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Preemptively scheduling hard-real-time sporadic tasks on one processor

Sanjoy Baruah, Aloysius K. Mok, Louis E. Rosier

Open publisher page 706 citations

Abstract

Consideration is given to the preemptive scheduling of hard-real-time sporadic task systems on one processor. The authors first give necessary and sufficient conditions for a sporadic task system to be feasible (i.e., schedulable). The conditions cannot, in general, be tested efficiently (unless P=NP). They do, however, lead to a feasibility test that runs in efficient pseudo-polynomial time for a very large percentage of sporadic task systems.>

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What this paper is about

Consideration is given to the preemptive scheduling of hard-real-time sporadic task systems on one processor. The authors first give necessary and sufficient conditions for a sporadic task system to be feasible (i.e., schedulable). The conditions cannot, in general, be tested efficiently (unless P=NP). They do, however, lead to a feasibility test that runs in efficient pseudo-polynomial time for a very large percentage of sporadic task systems.>

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OpenAlex reports 706 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Consideration is given to the preemptive scheduling of hard-real-time sporadic task systems on one processor. The authors first give necessary and sufficient conditions for a sporadic task system to be feasible (i.e., schedulable). The conditions cannot, in general, be tested efficiently (unless P=NP). They do, however, lead to a feasibility test that runs in efficient pseudo-polynomial time for a very large percentage of sporadic task systems.>

Key concepts: Scheduling (production processes), Computer science, Task (project management), Time complexity, Execution time, Preemption, Parallel computing, Running time

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