Context-sensitive detection of information exposure bugs with symbolic execution

Paul Muntean, C. Eckert, A. Ibing
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引用次数: 9

Abstract

Static analysis tools used for detecting information exposure bugs can help software engineers detecting bugs without introducing run-time overhead. Such tools can make the detection of information-flow bugs faster and cheaper without having to provide user input in order to trigger the bug detection. In this paper we present a bug-detection tool for detecting information exposure bugs in C/C++ programs. Our tool is context-sensitive and uses static code analysis for bug detection. We developed our bug finding tool as a Eclipse plug-in in order to easily integrate it in software development work flows. The bug reports provide user friendly visualizations that can be easily traced back to the location where the bug was detected. We discuss one static analysis approach for detecting information exposure bugs and relate briefly the usability of our bug testing tool to empirical research. We conducted an empirical evaluation based on 90 test programs which were selected from the Juliet test suite for C/C++ code. We reached a true-positive coverage of 94.4% in 121 seconds for 90 test programs having a total of 12589 source code lines.
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通过符号执行对信息暴露错误进行上下文敏感检测
用于检测信息暴露错误的静态分析工具可以帮助软件工程师在不引入运行时开销的情况下检测错误。这些工具可以更快、更便宜地检测信息流错误,而无需提供用户输入来触发错误检测。本文提出了一种用于检测C/ c++程序中信息暴露错误的bug检测工具。我们的工具是上下文敏感的,并使用静态代码分析来检测bug。我们将bug查找工具开发为Eclipse插件,以便轻松地将其集成到软件开发工作流中。bug报告提供了用户友好的可视化,可以很容易地追溯到检测到bug的位置。我们讨论了一种用于检测信息暴露错误的静态分析方法,并简要地将我们的错误测试工具的可用性与实证研究联系起来。我们基于从C/ c++代码朱丽叶测试套件中选择的90个测试程序进行了实证评估。对于总共有12589行源代码的90个测试程序,我们在121秒内达到了94.4%的真正覆盖率。
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