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CyGraph: A Reconfigurable Architecture for Parallel Breadth-First Search

机译:CyGraph:并行广度优先搜索的可重构体系结构

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Large-scale graph structures are considered as a keystone for many emerging high-performance computing applications in which Breadth-First Search (BFS) is an important building block. For such graph structures, BFS operations tends to be memory-bound rather than compute-bound. In this paper, we present an efficient reconfigurable architecture for parallel BFS that adopts new optimizations for utilizing memory bandwidth. Our architecture adopts a custom graph representation based on compressed-sparse raw format (CSR), as well as a restructuring of the conventional BFS algorithm. By taking maximum advantage of available memory bandwidth, our architecture continuously keeps our processing elements active. Using a commercial high-performance reconfigurable computing system (the Convey HC-2), our results demonstrate a 5× speedup over previously published FPGA-based implementations.
机译:大规模图结构被认为是许多新兴的高性能计算应用程序的基石,在这些应用程序中,广度优先搜索(BFS)是重要的构建块。对于这样的图结构,BFS操作往往是受内存限制的,而不是受计算限制的。在本文中,我们为并行BFS提供了一种有效的可重新配置体系结构,该体系结构采用了用于内存带宽的新优化。我们的体系结构采用基于压缩稀疏原始格式(CSR)的自定义图形表示,以及对常规BFS算法的重构。通过最大程度地利用可用内存带宽,我们的体系结构不断使我们的处理元件保持活动状态。使用商业高性能的可重配置计算系统(Convey HC-2),我们的结果证明,与以前发布的基于FPGA的实现相比,其速度提高了5倍。

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