37b29c8d33
be added as needed.
114 lines
3.1 KiB
Java
114 lines
3.1 KiB
Java
/*
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The contents of this file are subject to the AMP Open Community License
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Version 1.0 (the "License"); you may not use this file except in compliance
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with the License. You may obtain a copy of the License on the AMP web site
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(http://www.tibet.iteso.mx/Guatemala/).
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Software distributed under the License is distributed on an "AS IS" basis,
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WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
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License for the specific terms governing rights and limitations under the
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License.
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The Initial Developer of this software is Andres Montano Pellegrini. Portions
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created by Andres Montano Pellegrini are Copyright 2001 Andres Montano
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Pellegrini. All Rights Reserved.
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Contributor(s): ______________________________________.
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*/
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package org.thdl.tib.scanner;
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import java.io.*;
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/** Provides recommended implementation of the {@link SyllableListTree}
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(currently most efficient memory-speed combination) loading
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from file into memory only the "trunk" of the tree,
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and resorting to the disk when searching the rest of the tree.
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<p>The words must be stored in a binary file tree structure format.
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This can be done using the {@link BinaryFileGenerator}.</p>
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@author Andrés Montano Pellegrini
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@see TibetanScanner
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@see BinaryFileGenerator
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*/
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public class CachedSyllableListTree implements SyllableListTree
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{
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SyllableListTree syllables[];
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public CachedSyllableListTree(String archivo) throws Exception
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{
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String sil;
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long pos, defSources[];
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DictionarySource sourceDef;
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int i;
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FileSyllableListTree.openFiles(archivo);
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long posLista = FileSyllableListTree.wordRaf.length() - 4;
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LinkedList syllables = new LinkedList();
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FileSyllableListTree.wordRaf.seek(posLista);
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posLista = (long) FileSyllableListTree.wordRaf.readInt();
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FileSyllableListTree.wordRaf.seek(posLista);
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do
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{
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pos = (long) FileSyllableListTree.wordRaf.readInt();
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sil = FileSyllableListTree.wordRaf.readUTF();
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sourceDef = DictionarySource.read(FileSyllableListTree.wordRaf);
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if (sourceDef.isEmpty()) defSources = null;
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else
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{
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defSources = new long[sourceDef.countDefs()];
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for (i=0; i<defSources.length; i++)
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{
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defSources[i] = (long) FileSyllableListTree.wordRaf.readInt();
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}
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}
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syllables.addLast(new FileSyllableListTree(sil, defSources, sourceDef, pos));
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}while(sourceDef.hasBrothers());
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int n = syllables.size();
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this.syllables = new SyllableListTree[n];
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ListIterator li = syllables.listIterator();
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while (li.hasNext())
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{
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n--;
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this.syllables[n] = (SyllableListTree) li.next();
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}
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}
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public String getDef()
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{
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return null;
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}
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public Definitions getDefs()
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{
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return null;
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}
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public DictionarySource getDictionarySource()
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{
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return FileSyllableListTree.defSourcesWanted;
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}
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public boolean hasDef()
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{
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return false;
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}
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public SyllableListTree lookUp(String silStr)
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{
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int principio=0, medio, fin=syllables.length-1, comp;
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if (silStr==null) return null;
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while (principio<=fin)
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{
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medio = (principio+fin)/2;
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comp = syllables[medio].toString().compareTo(silStr);
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if (comp==0) return syllables[medio];
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else
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if (comp<0) principio = medio+1;
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else fin = medio-1;
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}
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return null;
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}
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}
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