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Non-local configuration of component interfaces by constraint satisfaction

机译:约束满足的组件接口的非本地配置

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Service-oriented computing is the paradigm that utilises services as fundamental elements for developing applications. Service composition, where data consistency becomes especially important, is still a key challenge for service-oriented computing. We maintain that there is one aspect of Web service communication on the data conformance side that has so far escaped the researchers attention. Aggregation of networked services gives rise to long pipelines, or quasi-pipeline structures, where there is a profitable form of inheritance called flow inheritance. In its presence, interface reconciliation ceases to be a local procedure, and hence it requires distributed constraint satisfaction of a special kind. We propose a constraint language for this, and present a solver which implements it. In addition, our approach provides a binding between the language and C++, whereby the assignment to the variables found by the solver is automatically translated into a transformation of C++ code. This makes the C++ Web service context compliant without any further communication. Besides, it uniquely permits a very high degree of flexibility of a C++ coded Web service without making public any part of its source code.
机译:面向服务的计算是利用服务作为开发应用程序的基本要素的范例。数据一致性变得尤为重要的服务组成,仍然是面向服务的计算的关键挑战。我们认为,数据一致性方面存在一个方面的网络服务通信,这是迄今为止逃脱了研究人员的注意。网络服务的聚合产生了长管道或准管线结构,其中有一种称为流动继承的盈利形式。在它的存在下,接口对帐不再是本地程序,因此它需要分布式约束满足特殊的满足感。我们为此提出了一种约束语言,并呈现了实现它的求解器。此外,我们的方法提供了语言和C ++之间的绑定,由此将由解算器发现的变量分配自动转换为C ++代码的转换。这使得C ++ Web服务上下文兼容,而无需进一步的沟通。此外,它唯一允许C ++编码Web服务的非常高度的灵活性,而无需公开其源代码的任何部分。

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