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Toward Model Checking-Driven Fair Comparison of Dynamic Thermal Management Techniques Under Multithreaded Workloads

机译:在多线程工作负载下模型检查驱动动态热管理技术的公平比较

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Dynamic thermal management (DTM) techniques are being widely used for attenuation of thermal hot spots in many-core systems. Conventionally, DTM techniques are analyzed using simulation and emulation methods, which are in-exhaustive due to their inherent limitations and cannot provide for a comprehensive comparison between DTM techniques owing to the wide range of corresponding design parameters. In order to handle the above discrepancies, we propose to use model checking, a state-space-based formal method, to model, evaluate, and compare DTM techniques across various functional and performance parameters. The suggested framework includes a modeling flow and a set of generic modules that realistically model many-core and DTM parameters like temperature, power, application, intercore communication and task migration, etc. For analysis purpose, the framework provides a common ground for comparing DTM techniques by formalizing DTM principles and performance parameters as a set of logical properties. These properties are verified for different task load configurations, e.g., multithreaded, malleable, and the applications which do not support migration. We analyze state-of-the-art central (c-) and distributed (d-) DTM techniques to demonstrate the generality and efficacy of our approach. Our formal analysis shows that the state-of-the-art cDTM technique performs better than dDTM in terms of achieving thermal stability, task migration, and communication overhead. We believe that conventional analysis methods do not facilitate such an exhaustive comparison among the DTM techniques.
机译:动态热管理(DTM)技术被广泛用于许多核心系统中的热斑点的衰减。传统上,使用模拟和仿真方法分析DTM技术,这些方法由于其固有的局限性而异,不能提供由于各种相应的设计参数而在DTM技术之间进行全面比较。为了处理上述差异,我们建议使用模型检查,以跨各种功能和性能参数进行模型,评估和比较DTM技术的模型检查。建议的框架包括建模流程和一组通用模块,即现实地模拟许多核和DTM参数,如温度,电源,应用,互通通信和任务迁移等。用于分析目的,该框架提供了用于比较DTM的共同点通过将DTM原理和性能参数正式化为一组逻辑属性来技术。这些属性验证了不同的任务负载配置,例如多线程,可延展性和不支持迁移的应用程序。我们分析了最先进的中央(C-)和分布式(D-)DTM技术,以证明我们方法的一般性和功效。我们的正式分析表明,在实现热稳定性,任务迁移和通信开销方面,最先进的CDTM技术在DDTM中表现优于DDTM。我们认为传统的分析方法不促进DTM技术之间的这种详尽的比较。

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