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Decoupling parallel and sequential codes: the pyramid approach

机译:去耦并行和顺序代码:金字塔方法

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A multiparadigm parallel programming system is described in this paper. The system supports a specification language that can conveniently encode a fork-join graph by which many parallel applications are representable. The language, called parScript, mandates the separation of parallel control from sequential codes that perform the actual computation, resulting in a program that is concise, portable, and yet efficient. We investigate the feasibility of this approach by building a prototype system on a NUMA multiprocessor. Experimental data shows that the performance of parScript programs can be comparable to that of their C counterparts, both on uniprocessors and on NUMA multiprocessors.
机译:本文描述了一种多极分数并行编程系统。该系统支持规范语言,可以方便地编码叉 - 连接图,通过该图是可表示的许多并行应用程序。称为PARScript的语言要求从执行实际计算的顺序代码中分离并行控制,从而产生简明,便携式,且效率的程序。我们通过在Numa多处理器上构建原型系统来调查这种方法的可行性。实验数据表明,Parscript程序的性能可以与单处理器和NUMA多处理器上的C同胞的性能相媲美。

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