net.automatalib.util.graphs.copy.GraphCopy Maven / Gradle / Ivy
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This artifact provides various common utility operations for analyzing and manipulating
automata and graphs, such as traversal, minimization and copying.
/* Copyright (C) 2013 TU Dortmund
* This file is part of AutomataLib, http://www.automatalib.net/.
*
* AutomataLib is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License version 3.0 as published by the Free Software Foundation.
*
* AutomataLib is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with AutomataLib; if not, see
* http://www.gnu.de/documents/lgpl.en.html.
*/
package net.automatalib.util.graphs.copy;
import java.util.Collection;
import net.automatalib.commons.util.mappings.Mapping;
import net.automatalib.commons.util.mappings.Mappings;
import net.automatalib.graphs.Graph;
import net.automatalib.graphs.IndefiniteGraph;
import net.automatalib.graphs.MutableGraph;
import net.automatalib.graphs.UniversalGraph;
import net.automatalib.graphs.UniversalIndefiniteGraph;
import net.automatalib.util.graphs.Graphs;
import net.automatalib.util.traversal.TraversalOrder;
public class GraphCopy {
public static
Mapping copyPlain(Graph in,
MutableGraph out,
Mapping super N1,? extends NP2> npMapping,
Mapping super E1,? extends EP2> epMapping) {
PlainGraphCopy copy = new PlainGraphCopy<>(in, out, npMapping, epMapping);
copy.doCopy();
return copy.getNodeMapping();
}
public static
Mapping copyPlain(UniversalGraph in,
MutableGraph out) {
Mapping npMapping = Graphs.nodeProperties(in);
Mapping epMapping = Graphs.edgeProperties(in);
return copyPlain(in, out, npMapping, epMapping);
}
public static
Mapping copyUniversalPlain(UniversalGraph in,
MutableGraph out,
Mapping super NP1,? extends NP2> npConversion,
Mapping super EP1,? extends EP2> epConversion) {
Mapping super N1,? extends NP2> npMapping = Mappings.compose(Graphs.nodeProperties(in), npConversion);
Mapping super E1,? extends EP2> epMapping = Mappings.compose(Graphs.edgeProperties(in), epConversion);
return copyPlain(in, out, npMapping, epMapping);
}
public static
Mapping copyTraversal(IndefiniteGraph in,
MutableGraph out,
TraversalOrder order,
int limit,
Collection extends N1> initialNodes,
Mapping super N1,? extends NP2> npMapping,
Mapping super E1,? extends EP2> epMapping) {
TraversalGraphCopy copy
= new TraversalGraphCopy<>(order, limit, in, initialNodes, out, npMapping, epMapping);
copy.doCopy();
return copy.getNodeMapping();
}
public static
Mapping copyTraversal(UniversalIndefiniteGraph in,
MutableGraph out,
TraversalOrder order,
int limit,
Collection extends N1> initialNodes) {
Mapping npMapping = Graphs.nodeProperties(in);
Mapping epMapping = Graphs.edgeProperties(in);
return copyTraversal(in, out, order, limit, initialNodes, npMapping, epMapping);
}
public static
Mapping copyUniversalTraversal(UniversalIndefiniteGraph in,
MutableGraph out,
TraversalOrder order,
int limit,
Collection extends N1> initialNodes,
Mapping super NP1,? extends NP2> npConversion,
Mapping super EP1,? extends EP2> epConversion) {
Mapping super N1,? extends NP2> npMapping = Mappings.compose(Graphs.nodeProperties(in), npConversion);
Mapping super E1,? extends EP2> epMapping = Mappings.compose(Graphs.edgeProperties(in), epConversion);
return copyTraversal(in, out, order, limit, initialNodes, npMapping, epMapping);
}
}