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Exascale Computing Trends: Adjusting to the 'New Normal'' for Computer Architecture

机译:Exascale计算趋势:适应计算机体系结构的“新常态”

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We now have 20 years of data under our belt about the performance of supercomputers against at least a single floating-point benchmark from dense linear algebra. Until about 2004, a single model of parallel programming, bulk synchronous using the MPI model, was sufficient to permit translation into reasonable parallel programs for more complex applications. Starting in 2004, however, a confluence of events changed forever the architectural landscape that underpinned MPI. The first half of this article goes into the underlying reasons for these changes, and what they mean for system architectures. The second half then addresses the view going forward in terms of our standard scaling models and their profound implications for future programming and algorithm design.
机译:现在,我们已有20年的数据,涉及至少在密集线性代数中至少有一个浮点基准的情况下,超级计算机的性能。直到2004年左右,使用MPI模型进行批量同步的单个并行编程模型就足以允许转换为更复杂的应用程序的合理并行程序。但是,从2004年开始,事件的融合永远改变了MPI的基础架构。本文的前半部分探讨了这些更改的根本原因,以及它们对系统体系结构的意义。然后,下半部分将就我们的标准缩放模型及其对未来编程和算法设计的深远影响,阐述未来的观点。

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