package melange
Toolchain to produce JS from Reason/OCaml
Install
Dune Dependency
Authors
Maintainers
Sources
melange-1.0.0.tbz
sha256=01ff3a2711b3812889313288f9e0c8bfe2e17464b6b85282c5113cfc3b740968
sha512=db9ac4554d0c9a8deabbdcd2ae05653964184916982c746ca794df6e2061444adaa6a0367bc1840825a007be3941643abd824aaff737a431b0e5347f7c558378
doc/src/melange.js_parser/type_parser.ml.html
Source file type_parser.ml
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(* * Copyright (c) Meta Platforms, Inc. and affiliates. * * This source code is licensed under the MIT license found in the * LICENSE file in the root directory of this source tree. *) module Ast = Flow_ast open Token open Parser_env open Flow_ast open Parser_common open Comment_attachment module type TYPE = sig val _type : env -> (Loc.t, Loc.t) Ast.Type.t val type_identifier : env -> (Loc.t, Loc.t) Ast.Identifier.t val type_params : env -> (Loc.t, Loc.t) Ast.Type.TypeParams.t option val type_args : env -> (Loc.t, Loc.t) Ast.Type.TypeArgs.t option val generic : env -> Loc.t * (Loc.t, Loc.t) Ast.Type.Generic.t val _object : is_class:bool -> env -> Loc.t * (Loc.t, Loc.t) Type.Object.t val interface_helper : env -> (Loc.t * (Loc.t, Loc.t) Ast.Type.Generic.t) list * (Loc.t * (Loc.t, Loc.t) Ast.Type.Object.t) val function_param_list : env -> (Loc.t, Loc.t) Type.Function.Params.t val annotation : env -> (Loc.t, Loc.t) Ast.Type.annotation val annotation_opt : env -> (Loc.t, Loc.t) Ast.Type.annotation_or_hint val predicate_opt : env -> (Loc.t, Loc.t) Ast.Type.Predicate.t option val annotation_and_predicate_opt : env -> (Loc.t, Loc.t) Ast.Type.annotation_or_hint * (Loc.t, Loc.t) Ast.Type.Predicate.t option end module Type (Parse : Parser_common.PARSER) : TYPE = struct type param_list_or_type = | ParamList of (Loc.t, Loc.t) Type.Function.Params.t' | Type of (Loc.t, Loc.t) Type.t let maybe_variance env = let loc = Peek.loc env in match Peek.token env with | T_PLUS -> let leading = Peek.comments env in Eat.token env; Some ( loc, { Variance.kind = Variance.Plus; comments = Flow_ast_utils.mk_comments_opt ~leading () } ) | T_MINUS -> let leading = Peek.comments env in Eat.token env; Some ( loc, { Variance.kind = Variance.Minus; comments = Flow_ast_utils.mk_comments_opt ~leading () } ) | _ -> None let rec _type env = union env and annotation env = if not (should_parse_types env) then error env Parse_error.UnexpectedTypeAnnotation; with_loc (fun env -> Expect.token env T_COLON; _type env) env and union env = let leading = if Peek.token env = T_BIT_OR then ( let leading = Peek.comments env in Eat.token env; leading ) else [] in let left = intersection env in union_with env ~leading left and union_with = let rec unions leading acc env = match Peek.token env with | T_BIT_OR -> Expect.token env T_BIT_OR; unions leading (intersection env :: acc) env | _ -> (match List.rev acc with | t0 :: t1 :: ts -> Type.Union { Type.Union.types = (t0, t1, ts); comments = Flow_ast_utils.mk_comments_opt ~leading (); } | _ -> assert false) in fun env ?(leading = []) left -> if Peek.token env = T_BIT_OR then with_loc ~start_loc:(fst left) (unions leading [left]) env else left and intersection env = let leading = if Peek.token env = T_BIT_AND then ( let leading = Peek.comments env in Eat.token env; leading ) else [] in let left = anon_function_without_parens env in intersection_with env ~leading left and intersection_with = let rec intersections leading acc env = match Peek.token env with | T_BIT_AND -> Expect.token env T_BIT_AND; intersections leading (anon_function_without_parens env :: acc) env | _ -> (match List.rev acc with | t0 :: t1 :: ts -> Type.Intersection { Type.Intersection.types = (t0, t1, ts); comments = Flow_ast_utils.mk_comments_opt ~leading (); } | _ -> assert false) in fun env ?(leading = []) left -> if Peek.token env = T_BIT_AND then with_loc ~start_loc:(fst left) (intersections leading [left]) env else left and anon_function_without_parens env = let param = prefix env in anon_function_without_parens_with env param and anon_function_without_parens_with env param = match Peek.token env with | T_ARROW when not (no_anon_function_type env) -> let (start_loc, tparams, params) = let param = anonymous_function_param env param in ( fst param, None, ( fst param, { Ast.Type.Function.Params.params = [param]; this_ = None; rest = None; comments = None; } ) ) in function_with_params env start_loc tparams params | _ -> param and prefix env = match Peek.token env with | T_PLING -> with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_PLING; Type.Nullable { Type.Nullable.argument = prefix env; comments = Flow_ast_utils.mk_comments_opt ~leading (); }) env | _ -> postfix env and postfix env = let t = primary env in postfix_with env t and postfix_with ?(in_optional_indexed_access = false) env t = if Peek.is_line_terminator env then t else match Peek.token env with | T_PLING_PERIOD -> Eat.token env; if Peek.token env <> T_LBRACKET then error env Parse_error.InvalidOptionalIndexedAccess; Expect.token env T_LBRACKET; postfix_brackets ~in_optional_indexed_access:true ~optional_indexed_access:true env t | T_LBRACKET -> Eat.token env; postfix_brackets ~in_optional_indexed_access ~optional_indexed_access:false env t | T_PERIOD -> (match Peek.ith_token ~i:1 env with | T_LBRACKET -> error env (Parse_error.InvalidIndexedAccess { has_bracket = true }); Expect.token env T_PERIOD; Expect.token env T_LBRACKET; postfix_brackets ~in_optional_indexed_access ~optional_indexed_access:false env t | _ -> error env (Parse_error.InvalidIndexedAccess { has_bracket = false }); t) | _ -> t and postfix_brackets ~in_optional_indexed_access ~optional_indexed_access env t = let t = with_loc ~start_loc:(fst t) (fun env -> (* Legacy Array syntax `Foo[]` *) if (not optional_indexed_access) && Eat.maybe env T_RBRACKET then let trailing = Eat.trailing_comments env in Type.Array { Type.Array.argument = t; comments = Flow_ast_utils.mk_comments_opt ~trailing () } else let index = _type env in Expect.token env T_RBRACKET; let trailing = Eat.trailing_comments env in let indexed_access = { Type.IndexedAccess._object = t; index; comments = Flow_ast_utils.mk_comments_opt ~trailing (); } in if in_optional_indexed_access then Type.OptionalIndexedAccess { Type.OptionalIndexedAccess.indexed_access; optional = optional_indexed_access } else Type.IndexedAccess indexed_access) env in postfix_with env ~in_optional_indexed_access t and typeof_expr env = raw_typeof_expr_with_identifier env (Parse.identifier env) and raw_typeof_expr_with_identifier = let rec identifier env (q_loc, qualification) = if Peek.token env = T_PERIOD && Peek.ith_is_identifier ~i:1 env then let (loc, q) = with_loc ~start_loc:q_loc (fun env -> Expect.token env T_PERIOD; let id = identifier_name env in { Type.Typeof.Target.qualification; id }) env in let qualification = Type.Typeof.Target.Qualified (loc, q) in identifier env (loc, qualification) else qualification in fun env ((loc, _) as id) -> let id = Type.Typeof.Target.Unqualified id in identifier env (loc, id) and typeof_arg env = match Peek.token env with | T_LPAREN -> Eat.token env; let typeof = typeof_arg env in Expect.token env T_RPAREN; typeof | T_IDENTIFIER _ (* `static` is reserved in strict mode, but still an identifier *) -> Some (typeof_expr env) | _ -> error env Parse_error.InvalidTypeof; None and typeof env = with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_TYPEOF; match typeof_arg env with | None -> Type.Any None | Some argument -> Type.Typeof { Type.Typeof.argument; comments = Flow_ast_utils.mk_comments_opt ~leading () }) env and primary env = let loc = Peek.loc env in match Peek.token env with | T_MULT -> let leading = Peek.comments env in Expect.token env T_MULT; let trailing = Eat.trailing_comments env in (loc, Type.Exists (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_LESS_THAN -> _function env | T_LPAREN -> function_or_group env | T_LCURLY | T_LCURLYBAR -> let (loc, o) = _object env ~is_class:false ~allow_exact:true ~allow_spread:true in (loc, Type.Object o) | T_INTERFACE -> with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_INTERFACE; let (extends, body) = interface_helper env in Type.Interface { Type.Interface.extends; body; comments = Flow_ast_utils.mk_comments_opt ~leading () }) env | T_TYPEOF -> typeof env | T_LBRACKET -> tuple env | T_IDENTIFIER _ | T_STATIC (* `static` is reserved in strict mode, but still an identifier *) -> let (loc, g) = generic env in (loc, Type.Generic g) | T_STRING (loc, value, raw, octal) -> if octal then strict_error env Parse_error.StrictOctalLiteral; let leading = Peek.comments env in Expect.token env (T_STRING (loc, value, raw, octal)); let trailing = Eat.trailing_comments env in ( loc, Type.StringLiteral { Ast.StringLiteral.value; raw; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); } ) | T_NUMBER_SINGLETON_TYPE { kind; value; raw } -> if kind = LEGACY_OCTAL then strict_error env Parse_error.StrictOctalLiteral; let leading = Peek.comments env in Expect.token env (T_NUMBER_SINGLETON_TYPE { kind; value; raw }); let trailing = Eat.trailing_comments env in ( loc, Type.NumberLiteral { Ast.NumberLiteral.value; raw; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); } ) | T_BIGINT_SINGLETON_TYPE { kind; value; raw } -> let leading = Peek.comments env in Expect.token env (T_BIGINT_SINGLETON_TYPE { kind; value; raw }); let trailing = Eat.trailing_comments env in ( loc, Type.BigIntLiteral { Ast.BigIntLiteral.value; raw; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); } ) | (T_TRUE | T_FALSE) as token -> let leading = Peek.comments env in Expect.token env token; let trailing = Eat.trailing_comments env in let value = token = T_TRUE in ( loc, Type.BooleanLiteral { BooleanLiteral.value; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing () } ) | _ -> (match primitive env with | Some t -> (loc, t) | None -> error_unexpected ~expected:"a type" env; (loc, Type.Any None)) and is_primitive = function | T_ANY_TYPE | T_MIXED_TYPE | T_EMPTY_TYPE | T_BOOLEAN_TYPE _ | T_NUMBER_TYPE | T_BIGINT_TYPE | T_STRING_TYPE | T_SYMBOL_TYPE | T_VOID_TYPE | T_NULL -> true | _ -> false and primitive env = let leading = Peek.comments env in let token = Peek.token env in match token with | T_ANY_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Any (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_MIXED_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Mixed (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_EMPTY_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Empty (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_BOOLEAN_TYPE _ -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Boolean (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_NUMBER_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Number (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_BIGINT_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.BigInt (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_STRING_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.String (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_SYMBOL_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Symbol (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_VOID_TYPE -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Void (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | T_NULL -> Eat.token env; let trailing = Eat.trailing_comments env in Some (Type.Null (Flow_ast_utils.mk_comments_opt ~leading ~trailing ())) | _ -> None and tuple = let rec types env acc = match Peek.token env with | T_EOF | T_RBRACKET -> List.rev acc | _ -> let acc = _type env :: acc in (* Trailing comma support (like [number, string,]) *) if Peek.token env <> T_RBRACKET then Expect.token env T_COMMA; types env acc in fun env -> with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_LBRACKET; let tl = types (with_no_anon_function_type false env) [] in Expect.token env T_RBRACKET; let trailing = Eat.trailing_comments env in Type.Tuple { Type.Tuple.types = tl; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); }) env and anonymous_function_param _env annot = (fst annot, Type.Function.Param.{ name = None; annot; optional = false }) and function_param_with_id env = with_loc (fun env -> Eat.push_lex_mode env Lex_mode.NORMAL; let name = Parse.identifier env in Eat.pop_lex_mode env; if not (should_parse_types env) then error env Parse_error.UnexpectedTypeAnnotation; let optional = Eat.maybe env T_PLING in Expect.token env T_COLON; let annot = _type env in { Type.Function.Param.name = Some name; annot; optional }) env and function_param_list_without_parens = let param env = match Peek.ith_token ~i:1 env with | T_COLON | T_PLING -> function_param_with_id env | _ -> let annot = _type env in anonymous_function_param env annot in let rec param_list env this_ acc = match Peek.token env with | (T_EOF | T_ELLIPSIS | T_RPAREN) as t -> let rest = if t = T_ELLIPSIS then let rest = with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_ELLIPSIS; { Type.Function.RestParam.argument = param env; comments = Flow_ast_utils.mk_comments_opt ~leading (); }) env in Some rest else None in { Ast.Type.Function.Params.params = List.rev acc; rest; this_; comments = None } | T_IDENTIFIER { raw = "this"; _ } when Peek.ith_token ~i:1 env == T_COLON || Peek.ith_token ~i:1 env == T_PLING -> if this_ <> None || acc <> [] then error env Parse_error.ThisParamMustBeFirst; let this_ = with_loc (fun env -> let leading = Peek.comments env in Eat.token env; if Peek.token env == T_PLING then error env Parse_error.ThisParamMayNotBeOptional; { Type.Function.ThisParam.annot = annotation env; comments = Flow_ast_utils.mk_comments_opt ~leading (); }) env in if Peek.token env <> T_RPAREN then Expect.token env T_COMMA; param_list env (Some this_) acc | _ -> let acc = param env :: acc in if Peek.token env <> T_RPAREN then Expect.token env T_COMMA; param_list env this_ acc in (fun env -> param_list env None) and function_param_list env = with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_LPAREN; let params = function_param_list_without_parens env [] in let internal = Peek.comments env in Expect.token env T_RPAREN; let trailing = Eat.trailing_comments env in { params with Ast.Type.Function.Params.comments = Flow_ast_utils.mk_comments_with_internal_opt ~leading ~trailing ~internal (); }) env and param_list_or_type env = let leading = Peek.comments env in Expect.token env T_LPAREN; let ret = let env = with_no_anon_function_type false env in match Peek.token env with | T_EOF | T_ELLIPSIS -> (* (... is definitely the beginning of a param list *) ParamList (function_param_list_without_parens env []) | T_RPAREN -> (* () or is definitely a param list *) ParamList { Ast.Type.Function.Params.this_ = None; params = []; rest = None; comments = None } | T_IDENTIFIER _ | T_STATIC (* `static` is reserved in strict mode, but still an identifier *) -> (* This could be a function parameter or a generic type *) function_param_or_generic_type env | token when is_primitive token -> (* Don't know if this is (number) or (number: number). The first * is a type, the second is a param. *) (match Peek.ith_token ~i:1 env with | T_PLING | T_COLON -> (* Ok this is definitely a parameter *) ParamList (function_param_list_without_parens env []) | _ -> Type (_type env)) | _ -> (* All params start with an identifier or `...` *) Type (_type env) in (* Now that we allow anonymous parameters in function types, we need to * disambiguate a little bit more *) let ret = match ret with | ParamList _ -> ret | Type _ when no_anon_function_type env -> ret | Type t -> (match Peek.token env with | T_RPAREN -> (* Reinterpret `(type) =>` as a ParamList *) if Peek.ith_token ~i:1 env = T_ARROW then let param = anonymous_function_param env t in ParamList (function_param_list_without_parens env [param]) else Type t | T_COMMA -> (* Reinterpret `(type,` as a ParamList *) Expect.token env T_COMMA; let param = anonymous_function_param env t in ParamList (function_param_list_without_parens env [param]) | _ -> ret) in let internal = Peek.comments env in Expect.token env T_RPAREN; let trailing = Eat.trailing_comments env in let ret = match ret with | ParamList params -> ParamList { params with Ast.Type.Function.Params.comments = Flow_ast_utils.mk_comments_with_internal_opt ~leading ~trailing ~internal (); } | Type t -> Type (add_comments t leading trailing) in ret and function_param_or_generic_type env = match Peek.ith_token ~i:1 env with | T_PLING (* optional param *) | T_COLON -> ParamList (function_param_list_without_parens env []) | _ -> let id = type_identifier env in Type (generic_type_with_identifier env id |> postfix_with env |> anon_function_without_parens_with env |> intersection_with env |> union_with env ) and function_or_group env = let start_loc = Peek.loc env in match with_loc param_list_or_type env with | (loc, ParamList params) -> function_with_params env start_loc None (loc, params) | (_, Type _type) -> _type and _function env = let start_loc = Peek.loc env in let tparams = type_params_remove_trailing env (type_params env) in let params = function_param_list env in function_with_params env start_loc tparams params and function_with_params env start_loc tparams (params : (Loc.t, Loc.t) Ast.Type.Function.Params.t) = with_loc ~start_loc (fun env -> Expect.token env T_ARROW; let return = _type env in Type.(Function { Function.params; return; tparams; comments = None })) env and _object = let methodish env start_loc tparams = with_loc ~start_loc (fun env -> let params = function_param_list env in Expect.token env T_COLON; let return = _type env in { Type.Function.params; return; tparams; comments = None }) env in let method_property env start_loc static key ~leading = let key = object_key_remove_trailing env key in let tparams = type_params_remove_trailing env (type_params env) in let value = methodish env start_loc tparams in let value = (fst value, Type.Function (snd value)) in Type.Object.( Property ( fst value, { Property.key; value = Property.Init value; optional = false; static = static <> None; proto = false; _method = true; variance = None; comments = Flow_ast_utils.mk_comments_opt ~leading (); } ) ) in let call_property env start_loc static ~leading = let prop = with_loc ~start_loc (fun env -> let start_loc = Peek.loc env in let tparams = type_params_remove_trailing env (type_params env) in let value = methodish env start_loc tparams in Type.Object.CallProperty. { value; static = static <> None; comments = Flow_ast_utils.mk_comments_opt ~leading (); } ) env in Type.Object.CallProperty prop in let init_property env start_loc ~variance ~static ~proto ~leading (key_loc, key) = ignore proto; if not (should_parse_types env) then error env Parse_error.UnexpectedTypeAnnotation; let prop = with_loc ~start_loc (fun env -> let optional = Eat.maybe env T_PLING in let value = if Expect.token_maybe env T_COLON then _type env else (key_loc, Type.Any None) in Type.Object.Property. { key; value = Init value; optional; static = static <> None; proto = proto <> None; _method = false; variance; comments = Flow_ast_utils.mk_comments_opt ~leading (); } ) env in Type.Object.Property prop in let getter_or_setter ~is_getter ~leading env start_loc static key = let prop = with_loc ~start_loc (fun env -> let (key_loc, key) = key in let key = object_key_remove_trailing env key in let value = methodish env start_loc None in let (_, { Type.Function.params; _ }) = value in begin match (is_getter, params) with | (true, (_, { Type.Function.Params.this_ = Some _; _ })) -> error_at env (key_loc, Parse_error.GetterMayNotHaveThisParam) | (false, (_, { Type.Function.Params.this_ = Some _; _ })) -> error_at env (key_loc, Parse_error.SetterMayNotHaveThisParam) | ( true, (_, { Type.Function.Params.params = []; rest = None; this_ = None; comments = _ }) ) -> () | (false, (_, { Type.Function.Params.rest = Some _; _ })) -> (* rest params don't make sense on a setter *) error_at env (key_loc, Parse_error.SetterArity) | (false, (_, { Type.Function.Params.params = [_]; _ })) -> () | (true, _) -> error_at env (key_loc, Parse_error.GetterArity) | (false, _) -> error_at env (key_loc, Parse_error.SetterArity) end; Type.Object.Property. { key; value = ( if is_getter then Get value else Set value ); optional = false; static = static <> None; proto = false; _method = false; variance = None; comments = Flow_ast_utils.mk_comments_opt ~leading (); } ) env in Type.Object.Property prop in let indexer_property env start_loc static variance ~leading = let indexer = with_loc ~start_loc (fun env -> let leading = leading @ Peek.comments env in Expect.token env T_LBRACKET; let id = if Peek.ith_token ~i:1 env = T_COLON then ( let id = identifier_name env in Expect.token env T_COLON; Some id ) else None in let key = _type env in Expect.token env T_RBRACKET; let trailing = Eat.trailing_comments env in Expect.token env T_COLON; let value = _type env in { Type.Object.Indexer.id; key; value; static = static <> None; variance; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); }) env in Type.Object.Indexer indexer in let internal_slot env start_loc static ~leading = let islot = with_loc ~start_loc (fun env -> let leading = leading @ Peek.comments env in Expect.token env T_LBRACKET; Expect.token env T_LBRACKET; let id = identifier_name env in Expect.token env T_RBRACKET; Expect.token env T_RBRACKET; let (optional, _method, value, trailing) = match Peek.token env with | T_LESS_THAN | T_LPAREN -> let tparams = type_params_remove_trailing env (type_params env) in let value = let (fn_loc, fn) = methodish env start_loc tparams in (fn_loc, Type.Function fn) in (false, true, value, []) | _ -> let optional = Eat.maybe env T_PLING in let trailing = Eat.trailing_comments env in Expect.token env T_COLON; let value = _type env in (optional, false, value, trailing) in { Type.Object.InternalSlot.id; value; optional; static = static <> None; _method; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); }) env in Type.Object.InternalSlot islot (* Expects the T_ELLIPSIS has already been eaten *) in let spread_property env start_loc ~leading = let spread = with_loc ~start_loc (fun env -> { Type.Object.SpreadProperty.argument = _type env; comments = Flow_ast_utils.mk_comments_opt ~leading (); }) env in Type.Object.SpreadProperty spread in let semicolon exact env = match Peek.token env with | T_COMMA | T_SEMICOLON -> Eat.token env | T_RCURLYBAR when exact -> () | T_RCURLY when not exact -> () | _ -> Expect.error env T_COMMA in let error_unexpected_variance env = function | Some (loc, _) -> error_at env (loc, Parse_error.UnexpectedVariance) | None -> () in let error_unexpected_proto env = function | Some loc -> error_at env (loc, Parse_error.UnexpectedProto) | None -> () in let error_invalid_property_name env is_class static key = let is_static = static <> None in let is_constructor = String.equal "constructor" in let is_prototype = String.equal "prototype" in match key with | Expression.Object.Property.Identifier (loc, { Identifier.name; comments = _ }) when is_class && (is_constructor name || (is_static && is_prototype name)) -> error_at env ( loc, Parse_error.InvalidClassMemberName { name; static = is_static; method_ = false; private_ = false } ) | _ -> () in let rec properties ~is_class ~allow_inexact ~allow_spread ~exact env ((props, inexact, internal) as acc) = (* no `static ...A` *) assert (not (is_class && allow_spread)); (* allow_inexact implies allow_spread *) assert ((not allow_inexact) || allow_spread); let start_loc = Peek.loc env in match Peek.token env with | T_EOF -> (List.rev props, inexact, internal) | T_RCURLYBAR when exact -> (List.rev props, inexact, internal) | T_RCURLY when not exact -> (List.rev props, inexact, internal) | T_ELLIPSIS when allow_spread -> let leading = Peek.comments env in Eat.token env; begin match Peek.token env with | T_COMMA | T_SEMICOLON | T_RCURLY | T_RCURLYBAR -> semicolon exact env; begin match Peek.token env with | T_RCURLY when allow_inexact -> (List.rev props, true, leading) | T_RCURLYBAR -> error_at env (start_loc, Parse_error.InexactInsideExact); (List.rev props, inexact, internal) | _ -> error_at env (start_loc, Parse_error.UnexpectedExplicitInexactInObject); properties ~is_class ~allow_inexact ~allow_spread ~exact env acc end | _ -> let prop = spread_property env start_loc ~leading in semicolon exact env; properties ~is_class ~allow_inexact ~allow_spread ~exact env (prop :: props, inexact, internal) end (* In this case, allow_spread is false, so we may assume allow_inexact is false based on our * assertion at the top of this function. Thus, any T_ELLIPSIS here is not allowed. *) | T_ELLIPSIS -> Eat.token env; begin match Peek.token env with | T_COMMA | T_SEMICOLON | T_RCURLY | T_RCURLYBAR -> error_at env (start_loc, Parse_error.InexactInsideNonObject); semicolon exact env; properties ~is_class ~allow_inexact ~allow_spread ~exact env acc | _ -> error_list env (Peek.errors env); error_at env (start_loc, Parse_error.UnexpectedSpreadType); (* It's likely the user is trying to spread something here, so we can * eat what they try to spread to try to continue parsing the remaining * properties. *) Eat.token env; semicolon exact env; properties ~is_class ~allow_inexact ~allow_spread ~exact env acc end | _ -> let prop = property env start_loc ~is_class ~allow_static:is_class ~allow_proto:is_class ~variance:None ~static:None ~proto:None ~leading:[] in semicolon exact env; properties ~is_class ~allow_inexact ~allow_spread ~exact env (prop :: props, inexact, internal) and property env ~is_class ~allow_static ~allow_proto ~variance ~static ~proto ~leading start_loc = match Peek.token env with | T_PLUS | T_MINUS when variance = None -> let variance = maybe_variance env in property env ~is_class ~allow_static:false ~allow_proto:false ~variance ~static ~proto ~leading start_loc | T_STATIC when allow_static -> assert (variance = None); (* if we parsed variance, allow_static = false *) let static = Some (Peek.loc env) in let leading = leading @ Peek.comments env in Eat.token env; property env ~is_class ~allow_static:false ~allow_proto:false ~variance ~static ~proto ~leading start_loc | T_IDENTIFIER { raw = "proto"; _ } when allow_proto -> assert (variance = None); (* if we parsed variance, allow_proto = false *) let proto = Some (Peek.loc env) in let leading = leading @ Peek.comments env in Eat.token env; property env ~is_class ~allow_static:false ~allow_proto:false ~variance ~static ~proto ~leading start_loc | T_LBRACKET -> error_unexpected_proto env proto; (match Peek.ith_token ~i:1 env with | T_LBRACKET -> error_unexpected_variance env variance; internal_slot env start_loc static ~leading | _ -> indexer_property env start_loc static variance ~leading) | T_LESS_THAN | T_LPAREN -> (* Note that `static(): void` is a static callable property if we successfully parsed the static modifier above. *) error_unexpected_proto env proto; error_unexpected_variance env variance; call_property env start_loc static ~leading | token -> (match (static, proto, token) with | (Some _, Some _, _) -> failwith "Can not have both `static` and `proto`" | (Some static_loc, None, (T_PLING | T_COLON)) -> (* We speculatively parsed `static` as a static modifier, but now that we've parsed the next token, we changed our minds and want to parse `static` as the key of a named property. *) let key = Expression.Object.Property.Identifier (Flow_ast_utils.ident_of_source (static_loc, "static") ?comments:(Flow_ast_utils.mk_comments_opt ~leading ()) ) in let static = None in init_property env start_loc ~variance ~static ~proto ~leading:[] (static_loc, key) | (None, Some proto_loc, (T_PLING | T_COLON)) -> (* We speculatively parsed `proto` as a proto modifier, but now that we've parsed the next token, we changed our minds and want to parse `proto` as the key of a named property. *) let key = Expression.Object.Property.Identifier (Flow_ast_utils.ident_of_source (proto_loc, "proto") ?comments:(Flow_ast_utils.mk_comments_opt ~leading ()) ) in let proto = None in init_property env start_loc ~variance ~static ~proto ~leading:[] (proto_loc, key) | _ -> let object_key env = Eat.push_lex_mode env Lex_mode.NORMAL; let result = Parse.object_key env in Eat.pop_lex_mode env; result in let leading_key = Peek.comments env in (match object_key env with | ( key_loc, ( Expression.Object.Property.Identifier (_, { Identifier.name = ("get" | "set") as name; comments = _ }) as key ) ) -> begin match Peek.token env with | T_LESS_THAN | T_LPAREN -> error_unexpected_proto env proto; error_unexpected_variance env variance; method_property env start_loc static key ~leading | T_COLON | T_PLING -> init_property env start_loc ~variance ~static ~proto ~leading (key_loc, key) | _ -> ignore (object_key_remove_trailing env key); let key = object_key env in let is_getter = name = "get" in let leading = leading @ leading_key in error_unexpected_proto env proto; error_unexpected_variance env variance; getter_or_setter ~is_getter ~leading env start_loc static key end | (key_loc, key) -> begin match Peek.token env with | T_LESS_THAN | T_LPAREN -> error_unexpected_proto env proto; error_unexpected_variance env variance; method_property env start_loc static key ~leading | _ -> error_invalid_property_name env is_class static key; init_property env start_loc ~variance ~static ~proto ~leading (key_loc, key) end)) in fun ~is_class ~allow_exact ~allow_spread env -> let exact = allow_exact && Peek.token env = T_LCURLYBAR in let allow_inexact = allow_exact && not exact in with_loc (fun env -> let leading = Peek.comments env in Expect.token env ( if exact then T_LCURLYBAR else T_LCURLY ); let (properties, inexact, internal) = let env = with_no_anon_function_type false env in properties ~is_class ~allow_inexact ~exact ~allow_spread env ([], false, []) in let internal = internal @ Peek.comments env in Expect.token env ( if exact then T_RCURLYBAR else T_RCURLY ); let trailing = Eat.trailing_comments env in (* inexact = true iff `...` was used to indicate inexactnes *) { Type.Object.exact; properties; inexact; comments = Flow_ast_utils.mk_comments_with_internal_opt ~leading ~trailing ~internal (); }) env and interface_helper = let rec supers env acc = let super = generic env in let acc = super :: acc in match Peek.token env with | T_COMMA -> Expect.token env T_COMMA; supers env acc | _ -> List.rev acc in fun env -> let extends = if Peek.token env = T_EXTENDS then ( Expect.token env T_EXTENDS; let extends = supers env [] in generic_type_list_remove_trailing env extends ) else [] in let body = _object env ~allow_exact:false ~allow_spread:false ~is_class:false in (extends, body) and type_identifier env = let (loc, { Identifier.name; comments }) = identifier_name env in if is_reserved_type name then error_at env (loc, Parse_error.UnexpectedReservedType); (loc, { Identifier.name; comments }) and bounded_type env = with_loc (fun env -> let name = type_identifier env in let bound = if Peek.token env = T_COLON then Ast.Type.Available (annotation env) else Ast.Type.Missing (Peek.loc_skip_lookahead env) in (name, bound)) env and type_params = let rec params env ~require_default acc = Type.TypeParam.( let (loc, (variance, name, bound, default, require_default)) = with_loc (fun env -> let variance = maybe_variance env in let (loc, (name, bound)) = bounded_type env in let (default, require_default) = match Peek.token env with | T_ASSIGN -> Eat.token env; (Some (_type env), true) | _ -> if require_default then error_at env (loc, Parse_error.MissingTypeParamDefault); (None, require_default) in (variance, name, bound, default, require_default)) env in let param = (loc, { name; bound; variance; default }) in let acc = param :: acc in match Peek.token env with | T_EOF | T_GREATER_THAN -> List.rev acc | _ -> Expect.token env T_COMMA; if Peek.token env = T_GREATER_THAN then List.rev acc else params env ~require_default acc ) in fun env -> if Peek.token env = T_LESS_THAN then ( if not (should_parse_types env) then error env Parse_error.UnexpectedTypeAnnotation; Some (with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_LESS_THAN; let params = params env ~require_default:false [] in let internal = Peek.comments env in Expect.token env T_GREATER_THAN; let trailing = Eat.trailing_comments env in { Type.TypeParams.params; comments = Flow_ast_utils.mk_comments_with_internal_opt ~leading ~trailing ~internal (); }) env ) ) else None and type_args = let rec args env acc = match Peek.token env with | T_EOF | T_GREATER_THAN -> List.rev acc | _ -> let acc = _type env :: acc in if Peek.token env <> T_GREATER_THAN then Expect.token env T_COMMA; args env acc in fun env -> if Peek.token env = T_LESS_THAN then Some (with_loc (fun env -> let leading = Peek.comments env in Expect.token env T_LESS_THAN; let env = with_no_anon_function_type false env in let arguments = args env [] in let internal = Peek.comments env in Expect.token env T_GREATER_THAN; let trailing = Eat.trailing_comments env in { Type.TypeArgs.arguments; comments = Flow_ast_utils.mk_comments_with_internal_opt ~leading ~trailing ~internal (); }) env ) else None and generic env = raw_generic_with_identifier env (type_identifier env) and raw_generic_with_identifier = let rec identifier env (q_loc, qualification) = if Peek.token env = T_PERIOD && Peek.ith_is_type_identifier ~i:1 env then let (loc, q) = with_loc ~start_loc:q_loc (fun env -> Expect.token env T_PERIOD; let id = type_identifier env in { Type.Generic.Identifier.qualification; id }) env in let qualification = Type.Generic.Identifier.Qualified (loc, q) in identifier env (loc, qualification) else (q_loc, qualification) in fun env id -> with_loc ~start_loc:(fst id) (fun env -> let id = (fst id, Type.Generic.Identifier.Unqualified id) in let id = let (_id_loc, id) = identifier env id in if Peek.token env <> T_LESS_THAN then id else let { remove_trailing; _ } = trailing_and_remover env in remove_trailing id (fun remover id -> remover#generic_identifier_type id) in let targs = type_args env in { Type.Generic.id; targs; comments = None }) env and generic_type_with_identifier env id = let (loc, generic) = raw_generic_with_identifier env id in (loc, Type.Generic generic) and annotation_opt env = match Peek.token env with | T_COLON -> Type.Available (annotation env) | _ -> Type.Missing (Peek.loc_skip_lookahead env) and add_comments (loc, t) leading trailing = let merge_comments inner = Flow_ast_utils.merge_comments ~inner ~outer:(Flow_ast_utils.mk_comments_opt ~leading ~trailing ()) in let merge_comments_with_internal inner = Flow_ast_utils.merge_comments_with_internal ~inner ~outer:(Flow_ast_utils.mk_comments_opt ~leading ~trailing ()) in let open Ast.Type in ( loc, match t with | Any comments -> Any (merge_comments comments) | Mixed comments -> Mixed (merge_comments comments) | Empty comments -> Empty (merge_comments comments) | Void comments -> Void (merge_comments comments) | Null comments -> Null (merge_comments comments) | Number comments -> Number (merge_comments comments) | BigInt comments -> BigInt (merge_comments comments) | String comments -> String (merge_comments comments) | Boolean comments -> Boolean (merge_comments comments) | Symbol comments -> Symbol (merge_comments comments) | Exists comments -> Exists (merge_comments comments) | Nullable ({ Nullable.comments; _ } as t) -> Nullable { t with Nullable.comments = merge_comments comments } | Function ({ Function.comments; _ } as t) -> Function { t with Function.comments = merge_comments comments } | Object ({ Object.comments; _ } as t) -> Object { t with Object.comments = merge_comments_with_internal comments } | Interface ({ Interface.comments; _ } as t) -> Interface { t with Interface.comments = merge_comments comments } | Array ({ Array.comments; _ } as t) -> Array { t with Array.comments = merge_comments comments } | Generic ({ Generic.comments; _ } as t) -> Generic { t with Generic.comments = merge_comments comments } | IndexedAccess ({ IndexedAccess.comments; _ } as t) -> IndexedAccess { t with IndexedAccess.comments = merge_comments comments } | OptionalIndexedAccess { OptionalIndexedAccess.indexed_access = { IndexedAccess.comments; _ } as indexed_access; optional; } -> OptionalIndexedAccess { OptionalIndexedAccess.indexed_access = { indexed_access with IndexedAccess.comments = merge_comments comments }; optional; } | Union ({ Union.comments; _ } as t) -> Union { t with Union.comments = merge_comments comments } | Intersection ({ Intersection.comments; _ } as t) -> Intersection { t with Intersection.comments = merge_comments comments } | Typeof ({ Typeof.comments; _ } as t) -> Typeof { t with Typeof.comments = merge_comments comments } | Tuple ({ Tuple.comments; _ } as t) -> Tuple { t with Tuple.comments = merge_comments comments } | StringLiteral ({ StringLiteral.comments; _ } as t) -> StringLiteral { t with StringLiteral.comments = merge_comments comments } | NumberLiteral ({ NumberLiteral.comments; _ } as t) -> NumberLiteral { t with NumberLiteral.comments = merge_comments comments } | BigIntLiteral ({ BigIntLiteral.comments; _ } as t) -> BigIntLiteral { t with BigIntLiteral.comments = merge_comments comments } | BooleanLiteral ({ BooleanLiteral.comments; _ } as t) -> BooleanLiteral { t with BooleanLiteral.comments = merge_comments comments } ) let predicate = with_loc (fun env -> let open Ast.Type.Predicate in let leading = Peek.comments env in Expect.token env T_CHECKS; if Peek.token env = T_LPAREN then ( let leading = leading @ Peek.comments env in Expect.token env T_LPAREN; Eat.push_lex_mode env Lex_mode.NORMAL; let exp = Parse.conditional env in Eat.pop_lex_mode env; Expect.token env T_RPAREN; let trailing = Eat.trailing_comments env in { kind = Declared exp; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing () } ) else let trailing = Eat.trailing_comments env in { kind = Ast.Type.Predicate.Inferred; comments = Flow_ast_utils.mk_comments_opt ~leading ~trailing (); } ) let predicate_opt env = let env = with_no_anon_function_type false env in match Peek.token env with | T_CHECKS -> Some (predicate env) | _ -> None let annotation_and_predicate_opt env = let open Ast.Type in match (Peek.token env, Peek.ith_token ~i:1 env) with | (T_COLON, T_CHECKS) -> Expect.token env T_COLON; (Missing (Peek.loc_skip_lookahead env), predicate_opt env) | (T_COLON, _) -> let annotation = let annotation = annotation_opt env in if Peek.token env = T_CHECKS then type_annotation_hint_remove_trailing env annotation else annotation in let predicate = predicate_opt env in (annotation, predicate) | _ -> (Missing (Peek.loc_skip_lookahead env), None) let wrap f env = let env = env |> with_strict true in Eat.push_lex_mode env Lex_mode.TYPE; let ret = f env in Eat.pop_lex_mode env; ret let _type = wrap _type let type_identifier = wrap type_identifier let type_params = wrap type_params let type_args = wrap type_args let _object ~is_class env = wrap (_object ~is_class ~allow_exact:false ~allow_spread:false) env let interface_helper = wrap interface_helper let function_param_list = wrap function_param_list let annotation = wrap annotation let annotation_opt = wrap annotation_opt let predicate_opt = wrap predicate_opt let annotation_and_predicate_opt = wrap annotation_and_predicate_opt let generic = wrap generic end
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