505 lines
18 KiB
OCaml
505 lines
18 KiB
OCaml
(***********************************************************************)
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(* OCamldoc *)
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(* *)
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(* Maxence Guesdon, projet Cristal, INRIA Rocquencourt *)
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(* *)
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(* Copyright 2001 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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(** Representation and manipulation of modules and module types. *)
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let print_DEBUG s = print_string s ; print_newline ()
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module Name = Odoc_name
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(** To keep the order of elements in a module. *)
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type module_element =
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Element_module of t_module
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| Element_module_type of t_module_type
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| Element_included_module of included_module
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| Element_class of Odoc_class.t_class
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| Element_class_type of Odoc_class.t_class_type
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| Element_value of Odoc_value.t_value
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| Element_exception of Odoc_exception.t_exception
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| Element_type of Odoc_type.t_type
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| Element_module_comment of Odoc_types.text
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(** Used where we can reference t_module or t_module_type *)
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and mmt =
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| Mod of t_module
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| Modtype of t_module_type
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and included_module = {
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im_name : Name.t ; (** the name of the included module *)
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mutable im_module : mmt option ; (** the included module or module type *)
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}
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and module_alias = {
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ma_name : Name.t ;
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mutable ma_module : mmt option ; (** the real module or module type if we could associate it *)
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}
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(** Different kinds of module. *)
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and module_kind =
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| Module_struct of module_element list
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| Module_alias of module_alias (** complete name and corresponding module if we found it *)
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| Module_functor of (Odoc_parameter.module_parameter list) * module_kind
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| Module_apply of module_kind * module_kind
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| Module_with of module_type_kind * string
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| Module_constraint of module_kind * module_type_kind
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(** Representation of a module. *)
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and t_module = {
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m_name : Name.t ;
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m_type : Types.module_type ;
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mutable m_info : Odoc_types.info option ;
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m_is_interface : bool ; (** true for modules read from interface files *)
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m_file : string ; (** the file the module is defined in. *)
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mutable m_kind : module_kind ;
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mutable m_loc : Odoc_types.location ;
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mutable m_top_deps : Name.t list ; (** The toplevels module names this module depends on. *)
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}
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and module_type_alias = {
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mta_name : Name.t ;
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mutable mta_module : t_module_type option ; (** the real module type if we could associate it *)
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}
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(** Different kinds of module type. *)
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and module_type_kind =
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| Module_type_struct of module_element list
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| Module_type_functor of (Odoc_parameter.module_parameter list) * module_type_kind
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| Module_type_alias of module_type_alias (** complete name and corresponding module type if we found it *)
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| Module_type_with of module_type_kind * string (** the module type kind and the code of the with constraint *)
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(** Representation of a module type. *)
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and t_module_type = {
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mt_name : Name.t ;
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mutable mt_info : Odoc_types.info option ;
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mt_type : Types.module_type option ; (** [None] = abstract module type *)
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mt_is_interface : bool ; (** true for modules read from interface files *)
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mt_file : string ; (** the file the module type is defined in. *)
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mutable mt_kind : module_type_kind option ; (** [None] = abstract module type if mt_type = None ;
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Always [None] when the module type was extracted from the implementation file. *)
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mutable mt_loc : Odoc_types.location ;
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}
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(** {2 Functions} *)
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(** Returns the list of values from a list of module_element. *)
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let values l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_value v -> acc @ [v]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of types from a list of module_element. *)
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let types l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_type t -> acc @ [t]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of exceptions from a list of module_element. *)
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let exceptions l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_exception e -> acc @ [e]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of classes from a list of module_element. *)
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let classes l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_class c -> acc @ [c]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of class types from a list of module_element. *)
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let class_types l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_class_type ct -> acc @ [ct]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of modules from a list of module_element. *)
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let modules l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_module m -> acc @ [m]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of module types from a list of module_element. *)
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let mod_types l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_module_type mt -> acc @ [mt]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of module comment from a list of module_element. *)
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let comments l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_module_comment t -> acc @ [t]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of included modules from a list of module_element. *)
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let included_modules l =
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List.fold_left
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(fun acc -> fun ele ->
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match ele with
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Element_included_module m -> acc @ [m]
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| _ -> acc
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)
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[]
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l
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(** Returns the list of elements of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let rec module_elements ?(trans=true) m =
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let rec iter_kind = function
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Module_struct l -> l
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| Module_alias ma ->
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if trans then
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match ma.ma_module with
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None -> []
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| Some (Mod m) -> module_elements m
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| Some (Modtype mt) -> module_type_elements mt
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else
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[]
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| Module_functor (_, k)
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| Module_apply (k, _) -> iter_kind k
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| Module_with (tk,_) ->
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module_type_elements ~trans: trans
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{ mt_name = "" ; mt_info = None ; mt_type = None ;
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mt_is_interface = false ; mt_file = "" ; mt_kind = Some tk ;
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mt_loc = Odoc_types.dummy_loc ;
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}
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| Module_constraint (k, tk) ->
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(* A VOIR : utiliser k ou tk ? *)
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module_elements ~trans: trans
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{ m_name = "" ; m_info = None ; m_type = Types.Tmty_signature [] ;
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m_is_interface = false ; m_file = "" ; m_kind = k ;
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m_loc = Odoc_types.dummy_loc ;
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m_top_deps = [] ;
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}
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(*
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module_type_elements ~trans: trans
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{ mt_name = "" ; mt_info = None ; mt_type = None ;
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mt_is_interface = false ; mt_file = "" ; mt_kind = Some tk ;
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mt_loc = Odoc_types.dummy_loc }
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*)
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in
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iter_kind m.m_kind
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(** Returns the list of elements of a module type.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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and module_type_elements ?(trans=true) mt =
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let rec iter_kind = function
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| None -> []
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| Some (Module_type_struct l) -> l
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| Some (Module_type_functor (_, k)) -> iter_kind (Some k)
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| Some (Module_type_with (k, _)) ->
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if trans then
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iter_kind (Some k)
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else
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[]
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| Some (Module_type_alias mta) ->
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if trans then
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match mta.mta_module with
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None -> []
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| Some mt -> module_type_elements mt
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else
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[]
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in
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iter_kind mt.mt_kind
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(** Returns the list of values of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_values ?(trans=true) m = values (module_elements ~trans m)
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(** Returns the list of functional values of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_functions ?(trans=true) m =
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List.filter
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(fun v -> Odoc_value.is_function v)
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(values (module_elements ~trans m))
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(** Returns the list of non-functional values of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_simple_values ?(trans=true) m =
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List.filter
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(fun v -> not (Odoc_value.is_function v))
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(values (module_elements ~trans m))
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(** Returns the list of types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_types ?(trans=true) m = types (module_elements ~trans m)
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(** Returns the list of excptions of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_exceptions ?(trans=true) m = exceptions (module_elements ~trans m)
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(** Returns the list of classes of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_classes ?(trans=true) m = classes (module_elements ~trans m)
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(** Returns the list of class types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_class_types ?(trans=true) m = class_types (module_elements ~trans m)
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(** Returns the list of modules of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_modules ?(trans=true) m = modules (module_elements ~trans m)
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(** Returns the list of module types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_module_types ?(trans=true) m = mod_types (module_elements ~trans m)
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(** Returns the list of included module of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_included_modules ?(trans=true) m = included_modules (module_elements ~trans m)
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(** Returns the list of comments of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_comments ?(trans=true) m = comments (module_elements ~trans m)
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(** Access to the parameters, for a functor type.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let rec module_type_parameters ?(trans=true) mt =
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let rec iter k =
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match k with
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Some (Module_type_functor (params, _)) ->
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(
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(* we create the couple (parameter, description opt), using
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the description of the parameter if we can find it in the comment.*)
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match mt.mt_info with
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None ->
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List.map (fun p -> (p, None)) params
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| Some i ->
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List.map
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(fun p ->
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try
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let d = List.assoc p.Odoc_parameter.mp_name i.Odoc_types.i_params in
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(p, Some d)
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with
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Not_found ->
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(p, None)
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)
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params
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)
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| Some (Module_type_alias mta) ->
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if trans then
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match mta.mta_module with
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None -> []
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| Some mt2 -> module_type_parameters ~trans mt2
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else
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[]
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| Some (Module_type_with (k, _)) ->
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if trans then
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iter (Some k)
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else
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[]
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| Some (Module_type_struct _) ->
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[]
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| None ->
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[]
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in
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iter mt.mt_kind
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(** Access to the parameters, for a functor.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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and module_parameters ?(trans=true) m =
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match m.m_kind with
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Module_functor (params, _) ->
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(
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(* we create the couple (parameter, description opt), using
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the description of the parameter if we can find it in the comment.*)
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match m.m_info with
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None ->
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List.map (fun p -> (p, None)) params
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| Some i ->
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List.map
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(fun p ->
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try
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let d = List.assoc p.Odoc_parameter.mp_name i.Odoc_types.i_params in
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(p, Some d)
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with
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Not_found ->
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(p, None)
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)
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params
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)
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| Module_alias ma ->
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if trans then
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match ma.ma_module with
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None -> []
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| Some (Mod m) -> module_parameters ~trans m
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| Some (Modtype mt) -> module_type_parameters ~trans mt
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else
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[]
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| Module_constraint (k, tk) ->
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module_type_parameters ~trans: trans
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{ mt_name = "" ; mt_info = None ; mt_type = None ;
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mt_is_interface = false ; mt_file = "" ; mt_kind = Some tk ;
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mt_loc = Odoc_types.dummy_loc }
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| Module_struct _
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| Module_apply _
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| Module_with _ ->
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[]
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(** access to all submodules and sudmobules of submodules ... of the given module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let rec module_all_submodules ?(trans=true) m =
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let l = module_modules ~trans m in
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List.fold_left
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(fun acc -> fun m -> acc @ (module_all_submodules ~trans m))
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l
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l
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(** The module type is a functor if is defined as a functor or if it is an alias for a functor. *)
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let rec module_type_is_functor mt =
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let rec iter k =
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match k with
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Some (Module_type_functor _) -> true
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| Some (Module_type_alias mta) ->
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(
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match mta.mta_module with
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None -> false
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| Some mtyp -> module_type_is_functor mtyp
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)
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| Some (Module_type_with (k, _)) ->
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iter (Some k)
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| Some (Module_type_struct _)
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| None -> false
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in
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iter mt.mt_kind
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(** The module is a functor if is defined as a functor or if it is an alias for a functor. *)
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let rec module_is_functor m =
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match m.m_kind with
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Module_functor _ -> true
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| Module_alias ma ->
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(
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match ma.ma_module with
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None -> false
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| Some (Mod mo) -> module_is_functor mo
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| Some (Modtype mt) -> module_type_is_functor mt
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)
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| _ -> false
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(** Returns the list of values of a module type.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_values ?(trans=true) m = values (module_type_elements ~trans m)
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(** Returns the list of types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_types ?(trans=true) m = types (module_type_elements ~trans m)
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(** Returns the list of excptions of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_exceptions ?(trans=true) m = exceptions (module_type_elements ~trans m)
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(** Returns the list of classes of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_classes ?(trans=true) m = classes (module_type_elements ~trans m)
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(** Returns the list of class types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_class_types ?(trans=true) m = class_types (module_type_elements ~trans m)
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(** Returns the list of modules of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_modules ?(trans=true) m = modules (module_type_elements ~trans m)
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(** Returns the list of module types of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_module_types ?(trans=true) m = mod_types (module_type_elements ~trans m)
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(** Returns the list of included module of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_included_modules ?(trans=true) m = included_modules (module_type_elements ~trans m)
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(** Returns the list of comments of a module.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_comments ?(trans=true) m = comments (module_type_elements ~trans m)
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(** Returns the list of functional values of a module type.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_functions ?(trans=true) mt =
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List.filter
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(fun v -> Odoc_value.is_function v)
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(values (module_type_elements ~trans mt))
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(** Returns the list of non-functional values of a module type.
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let module_type_simple_values ?(trans=true) mt =
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List.filter
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(fun v -> not (Odoc_value.is_function v))
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(values (module_type_elements ~trans mt))
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(** {2 Functions for modules and module types} *)
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(** The list of classes defined in this module and all its modules, functors, ....
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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let rec module_all_classes ?(trans=true) m =
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List.fold_left
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(fun acc -> fun m -> acc @ (module_all_classes ~trans m))
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(
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List.fold_left
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(fun acc -> fun mtyp -> acc @ (module_type_all_classes ~trans mtyp))
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(module_classes ~trans m)
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(module_module_types ~trans m)
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)
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(module_modules ~trans m)
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(** The list of classes defined in this module type and all its modules, functors, ....
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@param trans indicates if, for aliased modules, we must perform a transitive search.*)
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|
and module_type_all_classes ?(trans=true) mt =
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List.fold_left
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(fun acc -> fun m -> acc @ (module_all_classes ~trans m))
|
|
(
|
|
List.fold_left
|
|
(fun acc -> fun mtyp -> acc @ (module_type_all_classes ~trans mtyp))
|
|
(module_type_classes ~trans mt)
|
|
(module_type_module_types ~trans mt)
|
|
)
|
|
(module_type_modules ~trans mt)
|