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Runtime Performance Projection Model for Dynamic Power Management

机译:动态电源管理的运行时性能预测模型

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摘要

In this paper, a runtime performance projection model for dynamic power management is proposed. The model is built as a first-order linear equation using a linear regression model. It could be used to estimate performance impact from different p-states (voltage-frequency pairs). Workload behavior is monitored dynamically for a program region of 100M instructions using hardware performance monitoring counters (PMCs), and performance for the next region is estimated using the proposed model. For each 100M-instructions interval, the performance of all processor p-states is estimated and the lowest frequency is selected within specified performance constraints. The selected frequency is set with a low-overhead DVFS-based (dynamic voltage-frequency scaling) p-state changing mechanism for the next program region. We evaluate the performance degradation and the amount of energy saving of our dynamic power management scheme using the proposed projection model for SPEC CPU2000 benchmark on a Pentium M platform. We measure the execution time and energy consumption for 4 specified constraints - 10%, 20%, 40%, 80%, on the maximum allowed performance degradation. The result shows that our dynamic management scheme saves energy consumption by 3%, 18%, 38% and 48% with a performance degradation of 3%, 19%, 45% and 79% under 10%,20%,40% and 80% constraints, respectively.
机译:本文提出了一种用于动态电源管理的运行时性能预测模型。该模型使用线性回归模型构建为一阶线性方程。它可用于估计不同p状态(电压-频率对)对性能的影响。使用硬件性能监视计数器(PMC)动态监视100M指令程序区域的工作负载行为,并使用建议的模型估算下一个区域的性能。对于每个100M指令间隔,将估计所有处理器p状态的性能,并在指定的性能约束内选择最低频率。选定的频率通过基于低开销DVFS的(动态电压-频率缩放)p状态更改机制设置,用于下一个程序区域。我们使用奔腾M平台上针对SPEC CPU2000基准的建议投影模型,评估了动态电源管理方案的性能下降和节能量。我们测量了4个指定约束的执行时间和能耗-10%,20%,40%,80%(最大允许的性能下降)。结果表明,我们的动态管理方案可以节省3%,18%,38%和48%的能耗,而在10%,20%,40%和80%的性能下降了3%,19%,45%和79%分别为%约束。

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