Rewrite Closure and CF Hedge Automata
Identifieur interne : 001464 ( Hal/Checkpoint ); précédent : 001463; suivant : 001465Rewrite Closure and CF Hedge Automata
Auteurs : Florent Jacquemard [France] ; Michaël Rusinowitch [France]Source :
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Abstract
We introduce an extension of hedge automata called bidimensional context-free hedge automata, proposing a new uniform representation of vertical and horizontal computation steps in unranked ordered trees. The class recognized languages is shown to be preserved by rewrite closure with inverse-monadic rules. We also extend the parameterized rewriting rules used for modeling the W3C XQuery Update Facility in previous works, by the possibility to insert a new parent node above a given node. We show that the rewrite closure of hedge automata languages with these extended rewriting systems are context-free hedge languages.
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<front><div type="abstract" xml:lang="en">We introduce an extension of hedge automata called bidimensional context-free hedge automata, proposing a new uniform representation of vertical and horizontal computation steps in unranked ordered trees. The class recognized languages is shown to be preserved by rewrite closure with inverse-monadic rules. We also extend the parameterized rewriting rules used for modeling the W3C XQuery Update Facility in previous works, by the possibility to insert a new parent node above a given node. We show that the rewrite closure of hedge automata languages with these extended rewriting systems are context-free hedge languages.</div>
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<hal api="V3"><titleStmt><title xml:lang="en">Rewrite Closure and CF Hedge Automata</title>
<author role="aut"><persName><forename type="first">Florent</forename>
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<author role="aut"><persName><forename type="first">Michaël</forename>
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<sourceDesc><biblStruct><analytic><title xml:lang="en">Rewrite Closure and CF Hedge Automata</title>
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<abstract xml:lang="en">We introduce an extension of hedge automata called bidimensional context-free hedge automata, proposing a new uniform representation of vertical and horizontal computation steps in unranked ordered trees. The class recognized languages is shown to be preserved by rewrite closure with inverse-monadic rules. We also extend the parameterized rewriting rules used for modeling the W3C XQuery Update Facility in previous works, by the possibility to insert a new parent node above a given node. We show that the rewrite closure of hedge automata languages with these extended rewriting systems are context-free hedge languages.</abstract>
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