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“Hot spot” contention and combining in multistage interconnection networks

IEEE Transactions on Computers · 1985 · Vol. C-34(10) · pp. 943–948
Gregory F. PfisterVic Norton

Abstract

The combining of messages within a multistage switching network has been proposed to reduce memory contention in highly parallel shared-memory multiprocessors, especially for shared lock and synchronization data. A quantitative investigation of the performance impact of such contention and the effectiveness of combining in reducing this impact is reported. The effect of a nonuniform traffic pattern consisting of a single hot spot of higher access rate superimposed on a background of uniform traffic was investigated. The potential degradation due to even moderate hot spot traffic was found to be very significant, severely degrading all memory access, not just access to shared lock locations, due to an effect the authors call tree saturation. The technique of message combining was found to be an effective means of eliminating this problem if it arises due to lock or synchronization contention.

Interconnection Networks and SystemsDistributed systems and fault toleranceParallel Computing and Optimization TechniquesComputer scienceInterconnectionLock (firearm)Multistage interconnection networksSynchronization (alternating current)Computer networkHot spot (computer programming)Parallel computingShared memoryDistributed computing
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References
The NYU Ultracomputer—Designing an MIMD Shared Memory Parallel Computer
IEEE Transactions on Computers · 1983 · 745 citations
The Performance of Multistage Interconnection Networks for Multiprocessors
IEEE Transactions on Computers · 1983 · 540 citations
Access and Alignment of Data in an Array Processor
IEEE Transactions on Computers · 1975 · 1,120 citations
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