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Exploiting compiler-generated schedules for energy savings in high-performance processors

机译:利用编译器生成的时间表来节省高性能处理器的能源

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This paper develops a technique that uniquely combines the advantages of static scheduling and dynamic scheduling to reduce the energy consumed in modern superscalar processors with out-of-order issue logic. In this Hybrid-Scheduling paradigm, regions of the application containing large amounts of parallelism visible at compile-time completely bypass the dynamic scheduling logic and execute in a low power static mode. Simulation studies using the Wattch framework on several media-arid scientific benchmarks demonstrate large improvements in overall energy consumption of 43% in kernels and 25% in full applications with only a 2.8% performance degradation on average.
机译:本文开发了一种技术,该技术独特地结合了静态调度和动态调度的优点,以减少无序发布逻辑在现代超标量处理器中消耗的能量。在此混合调度范例中,包含大量并行性的应用程序区域在编译时可见,从而完全绕开了动态调度逻辑并以低功耗静态模式执行。使用Wattch框架进行的多种媒体基准科学基准的仿真研究表明,内核的总体能耗大幅降低了43%,在完整应用程序中总体能耗降低了25%,而性能平均降低了2.8%。

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