DocumentCode :
995826
Title :
An Efficient, Practical Parallelization Methodology for Multicore Architecture Simulation
Author :
Donald, James ; Martonosi, Margaret
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., NJ
Volume :
5
Issue :
2
fYear :
2006
Firstpage :
14
Lastpage :
14
Abstract :
Multiple core designs have become commonplace in the processor market, and are hence a major focus in modern computer architecture research. Thus, for both product development and research, multiple core processor simulation environments are necessary. A well-known positive feedback property of computer design is that we use today´s computers to design tomorrow´s. Thus, with the emergence of chip multiprocessors, it is natural to re-examine simulation environments written to exploit parallelism. In this paper we present a programming methodology for directly converting existing uniprocessor simulators into parallelized multiple-core simulators. Our method not only takes significantly less development effort compared to some prior used programming techniques, but also possesses advantages by retaining a modular and comprehensible programming structure. We demonstrate our case with actual developed products after applying this method to two different simulators, one developed from IBM Ibrandot and the other from the SimpleScalar tool set. Our SimpleScalar-based framework achieves a parallel speedup of 2.2times on a dual-CPU dual-core (4-way) Opteron server
Keywords :
logic simulation; microcomputers; multiprocessing systems; parallel architectures; IBM Ibrandot; SimpleScalar tool set; chip multiprocessors; comprehensible programming structure; modern computer architecture; modular programming structure; multicore architecture simulation; multiple core processor simulation; parallelization method; parallelized multiple-core simulators; positive feedback property; programming methodology; Computational modeling; Computer architecture; Computer simulation; Feedback; Multicore processing; Object oriented modeling; Parallel processing; Parallel programming; Process planning; Product development; multicore; parallelism; simulation;
fLanguage :
English
Journal_Title :
Computer Architecture Letters
Publisher :
ieee
ISSN :
1556-6056
Type :
jour
DOI :
10.1109/L-CA.2006.14
Filename :
4069171
Link To Document :
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