English

The Complexity of Reasoning for Fragments of Default Logic

Computational Complexity 2010-08-24 v4 Logic in Computer Science

Abstract

Default logic was introduced by Reiter in 1980. In 1992, Gottlob classified the complexity of the extension existence problem for propositional default logic as \SigmaPtwo\SigmaPtwo-complete, and the complexity of the credulous and skeptical reasoning problem as SigmaP2-complete, resp. PiP2-complete. Additionally, he investigated restrictions on the default rules, i.e., semi-normal default rules. Selman made in 1992 a similar approach with disjunction-free and unary default rules. In this paper we systematically restrict the set of allowed propositional connectives. We give a complete complexity classification for all sets of Boolean functions in the meaning of Post's lattice for all three common decision problems for propositional default logic. We show that the complexity is a hexachotomy (SigmaP2-, DeltaP2-, NP-, P-, NL-complete, trivial) for the extension existence problem, while for the credulous and skeptical reasoning problem we obtain similar classifications without trivial cases.

Keywords

Cite

@article{arxiv.0808.3884,
  title  = {The Complexity of Reasoning for Fragments of Default Logic},
  author = {Olaf Beyersdorff and Arne Meier and Michael Thomas and Heribert Vollmer},
  journal= {arXiv preprint arXiv:0808.3884},
  year   = {2010}
}

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Corrected version