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fv19:top [2019/06/18 22:07] vkuncak |
fv19:top [2019/07/09 14:01] vkuncak [Formal Verification EPFL Course (CS-550), Fall 2019] |
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Instructors: [[http://lara.epfl.ch/~kuncak/|Viktor Kuncak]] and [[https://people.epfl.ch/jad.hamza?lang=en|Jad Hamza]] | Instructors: [[http://lara.epfl.ch/~kuncak/|Viktor Kuncak]] and [[https://people.epfl.ch/jad.hamza?lang=en|Jad Hamza]] | ||
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+ | PhD Assistant: [[https://people.epfl.ch/vijay.keswani|Vijay Keswani]] | ||
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+ | One of the verification tools used: [[http://stainless.epfl.ch/|Stainless]] | ||
===== Introduction ===== | ===== Introduction ===== | ||
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distributed systems. | distributed systems. | ||
- | In this course we will learn how to use formal verification tools and explain the theory and the practice behind building them. | + | In this course we will learn how to use formal verification tools and explain the theory and the practice behind them. |
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===== Background ===== | ===== Background ===== | ||
+ | * [[sav17:exercises_01|Exercises on the background]] | ||
* Kenneth H. Rosen. Discrete Mathematics and Its Applications. E.g. 8th Edition. | * Kenneth H. Rosen. Discrete Mathematics and Its Applications. E.g. 8th Edition. | ||
* Formally Verified Software in the Real World. Communications of the ACM, October 2018. https://cacm.acm.org/magazines/2018/10/231372-formally-verified-software-in-the-real-world/fulltext | * Formally Verified Software in the Real World. Communications of the ACM, October 2018. https://cacm.acm.org/magazines/2018/10/231372-formally-verified-software-in-the-real-world/fulltext | ||