DocumentCode
2316181
Title
Timed Petri net models of multithreaded multiprocessor architectures
Author
Govindarajan, R. ; Suciu, F. ; Zuberek, W.M.
Author_Institution
Supercomput. Educ. & Res. Centre, Indian Inst. of Sci., Bangalore, India
fYear
1997
fDate
3-6 Jun 1997
Firstpage
153
Lastpage
162
Abstract
Multithreaded distributed-memory multiprocessor architectures are composed of a number of (multithreaded) processors, each with its memory, and an interconnection network. The long memory latencies and unpredictable synchronization delays are tolerated by context switching, i.e., by suspending the current thread and switching the processor to another `ready´ thread provided such a thread is available. Because of very simple representation of concurrency and synchronization, timed Petri net models seem to be well suited for modeling and evaluation of such architectures. However, accurate net models of multithreaded multiprocessors become quite complicated, so their analysis can be a nontrivial task. This paper describes a timed colored Petri net model of a multithreaded multiprocessor architecture, and presents some results obtained by simulation of this model. A simplified approach to modeling such architectures is also proposed
Keywords
delays; digital simulation; formal specification; multiprocessing systems; performance evaluation; synchronisation; accurate net models; context switching; distributed-memory multiprocessor architectures; interconnection network; memory latencies; multithreaded multiprocessor architectures; simulation; synchronization; timed Petri net models; unpredictable synchronization delays; Analytical models; Computer architecture; Delay; Discrete event simulation; Multiprocessor interconnection networks; Multithreading; Petri nets; Supercomputers; Switches; Yarn;
fLanguage
English
Publisher
ieee
Conference_Titel
Petri Nets and Performance Models, 1997., Proceedings of the Seventh International Workshop on
Conference_Location
Saint Malo
ISSN
1063-6714
Print_ISBN
0-8186-7931-X
Type
conf
DOI
10.1109/PNPM.1997.595546
Filename
595546
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