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110 lines
2.9 KiB
110 lines
2.9 KiB
(*
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* Copyright (c) Facebook, Inc. and its affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*)
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include IterLabels
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module Import = struct
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type 'a iter = 'a t
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end
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let mem elt seq ~eq = mem ~eq ~x:elt seq
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let map seq ~f = map ~f seq
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let flat_map seq ~f = flat_map ~f seq
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let filter seq ~f = filter ~f seq
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let sort seq ~cmp = sort ~cmp seq
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let sort_uniq seq ~cmp = sort_uniq ~cmp seq
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let sorted seq ~cmp = sorted ~cmp seq
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let group_succ_by seq ~eq = group_succ_by ~eq seq
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let group_by seq ~hash ~eq = group_by ~hash ~eq seq
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let count seq ~hash ~eq = count ~hash ~eq seq
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let uniq seq ~eq = uniq ~eq seq
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let join_by ~eq ~hash k1 k2 ~merge = join_by ~eq ~hash k1 k2 ~merge
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let join_all_by ~eq ~hash k1 k2 ~merge = join_all_by ~eq ~hash k1 k2 ~merge
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let group_join_by ~eq ~hash = group_join_by ~eq ~hash
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let inter ~eq ~hash = inter ~eq ~hash
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let union ~eq ~hash = union ~eq ~hash
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let diff ~eq ~hash = diff ~eq ~hash
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let subset ~eq ~hash = subset ~eq ~hash
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let max seq ~lt = max ~lt seq
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let max_exn seq ~lt = max_exn ~lt seq
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let min seq ~lt = min ~lt seq
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let min_exn seq ~lt = min_exn ~lt seq
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let pop seq =
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match head seq with Some x -> Some (x, drop 1 seq) | None -> None
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let find_map seq ~f = find_map ~f seq
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let find seq ~f = find (CCOpt.if_ f) seq
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let find_exn seq ~f = CCOpt.get_exn_or "Iter.find_exn" (find ~f seq)
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let fold seq init ~f = fold ~f:(fun s x -> f x s) ~init seq
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let contains_dup (type elt) seq ~cmp =
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let module S = CCSet.Make (struct
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type t = elt
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let compare = cmp
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end) in
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let exception Found_dup in
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try
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fold seq S.empty ~f:(fun x elts ->
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let elts' = S.add x elts in
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if elts' == elts then raise_notrace Found_dup else elts' )
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|> ignore ;
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false
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with Found_dup -> true
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let fold_opt seq s ~f =
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let state = ref s in
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let exception Stop in
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try
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seq (fun x ->
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match f x !state with
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| Some s -> state := s
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| None -> raise_notrace Stop ) ;
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Some !state
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with Stop -> None
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let folding_map seq s ~f =
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fold_map
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~f:(fun s x ->
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let y, s = f x s in
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(s, y) )
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~init:s seq
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let fold_map seq s ~f =
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let r = ref s in
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let seq' =
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persistent (fun yield ->
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seq (fun x ->
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let y, s = f x !r in
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r := s ;
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yield y ) )
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in
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(!r, seq')
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let fold_until (type res) seq s ~f ~finish =
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let state = ref s in
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let exception Stop of res in
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try
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seq (fun x ->
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match f x !state with
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| `Continue s -> state := s
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| `Stop r -> raise_notrace (Stop r) ) ;
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finish !state
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with Stop r -> r
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let fold_result (type s e) seq s ~f =
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let state = ref s in
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let exception Stop of (s, e) result in
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try
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seq (fun x ->
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match f x !state with
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| Ok s -> state := s
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| Error _ as e -> raise_notrace (Stop e) ) ;
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Ok !state
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with Stop e -> e
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