Quantifying sources of error in McPAT and potential impacts on architectural studies

S. Xi, H. Jacobson, P. Bose, Gu-Yeon Wei, D. Brooks
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引用次数: 106

Abstract

Architectural power modeling tools are widely used by the computer architecture community for rapid evaluations of high-level design choices and design space explorations. Currently, McPAT [31] is the de facto power model, but the literature does not yet contain a careful examination of its modeling accuracy. In addition, the issue of how greatly power modeling error can affect architectural-level studies has not been quantified before. In this work, we present the first rigorous assessment of McPAT's core power and area models with a detailed, validated power modeling toolchain used in current industrial practice. We find that McPAT's predictions can have significant error because some of the models are either incomplete, too high-level, or assume implementations of structures that differ from that of the core at hand. We demonstrate that large errors are possible when using McPAT's dynamic power estimates in the context of voltage noise and thermal hotspots, but for steady-state properties, accurately modeling leakage power is more important. Based on our analysis, we are able to provide guidelines for creating accurate McPAT models, even without access to detailed industrial power modeling tools. We conclude that in spite of its accuracy gaps, McPAT is still a very useful tool for many architectural studies, and its limitations can often be adequately addressed for a given research study of interest.
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量化McPAT中的错误来源以及对架构研究的潜在影响
体系结构功率建模工具被计算机体系结构社区广泛用于高级设计选择和设计空间探索的快速评估。目前,McPAT[31]是事实上的权力模型,但文献尚未包含对其建模准确性的仔细检查。此外,功率建模误差对架构级研究的影响有多大的问题以前没有被量化过。在这项工作中,我们首次对McPAT的核心功率和面积模型进行了严格的评估,并使用了当前工业实践中使用的详细的、经过验证的功率建模工具链。我们发现McPAT的预测可能会有很大的误差,因为一些模型要么不完整,要么太高级,要么假设的实现结构与手头的核心结构不同。我们证明,在电压噪声和热热点的背景下,使用McPAT的动态功率估计可能会产生很大的误差,但对于稳态特性,准确建模泄漏功率更为重要。根据我们的分析,我们能够提供创建准确的McPAT模型的指导方针,即使没有访问详细的工业功率建模工具。我们得出的结论是,尽管它的准确性存在差距,McPAT仍然是许多建筑研究的一个非常有用的工具,并且它的局限性通常可以在给定的研究兴趣中得到充分解决。
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