object ResolveSubquery extends Rule[LogicalPlan] with PredicateHelper
This rule resolves and rewrites subqueries inside expressions.
Note: CTEs are handled in CTESubstitution.
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final
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==(arg0: Any): Boolean
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def
apply(plan: LogicalPlan): LogicalPlan
Resolve and rewrite all subqueries in an operator tree..
Resolve and rewrite all subqueries in an operator tree..
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final
def
asInstanceOf[T0]: T0
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def
buildBalancedPredicate(expressions: Seq[Expression], op: (Expression, Expression) ⇒ Expression): Expression
Builds a balanced output predicate in bottom up approach, by applying binary operator op pair by pair on input predicates exprs recursively.
Builds a balanced output predicate in bottom up approach, by applying binary operator op pair by pair on input predicates exprs recursively. Example: exprs = [a, b, c, d], op = And, returns (a And b) And (c And d) exprs = [a, b, c, d, e, f], op = And, returns ((a And b) And (c And d)) And (e And f)
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def
canEvaluate(expr: Expression, plan: LogicalPlan): Boolean
Returns true if
exprcan be evaluated using only the output ofplan.Returns true if
exprcan be evaluated using only the output ofplan. This method can be used to determine when it is acceptable to move expression evaluation within a query plan.For example consider a join between two relations R(a, b) and S(c, d).
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canEvaluate(EqualTo(a,b), R)returnstrue-canEvaluate(EqualTo(a,c), R)returnsfalse-canEvaluate(Literal(1), R)returnstrueas literals CAN be evaluated on any plan- Attributes
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def
canEvaluateWithinJoin(expr: Expression): Boolean
Returns true iff
exprcould be evaluated as a condition within join.Returns true iff
exprcould be evaluated as a condition within join.- Attributes
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def
clone(): AnyRef
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def
conf: SQLConf
The active config object within the current scope.
The active config object within the current scope. See SQLConf.get for more information.
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final
def
eq(arg0: AnyRef): Boolean
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def
equals(arg0: Any): Boolean
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def
extractPredicatesWithinOutputSet(condition: Expression, outputSet: AttributeSet): Option[Expression]
Returns a filter that its reference is a subset of
outputSetand it contains the maximum constraints fromcondition.Returns a filter that its reference is a subset of
outputSetand it contains the maximum constraints fromcondition. This is used for predicate pushdown. When there is no such filter,Noneis returned.- Attributes
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def
findExpressionAndTrackLineageDown(exp: Expression, plan: LogicalPlan): Option[(Expression, LogicalPlan)]
Find the origin of where the input references of expression exp were scanned in the tree of plan, and if they originate from a single leaf node.
Find the origin of where the input references of expression exp were scanned in the tree of plan, and if they originate from a single leaf node. Returns optional tuple with Expression, undoing any projections and aliasing that has been done along the way from plan to origin, and the origin LeafNode plan from which all the exp
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def
getAliasMap(exprs: Seq[NamedExpression]): AttributeMap[Alias]
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def
getAliasMap(plan: Aggregate): AttributeMap[Alias]
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def
getAliasMap(plan: Project): AttributeMap[Alias]
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final
def
getClass(): Class[_]
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hashCode(): Int
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def
initializeLogIfNecessary(isInterpreter: Boolean, silent: Boolean): Boolean
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def
initializeLogIfNecessary(isInterpreter: Boolean): Unit
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final
def
isInstanceOf[T0]: Boolean
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def
isLikelySelective(e: Expression): Boolean
Returns whether an expression is likely to be selective
Returns whether an expression is likely to be selective
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def
isNullIntolerant(expr: Expression): Boolean
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def
isTraceEnabled(): Boolean
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def
log: Logger
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def
logDebug(msg: ⇒ String, throwable: Throwable): Unit
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def
logDebug(msg: ⇒ String): Unit
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logError(msg: ⇒ String, throwable: Throwable): Unit
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logError(msg: ⇒ String): Unit
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logInfo(msg: ⇒ String, throwable: Throwable): Unit
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logInfo(msg: ⇒ String): Unit
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logName: String
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logTrace(msg: ⇒ String, throwable: Throwable): Unit
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logTrace(msg: ⇒ String): Unit
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logWarning(msg: ⇒ String, throwable: Throwable): Unit
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def
outputWithNullability(output: Seq[Attribute], nonNullAttrExprIds: Seq[ExprId]): Seq[Attribute]
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def
replaceAlias(expr: Expression, aliasMap: AttributeMap[Alias]): Expression
Replace all attributes, that reference an alias, with the aliased expression
Replace all attributes, that reference an alias, with the aliased expression
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- AliasHelper
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def
replaceAliasButKeepName(expr: NamedExpression, aliasMap: AttributeMap[Alias]): NamedExpression
Replace all attributes, that reference an alias, with the aliased expression, but keep the name of the outermost attribute.
Replace all attributes, that reference an alias, with the aliased expression, but keep the name of the outermost attribute.
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lazy val
ruleId: RuleId
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val
ruleName: String
Name for this rule, automatically inferred based on class name.
Name for this rule, automatically inferred based on class name.
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def
splitConjunctivePredicates(condition: Expression): Seq[Expression]
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def
splitDisjunctivePredicates(condition: Expression): Seq[Expression]
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synchronized[T0](arg0: ⇒ T0): T0
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def
toString(): String
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def
trimAliases(e: Expression): Expression
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def
trimNonTopLevelAliases[T <: Expression](e: T): T
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