resource management; Synthetic aperture sonar; Tellurium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Simulation Symposium, 2002. Proceedings. 35th Annual
ISSN :
1082-241X
Print_ISBN :
0-7695-1552-5
Type :
conf
DOI :
10.1109/SIMSYM.2002.1000136
Filename :
1000136
Link To Document :
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