高阶异构过程规范计算的Cluster-M范式

M. M. Eshaghian, R. F. Freund
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引用次数: 21

摘要

在本文中,我们研究了一种称为超并发的方法,用于识别和使用最佳的异构处理器套件来解决传统的超级计算问题。我们主要讨论超并发的两个组成部分:最优选择理论和并行编程工具。我们简要地描述了一些现有的并行编程工具,并提出了一个称为Cluster-M的并行编程模型。该模型有效地为高阶异构过程规范计算提供了一种编程范式。使用ClusterM,可以生成可移植的软件,这些软件可以映射到异构超级计算的各种配置上。
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Cluster-M Paradigms for High-Order Heterogeneous Procedural Specification Computing
In this paper, we study an approach called superconcurrency for identifying and employing an optimal, heterogeneous suite of processors to solve traditional supercomputing problems. We discuss mainly two components of superconcurrency: Optimal selection theory, and Parallel programming tools. We briefly describe a number of existing parallel programming tools and present a parallel programming model called Cluster-M. This model efficiently provides a programming paradigm for high-order heterogeneous procedural specification computing. Using ClusterM, portable software can be generated which may be mapped onto various configurations of heterogeneous supercomputing.
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