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Effective Quality-of-Service Policy for Capacity High-Performance Computing Systems

机译:用于容量高性能计算系统的有效服务质量政策

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Current high-performance capacity systems run hundreds of applications concurrently sharing the same network resources. In this scenario, system throughput and hence system utilization is significantly affected by inter-application contention. Quality-of-service (QoS) mechanisms are traditionally used in the Internet to provide different levels of performance guarantees. However, we have not found in the literature the application of QoS techniques to reduce the impact of inter-application contention on contention-sensitive applications running in capacity high-performance computing (HPC) clusters. Only a small set of applications can benefit from the policies currently used. Applications are basically classified into two classes, namely latency-sensitive and bandwidth-sensitive applications. Instead, we propose a more efficient quality-of-service policy for HPC systems with InfiniBand network. This technique provides a wider classification of applications, and hence can leverage QoS mechanisms for a large number of applications resulting in an increase of system performance. The proposed QoS policy provides a method to effectively map applications to virtual lanes and applies effective bandwidth distribution for each of the lanes. Results obtained for slimmed fat-tree networks show that by segregating applications on virtual lanes a substantial reduction of inter-application contention by 59% can be achieved for typical scientific codes. Also, applications can be effectively grouped into one virtual lane based on a network utilization metric in case there are more applications than virtual lanes in the system. Moreover, further improvements are obtained by allocating a different bandwidth to each virtual lane. This technique will favor some applications without significantly degrading the others. We show that for HPC, contrary to Internet, QoS policies should favor applications that are less communication demanding.
机译:目前的高性能容量系统运行数百个应用程序同时共享相同的网络资源。在这种情况下,系统吞吐量和系统利用率受应用际争用受到显着影响。服务质量(QoS)机制传统上用于互联网,提供不同级别的性能保证。但是,我们在文献中找不到QoS技术的应用来减少应用程序间争用对在容量高性能计算(HPC)集群中运行的争用敏感应用的影响。只有一小部分应用程序可以从目前使用的策略中受益。应用程序基本上分为两个类,即延迟敏感和带宽敏感的应用程序。相反,我们为具有InfiniBand网络的HPC系统提出了更有效的服务质量策略。该技术提供了更广泛的应用分类,因此可以利用QoS机制来实现大量应用导致系统性能的增加。所提出的QoS策略提供了一种方法来将应用程序映射到虚拟通道,并为每个车道应用有效的带宽分布。用于切割的脂肪树网络的结果表明,通过对虚拟通道进行分离应用,可以实现59%的典型科学代码的应用互联互护的大幅降低。此外,如果在系统中的虚拟通道上有更多的应用,则可以基于网络利用率公制将应用程序有效地分组到一个虚拟通道中。此外,通过向每个虚拟通道分配不同的带宽来获得进一步的改进。这种技术将有利于一些应用,而不会显着降低他人。我们表明,对于互联网相反,对于HPC而言,QoS政策应该有利于较少沟通要求的应用。

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