arrow
Return

Cohesion-Driven Decomposition of Service Interfaces without Access to Source Code

delete2015-07-01
delete30
delete
OA
AI
D
Dionysis Athanasopoulos *
A
Apostolos Zarras
G
George Miskos
V
Valerie Issarny
P
Panos Vassiliadis
DOI:10.1109/TSC.2014.2310195delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Software cohesion concerns the degree to which the elements of a module belong together. Cohesive software is easier to understand, test and maintain. In the context of service-oriented development, cohesion refers to the degree to which the operations of a service interface belong together. In the state of the art, software cohesion is improved based on refactoring methods that rely on information, extracted from the software implementation. This is a main limitation towards using these methods in the case of web services: web services do not expose their implementation; instead all that they export is the web service interface specification. To deal with this problem, we propose an approach that enables the cohesion-driven decomposition of service interfaces, without information on how the services are implemented. Our approach progressively decomposes a given service interface into more cohesive interfaces; the backbone of the approach is a suite of cohesion metrics that rely on information, extracted solely from the specification of the service interface. We validate the approach in 22 real-world services, provided by Amazon and Yahoo. We assess the effectiveness of the proposed approach, concerning the cohesion improvement, and the number of interfaces that result from the decomposition of the examined interfaces. Moreover, we show the usefulness of the approach in a user study, where developers assessed the quality of the produced interfaces.
Keywords:
Cohesion
decomposition
service interface
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

IEEE Transactions on Services Computing cover
IEEE Transactions on Services Computing
IF:
5.8
Papers:
2.1K
Citations:
6.5K

Organization

U
University of Ioannina
Scholars:
7.9K
Papers: 7.1K
Citations: 8.0K