final case class Left[+A, +B](value: A) extends Either[A, B] with Product with Serializable
The left side of the disjoint union, as opposed to the scala.util.Right side.
- Source
- Either.scala
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Instance Constructors
- new Left(value: A)
Value Members
-
final
def
contains[B1 >: B](elem: B1): Boolean
Returns
trueif this is aRightand its value is equal toelem(as determined by==), returnsfalseotherwise.Returns
trueif this is aRightand its value is equal toelem(as determined by==), returnsfalseotherwise.// Returns true because value of Right is "something" which equals "something". Right("something") contains "something" // Returns false because value of Right is "something" which does not equal "anything". Right("something") contains "anything" // Returns false because it's not a Right value. Left("something") contains "something"
- elem
the element to test.
- returns
trueif this is aRightvalue equal toelem.
- Definition Classes
- Either
-
def
exists(p: (B) ⇒ Boolean): Boolean
Returns
falseifLeftor returns the result of the application of the given predicate to theRightvalue.Returns
falseifLeftor returns the result of the application of the given predicate to theRightvalue.Right(12).exists(_ > 10) // true Right(7).exists(_ > 10) // false Left(12).exists(_ => true) // false
- Definition Classes
- Either
-
def
filterOrElse[A1 >: A](p: (B) ⇒ Boolean, zero: ⇒ A1): Either[A1, B]
Returns
Rightwith the existing value ofRightif this is aRightand the given predicatepholds for the right value, orLeft(zero)if this is aRightand the given predicatepdoes not hold for the right value, orLeftwith the existing value ofLeftif this is aLeft.Returns
Rightwith the existing value ofRightif this is aRightand the given predicatepholds for the right value, orLeft(zero)if this is aRightand the given predicatepdoes not hold for the right value, orLeftwith the existing value ofLeftif this is aLeft.Right(12).filterOrElse(_ > 10, -1) // Right(12) Right(7).filterOrElse(_ > 10, -1) // Left(-1) Left(7).filterOrElse(_ => false, -1) // Left(7)
- Definition Classes
- Either
-
def
flatMap[A1 >: A, B1](f: (B) ⇒ Either[A1, B1]): Either[A1, B1]
Binds the given function across
Right. -
def
fold[C](fa: (A) ⇒ C, fb: (B) ⇒ C): C
Applies
faif this is aLeftorfbif this is aRight.Applies
faif this is aLeftorfbif this is aRight.- fa
the function to apply if this is a
Left- fb
the function to apply if this is a
Right- returns
the results of applying the function
- Definition Classes
- Either
val result = util.Try("42".toInt).toEither result.fold( e => s"Operation failed with $e", v => s"Operation produced value: $v" )
Example: -
def
forall(f: (B) ⇒ Boolean): Boolean
Returns
trueifLeftor returns the result of the application of the given predicate to theRightvalue.Returns
trueifLeftor returns the result of the application of the given predicate to theRightvalue.Right(12).forall(_ > 10) // true Right(7).forall(_ > 10) // false Left(12).forall(_ => false) // true
- Definition Classes
- Either
-
def
foreach[U](f: (B) ⇒ U): Unit
Executes the given side-effecting function if this is a
Right.Executes the given side-effecting function if this is a
Right.Right(12).foreach(println) // prints "12" Left(12).foreach(println) // doesn't print
- f
The side-effecting function to execute.
- Definition Classes
- Either
-
def
getOrElse[B1 >: B](or: ⇒ B1): B1
Returns the value from this
Rightor the given argument if this is aLeft.Returns the value from this
Rightor the given argument if this is aLeft.Right(12).getOrElse(17) // 12 Left(12).getOrElse(17) // 17
- Definition Classes
- Either
-
def
isLeft: Boolean
Returns
trueif this is aLeft,falseotherwise. -
def
isRight: Boolean
Returns
trueif this is aRight,falseotherwise. -
def
joinLeft[A1 >: A, B1 >: B, C](implicit ev: <:<[A1, Either[C, B1]]): Either[C, B1]
Joins an
EitherthroughLeft.Joins an
EitherthroughLeft.This method requires that the left side of this
Eitheris itself anEithertype. That is, this must be some type like:Either[Either[C, B], B]
(which respects the type parameter bounds, shown below.)
If this instance is a
Left[Either[C, B]]then the containedEither[C, B]will be returned, otherwise this value will be returned unmodified.Left[Either[Int, String], String](Right("flower")).joinLeft // Result: Right("flower") Left[Either[Int, String], String](Left(12)).joinLeft // Result: Left(12) Right[Either[Int, String], String]("daisy").joinLeft // Result: Right("daisy")
This method, and
joinRight, are analogous toOption#flatten.- Definition Classes
- Either
-
def
joinRight[A1 >: A, B1 >: B, C](implicit ev: <:<[B1, Either[A1, C]]): Either[A1, C]
Joins an
EitherthroughRight.Joins an
EitherthroughRight.This method requires that the right side of this
Eitheris itself anEithertype. That is, this must be some type like:Either[A, Either[A, C]]
(which respects the type parameter bounds, shown below.)
If this instance is a
Right[Either[A, C]]then the containedEither[A, C]will be returned, otherwise this value will be returned unmodified.- Definition Classes
- Either
Right[String, Either[String, Int]](Right(12)).joinRight // Result: Right(12) Right[String, Either[String, Int]](Left("flower")).joinRight // Result: Left("flower") Left[String, Either[String, Int]]("flower").joinRight // Result: Left("flower")
This method, and
joinLeft, are analogous toOption#flatten
Example: -
def
left: LeftProjection[A, B]
Projects this
Eitheras aLeft.Projects this
Eitheras aLeft.This allows for-comprehensions over the left side of
Eitherinstances, reversingEither's usual right-bias.For example
for (s <- Left("flower").left) yield s.length // Left(6)
Continuing the analogy with scala.Option, a
LeftProjectiondeclares thatLeftshould be analogous toSomein some code.// using Option def interactWithDB(x: Query): Option[Result] = try Some(getResultFromDatabase(x)) catch { case _: SQLException => None } // this will only be executed if interactWithDB returns a Some val report = for (result <- interactWithDB(someQuery)) yield generateReport(result) report match { case Some(r) => send(r) case None => log("report not generated, not sure why...") } // using Either def interactWithDB(x: Query): Either[Exception, Result] = try Right(getResultFromDatabase(x)) catch { case e: SQLException => Left(e) } // run a report only if interactWithDB returns a Right val report = for (result <- interactWithDB(someQuery)) yield generateReport(result) report match { case Right(r) => send(r) case Left(e) => log(s"report not generated, reason was $e") } // only report errors for (e <- interactWithDB(someQuery).left) log(s"query failed, reason was $e")
- Definition Classes
- Either
-
def
map[B1](f: (B) ⇒ B1): Either[A, B1]
The given function is applied if this is a
Right.The given function is applied if this is a
Right.Right(12).map(x => "flower") // Result: Right("flower") Left(12).map(x => "flower") // Result: Left(12)
- Definition Classes
- Either
-
def
merge: B
- Implicit
- This member is added by an implicit conversion from Left[A, B] to MergeableEither[B] performed by method MergeableEither in scala.util.Either.
- Definition Classes
- MergeableEither
-
def
right: RightProjection[A, B]
Projects this
Eitheras aRight.Projects this
Eitheras aRight.Because
Eitheris right-biased, this method is not normally needed.- Definition Classes
- Either
-
def
swap: Either[B, A]
If this is a
Left, then return the left value inRightor vice versa.If this is a
Left, then return the left value inRightor vice versa.- Definition Classes
- Either
val left: Either[String, Int] = Left("left") val right: Either[Int, String] = left.swap // Result: Right("left")
, val right = Right(2) val left = Left(3) for { r1 <- right r2 <- left.swap } yield r1 * r2 // Right(6)
Examples: -
def
toOption: Option[B]
Returns a
Somecontaining theRightvalue if it exists or aNoneif this is aLeft.Returns a
Somecontaining theRightvalue if it exists or aNoneif this is aLeft.Right(12).toOption // Some(12) Left(12).toOption // None
- Definition Classes
- Either
-
def
toSeq: collection.immutable.Seq[B]
Returns a
Seqcontaining theRightvalue if it exists or an emptySeqif this is aLeft.Returns a
Seqcontaining theRightvalue if it exists or an emptySeqif this is aLeft.Right(12).toSeq // Seq(12) Left(12).toSeq // Seq()
- Definition Classes
- Either
-
def
toTry(implicit ev: <:<[A, Throwable]): Try[B]
- Definition Classes
- Either
- val value: A
Deprecated Value Members
-
def
a: A
- Annotations
- @deprecated
- Deprecated
(Since version 2.12.0) Use .value instead.
This is the documentation for the Scala standard library.
Package structure
The scala package contains core types like
Int,Float,ArrayorOptionwhich are accessible in all Scala compilation units without explicit qualification or imports.Notable packages include:
scala.collectionand its sub-packages contain Scala's collections frameworkscala.collection.immutable- Immutable, sequential data-structures such asVector,List,Range,HashMaporHashSetscala.collection.mutable- Mutable, sequential data-structures such asArrayBuffer,StringBuilder,HashMaporHashSetscala.collection.concurrent- Mutable, concurrent data-structures such asTrieMapscala.collection.parallel.immutable- Immutable, parallel data-structures such asParVector,ParRange,ParHashMaporParHashSetscala.collection.parallel.mutable- Mutable, parallel data-structures such asParArray,ParHashMap,ParTrieMaporParHashSetscala.concurrent- Primitives for concurrent programming such asFuturesandPromisesscala.io- Input and output operationsscala.math- Basic math functions and additional numeric types likeBigIntandBigDecimalscala.sys- Interaction with other processes and the operating systemscala.util.matching- Regular expressionsOther packages exist. See the complete list on the right.
Additional parts of the standard library are shipped as separate libraries. These include:
scala.reflect- Scala's reflection API (scala-reflect.jar)scala.xml- XML parsing, manipulation, and serialization (scala-xml.jar)scala.swing- A convenient wrapper around Java's GUI framework called Swing (scala-swing.jar)scala.util.parsing- Parser combinators (scala-parser-combinators.jar)Automatic imports
Identifiers in the scala package and the
scala.Predefobject are always in scope by default.Some of these identifiers are type aliases provided as shortcuts to commonly used classes. For example,
Listis an alias forscala.collection.immutable.List.Other aliases refer to classes provided by the underlying platform. For example, on the JVM,
Stringis an alias forjava.lang.String.