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Modeling power and energy consumption of dense matrix factorizations on multicore processors

机译:在多核处理器上模拟密集矩阵因子分解的功率和能量消耗

摘要

In this paper, we propose a model for the energy consumption of the concurrent execution of three key dense matrix factorizations, with task parallelism leveraged via the Symmetric Multi-Processing Superscalar (SMPSs) runtime, on a multicore processor. Our model decomposes the power dissipation into the system, static and dynamic components, with the former two being estimated from basic, off-line experiments. The dynamic power, on the other hand, requires significantly more care, and we introduce a contention-aware model that accommodates for the variability of power consumption due to memory contention. Experimental results on an Intel Xeon E5504 processor with four cores, using an internal powermeter that samples the power drawn by the mainboard with a frequency of 1 KHz, show the reliability of the energy model for the Cholesky, LU, and QR factorizations on this platform. Copyright © 2013 John Wiley & Sons, Ltd.
机译:在本文中,我们为多核处理器上的对称多处理超标量(SMPS)运行时利用了任务并行性,提出了同时执行三个关键密集矩阵分解的能耗模型。我们的模型将功率消耗分解为系统中的静态和动态组件,前两个是通过基本的离线实验估算得出的。另一方面,动态功耗需要更多的关注,并且我们引入了一种竞争感知模型,该模型可以适应由于存储器竞争而导致的功耗变化。在具有四个内核的英特尔至强E5504处理器上进行的实验结果,使用内部功率计对频率为1 KHz的主板抽取的功率进行采样,显示了该平台上Cholesky,LU和QR因式分解的能量模型的可靠性。版权所有©2013 John Wiley&Sons,Ltd.

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