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add CCArray.sort_generic for sorting over array-like structures in place
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2 changed files with 159 additions and 0 deletions
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@ -641,3 +641,142 @@ module Sub = struct
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let to_klist a = _to_klist a.arr a.i a.j
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end
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(** {2 Generic Functions} *)
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module type MONO_ARRAY = sig
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type elt
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type t
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val length : t -> int
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val get : t -> int -> elt
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val set : t -> int -> elt -> unit
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end
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(* Dual Pivot Quicksort (YaroslavSkiy)
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from "average case analysis of Java 7's Dual Pivot Quicksort" *)
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module SortGeneric(A : MONO_ARRAY) = struct
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module Rand = Random.State
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let seed_ = [|123456|]
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type state = {
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rand: Rand.t; (* random state *)
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cmp: A.elt -> A.elt -> int;
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mutable l: int; (* left pointer *)
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mutable g: int; (* right pointer *)
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mutable k: int;
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}
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let swap_ a i j =
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if i=j then ()
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else (
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let tmp = A.get a i in
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A.set a i (A.get a j);
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A.set a j tmp
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)
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let rec insert_ ~cmp a i k =
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if k<i then ()
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else if cmp (A.get a k) (A.get a (k+1)) > 0 then (
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swap_ a k (k+1);
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insert_ ~cmp a i (k-1)
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)
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(* recursive part of insertion sort *)
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let rec sort_insertion_rec ~cmp a i j k =
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if k<j then (
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insert_ ~cmp a i (k-1);
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sort_insertion_rec ~cmp a i j (k+1)
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)
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(* insertion sort, for small slices *)
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let sort_insertion ~cmp a i j =
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if j-i > 1 then sort_insertion_rec ~cmp a i j (i+1)
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let rand_idx_ ~st i j =
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i + Rand.int st.rand (j-i)
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(* sort slice.
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There is a chance that the two pivots are equal, but it's unlikely. *)
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let rec sort_slice_ ~st a i j =
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if j-i>16 then (
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st.l <- i;
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st.g <- j-1;
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st.k <- i;
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(* choose pivots *)
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let p = A.get a (rand_idx_ ~st i j) in
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let q = A.get a (rand_idx_ ~st i j) in
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(* invariant: st.p <= st.q, swap them otherwise *)
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let p, q = if st.cmp p q > 0 then q, p else p, q in
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while st.k <= st.g do
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let cur = A.get a st.k in
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if st.cmp cur p < 0 then (
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(* insert in leftmost band *)
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if st.k <> st.l then swap_ a st.k st.l;
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st.l <- st.l + 1
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) else if st.cmp cur q > 0 then (
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(* insert in rightmost band *)
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while st.k < st.g && st.cmp (A.get a st.g) q > 0 do
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st.g <- st.g - 1
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done;
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swap_ a st.k st.g;
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st.g <- st.g - 1;
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(* the element swapped from the right might be in the first situation.
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that is, < p (we know it's <= q already) *)
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if st.cmp (A.get a st.k) p < 0 then (
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if st.k <> st.l then swap_ a st.k st.l;
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st.l <- st.l + 1
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)
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);
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st.k <- st.k + 1
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done;
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(* save values before recursing *)
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let l = st.l and g = st.g and sort_middle = st.cmp p q < 0 in
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sort_slice_ ~st a i l;
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if sort_middle then sort_slice_ ~st a l (g+1);
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sort_slice_ ~st a (g+1) j;
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) else sort_insertion ~cmp:st.cmp a i j
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let sort ~cmp a =
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if A.length a > 0 then (
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let st = {
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rand=Rand.make seed_; cmp;
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l=0; g=A.length a; k=0;
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} in
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sort_slice_ ~st a 0 (A.length a)
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)
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end
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let sort_generic (type arr)(type elt)
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(module A : MONO_ARRAY with type t = arr and type elt = elt)
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?(cmp=Pervasives.compare) a
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=
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let module S = SortGeneric(A) in
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S.sort ~cmp a
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(*$inject
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module IA = struct
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type elt = int
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type t = int array
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include Array
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end
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let gen_arr = Q.Gen.(array_size (1--100) small_int)
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let arr_arbitrary = Q.make
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~print:Q.Print.(array int)
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~small:Array.length
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~shrink:Q.Shrink.(array ?shrink:None)
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gen_arr
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*)
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(*$Q & ~count:300
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arr_arbitrary (fun a -> \
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let a1 = Array.copy a and a2 = Array.copy a in \
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Array.sort CCInt.compare a1; sort_generic ~cmp:CCInt.compare (module IA) a2; \
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a1 = a2 )
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*)
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@ -232,3 +232,23 @@ module Sub : sig
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include S with type 'a t := 'a t
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end
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(** {2 Generic Functions} *)
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module type MONO_ARRAY = sig
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type elt
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type t
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val length : t -> int
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val get : t -> int -> elt
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val set : t -> int -> elt -> unit
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end
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val sort_generic :
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(module MONO_ARRAY with type t = 'arr and type elt = 'elt) ->
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?cmp:('elt -> 'elt -> int) -> 'arr -> unit
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(** Sort the array, without allocating (eats stack space though). Performance
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might be lower than {!Array.sort}.
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@since NEXT_RELEASE *)
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