UnboundDictionarySink.java
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package org.apache.doris.nereids.analyzer;
import org.apache.doris.dictionary.Dictionary;
import org.apache.doris.nereids.exceptions.UnboundException;
import org.apache.doris.nereids.memo.GroupExpression;
import org.apache.doris.nereids.properties.LogicalProperties;
import org.apache.doris.nereids.properties.UnboundLogicalProperties;
import org.apache.doris.nereids.trees.expressions.NamedExpression;
import org.apache.doris.nereids.trees.expressions.Slot;
import org.apache.doris.nereids.trees.plans.BlockFuncDepsPropagation;
import org.apache.doris.nereids.trees.plans.Plan;
import org.apache.doris.nereids.trees.plans.PlanType;
import org.apache.doris.nereids.trees.plans.algebra.Sink;
import org.apache.doris.nereids.trees.plans.commands.info.DMLCommandType;
import org.apache.doris.nereids.trees.plans.logical.UnboundLogicalSink;
import org.apache.doris.nereids.trees.plans.visitor.PlanVisitor;
import com.google.common.base.Preconditions;
import com.google.common.collect.ImmutableList;
import java.util.List;
import java.util.Objects;
import java.util.Optional;
/**
* Represent a dictionary sink plan node that has not been bound.
*/
public class UnboundDictionarySink<CHILD_TYPE extends Plan> extends UnboundLogicalSink<CHILD_TYPE>
implements Unbound, Sink, BlockFuncDepsPropagation {
private final Dictionary dictionary;
private final boolean allowAdaptiveLoad;
/**
* create unbound sink for dictionary sink
*/
public UnboundDictionarySink(Dictionary dictionary, CHILD_TYPE child, boolean adaptiveLoad) {
// all the empty arguments is like UnboundTableSink
super(ImmutableList.copyOf(dictionary.getNameWithFullQualifiers().split("\\.")), // nameParts
PlanType.LOGICAL_UNBOUND_DICTIONARY_SINK, // type
ImmutableList.of(), // outputExprs
Optional.empty(), // groupExpression
Optional.empty(), // logicalProperties
dictionary.getColumnNames(), // colNames from dictionary
DMLCommandType.INSERT, // dmlCommandType
child);
this.dictionary = dictionary;
this.allowAdaptiveLoad = adaptiveLoad;
}
public Dictionary getDictionary() {
return dictionary;
}
public boolean allowAdaptiveLoad() {
return allowAdaptiveLoad;
}
@Override
public Plan withChildren(List<Plan> children) {
Preconditions.checkArgument(children.size() == 1, "UnboundDictionarySink only accepts one child");
return new UnboundDictionarySink<>(dictionary, children.get(0), allowAdaptiveLoad);
}
@Override
public UnboundDictionarySink<CHILD_TYPE> withOutputExprs(List<NamedExpression> outputExprs) {
throw new UnboundException("could not call withOutputExprs on UnboundDictionarySink");
}
@Override
public <R, C> R accept(PlanVisitor<R, C> visitor, C context) {
return visitor.visitUnboundDictionarySink(this, context);
}
@Override
public Plan withGroupExpression(Optional<GroupExpression> groupExpression) {
return new UnboundDictionarySink<>(dictionary, child(), allowAdaptiveLoad);
}
@Override
public Plan withGroupExprLogicalPropChildren(Optional<GroupExpression> groupExpression,
Optional<LogicalProperties> logicalProperties, List<Plan> children) {
return new UnboundDictionarySink<>(dictionary, children.get(0), allowAdaptiveLoad);
}
@Override
public LogicalProperties computeLogicalProperties() {
return UnboundLogicalProperties.INSTANCE;
}
@Override
public List<Slot> computeOutput() {
throw new UnboundException("output");
}
@Override
public boolean equals(Object o) {
if (this == o) {
return true;
}
if (o == null || getClass() != o.getClass()) {
return false;
}
UnboundDictionarySink<?> that = (UnboundDictionarySink<?>) o;
return Objects.equals(dictionary, that.dictionary);
}
@Override
public int hashCode() {
return Objects.hash(dictionary);
}
@Override
public String toString() {
return "UnboundDictionarySink{dictionary=" + dictionary + "}";
}
}