class ByteGroup extends CommutativeGroup[Byte]
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Instance Constructors
- new ByteGroup()
Value Members
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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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final
def
asInstanceOf[T0]: T0
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clone(): AnyRef
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def
combine(x: Byte, y: Byte): Byte
Associative operation which combines two values.
Associative operation which combines two values.
Example:
scala> import cats.kernel.instances.string._ scala> import cats.kernel.instances.int._ scala> import cats.kernel.instances.option._ scala> Semigroup[String].combine("Hello ", "World!") res0: String = Hello World! scala> Semigroup[Option[Int]].combine(None, Some(1)) res1: Option[Int] = Some(1)
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def
combineAll(as: IterableOnce[Byte]): Byte
Given a sequence of
as
, sum them using the monoid and return the total.Given a sequence of
as
, sum them using the monoid and return the total.Example:
scala> import cats.kernel.instances.string._ scala> Monoid[String].combineAll(List("One ", "Two ", "Three")) res0: String = One Two Three scala> Monoid[String].combineAll(List.empty) res1: String = ""
- Definition Classes
- Monoid
-
def
combineAllOption(as: IterableOnce[Byte]): Option[Byte]
Given a sequence of
as
, combine them and return the total.Given a sequence of
as
, combine them and return the total.If the sequence is empty, returns None. Otherwise, returns Some(total).
Example:
scala> import cats.kernel.instances.string._ scala> Semigroup[String].combineAllOption(List("One ", "Two ", "Three")) res0: Option[String] = Some(One Two Three) scala> Semigroup[String].combineAllOption(List.empty) res1: Option[String] = None
-
def
combineN(a: Byte, n: Int): Byte
Return
a
appended to itselfn
times. -
def
empty: Byte
Return the identity element for this monoid.
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final
def
eq(arg0: AnyRef): Boolean
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def
equals(arg0: Any): Boolean
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final
def
getClass(): Class[_]
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def
hashCode(): Int
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def
intercalate(middle: Byte): CommutativeSemigroup[Byte]
Between each pair of elements insert middle This name matches the term used in Foldable and Reducible and a similar Haskell function.
Between each pair of elements insert middle This name matches the term used in Foldable and Reducible and a similar Haskell function.
- Definition Classes
- CommutativeSemigroup → Semigroup
-
def
inverse(x: Byte): Byte
Find the inverse of
a
. -
def
isEmpty(a: Byte)(implicit ev: Eq[Byte]): Boolean
Tests if
a
is the identity.Tests if
a
is the identity.Example:
scala> import cats.kernel.instances.string._ scala> Monoid[String].isEmpty("") res0: Boolean = true scala> Monoid[String].isEmpty("something") res1: Boolean = false
- Definition Classes
- Monoid
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final
def
isInstanceOf[T0]: Boolean
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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
remove(x: Byte, y: Byte): Byte
Remove the element
b
froma
. -
def
repeatedCombineN(a: Byte, n: Int): Byte
Return
a
combined with itself more than once.Return
a
combined with itself more than once.- Attributes
- protected[this]
- Definition Classes
- Semigroup
-
def
reverse: CommutativeMonoid[Byte]
return a semigroup that reverses the order so combine(a, b) == reverse.combine(b, a)
return a semigroup that reverses the order so combine(a, b) == reverse.combine(b, a)
- Definition Classes
- CommutativeMonoid → CommutativeSemigroup → Monoid → Semigroup
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final
def
synchronized[T0](arg0: ⇒ T0): T0
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def
toString(): String
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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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final
def
wait(): Unit
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