Portable programming within a message-passing model: the FFT as an example

D. Walker
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引用次数: 15

Abstract

This paper describes a portable programming environment for MIMD concurrent processors based on an object-oriented, message-passing paradigm. The basis of this environment is the Virtual Machine Loosely Synchronous Communication System (VMLSCS) which is designed to be used for loosely synchronous problems. VMLSCS is structured to make efficient use of hierarchical memory, and permits communication and calculation to be overlapped on certain concurrent processors. As an example, the use of VMLSCS in performing both one-dimensional and multi-dimensional fast Fourier transforms (FFTs) on concurrent multiprocessors is described. It is shown that all necessary interprocessor communication can be performed by a single routine, vm_index. Thus the construction of a portable concurrent FFT rests on the implementation of vm_index on the target machines. In the multi-dimensional algorithm a strip decomposition is applied to each of the directions in turn so that each of the FFTs performed in a particular direction are done in one processor. This allows fast sequential one-dimensional FFTs to be exploited. The implementation of vm_index on both homogeneous and inhomogeneous hypercubes, and shared memory multiprocessors is discussed.
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消息传递模型中的可移植编程:以FFT为例
本文描述了一种基于面向对象、消息传递范式的可移植的MIMD并发处理器编程环境。该环境的基础是虚拟机松散同步通信系统(VMLSCS),该系统设计用于解决松散同步问题。VMLSCS的结构是为了有效地利用分层内存,并允许通信和计算在某些并发处理器上重叠。作为一个例子,描述了VMLSCS在并发多处理器上执行一维和多维快速傅里叶变换(fft)的应用。结果表明,所有必要的处理器间通信都可以通过一个例程vm_index来完成。因此,可移植并发FFT的构造取决于目标机器上vm_index的实现。在多维算法中,条带分解依次应用于每个方向,以便在特定方向上执行的每个fft都在一个处理器中完成。这允许利用快速的顺序一维fft。讨论了vm_index在同构和非同构超多维数据集以及共享内存多处理器上的实现。
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