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Performance-Sensitivity-based Workload Tailoring for Effective Design Exploration

机译:基于性能敏感度的工作量裁量以进行有效的设计探索

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Early-stage design exploration requires the detailed simulation which is running applications on a cycle-level microprocessor simulator. Main objectives of simulation-level design exploration include understanding the architectural behaviors of target applications and finding optimal configurations to cover wide range of applications in terms of performance and power. However, full simulation of an industry standard benchmark suite (e.g., SPEC CPU 2006) takes several weeks to months to complete. This problem has motivated several research groups to come up with methodologies to reduce simulation time while maintaining a certain level of accuracy. Among many techniques for reducing simulation time, a tool called Sim Point is popularly used. However, simulation load even with the reduced workloads is still heavy, considering design complexity of modern microprocessors. Basic motivation of this research is started from how design exploration is actually performed. Designers will observe the performance impact from resource variations or configuration changes. If a simulation point shows low sensitivity to resource variations, designers would eliminate those simulation points from the simulation setup procedure. In this paper, we focus on identifying those simulation points which have high sensitivity or low sensitivity, by which overall simulation methodology can be effectively improved. We also performed the performance-sensitivity-based similarity analysis (grouping) among simulation points on specific performance metric which can be an overall performance metric or a component-level metric.
机译:早期的设计探索需要详细的仿真,该仿真在循环级微处理器仿真器上运行应用程序。仿真级设计探索的主要目标包括了解目标应用程序的体系结构行为,以及寻找最佳配置以涵盖性能和功率方面广泛的应用程序。但是,完整模拟行业标准基准测试套件(例如SPEC CPU 2006)需要花费几周到几个月的时间才能完成。这个问题促使几个研究小组想出了一些方法来减少仿真时间,同时又保持一定的准确性。在减少模拟时间的许多技术中,一种被称为Sim Point的工具被广泛使用。但是,考虑到现代微处理器的设计复杂性,即使在减少工作量的情况下,仿真负荷仍然很重。这项研究的基本动机从实际进行设计探索开始。设计人员将观察资源变化或配置更改对性能的影响。如果仿真点对资源变化的敏感性较低,则设计人员将从仿真设置过程中消除那些仿真点。在本文中,我们着重于确定具有高灵敏度或低灵敏度的仿真点,从而可以有效地改善整体仿真方法。我们还对特定性能度量的模拟点之间进行了基于性能敏感性的相似性分析(分组),该度量可以是整体性能度量或组件级度量。

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