Mining domain-specific edit operations from model repositories with applications to semantic lifting of model differences and change profiling

Tinnes, Christof; Kehrer, Timo; Joblin, Mitchell; Hohenstein, Uwe; Biesdorf, Andreas; Apel, Sven (2023). Mining domain-specific edit operations from model repositories with applications to semantic lifting of model differences and change profiling. Automated software engineering, 30(2) Springer 10.1007/S10515-023-00381-1

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Model transformations are central to model-driven software development. Applications of model transformations include creating models, handling model co-evolution, model merging, and understanding model evolution. In the past, various (semi-)automatic approaches to derive model transformations from meta-models or from examples have been proposed. These approaches require time-consuming handcrafting or the recording of concrete examples, or they are unable to derive complex transformations. We propose a novel unsupervised approach, called Ockham, which is able to learn edit operations from model histories in model repositories. Ockham is based on the idea that meaningful domain-specific edit operations are the ones that compress the model differences. It employs frequent subgraph mining to discover frequent structures in model difference graphs. We evaluate our approach in two controlled experiments and one real-world case study of a large-scale industrial model-driven architecture project in the railway domain. We found that our approach is able to discover frequent edit operations that have actually been applied before. Furthermore, Ockham is able to extract edit operations that are meaningful—in the sense of explaining model differences through the edit operations they comprise—to practitioners in an industrial setting. We also discuss use cases (i.e., semantic lifting of model differences and change profiles) for the discovered edit operations in this industrial setting. We find that the edit operations discovered by Ockham can be used to better understand and simulate the evolution of models.

Item Type:

Journal Article (Original Article)

Division/Institute:

08 Faculty of Science > Institute of Computer Science (INF)
08 Faculty of Science > Institute of Computer Science (INF) > Software Engineering Group (SEG)

UniBE Contributor:

Kehrer, Timo Benjamin

Subjects:

000 Computer science, knowledge & systems
500 Science > 510 Mathematics
000 Computer science, knowledge & systems > 050 Magazines, journals & serials

ISSN:

0928-8910

Publisher:

Springer

Language:

English

Submitter:

Timo Benjamin Kehrer

Date Deposited:

03 Apr 2024 12:08

Last Modified:

03 Apr 2024 12:17

Publisher DOI:

10.1007/S10515-023-00381-1

BORIS DOI:

10.48350/195110

URI:

https://boris.unibe.ch/id/eprint/195110

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