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Safe Memory-Leak Fixing for C Programs

Qing Gao, Yingfei Xiong, Yaqing Mi, Lu Zhang, Weikun Yang, Zhaoping Zhou, Bing Xie, Hong Mei

Abstract

Automatic bug fixing has become a promising direction for reducing manual effort in debugging. However, general approaches to automatic bug fixing may face some fundamental difficulties. In this paper, we argue that automatic fixing of specific types of bugs can be a useful complement. This paper reports our first attempt towards automatically fixing memory leaks in C programs. Our approach generates only safe fixes, which are guaranteed not to interrupt normal execution of the program. To design such an approach, we have to deal with several challenging problems such as inter-procedural leaks, global variables, loops, and leaks from multiple allocations. We propose solutions to all the problems and integrate the solutions into a coherent approach. We implemented our inter-procedural memory leak fixing into a tool named Leak Fix and evaluated Leak Fix on 15 programs with 522k lines of code. Our evaluation shows that Leak Fix is able to successfully fix a substantial number of memory leaks, and Leak Fix is scalable for large applications.

BibTeX
@inproceedings{Gao-al:ICSE15,
  author    = {Qing Gao and
               Yingfei Xiong and
               Yaqing Mi and
               Lu Zhang and
               Weikun Yang and
               Zhaoping Zhou and
               Bing Xie and
               Hong Mei},
  title     = {Safe {Memory-Leak} Fixing for C Programs},
  booktitle = {ICSE (Part I)},
  pages     = {459--470},
  publisher = {{IEEE} Computer Society},
  year      = {2015},
}

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