Source file cset.ml
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type c = int
type t = (c * c) list
let rec union l l' =
  match l, l' with
    _, [] -> l
  | [], _ -> l'
  | (c1, c2)::r, (c1', c2')::r' ->
    if c2 + 1 < c1' then
      (c1, c2)::union r l'
    else if c2' + 1 < c1 then
      (c1', c2')::union l r'
    else if c2 < c2' then
      union r ((min c1 c1', c2')::r')
    else
      union ((min c1 c1', c2)::r) r'
let rec inter l l' =
  match l, l' with
    _, [] -> []
  | [], _ -> []
  | (c1, c2)::r, (c1', c2')::r' ->
    if c2 < c1' then
      inter r l'
    else if c2' < c1 then
      inter l r'
    else if c2 < c2' then
      (max c1 c1', c2)::inter r l'
    else
      (max c1 c1', c2')::inter l r'
let rec diff l l' =
  match l, l' with
    _, [] -> l
  | [], _ -> []
  | (c1, c2)::r, (c1', c2')::r' ->
    if c2 < c1' then
      (c1, c2)::diff r l'
    else if c2' < c1 then
      diff l r'
    else
      let r'' = if c2' < c2 then (c2' + 1, c2) :: r else r in
      if c1 < c1' then
        (c1, c1' - 1)::diff r'' r'
      else
        diff r'' r'
let single c = [c, c]
let add c l = union (single c) l
let seq c c' = if c <= c' then [c, c'] else [c', c]
let rec offset o l =
  match l with
    []            -> []
  | (c1, c2) :: r -> (c1 + o, c2 + o) :: offset o r
let empty = []
let rec mem (c : int) s =
  match s with
    []              -> false
  | (c1, c2) :: rem -> if c <= c2 then c >= c1 else mem c rem
type hash = int
let rec hash_rec = function
  | []        -> 0
  | (i, j)::r -> i + 13 * j + 257 * hash_rec r
let hash l = (hash_rec l) land 0x3FFFFFFF
let print_one ch (c1, c2) =
  if c1 = c2 then
    Format.fprintf ch "%d" c1
  else
    Format.fprintf ch "%d-%d" c1 c2
let pp = Fmt.list print_one
let rec iter t ~f =
  match t with
  | [] -> ()
  | (x, y)::xs ->
    f x y;
    iter xs  ~f
let one_char = function
  | [i, j] when i = j -> Some i
  | _ -> None
module CSetMap = Map.Make (struct
    type t = int * (int * int) list
    let compare (i, u) (j, v) =
      let c = compare i j in
      if c <> 0
      then c
      else compare u v
  end)
let fold_right t ~init ~f = List.fold_right f t init
let csingle c = single (Char.code c)
let cany = [0, 255]
let is_empty = function
  | [] -> true
  | _ -> false
let rec prepend s x l =
  match s, l with
  | [], _ -> l
  | _r, [] -> []
  | (_c, c') :: r, ([d, _d'], _x') :: _r' when c' < d -> prepend r x l
  | (c, c') :: r, ([d, d'], x') :: r' ->
    if c <= d then begin
      if c' < d'
      then ([d, c'], x @ x') :: prepend r x (([c' + 1, d'], x') :: r')
      else ([d, d'], x @ x') :: prepend s x r'
    end else begin
      if c > d'
      then ([d, d'], x') :: prepend s x r'
      else ([d, c - 1], x') :: prepend s x (([c, d'], x') :: r')
    end
  | _ -> assert false
let pick = function
  | [] -> invalid_arg "Re_cset.pick"
  | (x, _)::_ -> x