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Research
My research focuses on easing the task of developing reliable and efficient software systems. I am particularly interested in static program analysis which combines two disciplines: automated theorem proving and abstract interpretation. In the next decade, I am hoping to develop useful techniques in order to change the ways modern software is built. I am particularly interested in proof automation, given a program and a requirement, automatically prove or disprove that all executions of the program satisfy the requirements. This problem is in general undecidable and untractable.
I am interested in developing practical solutions to proof-automation by: (i) exploring modularity of the system and (ii) relying on semi-automatic and interactive process, where the user manually and interactively guides the proof automation, and (iii) simplifying the verification task by using domain-specific abstractions expressed in a decidable logic.
I am applying these techniques to verify safety of liveness of distributed systems.
My research focuses on easing the task of developing reliable and efficient software systems. I am particularly interested in static program analysis which combines two disciplines: automated theorem proving and abstract interpretation. In the next decade, I am hoping to develop useful techniques in order to change the ways modern software is built. I am particularly interested in proof automation, given a program and a requirement, automatically prove or disprove that all executions of the program satisfy the requirements. This problem is in general undecidable and untractable.
I am interested in developing practical solutions to proof-automation by: (i) exploring modularity of the system and (ii) relying on semi-automatic and interactive process, where the user manually and interactively guides the proof automation, and (iii) simplifying the verification task by using domain-specific abstractions expressed in a decidable logic.
I am applying these techniques to verify safety of liveness of distributed systems.
研究兴趣
论文共 138 篇作者统计合作学者相似作者
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Proceedings of the ACM on Programming Languagesno. OOPSLA (2023): 1878-1904
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CoRR (2021)
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2018 Formal Methods in Computer Aided Design (FMCAD)no. 2 (2021): 246-269
user-614d54b3e55422cecdb064d3(2021)
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arxiv(2021)
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