object InferFiltersFromConstraints extends Rule[LogicalPlan] with PredicateHelper with ConstraintHelper
Generate a list of additional filters from an operator's existing constraint but remove those that are either already part of the operator's condition or are part of the operator's child constraints. These filters are currently inserted to the existing conditions in the Filter operators and on either side of Join operators.
Note: While this optimization is applicable to a lot of types of join, it primarily benefits Inner and LeftSemi joins.
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- final def !=(arg0: Any): Boolean
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- final def ##: Int
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- final def ==(arg0: Any): Boolean
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- def apply(plan: LogicalPlan): LogicalPlan
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- InferFiltersFromConstraints → Rule
- 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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- PredicateHelper
- 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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- PredicateHelper
- 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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- PredicateHelper
- def clone(): AnyRef
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- protected[lang]
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- @throws(classOf[java.lang.CloneNotSupportedException]) @native()
- 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.
- Definition Classes
- SQLConfHelper
- def constructIsNotNullConstraints(constraints: ExpressionSet, output: Seq[Attribute]): ExpressionSet
Infers a set of
isNotNullconstraints from null intolerant expressions as well as non-nullable attributes.Infers a set of
isNotNullconstraints from null intolerant expressions as well as non-nullable attributes. For e.g., if an expression is of the form (a > 5), this returns a constraint of the formisNotNull(a)- Definition Classes
- ConstraintHelper
- final def eq(arg0: AnyRef): Boolean
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- def equals(arg0: AnyRef): 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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- PredicateHelper
- def finalize(): Unit
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- @throws(classOf[java.lang.Throwable])
- 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
- Definition Classes
- PredicateHelper
- def getAliasMap(exprs: Seq[NamedExpression]): AttributeMap[Alias]
- Attributes
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- AliasHelper
- def getAliasMap(plan: Aggregate): AttributeMap[Alias]
- Attributes
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- AliasHelper
- def getAliasMap(plan: Project): AttributeMap[Alias]
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- AliasHelper
- final def getClass(): Class[_ <: AnyRef]
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- @native()
- def hashCode(): Int
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- @native()
- def inferAdditionalConstraints(constraints: ExpressionSet): ExpressionSet
Infers an additional set of constraints from a given set of equality constraints.
Infers an additional set of constraints from a given set of equality constraints. For e.g., if an operator has constraints of the form (
a = 5,a = b), this returns an additional constraint of the formb = 5.- Definition Classes
- ConstraintHelper
- def initializeLogIfNecessary(isInterpreter: Boolean, silent: Boolean): Boolean
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- Logging
- def initializeLogIfNecessary(isInterpreter: Boolean): Unit
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- Logging
- final def isInstanceOf[T0]: Boolean
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- def isNullIntolerant(expr: Expression): Boolean
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- PredicateHelper
- def isTraceEnabled(): Boolean
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- Logging
- def log: Logger
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- Logging
- def logDebug(msg: => String, throwable: Throwable): Unit
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- Logging
- def logDebug(msg: => String): Unit
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- def logError(msg: => String, throwable: Throwable): Unit
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- def logError(msg: => String): Unit
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- def logInfo(msg: => String, throwable: Throwable): Unit
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- def logInfo(msg: => String): Unit
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- def logName: String
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- def logTrace(msg: => String, throwable: Throwable): Unit
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- def logTrace(msg: => String): Unit
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- def logWarning(msg: => String, throwable: Throwable): Unit
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- def logWarning(msg: => String): Unit
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- final def ne(arg0: AnyRef): Boolean
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- final def notify(): Unit
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- final def notifyAll(): Unit
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- def outputWithNullability(output: Seq[Attribute], nonNullAttrExprIds: Seq[ExprId]): Seq[Attribute]
- Attributes
- protected
- Definition Classes
- PredicateHelper
- 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
- Attributes
- protected
- Definition Classes
- AliasHelper
- 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.
- Attributes
- protected
- Definition Classes
- AliasHelper
- lazy val ruleId: RuleId
- Attributes
- protected
- Definition Classes
- Rule
- val ruleName: String
Name for this rule, automatically inferred based on class name.
Name for this rule, automatically inferred based on class name.
- Definition Classes
- Rule
- def splitConjunctivePredicates(condition: Expression): Seq[Expression]
- Attributes
- protected
- Definition Classes
- PredicateHelper
- def splitDisjunctivePredicates(condition: Expression): Seq[Expression]
- Attributes
- protected
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- PredicateHelper
- final def synchronized[T0](arg0: => T0): T0
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- def toString(): String
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- def trimAliases(e: Expression): Expression
- Attributes
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- Definition Classes
- AliasHelper
- def trimNonTopLevelAliases[T <: Expression](e: T): T
- Attributes
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- AliasHelper
- final def wait(): Unit
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- final def wait(arg0: Long, arg1: Int): Unit
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- final def wait(arg0: Long): Unit
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