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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Exploring Efficient Hardware Support for Applications with Irregular Memory Patterns on Multinode Manycore Architectures
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Exploring Efficient Hardware Support for Applications with Irregular Memory Patterns on Multinode Manycore Architectures

机译:探索对多节点Manycore架构上具有不规则内存模式的应用程序的有效硬件支持

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摘要

With computing systems becoming ubiquitous, numerous data sets of extremely large size are becoming available foranalysis. Often the data collected have complex, graph based structures, which makes them difficult to process with traditional tools. Moreover, the irregularities in the data sets, and in the analysis algorithms, hamper the scaling of performance in large distributedhigh-performance systems, optimized for locality exploitation and regular data structures. In this paper we present an approach tosystem design that enable efficient execution of applications with irregular memory patterns on a distributed, many-core architecture, based on off-the-shelf cores. We introduce a set of hardware and software components, which provide a distributed global address space, fine-grained synchronization and latency hiding of remote accesses with multithreading. An FPGA prototype has been implemented to explore the design with a set of typical irregular kernels. We finally present an analytical model that highlights the benefits of the approach and helps identifying the bottlenecks in the prototype. The experimental evaluation on graph basedapplications demonstrates the scalability of the architecture for different configurations of the whole system.
机译:随着计算系统无处不在,大量超大型数据集可供分析。通常,收集的数据具有复杂的基于图的结构,这使它们难以使用传统工具进行处理。此外,数据集和分析算法中的不规则性妨碍了大型分布式高性能系统的性能扩展,这些系统针对本地化利用和常规数据结构进行了优化。在本文中,我们提出了一种系统设计方法,该方法可以在基于现成内核的分布式多核体系结构上高效执行具有不规则内存模式的应用程序。我们介绍了一组硬件和软件组件,这些组件提供了分布式全局地址空间,细粒度的同步以及具有多线程功能的远程访问的延迟隐藏。已经实现了FPGA原型,以使用一组典型的不规则内核来探索设计。最后,我们提供了一个分析模型,该模型突出了该方法的优点,并有助于确定原型中的瓶颈。对基于图的应用程序的实验评估证明了整个系统不同配置的体系结构可扩展性。

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