Symbiotic job scheduling on the IBM POWER8

Josué Feliu, Stijn Eyerman, J. Sahuquillo, S. Petit
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引用次数: 15

Abstract

Simultaneous multithreading (SMT) processors share most of the microarchitectural core components among the co-running applications. The competition for shared resources causes performance interference between applications. Therefore, the performance benefits of SMT processors heavily depend on the complementarity of the co-running applications. Symbiotic job scheduling, i.e., scheduling applications that co-run well together on a core, can have a considerable impact on the performance of a processor with SMT cores. Prior work uses sampling or novel hardware support to perform symbiotic job scheduling, which has either a non-negligible overhead or is impossible to use on existing hardware. This paper proposes a symbiotic job scheduler for the IBM POWER8 processor. We leverage the existing cycle accounting mechanism to predict symbiosis between applications, and use that information at run-time to decide which applications should run on the same core or on separate cores. We implement the scheduler in the Linux operating system and evaluate it on an IBM POWER8 server running multiprogrammed workloads. The symbiotic job scheduler significantly improves performance compared to both an agnostic random scheduler and the default Linux scheduler. With respect to Linux, it achieves an average speedup by 8.8% for workloads comprising 12 applications, and by 4.7% on average across all evaluated workloads.
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IBM POWER8上的共生作业调度
同步多线程(SMT)处理器在协同运行的应用程序中共享大多数微体系结构核心组件。共享资源的竞争会导致应用程序之间的性能干扰。因此,SMT处理器的性能优势在很大程度上取决于协同运行应用程序的互补性。共生作业调度,即调度在一个核心上协同运行的应用程序,会对具有SMT核心的处理器的性能产生相当大的影响。先前的工作使用采样或新颖的硬件支持来执行共生作业调度,这要么具有不可忽略的开销,要么无法在现有硬件上使用。本文提出了一种适用于IBM POWER8处理器的共生作业调度器。我们利用现有的循环记帐机制来预测应用程序之间的共生关系,并在运行时使用该信息来决定哪些应用程序应该在相同的核心上运行,还是在不同的核心上运行。我们在Linux操作系统中实现调度器,并在运行多程序工作负载的IBM POWER8服务器上对其进行评估。与不可知的随机调度器和默认Linux调度器相比,共生作业调度器显著提高了性能。对于Linux,对于包含12个应用程序的工作负载,它实现了8.8%的平均加速,对于所有评估的工作负载,它实现了4.7%的平均加速。
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