μ Droid:一个能量感知突变测试框架的Android

Reyhaneh Jabbarvand, S. Malek
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引用次数: 61

摘要

在电池有限的设备上部署的移动应用程序越来越受欢迎,这突显了有效评估其能量特性的必要性。然而,目前缺乏评估应用程序能量特性的测试工具。因此,对于能量测试,开发人员依赖于用于评估应用程序功能正确性的测试。这样的测试可能不足以揭示应用程序中的能量缺陷和低效率。本文提出了一个能量感知的突变测试框架,称为μDROID,开发人员可以使用它来评估他们的测试套件是否足够,以揭示与能量相关的缺陷。μDROID实现了50个能量感知突变操作符,并依赖于一种新颖的自动oracle来确定是否可以通过测试杀死突变体。我们对真实Android应用程序的评估表明,所提出的突变算子能够评估测试在揭示能量缺陷方面的效用。此外,我们的自动化oracle能够以94%的总体准确率检测测试是否杀死能量突变体,从而使μDROID的自动应用成为可能。
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µDroid: an energy-aware mutation testing framework for Android
The rising popularity of mobile apps deployed on battery-constrained devices underlines the need for effectively evaluating their energy properties. However, currently there is a lack of testing tools for evaluating the energy properties of apps. As a result, for energy testing, developers are relying on tests intended for evaluating the functional correctness of apps. Such tests may not be adequate for revealing energy defects and inefficiencies in apps. This paper presents an energy-aware mutation testing framework, called μDROID, that can be used by developers to assess the adequacy of their test suite for revealing energy-related defects. μDROID implements fifty energy-aware mutation operators and relies on a novel, automatic oracle to determine if a mutant can be killed by a test. Our evaluation on real-world Android apps shows the ability of proposed mutation operators for evaluating the utility of tests in revealing energy defects. Moreover, our automated oracle can detect whether tests kill the energy mutants with an overall accuracy of 94%, thereby making it possible to apply μDROID automatically.
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