量化多媒体工作负载的协调微架构适应的能源效率

Shrirang M. Yardi, M. Hsiao
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摘要

自适应微架构旨在通过动态分配计算资源以匹配工作负载性能来实现更高的能源效率。何时适应(时间维度)和适应什么(空间维度)的决策由控制算法根据对两个维度中的功率/性能权衡的分析做出。通过将控制算法视为约束优化问题,我们进行了严格的分析,量化了多个建筑资源的细粒度时间和协调空间适应的能效限制。我们的研究表明,与静态架构相比,协调适应可以潜在地将能源效率提高高达60%,比孤立地适应资源的算法提高高达33%。我们还分析了粗粒度和细粒度自适应的协同应用,发现与优化的动态电压/频率缩放相比,改进幅度可达18%。最后,我们分析了几种以前的控制算法,以了解其低效率的潜在原因。
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Quantifying the energy efficiency of coordinated micro-architectural adaptation for multimedia workloads
Adaptive micro-architectures aim to achieve greater energy efficiency by dynamically allocating computing resources to match the workload performance. The decisions of when to adapt (temporal dimension) and what to adapt (spatial dimension) are taken by a control algorithm based on an analysis of the power/performance tradeoffs in both dimensions. We perform a rigorous analysis to quantify the energy efficiency limits of fine-grained temporal and coordinated spatial adaptation of multiple architectural resources by casting the control algorithm as a constrained optimization problem. Our study indicates that coordinated adaptation can potentially improve energy efficiency by up to 60% as compared to static architectures and by up to 33% over algorithms that adapt resources in isolation. We also analyze synergistic application of coarse and fine grained adaptation and find modest improvements of up to 18% over optimized dynamic voltage/frequency scaling. Finally, we analyze several previous control algorithms to understand the underlying reasons for their inefficiency.
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