ISCAS OpenIR  > 2010软件所会议论文
enhance fault localization using a 3d surface representation
Shi Qiong; Zhang Zhenyu; Liu Zhifang; Gao Xiaopeng
2010
Conference Name2nd International Conference on Computer Research and Development, ICCRD 2010
Source2nd International Conference on Computer Research and Development, ICCRD 2010
Pages720-724
Conference DateMay 7, 201
Conference PlaceKuala Lumpur, Malaysia
Indexed Typeei
Publish PlaceUnited States
ISBN9780770000000
Department(1) School of Electronics and Computer Science and Technology, North University of China, Taiyuan, China; (2) State Key Laboratory of Computer Science, Institute of Software, Chinese Academy of Sciences, Beijing, China; (3) School of Computer Science and Technology, Beihang University, Beijing, China
English AbstractDebugging is a difficult and time-consuming task in software engineering. To locate faults in programs, a statistical fault localization technique makes use of program execution statistics and employs a suspiciousness function to assess the relation between program elements and faults. In this paper, we develop a novel localization technique by using a 3D surface to visualize previous suspiciousness functions and using fault patterns to enhance such a 3D surface. By clustering realistic faults, we determine various fault patterns and use 3D points to represent them. We employ spline method to construct a 3D surface from those 3D points and build our suspiciousness function. Empirical evaluation on a common data set, Siemens suite, shows that the result of our technique is more effective than four existing representative such techniques. © 2010 IEEE.
KeywordData Mining Program Debugging Software Engineering Three Dimensional Visualization
SponsorshipInt. Assoc. Comput. Sci. Inf. Technol. (IACSIT)
Language英语
Content Type会议论文
URIhttp://ir.iscas.ac.cn/handle/311060/8750
Collection2010软件所会议论文
Recommended Citation
GB/T 7714
Shi Qiong,Zhang Zhenyu,Liu Zhifang,et al. enhance fault localization using a 3d surface representation[C]. United States,2010:720-724.
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