Workflow and process synchronization with interaction expressions and graphs

C. Heinlein
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引用次数: 59

Abstract

Current workflow management technology does not provide adequate means for inter-workflow coordination as concurrently executing workflows are considered completely independent. While this simplified view might suffice for one application domain or the other, there are many real-world application scenarios where workflows, though independently modeled in order to remain comprehensible and manageable, are semantically interrelated. As pragmatical approaches, like merging interdependent workflows or inter-workflow message passing, do not satisfactorily solve the inter-workflow coordination problem, interaction expressions and graphs are proposed as a simple yet powerful formalism for the specification and implementation of synchronization conditions in general and inter-workflow dependencies in particular. In addition to a graph based semi-formal interpretation of the formalism, a precise formal semantics, an equivalent operational semantics, an efficient implementation of the latter, and detailed complexity analyses have been developed, allowing the formalism to be actually applied to solve real-world problems like inter-workflow coordination.
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工作流和过程同步与交互表达式和图形
由于并行执行的工作流被认为是完全独立的,当前的工作流管理技术并没有为工作流间的协调提供足够的手段。虽然这种简化的视图可能足以满足一个或另一个应用程序领域的需要,但是在许多实际的应用程序场景中,工作流虽然独立建模以保持可理解和可管理,但在语义上是相互关联的。由于合并相互依赖的工作流或工作流间的消息传递等实用方法不能很好地解决工作流间的协调问题,因此提出了交互表达式和图,作为一种简单而强大的形式,用于规范和实现一般的同步条件,特别是工作流间的依赖关系。除了基于图的形式主义的半形式解释之外,还开发了精确的形式语义、等效的操作语义、后者的有效实现以及详细的复杂性分析,从而允许形式主义实际应用于解决诸如工作流间协调之类的现实世界问题。
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