package melange
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Toolchain to produce JS from Reason/OCaml
Install
dune-project
Dependency
Authors
Maintainers
Sources
melange-6.0.1-414.tbz
sha256=c1cce011864740dc43ee0f4e8130f70725f5e7042942cce653be5b6a8b439fb5
sha512=04fc82d97d5b9632c4ee041414d9fe104556a8c329e7444ffd71017baa00612da103fda91c309fc29a16e143c29d8748e1b1035a74681b61ff65fcfdf7f4e59c
doc/src/melange_ppx/ast_attributes.ml.html
Source file ast_attributes.ml
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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 module External_arg_spec = Melange_ffi.External_arg_spec type st = { get : (bool * bool) option; set : [ `Get | `No_get ] option } let process_method_attributes_rev = let exception Local of Location.t * string in 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`)" in fun attrs -> try let ret = List.fold_left attrs ~init:({ get = None; set = None }, []) ~f:(fun (st, acc) attr -> let { attr_name = { txt; loc }; attr_payload = payload; _ } = attr in match txt with | "mel.get" -> let result = match Ast_payload.ident_or_record_as_config payload with | Error s -> raise (Local (loc, s)) | Ok config -> List.fold_left config ~init:(false, false) ~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) in ({ st with get = Some result }, acc) | "mel.set" -> let result = match Ast_payload.ident_or_record_as_config payload with | Error s -> raise (Local (loc, s)) | Ok config -> List.fold_left config ~init:`Get ~f:(fun _st ({ txt; loc }, opt_expr) -> (*FIXME*) match txt with | "no_get" -> ( match opt_expr with | None -> `No_get | Some e -> ( match assert_bool_lit e with | true -> `No_get | false -> `Get)) | _ -> Error.err ~loc Unsupported_predicates) in (* properties -- void [@@set{only}] *) ({ st with set = Some result }, acc) | _ -> (st, attr :: acc)) in Ok ret with Local (loc, s) -> Error (loc, s) module Kind = struct type t = | Nothing | Meth_callback of attribute | Uncurry of attribute | Method of attribute end let process_attributes_rev attrs : Kind.t * attribute list = List.fold_left ~init:(Kind.Nothing, []) attrs ~f:(fun (st, acc) ({ attr_name = { txt; loc }; _ } as attr) -> match (txt, st) with | "u", (Kind.Nothing | Uncurry _) -> (Uncurry attr, acc) (* TODO: warn unused/duplicated attribute *) | "mel.this", (Nothing | Meth_callback _) -> (Meth_callback attr, acc) | "mel.meth", (Nothing | Method _) -> (Method attr, acc) | ("u" | "mel.this"), _ -> Error.err ~loc Conflict_u_mel_this_mel_meth | _, _ -> (st, attr :: acc)) let process_pexp_fun_attributes_rev attrs = List.fold_left ~init:(false, []) attrs ~f:(fun (st, acc) ({ attr_name = { txt; loc = _ }; _ } as attr) -> match txt with "mel.open" -> (true, acc) | _ -> (st, attr :: acc)) let process_uncurried attrs = List.fold_left ~init:(false, []) attrs ~f:(fun (st, acc) ({ attr_name = { txt; _ }; _ } as attr) -> match (txt, st) with "u", _ -> (true, acc) | _, _ -> (st, attr :: acc)) let is_uncurried = function | { attr_name = { Location.txt = "u"; _ }; _ } -> true | _ -> false let attr name payload = { attr_name = { txt = name; loc = Location.none }; attr_payload = PStr payload; attr_loc = Location.none; } let mel_get = attr "mel.get" [] let mel_get_index = attr "mel.get_index" [] let mel_set = attr "mel.set" [] let mel_get_arity = attr "internal.arity" [ Ast_builder.Default.pstr_eval ~loc:Location.none (Ast_builder.Default.pexp_constant ~loc:Location.none (Pconst_integer ("1", None))) []; ] let internal_expansive = attr "internal.expansive" [] let mel_return_undefined = attr "mel.return" [ Ast_builder.Default.pstr_eval ~loc:Location.none (Ast_builder.Default.pexp_ident ~loc:Location.none { txt = Lident "undefined_to_opt"; loc = Location.none }) []; ] let iter_process_mel_as_cst = let rec inner attrs (st : External_arg_spec.Arg_cst.t option) = match attrs with | ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) :: rest -> ( match txt with | "mel.as" -> ( match st with | Some _ -> Error.err ~loc Duplicated_mel_as | None -> ( Mel_ast_invariant.mark_used_mel_attribute attr; match Ast_payload.is_single_int payload with | Some v -> inner rest (Some (Int v)) | None -> ( match payload with | PStr [ { pstr_desc = Pstr_eval ( { pexp_desc = Pexp_constant (Pconst_string (s, _, ((None | Some "json") as dec))); pexp_loc; _; }, _ ); _; }; ] -> ( match dec with | None -> inner rest (Some (External_arg_spec.Arg_cst.Str s)) | Some _ -> (match Melange_ffi.Classify_function.classify ~loc:pexp_loc ~check_errors:(Check { delimiter = dec }) s with | Js_literal _ -> () | Js_function _ | Js_exp_unknown -> Location.raise_errorf ~loc:pexp_loc "`[@mel.as {json| ... |json}]' only supports \ JavaScript literals"); inner rest (Some (Js_literal s))) | _ -> Error.err ~loc Expect_int_or_string_or_json_literal)) ) | _ -> inner rest st) | [] -> st in fun (attrs : attributes) -> inner attrs None module Param_modifier = struct type kind = | Nothing | Spread | Uncurry of int option (* uncurry arity *) | Unwrap | Ignore | String | Int type t = { kind : kind; loc : Location.t } end (* duplicated @uncurry @string not allowed, it is worse in @uncurry since it will introduce inconsistency in arity. Supported external param type modifiers: - [@mel.unwrap] -> [ `A of int ] becomes `foo(42)` - [@mel.uncurry] -> uncurries callbacks in externals - [@mel.ignore] -> useful to combine with GADTs, e.g. ('a kind [@mel.ignore ] -> 'a -> 'a) - [@mel.spread] -> [ `A of int ] -> unit becomes `foo("a", 42)` -- supports `@mel.as` -- previously [@mel.string] *) let iter_process_mel_param_modifier = let assign ({ attr_name = { loc; _ }; _ } as attr) st v = match st with | Param_modifier.Nothing -> Mel_ast_invariant.mark_used_mel_attribute attr; { Param_modifier.kind = v; loc } | _ -> Error.err ~loc Conflict_attributes in let rec inner attrs { Param_modifier.kind = st; loc } = match attrs with | ({ attr_name = { txt; loc = _ }; attr_payload = payload; _ } as attr) :: rest -> let st' = match txt with | "mel.spread" -> assign attr st Spread | "mel.string" -> assign attr st String | "mel.int" -> assign attr st Int | "mel.ignore" -> assign attr st Ignore | "mel.unwrap" -> assign attr st Unwrap | "mel.uncurry" -> assign attr st (Uncurry (Ast_payload.is_single_int payload)) | _ -> { kind = st; loc } in inner rest st' | [] -> { Param_modifier.kind = st; loc } in fun attrs -> inner attrs { Param_modifier.kind = Nothing; loc = Location.none } let iter_process_mel_string_as = let rec inner attrs st = match attrs with | ({ attr_name = { txt; loc }; attr_payload = payload; _ } as attr) :: rest -> ( match txt with | "mel.as" -> ( match st with | None -> ( 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; inner rest (Some v)) | Some _ -> Error.err ~loc Duplicated_mel_as) | _ -> inner rest st) | [] -> st in fun attrs -> inner attrs None 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 let partition_by_mel_ffi_attribute = let rec inner attrs acc st = match attrs with | ({ attr_name = { txt = "mel.internal.ffi"; loc }; attr_payload; _ } as x) :: rest -> ( match st with | None -> ( match attr_payload with | PStr [ { pstr_desc = Pstr_eval ({ pexp_desc = Pexp_constant const; _ }, _); _; }; ] -> ( match const with | Pconst_string (s, _, _) -> inner rest acc (Some s) | _ -> inner rest (x :: acc) st) | _ -> Location.raise_errorf ~loc "`[@mel.internal.ffi \"..\"]' annotation must be a string") | Some _ -> Location.raise_errorf ~loc "Duplicate `[@mel.internal.ffi \"..\"]' annotation") | x :: xs -> inner xs (x :: acc) st | [] -> (st, List.rev acc) in fun attrs -> inner attrs [] None (** [@@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 pval_prim with | [] -> (* This is val *) false | _ :: _ -> ( let mel_ffi, attrs = partition_by_mel_ffi_attribute attrs in match mel_ffi with | Some _ -> false | None -> ( match attrs with | [] -> 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 = let rec inner attrs acc = match attrs with | ({ attr_name = { txt = "mel.as"; loc }; attr_payload = payload; _ } as attr) :: rest -> ( match acc with | None -> ( 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; inner rest v) | Some _ -> Error.err ~loc Duplicated_mel_as) | _ :: rest -> inner rest acc | [] -> acc in fun attrs -> inner attrs None let has_mel_optional attrs : bool = List.exists ~f:(fun ({ attr_name = { txt; loc = _ }; _ } as attr) -> match txt with | "mel.optional" -> Mel_ast_invariant.mark_used_mel_attribute attr; true | _ -> false) attrs let has_inline_payload attrs = List.find_opt ~f:(fun { attr_name = { txt; loc = _ }; _ } -> txt = "mel.inline") attrs let has_mel_as_payload attrs = List.fold_left ~f:(fun (attrs, found) attr -> match attr.attr_name.txt with | "mel.as" -> ( match found with | Some _ -> Location.raise_errorf ~loc:attr.attr_loc "Duplicate `%@mel.as' attribute found" | None -> (attrs, Some attr)) | _ -> (attr :: attrs, found)) ~init:([], None) attrs let ocaml_warning w = attr "ocaml.warning" [ Ast_builder.Default.pstr_eval ~loc:Location.none (Ast_builder.Default.pexp_constant ~loc:Location.none (Pconst_string (w, Location.none, 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" let unused_type_declaration = ocaml_warning "-unused-type-declaration" let mel_ffi = fun (t : Melange_ffi.External_ffi_types.t) -> attr "mel.internal.ffi" [ Ast_builder.Default.pstr_eval ~loc:Location.none (Ast_builder.Default.pexp_constant ~loc:Location.none (Pconst_string (Melange_ffi.External_ffi_types.to_string t, Location.none, None))) []; ]
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