3coSoKu and its declarative modeling

Author:

Rizzo Nicola1,Dovier Agostino2

Affiliation:

1. Department of Computer Science, Faculty of Science, University of Helsinki, 00014 Helsinki, Finland

2. Department of Computer Science, Mathematics and Physics, University of Udine, 33100 Udine, Italy

Abstract

Abstract In this paper, we analyze the physical puzzle IcoSoKu, a game about placing some given triangular tiles on the faces of an icosahedron in order to fill the capacities of its vertices, and we propose its generalization called 3coSoKu, admitting an arbitrary playing field with triangular faces, arbitrary capacities and an arbitrary set of triangular tiles. First, we prove the strong NP-completeness of 3coSoKu, even when the playing field is a convex polyhedron with equilateral triangles as faces. Second, we encode 3coSoKu both in the constraint modeling language MiniZinc and in the logic programming paradigm known as Answer Set Programming and we develop a visual tool for an accessible interface to the solver. Finally, we use our encodings to verify experimentally that every initial state for IcoSoKu admits a solution.

Publisher

Oxford University Press (OUP)

Subject

Logic,Hardware and Architecture,Arts and Humanities (miscellaneous),Software,Theoretical Computer Science

Reference21 articles.

1. An empirical study of constraint logic programming and answer set programming solutions of combinatorial problems;Dovier;Journal of Experimental & Theoretical Artificial Intelligence,2009

2. 3d graphics on the web: a survey;Evans;Computers & Graphics,2014

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