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Source file html.ml

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(*
 * Generic transformers: plugins.
 * Copyright (C) 2016-2022
 *   Dmitrii Kosarev aka Kakadu
 * St.Petersburg State University, JetBrains Research
 *)

(** {i Html} module: converts a value to its html represenation (work in progress).
*)

(*
    For type declaration [type ('a,'b,...) typ = ...] it will create a transformation
    function with type

    [('a -> HTML.er) -> ('b -> HTML.er) -> ... ->
     ('a,'b,...) typ -> HTML.er ]

    Inherited attributes' type (both default and for type parameters) are absent.

    Synthesized attributes' type (both default and for type parameters) is [HTML.er].
*)

open Ppxlib
open Printf
open GTCommon
open HelpersBase

let trait_name = "html"

module Make (AstHelpers : GTHELPERS_sig.S) = struct
  let trait_name = trait_name

  module P = Plugin.Make (AstHelpers)
  open AstHelpers

  let app_format_sprintf ~loc arg =
    Exp.app ~loc (Exp.of_longident ~loc (Ldot (Lident "Format", "sprintf"))) arg
  ;;

  module H = struct
    type elt = Exp.t

    let wrap ~loc s = Exp.of_longident ~loc (Ldot (Lident "HTML", s))
    let pcdata ~loc s = Exp.(app ~loc (wrap ~loc "string") (string_const ~loc s))
    let div ~loc xs = Exp.app ~loc (wrap ~loc "list") @@ Exp.list ~loc xs

    let to_list_e ~loc xs =
      List.fold_right
        xs
        ~init:(Exp.construct ~loc (lident "[]") [])
        ~f:(fun x acc ->
          Exp.app_list
            ~loc
            (Exp.of_longident ~loc (Ldot (Lident "List", "cons")))
            [ x; acc ])
    ;;

    let li ~loc xs =
      Exp.app ~loc (wrap ~loc "li") @@ Exp.app ~loc (wrap ~loc "seq") @@ to_list_e ~loc xs
    ;;

    let seq ~loc xs = Exp.app ~loc (wrap ~loc "seq") @@ to_list_e ~loc xs

    (* let ol ~loc xs =
     *   Exp.app ~loc (wrap ~loc "ol") @@ Exp.app ~loc (wrap ~loc "seq") @@ to_list_e ~loc xs *)
    let ul ~loc xs =
      Exp.app ~loc (wrap ~loc "ul") @@ Exp.app ~loc (wrap ~loc "seq") @@ to_list_e ~loc xs
    ;;

    let checkbox ~loc name =
      let open Exp in
      app
        ~loc
        (app_lab
           ~loc
           (wrap ~loc "input")
           "attrs"
           (string_const ~loc @@ Printf.sprintf "type=\"checkbox\" id=\"%s\"" name))
        (app ~loc (wrap ~loc "unit") (unit ~loc))
    ;;
  end

  class g args tdecls =
    object (self)
      inherit
        [loc, Exp.t, Typ.t, type_arg, Cl.t, Ctf.t, Cf.t, Str.t, Sig.t, Pat.t] Plugin_intf
                                                                              .typ_g

      inherit P.generator args tdecls
      inherit P.no_inherit_arg args tdecls
      method trait_name = trait_name
      method inh_of_main ~loc _tdecl = Typ.ident ~loc "unit"
      method syn_of_main ~loc ?in_class _tdecl = self#syn_of_param ~loc "dummy"
      method syn_of_param ~loc _ = Typ.constr ~loc (Ldot (Lident "HTML", "er")) []
      method inh_of_param ~loc tdecl _name = self#inh_of_main ~loc tdecl

      method plugin_class_params ~loc (typs : Ppxlib.core_type list) ~typname =
        (* the same as in 'show' plugin *)
        List.map typs ~f:Typ.from_caml
        @ [ Typ.var ~loc @@ Naming.make_extra_param typname ]

      method on_tuple_constr ~loc ~is_self_rec ~mutual_decls ~inhe tdecl constr_info ts =
        let constr_name =
          match constr_info with
          | Some (`Poly s) -> sprintf "`%s" s
          | Some (`Normal s) -> s
          | None -> "tuple"
        in
        if List.length ts = 0
        then H.(pcdata ~loc constr_name)
        else
          H.seq ~loc
          @@ [ H.pcdata ~loc constr_name
             ; H.ul
                 ~loc
                 (List.map ts ~f:(fun (name, typ) ->
                    H.li
                      ~loc
                      [ self#app_transformation_expr
                          ~loc
                          (self#do_typ_gen ~loc ~is_self_rec ~mutual_decls tdecl typ)
                          (Exp.unit ~loc)
                          (Exp.ident ~loc name)
                      ]))
             ]

      method on_record_declaration ~loc ~is_self_rec ~mutual_decls tdecl labs =
        let pat =
          Pat.record ~loc
          @@ List.map labs ~f:(fun l ->
               Lident l.pld_name.txt, Pat.var ~loc l.pld_name.txt)
        in
        let methname = sprintf "do_%s" tdecl.ptype_name.txt in
        [ (Cf.method_concrete ~loc methname
          @@ Exp.fun_ ~loc (Pat.unit ~loc)
          @@ Exp.fun_ ~loc pat
          @@
          let ds =
            List.map labs ~f:(fun { pld_name; pld_type } ->
              H.li
                ~loc
                [ H.pcdata ~loc pld_name.txt
                ; self#app_transformation_expr
                    ~loc
                    (self#do_typ_gen ~loc ~is_self_rec ~mutual_decls tdecl pld_type)
                    (Exp.unit ~loc)
                    (Exp.ident ~loc pld_name.txt)
                ])
          in
          H.ul ~loc @@ (H.pcdata ~loc tdecl.ptype_name.txt :: ds))
        ]

      method! on_record_constr
        : loc:loc
          -> is_self_rec:(core_type -> [ `Nonrecursive | `Nonregular | `Regular ])
          -> mutual_decls:type_declaration list
          -> inhe:Exp.t
          -> _
          -> [ `Normal of string | `Poly of string ]
          -> (string * _ * core_type) list
          -> label_declaration list
          -> Exp.t =
        fun ~loc ~is_self_rec ~mutual_decls ~inhe tdecl info bindings labs ->
          let constr_name =
            match info with
            | `Poly s -> sprintf "`%s" s
            | `Normal s -> s
          in
          let open H in
          ul ~loc
          @@ [ pcdata ~loc constr_name ]
          @ List.map bindings ~f:(fun (pname, lname, typ) ->
              H.li
                ~loc
                [ H.pcdata ~loc lname
                ; self#app_transformation_expr
                    ~loc
                    (self#do_typ_gen ~loc ~is_self_rec ~mutual_decls tdecl typ)
                    (Exp.unit ~loc)
                    (Exp.ident ~loc pname)
                ])

      method! make_inh ~loc = Pat.unit ~loc, Exp.unit ~loc
    end

  let create = (new g :> P.plugin_constructor)
end

let register () = Expander.register_plugin trait_name (module Make : Plugin_intf.MAKE)
let () = register ()
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