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Ranked Enumeration for MSO on Trees via Knowledge Compilation

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Résumé

We study the problem of enumerating the satisfying assignments for certain circuit classes from knowledge compilation, where assignments are ranked in a specific order. In particular, we show how this problem can be used to efficiently perform ranked enumeration of the answers to MSO queries over trees, with the order being given by a ranking function satisfying a subset-monotonicity property. Assuming that the number of variables is constant, we show that we can enumerate the satisfying assignments in ranked order for so-called multivalued circuits that are smooth, decomposable, and in negation normal form (smooth multivalued DNNF). There is no preprocessing and the enumeration delay is linear in the size of the circuit times the number of values, plus a logarithmic term in the number of assignments produced so far. If we further assume that the circuit is deterministic (smooth multivalued d-DNNF), we can achieve linear-time preprocessing in the circuit, and the delay only features the logarithmic term.

langue originaleAnglais
titre27th International Conference on Database Theory, ICDT 2024
rédacteurs en chefGraham Cormode, Michael Shekelyan
EditeurSchloss Dagstuhl- Leibniz-Zentrum fur Informatik GmbH, Dagstuhl Publishing
ISBN (Electronique)9783959773126
Les DOIs
étatPublié - 1 mars 2024
Evénement27th International Conference on Database Theory, ICDT 2024 - Paestum, Italie
Durée: 25 mars 202428 mars 2024

Série de publications

NomLeibniz International Proceedings in Informatics, LIPIcs
Volume290
ISSN (imprimé)1868-8969

Une conférence

Une conférence27th International Conference on Database Theory, ICDT 2024
Pays/TerritoireItalie
La villePaestum
période25/03/2428/03/24

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