Abstract
In this paper, we describe the design, implementation, and modeling of a runtime kernel to support the processor farm paradigm on multicomputers. We present a general topology-independent framework for obtaining performance models to predict the performance of the start-up, steady-state, and wind-down phases of a processor farm. An algorithm is described, which for any interconnection network determines a tree-structured subnetwork that optimizes farm performance. The analysis technique is applied to the important case of k-ary tree topologies. The models are compared with the measured performance on a variety of topologies using both constant and varied task sizes. © 1997 IEEE.
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Wagner, A. S., Sreekantaswamy, H. V., & Chanson, S. T. (1997). Performance models for the processor farm paradigm. IEEE Transactions on Parallel and Distributed Systems, 8(5), 475–489. https://doi.org/10.1109/71.598275
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