基于生成树的流处理流并行性和管道结构提取算法研究

S. Yamagiwa, G. Wang, K. Wada
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引用次数: 2

摘要

在计算平台中使用多核加速器来提升计算能力是一种潮流。特别是GPU是高性能计算的主要系列之一,也是世界顶级超级计算机所采用的。这种加速器上的编程方法包括控制程序的开发,加速器执行控制程序来调度加速器的内核程序的调用。内核程序需要基于流计算范式编写。连接内核程序的I/ o,可以开发大型应用程序。当我们将处理流视为有向图时,我们可以为加速器实现基于gui的编程工具。它使基于管道的处理流可视化。然而,找到一个复杂的处理流的起点是非常困难的。此外,尽管处理管道包含潜在的并行性,但程序员很难直观地利用它。本文提出了一种利用生成树来机械地利用并行性并确定执行顺序的算法。为了验证该算法,本文结合实际应用进行了评价。该算法有效地利用了并行性,构造了最优的流水线处理flow.Â
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of an Algorithm for Extracting Parallelism and Pipeline Structure from Stream-based Processing flow with Spanning Tree
It is a fashion to use the manycore accelerators to promote the computing power in a computing platform. Especially GPU is one of the main series of the high performance computing, which is also employed by top supercomputers in the world. Programming methods on such accelerators includes development of control programs which accelerators executes to schedule the invocation of the accelerator’s kernel program. The kernel program needs to be written based on the stream computing paradigm. Connecting I/Os of the kernel programs, we can develop a large application. When we consider the processing flow as a directed graph, we can implement a GUI-based programming tool for the accelerators. It visualizes a pipeline-based processing flow. However, it is very hard to find a starting point of a complex processing flow. Moreover, although the processing pipeline include the potential parallelism, it is hard for the programmer to exploit it intuitively. This paper proposes an algorithm applying the spanning tree that mechanically exploits the parallelism and determines an execution order. To verify the algorithm, this paper performs evaluation with realistic applications. The algorithm exploits effectively the parallelism and construct the optimal pipeline processing flow.Â
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