package melange
Toolchain to produce JS from Reason/OCaml
Install
Dune Dependency
Authors
Maintainers
Sources
melange-5.0.1-414.tbz
sha256=f06d711405ef0b0dbedf68b4b9e857b45b99ba731adcaf183b58aab48c6ec282
sha512=49c974fcac26d57d89b9549788c5ef3b59afeb760ce455895e623ec8f47b77da83c6bc84997c09d5cc7c56f13bb90debc7627679d957b41f0c148600d7b03fb3
doc/src/melange_ppx/ast_extensions.ml.html
Source file ast_extensions.ml
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(* Copyright (C) 2020 Hongbo Zhang, Authors of ReScript * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * In addition to the permissions granted to you by the LGPL, you may combine * or link a "work that uses the Library" with a publicly distributed version * of this file to produce a combined library or application, then distribute * that combined work under the terms of your choosing, with no requirement * to comply with the obligations normally placed on you by section 4 of the * LGPL version 3 (or the corresponding section of a later version of the LGPL * should you choose to use a later version). * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *) open Import open Ast_helper let local_external_apply loc ~(pval_prim : string list) ~(pval_type : core_type) ?(local_module_name = "J") ?(local_fun_name = "unsafe_expr") (args : expression list) : expression_desc = Pexp_letmodule ( { txt = Some local_module_name; loc }, { pmod_desc = Pmod_structure [ { pstr_desc = Pstr_primitive { pval_name = { txt = local_fun_name; loc }; pval_type; pval_loc = loc; pval_prim; pval_attributes = []; }; pstr_loc = loc; }; ]; pmod_loc = loc; pmod_attributes = []; }, Exp.apply ({ pexp_desc = Pexp_ident { txt = Ldot (Lident local_module_name, local_fun_name); loc }; pexp_attributes = []; pexp_loc = loc; pexp_loc_stack = [ loc ]; } : expression) (List.map ~f:(fun x -> (Asttypes.Nolabel, x)) args) ~loc ) (* {[ Js.undefinedToOption (if Js.typeof x = "undefined" then undefined else x ) ]} *) let handle_external loc (x : string) = let raw_exp = let str_exp = Exp.constant ~loc (Pconst_string (x, loc, Some String.empty)) in { str_exp with pexp_desc = local_external_apply loc ~pval_prim:[ "#raw_expr" ] ~pval_type:(Typ.arrow Nolabel (Typ.any ()) (Typ.any ())) [ str_exp ]; } in let empty = (* FIXME: the empty delimiter does not make sense*) Exp.ident ~loc { txt = Ldot (Ldot (Lident "Js", "Undefined"), "empty"); loc } in let undefined_typeof = Exp.ident { loc; txt = Ldot (Lident "Js", "undefinedToOption") } in let typeof = Exp.ident { loc; txt = Ldot (Lident "Js", "typeof") } in [%expr [%e undefined_typeof] (if Stdlib.( = ) ([%e typeof] [%e raw_exp]) "undefined" then [%e empty] else [%e raw_exp])] let handle_debugger loc payload = match payload with | PStr [] -> local_external_apply loc ~pval_prim:[ "#debugger" ] ~pval_type:(Typ.arrow Nolabel (Typ.any ()) [%type: unit]) [ [%expr ()] ] | _ -> Location.raise_errorf ~loc "`%%mel.debugger' doesn't take payload" let raw_as_string_exp_exn ~(kind : Melange_ffi.Js_raw_info.raw_kind) ?is_function (x : payload) = match x with (* TODO also need detect empty phrase case *) | PStr [ { pstr_desc = Pstr_eval ( ({ pexp_desc = Pexp_constant (Pconst_string (str, _, deli)); pexp_loc = loc; _; } as e), _ ); _; }; ] -> Melange_ffi.Flow_ast_utils.check_flow_errors ~loc ~offset:(Melange_ffi.Flow_ast_utils.flow_deli_offset deli) (match kind with | Raw_re | Raw_exp -> let ((_loc, e) as prog), errors = Melange_ffi.Flow_ast_utils.parse_expression (Js_parser.Parser_env.init_env None str) false in (if kind = Raw_re then match e with | RegExpLiteral _ -> () | _ -> Location.raise_errorf ~loc "`%%mel.re' expects a valid JavaScript regular expression \ literal (`/regex/opt-flags')"); (match is_function with | Some is_function -> ( match Melange_ffi.Classify_function.classify_exp prog with | Js_function { arity = _; _ } -> is_function := true | _ -> ()) | None -> ()); errors | Raw_program -> snd (Js_parser.Parser_flow.parse_program false None str)); Some { e with pexp_desc = Pexp_constant (Pconst_string (str, Location.none, None)); } | _ -> None let handle_raw ~kind loc payload = let is_function = ref false in match raw_as_string_exp_exn ~kind ~is_function payload with | None -> let ext = match kind with | Raw_re -> "mel.re" | Raw_program | Raw_exp -> "mel.raw" in Location.raise_errorf ~loc "`%%%s' can only be applied to a string" ext | Some exp -> { exp with pexp_desc = local_external_apply loc ~pval_prim:[ "#raw_expr" ] ~pval_type:(Typ.arrow Nolabel (Typ.any ()) (Typ.any ())) [ exp ]; pexp_attributes = (if !is_function then Ast_attributes.internal_expansive :: exp.pexp_attributes else exp.pexp_attributes); } let handle_raw_structure loc payload = match raw_as_string_exp_exn ~kind:Raw_program payload with | Some exp -> Ast_helper.Str.eval { exp with pexp_desc = local_external_apply loc ~pval_prim:[ "#raw_stmt" ] ~pval_type:(Typ.arrow Nolabel (Typ.any ()) (Typ.any ())) [ exp ]; } | None -> Location.raise_errorf ~loc "mel.raw can only be applied to a string" (* module Make = Ast_external_mk *)
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