final
class
DoubleAArray[A <: AffineSpace] extends IndexedSeq[DoubleA[A]] with ArrayLike[DoubleA[A], DoubleAArray[A]]
Instance Constructors
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new
DoubleAArray(length: Int)
Type Members
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class
Elements extends AbstractIterator[A] with BufferedIterator[A] with Serializable
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class
WithFilter extends FilterMonadic[A, Repr]
Value Members
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final
def
!=(arg0: AnyRef): Boolean
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final
def
!=(arg0: Any): Boolean
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final
def
##(): Int
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def
++[B >: DoubleA[A], That](that: GenTraversableOnce[B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
++:[B >: DoubleA[A], That](that: Traversable[B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
++:[B >: DoubleA[A], That](that: TraversableOnce[B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
+:[B >: DoubleA[A], That](elem: B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
/:[B](z: B)(op: (B, DoubleA[A]) ⇒ B): B
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def
:+[B >: DoubleA[A], That](elem: B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
:\[B](z: B)(op: (DoubleA[A], B) ⇒ B): B
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final
def
==(arg0: AnyRef): Boolean
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final
def
==(arg0: Any): Boolean
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def
addString(b: StringBuilder): StringBuilder
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def
addString(b: StringBuilder, sep: String): StringBuilder
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def
addString(b: StringBuilder, start: String, sep: String, end: String): StringBuilder
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def
aggregate[B](z: B)(seqop: (B, DoubleA[A]) ⇒ B, combop: (B, B) ⇒ B): B
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def
andThen[C](k: (DoubleA[A]) ⇒ C): PartialFunction[Int, C]
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def
apply(index: Int): DoubleA[A]
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def
applyOrElse[A1 <: Int, B1 >: DoubleA[A]](x: A1, default: (A1) ⇒ B1): B1
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final
def
asInstanceOf[T0]: T0
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def
canEqual(that: Any): Boolean
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def
clone(): Seq[DoubleA[A]]
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def
collect[B, That](pf: PartialFunction[DoubleA[A], B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
collectFirst[B](pf: PartialFunction[DoubleA[A], B]): Option[B]
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def
combinations(n: Int): Iterator[DoubleAArray[A]]
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def
companion: GenericCompanion[IndexedSeq]
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def
compose[A](g: (A) ⇒ Int): (A) ⇒ DoubleA[A]
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def
contains(elem: Any): Boolean
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def
containsSlice[B](that: GenSeq[B]): Boolean
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def
copyToArray[B >: DoubleA[A]](xs: Array[B], start: Int, len: Int): Unit
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def
copyToArray[B >: DoubleA[A]](xs: Array[B]): Unit
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def
copyToArray[B >: DoubleA[A]](xs: Array[B], start: Int): Unit
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def
copyToBuffer[B >: DoubleA[A]](dest: Buffer[B]): Unit
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def
corresponds[B](that: GenSeq[B])(p: (DoubleA[A], B) ⇒ Boolean): Boolean
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def
count(p: (DoubleA[A]) ⇒ Boolean): Int
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def
deep: IndexedSeq[Any]
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def
diff[B >: DoubleA[A]](that: GenSeq[B]): DoubleAArray[A]
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def
dropRight(n: Int): DoubleAArray[A]
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def
endsWith[B](that: GenSeq[B]): Boolean
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final
def
eq(arg0: AnyRef): Boolean
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def
equals(that: Any): Boolean
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def
exists(p: (DoubleA[A]) ⇒ Boolean): Boolean
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-
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def
finalize(): Unit
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def
find(p: (DoubleA[A]) ⇒ Boolean): Option[DoubleA[A]]
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def
flatMap[B, That](f: (DoubleA[A]) ⇒ GenTraversableOnce[B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
flatten[B](implicit asTraversable: (DoubleA[A]) ⇒ GenTraversableOnce[B]): IndexedSeq[B]
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def
fold[A1 >: DoubleA[A]](z: A1)(op: (A1, A1) ⇒ A1): A1
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def
foldLeft[B](z: B)(op: (B, DoubleA[A]) ⇒ B): B
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def
foldRight[B](z: B)(op: (DoubleA[A], B) ⇒ B): B
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def
forall(p: (DoubleA[A]) ⇒ Boolean): Boolean
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def
foreach[U](f: (DoubleA[A]) ⇒ U): Unit
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def
genericBuilder[B]: Builder[B, IndexedSeq[B]]
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final
def
getClass(): Class[_]
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def
groupBy[K](f: (DoubleA[A]) ⇒ K): Map[K, DoubleAArray[A]]
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def
grouped(size: Int): Iterator[DoubleAArray[A]]
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def
hasDefiniteSize: Boolean
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def
hashCode(): Int
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def
headOption: Option[DoubleA[A]]
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def
indexOf[B >: DoubleA[A]](elem: B, from: Int): Int
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def
indexOf[B >: DoubleA[A]](elem: B): Int
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def
indexOfSlice[B >: DoubleA[A]](that: GenSeq[B], from: Int): Int
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def
indexOfSlice[B >: DoubleA[A]](that: GenSeq[B]): Int
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def
indexWhere(p: (DoubleA[A]) ⇒ Boolean, from: Int): Int
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def
indexWhere(p: (DoubleA[A]) ⇒ Boolean): Int
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def
indices: Range
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def
intersect[B >: DoubleA[A]](that: GenSeq[B]): DoubleAArray[A]
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def
isDefinedAt(idx: Int): Boolean
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def
isEmpty: Boolean
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final
def
isInstanceOf[T0]: Boolean
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final
def
isTraversableAgain: Boolean
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def
iterator: Iterator[DoubleA[A]]
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def
lastIndexOf[B >: DoubleA[A]](elem: B, end: Int): Int
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def
lastIndexOf[B >: DoubleA[A]](elem: B): Int
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def
lastIndexOfSlice[B >: DoubleA[A]](that: GenSeq[B], end: Int): Int
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def
lastIndexOfSlice[B >: DoubleA[A]](that: GenSeq[B]): Int
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def
lastIndexWhere(p: (DoubleA[A]) ⇒ Boolean, end: Int): Int
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def
lastIndexWhere(p: (DoubleA[A]) ⇒ Boolean): Int
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def
lastOption: Option[DoubleA[A]]
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val
length: Int
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def
lengthCompare(len: Int): Int
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def
lift: (Int) ⇒ Option[DoubleA[A]]
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def
map[B, That](f: (DoubleA[A]) ⇒ B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
max[B >: DoubleA[A]](implicit cmp: Ordering[B]): DoubleA[A]
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def
maxBy[B](f: (DoubleA[A]) ⇒ B)(implicit cmp: Ordering[B]): DoubleA[A]
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def
min[B >: DoubleA[A]](implicit cmp: Ordering[B]): DoubleA[A]
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def
minBy[B](f: (DoubleA[A]) ⇒ B)(implicit cmp: Ordering[B]): DoubleA[A]
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def
mkString: String
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def
mkString(sep: String): String
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def
mkString(start: String, sep: String, end: String): String
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final
def
ne(arg0: AnyRef): Boolean
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def
nonEmpty: Boolean
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final
def
notify(): Unit
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final
def
notifyAll(): Unit
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def
orElse[A1 <: Int, B1 >: DoubleA[A]](that: PartialFunction[A1, B1]): PartialFunction[A1, B1]
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def
padTo[B >: DoubleA[A], That](len: Int, elem: B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
par: ParSeq[DoubleA[A]]
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def
parCombiner: Combiner[DoubleA[A], ParSeq[DoubleA[A]]]
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def
patch[B >: DoubleA[A], That](from: Int, patch: GenSeq[B], replaced: Int)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
permutations: Iterator[DoubleAArray[A]]
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def
prefixLength(p: (DoubleA[A]) ⇒ Boolean): Int
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def
product[B >: DoubleA[A]](implicit num: Numeric[B]): B
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def
reduce[A1 >: DoubleA[A]](op: (A1, A1) ⇒ A1): A1
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def
reduceLeft[B >: DoubleA[A]](op: (B, DoubleA[A]) ⇒ B): B
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def
reduceLeftOption[B >: DoubleA[A]](op: (B, DoubleA[A]) ⇒ B): Option[B]
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def
reduceOption[A1 >: DoubleA[A]](op: (A1, A1) ⇒ A1): Option[A1]
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def
reduceRight[B >: DoubleA[A]](op: (DoubleA[A], B) ⇒ B): B
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def
reduceRightOption[B >: DoubleA[A]](op: (DoubleA[A], B) ⇒ B): Option[B]
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-
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def
reverseIterator: Iterator[DoubleA[A]]
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def
reverseMap[B, That](f: (DoubleA[A]) ⇒ B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
reversed: List[DoubleA[A]]
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def
runWith[U](action: (DoubleA[A]) ⇒ U): (Int) ⇒ Boolean
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def
sameElements[B >: DoubleA[A]](that: GenIterable[B]): Boolean
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def
scan[B >: DoubleA[A], That](z: B)(op: (B, B) ⇒ B)(implicit cbf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
scanLeft[B, That](z: B)(op: (B, DoubleA[A]) ⇒ B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
scanRight[B, That](z: B)(op: (DoubleA[A], B) ⇒ B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
segmentLength(p: (DoubleA[A]) ⇒ Boolean, from: Int): Int
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def
seq: IndexedSeq[DoubleA[A]]
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def
size: Int
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def
slice(from: Int, until: Int): DoubleAArray[A]
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def
sliding(size: Int, step: Int): Iterator[DoubleAArray[A]]
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def
sliding(size: Int): Iterator[DoubleAArray[A]]
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def
sortBy[B](f: (DoubleA[A]) ⇒ B)(implicit ord: Ordering[B]): DoubleAArray[A]
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def
sorted[B >: DoubleA[A]](implicit ord: Ordering[B]): DoubleAArray[A]
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def
startsWith[B](that: GenSeq[B], offset: Int): Boolean
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def
startsWith[B](that: GenSeq[B]): Boolean
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def
stringPrefix: String
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def
sum[B >: DoubleA[A]](implicit num: Numeric[B]): B
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final
def
synchronized[T0](arg0: ⇒ T0): T0
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def
takeRight(n: Int): DoubleAArray[A]
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def
thisCollection: IndexedSeq[DoubleA[A]]
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def
to[Col[_]](implicit cbf: CanBuildFrom[Nothing, DoubleA[A], Col[DoubleA[A]]]): Col[DoubleA[A]]
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def
toArray[B >: DoubleA[A]](implicit arg0: ClassTag[B]): Array[B]
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def
toBuffer[A1 >: DoubleA[A]]: Buffer[A1]
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def
toCollection(repr: DoubleAArray[A]): IndexedSeq[DoubleA[A]]
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def
toIndexedSeq: IndexedSeq[DoubleA[A]]
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def
toIterable: Iterable[DoubleA[A]]
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def
toIterator: Iterator[DoubleA[A]]
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def
toList: List[DoubleA[A]]
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def
toMap[T, U](implicit ev: <:<[DoubleA[A], (T, U)]): Map[T, U]
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def
toSeq: Seq[DoubleA[A]]
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def
toSet[B >: DoubleA[A]]: Set[B]
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def
toStream: Stream[DoubleA[A]]
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def
toString(): String
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def
toTraversable: Traversable[DoubleA[A]]
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def
toVector: Vector[DoubleA[A]]
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def
transpose[B](implicit asTraversable: (DoubleA[A]) ⇒ GenTraversableOnce[B]): IndexedSeq[IndexedSeq[B]]
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def
union[B >: DoubleA[A], That](that: GenSeq[B])(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
unzip[A1, A2](implicit asPair: (DoubleA[A]) ⇒ (A1, A2)): (IndexedSeq[A1], IndexedSeq[A2])
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def
unzip3[A1, A2, A3](implicit asTriple: (DoubleA[A]) ⇒ (A1, A2, A3)): (IndexedSeq[A1], IndexedSeq[A2], IndexedSeq[A3])
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def
update(index: Int, elem: DoubleA[A]): Unit
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def
updated[B >: DoubleA[A], That](index: Int, elem: B)(implicit bf: CanBuildFrom[DoubleAArray[A], B, That]): That
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def
view(from: Int, until: Int): IndexedSeqView[DoubleA[A], DoubleAArray[A]]
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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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def
withFilter(p: (DoubleA[A]) ⇒ Boolean): FilterMonadic[DoubleA[A], DoubleAArray[A]]
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def
zip[A1 >: DoubleA[A], B, That](that: GenIterable[B])(implicit bf: CanBuildFrom[DoubleAArray[A], (A1, B), That]): That
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def
zipAll[B, A1 >: DoubleA[A], That](that: GenIterable[B], thisElem: A1, thatElem: B)(implicit bf: CanBuildFrom[DoubleAArray[A], (A1, B), That]): That
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def
zipWithIndex[A1 >: DoubleA[A], That](implicit bf: CanBuildFrom[DoubleAArray[A], (A1, Int), That]): That
Deprecated Value Members
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def
/:\[A1 >: DoubleA[A]](z: A1)(op: (A1, A1) ⇒ A1): A1
Inherited from IndexedSeq[DoubleA[A]]
Inherited from IndexedSeq[DoubleA[A]]
Inherited from Cloneable[Seq[DoubleA[A]]]
Inherited from Cloneable
Inherited from Cloneable
Inherited from PartialFunction[Int, DoubleA[A]]
Inherited from Iterable[DoubleA[A]]
Inherited from Iterable[DoubleA[A]]
Inherited from Equals
Inherited from GenIterable[DoubleA[A]]
Inherited from Traversable[DoubleA[A]]
Inherited from Mutable
Inherited from Traversable[DoubleA[A]]
Inherited from GenTraversable[DoubleA[A]]
Inherited from GenericTraversableTemplate[DoubleA[A], IndexedSeq]
Inherited from TraversableOnce[DoubleA[A]]
Inherited from GenTraversableOnce[DoubleA[A]]
Inherited from AnyRef
Inherited from Any
Mutable fixed-size array of unboxed io.github.karols.units.DoubleA.