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Let's say I have a function:

def f(i: Int): String = i.toString

How can I define xxx such as (assume I can add methods to list without implicit conversions):

val source1: List[List[Int]] = List(List(1,2), List(3,4))
val source2: List[Int] = List(1,2)

val result1: List[List[String]] =
val result2: List[String] =

because with

List [ _ ]

I can't tell if _ can have map applied or not. Is it possible?

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So your source is typed as a List[_]? Or as List[List[Int]] or List[Int] as you have them here? –  Luigi Plinge Jun 6 '13 at 17:08
Right now it's a List[A], but if A is a list (sequence, set..) I'd like to apply the function F to its elements instead of the list as a whole. –  Luciano Jun 6 '13 at 18:43

3 Answers 3

up vote 1 down vote accepted

You could try this:

object Container1 {
  implicit class RichList1(l: List[List[Int]]) {
    def xxx(f: (Int) => String): List[List[String]] = { => => f(n)))

object Container2 {
  implicit class RichList2(l: List[Int]) {
    def xxx(f: (Int) => String): List[String] = { => f(n))

object Mapping extends App {
  def f(i: Int): String = i.toString

  val source1: List[List[Int]] = List(List(1, 2), List(3, 4))
  val source2: List[Int] = List(1, 2)

  import Container1._
  val result1a: List[List[String]] =

  import Container2._
  val result2a: List[String] =

share|improve this answer
Ok, implicit classes work, as long as I make one for each internal element (List[Int], Set[Int], etc). OTOH, I think that with list and set may be enough for my needs. –  Luciano Jun 6 '13 at 19:11
Check my derived answer for one that works for any level of nesting without additional implicits. –  Andy Jun 6 '13 at 20:47

It looks like you're trying to apply your function to the inner most item of the collection regardless of how deep you're values are nested (in this case, List[T] and List[List[T]]).

trait CanMapInner[WrappedV, WrappedB, V, B] {
  def mapInner(in: WrappedV, f: V ⇒ B): WrappedB

// simple base case (no nesting involved).
implicit def simpleMapper[V, B] = new CanMapInner[V, B, V, B] {
  def mapInner(in: V, f: (V) ⇒ B): B = f(in)

// drill down one level of "List".
implicit def wrappedMapper[V, B, InnerV, InnerB](implicit innerMapper: CanMapInner[InnerV, InnerB, V, B]) =
  new CanMapInner[List[InnerV], List[InnerB], V, B] {
    def mapInner(in: List[InnerV], f: (V) ⇒ B): List[InnerB] =, f))

implicit class XXX[WrappedV](list: List[WrappedV]) {
  def xxx[V, B, WrappedB](f: V ⇒ B)(implicit mapper: CanMapInner[WrappedV, WrappedB, V, B]) = { ⇒ mapper.mapInner(inner, f))

Adapted from qmajor's solution for Map.


def f(i: Int): String = "Hello " + i.toString

val source1: List[List[Int]] = List(List(1, 2), List(3, 4))
val source2: List[Int] = List(1, 2)

val result1: List[List[String]] =
val result2: List[String] =

Console println source1
// > List(List(1, 2), List(3, 4))
Console println source2
// > List(1, 2)
Console println result1
// > List(List(Hello 1, Hello 2), List(Hello 3, Hello 4))
Console println result2
// > List(Hello 1, Hello 2)

I changed your f function for demo purposes.

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This one works with nested levels, but I find it more complicated than the other answer (which makes sense). Since I need only one level for now, I'll keep this answer as a reference. Thanks! –  Luciano Jun 6 '13 at 21:18
It's definitely more complicated! –  Andy Jun 6 '13 at 21:50

You could use shapeless' Scrap Your Boilerplate to do that. Example copied from readme:

val nested = List(Option(List(Option(List(Option(23))))))

val succ = everywhere(inc)(nested)
succ == List(Option(List(Option(List(Option(24))))))

Up to you if you are ready to include a library to do that.

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Nice try, but I can't make it work for this case: object toStr extends Poly1 { implicit def caseInt = at[Int](_.toString) } + everywhere(toStr)(source1) => error: could not find implicit value for parameter c:... –  senia Jun 6 '13 at 17:29
Since I'm using Spray, I already have shapeless (maybe an older version). However, as much I read about it, I still not sure how to use that library. –  Luciano Jun 6 '13 at 19:09
@senia Ouch... Maybe another of those implicits which cannot be found (e.g.…). I'll give it a try –  gzm0 Jun 6 '13 at 19:48

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