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172 lines
4.4 KiB
172 lines
4.4 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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(** Global namespace intended to be opened in each source file *)
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include module type of NS0
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module Monad = Monad
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(** Function combinators *)
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val ( let@ ) : ('a -> 'b) -> 'a -> 'b
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(** [let@ x = e in b] is equivalent to [e @@ fun x -> b], that is,
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[e (fun x -> b)] *)
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val ( >> ) : ('a -> 'b) -> ('b -> 'c) -> 'a -> 'c
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(** Composition of functions: [(f >> g) x] is exactly equivalent to
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[g (f (x))]. Left associative. *)
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val ( << ) : ('b -> 'c) -> ('a -> 'b) -> 'a -> 'c
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(** Reverse composition of functions: [(g << f) x] is exactly equivalent to
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[g (f (x))]. Left associative. *)
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val ( $ ) : ('a -> unit) -> ('a -> 'b) -> 'a -> 'b
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(** Sequential composition of functions: [(f $ g) x] is exactly equivalent
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to [(f x) ; (g x)]. Left associative. *)
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val ( $> ) : 'a -> ('a -> unit) -> 'a
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(** Reverse apply and ignore function: [x $> f] is exactly equivalent to
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[f x ; x]. Left associative. *)
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val ( <$ ) : ('a -> unit) -> 'a -> 'a
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(** Apply and ignore function: [f <$ x] is exactly equivalent to [f x ; x].
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Left associative. *)
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(** Failures *)
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exception Replay of exn * Printexc.raw_backtrace * Sexp.t
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exception Unimplemented of string
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val fail : ('a, unit -> _) fmt -> 'a
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(** Emit a message at the current indentation level, and raise a [Failure]
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exception indicating a fatal error. *)
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val todo : ('a, unit -> _) fmt -> 'a
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(** Raise an [Unimplemented] exception indicating that an input is valid but
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not handled by the current implementation. *)
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val warn : ('a, unit -> unit) fmt -> 'a
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(** Issue a warning for a survivable problem. *)
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(** Assertions *)
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val assertf : bool -> ('a, unit -> unit) fmt -> 'a
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(** Raise an [Failure] exception if the bool argument is false, indicating
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that the expected condition was not satisfied. *)
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val checkf : bool -> ('a, unit -> bool) fmt -> 'a
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(** As [assertf] but returns the argument bool. *)
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val check : ('a -> unit) -> 'a -> 'a
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(** Assert that function does not raise on argument, and return argument. *)
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val violates : ('a -> unit) -> 'a -> _
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(** Assert that function raises on argument. *)
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(** Extensions *)
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module Invariant : sig
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include module type of Core.Invariant
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exception
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Violation of
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exn * Printexc.raw_backtrace * Source_code_position.t * Sexp.t
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end
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(** Containers *)
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module Option = Option
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include module type of Option.Import
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module List = List
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module Array : sig
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include module type of Array
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type 'a t = 'a Array.t [@@deriving compare, equal, hash, sexp]
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module Import : sig
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type 'a array = 'a t [@@deriving compare, equal, hash, sexp]
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end
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val pp : (unit, unit) fmt -> 'a pp -> 'a array pp
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val map_endo : 'a t -> f:('a -> 'a) -> 'a t
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(** Like map, but specialized to require [f] to be an endofunction, which
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enables preserving [==] if [f] preserves [==] of every element. *)
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val fold_map_inplace :
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'a array -> init:'s -> f:('s -> 'a -> 's * 'a) -> 's
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val to_list_rev_map : 'a array -> f:('a -> 'b) -> 'b list
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end
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include module type of Array.Import
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module IArray = IArray
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include module type of IArray.Import
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module Set = Set
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module Map = Map
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module Multiset = Multiset
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(** Data types *)
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module String : sig
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include
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module type of Core.String
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with module Map := Core.String.Map
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with module Set := Core.String.Set
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module Map : Map.S with type key = string
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module Set : Set.S with type elt = string
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end
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module Int : sig
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include module type of Stdlib.Int
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include
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module type of Core.Int
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with module Map := Core.Int.Map
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with module Set := Core.Int.Set
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module Map : Map.S with type key = int
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module Set : Set.S with type elt = int
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end
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module Q : sig
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include module type of struct
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include Q
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end
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val of_z : Z.t -> t
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val compare : t -> t -> int
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val hash : t -> int
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val hash_fold_t : t Hash.folder
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val t_of_sexp : Sexp.t -> t
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val sexp_of_t : t -> Sexp.t
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val pp : t pp
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val pow : t -> int -> t
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end
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module Z : sig
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include module type of struct
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include Z
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end
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val compare : t -> t -> int
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val hash : t -> int
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val hash_fold_t : t Hash.folder
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val t_of_sexp : Sexp.t -> t
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val sexp_of_t : t -> Sexp.t
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val pp : t pp
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val true_ : t
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val false_ : t
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val of_bool : bool -> t
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val is_true : t -> bool
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val is_false : t -> bool
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end
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module Timer = Timer
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