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MeSAP: A fast analytic power model for DRAM memories

机译:MeSAP:DRAM存储器的快速分析能力模型

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The design of an energy-efficient memory subsystem is one of the key issues that system architects face today. To achieve this goal, architects usually rely on system simulators and trace-based DRAM power models. However, their long execution time makes the approach infeasible for the design-space exploration of next-generation exascale computing systems. Analytic models, in contrast, are orders of magnitude faster. In this paper, we propose a new analytic memory-scheduler-agnostic power model for DRAM, henceforth referred to as MeSAP. Similarly to state-of-the-art trace-based approaches, our analytic model achieves an average error of 20%, while being an order of magnitude faster. Furthermore, we integrate MeSAP into an analytic performance model of general-purpose processors and show its applicability to the design of a computing system targeting scientific image processing applications.
机译:节能内存子系统的设计是当今系统架构师面临的关键问题之一。为了实现此目标,架构师通常依赖于系统仿真器和基于跟踪的DRAM功率模型。但是,它们执行时间长,因此对于下一代百亿亿次计算系统的设计空间探索是不可行的。相比之下,分析模型要快几个数量级。在本文中,我们提出了一种用于DRAM的解析存储-调度程序-不可知功率模型,此后称为MeSAP。与最新的基于跟踪的方法类似,我们的分析模型实现了20%的平均误差,同时速度提高了一个数量级。此外,我们将MeSAP集成到通用处理器的分析性能模型中,并展示了其在针对科学图像处理应用程序的计算系统设计中的适用性。

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