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[Coral-Trino] Cast char fields, if necessary, to varchar type in the …
…set operation In case of dealing with Hive views which make use of set operation (e.g. UNION) ensure that the `char` fields from the inner SELECT statements have the same type as the output field types of the set operation. Due to wrong coercion between `varchar` and `char` in Trino, as described in trinodb/trino#9031 , a work-around needs to be applied in case of translating Hive views which contain a UNION dealing with char and varchar types. The work-around consists in the explicit cast of the field having char type towards varchar type corresponding of the set operation output type.
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180
...rc/main/java/com/linkedin/coral/trino/rel2trino/transformers/UnionSqlCallTransformer.java
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/** | ||
* Copyright 2023 LinkedIn Corporation. All rights reserved. | ||
* Licensed under the BSD-2 Clause license. | ||
* See LICENSE in the project root for license information. | ||
*/ | ||
package com.linkedin.coral.trino.rel2trino.transformers; | ||
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import java.util.ArrayList; | ||
import java.util.List; | ||
import java.util.Optional; | ||
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import org.apache.calcite.rel.type.RelDataType; | ||
import org.apache.calcite.sql.SqlBasicTypeNameSpec; | ||
import org.apache.calcite.sql.SqlCall; | ||
import org.apache.calcite.sql.SqlCallBinding; | ||
import org.apache.calcite.sql.SqlDataTypeSpec; | ||
import org.apache.calcite.sql.SqlIdentifier; | ||
import org.apache.calcite.sql.SqlKind; | ||
import org.apache.calcite.sql.SqlNode; | ||
import org.apache.calcite.sql.SqlNodeList; | ||
import org.apache.calcite.sql.SqlSelect; | ||
import org.apache.calcite.sql.SqlTypeNameSpec; | ||
import org.apache.calcite.sql.fun.SqlCastFunction; | ||
import org.apache.calcite.sql.fun.SqlStdOperatorTable; | ||
import org.apache.calcite.sql.parser.SqlParserPos; | ||
import org.apache.calcite.sql.type.SqlTypeName; | ||
import org.apache.calcite.sql.validate.SqlValidator; | ||
import org.apache.calcite.sql.validate.SqlValidatorScope; | ||
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import com.linkedin.coral.common.transformers.SqlCallTransformer; | ||
import com.linkedin.coral.common.utils.TypeDerivationUtil; | ||
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import static org.apache.calcite.rel.rel2sql.SqlImplementor.POS; | ||
import static org.apache.calcite.sql.parser.SqlParserPos.ZERO; | ||
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/** | ||
* This transformer class is used to adapt expressions in | ||
* set statements (e.g.: `UNION`, `INTERSECT`, `MINUS`) | ||
* in case that the branches of the set statement contain fields in | ||
* char family which have different types. | ||
* The `char` fields which are differing from the expected `varchar` output | ||
* of the set statement will be adapted through an explicit `CAST` to the `varchar` type. | ||
* | ||
* @see <a href="https://github.com/trinodb/trino/issues/9031">Change char/varchar coercion in Trino</a> | ||
*/ | ||
public class UnionSqlCallTransformer extends SqlCallTransformer { | ||
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public UnionSqlCallTransformer(TypeDerivationUtil typeDerivationUtil) { | ||
super(typeDerivationUtil); | ||
} | ||
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@Override | ||
protected boolean condition(SqlCall sqlCall) { | ||
return sqlCall.getOperator().kind == SqlKind.UNION || sqlCall.getOperator().kind == SqlKind.INTERSECT | ||
|| sqlCall.getOperator().kind == SqlKind.MINUS; | ||
} | ||
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@Override | ||
protected SqlCall transform(SqlCall sqlCall) { | ||
List<SqlNode> operandsList = sqlCall.getOperandList(); | ||
if (sqlCall.getOperandList().isEmpty()) { | ||
return sqlCall; | ||
} | ||
Integer selectListSize = null; | ||
// Ensure all the operand are SELECT nodes and they have the same number of expressions projected | ||
for (SqlNode operand : operandsList) { | ||
if (operand.getKind() == SqlKind.SELECT && ((SqlSelect) operand).getSelectList() != null) { | ||
SqlSelect select = (SqlSelect) operand; | ||
List<SqlNode> selectList = select.getSelectList().getList(); | ||
if (selectListSize == null) { | ||
selectListSize = selectList.size(); | ||
} else if (selectListSize != selectList.size()) { | ||
return sqlCall; | ||
} | ||
} else { | ||
return sqlCall; | ||
} | ||
} | ||
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List<Optional<RelDataType>> leastRestrictiveSelectItemTypes = new ArrayList<>(selectListSize); | ||
for (int i = 0; i < selectListSize; i++) { | ||
List<RelDataType> selectItemTypes = new ArrayList<>(); | ||
boolean selectItemTypesDerived = true; | ||
for (SqlNode operand : operandsList) { | ||
SqlSelect select = (SqlSelect) operand; | ||
List<SqlNode> selectList = select.getSelectList().getList(); | ||
SqlNode selectItem = selectList.get(i); | ||
if (selectItem.getKind() == SqlKind.IDENTIFIER && ((SqlIdentifier) selectItem).isStar()) { | ||
// The type derivation of * on the SqlNode layer is not supported now. | ||
return sqlCall; | ||
} | ||
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try { | ||
selectItemTypes.add(deriveRelDatatype(selectItem)); | ||
} catch (RuntimeException e) { | ||
// The type derivation may fail for complex expressions | ||
selectItemTypesDerived = false; | ||
break; | ||
} | ||
} | ||
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Optional<RelDataType> leastRestrictiveSelectItemType = | ||
selectItemTypesDerived ? Optional.ofNullable(leastRestrictive(selectItemTypes)) : Optional.empty(); | ||
leastRestrictiveSelectItemTypes.add(leastRestrictiveSelectItemType); | ||
} | ||
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boolean operandsUpdated = false; | ||
for (SqlNode operand : operandsList) { | ||
SqlSelect select = (SqlSelect) operand; | ||
List<SqlNode> selectList = select.getSelectList().getList(); | ||
List<SqlNode> rewrittenSelectList = null; | ||
for (int i = 0; i < selectList.size(); i++) { | ||
SqlNode selectItem = selectList.get(i); | ||
if (!leastRestrictiveSelectItemTypes.get(i).isPresent()) { | ||
// Couldn't determine the type for all the expressions corresponding to the selection index | ||
if (rewrittenSelectList != null) { | ||
rewrittenSelectList.add(selectItem); | ||
} | ||
continue; | ||
} | ||
RelDataType leastRestrictiveSelectItemType = leastRestrictiveSelectItemTypes.get(i).get(); | ||
RelDataType selectItemType = deriveRelDatatype(selectItem); | ||
if (selectItemType.getSqlTypeName() == SqlTypeName.CHAR | ||
&& leastRestrictiveSelectItemType.getSqlTypeName() == SqlTypeName.VARCHAR) { | ||
// Work-around for the Trino limitation in dealing UNION statements between `char` and `varchar`. | ||
// See https://github.com/trinodb/trino/issues/9031 | ||
SqlNode rewrittenSelectItem = castNode(selectItem, leastRestrictiveSelectItemType); | ||
if (rewrittenSelectList == null) { | ||
rewrittenSelectList = new ArrayList<>(selectListSize); | ||
rewrittenSelectList.addAll(selectList.subList(0, i)); | ||
operandsUpdated = true; | ||
} | ||
rewrittenSelectList.add(rewrittenSelectItem); | ||
} else if (rewrittenSelectList != null) { | ||
rewrittenSelectList.add(selectItem); | ||
} | ||
} | ||
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if (rewrittenSelectList != null) { | ||
select.setSelectList(new SqlNodeList(rewrittenSelectList, SqlParserPos.ZERO)); | ||
} | ||
} | ||
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if (operandsUpdated) { | ||
return sqlCall.getOperator().createCall(POS, operandsList); | ||
} | ||
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return sqlCall; | ||
} | ||
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private SqlNode castNode(SqlNode node, RelDataType type) { | ||
if (node.getKind() == SqlKind.AS) { | ||
SqlNode expression = ((SqlCall) node).getOperandList().get(0); | ||
SqlIdentifier identifier = (SqlIdentifier) ((SqlCall) node).getOperandList().get(1); | ||
return SqlStdOperatorTable.AS.createCall(POS, new SqlCastFunction() { | ||
@Override | ||
public RelDataType deriveType(SqlValidator validator, SqlValidatorScope scope, SqlCall call) { | ||
SqlCallBinding opBinding = new SqlCallBinding(validator, scope, call); | ||
return inferReturnType(opBinding); | ||
} | ||
}.createCall(ZERO, expression, getSqlDataTypeSpec(type)), identifier); | ||
} else { | ||
// If there's no existing alias, just do the cast | ||
return new SqlCastFunction() { | ||
@Override | ||
public RelDataType deriveType(SqlValidator validator, SqlValidatorScope scope, SqlCall call) { | ||
SqlCallBinding opBinding = new SqlCallBinding(validator, scope, call); | ||
return inferReturnType(opBinding); | ||
} | ||
}.createCall(ZERO, node, getSqlDataTypeSpec(type)); | ||
} | ||
} | ||
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private static SqlDataTypeSpec getSqlDataTypeSpec(RelDataType relDataType) { | ||
final SqlTypeNameSpec typeNameSpec = new SqlBasicTypeNameSpec(relDataType.getSqlTypeName(), | ||
relDataType.getPrecision(), relDataType.getScale(), null, ZERO); | ||
return new SqlDataTypeSpec(typeNameSpec, ZERO); | ||
} | ||
} |
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