Schedulability Analysis and Priority Assignment for Global Job-Level Fixed-Priority Multiprocessor Scheduling

Real-Time and Embedded Technology and Applications Symposium(2012)

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摘要
Unlike uniprocessor scheduling, EDF (categorized into job-level fixed-priority (JFP) scheduling) shows relatively poor performance on global multiprocessor scheduling. As no other global JFP multiprocessor algorithms are illuminated beyond EDF, this work proposes one, called EQDF (earliest quasi-deadline first), as a generalization of EDF. We define the quasi-deadline of a job as a weighted sum of its absolute deadline (capturing "urgency") and its worst case execution time (capturing "parallelism") with a system-level control knob to balance urgency and parallelism effectively. This paper then seeks to explore how it can improve the schedulability of global JFP scheduling. In addition to providing a new schedulability analysis for EQDF scheduling, it addresses the problem of priority assignment under EQDF by controlling the system-level control knob. It presents optimal and heuristic solutions to the problem subject to our proposed EQDF analysis. Our empirical results show the proposed heuristic solution outperforms EDF significantly, giving close to optimal results.
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关键词
global job-level fixed-priority multiprocessor scheduling,processor scheduling,absolute deadline,system-level control knob,new schedulability analysis,optimal solution,weighted sum,uniprocessor scheduling,problem subject,proposed eqdf analysis,global jfp multiprocessor algorithms,heuristic solution,worst case execution time,eqdf analysis,edf generalization,earliest quasi-deadline first,eqdf scheduling,multiprocessing systems,global multiprocessor scheduling,global job-level fixed-priority multiprocessor,global jfp scheduling,priority assignment,schedulability analysis,global jfp multiprocessor algorithm,scheduling algorithms,scheduling,algorithm design,heuristic algorithm,upper bound,scheduling algorithm,interference,multiprocessor scheduling,algorithm design and analysis
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