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https://github.com/CatalaLang/catala.git
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3649f92975
This changes the `decl_ctx` to be toplevel only, with flattened references to uids for most elements. The module hierarchy, which is still useful in a few places, is kept separately. Module names are also changed to UIDs early on, and support for module aliases has been added (needs testing). This resolves some issues with lookup, and should be much more robust, as well as more convenient for most lookups. The `decl_ctx` was also extended for string ident lookups, which avoids having to keep the desugared resolution structure available throughout the compilation chain.
137 lines
3.5 KiB
OCaml
137 lines
3.5 KiB
OCaml
(* This file is part of the Catala compiler, a specification language for tax
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and social benefits computation rules. Copyright (C) 2020 Inria, contributor:
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Denis Merigoux <denis.merigoux@inria.fr>
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Licensed under the Apache License, Version 2.0 (the "License"); you may not
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use this file except in compliance with the License. You may obtain a copy of
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the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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License for the specific language governing permissions and limitations under
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the License. *)
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module type Info = sig
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type info
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val to_string : info -> string
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val format : Format.formatter -> info -> unit
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val equal : info -> info -> bool
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val compare : info -> info -> int
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end
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module type Id = sig
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type t
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type info
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val fresh : info -> t
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val get_info : t -> info
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val compare : t -> t -> int
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val equal : t -> t -> bool
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val format : Format.formatter -> t -> unit
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val to_string : t -> string
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val hash : t -> int
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module Set : Set.S with type elt = t
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module Map : Map.S with type key = t
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end
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module type Style = sig
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val style : Ocolor_types.style
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end
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module Make (X : Info) (S : Style) () : Id with type info = X.info = struct
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module Ordering = struct
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type t = { id : int; info : X.info }
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let compare (x : t) (y : t) : int = Int.compare x.id y.id
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let equal x y = Int.equal x.id y.id
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let format ppf t =
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Format.pp_open_stag ppf (Ocolor_format.Ocolor_style_tag S.style);
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X.format ppf t.info;
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Format.pp_close_stag ppf ()
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end
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include Ordering
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type info = X.info
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let counter = ref 0
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let fresh (info : X.info) : t =
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incr counter;
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{ id = !counter; info }
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let get_info (uid : t) : X.info = uid.info
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let hash (x : t) : int = x.id
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let to_string t = X.to_string t.info
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module Set = Set.Make (Ordering)
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module Map = Map.Make (Ordering)
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end
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(* - Raw idents - *)
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module MarkedString = struct
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type info = string Mark.pos
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let to_string (s, _) = s
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let format fmt i = String.format fmt (to_string i)
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let equal = Mark.equal String.equal
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let compare = Mark.compare String.compare
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end
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module Gen (S : Style) () = Make (MarkedString) (S) ()
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(* - Modules, paths and qualified idents - *)
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module Module =
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Gen
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(struct
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let style = Ocolor_types.(Fg (C4 blue))
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end)
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()
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module Path = struct
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type t = Module.t list
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let format ppf p =
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Format.pp_print_list
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~pp_sep:(fun _ () -> ())
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(fun ppf m -> Format.fprintf ppf "%a@{<cyan>.@}" Module.format m)
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ppf p
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let to_string p = String.concat "." (List.map Module.to_string p)
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let equal = List.equal Module.equal
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let compare = List.compare Module.compare
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end
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module QualifiedMarkedString = struct
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type info = Path.t * MarkedString.info
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let to_string (p, i) =
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Format.asprintf "%a%a" Path.format p MarkedString.format i
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let format fmt (p, i) =
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Path.format fmt p;
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MarkedString.format fmt i
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let equal (p1, i1) (p2, i2) = Path.equal p1 p2 && MarkedString.equal i1 i2
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let compare (p1, i1) (p2, i2) =
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match Path.compare p1 p2 with 0 -> MarkedString.compare i1 i2 | n -> n
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end
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module Gen_qualified (S : Style) () = struct
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include Make (QualifiedMarkedString) (S) ()
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let fresh path t = fresh (path, t)
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let path t = fst (get_info t)
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let get_info t = snd (get_info t)
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end
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