André Hora

SE
h-index20
8papers
497citations
Novelty23%
AI Score23

8 Papers

2.3SEJan 12, 2022Code
Towards a Catalog of Composite Refactorings

Aline Brito, Andre Hora, Marco Tulio Valente

Catalogs of refactoring have key importance in software maintenance and evolution, since developers rely on such documents to understand and perform refactoring operations. Furthermore, these catalogs constitute a reference guide for communication between practitioners since they standardize a common refactoring vocabulary. Fowler's book describes the most popular catalog of refactorings, which documents single and well-known refactoring operations. However, sometimes refactorings are composite transformations, i.e., a sequence of refactorings is performed over a given program element. For example, a sequence of Extract Method operations (a single refactoring) can be performed over the same method, in one or in multiple commits, to simplify its implementation, therefore, leading to a Method Decomposition operation (a composite refactoring). In this paper, we propose and document a catalog with eight composite refactorings. We also implement a set of scripts to mine composite refactorings by preprocessing the results of refactoring detection tools. Using such scripts, we search for composites in a representative refactoring oracle with hundreds of confirmed single refactoring operations. Next, to complement this first study, we also search for composites in the full history of ten well-known open-source projects. We characterize the detected composite refactorings, under dimensions such as size and location. We conclude by addressing the applications and implications of the proposed catalog.

10.4SEMar 10, 2020
Refactoring Graphs: Assessing Refactoring over Time

Aline Brito, Andre Hora, Marco Tulio Valente

Refactoring is an essential activity during software evolution. Frequently, practitioners rely on such transformations to improve source code maintainability and quality. As a consequence, this process may produce new source code entities or change the structure of existing ones. Sometimes, the transformations are atomic, i.e., performed in a single commit. In other cases, they generate sequences of modifications performed over time. To study and reason about refactorings over time, in this paper, we propose a novel concept called refactoring graphs and provide an algorithm to build such graphs. Then, we investigate the history of 10 popular open-source Java-based projects. After eliminating trivial graphs, we characterize a large sample of 1,150 refactoring graphs, providing quantitative data on their size, commits, age, refactoring composition, and developers. We conclude by discussing applications and implications of refactoring graphs, for example, to improve code comprehension, detect refactoring patterns, and support software evolution studies.

12.9SEMar 15, 2018
Why We Engage in FLOSS: Answers from Core Developers

Jailton Coelho, Marco Tulio Valente, Luciana L. Silva et al.

The maintenance and evolution of Free/Libre Open Source Software (FLOSS) projects demand the constant attraction of core developers. In this paper, we report the results of a survey with 52 developers, who recently became core contributors of popular GitHub projects. We reveal their motivations to assume a key role in FLOSS projects (e.g., improving the projects because they are also using it), the project characteristics that most helped in their engagement process (e.g., a friendly community), and the barriers faced by the surveyed core developers (e.g., lack of time of the project leaders). We also compare our results with related studies about others kinds of open source contributors (casual, one-time, and newcomers).

24.0SEJul 14, 2016Code
Predicting the Popularity of GitHub Repositories

Hudson Borges, Andre Hora, Marco Tulio Valente

GitHub is the largest source code repository in the world. It provides a git-based source code management platform and also many features inspired by social networks. For example, GitHub users can show appreciation to projects by adding stars to them. Therefore, the number of stars of a repository is a direct measure of its popularity. In this paper, we use multiple linear regressions to predict the number of stars of GitHub repositories. These predictions are useful both to repository owners and clients, who usually want to know how their projects are performing in a competitive open source development market. In a large-scale analysis, we show that the proposed models start to provide accurate predictions after being trained with the number of stars received in the last six months. Furthermore, specific models---generated using data from repositories that share the same growth trends---are recommended for repositories with slow growth and/or for repositories with less stars. Finally, we evaluate the ability to predict not the number of stars of a repository but its rank among the GitHub repositories. We found a very strong correlation between predicted and real rankings (Spearman's rho greater than 0.95).

34.3SEJun 15, 2016Code
Understanding the Factors that Impact the Popularity of GitHub Repositories

Hudson Borges, Andre Hora, Marco Tulio Valente

Software popularity is a valuable information to modern open source developers, who constantly want to know if their systems are attracting new users, if new releases are gaining acceptance, or if they are meeting user's expectations. In this paper, we describe a study on the popularity of software systems hosted at GitHub, which is the world's largest collection of open source software. GitHub provides an explicit way for users to manifest their satisfaction with a hosted repository: the stargazers button. In our study, we reveal the main factors that impact the number of stars of GitHub projects, including programming language and application domain. We also study the impact of new features on project popularity. Finally, we identify four main patterns of popularity growth, which are derived after clustering the time series representing the number of stars of 2,279 popular GitHub repositories. We hope our results provide valuable insights to developers and maintainers, which can help them on building and evolving systems in a competitive software market.

13.7SEJul 2, 2015
On the Popularity of GitHub Applications: A Preliminary Note

Hudson Borges, Marco Tulio Valente, Andre Hora et al.

GitHub is the world's largest collection of open source software. Therefore, it is important both to software developers and users to compare and track the popularity of GitHub repositories. In this paper, we propose a framework to assess the popularity of GitHub software, using their number of stars. We also propose a set of popularity growth patterns, which describe the evolution of the number of stars of a system over time. We show that stars tend to correlate with other measures, like forks, and with the effective usage of GitHub software by third-party programs. Throughout the paper we illustrate the application of our framework using real data extracted from GitHub.

2.8SEJul 12, 2019
Framework Code Samples: How Are They Maintained and Used by Developers?

Gabriel Menezes, Bruno Cafeo, Andre Hora

Background: Modern software systems are commonly built on the top of frameworks. To accelerate the learning process of features provided by frameworks, code samples are made available to assist developers. However, we know little about how code samples are actually developed. Aims: In this paper, we aim to fill this gap by assessing the characteristics of framework code samples. We provide insights on how code samples are maintained and used by developers. Method: We analyze 233 code samples of Android and SpringBoot, and assess aspects related to their source code, evolution, popularity, and client usage. Results: We find that most code samples are small and simple, provide a working environment to the clients, and rely on automated build tools. They change frequently over time, for example, to adapt to new framework versions. We also detect that clients commonly fork the code samples, however, they rarely modify them. Conclusions: We provide a set of lessons learned and implications to creators and clients of code samples to improve maintenance and usage activities.

2.9SEMay 15, 2017
CodeCity for (and by) JavaScript

Marcos Viana, Andre Hora, Marco Tulio Valente

JavaScript is one of the most popular programming languages on the web. Despite the language popularity and the increasing size of JavaScript systems, there is a limited number of visualization tools that can be used by developers to comprehend, maintain, and evolve JavaScript software. In this paper, we introduce JSCity, an implementation in JavaScript of the well-known Code City software visualization metaphor. JSCity relies on JavaScript features and libraries to show "software cities" in standard web browsers, without requiring complex installation procedures. We also report our experience on producing visualizations for 40 popular JavaScript systems using JScity.