A hub-centric sample of the Maven Central dependency graph shows heavy-tailed degree distributions, a giant weakly connected component, and central roles for JUnit, Hamcrest, Spring, and logging libraries.
Refactoring-Aware Patch Integration Across Structurally Divergent Java Forks
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abstract
While most forks on platforms like GitHub are short-lived and used for social collaboration, a smaller but impactful subset evolve into long-lived forks, referred to here as variants, that maintain independent development trajectories. Integrating bug-fix patches across such divergent variants poses challenges due to structural drift, including refactorings that rename, relocate, or reorganize code elements and obscure semantic correspondence. This paper presents an empirical study of patch integration failures in 14 divergent pair of variants and introduces RePatch, a refactoring-aware integration system for Java repositories. RePatch extends the RefMerge framework, originally designed for symmetric merges, by supporting asymmetric patch transfer. RePatch inverts refactorings in both the source and target to realign the patch context, applies the patch, and replays the transformations to preserve the intent of the variant. In our evaluation of 478 bug-fix pull requests, Git cherry-pick fails in 64.4% of cases due to structural misalignments, while RePatch successfully integrates 52.8% of the previously failing patches. These results highlight the limitations of syntax-based tools and the need for semantic reasoning in variant-aware patch propagation.
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Structural and Connectivity Patterns in the Maven Central Software Dependency Network
A hub-centric sample of the Maven Central dependency graph shows heavy-tailed degree distributions, a giant weakly connected component, and central roles for JUnit, Hamcrest, Spring, and logging libraries.