PALS: Efficient Or-Parallel execution of Prolog on Beowulf clusters
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Published:2007-11
Issue:6
Volume:7
Page:633-695
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ISSN:1471-0684
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Container-title:Theory and Practice of Logic Programming
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language:en
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Short-container-title:Theory and Practice of Logic Programming
Author:
PONTELLI ENRICO,VILLAVERDE KAREN,GUO HAI-FENG,GUPTA GOPAL
Abstract
AbstractThis paper describes the development of thePALSsystem, an implementation of Prolog capable of efficiently exploiting or-parallelism ondistributed-memoryplatforms—specifically Beowulf clusters. PALS makes use of a novel technique, calledincremental stack-splitting. The technique proposed builds on the stack-splitting approach, previously described by the authors and experimentally validated on shared-memory systems, which in turn is an evolution of the stack-copying method used in a variety of parallel logic and constraint systems—e.g., MUSE, YAP, and Penny. The PALS system is the first distributed or-parallel implementation of Prolog based on the stack-splitting method ever realized. The results presented confirm the superiority of this method as a simple yet effective technique to transition from shared-memory to distributed-memory systems. PALS extends stack-splitting by combining it with incremental copying; the paper provides a description of the implementation of PALS, including details of how distributed scheduling is handled. We also investigate methodologies to effectively support order-sensitive predicates (e.g., side-effects) in the context of the stack-splitting scheme. Experimental results obtained from running PALS on both Shared Memory and Beowulf systems are presented and analyzed.
Publisher
Cambridge University Press (CUP)
Subject
Artificial Intelligence,Computational Theory and Mathematics,Hardware and Architecture,Theoretical Computer Science,Software
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