package melange
Toolchain to produce JS from Reason/OCaml
Install
Dune Dependency
Authors
Maintainers
Sources
melange-3.0.0-51.tbz
sha256=1ebcf29c95ccea9f40e1f39192ae5a37fba9c64768f9ff8f998ff011415fe947
sha512=97da717b0446a7527b43c785676933a1e6974d2cf747ace68e6de5c120d03dc196ae706fef20e4139c6090036d10c350fc9b6bd093bd8a7092d0275ae56f3777
doc/src/melange_ppx/ast_attributes.ml.html
Source file ast_attributes.ml
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(* Copyright (C) 2015-2016 Bloomberg Finance L.P. * * 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 type ('a, 'b) st = { get : 'a option; set : 'b option } let assert_bool_lit (e : expression) = match e.pexp_desc with | Pexp_construct ({ txt = Lident "true"; _ }, None) -> true | Pexp_construct ({ txt = Lident "false"; _ }, None) -> false | _ -> Location.raise_errorf ~loc:e.pexp_loc "expected this expression to be a boolean literal (`true` or `false`)" let error_if_bs_or_non_namespaced ~loc txt = match txt with | "bs" -> Location.raise_errorf ~loc "The `[@bs]' attribute has been removed in favor of `[@u]'." | other -> if String.starts_with ~prefix:"bs." other || not (Mel_ast_invariant.is_mel_attribute txt) then Location.raise_errorf ~loc "`[@bs.*]' and non-namespaced attributes have been removed in favor \ of `[@mel.*]' attributes." let process_method_attributes_rev attrs = let exception Local of Location.t * string in try let ret = List.fold_left ~f:(fun (st, acc) ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) -> match txt with | "mel.get" | "bs.get" | "get" -> error_if_bs_or_non_namespaced ~loc txt; let result = match Ast_payload.ident_or_record_as_config payload with | Error s -> raise (Local (loc, s)) | Ok config -> List.fold_left ~f:(fun (null, undefined) ({ txt; loc }, opt_expr) -> match txt with | "null" -> ( (match opt_expr with | None -> true | Some e -> assert_bool_lit e), undefined ) | "undefined" -> ( null, match opt_expr with | None -> true | Some e -> assert_bool_lit e ) | "nullable" -> ( match opt_expr with | None -> (true, true) | Some e -> let v = assert_bool_lit e in (v, v)) | _ -> Error.err ~loc Unsupported_predicates) ~init:(false, false) config in ({ st with get = Some result }, acc) | "mel.set" | "bs.set" | "set" -> error_if_bs_or_non_namespaced ~loc txt; let result = match Ast_payload.ident_or_record_as_config payload with | Error s -> raise (Local (loc, s)) | Ok config -> List.fold_left ~f:(fun _st ({ txt; loc }, opt_expr) -> (*FIXME*) if txt = "no_get" then match opt_expr with | None -> `No_get | Some e -> if assert_bool_lit e then `No_get else `Get else Error.err ~loc Unsupported_predicates) ~init:`Get config in (* properties -- void [@@set{only}] *) ({ st with set = Some result }, acc) | _ -> (st, attr :: acc)) ~init:({ get = None; set = None }, []) attrs in Ok ret with Local (loc, s) -> Error (loc, s) type attr_kind = | Nothing | Meth_callback of attribute | Uncurry of attribute | Method of attribute let process_attributes_rev attrs : attr_kind * attribute list = List.fold_left ~f:(fun (st, acc) ({ attr_name = { txt; loc }; _ } as attr) -> match (txt, st) with | "u", (Nothing | Uncurry _) -> (Uncurry attr, acc) (* TODO: warn unused/duplicated attribute *) | ("mel.this" | "bs.this" | "this"), (Nothing | Meth_callback _) -> error_if_bs_or_non_namespaced ~loc txt; (Meth_callback attr, acc) | ("mel.meth" | "bs.meth" | "meth"), (Nothing | Method _) -> error_if_bs_or_non_namespaced ~loc txt; (Method attr, acc) | ("u" | "mel.this" | "this"), _ -> Error.err ~loc Conflict_u_mel_this_mel_meth | _, _ -> (st, attr :: acc)) ~init:(Nothing, []) attrs let process_pexp_fun_attributes_rev attrs = List.fold_left ~f:(fun (st, acc) ({ attr_name = { txt; loc }; _ } as attr) -> match txt with | "mel.open" | "bs.open" -> error_if_bs_or_non_namespaced ~loc txt; (true, acc) | _ -> (st, attr :: acc)) ~init:(false, []) attrs let process_uncurried attrs = List.fold_left ~f:(fun (st, acc) ({ attr_name = { txt; _ }; _ } as attr) -> match (txt, st) with "u", _ -> (true, acc) | _, _ -> (st, attr :: acc)) ~init:(false, []) attrs let is_uncurried attr = match attr with | { attr_name = { Location.txt = "u"; _ }; _ } -> true | _ -> false let mel_get = { attr_name = { txt = "mel.get"; loc = Location.none }; attr_payload = PStr []; attr_loc = Location.none; } let mel_get_index = { attr_name = { txt = "mel.get_index"; loc = Location.none }; attr_payload = PStr []; attr_loc = Location.none; } let mel_get_arity = { attr_name = { txt = "internal.arity"; loc = Location.none }; attr_payload = PStr [ { pstr_desc = Pstr_eval ( { pexp_loc = Location.none; pexp_loc_stack = []; pexp_attributes = []; pexp_desc = Pexp_constant (Pconst_integer (string_of_int 1, None)); }, [] ); pstr_loc = Location.none; }; ]; attr_loc = Location.none; } let mel_set = { attr_name = { txt = "mel.set"; loc = Location.none }; attr_payload = PStr []; attr_loc = Location.none; } let internal_expansive = let internal_expansive_label = "internal.expansive" in { attr_name = { txt = internal_expansive_label; loc = Location.none }; attr_payload = PStr []; attr_loc = Location.none; } let has_internal_expansive attrs = List.exists ~f:(fun { attr_name = { txt; _ }; _ } -> txt = "internal.expansive") attrs let mel_return_undefined = { attr_name = { txt = "mel.return"; loc = Location.none }; attr_payload = PStr [ { pstr_desc = Pstr_eval ( { pexp_desc = Pexp_ident { txt = Lident "undefined_to_opt"; loc = Location.none }; pexp_loc = Location.none; pexp_loc_stack = []; pexp_attributes = []; }, [] ); pstr_loc = Location.none; }; ]; attr_loc = Location.none; } type as_const_payload = Int of int | Str of string | Js_literal_str of string let iter_process_mel_string_or_int_as (attrs : attributes) = let st = ref None in List.iter ~f:(fun ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) -> match txt with | "mel.as" | "bs.as" | "as" -> error_if_bs_or_non_namespaced ~loc txt; if !st = None then ( Mel_ast_invariant.mark_used_mel_attribute attr; match Ast_payload.is_single_int payload with | None -> ( match payload with | PStr [ { pstr_desc = Pstr_eval ( { pexp_desc = Pexp_constant (Pconst_string (s, _, ((None | Some "json") as dec))); pexp_loc; _; }, _ ); _; }; ] -> if dec = None then st := Some (Str s) else ( (match Melange_ffi.Classify_function.classify ~check: ( pexp_loc, Melange_ffi.Flow_ast_utils.flow_deli_offset dec ) s with | Js_literal _ -> () | _ -> Location.raise_errorf ~loc:pexp_loc "`[@mel.as {json| ... |json}]' only supports \ JavaScript literals"); st := Some (Js_literal_str s)) | _ -> Error.err ~loc Expect_int_or_string_or_json_literal) | Some v -> st := Some (Int v)) else Error.err ~loc Duplicated_mel_as | _ -> ()) attrs; !st (* duplicated @uncurry @string not allowed, it is worse in @uncurry since it will introduce inconsistency in arity *) let iter_process_mel_string_int_unwrap_uncurry attrs = let st = ref `Nothing in let assign v ({ attr_name = { loc; _ }; _ } as attr) = if !st = `Nothing then ( Mel_ast_invariant.mark_used_mel_attribute attr; st := v) else Error.err ~loc Conflict_attributes in List.iter ~f:(fun ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) -> match txt with | "mel.string" | "bs.string" | "string" -> error_if_bs_or_non_namespaced ~loc txt; assign `String attr | "mel.int" | "bs.int" | "int" -> error_if_bs_or_non_namespaced ~loc txt; assign `Int attr | "mel.ignore" | "bs.ignore" | "ignore" -> error_if_bs_or_non_namespaced ~loc txt; assign `Ignore attr | "mel.unwrap" | "bs.unwrap" | "unwrap" -> error_if_bs_or_non_namespaced ~loc txt; assign `Unwrap attr | "mel.uncurry" | "bs.uncurry" | "uncurry" -> error_if_bs_or_non_namespaced ~loc txt; assign (`Uncurry (Ast_payload.is_single_int payload)) attr | _ -> ()) attrs; !st let iter_process_mel_string_as attrs : string option = let st = ref None in List.iter ~f:(fun ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) -> match txt with | "mel.as" | "bs.as" | "as" -> error_if_bs_or_non_namespaced ~loc txt; if !st = None then ( match Ast_payload.is_single_string payload with | None -> Error.err ~loc Expect_string_literal | Some (v, _dec) -> Mel_ast_invariant.mark_used_mel_attribute attr; st := Some v) else Error.err ~loc Duplicated_mel_as | _ -> ()) attrs; !st let first_char_special (x : string) = match x with | "" -> false | _ -> ( match String.unsafe_get x 0 with | '#' | '?' | '%' -> true | _ -> (* XXX(anmonteiro): Upstream considers "builtin" attributes ones that start with `?`. We keep the original terminology of `caml_` (and, incidentally, `nativeint_`). *) String.starts_with x ~prefix:"caml_" || String.starts_with x ~prefix:"nativeint_") let first_marshal_char (x : string) = x <> "" && String.unsafe_get x 0 = '\132' let prims_to_be_encoded (attrs : string list) = match attrs with | [] -> assert false (* normal val declaration *) | x :: _ when first_char_special x -> false | _ :: x :: _ when first_marshal_char x -> false | _ -> true (** [@@inline] let a = 3 [@@inline] let a : 3 They are not considered externals, they are part of the language *) let rs_externals attrs pval_prim = match (attrs, pval_prim) with | _, [] -> false (* This is val *) | [], _ -> (* No attributes found *) prims_to_be_encoded pval_prim | _, _ -> Melange_ffi.External_ffi_attributes.has_mel_attributes (List.map ~f:(fun { attr_name = { txt; _ }; _ } -> txt) attrs) || prims_to_be_encoded pval_prim let iter_process_mel_int_as attrs = let st = ref None in List.iter ~f:(fun ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) -> match txt with | "mel.as" | "bs.as" | "as" -> error_if_bs_or_non_namespaced ~loc txt; if !st = None then ( match Ast_payload.is_single_int payload with | None -> Error.err ~loc Expect_int_literal | Some _ as v -> Mel_ast_invariant.mark_used_mel_attribute attr; st := v) else Error.err ~loc Duplicated_mel_as | _ -> ()) attrs; !st let has_mel_optional attrs : bool = List.exists ~f:(fun ({ attr_name = { txt; loc }; _ } as attr) -> match txt with | "mel.optional" | "bs.optional" | "optional" -> error_if_bs_or_non_namespaced ~loc txt; Mel_ast_invariant.mark_used_mel_attribute attr; true | _ -> false) attrs let is_inline : attribute -> bool = fun { attr_name = { txt; loc }; _ } -> match txt with | "mel.inline" -> true | "bs.inline" -> error_if_bs_or_non_namespaced ~loc txt; false | _ -> false let has_inline_payload attrs = List.find_opt ~f:is_inline attrs let is_mel_as { attr_name = { txt; loc }; _ } = match txt with | "mel.as" -> true | "bs.as" | "as" -> error_if_bs_or_non_namespaced ~loc txt; false | _ -> false let has_mel_as_payload attrs = List.fold_left ~f:(fun (attrs, found) attr -> match (is_mel_as attr, found) with | true, None -> (attrs, Some attr) | false, Some _ | false, None -> (attr :: attrs, found) | true, Some _ -> Location.raise_errorf ~loc:attr.attr_loc "Duplicate `%@mel.as' attribute found") ~init:([], None) attrs let ocaml_warning w = { attr_name = { txt = "ocaml.warning"; loc = Location.none }; attr_payload = PStr Ast_helper. [ Str.eval (Exp.constant (Pconst_string (w, Location.none, None))) ]; attr_loc = Location.none; } (* We disable warning 61 in Melange externals since they're substantially different from OCaml externals. This warning doesn't make sense for a JS runtime *) let unboxable_type_in_prim_decl = ocaml_warning "-unboxable-type-in-prim-decl" let ignored_extra_argument = ocaml_warning "-ignored-extra-argument"
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