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579 lines
26 KiB
579 lines
26 KiB
// ReferenceContainer.java
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// (C) 2006 by Michael Peter Christen; mc@yacy.net, Frankfurt a. M., Germany
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// first published 04.07.2006 on http://yacy.net
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//
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// This is a part of YaCy, a peer-to-peer based web search engine
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//
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// $LastChangedDate$
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// $LastChangedRevision$
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// $LastChangedBy$
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//
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// LICENSE
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//
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// This program is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 2 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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package net.yacy.kelondro.rwi;
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import java.lang.reflect.Method;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.Collection;
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import java.util.ConcurrentModificationException;
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import java.util.Iterator;
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import java.util.List;
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import java.util.TreeMap;
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import net.yacy.cora.document.ASCII;
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import net.yacy.cora.order.Base64Order;
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import net.yacy.cora.order.ByteOrder;
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import net.yacy.cora.storage.HandleSet;
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import net.yacy.cora.util.SpaceExceededException;
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import net.yacy.kelondro.index.Row;
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import net.yacy.kelondro.index.RowSet;
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import net.yacy.kelondro.logging.Log;
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/**
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* A ReferenceContainer is a set of ReferenceRows entries for a specific term.
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* Since ReferenceRow entries are special Row entries, a collection of ReferenceRows
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* can be contained in a RowSet.
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* This class extends the RowSet with methods for the handling of
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* special ReferenceRow Row entry objects.
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*/
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public class ReferenceContainer<ReferenceType extends Reference> extends RowSet {
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private static final long serialVersionUID=-540567425172727979L;
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private byte[] termHash;
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protected ReferenceFactory<ReferenceType> factory;
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public static int maxReferences = 0; // overwrite this to enable automatic index shrinking. 0 means no shrinking
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public ReferenceContainer(final ReferenceFactory<ReferenceType> factory, final byte[] termHash, final RowSet collection) {
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super(collection);
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assert termHash == null || (termHash[2] != '@' && termHash.length == this.rowdef.primaryKeyLength);
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this.factory = factory;
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this.termHash = termHash;
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}
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public ReferenceContainer(final ReferenceFactory<ReferenceType> factory, final byte[] termHash) {
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super(factory.getRow());
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assert termHash == null || (termHash[2] != '@' && termHash.length == this.rowdef.primaryKeyLength);
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this.termHash = termHash;
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this.factory = factory;
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this.lastTimeWrote = 0;
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}
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public ReferenceContainer(final ReferenceFactory<ReferenceType> factory, final byte[] termHash, final int objectCount) throws SpaceExceededException {
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super(factory.getRow(), objectCount);
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assert termHash == null || (termHash[2] != '@' && termHash.length == this.rowdef.primaryKeyLength);
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this.termHash = termHash;
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this.factory = factory;
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this.lastTimeWrote = 0;
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}
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public ReferenceContainer<ReferenceType> topLevelClone() throws SpaceExceededException {
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final ReferenceContainer<ReferenceType> newContainer = new ReferenceContainer<ReferenceType>(this.factory, this.termHash, size());
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newContainer.addAllUnique(this);
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return newContainer;
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> emptyContainer(final ReferenceFactory<ReferenceType> factory, final byte[] termHash) {
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assert termHash == null || (termHash[2] != '@' && termHash.length == factory.getRow().primaryKeyLength);
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return new ReferenceContainer<ReferenceType>(factory, termHash);
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> emptyContainer(final ReferenceFactory<ReferenceType> factory, final byte[] termHash, final int elementCount) throws SpaceExceededException {
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assert termHash == null || (termHash[2] != '@' && termHash.length == factory.getRow().primaryKeyLength);
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return new ReferenceContainer<ReferenceType>(factory, termHash, elementCount);
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}
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public void setWordHash(final byte[] newTermHash) {
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assert this.termHash == null || (this.termHash[2] != '@' && this.termHash.length == this.rowdef.primaryKeyLength);
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this.termHash = newTermHash;
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}
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public long updated() {
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return super.lastWrote();
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}
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public byte[] getTermHash() {
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return this.termHash;
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}
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public void add(final Reference entry) throws SpaceExceededException {
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// add without double-occurrence test
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assert entry.toKelondroEntry().objectsize() == super.rowdef.objectsize;
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this.addUnique(entry.toKelondroEntry());
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}
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public ReferenceContainer<ReferenceType> merge(final ReferenceContainer<ReferenceType> c) throws SpaceExceededException {
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return new ReferenceContainer<ReferenceType>(this.factory, this.termHash, super.merge(c));
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}
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public Reference replace(final Reference entry) throws SpaceExceededException {
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assert entry.toKelondroEntry().objectsize() == super.rowdef.objectsize;
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final Row.Entry r = super.replace(entry.toKelondroEntry());
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if (r == null) return null;
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return this.factory.produceSlow(r);
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}
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public void put(final Reference entry) throws SpaceExceededException {
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assert entry.toKelondroEntry().objectsize() == super.rowdef.objectsize;
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super.put(entry.toKelondroEntry());
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}
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public boolean putRecent(final Reference entry) throws SpaceExceededException {
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assert entry.toKelondroEntry().objectsize() == super.rowdef.objectsize;
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// returns true if the new entry was added, false if it already existed
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final Row.Entry oldEntryRow = this.replace(entry.toKelondroEntry());
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if (oldEntryRow == null) {
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return true;
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}
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final Reference oldEntry = this.factory.produceSlow(oldEntryRow);
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if (entry.isOlder(oldEntry)) { // A more recent Entry is already in this container
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this.replace(oldEntry.toKelondroEntry()); // put it back
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return false;
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}
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return true;
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}
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public int putAllRecent(final ReferenceContainer<ReferenceType> c) throws SpaceExceededException {
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// adds all entries in c and checks every entry for double-occurrence
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// returns the number of new elements
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if (c == null) return 0;
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int x = 0;
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synchronized (c) {
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final Iterator<ReferenceType> i = c.entries();
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while (i.hasNext()) {
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try {
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if (putRecent(i.next())) x++;
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} catch (final ConcurrentModificationException e) {
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Log.logException(e);
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}
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}
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}
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this.lastTimeWrote = java.lang.Math.max(this.lastTimeWrote, c.updated());
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return x;
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}
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public ReferenceType getReference(final byte[] urlHash) {
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final Row.Entry entry = super.get(urlHash, false);
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if (entry == null) return null;
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return this.factory.produceSlow(entry);
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}
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/**
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* remove a url reference from the container.
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* if the url hash was found, return the entry, but delete the entry from the container
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* if the entry was not found, return null.
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*/
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public ReferenceType removeReference(final byte[] urlHash) {
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final Row.Entry entry = super.remove(urlHash);
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if (entry == null) return null;
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return this.factory.produceSlow(entry);
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}
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public int removeEntries(final HandleSet urlHashes) {
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int count = 0;
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final Iterator<byte[]> i = urlHashes.iterator();
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while (i.hasNext()) count += (delete(i.next())) ? 1 : 0;
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return count;
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}
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/**
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* Shrink the reference size in such a way that it does not exceed maxReferences
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* In case that the index is too large, old entries are deleted
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* @return the number of deleted entries
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*/
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public int shrinkReferences() {
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final int oldsize = size();
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final int diff = oldsize - maxReferences;
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if (maxReferences <= 0 || diff <= 0) return 0;
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synchronized (this) {
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final int[] indexes = oldPostions(diff);
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Arrays.sort(indexes);
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for (int i = indexes.length - 1; i >= 0; i--) {
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if (indexes[i] < 0) break;
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removeRow(indexes[i], false);
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}
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sort();
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}
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return oldsize - size();
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}
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private int[] oldPostions(final int count) {
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final int[] indexes = new int[count];
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int i = 0;
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for (final List<Integer> positions : positionsByLastMod()) {
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for (final Integer pos : positions) {
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indexes[i++] = pos;
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if (i >= count) return indexes;
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}
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}
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return indexes;
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}
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private Collection<List<Integer>> positionsByLastMod() {
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long mod;
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List<Integer> positions;
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ReferenceType r;
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final TreeMap<Long, List<Integer>> tm = new TreeMap<Long, List<Integer>>();
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final Iterator<ReferenceType> i = this.entries();
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int pos = 0;
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while (i.hasNext()) {
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r = i.next();
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if (r == null) continue;
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mod = r.lastModified();
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positions = tm.get(mod);
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if (positions == null) positions = new ArrayList<Integer>();
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positions.add(pos++);
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tm.put(mod, positions);
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}
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return tm.values();
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}
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public Iterator<ReferenceType> entries() {
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// returns an iterator of indexRWIEntry objects
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return new entryIterator();
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}
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public class entryIterator implements Iterator<ReferenceType> {
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Iterator<Row.Entry> rowEntryIterator;
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public entryIterator() {
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this.rowEntryIterator = iterator();
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}
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@Override
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public boolean hasNext() {
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return this.rowEntryIterator.hasNext();
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}
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@Override
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public ReferenceType next() {
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final Row.Entry rentry = this.rowEntryIterator.next();
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if (rentry == null) return null;
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return ReferenceContainer.this.factory.produceSlow(rentry);
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}
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@Override
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public void remove() {
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this.rowEntryIterator.remove();
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}
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}
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public static Object mergeUnique(final Object a, final Object b) throws SpaceExceededException {
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if (a instanceof ReferenceContainer<?>) {
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final ReferenceContainer<?> c = (ReferenceContainer<?>) a;
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c.addAllUnique((ReferenceContainer<?>) b);
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return c;
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}
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throw new UnsupportedOperationException("Objects have wrong type: " + a.getClass().getName());
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}
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public static final Method containerMergeMethod;
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static {
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Method meth = null;
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try {
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final Class<?> c = net.yacy.kelondro.rwi.ReferenceContainer.class;
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meth = c.getMethod("mergeUnique", new Class[]{Object.class, Object.class});
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} catch (final SecurityException e) {
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System.out.println("Error while initializing containerMerge.SecurityException: " + e.getMessage());
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meth = null;
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} catch (final NoSuchMethodException e) {
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System.out.println("Error while initializing containerMerge.NoSuchMethodException: " + e.getMessage());
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meth = null;
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}
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assert meth != null;
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containerMergeMethod = meth;
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> joinExcludeContainers(
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final ReferenceFactory<ReferenceType> factory,
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final Collection<ReferenceContainer<ReferenceType>> includeContainers,
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final Collection<ReferenceContainer<ReferenceType>> excludeContainers,
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final int maxDistance) throws SpaceExceededException {
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// join a search result and return the joincount (number of pages after join)
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// since this is a conjunction we return an empty entity if any word is not known
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if (includeContainers == null) return ReferenceContainer.emptyContainer(factory, null, 0);
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// join the result
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final ReferenceContainer<ReferenceType> rcLocal = ReferenceContainer.joinContainers(factory, includeContainers, maxDistance);
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if (rcLocal == null) return ReferenceContainer.emptyContainer(factory, null, 0);
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excludeContainers(factory, rcLocal, excludeContainers);
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return rcLocal;
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> joinContainers(
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final ReferenceFactory<ReferenceType> factory,
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final Collection<ReferenceContainer<ReferenceType>> containers,
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final int maxDistance) throws SpaceExceededException {
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// order entities by their size
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final TreeMap<Long, ReferenceContainer<ReferenceType>> map = new TreeMap<Long, ReferenceContainer<ReferenceType>>();
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ReferenceContainer<ReferenceType> singleContainer;
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final Iterator<ReferenceContainer<ReferenceType>> i = containers.iterator();
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int count = 0;
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while (i.hasNext()) {
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// get next entity:
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singleContainer = i.next();
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// check result
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if (singleContainer == null || singleContainer.isEmpty()) return null; // as this is a cunjunction of searches, we have no result if any word is not known
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// store result in order of result size
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map.put(Long.valueOf(singleContainer.size() * 1000 + count), singleContainer);
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count++;
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}
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// check if there is any result
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if (map.isEmpty()) return null; // no result, nothing found
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// the map now holds the search results in order of number of hits per word
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// we now must pairwise build up a conjunction of these sets
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Long k = map.firstKey(); // the smallest, which means, the one with the least entries
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ReferenceContainer<ReferenceType> searchA, searchB, searchResult = map.remove(k);
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while (!map.isEmpty() && !searchResult.isEmpty()) {
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// take the first element of map which is a result and combine it with result
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k = map.firstKey(); // the next smallest...
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searchA = searchResult;
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searchB = map.remove(k);
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searchResult = ReferenceContainer.joinConstructive(factory, searchA, searchB, maxDistance);
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// free resources
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searchA = null;
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searchB = null;
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}
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// in 'searchResult' is now the combined search result
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if (searchResult.isEmpty()) return null;
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return searchResult;
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> excludeContainers(
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final ReferenceFactory<ReferenceType> factory,
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ReferenceContainer<ReferenceType> pivot,
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final Collection<ReferenceContainer<ReferenceType>> containers) {
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// check if there is any result
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if (containers == null || containers.isEmpty()) return pivot; // no result, nothing found
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final Iterator<ReferenceContainer<ReferenceType>> i = containers.iterator();
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while (i.hasNext()) {
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pivot = excludeDestructive(factory, pivot, i.next());
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if (pivot == null || pivot.isEmpty()) return null;
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}
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return pivot;
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}
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// join methods
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private static int log2(int x) {
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int l = 0;
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while (x > 0) {x = x >> 1; l++;}
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return l;
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}
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public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> joinConstructive(
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final ReferenceFactory<ReferenceType> factory,
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final ReferenceContainer<ReferenceType> i1,
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final ReferenceContainer<ReferenceType> i2,
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final int maxDistance) throws SpaceExceededException {
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if ((i1 == null) || (i2 == null)) return null;
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if (i1.isEmpty() || i2.isEmpty()) return null;
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// decide which method to use
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final int high = ((i1.size() > i2.size()) ? i1.size() : i2.size());
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final int low = ((i1.size() > i2.size()) ? i2.size() : i1.size());
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final int stepsEnum = 10 * (high + low - 1);
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final int stepsTest = 12 * log2(high) * low;
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// start most efficient method
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if (stepsEnum > stepsTest) {
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if (i1.size() < i2.size()) return joinConstructiveByTest(factory, i1, i2, maxDistance);
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return joinConstructiveByTest(factory, i2, i1, maxDistance);
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}
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return joinConstructiveByEnumeration(factory, i1, i2, maxDistance);
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}
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private static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> joinConstructiveByTest(
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final ReferenceFactory<ReferenceType> factory,
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final ReferenceContainer<ReferenceType> small,
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final ReferenceContainer<ReferenceType> large,
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final int maxDistance) throws SpaceExceededException {
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//System.out.println("DEBUG: JOIN METHOD BY TEST, maxdistance = " + maxDistance);
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assert small.rowdef.equals(large.rowdef) : "small = " + small.rowdef.toString() + "; large = " + large.rowdef.toString();
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final int keylength = small.rowdef.width(0);
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assert (keylength == large.rowdef.width(0));
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final ReferenceContainer<ReferenceType> conj = new ReferenceContainer<ReferenceType>(factory, null, 0); // start with empty search result
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final Iterator<ReferenceType> se = small.entries();
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ReferenceType ie1;
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ReferenceType ie2;
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while (se.hasNext()) {
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ie1 = se.next();
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ie2 = large.getReference(ie1.urlhash());
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if ((ie1 != null) && (ie2 != null)) {
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assert (ie1.urlhash().length == keylength) : "ie0.urlHash() = " + ASCII.String(ie1.urlhash());
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assert (ie2.urlhash().length == keylength) : "ie1.urlHash() = " + ASCII.String(ie2.urlhash());
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// this is a hit. Calculate word distance:
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ie1 = factory.produceFast(ie2, true);
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ie1.join(ie2);
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if (ie1.distance() <= maxDistance) conj.add(ie1);
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}
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}
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return conj;
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}
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private static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> joinConstructiveByEnumeration(
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final ReferenceFactory<ReferenceType> factory,
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final ReferenceContainer<ReferenceType> i1,
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final ReferenceContainer<ReferenceType> i2,
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final int maxDistance) throws SpaceExceededException {
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//System.out.println("DEBUG: JOIN METHOD BY ENUMERATION, maxdistance = " + maxDistance);
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assert i1.rowdef.equals(i2.rowdef) : "i1 = " + i1.rowdef.toString() + "; i2 = " + i2.rowdef.toString();
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final int keylength = i1.rowdef.width(0);
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assert (keylength == i2.rowdef.width(0));
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final ReferenceContainer<ReferenceType> conj = new ReferenceContainer<ReferenceType>(factory, null, 0); // start with empty search result
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if (!((i1.rowdef.getOrdering().signature().equals(i2.rowdef.getOrdering().signature())))) return conj; // ordering must be equal
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final ByteOrder ordering = i1.rowdef.getOrdering();
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final Iterator<ReferenceType> e1 = i1.entries();
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final Iterator<ReferenceType> e2 = i2.entries();
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int c;
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if ((e1.hasNext()) && (e2.hasNext())) {
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ReferenceType ie1;
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ReferenceType ie2;
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ie1 = e1.next();
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ie2 = e2.next();
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while (true) {
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assert (ie1.urlhash().length == keylength) : "ie1.urlHash() = " + ASCII.String(ie1.urlhash());
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assert (ie2.urlhash().length == keylength) : "ie2.urlHash() = " + ASCII.String(ie2.urlhash());
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c = ordering.compare(ie1.urlhash(), ie2.urlhash());
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//System.out.println("** '" + ie1.getUrlHash() + "'.compareTo('" + ie2.getUrlHash() + "')="+c);
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if (c < 0) {
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if (e1.hasNext()) ie1 = e1.next(); else break;
|
|
} else if (c > 0) {
|
|
if (e2.hasNext()) ie2 = e2.next(); else break;
|
|
} else {
|
|
// we have found the same urls in different searches!
|
|
ie1 = factory.produceFast(ie1, true);
|
|
ie1.join(ie2);
|
|
if (ie1.distance() <= maxDistance) conj.add(ie1);
|
|
if (e1.hasNext()) ie1 = e1.next(); else break;
|
|
if (e2.hasNext()) ie2 = e2.next(); else break;
|
|
}
|
|
}
|
|
}
|
|
return conj;
|
|
}
|
|
|
|
public static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> excludeDestructive(
|
|
final ReferenceFactory<ReferenceType> factory,
|
|
final ReferenceContainer<ReferenceType> pivot,
|
|
final ReferenceContainer<ReferenceType> excl) {
|
|
if (pivot == null) return null;
|
|
if (excl == null) return pivot;
|
|
if (pivot.isEmpty()) return null;
|
|
if (excl.isEmpty()) return pivot;
|
|
|
|
// decide which method to use
|
|
final int high = ((pivot.size() > excl.size()) ? pivot.size() : excl.size());
|
|
final int low = ((pivot.size() > excl.size()) ? excl.size() : pivot.size());
|
|
final int stepsEnum = 10 * (high + low - 1);
|
|
final int stepsTest = 12 * log2(high) * low;
|
|
|
|
// start most efficient method
|
|
if (stepsEnum > stepsTest) {
|
|
return excludeDestructiveByTest(pivot, excl);
|
|
}
|
|
return excludeDestructiveByEnumeration(factory, pivot, excl);
|
|
}
|
|
|
|
private static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> excludeDestructiveByTest(
|
|
final ReferenceContainer<ReferenceType> pivot,
|
|
final ReferenceContainer<ReferenceType> excl) {
|
|
assert pivot.rowdef.equals(excl.rowdef) : "small = " + pivot.rowdef.toString() + "; large = " + excl.rowdef.toString();
|
|
final int keylength = pivot.rowdef.width(0);
|
|
assert (keylength == excl.rowdef.width(0));
|
|
final boolean iterate_pivot = pivot.size() < excl.size();
|
|
final Iterator<ReferenceType> se = (iterate_pivot) ? pivot.entries() : excl.entries();
|
|
Reference ie0, ie1;
|
|
while (se.hasNext()) {
|
|
ie0 = se.next();
|
|
ie1 = excl.getReference(ie0.urlhash());
|
|
if ((ie0 != null) && (ie1 != null)) {
|
|
assert (ie0.urlhash().length == keylength) : "ie0.urlHash() = " + ASCII.String(ie0.urlhash());
|
|
assert (ie1.urlhash().length == keylength) : "ie1.urlHash() = " + ASCII.String(ie1.urlhash());
|
|
if (iterate_pivot) se.remove(); pivot.delete(ie0.urlhash());
|
|
}
|
|
}
|
|
return pivot;
|
|
}
|
|
|
|
private static <ReferenceType extends Reference> ReferenceContainer<ReferenceType> excludeDestructiveByEnumeration(
|
|
final ReferenceFactory<ReferenceType> factory,
|
|
final ReferenceContainer<ReferenceType> pivot,
|
|
final ReferenceContainer<ReferenceType> excl) {
|
|
assert pivot.rowdef.equals(excl.rowdef) : "i1 = " + pivot.rowdef.toString() + "; i2 = " + excl.rowdef.toString();
|
|
final int keylength = pivot.rowdef.width(0);
|
|
assert (keylength == excl.rowdef.width(0));
|
|
if (!((pivot.rowdef.getOrdering().signature().equals(excl.rowdef.getOrdering().signature())))) return pivot; // ordering must be equal
|
|
final Iterator<ReferenceType> e1 = pivot.entries();
|
|
final Iterator<ReferenceType> e2 = excl.entries();
|
|
int c;
|
|
if ((e1.hasNext()) && (e2.hasNext())) {
|
|
ReferenceType ie1;
|
|
ReferenceType ie2;
|
|
ie1 = e1.next();
|
|
ie2 = e2.next();
|
|
|
|
while (true) {
|
|
assert (ie1.urlhash().length == keylength) : "ie1.urlHash() = " + ASCII.String(ie1.urlhash());
|
|
assert (ie2.urlhash().length == keylength) : "ie2.urlHash() = " + ASCII.String(ie2.urlhash());
|
|
c = pivot.rowdef.getOrdering().compare(ie1.urlhash(), ie2.urlhash());
|
|
//System.out.println("** '" + ie1.getUrlHash() + "'.compareTo('" + ie2.getUrlHash() + "')="+c);
|
|
if (c < 0) {
|
|
if (e1.hasNext()) ie1 = e1.next(); else break;
|
|
} else if (c > 0) {
|
|
if (e2.hasNext()) ie2 = e2.next(); else break;
|
|
} else {
|
|
// we have found the same urls in different searches!
|
|
ie1 = factory.produceFast(ie1, true);
|
|
ie1.join(ie2);
|
|
e1.remove();
|
|
if (e1.hasNext()) ie1 = e1.next(); else break;
|
|
if (e2.hasNext()) ie2 = e2.next(); else break;
|
|
}
|
|
}
|
|
}
|
|
return pivot;
|
|
}
|
|
|
|
@Override
|
|
public synchronized String toString() {
|
|
return "C[" + ASCII.String(this.termHash) + "] has " + size() + " entries";
|
|
}
|
|
|
|
@Override
|
|
public int hashCode() {
|
|
return (int) Base64Order.enhancedCoder.decodeLong(this.termHash, 0, 4);
|
|
}
|
|
|
|
}
|