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I am a Scala noob. I have decided to write a spider solitaire solver as a first exercise to learn the language and functional programming in general.

I would like to generate a randomly shuffled deck of cards containing 1, 2, or 4 suits. Here is what I came up with:

val numberOfSuits = 1
(List("clubs", "diamonds", "hearts", "spades").take(numberOfSuits) * 4).take(4)

which should return

List("clubs", "clubs", "clubs", "clubs")
List("clubs", "diamonds", "clubs", "diamonds")
List("clubs", "diamonds", "hearts", "spades")

depending on the value of numberOfSuits, except there is no List "multiply" operation that I can find. Did I miss it? Is there a better way to generate the complete deck before shuffling?

BTW, I plan on using an Enumeration for the suits, but it was easier to type my question with strings. I will take the List generated above and using a for comprehension, iterate over the suits and a similar List of card "ranks" to generate a complete deck.

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The interesting part of this project will be creating the immutable generations of the tableau (current layout of the cards). I ask the current tableau for a list of legal moves, returned as tuples of (source column, destination column, and source position). I then apply each to the current tableau in a recursive fashion using some kind of mini-max algorithm to find the "best" move. I also want the card object to be immutable, so the tableaus ("tableaux?") will have to know if a card is face up. – Ralph Mar 22 '10 at 16:08
up vote 6 down vote accepted

You should look up the scaladoc for the object List. It has all manners of interesting methods for creation of lists. For instance, the following does exactly what you were trying to:

List.flatten(List.make(4, List("clubs", "diamonds", "hearts", "spades").take(numberOfSuits))).take(4)

A much nicer code, however, would be this (Scala 2.7):

val suits = List("clubs", "diamonds", "hearts", "spades")
List.tabulate(4, i => suits.apply(i % numberOfSuits))

On Scala 2.8 tabulate is curried, so the correct syntax would be:

List.tabulate(4)(i => suits.apply(i % numberOfSuits))
share|improve this answer
I tried your example, but get an error on 2.8.0.Beta1-prerelease. In fact, I get this error on most samples of List.tabulate I can find. What gives? scala> List.tabulate(4, i => suits.apply(i % numberOfSuits)) <console>:5: error: missing parameter type List.tabulate(4, i => suits.apply(i % numberOfSuits)) scala> List.tabulate(4, (i:Int) => suits.apply(i % numberOfSuits)) <console>:7: error: overloaded method value tabulate with alternatives....cannot be applied to (Int,(Int) => java.lang.String) List.tabulate(4, (i:Int) => suits.apply(i % numberOfSuits)) ^ – Adam Rabung Mar 23 '10 at 14:23
@Adam The syntax changed slightly from 2.7 to 2.8. See the edited answer. – Daniel C. Sobral Mar 24 '10 at 1:43
Funny you should mention it. I forgot that the singleton docs were at the bottom of the package doc pages. In the comment I wrote above, I came up with the EXACT same answer you offered first above. – Ralph Mar 24 '10 at 10:56

Flatten a finite lists of lists:

scala> List.fill(2)(List(1, 2, 3, 4)).flatten
res18: List[Int] = List(1, 2, 3, 4, 1, 2, 3, 4)

Flatten an infinite Stream of lists, take the first N elements:

scala> Stream.continually(List(1, 2, 3, 4)).flatten.take(8).toList
res19: List[Int] = List(1, 2, 3, 4, 1, 2, 3, 4)
share|improve this answer
Is this a new method in 2.8.0? I could not get it to work, but this did: val suits = List("clubs", "diamonds", "hearts", "spades"); List.flatten(List.make(4, suits.take(1))), where the "1" is the numberOfSuits value. – Ralph Mar 22 '10 at 12:30
Yes, some of these are new in 2.8. – retronym Mar 22 '10 at 13:06

You can expand a numeric sequence and flatMap instead of multiplying.

scala> (1 to 3).flatMap(_=>List(1,2,3,4).take(2)).take(4)
res1: Seq[Int] = List(1, 2, 1, 2)

This works in 2.7.x also.

Edit: since you're less experienced with Scala, you may not yet have come across the pimp-my-library pattern. If you want to multiply your lists a lot, you can add a custom conversion class:

class MultipliableList[T](l: List[T]) {
  def *(n: Int) = (1 to n).flatMap(_=>l).toList
implicit def list2multipliable[T](l: List[T]) = new MultipliableList[T](l)

and now you can

scala> List(1,2,3)*4
res2: List[Int] = List(1, 2, 3, 1, 2, 3, 1, 2, 3, 1, 2, 3)

(Generally, to reuse such implicits, declare them in an object and then import MyObject._ to get the implicit conversion and corresponding class in scope.)

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