XcalableACC: Extension of XcalableMP PGAS Language Using OpenACC for Accelerator Clusters

M. Nakao, H. Murai, Takenori Shimosaka, Akihiro Tabuchi, T. Hanawa, Yuetsu Kodama, T. Boku, M. Sato
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引用次数: 40

Abstract

The present paper introduces the XcalableACC (XACC) programming model, which is a hybrid model of the XcalableMP (XMP) Partitioned Global Address Space (PGAS) language and OpenACC. XACC defines directives that enable programmers to mix XMP and OpenACC directives in order to develop applications that can use accelerator clusters with ease. Moreover, in order to improve the performance of stencil applications, the Omni XACC compiler provides functions that can transfer a halo region on accelerator memory via Tightly Coupled Accelerators (TCA), which is a proprietary network for transferring data directly among accelerators. In the present paper, we evaluate the productivity and the performance of XACC through implementations of the HIMENO Benchmark. The results show that thanks to the productivity improvements, XACC requires less than half the source lines of code compare to a combination of Message Passing Interface (MPI) and OpenACC, which is commonly used together as a typical programming model. As a result of these performance improvements, XACC using TCA achieved up to 2.7 times faster performance than could be obtained via the combination of OpenACC and MPI programming model using GPUDirect RDMA over InfiniBand.
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XcalableACC:扩展XcalableMP PGAS语言使用OpenACC加速器集群
本文介绍了XcalableACC (XACC)编程模型,它是XcalableMP (XMP)分区全局地址空间(PGAS)语言和OpenACC的混合模型。XACC定义了一些指令,使程序员能够混合使用XMP和OpenACC指令,以便开发可以轻松使用加速器集群的应用程序。此外,为了提高模板应用程序的性能,Omni XACC编译器提供了可以通过紧耦合加速器(TCA)在加速器内存上传输晕区的函数,TCA是在加速器之间直接传输数据的专有网络。在本文中,我们通过HIMENO基准的实现来评估XACC的生产力和性能。结果表明,由于生产力的提高,与消息传递接口(MPI)和OpenACC的组合相比,XACC只需要不到一半的源代码行,后者通常作为一种典型的编程模型一起使用。由于这些性能改进,使用TCA的XACC实现的性能比使用GPUDirect RDMA在InfiniBand上结合OpenACC和MPI编程模型获得的性能快2.7倍。
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