Laura Kovács

h-index1
2papers
1citation

2 Papers

7.5LOMar 27
Lean on Vampire Proofs (Short Paper)

Jonas Bodingbauer, Márton Hajdu, Laura Kovács et al.

Vampire proves theorems completely automatically in first- and higher-order logic extended with theories. Proof checking is increasingly demanded to consolidate user trust in Vampires output. We describe ongoing efforts in reconstructing Vampire proofs as trusted proofs in Lean

7.8LOMar 6
Finding Connections via Satisfiability Solving

Clemens Eisenhofer, Michael Rawson, Laura Kovács

Commonly used proof strategies by automated reasoners organise proof search either by ordering-based saturation or by reducing goals to subgoals. In this paper, we combine these two approaches and advocate a SAT-based method with symmetry breaking for connection calculi in first-order logic, with the purpose of further pushing the automation in first-order classical logic proofs. In contrast to classical ways of reducing first-order logic to propositional logic, our method encodes the structure of the proof search itself. We present three distinct SAT encodings for connection calculi, analyse their theoretical properties, and discuss the effect of using SAT/SMT solvers on these encodings. We implemented our work in the new solver upCoP and showcase its practical feasibility.