DocumentCode
2051400
Title
PiSMA: an upgradable fault tolerant approach to parallel processing
Author
Lioupis, Dimitris ; Pipis, Andreas ; Stefanidakis, Michael
Author_Institution
Dept. of Comput. Eng. & Inf., Patras Univ., Greece
fYear
1997
fDate
18-21 Dec 1997
Firstpage
277
Lastpage
283
Abstract
Parallel processors reduce the communication overhead problem with the employment of some form of global communication network. This network however, imposes restrictions on the scalability and technological evolution of the parallel processor. In this paper a novel architecture called PiSMA (Parallel Virtual Shared Memory Architecture) is proposed, which consists of a basic substrate, without a network, providing neighborhood connectivity for local communication. The same architecture can be upgraded, by the addition of a global network. The simulated performance of such an upgradable parallel computer is measured with a wide range of parallel applications and fault tolerant issues are discussed. It is found that the substrate connectivity can provide an effective fault tolerant parallel computer for a large class of applications, while the incorporation of a global network broadens the spectrum of applications that can be executed efficiently by the PiSMA architecture
Keywords
distributed memory systems; fault tolerant computing; multiprocessor interconnection networks; parallel architectures; parallel machines; performance evaluation; reconfigurable architectures; shared memory systems; Parallel Virtual Shared Memory Architecture; PiSMA architecture; communication overhead problem; distributed memory systems; global communication network; global network; neighborhood connectivity; parallel processing; scalability; simulated performance; substrate connectivity; technological evolution; upgradable fault tolerant approach; upgradable parallel computer; Application software; Computational modeling; Computer architecture; Concurrent computing; Employment; Fault tolerance; Global communication; Memory architecture; Parallel processing; Scalability;
fLanguage
English
Publisher
ieee
Conference_Titel
High-Performance Computing, 1997. Proceedings. Fourth International Conference on
Conference_Location
Bangalore
Print_ISBN
0-8186-8067-9
Type
conf
DOI
10.1109/HIPC.1997.634503
Filename
634503
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