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Trust-based workflow refactoring for concurrent scheduling in service-oriented environment

机译:基于信任的工作流重构,用于面向服务的环境中的并发调度

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Workflow scheduling has been extensively studied to improve the system performance. However, existing approaches are usually built on predefined workflow graph structure, neglecting the possibility that a workflow graph itself may be changeable when certain conditions are satisfied. Therefore, in this paper, we propose the concept of graph refactoring that transforms certain types of sequential tasks to run in parallel without changing system's functionality. We first provide a classification for task dependencies in workflows and identify that previously sequential task ordering in loose control dependency can be scheduled to run in parallel as long as supporting services are trustworthy. With this concept, we present a refactoring algorithm to traverse, restructure, and parallelize loose control dependencies in the graph when the reputations of related executing services are above certain threshold. In addition, refactoring effects on common sub-graph structures are analyzed and discussed. In practice, our algorithm can be integrated into existing workflow management systems as a preprocessor to generate a new functionally equivalent working graph with more concurrent branches for further scheduling. Experiments and analysis show that graph refactoring can improve the system performance scalably because of concurrent execution of previously sequential tasks.
机译:为了提高系统性能,已经对工作流调度进行了广泛的研究。但是,现有方法通常基于预定义的工作流图结构,而忽略了在满足某些条件时工作流图本身可能是可更改的可能性。因此,在本文中,我们提出了图重构的概念,该重构将某些类型的顺序任务转换为并行运行而无需更改系统功能。我们首先为工作流中的任务依赖关系提供分类,并确定只要支持服务值得信赖,就可以安排先前在松散控制依赖关系中的顺序任务排序并行运行。有了这个概念,我们提出了一种重构算法,以在相关执行服务的信誉超过特定阈值时遍历,重构和并行化图中的松散控制依赖项。此外,分析和讨论了重构对常见子图结构的影响。实际上,我们的算法可以作为预处理器集成到现有的工作流管理系统中,以生成具有更多并发分支的新功能等效工作图,以进行进一步调度。实验和分析表明,由于可以同时执行先前的顺序任务,因此图形重构可以按比例提高系统性能。

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