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Flexible workload generation for HPC cluster efficiency benchmarking

机译:灵活的工作负载生成,用于HPC集群效率基准测试

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The High Performance Computing (HPC) community is well-accustomed to the general idea of benchmarking. In particular, the TOP500 ranking as well as its foundation-the Linpack benchmark-have shaped the field since the early 1990s. Other benchmarks with a larger workload variety such as SPEC MPI2007 are also well-accepted and often used to compare and rate a system's computational capability. However, in a petascale and soon-to-be exascale computing environment, the power consumption of HPC systems and consequently their energy efficiency have been and continue to be of growing importance, often outrivaling all aspects that focus narrowly on raw compute performance. The Green500 list is the first major attempt to rank the energy efficiency of HPC systems. However, its main weakness is again the focus on a single, highly compute bound algorithm. Moreover, its method of extrapolating a system's power consumption from a single node is inherently error-prone. So far, no benchmark is available that has been developed from ground up with the explicit focus on measuring the energy efficiency of HPC clusters. We therefore in- troduce such a benchmark that includes transparent energy measurements with professional power analyzers. Our efforts are based on well-established standards (C, POSIX-IO and MPI) to ensure a broad applicability. Our well-defined and comprehensible workloads can be used to, e.g. compare the efficiency of HPC systems or to track the effects of power saving mechanisms that can hardly be understood by running regular applications due to their overwhelming complexity.
机译:高性能计算(HPC)社区非常习惯于基准测试的一般概念。特别是,自1990年代初以来,TOP500排名及其基础(Linpack基准)已经改变了这一领域。诸如SPEC MPI2007之类的具有更大工作负载种类的其他基准测试也得到了广泛接受,并经常用于比较和评估系统的计算能力。但是,在PB级且即将成为百亿级级的计算环境中,HPC系统的功耗以及因此的能源效率已变得并将继续变得越来越重要,通常超越了只关注原始计算性能的所有方面。 Green500列表是对HPC系统的能效进行排名的第一个主要尝试。但是,它的主要缺点仍然是着重于单一的,高度计算范围的算法。此外,其从单个节点推断系统功耗的方法本质上容易出错。到目前为止,还没有基准可以明确地专注于测量HPC集群的能源效率。因此,我们引入了这样一个基准,其中包括使用专业功率分析仪进行的透明能量测量。我们的工作基于完善的标准(C,POSIX-IO和MPI),以确保广泛的适用性。我们定义明确且易于理解的工作负载可用于例如比较高性能计算系统的效率,或跟踪省电机制的效果,由于复杂性过高,运行常规应用程序很难理解这些机制。

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