/** * 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.hadoop.hive.ql.exec.vector.expressions.aggregates; import org.apache.hadoop.hive.ql.exec.Description; import org.apache.hadoop.hive.ql.exec.vector.LongColumnVector; import org.apache.hadoop.hive.ql.exec.vector.VectorAggregationBufferRow; import org.apache.hadoop.hive.ql.exec.vector.VectorizedRowBatch; import org.apache.hadoop.hive.ql.exec.vector.expressions.VectorExpression; import org.apache.hadoop.hive.ql.metadata.HiveException; import org.apache.hadoop.hive.ql.plan.AggregationDesc; import org.apache.hadoop.hive.ql.util.JavaDataModel; import org.apache.hadoop.hive.serde2.objectinspector.ObjectInspector; import org.apache.hadoop.hive.serde2.objectinspector.primitive.PrimitiveObjectInspectorFactory; import org.apache.hadoop.io.LongWritable; /** * VectorUDAFCountMerge. Vectorized implementation for COUNT aggregate on reduce-side (merge). */ @Description(name = "count", value = "_FUNC_(expr) - Returns the merged sum value of expr (vectorized, type: long)") public class VectorUDAFCountMerge extends VectorAggregateExpression { private static final long serialVersionUID = 1L; /** * class for storing the current aggregate value. */ static class Aggregation implements AggregationBuffer { private static final long serialVersionUID = 1L; transient private long value; @Override public int getVariableSize() { throw new UnsupportedOperationException(); } @Override public void reset() { value = 0L; } } private VectorExpression inputExpression = null; @Override public VectorExpression inputExpression() { return inputExpression; } transient private final LongWritable result; public VectorUDAFCountMerge(VectorExpression inputExpression) { this(); this.inputExpression = inputExpression; } public VectorUDAFCountMerge() { super(); result = new LongWritable(0); } private Aggregation getCurrentAggregationBuffer( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, int row) { VectorAggregationBufferRow mySet = aggregationBufferSets[row]; Aggregation myagg = (Aggregation) mySet.getAggregationBuffer(aggregateIndex); return myagg; } @Override public void aggregateInputSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, VectorizedRowBatch batch) throws HiveException { int batchSize = batch.size; if (batchSize == 0) { return; } inputExpression.evaluate(batch); LongColumnVector inputVector = (LongColumnVector)batch. cols[this.inputExpression.getOutputColumn()]; long[] vector = inputVector.vector; if (inputVector.noNulls) { if (inputVector.isRepeating) { iterateNoNullsRepeatingWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector[0], batchSize); } else { if (batch.selectedInUse) { iterateNoNullsSelectionWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector, batch.selected, batchSize); } else { iterateNoNullsWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector, batchSize); } } } else { if (inputVector.isRepeating) { if (batch.selectedInUse) { iterateHasNullsRepeatingSelectionWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector[0], batchSize, batch.selected, inputVector.isNull); } else { iterateHasNullsRepeatingWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector[0], batchSize, inputVector.isNull); } } else { if (batch.selectedInUse) { iterateHasNullsSelectionWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector, batchSize, batch.selected, inputVector.isNull); } else { iterateHasNullsWithAggregationSelection( aggregationBufferSets, aggregateIndex, vector, batchSize, inputVector.isNull); } } } } private void iterateNoNullsRepeatingWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long value, int batchSize) { for (int i=0; i < batchSize; ++i) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += value; } } private void iterateNoNullsSelectionWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long[] values, int[] selection, int batchSize) { for (int i=0; i < batchSize; ++i) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += values[selection[i]]; } } private void iterateNoNullsWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long[] values, int batchSize) { for (int i=0; i < batchSize; ++i) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += values[i]; } } private void iterateHasNullsRepeatingSelectionWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long value, int batchSize, int[] selection, boolean[] isNull) { if (isNull[0]) { return; } for (int i=0; i < batchSize; ++i) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += value; } } private void iterateHasNullsRepeatingWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long value, int batchSize, boolean[] isNull) { if (isNull[0]) { return; } for (int i=0; i < batchSize; ++i) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += value; } } private void iterateHasNullsSelectionWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long[] values, int batchSize, int[] selection, boolean[] isNull) { for (int j=0; j < batchSize; ++j) { int i = selection[j]; if (!isNull[i]) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, j); myagg.value += values[i]; } } } private void iterateHasNullsWithAggregationSelection( VectorAggregationBufferRow[] aggregationBufferSets, int aggregateIndex, long[] values, int batchSize, boolean[] isNull) { for (int i=0; i < batchSize; ++i) { if (!isNull[i]) { Aggregation myagg = getCurrentAggregationBuffer( aggregationBufferSets, aggregateIndex, i); myagg.value += values[i]; } } } @Override public void aggregateInput(AggregationBuffer agg, VectorizedRowBatch batch) throws HiveException { inputExpression.evaluate(batch); LongColumnVector inputVector = (LongColumnVector)batch. cols[this.inputExpression.getOutputColumn()]; int batchSize = batch.size; if (batchSize == 0) { return; } Aggregation myagg = (Aggregation)agg; long[] vector = inputVector.vector; if (inputVector.isRepeating) { if (inputVector.noNulls) { myagg.value += vector[0]*batchSize; } return; } if (!batch.selectedInUse && inputVector.noNulls) { iterateNoSelectionNoNulls(myagg, vector, batchSize); } else if (!batch.selectedInUse) { iterateNoSelectionHasNulls(myagg, vector, batchSize, inputVector.isNull); } else if (inputVector.noNulls){ iterateSelectionNoNulls(myagg, vector, batchSize, batch.selected); } else { iterateSelectionHasNulls(myagg, vector, batchSize, inputVector.isNull, batch.selected); } } private void iterateSelectionHasNulls( Aggregation myagg, long[] vector, int batchSize, boolean[] isNull, int[] selected) { for (int j=0; j< batchSize; ++j) { int i = selected[j]; if (!isNull[i]) { myagg.value += vector[i]; } } } private void iterateSelectionNoNulls( Aggregation myagg, long[] vector, int batchSize, int[] selected) { for (int i=0; i< batchSize; ++i) { myagg.value += vector[selected[i]]; } } private void iterateNoSelectionHasNulls( Aggregation myagg, long[] vector, int batchSize, boolean[] isNull) { for(int i=0;i<batchSize;++i) { if (!isNull[i]) { myagg.value += vector[i]; } } } private void iterateNoSelectionNoNulls( Aggregation myagg, long[] vector, int batchSize) { for (int i=0;i<batchSize;++i) { myagg.value += vector[i]; } } @Override public AggregationBuffer getNewAggregationBuffer() throws HiveException { return new Aggregation(); } @Override public void reset(AggregationBuffer agg) throws HiveException { Aggregation myAgg = (Aggregation) agg; myAgg.reset(); } @Override public Object evaluateOutput(AggregationBuffer agg) throws HiveException { Aggregation myagg = (Aggregation) agg; result.set (myagg.value); return result; } @Override public ObjectInspector getOutputObjectInspector() { return PrimitiveObjectInspectorFactory.writableLongObjectInspector; } @Override public long getAggregationBufferFixedSize() { JavaDataModel model = JavaDataModel.get(); return JavaDataModel.alignUp( model.object() + model.primitive2() + model.primitive1(), model.memoryAlign()); } @Override public void init(AggregationDesc desc) throws HiveException { // No-op } public VectorExpression getInputExpression() { return inputExpression; } public void setInputExpression(VectorExpression inputExpression) { this.inputExpression = inputExpression; } }