空间有限的程序:一种便携式高性能的方法

B. Alpern, L. Carter, J. Ferrante
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引用次数: 24

摘要

本文提出了实现可移植高性能的通用程序方法。这种方法有三个阶段。首先,编写一个泛型程序,定义一系列语义等效的程序变体。在第二种情况下,通用程序专门用于在目标计算机的抽象模型上表现最好的变体。在第三种情况下,这种变体被翻译成在目标计算机上运行。采用并行存储器层次(PMH)通用模型来定义目标计算机的抽象模型。使用这种方法,解决方案的范围是可能的。在范围的一端,可以编写一个简单的通用程序,其难度与编写顺序程序大致相同,可以自动调整以在各种计算机上实现相当好的性能。这个解决方案可以改进以提供更好的性能。在劳动密集型的一端,可以对应用程序进行调优,使其在每台计算机集合上都能达到最佳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Space-limited procedures: a methodology for portable high-performance
This paper presents the generic program approach to achieving portable high-performance. This approach has three phases. In the first, a generic program, defining a family of semantically-equivalent program variants, is written. In the second, the generic program as specialized to the variant that performs best on an abstract model of the target computer. In the third, this variant is translated to run on the target computer. The Parallel Memory Hierarchy (PMH) generic model is used to define the abstract models of target computers. Using this approach, a spectrum of solutions is possible. At one end of the spectrum, a simple generic program can be written, with roughly the same difficulty as writing a sequential program, that can be tuned automatically to achieve reasonably good performance on a wide variety of computers. This solution can be refined to give better performance. At the labor-intensive end of the spectrum, an application can be tuned so that it achieves the best possible performance on each of a collection of computers.
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