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In F#, given game: (int*int) list I'd like to compute minx, maxx, miny, maxy the min and max values for each tuple dimension.

This code works but seems a bit clumsy:

let minX (game: (int*int) list) =  game |> List.map (fun (x,y) -> x) |> Seq.min 
let maxX (game: (int*int) list) =  game |> List.map (fun (x,y) -> x) |> Seq.max 
let minY (game: (int*int) list) =  game |> List.map (fun (x,y) -> y) |> Seq.min 
let maxY (game: (int*int) list) =  game |> List.map (fun (x,y) -> y) |> Seq.max 

Any hint for improvement?

share|improve this question
up vote 7 down vote accepted
let minX game = List.minBy fst game |> fst
let maxX game = List.maxBy fst game |> fst
let minY game = List.minBy snd game |> snd
let maxY game = List.maxBy snd game |> snd
share|improve this answer
These functions of course work for any comparable type, not only int. Just remove the type specification, and voila! – Ramon Snir Nov 26 '12 at 10:49
thanks pad for the input. Any idea to reduce the iteration count? – sthiers Nov 26 '12 at 10:51
@sthiers : Use a fold if you only want to traverse the list once. – ildjarn Nov 26 '12 at 10:52
@sthiers: I second ildjarn's suggestion. However, it will not look beautiful as you like. – pad Nov 26 '12 at 11:17
@RamonSnir: I remove type annotation as you suggested. – pad Nov 26 '12 at 13:17

Like John's, but easier to read:

let game = [(1,4);(2,1)]
let minx,miny,maxx,maxy = 
   game |> List.fold (fun (mx,my,Mx,My) (ax,ay) -> 
             min mx ax, min my ay,
             max Mx ax, max My ay) (Int32.MaxValue,Int32.MaxValue,Int32.MinValue,Int32.MinValue)
share|improve this answer
You could simplify this even further by using List.reduce instead of List.fold; this also has the added benefit of making the code completely generic, since you don't need to supply the starting state values. – Jack P. Nov 26 '12 at 13:32
@JackP. How do you do that without traversing the list twice? – Robert Jeppesen Nov 26 '12 at 14:22
@JackP. List.reduce assumes there are elements in the list, which can be dangerous sometimes. – Ramon Snir Nov 26 '12 at 14:37
@RobertJeppesen My mistake, I read the problem just after waking up -- you do need to use List.fold here. – Jack P. Nov 26 '12 at 15:13
@RamonSnir True, but List.fold returns the input state for an empty list, which is not necessarily correct either. The safest thing to do is to "manually" check for the empty list and handle it in whatever way makes sense for your app; in that case, you might as well use List.reduce. – Jack P. Nov 26 '12 at 15:16

There are a few small changes you can make to improve what you have:

  1. use Seq.map instead of List.map to avoid creating new lists and therefore keep memory usage constant
  2. use the built-in fst/snd functions instead of lambdas
  3. since game is the only argument you can use function composition to make your code more concise

You end up with:

let minX = Seq.map fst >> Seq.min
let maxX = Seq.map fst >> Seq.max
let minY = Seq.map snd >> Seq.min
let maxY = Seq.map snd >> Seq.max

Interestingly, I found this to be quite a bit faster than pad's solution: 0.28 vs 1.75 sec for 10M elements.

share|improve this answer
Value restriction. – Ramon Snir Nov 26 '12 at 17:52
Only if you never call it. – Daniel Nov 26 '12 at 17:54
Or if it's in a module, which is a very reasonable case (or even, the reasonable case). – Ramon Snir Nov 26 '12 at 17:55
If that's the case the fix is trivial. The functions will work even in a module so long as they're called within the same file. – Daniel Nov 26 '12 at 17:57
I was careful to note correct. Robert's returns maxX=Int32.MinValue for empty list?? Easy to fix, but broken as-is. – Daniel Nov 27 '12 at 16:57

The fold version of pad's answer (only 1 list traversal)

let minx,miny,maxx,maxy =game |> List.fold (fun (mx,my,Mx,My) (ax,ay) -> 
    let nmx,nMx = if ax<mx then ax,Mx else if ax > Mx then mx,ax else mx,Mx
    let nmy,nMy = if ay<my then ay,My else if ay > My then my,ay else my,My
    nmx,nmy,nMx,nMy) (Int32.MaxValue,Int32.MaxValue,Int32.MinValue,Int32.MinValue)
share|improve this answer
@bytebuster - yes – John Palmer Nov 26 '12 at 20:49

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