近似能源自动调谐软件的质量合同

Sebastian Götz, C. Wilke, Sebastian Richly, U. Assmann
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引用次数: 16

摘要

未来软件系统的一个新兴趋势是自我优化,特别是w.r.t.能源效率。软件和硬件组件在运行时的模型,表示当前和可选的系统配置,被用来提高服务效用和降低能源消耗。在最近的工作中,我们展示了如何将质量契约(表示软件和硬件组件之间的依赖关系)用于能源自动调整。值得注意的是,单个组件的声明条款和需求依赖于软件容器(即部署组件的服务器),因此不能在设计时完全声明。在本文中,我们提出了一个半自动化的契约创建过程,该过程结合了手动创建的契约模板,以及根据组件的运行时行为及其服务的输入参数对非功能属性进行基准测试和数学近似。我们确定了单个过程活动,并展示了如何应用过程来近似提供简单排序功能的软件组件的非功能性行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approximating quality contracts for energy auto-tuning software
An emerging trend for future software systems is self-optimization, especially w.r.t. energy efficiency. Models of soft- and hardware components at runtime, expressing current and alternative system configurations, are exploited to improve service utility as well as to decrease energy consumption. In recent work we showed how quality contracts - expressing dependencies between software and hardware components - can be used for energy auto-tuning. Notably, the declared provisions and requirements of individual components depend on software containers (i.e., the servers, components are deployed on) and thus, cannot be declared completely at design time. In this paper we present a semi-automated contract creation process that combines manual created contract templates with benchmarking and mathematical approximations for nonfunctional properties depending on the components' runtime behavior as well as their service's input parameters. We identify individual process activities and show how the process can be applied to approximate the nonfunctional behavior of software components providing simple sorting functionality.
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