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DVFS-control techniques for dense linear algebra operations on multi-core processors

机译:用于多核处理器上的密集线性代数运算的DVFS控制技术

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This paper analyzes the impact on power consumption of two DVFS-control strategies when applied to the execution of dense linear algebra operations on multi-core processors. The strategies considered here, prototyped as the Slack Reduction Algorithm (SRA) and the Race-to-Idle Algorithm (RIA), adjust the operation frequency of the cores during execution of a collection of tasks (in which many dense linear algebra algorithms can be decomposed) with a very different approach to save energy. A power-aware simulator, in charge of scheduling the execution of tasks to processor cores, is employed to evaluate the performance benefits of these power-control policies for two reference algorithms for the LU factorization, a key operation for the solution of linear systems of equations.
机译:本文分析了两种DVFS控制策略在多核处理器上执行密集线性代数运算时对功耗的影响。本文考虑的策略原型为松弛减少算法(SRA)和竞速到空闲算法(RIA),可在执行任务集合期间调整核的运行频率(其中许多密集的线性代数算法可以分解)以一种非常不同的方法来节省能源。一个功率感知模拟器负责调度任务到处理器内核的执行,用于评估LU分解的两个参考算法的这些功率控制策略的性能优势,这是解决线性系统求解的关键操作。方程。

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