- The conference & journals that we include
- ICSE -International Conference on Software Engineering
- FSE -Foundations of Software Engineering
- ASE -Automated Software Engineering
- PLDI -Programming Language Design and Implementation
- POPL -Principles of Programming Languages
- ISSTA -International Symposium on Software Testing and Analysis
- TOSEM -ACM Transactions on Software Engineering and Methodology
- TSE -IEEE Transactions on Software Engineering
- CCS -Conference on Computer and Communications Security
- S&P -IEEE Security & Privacy
- 计算机学报
- 软件学报
security
detect
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classification
fix
predict
recommendation
automatic
- 😊 // GOOD article
- yet to explore~~
- N. Jiang, T. Lutellier and L. Tan, CURE: Code-Aware Neural Machine Translation for Automatic Program Repair
- Y. Jiang, H. Liu, N. Niu, L. Zhang and Y. Hu, Extracting Concise Bug-Fixing Patches from Human-Written Patches in Version Control Systems
- Thibaud Lutellier, Hung Viet Pham, Lawrence Pang, Yitong Li, Moshi Wei, and Lin Tan. 2020. CoCoNuT: Combining Context-Aware Neural Translation Models using Ensemble for Program Repair.
- H. Wang, Y. Li, S. W. Lin, L. Ma, and Y. Liu, “VULTRON: Catching vulnerable smart contracts once and for all”
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- S. Saha, R. K. Saha, and M. R. Prasad, “Harnessing Evolution for Multi-Hunk Program Repair”
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fix
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- D. X. B. Le, L. Bao, D. Lo, X. Xia, S. Li, and C. Pasareanu “On Reliability of Patch Correctness Assessment”
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fix
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- M. Tufano, J. Pantiuchina, C. Wson, G. Bavota, and D. Poshyvanyk “On Learning Meaningful Code Changes Via Neural Machine Translation”
- A. Koyuncu et al., “IFixR: Bug report driven program repair,” ESEC/FSE 2019 - Proc. 2019 27th ACM Jt. Meet. Eur. Softw. Eng. Conf. Symp. Found. Softw. Eng., no. 1, pp. 314–325, 2019.
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fix
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- M. Bicocca and D. Ginelli, “Failure-Driven Program Repair,” ESEC/FSE 2019 - Proc. 2019 27th ACM Jt. Meet. Eur. Softw. Eng. Conf. Symp. Found. Softw. Eng., pp. 1156–1159, 2019.
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fix
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- T. Sonnekalb, “Machine-learning supported vulnerability detection in source code,” ESEC/FSE 2019 - Proc. 2019 27th ACM Jt. Meet. Eur. Softw. Eng. Conf. Symp. Found. Softw. Eng., pp. 1180–1183, 2019.
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detect
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- A. Shi, W. Lam, R. Oei, T. Xie, and D. Marinov, “IFixFlakies: A framework for automatically fixing order-dependent flaky tests,” ESEC/FSE 2019 - Proc. 2019 27th ACM Jt. Meet. Eur. Softw. Eng. Conf. Symp. Found. Softw. Eng., pp. 545–555, 2019.
- Cashin, C. Martinez, W. Weimer, and S. Forrest, “Understanding automatically-generated patches through symbolic invariant differences” Proc. - 2019 34th IEEE/ACM Int. Conf. Autom. Softw. Eng. ASE 2019, pp. 411–414, 2019.
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fix
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- V. Sharma, “Automatically repairing binary programs using adapter synthesis,” Proc. - 2019 34th IEEE/ACM Int. Conf. Autom. Softw. Eng. ASE 2019, pp. 1238–1241, 2019.
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fix
binary programs
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- M. Soto, “Improving patch quality by enhancing key components of automatic program repair,” Proc. - 2019 34th IEEE/ACM Int. Conf. Autom. Softw. Eng. ASE 2019, pp. 1230–1233, 2019.
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fix
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- A. Ghanbari, S. Benton, and L. Zhang, “Practical program repair via bytecode mutation,” ISSTA 2019 - Proc. 28th ACM SIGSOFT Int. Symp. Softw. Test. Anal., pp. 19–30, 2019.
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fix
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- K. Liu, A. Koyuncu, D. Kim, and T. F. Bissyandé, “TBAR: Revisiting template-based automated program repair,” ISSTA 2019 - Proc. 28th ACM SIGSOFT Int. Symp. Softw. Test. Anal., pp. 43–54, 2019.
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fix
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- X. Gao, S. Mechtaev, and A. Roychoudhury, “Crash-avoiding program repair,” ISSTA 2019 - Proc. 28th ACM SIGSOFT Int. Symp. Softw. Test. Anal., pp. 8–18, 2019.
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fix
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- L. Gazzola, D. Micucci, and L. Mariani, “Automatic Software Repair: A Survey,” IEEE Trans. Softw. Eng., vol. 45, no. 1, pp. 34–67, 2019.
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fix
survey
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- Sergey Mechtaev, Manh-Dung Nguyen, Yannic Noller, Lars Grunske, and Abhik Roychoudhury. 2018. Semantic Program Repair Using a Reference Implementation
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fix
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- Rijnard van Tonder and Claire Le Goues. 2018. Static Automated Program Repair for Heap Properties.
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fix
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- Ming Wen, Junjie Chen, Rongxin Wu, Dan Hao, Shing-Chi Cheung. 2018. Context-Aware Patch Generation for Better Automated Program Repair.
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fix
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- Jinru Hua, Mengshi Zhang, Kaiyuan Wang and Sarfraz Khurshid. 2018. Towards Practical Program Repair with On-Demand Candidate Generation.
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fix
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- Andrea Stocco, Rahulkrishna Yandrapally, and Ali Mesbah. 2018. Visual Web Test Repair.
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fix
visual
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- Martin White, and Denys Poshyvanyk. 2018. [An Empirical Investigation into Learning Bug-Fixing Patches in the Wild via Neural Machine Translation.] (/bug_fixing_paper_collection/tosem2019_ase.pdf)
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fix
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- Jiajun Jiang, Yingfei Xiong, Hongyu Zhang, Qing Gao, and Xiangqun Chen. 2018. Shaping Program Repair Space with Existing Patches and Similar Code.
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fix
automatic
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- Klaas-Jan Stol and Brian Fitzgerald. 2018. The ABC of Software Engineering Research.
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ABC
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- Sergey Mechtaev, Xiang Gao, Shin Hwei Tan, and Abhik Roychoudhury. 2018. Test-Equivalence Analysis for Automatic Patch Generation.
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fix
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- Mayy Habayeb Syed Shariyar Murtaza, Andriy MiranskyyOn the Use of Hidden Markov Model to Predict the Time to Fix Bugs.
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fix
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- 周风顺,王林章,李宣东.C/C++程序缺陷自动修复与确认方法
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automatic
fix
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- 李斌,贺也平,马恒太.程序自动修复:关键问题及技术
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automatic
fix
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- 朱子骁,邹艳珍,华晨彦,沈琦,赵俊峰.基于StackOverflow 数据的软件功能特征挖掘组织方法
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detect
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- 刘旭亮,钟浩.一种基于StackOverflow 分析的程序自动修复方法
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automatic
fix
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- 王赞 自动程序修复方法研究述评
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综述
fix
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- Yingfei Xiong, Jie Wang, Runfa Yan, Jiachen Zhang, Shi Han§, Gang Huang, Lu Zhang Precise Condition Synthesis for Program Repair
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fix
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- Fan Long, Peter Amidon, and Martin Rinard. 2017. Automatic Inference of Code Transforms for Patch Generation.
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fix
java
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- Yuchi Tian, Baishakhi Ray. 2017. Automatically Diagnosing and Repairing Error Handling Bugs in C.
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fix
C
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- Marcel Böhme, Ezekiel O. Soremekun, Sudipta Chattopadhyay, Emamurho Ugherughe, and Andreas Zeller. 2017. Where Is the Bug and How Is It Fixed? An Experiment with Practitioners.
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fix
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- Sahil Verma and Subhajit Roy. 2017. Synergistic Debug-Repair of Heap Manipulations.
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fix
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- L. Chen, Y. Pei, and C. A. Furia, “Contract-Based Program Repair without The Contracts: An Extended Study,” IEEE Trans. Softw. Eng., pp. 637–647, 2020.
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fix
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- A. Weiss, A. Guha, and Y. Brun, “Tortoise: Interactive system configuration repair,” ASE 2017 - Proc. 32nd IEEE/ACM Int. Conf. Autom. Softw. Eng., pp. 625–636, 2017.
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fix
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- Q. Xin and S. P. Reiss, “Leveraging syntax-related code for automated program repair,” ASE 2017 - Proc. 32nd IEEE/ACM Int. Conf. Autom. Softw. Eng., pp. 660–670, 2017.
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fix
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- R. K. Saha, Y. Lyu, H. Yoshida, and M. R. Prasad, “E LIXIR : Effective Object-Oriented Program Repair,” ASE 2017 - Proc. 32nd IEEE/ACM Int. Conf. Autom. Softw. Eng., pp. 648–659, 2017.
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fix
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- A. Koyuncu, T. F. Bissyandé, D. Kim, J. Klein, M. Monperrus, and Y. Le Traon, “Impact of tool support in patch construction”, ISSTA 2017 - Proc. 26th ACM SIGSOFT Int. Symp. Softw. Test. Anal., pp. 237–248, 2017
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fix related
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- Qi Xin, Steven P. Reiss Identifying Test-Suite-Overfitted Patches through Test Case Generation
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fix related
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- J. Xuan et al., “Nopol: Automatic Repair of Conditional Statement Bugs in Java Programs,” IEEE Trans. Softw. Eng., vol. 43, no. 1, pp. 34–55, 2017.
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fix
- Frank Li Vern Paxson A Large-Scale Empirical Study of Security Patches
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fix
security
empirical
- Sergey Mechtaev Jooyong Yi Abhik Roychoudhury Angelix: Scalable Multiline Program Patch Synthesis via Symbolic Analysis
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fix
- Fan Long and Martin Rinard An Analysis of the Search Spaces for Generate and Validate Patch Generation Systems
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fix
- H. Liu, Y. Chen, and S. Lu, “Understanding and generating high quality patches for concurrency bugs,” Proc. ACM SIGSOFT Symp. Found. Softw. Eng., vol. 13-18-Nove, pp. 715–726, 2016.
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fix
- Shin Hwei,Tan Hiroaki,Yoshida,Mukul R. Prasad Abhik RoychoudhuryAnti-patterns in Search-Based Program Repair
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fix
- 玄跻峰,任志磊,王子元,谢晓园,江贺.自动程序修复方法研究进展
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综述
fix
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- V. T. Pham, W. B. Ng, K. Rubinov, and A. Roychoudhury, “Hercules: Reproducing crashes in real-world application binaries,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 891–901, 2015.
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fix
- S. Mechtaev, J. Yi, and A. Roychoudhury, “DirectFix: Looking for simple program repairs,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 448–458, 2015.
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fix
- S. H. Tan and A. Roychoudhury, “Relifix: Automated repair of software regressions,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 471–482, 2015.
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fix
- H. Zhong and Z. Su, “An empirical study on real bug fixes,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 913–923, 2015.
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fix
empirical
- A. Nistor, P. C. Chang, C. Radoi, and S. Lu, “CARAMEL: Detecting and fixing performance problems that have non-intrusive fixes,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 902–912, 2015.
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fix
- Q. Gao et al., “Safe memory-leak fixing for C programs,” Proc. - Int. Conf. Softw. Eng., vol. 1, no. 1, pp. 459–470, 2015.
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fix
- F. Pastore and L. Mariani, “ZoomIn: Discovering failures by detecting wrong assertions,” Proc. - Int. Conf. Softw. Eng., vol. 1, pp. 66–76, 2015.
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fix
- Edward K. Smith Earl T. Barr Claire Le Goues Yuriy Brun Is the Cure Worse Than the Disease? Overfitting in Automated Program Repair
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fix
- Qing Gao, Hansheng Zhang, Jie Wang, Yingfei Xiong, Lu Zhang, Hong Mei Fixing Recurring Crash Bugs via Analyzing Q&A Sites
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fix
- Yalin Ke Kathryn T. Stolee Repairing Programs with Semantic Code Search
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fix
- Claire Le Goues, Neal Holtschulte, Edward K. Smith, Yuriy Brun The ManyBugs and IntroClass Benchmarks for Automated Repair of C Programs
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fix