677 lines
21 KiB
OCaml
677 lines
21 KiB
OCaml
(***********************************************************************)
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(* *)
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(* OCaml *)
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(* *)
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(* Alain Frisch, LexiFi *)
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(* *)
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(* Copyright 2015 Institut National de Recherche en Informatique et *)
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(* en Automatique. All rights reserved. This file is distributed *)
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(* under the terms of the Q Public License version 1.0. *)
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(* *)
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(***********************************************************************)
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open Asttypes
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open Typedtree
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(* TODO: add 'methods' for location, attribute, extension,
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open_description, include_declaration, include_description *)
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type mapper =
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{
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case: mapper -> case -> case;
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cases: mapper -> case list -> case list;
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class_declaration: mapper -> class_declaration -> class_declaration;
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class_description: mapper -> class_description -> class_description;
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class_expr: mapper -> class_expr -> class_expr;
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class_field: mapper -> class_field -> class_field;
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class_signature: mapper -> class_signature -> class_signature;
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class_structure: mapper -> class_structure -> class_structure;
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class_type: mapper -> class_type -> class_type;
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class_type_declaration: mapper -> class_type_declaration ->
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class_type_declaration;
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class_type_field: mapper -> class_type_field -> class_type_field;
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env: mapper -> Env.t -> Env.t;
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expr: mapper -> expression -> expression;
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extension_constructor: mapper -> extension_constructor ->
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extension_constructor;
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module_binding: mapper -> module_binding -> module_binding;
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module_coercion: mapper -> module_coercion -> module_coercion;
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module_declaration: mapper -> module_declaration -> module_declaration;
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module_expr: mapper -> module_expr -> module_expr;
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module_type: mapper -> module_type -> module_type;
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module_type_declaration:
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mapper -> module_type_declaration -> module_type_declaration;
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package_type: mapper -> package_type -> package_type;
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pat: mapper -> pattern -> pattern;
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row_field: mapper -> row_field -> row_field;
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signature: mapper -> signature -> signature;
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signature_item: mapper -> signature_item -> signature_item;
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structure: mapper -> structure -> structure;
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structure_item: mapper -> structure_item -> structure_item;
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typ: mapper -> core_type -> core_type;
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type_declaration: mapper -> type_declaration -> type_declaration;
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type_declarations: mapper -> (rec_flag * type_declaration list) ->
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(rec_flag * type_declaration list);
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type_extension: mapper -> type_extension -> type_extension;
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type_kind: mapper -> type_kind -> type_kind;
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value_binding: mapper -> value_binding -> value_binding;
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value_bindings: mapper -> (rec_flag * value_binding list) ->
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(rec_flag * value_binding list);
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value_description: mapper -> value_description -> value_description;
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with_constraint: mapper -> with_constraint -> with_constraint;
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}
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let id x = x
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let tuple2 f1 f2 (x, y) = (f1 x, f2 y)
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let tuple3 f1 f2 f3 (x, y, z) = (f1 x, f2 y, f3 z)
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let opt f = function None -> None | Some x -> Some (f x)
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let structure sub {str_items; str_type; str_final_env} =
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{
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str_items = List.map (sub.structure_item sub) str_items;
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str_final_env = sub.env sub str_final_env;
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str_type;
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}
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let class_infos sub f x =
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{x with
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ci_params = List.map (tuple2 (sub.typ sub) id) x.ci_params;
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ci_expr = f x.ci_expr;
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}
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let module_type_declaration sub x =
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let mtd_type = opt (sub.module_type sub) x.mtd_type in
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{x with mtd_type}
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let module_declaration sub x =
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let md_type = sub.module_type sub x.md_type in
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{x with md_type}
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let include_infos f x = {x with incl_mod = f x.incl_mod}
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let class_type_declaration sub x =
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class_infos sub (sub.class_type sub) x
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let class_declaration sub x =
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class_infos sub (sub.class_expr sub) x
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let structure_item sub {str_desc; str_loc; str_env} =
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let str_env = sub.env sub str_env in
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let str_desc =
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match str_desc with
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| Tstr_eval (exp, attrs) -> Tstr_eval (sub.expr sub exp, attrs)
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| Tstr_value (rec_flag, list) ->
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let (rec_flag, list) = sub.value_bindings sub (rec_flag, list) in
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Tstr_value (rec_flag, list)
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| Tstr_primitive v -> Tstr_primitive (sub.value_description sub v)
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| Tstr_type (rec_flag, list) ->
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let (rec_flag, list) = sub.type_declarations sub (rec_flag, list) in
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Tstr_type (rec_flag, list)
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| Tstr_typext te -> Tstr_typext (sub.type_extension sub te)
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| Tstr_exception ext -> Tstr_exception (sub.extension_constructor sub ext)
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| Tstr_module mb -> Tstr_module (sub.module_binding sub mb)
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| Tstr_recmodule list ->
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Tstr_recmodule (List.map (sub.module_binding sub) list)
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| Tstr_modtype x -> Tstr_modtype (sub.module_type_declaration sub x)
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| Tstr_class list ->
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Tstr_class
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(List.map (tuple2 (sub.class_declaration sub) id) list)
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| Tstr_class_type list ->
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Tstr_class_type
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(List.map (tuple3 id id (sub.class_type_declaration sub)) list)
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| Tstr_include incl ->
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Tstr_include (include_infos (sub.module_expr sub) incl)
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| Tstr_open _
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| Tstr_attribute _ as d -> d
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in
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{str_desc; str_env; str_loc}
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let value_description sub x =
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let val_desc = sub.typ sub x.val_desc in
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{x with val_desc}
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let label_decl sub x =
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let ld_type = sub.typ sub x.ld_type in
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{x with ld_type}
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let constructor_args sub = function
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| Cstr_tuple l -> Cstr_tuple (List.map (sub.typ sub) l)
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| Cstr_record l -> Cstr_record (List.map (label_decl sub) l)
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let constructor_decl sub cd =
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let cd_args = constructor_args sub cd.cd_args in
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let cd_res = opt (sub.typ sub) cd.cd_res in
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{cd with cd_args; cd_res}
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let type_kind sub = function
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| Ttype_abstract -> Ttype_abstract
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| Ttype_variant list -> Ttype_variant (List.map (constructor_decl sub) list)
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| Ttype_record list -> Ttype_record (List.map (label_decl sub) list)
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| Ttype_open -> Ttype_open
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let type_declaration sub x =
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let typ_cstrs =
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List.map
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(tuple3 (sub.typ sub) (sub.typ sub) id)
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x.typ_cstrs
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in
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let typ_kind = sub.type_kind sub x.typ_kind in
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let typ_manifest = opt (sub.typ sub) x.typ_manifest in
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let typ_params = List.map (tuple2 (sub.typ sub) id) x.typ_params in
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{x with typ_cstrs; typ_kind; typ_manifest; typ_params}
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let type_declarations sub (rec_flag, list) =
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(rec_flag, List.map (sub.type_declaration sub) list)
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let type_extension sub x =
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let tyext_params = List.map (tuple2 (sub.typ sub) id) x.tyext_params in
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let tyext_constructors =
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List.map (sub.extension_constructor sub) x.tyext_constructors
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in
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{x with tyext_constructors; tyext_params}
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let extension_constructor sub x =
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let ext_kind =
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match x.ext_kind with
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Text_decl(ctl, cto) ->
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Text_decl(constructor_args sub ctl, opt (sub.typ sub) cto)
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| Text_rebind _ as d -> d
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in
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{x with ext_kind}
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let pat sub x =
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let extra = function
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| Tpat_type _
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| Tpat_unpack as d -> d
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| Tpat_constraint ct -> Tpat_constraint (sub.typ sub ct)
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in
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let pat_env = sub.env sub x.pat_env in
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let pat_extra = List.map (tuple3 extra id id) x.pat_extra in
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let pat_desc =
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match x.pat_desc with
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| Tpat_any
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| Tpat_var _
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| Tpat_constant _ as d -> d
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| Tpat_tuple l -> Tpat_tuple (List.map (sub.pat sub) l)
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| Tpat_construct (loc, cd, l) ->
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Tpat_construct (loc, cd, List.map (sub.pat sub) l)
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| Tpat_variant (l, po, rd) -> Tpat_variant (l, opt (sub.pat sub) po, rd)
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| Tpat_record (l, closed) ->
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Tpat_record (List.map (tuple3 id id (sub.pat sub)) l, closed)
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| Tpat_array l -> Tpat_array (List.map (sub.pat sub) l)
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| Tpat_or (p1, p2, rd) ->
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Tpat_or (sub.pat sub p1, sub.pat sub p2, rd)
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| Tpat_alias (p, id, s) -> Tpat_alias (sub.pat sub p, id, s)
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| Tpat_lazy p -> Tpat_lazy (sub.pat sub p)
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in
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{x with pat_extra; pat_desc; pat_env}
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let expr sub x =
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let extra = function
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| Texp_constraint cty ->
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Texp_constraint (sub.typ sub cty)
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| Texp_coerce (cty1, cty2) ->
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Texp_coerce (opt (sub.typ sub) cty1, sub.typ sub cty2)
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| Texp_open (ovf, path, loc, env) ->
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Texp_open (ovf, path, loc, sub.env sub env)
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| Texp_newtype _ as d -> d
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| Texp_poly cto -> Texp_poly (opt (sub.typ sub) cto)
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in
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let exp_extra = List.map (tuple3 extra id id) x.exp_extra in
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let exp_env = sub.env sub x.exp_env in
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let exp_desc =
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match x.exp_desc with
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| Texp_ident _
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| Texp_constant _ as d -> d
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| Texp_let (rec_flag, list, exp) ->
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let (rec_flag, list) = sub.value_bindings sub (rec_flag, list) in
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Texp_let (rec_flag, list, sub.expr sub exp)
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| Texp_function (l, cases, p) ->
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Texp_function (l, sub.cases sub cases, p)
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| Texp_apply (exp, list) ->
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Texp_apply (
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sub.expr sub exp,
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List.map (tuple2 id (opt (sub.expr sub))) list
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)
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| Texp_match (exp, cases, exn_cases, p) ->
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Texp_match (
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sub.expr sub exp,
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sub.cases sub cases,
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sub.cases sub exn_cases,
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p
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)
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| Texp_try (exp, cases) ->
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Texp_try (
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sub.expr sub exp,
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sub.cases sub cases
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)
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| Texp_tuple list ->
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Texp_tuple (List.map (sub.expr sub) list)
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| Texp_construct (lid, cd, args) ->
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Texp_construct (lid, cd, List.map (sub.expr sub) args)
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| Texp_variant (l, expo) ->
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Texp_variant (l, opt (sub.expr sub) expo)
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| Texp_record (list, expo) ->
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Texp_record (
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List.map (tuple3 id id (sub.expr sub)) list,
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opt (sub.expr sub) expo
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)
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| Texp_field (exp, lid, ld) ->
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Texp_field (sub.expr sub exp, lid, ld)
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| Texp_setfield (exp1, lid, ld, exp2) ->
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Texp_setfield (
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sub.expr sub exp1,
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lid,
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ld,
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sub.expr sub exp2
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)
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| Texp_array list ->
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Texp_array (List.map (sub.expr sub) list)
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| Texp_ifthenelse (exp1, exp2, expo) ->
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Texp_ifthenelse (
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sub.expr sub exp1,
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sub.expr sub exp2,
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opt (sub.expr sub) expo
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)
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| Texp_sequence (exp1, exp2) ->
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Texp_sequence (
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sub.expr sub exp1,
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sub.expr sub exp2
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)
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| Texp_while (exp1, exp2) ->
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Texp_while (
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sub.expr sub exp1,
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sub.expr sub exp2
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)
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| Texp_for (id, p, exp1, exp2, dir, exp3) ->
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Texp_for (
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id,
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p,
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sub.expr sub exp1,
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sub.expr sub exp2,
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dir,
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sub.expr sub exp3
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)
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| Texp_send (exp, meth, expo) ->
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Texp_send
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(
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sub.expr sub exp,
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meth,
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opt (sub.expr sub) expo
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)
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| Texp_new _
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| Texp_instvar _ as d -> d
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| Texp_setinstvar (path1, path2, id, exp) ->
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Texp_setinstvar (
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path1,
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path2,
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id,
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sub.expr sub exp
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)
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| Texp_override (path, list) ->
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Texp_override (
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path,
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List.map (tuple3 id id (sub.expr sub)) list
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)
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| Texp_letmodule (id, s, mexpr, exp) ->
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Texp_letmodule (
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id,
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s,
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sub.module_expr sub mexpr,
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sub.expr sub exp
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)
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| Texp_assert exp ->
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Texp_assert (sub.expr sub exp)
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| Texp_lazy exp ->
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Texp_lazy (sub.expr sub exp)
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| Texp_object (cl, sl) ->
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Texp_object (sub.class_structure sub cl, sl)
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| Texp_pack mexpr ->
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Texp_pack (sub.module_expr sub mexpr)
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| Texp_unreachable ->
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Texp_unreachable
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| Texp_extension_constructor _ as e ->
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e
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in
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{x with exp_extra; exp_desc; exp_env}
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let package_type sub x =
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let pack_fields = List.map (tuple2 id (sub.typ sub)) x.pack_fields in
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{x with pack_fields}
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let signature sub x =
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let sig_final_env = sub.env sub x.sig_final_env in
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let sig_items = List.map (sub.signature_item sub) x.sig_items in
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{x with sig_items; sig_final_env}
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let signature_item sub x =
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let sig_env = sub.env sub x.sig_env in
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let sig_desc =
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match x.sig_desc with
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| Tsig_value v ->
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Tsig_value (sub.value_description sub v)
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| Tsig_type (rec_flag, list) ->
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let (rec_flag, list) = sub.type_declarations sub (rec_flag, list) in
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Tsig_type (rec_flag, list)
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| Tsig_typext te ->
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Tsig_typext (sub.type_extension sub te)
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| Tsig_exception ext ->
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Tsig_exception (sub.extension_constructor sub ext)
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| Tsig_module x ->
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Tsig_module (sub.module_declaration sub x)
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| Tsig_recmodule list ->
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Tsig_recmodule (List.map (sub.module_declaration sub) list)
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| Tsig_modtype x ->
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Tsig_modtype (sub.module_type_declaration sub x)
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| Tsig_include incl ->
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Tsig_include (include_infos (sub.module_type sub) incl)
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| Tsig_class list ->
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Tsig_class (List.map (sub.class_description sub) list)
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| Tsig_class_type list ->
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Tsig_class_type
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(List.map (sub.class_type_declaration sub) list)
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| Tsig_open _
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| Tsig_attribute _ as d -> d
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in
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{x with sig_desc; sig_env}
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let class_description sub x =
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class_infos sub (sub.class_type sub) x
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let module_type sub x =
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let mty_env = sub.env sub x.mty_env in
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let mty_desc =
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match x.mty_desc with
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| Tmty_ident _
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| Tmty_alias _ as d -> d
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| Tmty_signature sg -> Tmty_signature (sub.signature sub sg)
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| Tmty_functor (id, s, mtype1, mtype2) ->
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Tmty_functor (
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id,
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s,
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opt (sub.module_type sub) mtype1,
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sub.module_type sub mtype2
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)
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| Tmty_with (mtype, list) ->
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Tmty_with (
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sub.module_type sub mtype,
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List.map (tuple3 id id (sub.with_constraint sub)) list
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)
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| Tmty_typeof mexpr ->
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Tmty_typeof (sub.module_expr sub mexpr)
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in
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{x with mty_desc; mty_env}
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let with_constraint sub = function
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| Twith_type decl -> Twith_type (sub.type_declaration sub decl)
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| Twith_typesubst decl -> Twith_typesubst (sub.type_declaration sub decl)
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| Twith_module _
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| Twith_modsubst _ as d -> d
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let module_coercion sub = function
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| Tcoerce_none -> Tcoerce_none
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| Tcoerce_functor (c1,c2) ->
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Tcoerce_functor (sub.module_coercion sub c1, sub.module_coercion sub c2)
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| Tcoerce_alias (p, c1) ->
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Tcoerce_alias (p, sub.module_coercion sub c1)
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| Tcoerce_structure (l1, l2) ->
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let l1' = List.map (fun (i,c) -> i, sub.module_coercion sub c) l1 in
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let l2' =
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List.map (fun (id,i,c) -> id, i, sub.module_coercion sub c) l2
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in
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Tcoerce_structure (l1', l2')
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| Tcoerce_primitive pc ->
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Tcoerce_primitive {pc with pc_env = sub.env sub pc.pc_env}
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let module_expr sub x =
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let mod_env = sub.env sub x.mod_env in
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let mod_desc =
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match x.mod_desc with
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| Tmod_ident _ as d -> d
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| Tmod_structure st -> Tmod_structure (sub.structure sub st)
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| Tmod_functor (id, s, mtype, mexpr) ->
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Tmod_functor (
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id,
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s,
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opt (sub.module_type sub) mtype,
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sub.module_expr sub mexpr
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)
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| Tmod_apply (mexp1, mexp2, c) ->
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Tmod_apply (
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sub.module_expr sub mexp1,
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sub.module_expr sub mexp2,
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sub.module_coercion sub c
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)
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| Tmod_constraint (mexpr, mt, Tmodtype_implicit, c) ->
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Tmod_constraint (sub.module_expr sub mexpr, mt, Tmodtype_implicit,
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sub.module_coercion sub c)
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| Tmod_constraint (mexpr, mt, Tmodtype_explicit mtype, c) ->
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Tmod_constraint (
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sub.module_expr sub mexpr,
|
|
mt,
|
|
Tmodtype_explicit (sub.module_type sub mtype),
|
|
sub.module_coercion sub c
|
|
)
|
|
| Tmod_unpack (exp, mty) ->
|
|
Tmod_unpack
|
|
(
|
|
sub.expr sub exp,
|
|
mty
|
|
)
|
|
in
|
|
{x with mod_desc; mod_env}
|
|
|
|
let module_binding sub x =
|
|
let mb_expr = sub.module_expr sub x.mb_expr in
|
|
{x with mb_expr}
|
|
|
|
let class_expr sub x =
|
|
let cl_env = sub.env sub x.cl_env in
|
|
let cl_desc =
|
|
match x.cl_desc with
|
|
| Tcl_constraint (cl, clty, vals, meths, concrs) ->
|
|
Tcl_constraint (
|
|
sub.class_expr sub cl,
|
|
opt (sub.class_type sub) clty,
|
|
vals,
|
|
meths,
|
|
concrs
|
|
)
|
|
| Tcl_structure clstr ->
|
|
Tcl_structure (sub.class_structure sub clstr)
|
|
| Tcl_fun (label, pat, priv, cl, partial) ->
|
|
Tcl_fun (
|
|
label,
|
|
sub.pat sub pat,
|
|
List.map (tuple3 id id (sub.expr sub)) priv,
|
|
sub.class_expr sub cl,
|
|
partial
|
|
)
|
|
| Tcl_apply (cl, args) ->
|
|
Tcl_apply (
|
|
sub.class_expr sub cl,
|
|
List.map (tuple2 id (opt (sub.expr sub))) args
|
|
)
|
|
| Tcl_let (rec_flag, value_bindings, ivars, cl) ->
|
|
let (rec_flag, value_bindings) =
|
|
sub.value_bindings sub (rec_flag, value_bindings)
|
|
in
|
|
Tcl_let (
|
|
rec_flag,
|
|
value_bindings,
|
|
List.map (tuple3 id id (sub.expr sub)) ivars,
|
|
sub.class_expr sub cl
|
|
)
|
|
| Tcl_ident (path, lid, tyl) ->
|
|
Tcl_ident (path, lid, List.map (sub.typ sub) tyl)
|
|
in
|
|
{x with cl_desc; cl_env}
|
|
|
|
let class_type sub x =
|
|
let cltyp_env = sub.env sub x.cltyp_env in
|
|
let cltyp_desc =
|
|
match x.cltyp_desc with
|
|
| Tcty_signature csg -> Tcty_signature (sub.class_signature sub csg)
|
|
| Tcty_constr (path, lid, list) ->
|
|
Tcty_constr (
|
|
path,
|
|
lid,
|
|
List.map (sub.typ sub) list
|
|
)
|
|
| Tcty_arrow (label, ct, cl) ->
|
|
Tcty_arrow
|
|
(label,
|
|
sub.typ sub ct,
|
|
sub.class_type sub cl
|
|
)
|
|
in
|
|
{x with cltyp_desc; cltyp_env}
|
|
|
|
let class_signature sub x =
|
|
let csig_self = sub.typ sub x.csig_self in
|
|
let csig_fields = List.map (sub.class_type_field sub) x.csig_fields in
|
|
{x with csig_self; csig_fields}
|
|
|
|
let class_type_field sub x =
|
|
let ctf_desc =
|
|
match x.ctf_desc with
|
|
| Tctf_inherit ct ->
|
|
Tctf_inherit (sub.class_type sub ct)
|
|
| Tctf_val (s, mut, virt, ct) ->
|
|
Tctf_val (s, mut, virt, sub.typ sub ct)
|
|
| Tctf_method (s, priv, virt, ct) ->
|
|
Tctf_method (s, priv, virt, sub.typ sub ct)
|
|
| Tctf_constraint (ct1, ct2) ->
|
|
Tctf_constraint (sub.typ sub ct1, sub.typ sub ct2)
|
|
| Tctf_attribute _ as d -> d
|
|
in
|
|
{x with ctf_desc}
|
|
|
|
let typ sub x =
|
|
let ctyp_env = sub.env sub x.ctyp_env in
|
|
let ctyp_desc =
|
|
match x.ctyp_desc with
|
|
| Ttyp_any
|
|
| Ttyp_var _ as d -> d
|
|
| Ttyp_arrow (label, ct1, ct2) ->
|
|
Ttyp_arrow (label, sub.typ sub ct1, sub.typ sub ct2)
|
|
| Ttyp_tuple list -> Ttyp_tuple (List.map (sub.typ sub) list)
|
|
| Ttyp_constr (path, lid, list) ->
|
|
Ttyp_constr (path, lid, List.map (sub.typ sub) list)
|
|
| Ttyp_object (list, closed) ->
|
|
Ttyp_object (
|
|
List.map (tuple3 id id (sub.typ sub)) list,
|
|
closed
|
|
)
|
|
| Ttyp_class (path, lid, list) ->
|
|
Ttyp_class
|
|
(path,
|
|
lid,
|
|
List.map (sub.typ sub) list
|
|
)
|
|
| Ttyp_alias (ct, s) ->
|
|
Ttyp_alias (sub.typ sub ct, s)
|
|
| Ttyp_variant (list, closed, labels) ->
|
|
Ttyp_variant (List.map (sub.row_field sub) list, closed, labels)
|
|
| Ttyp_poly (sl, ct) ->
|
|
Ttyp_poly (sl, sub.typ sub ct)
|
|
| Ttyp_package pack ->
|
|
Ttyp_package (sub.package_type sub pack)
|
|
in
|
|
{x with ctyp_desc; ctyp_env}
|
|
|
|
let class_structure sub x =
|
|
let cstr_self = sub.pat sub x.cstr_self in
|
|
let cstr_fields = List.map (sub.class_field sub) x.cstr_fields in
|
|
{x with cstr_self; cstr_fields}
|
|
|
|
let row_field sub = function
|
|
| Ttag (label, attrs, b, list) ->
|
|
Ttag (label, attrs, b, List.map (sub.typ sub) list)
|
|
| Tinherit ct -> Tinherit (sub.typ sub ct)
|
|
|
|
let class_field_kind sub = function
|
|
| Tcfk_virtual ct -> Tcfk_virtual (sub.typ sub ct)
|
|
| Tcfk_concrete (ovf, e) -> Tcfk_concrete (ovf, sub.expr sub e)
|
|
|
|
let class_field sub x =
|
|
let cf_desc =
|
|
match x.cf_desc with
|
|
| Tcf_inherit (ovf, cl, super, vals, meths) ->
|
|
Tcf_inherit (ovf, sub.class_expr sub cl, super, vals, meths)
|
|
| Tcf_constraint (cty, cty') ->
|
|
Tcf_constraint (
|
|
sub.typ sub cty,
|
|
sub.typ sub cty'
|
|
)
|
|
| Tcf_val (s, mf, id, k, b) ->
|
|
Tcf_val (s, mf, id, class_field_kind sub k, b)
|
|
| Tcf_method (s, priv, k) ->
|
|
Tcf_method (s, priv, class_field_kind sub k)
|
|
| Tcf_initializer exp ->
|
|
Tcf_initializer (sub.expr sub exp)
|
|
| Tcf_attribute _ as d -> d
|
|
in
|
|
{x with cf_desc}
|
|
|
|
let value_bindings sub (rec_flag, list) =
|
|
(rec_flag, List.map (sub.value_binding sub) list)
|
|
|
|
let cases sub l =
|
|
List.map (sub.case sub) l
|
|
|
|
let case sub {c_lhs; c_guard; c_rhs} =
|
|
{
|
|
c_lhs = sub.pat sub c_lhs;
|
|
c_guard = opt (sub.expr sub) c_guard;
|
|
c_rhs = sub.expr sub c_rhs;
|
|
}
|
|
|
|
let value_binding sub x =
|
|
let vb_pat = sub.pat sub x.vb_pat in
|
|
let vb_expr = sub.expr sub x.vb_expr in
|
|
{x with vb_pat; vb_expr}
|
|
|
|
let env _sub x = x
|
|
|
|
let default =
|
|
{
|
|
case;
|
|
cases;
|
|
class_declaration;
|
|
class_description;
|
|
class_expr;
|
|
class_field;
|
|
class_signature;
|
|
class_structure;
|
|
class_type;
|
|
class_type_declaration;
|
|
class_type_field;
|
|
env;
|
|
expr;
|
|
extension_constructor;
|
|
module_binding;
|
|
module_coercion;
|
|
module_declaration;
|
|
module_expr;
|
|
module_type;
|
|
module_type_declaration;
|
|
package_type;
|
|
pat;
|
|
row_field;
|
|
signature;
|
|
signature_item;
|
|
structure;
|
|
structure_item;
|
|
typ;
|
|
type_declaration;
|
|
type_declarations;
|
|
type_extension;
|
|
type_kind;
|
|
value_binding;
|
|
value_bindings;
|
|
value_description;
|
|
with_constraint;
|
|
}
|