PercentileApproxArray.java
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// to you under the Apache License, Version 2.0 (the
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//
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//
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package org.apache.doris.nereids.trees.expressions.functions.agg;
import org.apache.doris.catalog.FunctionSignature;
import org.apache.doris.nereids.exceptions.AnalysisException;
import org.apache.doris.nereids.trees.expressions.Expression;
import org.apache.doris.nereids.trees.expressions.functions.ExplicitlyCastableSignature;
import org.apache.doris.nereids.trees.expressions.literal.ArrayLiteral;
import org.apache.doris.nereids.trees.expressions.literal.Literal;
import org.apache.doris.nereids.trees.expressions.literal.NullLiteral;
import org.apache.doris.nereids.trees.expressions.visitor.ExpressionVisitor;
import org.apache.doris.nereids.types.ArrayType;
import org.apache.doris.nereids.types.DoubleType;
import com.google.common.base.Preconditions;
import com.google.common.collect.ImmutableList;
import java.util.ArrayList;
import java.util.List;
/**
* AggregateFunction 'percentile_approx_array'.
*/
public class PercentileApproxArray extends NotNullableAggregateFunction
implements ExplicitlyCastableSignature {
public static final List<FunctionSignature> SIGNATURES = ImmutableList.of(
FunctionSignature.ret(ArrayType.of(DoubleType.INSTANCE))
.args(DoubleType.INSTANCE, ArrayType.of(DoubleType.INSTANCE)),
FunctionSignature.ret(ArrayType.of(DoubleType.INSTANCE))
.args(DoubleType.INSTANCE, ArrayType.of(DoubleType.INSTANCE), DoubleType.INSTANCE)
);
public PercentileApproxArray(Expression arg0, Expression arg1) {
this(false, arg0, arg1);
}
public PercentileApproxArray(boolean distinct, Expression arg0, Expression arg1) {
super("percentile_approx_array", distinct, arg0, arg1);
}
public PercentileApproxArray(Expression arg0, Expression arg1, Expression arg2) {
this(false, arg0, arg1, arg2);
}
public PercentileApproxArray(boolean distinct, Expression arg0, Expression arg1,
Expression arg2) {
super("percentile_approx_array", distinct, arg0, arg1, arg2);
}
/** constructor for withChildren and reuse signature */
private PercentileApproxArray(AggregateFunctionParams functionParams) {
super(functionParams);
}
@Override
public void checkLegalityBeforeTypeCoercion() {
if (!getArgument(1).isConstant()) {
throw new AnalysisException(
"percentile_approx_array requires second parameter must be a constant : " + this.toSql());
}
if (arity() == 3 && !getArgument(2).isConstant()) {
throw new AnalysisException(
"percentile_approx_array requires the third parameter must be a constant : " + this.toSql());
}
}
@Override
public void checkLegalityAfterRewrite() {
checkLegalityBeforeTypeCoercion();
Expression quantiles = getArgument(1);
if (!(quantiles instanceof ArrayLiteral)) {
return;
}
for (Expression item : ((ArrayLiteral) quantiles).getValue()) {
if (item instanceof NullLiteral) {
throw new AnalysisException(
"percentile_approx_array quantile should not be null : " + this.toSql());
}
if (!(item instanceof Literal) || !item.getDataType().isNumericType()) {
continue;
}
double value = ((Literal) item).getDouble();
if (!Double.isFinite(value) || value < 0.0 || value > 1.0) {
throw new AnalysisException("percentile_approx_array quantile must be in [0, 1], but got "
+ value + ": " + this.toSql());
}
}
}
@Override
public PercentileApproxArray withDistinctAndChildren(boolean distinct, List<Expression> children) {
Preconditions.checkArgument(children.size() == 2 || children.size() == 3);
return new PercentileApproxArray(getFunctionParams(distinct, children));
}
@Override
public <R, C> R accept(ExpressionVisitor<R, C> visitor, C context) {
return visitor.visitPercentileApproxArray(this, context);
}
@Override
public List<FunctionSignature> getSignatures() {
return SIGNATURES;
}
@Override
public Expression resultForEmptyInput() {
return new ArrayLiteral(new ArrayList<>(), this.getDataType());
}
}