Fault-tolerant multiprocessor system routing using incomplete diagnostic information

Fault-tolerant routing algorithms in multiprocessor systems utilize diagnostic information in selecting paths for messages. In many situations, only incomplete, or partial, diagnostic information is available for this purpose. The authors present algorithms for achieving two forms of diagnosis, know...

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Published inParallel Processing Symposium, 6th International pp. 398 - 402
Main Authors Blough, D.M., Najand, S.
Format Conference Proceeding
LanguageEnglish
Published IEEE Comput. Soc. Press 1992
Subjects
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ISBN0818626720
9780818626722
DOI10.1109/IPPS.1992.223013

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Abstract Fault-tolerant routing algorithms in multiprocessor systems utilize diagnostic information in selecting paths for messages. In many situations, only incomplete, or partial, diagnostic information is available for this purpose. The authors present algorithms for achieving two forms of diagnosis, known as k-reachability diagnosis and k-neighborhood diagnosis which provide partial diagnostic information. They compare, both analytically and through experiments conducted on an Intel iPSC/2 hypercube the performance and overhead of these two algorithms. They also present a routing algorithm that successfully routes messages between connected non-faulty nodes in systems of arbitrary topology containing an arbitrary number of faults. The performance of the algorithm is shown to be optimal when k=n-1 and within a factor of two of optimal, in the worst case, when k=1.< >
AbstractList Fault-tolerant routing algorithms in multiprocessor systems utilize diagnostic information in selecting paths for messages. In many situations, only incomplete, or partial, diagnostic information is available for this purpose. The authors present algorithms for achieving two forms of diagnosis, known as k-reachability diagnosis and k-neighborhood diagnosis which provide partial diagnostic information. They compare, both analytically and through experiments conducted on an Intel iPSC/2 hypercube the performance and overhead of these two algorithms. They also present a routing algorithm that successfully routes messages between connected non-faulty nodes in systems of arbitrary topology containing an arbitrary number of faults. The performance of the algorithm is shown to be optimal when k=n-1 and within a factor of two of optimal, in the worst case, when k=1.< >
Author Najand, S.
Blough, D.M.
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Snippet Fault-tolerant routing algorithms in multiprocessor systems utilize diagnostic information in selecting paths for messages. In many situations, only...
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StartPage 398
SubjectTerms Algorithm design and analysis
Fault diagnosis
Fault tolerance
Fault tolerant systems
Hypercubes
Large-scale systems
Multiprocessing systems
Performance analysis
Routing
System testing
Title Fault-tolerant multiprocessor system routing using incomplete diagnostic information
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