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/*
* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package org.apache.carbondata.core.scan.filter.executer;
import java.io.IOException;
import java.util.BitSet;
import org.apache.carbondata.core.scan.expression.exception.FilterUnsupportedException;
import org.apache.carbondata.core.scan.filter.intf.RowIntf;
import org.apache.carbondata.core.scan.processor.RawBlockletColumnChunks;
import org.apache.carbondata.core.util.BitSetGroup;
public class AndFilterExecuterImpl implements FilterExecuter, ImplicitColumnFilterExecutor {
private FilterExecuter leftExecuter;
private FilterExecuter rightExecuter;
public AndFilterExecuterImpl(FilterExecuter leftExecuter, FilterExecuter rightExecuter) {
this.leftExecuter = leftExecuter;
this.rightExecuter = rightExecuter;
}
@Override
public BitSetGroup applyFilter(RawBlockletColumnChunks rawBlockletColumnChunks,
boolean useBitsetPipeLine) throws FilterUnsupportedException, IOException {
BitSetGroup leftFilters = leftExecuter.applyFilter(rawBlockletColumnChunks, useBitsetPipeLine);
if (leftFilters.isEmpty()) {
return leftFilters;
}
BitSetGroup rightFilter = rightExecuter.applyFilter(rawBlockletColumnChunks, useBitsetPipeLine);
if (rightFilter.isEmpty()) {
return rightFilter;
}
leftFilters.and(rightFilter);
rawBlockletColumnChunks.setBitSetGroup(leftFilters);
return leftFilters;
}
@Override
public BitSet prunePages(RawBlockletColumnChunks rawBlockletColumnChunks)
throws FilterUnsupportedException, IOException {
BitSet leftFilters = leftExecuter.prunePages(rawBlockletColumnChunks);
if (leftFilters.isEmpty()) {
return leftFilters;
}
BitSet rightFilter = rightExecuter.prunePages(rawBlockletColumnChunks);
if (rightFilter.isEmpty()) {
return rightFilter;
}
leftFilters.and(rightFilter);
return leftFilters;
}
@Override
public boolean applyFilter(RowIntf value, int dimOrdinalMax)
throws FilterUnsupportedException, IOException {
return leftExecuter.applyFilter(value, dimOrdinalMax) &&
rightExecuter.applyFilter(value, dimOrdinalMax);
}
@Override
public BitSet isScanRequired(byte[][] blockMaxValue, byte[][] blockMinValue,
boolean[] isMinMaxSet) {
BitSet leftFilters = leftExecuter.isScanRequired(blockMaxValue, blockMinValue, isMinMaxSet);
if (leftFilters.isEmpty()) {
return leftFilters;
}
BitSet rightFilter = rightExecuter.isScanRequired(blockMaxValue, blockMinValue, isMinMaxSet);
if (rightFilter.isEmpty()) {
return rightFilter;
}
leftFilters.and(rightFilter);
return leftFilters;
}
@Override
public void readColumnChunks(RawBlockletColumnChunks rawBlockletColumnChunks) throws IOException {
leftExecuter.readColumnChunks(rawBlockletColumnChunks);
rightExecuter.readColumnChunks(rawBlockletColumnChunks);
}
@Override
public BitSet isFilterValuesPresentInBlockOrBlocklet(byte[][] maxValue, byte[][] minValue,
String uniqueBlockPath, boolean[] isMinMaxSet) {
BitSet leftFilters = null;
if (leftExecuter instanceof ImplicitColumnFilterExecutor) {
leftFilters = ((ImplicitColumnFilterExecutor) leftExecuter)
.isFilterValuesPresentInBlockOrBlocklet(maxValue, minValue, uniqueBlockPath, isMinMaxSet);
} else {
leftFilters = leftExecuter
.isScanRequired(maxValue, minValue, isMinMaxSet);
}
if (leftFilters.isEmpty()) {
return leftFilters;
}
BitSet rightFilter = null;
if (rightExecuter instanceof ImplicitColumnFilterExecutor) {
rightFilter = ((ImplicitColumnFilterExecutor) rightExecuter)
.isFilterValuesPresentInBlockOrBlocklet(maxValue, minValue, uniqueBlockPath, isMinMaxSet);
} else {
rightFilter = rightExecuter.isScanRequired(maxValue, minValue, isMinMaxSet);
}
if (rightFilter.isEmpty()) {
return rightFilter;
}
leftFilters.and(rightFilter);
return leftFilters;
}
@Override
public Boolean isFilterValuesPresentInAbstractIndex(byte[][] maxValue, byte[][] minValue,
boolean[] isMinMaxSet) {
Boolean leftRes;
BitSet tempFilter;
if (leftExecuter instanceof ImplicitColumnFilterExecutor) {
leftRes = ((ImplicitColumnFilterExecutor) leftExecuter)
.isFilterValuesPresentInAbstractIndex(maxValue, minValue, isMinMaxSet);
} else {
tempFilter = leftExecuter
.isScanRequired(maxValue, minValue, isMinMaxSet);
leftRes = !tempFilter.isEmpty();
}
if (!leftRes) {
return leftRes;
}
Boolean rightRes = null;
if (rightExecuter instanceof ImplicitColumnFilterExecutor) {
rightRes = ((ImplicitColumnFilterExecutor) rightExecuter)
.isFilterValuesPresentInAbstractIndex(maxValue, minValue, isMinMaxSet);
} else {
tempFilter = rightExecuter
.isScanRequired(maxValue, minValue, isMinMaxSet);
rightRes = !tempFilter.isEmpty();
}
// Equivalent to leftRes && rightRes.
return rightRes;
}
}