高可配置软件系统性能缺陷的实证研究

Xue Han, Tingting Yu
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引用次数: 54

摘要

现代计算机系统是高度可配置的,使测试和调试过程复杂化。配置空间的绝对规模使得软件质量更难达到。性能是非功能性质量的关键方面之一,性能缺陷会导致显著的性能下降,并导致糟糕的用户体验。然而,性能缺陷很难暴露,主要是因为检测它们需要特定的输入,以及特定的执行环境(例如,配置)。虽然研究人员已经开发了分析、量化、检测和修复性能错误的技术,但我们推测,其中许多技术在高度可配置的系统中可能并不有效。在本文中,我们研究了可配置性为处理性能错误所带来的挑战。我们研究了113个真实世界的性能漏洞,随机从三个高度可配置的开源项目中抽取:Apache, MySQL和Firefox。本研究的结果提供了一组经验教训和指导,以帮助从业者和研究人员更好地处理高可配置软件系统中的性能错误。
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An Empirical Study on Performance Bugs for Highly Configurable Software Systems
Modern computer systems are highly-configurable, complicating the testing and debugging process. The sheer size of the configuration space makes the quality of software even harder to achieve. Performance is one of the key aspects of non-functional qualities, where performance bugs can cause significant performance degradation and lead to poor user experience. However, performance bugs are difficult to expose, primarily because detecting them requires specific inputs, as well as a specific execution environment (e.g., configurations). While researchers have developed techniques to analyze, quantify, detect, and fix performance bugs, we conjecture that many of these techniques may not be effective in highly-configurable systems. In this paper, we study the challenges that configurability creates for handling performance bugs. We study 113 real-world performance bugs, randomly sampled from three highly-configurable open-source projects: Apache, MySQL and Firefox. The findings of this study provide a set of lessons learned and guidance to aid practitioners and researchers to better handle performance bugs in highly-configurable software systems.
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