Cray XT4:千万亿次科学模拟的早期评估

S. Alam, J. Kuehn, R. Barrett, J. Larkin, M. Fahey, R. Sankaran, P. Worley
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引用次数: 67

摘要

下一代高端计算技术的科学模拟能力将取决于在科学模拟空间的广度上,在内存、处理器、I/O、本地和全局网络性能之间取得平衡。Cray XT4将AMD双核Opteron处理器技术与第二代Cray定制通信加速器结合在系统设计中,其平衡据称是由科学模拟的需求驱动的。本文使用微基准测试对Cray XT4进行了评估,以开发对单个系统组件的可控理解,为分析和理解几个千兆级应用程序的性能提供了上下文。将从几个战略应用程序领域收集的结果与对上一代Cray XT3和其他高端计算系统的观察结果进行比较,展示在各种应用程序基准测试问题上的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cray XT4: an early evaluation for petascale scientific simulation
The scientific simulation capabilities of next generation high-end computing technology will depend on striking a balance among memory, processor, I/O, and local and global network performance across the breadth of the scientific simulation space. The Cray XT4 combines commodity AMD dual core Opteron processor technology with the second generation of Cray's custom communication accelerator in a system design whose balance is claimed to be driven by the demands of scientific simulation. This paper presents an evaluation of the Cray XT4 using micro-benchmarks to develop a controlled understanding of individual system components, providing the context for analyzing and comprehending the performance of several petascale-ready applications. Results gathered from several strategic application domains are compared with observations on the previous generation Cray XT3 and other high-end computing systems, demonstrating performance improvements across a wide variety of application benchmark problems.
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