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Titlebook: Automated Deduction – CADE 29; 29th International C Brigitte Pientka,Cesare Tinelli Conference proceedings‘‘‘‘‘‘‘‘ 2023 The Editor(s) (if a

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Commutativity and Homotopy-Commutativity,We recently proposed . (ADCL), a novel calculus to analyze satisfiability of . (CHCs). Here, we adapt ADCL to transition systems and introduce ADCL-NT, a variant for disproving termination. We implemented ADCL-NT in our tool . and evaluate it against the state of the art.
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,Proving Non-Termination by Acceleration Driven Clause Learning (Short Paper),We recently proposed . (ADCL), a novel calculus to analyze satisfiability of . (CHCs). Here, we adapt ADCL to transition systems and introduce ADCL-NT, a variant for disproving termination. We implemented ADCL-NT in our tool . and evaluate it against the state of the art.
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978-3-031-38498-1The Editor(s) (if applicable) and The Author(s) 2023
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https://doi.org/10.1007/BFb0083825on proofs of programs whose termination depends on recursive data structures like lists. We present the first approach that extends powerful techniques for termination analysis of . programs (with memory allocation and explicit pointer arithmetic) to lists.
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https://doi.org/10.1007/BFb0069645trast to the SAT solvers on which MaxSAT solving rests, there has been little parallel development of techniques to prove the correctness of MaxSAT results. We show how pseudo-Boolean proof logging can be used to certify state-of-the-art core-guided MaxSAT solving, including advanced techniques like
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