Class TernaryOperatorNode
java.lang.Object
org.apache.derby.impl.sql.compile.QueryTreeNode
org.apache.derby.impl.sql.compile.ValueNode
org.apache.derby.impl.sql.compile.OperatorNode
org.apache.derby.impl.sql.compile.TernaryOperatorNode
- All Implemented Interfaces:
Visitable
- Direct Known Subclasses:
LikeEscapeOperatorNode
A TernaryOperatorNode represents a built-in ternary operators.
This covers built-in functions like
substr().
Java operators are not represented here: the JSQL language allows Java
methods to be called from expressions, but not Java operators.-
Field Summary
FieldsModifier and TypeFieldDescription(package private) static final int(package private) static final int(package private) static final int(package private) static final int(package private) static final int(package private) static final int(package private) final intThis class is used to hold logically different objects for space efficiency.(package private) String(package private) ValueNode(package private) String(package private) String(package private) ValueNode(package private) String(package private) String(package private) String(package private) ValueNode(package private) static final String[][](package private) static final String[](package private) static final String[](package private) static final String[](package private) intFields inherited from class ValueNode
transformedFields inherited from class QueryTreeNode
AUTOINCREMENT_CREATE_MODIFY, AUTOINCREMENT_CYCLE, AUTOINCREMENT_INC_INDEX, AUTOINCREMENT_IS_AUTOINCREMENT_INDEX, AUTOINCREMENT_START_INDEX -
Constructor Summary
ConstructorsConstructorDescriptionTernaryOperatorNode(ValueNode receiver, ValueNode leftOperand, ValueNode rightOperand, int kind, int trimType, ContextManager cm) Constructor for a TernaryOperatorNodeTernaryOperatorNode(ValueNode receiver, ValueNode leftOperand, ValueNode rightOperand, int kind, ContextManager cm) Constructor for a TernaryOperatorNode -
Method Summary
Modifier and TypeMethodDescription(package private) voidAccept the visitor for all visitable children of this node.private voidbindDateTimeArg(ValueNode arg, int argNumber) (package private) ValueNodebindExpression(FromList fromList, SubqueryList subqueryList, List<AggregateNode> aggregates) Bind this expression.private booleanbindParameter(ValueNode arg, int jdbcType) This method gets called for non-character string types and hence no need to set any collation info.protected voidprotected ValueNode(package private) booleancategorize(JBitSet referencedTabs, boolean simplePredsOnly) Categorize this predicate.(package private) booleanconstantExpression(PredicateList whereClause) Return whether or not this expression tree represents a constant value.private voidconstructorMinion(ValueNode receiver, ValueNode leftOperand, ValueNode rightOperand, int trimType) (package private) voidDo code generation for this ternary operator.(package private) ValueNodeGet the leftOperand(package private) ValueNode(package private) ValueNodeGet the rightOperandprivate DataTypeDescriptor(package private) booleanReturn whether or not this expression tree represents a constant expression.(package private) booleanTests if this node is equivalent to the specified ValueNode.(package private) booleanSome node classes represent several logical node types (to reduce footprint), which we call kinds.(package private) ValueNodeBind locate operator The variable receiver is the string which will searched The variable leftOperand is the search character that will looked in the receiver variable.(package private) ValueNodepreprocess(int numTables, FromList outerFromList, SubqueryList outerSubqueryList, PredicateList outerPredicateList) Preprocess an expression tree.(package private) voidprintSubNodes(int depth) Prints the sub-nodes of this object.(package private) ValueNodeRemap all ColumnReferences in this tree to be clones of the underlying expression.(package private) voidsetLeftOperand(ValueNode newLeftOperand) Set the leftOperand to the specified ValueNodeprivate voidsetResultType(TypeId resultType) (package private) voidsetRightOperand(ValueNode newRightOperand) Set the rightOperand to the specified ValueNode(package private) ValueNodeBind substr expression.private voidthrowBadType(String funcName, String type) private ValueNodeBind TIMESTAMPADD expression.private ValueNodeBind TIMESTAMPDIFF expression.toString()Convert this object to a String.private ValueNodetrimBind()Bind trim expression.Methods inherited from class OperatorNode
pushSqlXmlUtilMethods inherited from class ValueNode
bindExpression, changeToCNF, checkIsBoolean, checkTopPredicatesForEqualsConditions, copyFields, eliminateNots, evaluateConstantExpressions, genEqualsFalseTree, generate, genIsNullTree, genSQLJavaSQLTree, getClone, getColumnName, getConstantValueAsObject, getDataValueFactory, getOrderableVariantType, getSchemaName, getSourceResultColumn, getTableName, getTablesReferenced, getTransformed, getTypeCompiler, getTypeId, getTypeServices, isBinaryEqualsOperatorNode, isBooleanFalse, isBooleanTrue, isCloneable, isInListProbeNode, isParameterNode, isRelationalOperator, optimizableEqualityNode, putAndsOnTop, requiresTypeFromContext, selectivity, setCollationInfo, setCollationInfo, setCollationUsingCompilationSchema, setCollationUsingCompilationSchema, setNullability, setTransformed, setType, setType, setType, updatableByCursor, verifyChangeToCNF, verifyEliminateNots, verifyPutAndsOnTopMethods inherited from class QueryTreeNode
accept, addTag, addUDTUsagePriv, addUDTUsagePriv, bindOffsetFetch, bindRowMultiSet, bindUserCatalogType, bindUserType, checkReliability, checkReliability, convertDefaultNode, copyTagsFrom, createTypeDependency, debugFlush, debugPrint, disablePrivilegeCollection, formatNodeString, generateAuthorizeCheck, getBeginOffset, getClassFactory, getCompilerContext, getContext, getContextManager, getDataDictionary, getDependencyManager, getEndOffset, getExecutionFactory, getGenericConstantActionFactory, getIntProperty, getLanguageConnectionContext, getLongProperty, getNullNode, getOffsetOrderedNodes, getOptimizerFactory, getOptimizerTracer, getParameterTypes, getSchemaDescriptor, getSchemaDescriptor, getStatementType, getTableDescriptor, getTypeCompiler, getUDTDesc, isAtomic, isPrivilegeCollectionRequired, isSessionSchema, isSessionSchema, makeConstantAction, makeTableName, makeTableName, nodeHeader, optimizerTracingIsOn, orReliability, parseSearchCondition, parseStatement, printLabel, referencesSessionSchema, resolveTableToSynonym, setBeginOffset, setEndOffset, setRefActionInfo, stackPrint, taggedWith, treePrint, treePrint, verifyClassExist
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Field Details
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K_TRIM
static final int K_TRIM- See Also:
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K_LOCATE
static final int K_LOCATE- See Also:
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K_SUBSTRING
static final int K_SUBSTRING- See Also:
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K_LIKE
static final int K_LIKE- See Also:
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K_TIMESTAMPADD
static final int K_TIMESTAMPADD- See Also:
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K_TIMESTAMPDIFF
static final int K_TIMESTAMPDIFF- See Also:
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kind
final int kindThis class is used to hold logically different objects for space efficiency.kindrepresents the logical object type. See alsoValueNode.isSameNodeKind(ValueNode). -
operator
String operator -
methodName
String methodName -
receiver
ValueNode receiver -
leftOperand
ValueNode leftOperand -
rightOperand
ValueNode rightOperand -
resultInterfaceType
String resultInterfaceType -
receiverInterfaceType
String receiverInterfaceType -
leftInterfaceType
String leftInterfaceType -
rightInterfaceType
String rightInterfaceType -
trimType
int trimType -
TernaryOperators
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TernaryMethodNames
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TernaryResultType
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TernaryArgType
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Constructor Details
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TernaryOperatorNode
TernaryOperatorNode(ValueNode receiver, ValueNode leftOperand, ValueNode rightOperand, int kind, ContextManager cm) Constructor for a TernaryOperatorNode- Parameters:
receiver- The receiver (e.g., string being operated on insubstr())leftOperand- The left operand of the noderightOperand- The right operand of the nodekind- The kind of the operandcm- The context manager
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TernaryOperatorNode
TernaryOperatorNode(ValueNode receiver, ValueNode leftOperand, ValueNode rightOperand, int kind, int trimType, ContextManager cm) Constructor for a TernaryOperatorNode- Parameters:
receiver- The receiver (e.g., string being operated on insubstr())leftOperand- The left operand of the noderightOperand- The right operand of the nodekind- The kind of the operandtrimType- The trim typecm- The context manager
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Method Details
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constructorMinion
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toString
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printSubNodes
void printSubNodes(int depth) Prints the sub-nodes of this object. See QueryTreeNode.java for how tree printing is supposed to work.- Overrides:
printSubNodesin classQueryTreeNode- Parameters:
depth- The depth of this node in the tree
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bindExpression
ValueNode bindExpression(FromList fromList, SubqueryList subqueryList, List<AggregateNode> aggregates) throws StandardException Bind this expression. This means binding the sub-expressions, as well as figuring out what the return type is for this expression.- Overrides:
bindExpressionin classValueNode- Parameters:
fromList- The FROM list for the query this expression is in, for binding columns.subqueryList- The subquery list being built as we find SubqueryNodesaggregates- The aggregate list being built as we find AggregateNodes- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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preprocess
ValueNode preprocess(int numTables, FromList outerFromList, SubqueryList outerSubqueryList, PredicateList outerPredicateList) throws StandardException Preprocess an expression tree. We do a number of transformations here (including subqueries, IN lists, LIKE and BETWEEN) plus subquery flattening. NOTE: This is done before the outer ResultSetNode is preprocessed.- Overrides:
preprocessin classValueNode- Parameters:
numTables- Number of tables in the DML StatementouterFromList- FromList from outer query blockouterSubqueryList- SubqueryList from outer query blockouterPredicateList- PredicateList from outer query block- Returns:
- The modified expression
- Throws:
StandardException- Thrown on error
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generateExpression
Do code generation for this ternary operator.- Overrides:
generateExpressionin classValueNode- Parameters:
acb- The ExpressionClassBuilder for the class we're generatingmb- The method the expression will go into- Throws:
StandardException- Thrown on error
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setLeftOperand
Set the leftOperand to the specified ValueNode- Parameters:
newLeftOperand- The new leftOperand
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getLeftOperand
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setRightOperand
Set the rightOperand to the specified ValueNode- Parameters:
newRightOperand- The new rightOperand
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getRightOperand
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categorize
Categorize this predicate. Initially, this means building a bit map of the referenced tables for each predicate. If the source of this ColumnReference (at the next underlying level) is not a ColumnReference or a VirtualColumnNode then this predicate will not be pushed down. For example, in: select * from (select 1 from s) a (x) where x = 1 we will not push down x = 1. NOTE: It would be easy to handle the case of a constant, but if the inner SELECT returns an arbitrary expression, then we would have to copy that tree into the pushed predicate, and that tree could contain subqueries and method calls. RESOLVE - revisit this issue once we have views.- Overrides:
categorizein classValueNode- Parameters:
referencedTabs- JBitSet with bit map of referenced FromTablessimplePredsOnly- Whether or not to consider method calls, field references and conditional nodes when building bit map- Returns:
- boolean Whether or not source.expression is a ColumnReference or a VirtualColumnNode.
- Throws:
StandardException- Thrown on error
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remapColumnReferencesToExpressions
Remap all ColumnReferences in this tree to be clones of the underlying expression.- Overrides:
remapColumnReferencesToExpressionsin classValueNode- Returns:
- ValueNode The remapped expression tree.
- Throws:
StandardException- Thrown on error
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isConstantExpression
boolean isConstantExpression()Return whether or not this expression tree represents a constant expression.- Overrides:
isConstantExpressionin classValueNode- Returns:
- Whether or not this expression tree represents a constant expression.
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constantExpression
Description copied from class:ValueNodeReturn whether or not this expression tree represents a constant value. In this case, "constant" means that it will always evaluate to the same thing, even if it includes columns. A column is constant if it is compared to a constant expression.- Overrides:
constantExpressionin classValueNode- Returns:
- True means this expression tree represents a constant value.
- See Also:
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acceptChildren
Accept the visitor for all visitable children of this node.- Overrides:
acceptChildrenin classQueryTreeNode- Parameters:
v- the visitor- Throws:
StandardException- on error
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trimBind
Bind trim expression. The variable receiver is the string that needs to be trimmed. The variable leftOperand is the character that needs to be trimmed from receiver.- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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setResultType
- Throws:
StandardException
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locateBind
Bind locate operator The variable receiver is the string which will searched The variable leftOperand is the search character that will looked in the receiver variable.- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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castArgToString
- Throws:
StandardException
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substrBind
Bind substr expression.- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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timestampAddBind
Bind TIMESTAMPADD expression.- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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timestampDiffBind
Bind TIMESTAMPDIFF expression.- Returns:
- The new top of the expression tree.
- Throws:
StandardException- Thrown on error
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bindDateTimeArg
- Throws:
StandardException
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bindParameter
This method gets called for non-character string types and hence no need to set any collation info. Collation applies only to character string types.- Parameters:
arg- Check if arg is a ? param and if yes, then set it's type to jdbcType if arg doesn't have a type associated with it.jdbcType- Associate this type with arg if arg is a ? param with no type associated with it- Returns:
- true if arg is a ? param with no type associated with it
- Throws:
StandardException
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getReceiver
ValueNode getReceiver() -
throwBadType
- Throws:
StandardException
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bindToBuiltIn
- Throws:
StandardException
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getVarcharDescriptor
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isSameNodeKind
Description copied from class:ValueNodeSome node classes represent several logical node types (to reduce footprint), which we call kinds. This means that implementations ofValueNode.isEquivalent(ValueNode)cannot always just useinstanceofto check if the other node represents the same kind. Hence this method needs to be overridden by all node classes that represent several kinds. This default implementation does not look at kinds. It is only called from implementations ofisEquivalent.- Overrides:
isSameNodeKindin classValueNode- Parameters:
o- The other value node whose kind we want to compare with.- Returns:
trueifthisandorepresent the same logical node type, i.e. kind.
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isEquivalent
Description copied from class:ValueNodeTests if this node is equivalent to the specified ValueNode. Two ValueNodes are considered equivalent if they will evaluate to the same value during query execution.This method provides basic expression matching facility for the derived class of ValueNode and it is used by the language layer to compare the node structural form of the two expressions for equivalence at bind phase.
Note that it is not comparing the actual row values at runtime to produce a result; hence, when comparing SQL NULLs, they are considered to be equivalent and not unknown.
One usage case of this method in this context is to compare the select column expression against the group by expression to check if they are equivalent. e.g.:
SELECT c1+c2 FROM t1 GROUP BY c1+c2
In general, node equivalence is determined by the derived class of ValueNode. But they generally abide to the rules below:
- The two ValueNodes must be of the same node type to be considered equivalent. e.g.: CastNode vs. CastNode - equivalent (if their args also match), ColumnReference vs CastNode - not equivalent.
- If node P contains other ValueNode(s) and so on, those node(s) must also be of the same node type to be considered equivalent.
- If node P takes a parameter list, then the number of arguments and its arguments for the two nodes must also match to be considered equivalent. e.g.: CAST(c1 as INTEGER) vs CAST(c1 as SMALLINT), they are not equivalent.
- When comparing SQL NULLs in this context, they are considered to be equivalent.
- If this does not apply or it is determined that the two nodes are not equivalent then the derived class of this method should return false; otherwise, return true.
- Specified by:
isEquivalentin classValueNode- Parameters:
o- the node to compare this ValueNode against.- Returns:
trueif the two nodes are equivalent,falseotherwise.- Throws:
StandardException
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