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Graph based characterization of distributed applications

机译:基于图的分布式应用程序表征

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A critical task in the development and execution of distributed applications is to identify the potential degree of parallelism contained in the applications. This information is necessary in the design of applications in order to pursue only a promising algorithmic idea for implementation, but also in the execution of existing applications for resource allocation and scheduling decisions. In this paper, we present analytical techniques to derive the potential degree of parallelism of distributed applications described by means of timed structural parallelism graphs (TSPGs). A TSPG allows a specification of a distributed application in terms of its components, the activation and dependence relations among the components, and histogram/interval based estimates on the execution times of components. Based on an analysis of paths through the TSPG (corresponding to paths in the execution) and by applying interval arthimeics, we are able to derive from the TSPG model a set of potential parallelism profiles. From these profiles further performance indices as the average degree of parallelism as well as hypothetical speedup can be derived. In this paper we focus on an evaluation of the analysis technique with respect to its computational complexity and validate the proposed approach by a comparison with results obtained from simulation.
机译:开发和执行分布式应用程序中的一项关键任务是确定应用程序中包含的潜在并行度。在应用程序的设计中,此信息是必需的,以便仅追求有前途的算法实现思想,而且在执行现有应用程序以进行资源分配和调度决策时也必须这样做。在本文中,我们将介绍分析技术,以通过定时结构并行图(TSPG)来描述分布式应用程序的潜在并行度。 TSPG允许根据组件的组件,组件之间的激活和依赖关系以及基于组件执行时间的基于直方图/间隔的估计来指定分布式应用程序。基于对通过TSPG的路径的分析(与执行中的路径相对应)并通过应用间隔置换术,我们能够从TSPG模型中导出一组潜在的并行度配置文件。从这些配置文件中,可以得出其他性能指标,例如平均并行度以及假设的加速比。在本文中,我们专注于对分析技术的计算复杂性进行评估,并通过与仿真结果进行比较来验证所提出的方法。

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