Implementing High Performance Remote Method Invocation in CCA

Jian Yin, Khushbu Agarwal, M. Krishnan, D. Chavarría-Miranda, I. Gorton, T. Epperly
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引用次数: 4

Abstract

We report our effort in engineering a high performance remote method invocation (RMI) mechanism for the Common Component Architecture (CCA). This mechanism provides a highly efficient and easy-to-use mechanism for distributed computing in CCA, enabling CCA applications to effectively leverage parallel systems to accelerate computations. This work is built on the previous work of Babel RMI. Babel is a high performance language interoperability tool that is used in CCA for scientific application writers to share, reuse, and compose applications from software components written in different programming languages. Babel provides a transparent and flexible RMI framework for distributed computing. However, the existing Babel RMI implementation is built on top of TCP and does not provide the level of performance required to distribute fine-grained tasks. We observed that the main reason the TCP based RMI does not perform well is because it does not utilize the high performance interconnect hardware on a cluster efficiently. We have implemented a high performance RMI protocol, HPCRMI. HPCRMI achieves low latency by building on top of a low-level portable communication library, Aggregated Remote Message Copy Interface (ARMCI), and minimizing communication for each RMI call. Our design allows a RMI operation to be completed by only two RDMA operations. We also aggressively optimize our system to reduce copying. In this paper, we discuss the design and our experimental evaluation of this protocol. Our experimental results show that our protocol can improve RMI performance by an order of magnitude.
在CCA中实现高性能远程方法调用
我们报告了我们在为公共组件体系结构(CCA)设计高性能远程方法调用(RMI)机制方面所做的工作。该机制为CCA中的分布式计算提供了一种高效且易于使用的机制,使CCA应用程序能够有效地利用并行系统来加速计算。这项工作是建立在Babel RMI之前的工作基础上的。Babel是一个高性能的语言互操作性工具,在CCA中用于科学应用程序编写者共享、重用和组合用不同编程语言编写的软件组件的应用程序。Babel为分布式计算提供了一个透明而灵活的RMI框架。然而,现有的Babel RMI实现是建立在TCP之上的,不能提供分发细粒度任务所需的性能级别。我们观察到,基于TCP的RMI性能不佳的主要原因是它没有有效地利用集群上的高性能互连硬件。我们实现了一个高性能的RMI协议HPCRMI。HPCRMI通过构建在底层可移植通信库聚合远程消息复制接口(ARMCI)之上,并最小化每个RMI调用的通信,实现了低延迟。我们的设计允许RMI操作仅由两个RDMA操作完成。我们还积极优化我们的系统,以减少复制。在本文中,我们讨论了该协议的设计和实验评估。实验结果表明,该协议可以将RMI性能提高一个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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