MapConcat.java
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package org.apache.doris.nereids.trees.expressions.functions.scalar;
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.functions.PropagateNullable;
import org.apache.doris.nereids.trees.expressions.visitor.ExpressionVisitor;
import org.apache.doris.nereids.types.DataType;
import org.apache.doris.nereids.types.MapType;
import org.apache.doris.nereids.types.NullType;
import org.apache.doris.nereids.util.TypeCoercionUtils;
import com.google.common.collect.ImmutableList;
import java.util.ArrayList;
import java.util.List;
import java.util.Optional;
/**
* ScalarFunction 'map_concat'
*/
public class MapConcat extends ScalarFunction
implements ExplicitlyCastableSignature, PropagateNullable {
public static final List<FunctionSignature> SIGNATURES = ImmutableList.of(
FunctionSignature.ret(MapType.SYSTEM_DEFAULT).args()
);
/**
* constructor with more than 0 arguments.
*/
public MapConcat(Expression... varArgs) {
super("map_concat", varArgs);
}
/**
* private constructor
*/
private MapConcat(ScalarFunctionParams functionParams) {
super(functionParams);
}
@Override
public MapConcat withChildren(List<Expression> children) {
return new MapConcat(getFunctionParams(children));
}
@Override
public <R, C> R accept(ExpressionVisitor<R, C> visitor, C context) {
return visitor.visitMapConcat(this, context);
}
@Override
public List<FunctionSignature> getSignatures() {
if (arity() == 0) {
return SIGNATURES;
} else {
return computeNonEmptySignatures();
}
}
/**
* Compute signatures when arity > 0.
* Extract key and value types, find common type, and construct signatures.
*/
private List<FunctionSignature> computeNonEmptySignatures() {
List<Expression> children = children();
List<DataType> keyTypes = new ArrayList<>();
List<DataType> valueTypes = new ArrayList<>();
for (Expression child : children) {
DataType argType = child.getDataType();
if (argType instanceof MapType) {
MapType mapType = (MapType) argType;
keyTypes.add(mapType.getKeyType());
valueTypes.add(mapType.getValueType());
} else if (!(argType instanceof NullType)) {
throw new AnalysisException("mapconcat function cannot process"
+ "non-map and non-null child elements. "
+ "Invalid SQL: " + toSql());
}
}
Optional<DataType> commonKeyType = TypeCoercionUtils.findWiderCommonType(
keyTypes, true, true);
Optional<DataType> commonValueType = TypeCoercionUtils.findWiderCommonType(
valueTypes, true, true);
if (!commonKeyType.isPresent()) {
throw new AnalysisException("mapconcat cannot find the common key type of " + toSql());
}
if (!commonValueType.isPresent()) {
throw new AnalysisException("mapconcat cannot find the common value type of " + toSql());
}
// Build result map type and signatures
DataType retMapType = MapType.of(commonKeyType.get(), commonValueType.get());
List<DataType> retArgTypes = buildArgTypes(children, retMapType);
return ImmutableList.of(FunctionSignature.of(retMapType, retArgTypes));
}
/**
* Build argument types with type coercion.
* Map arguments are coerced to the result map type.
*/
private List<DataType> buildArgTypes(List<Expression> children, DataType retMapType) {
ImmutableList.Builder<DataType> retArgTypes = ImmutableList.builder();
for (int i = 0; i < children.size(); i++) {
DataType argType = children.get(i).getDataType();
if (argType instanceof MapType) {
retArgTypes.add(retMapType);
} else {
retArgTypes.add(argType);
}
}
return retArgTypes.build();
}
}