APPROXIMATION ALGORITHMS FOR SCHEDULING MALLEABLE TASKS UNDER PRECEDENCE CONSTRAINTS

Author:

LEPÈRE RENAUD1,TRYSTRAM DENIS2,WOEGINGER GERHARD J.34

Affiliation:

1. Laboratoire ID (Informatique et Distribution) - IMAG, 51 rue J. Kuntzmann, 38330 Montbonnot St. Martin, France

2. Laboratoire ID (Informatique et Distribution) - IMAG, 51 rue J. Kuntzmann, 38330 Montbonnot St.Martin, France

3. Institut für Mathematik, Technische Universität Graz, Steyrergasse 30, A-8010 Graz, Austria

4. Supported by the START program Y43-MAT of the Austrian Ministry of Science, Austria

Abstract

This work presents approximation algorithms for scheduling the tasks of a parallel application that are subject to precedence constraints. The considered tasks are malleable which means that they may be executed on a varying number of processors in parallel. The considered objective criterion is the makespan, i.e., the largest task completion time. We demonstrate a close relationship between this scheduling problem and one of its subproblems, the allotment problem. By exploiting this relationship, we design a polynomial time approximation algorithm with performance guarantee arbitrarily close to [Formula: see text] for the special case of series parallel precedence constraints and for the special case of precedence constraints of bounded width. These special cases cover the important situation of tree structured precedence constraints. For arbitrary precedence constraints, we give a polynomial time approximation algorithm with performance guarantee [Formula: see text].

Publisher

World Scientific Pub Co Pte Lt

Subject

Computer Science (miscellaneous)

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