TOWARDS PARALLEL PROGRAMMING BY TRANSFORMATION: THE FAN SKELETON FRAMEWORK

Marco Aldinucci, S. Gorlatch, C. Lengauer, S. Pelagatti
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引用次数: 46

Abstract

A Functional Abstract Notation (FAN) is proposed for the specification and design of parallel algorithms by means of skeletons - high-level patterns with parallel semantics. The main weakness of the current programming systems based on skeletons ii that the user is still responsible for finding the most appropriate skeleton composition for a given application and a given parallel architecture We describe a transformational framework for the development of skeletal programs which is aimed at filling this gap. The framework makes use of transformation rules which are semantic equivalences among skeleton compositions. For a given problem, an initial, possibly inefficient skeleton specification is refined by applying a sequence of transformations. Transformations are guided by a set of performance prediction models which forecast the behavior of each skeleton and the performance benefits of different rules. The design process is supported by a graphical tool which locates applicable transformations and provides performance estimates, thereby helping the programmer in navigating through the program refinement space. We give an overview of the FAN framework and exemplify its use with performance-directed program derivations for simple case studies. Our experience can be viewed as a first feasibility study of methods and tools for transformational, performance-directed parallel programming using skeletons.
通过转换实现并行编程:风扇骨架框架
提出了一种功能抽象表示法(Functional Abstract Notation, FAN),通过具有并行语义的高级模式骨架(skeleton)来规范和设计并行算法。当前基于框架的编程系统的主要弱点是用户仍然负责为给定的应用程序和给定的并行架构找到最合适的框架组成。我们描述了一个用于开发框架程序的转换框架,旨在填补这一空白。该框架使用了转换规则,这些规则是骨架组合之间的语义等价。对于给定的问题,通过应用一系列转换来细化初始的、可能效率低下的骨架规范。转换由一组性能预测模型指导,这些模型预测每个框架的行为和不同规则的性能优势。设计过程由图形工具支持,该工具定位可应用的转换并提供性能评估,从而帮助程序员在程序细化空间中导航。我们给出了FAN框架的概述,并举例说明了它与性能导向程序派生的简单案例研究。我们的经验可以看作是对使用框架进行转换的、性能导向的并行编程的方法和工具的第一次可行性研究。
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