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resArray.ml
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resArray.ml
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(*
Copyright © 2011 MLstate
This file is part of OPA.
OPA is free software: you can redistribute it and/or modify it under the
terms of the GNU Affero General Public License, version 3, as published by
the Free Software Foundation.
OPA is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
FOR A PARTICULAR PURPOSE. See the GNU Affero General Public License for
more details.
You should have received a copy of the GNU Affero General Public License
along with OPA. If not, see <http://www.gnu.org/licenses/>.
*)
exception MaxSize
exception UnknownCell
type 'a t =
{ mutable array : 'a array
; init : 'a
; mutable length : int }
let make ?size n init =
let size = match size with Some s -> s | _ -> n in
{ array = Array.make size init
; init = init
; length = n }
let create = make
let clear t =
t.array <- [||];
t.length <- 0
let get a i =
if i < a.length then Array.unsafe_get a.array i
else raise UnknownCell
(** problème: set peut renvoyer (sans qu'on le sache) un tableau frais
cela est gênant si on dépend d'effets de bord
*)
let set a i v =
let l = Array.length a.array in
if i < l then begin
Array.unsafe_set a.array i v ;
if i >= a.length then a.length <- succ i
end
else if i < Sys.max_array_length then
let n = max i (min Sys.max_array_length (2 * l)) in
begin
a.array <- Array.init n (
fun j ->
if j < l then Array.unsafe_get a.array j
else if j = i then v
else a.init
) ;
a.length <- succ i
end
else raise MaxSize
let length a = a.length
let real_length a = Array.length a.array
let append a b =
let la = length a
and lb = length b in
let l = la + lb in
{ array = Array.init l (
fun i ->
if i < la then Array.unsafe_get a.array i
else Array.unsafe_get b.array (i - la)
)
; init = if la>0 || lb>0 then Array.unsafe_get (if la > 0 then a else b).array 0 else a.init
; length = la + lb }
let fold_left f init a =
let rec aux acc i =
if i = length a then acc
else aux (f acc (Array.unsafe_get a.array i)) (succ i)
in aux init 0
let fold_left_i f init a =
let rec aux acc i =
if i = length a then acc
else aux (f acc (Array.unsafe_get a.array i) ~i) (succ i)
in aux init 0
let delete a pfrom pto =
let offset = pto - pfrom in
if offset > 0 then begin
for i = pto to pred (length a) do
a.array.(i - offset) <- a.array.(i)
done ;
a.length <- a.length - offset
end else failwith "delete failed: empty region"
let insert a pos b =
let la = length a
and lb = length b in
let l = la + lb in
if l <= real_length a then begin
for i = pred l downto pos + lb do
a.array.(i) <- a.array.(i - lb)
done ;
for i = pos to pred (pos + lb) do
a.array.(i) <- b.array.(i - pos)
done ;
a.length <- a.length + lb
end else
raise (Base.NotImplemented "insert")