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Energy-Constrained Prefetching Optimization in Embedded Applications

机译:嵌入式应用中的能量受限预取优化

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摘要

In energy-constrained settings, most low-power compiler optimization techniques take the approach of minimizing the energy consumption while meeting no performance loss. However, it is possible that the available energy budget is not sufficient to meet the optimal performance objective. To limit energy consumption within a given energy budget, energy-constrained optimization approach is more significant. In this paper, we present an energy-constrained prefetching optimization approach through which memory or CPU stalls (caused by too early or too late prefetching) can be reduced so that energy budget is met. Optimal performance objective is achieved under a given energy budget. We evaluate the effectiveness of our energy-constrained prefetching optimization approach through simulations.
机译:在能耗受限的环境中,大多数低功耗编译器优化技术都采用了在不损失性能的同时将能耗降至最低的方法。但是,可用能量预算可能不足以满足最佳性能目标。为了将能量消耗限制在给定的能量预算内,能量受限的优化方法更为重要。在本文中,我们提出了一种能量受限的预取优化方法,通过该方法可以减少内存或CPU停顿(由太早或太晚的预取引起),从而满足能源预算。在给定的能量预算下可以达到最佳性能目标。我们通过仿真评估了能量受限的预取优化方法的有效性。

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