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(*
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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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open Import0
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include Core.List
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let rec pp ?pre ?suf sep pp_elt fs = function
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| [] -> ()
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| x :: xs ->
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Option.iter pre ~f:(Format.fprintf fs) ;
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pp_elt fs x ;
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( match xs with
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| [] -> ()
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| xs -> Format.fprintf fs "%( %)%a" sep (pp sep pp_elt) xs ) ;
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Option.iter suf ~f:(Format.fprintf fs)
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let pop_exn =
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let not_found = Not_found_s (Atom "pop_exn") in
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function x :: xs -> (x, xs) | [] -> raise not_found
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let find_map_remove xs ~f =
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let rec find_map_remove_ ys = function
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| [] -> None
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| x :: xs -> (
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match f x with
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| Some x' -> Some (x', rev_append ys xs)
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| None -> find_map_remove_ (x :: ys) xs )
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in
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find_map_remove_ [] xs
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let fold_option xs ~init ~f =
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with_return
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@@ fun {return} ->
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Some
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(fold xs ~init ~f:(fun acc elt ->
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match f acc elt with Some res -> res | None -> return None ))
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let map_preserving_phys_equal map t ~f =
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let change = ref false in
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let t' =
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map t ~f:(fun x ->
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let x' = f x in
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if not (x' == x) then change := true ;
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x' )
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in
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if !change then t' else t
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let filter_map_preserving_phys_equal filter_map t ~f =
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let change = ref false in
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let t' =
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filter_map t ~f:(fun x ->
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let x'_opt = f x in
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( match x'_opt with
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| Some x' when x' == x -> ()
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| _ -> change := true ) ;
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x'_opt )
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in
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if !change then t' else t
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let filter_map_preserving_phys_equal t ~f =
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filter_map_preserving_phys_equal filter_map t ~f
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let map_preserving_phys_equal t ~f = map_preserving_phys_equal map t ~f
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let rev_map_unzip xs ~f =
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fold xs ~init:([], []) ~f:(fun (ys, zs) x ->
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let y, z = f x in
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(y :: ys, z :: zs) )
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let remove_exn =
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let not_found = Not_found_s (Atom "remove_exn") in
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fun ?(equal = phys_equal) xs x ->
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let rec remove_ ys = function
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| [] -> raise not_found
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| z :: xs ->
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if equal x z then rev_append ys xs else remove_ (z :: ys) xs
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in
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remove_ [] xs
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let remove ?equal xs x =
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try Some (remove_exn ?equal xs x) with Not_found_s _ -> None
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let rec rev_init n ~f =
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if n = 0 then []
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else
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let n = n - 1 in
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let xs = rev_init n ~f in
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f n :: xs
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let symmetric_diff ~compare xs ys =
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let rec symmetric_diff_ xxs yys : _ Either.t list =
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match (xxs, yys) with
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| x :: xs, y :: ys ->
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let ord = compare x y in
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if ord = 0 then symmetric_diff_ xs ys
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else if ord < 0 then First x :: symmetric_diff_ xs yys
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else Second y :: symmetric_diff_ xxs ys
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| xs, [] -> map ~f:Either.first xs
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| [], ys -> map ~f:Either.second ys
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in
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symmetric_diff_ (sort ~compare xs) (sort ~compare ys)
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let pp_diff ~compare sep pp_elt fs (xs, ys) =
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let pp_diff_elt fs elt =
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match elt with
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| First x -> Format.fprintf fs "-- %a" pp_elt x
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| Second y -> Format.fprintf fs "++ %a" pp_elt y
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in
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pp sep pp_diff_elt fs (symmetric_diff ~compare xs ys)
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