A lifetime-aware runtime mapping approach for many-core systems in the dark silicon era

M. Haghbayan, A. Miele, A. Rahmani, P. Liljeberg, H. Tenhunen
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引用次数: 35

Abstract

In this paper, we propose a novel lifetime reliability-aware resource management approach for many-core architectures. The approach is based on hierarchical architecture, composed of a long-term runtime reliability analysis unit and a short-term runtime mapping unit. The former periodically analyses the aging status of the various processing units with respect to a target value specified by the designer, and performs recovery actions on highly stressed cores. The calculated reliability metrics are utilized in runtime mapping of the newly arrived applications to maximize the performance of the system while fulfilling reliability requirements and the available power budget. Our extensive experimental results reveal that the proposed reliability-aware approach can efficiently select the processing cores to be used over time in order to enhance the reliability at the end of the operational life (up to 62%) while offering the comparable performance level of the state-of-the-art runtime mapping approach.
暗硅时代多核系统的生命周期感知运行时映射方法
在本文中,我们提出了一种新的多核体系结构的生命周期可靠性感知资源管理方法。该方法基于分层体系结构,由长期运行时可靠性分析单元和短期运行时映射单元组成。前者根据设计人员指定的目标值定期分析各种处理单元的老化状态,并对高应力核心执行恢复操作。计算得到的可靠性指标用于新到达的应用程序的运行时映射,以在满足可靠性要求和可用功率预算的同时最大限度地提高系统的性能。我们广泛的实验结果表明,所提出的可靠性感知方法可以有效地选择随时间使用的处理核心,以提高运行寿命结束时的可靠性(高达62%),同时提供与最先进的运行时映射方法相当的性能水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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