package ocaml-protoc
Pure OCaml compiler for .proto files
Install
Dune Dependency
Authors
Maintainers
Sources
ocaml-protoc-3.1.1.tbz
sha256=c5657fcbfcbaea361beb847f72b8a6a6f36ce9e773bf285b278a0da75f988fbc
sha512=ea86d04b6293eba48360409049f907fc3e73138ec434b5d1894a2dcdaa0478f6f5a1d13f1ba87c553ddf6806a618525f621d2af862b495ce3426242a3a42e339
doc/src/ocaml-protoc.compiler-lib/pb_typing_validation.ml.html
Source file pb_typing_validation.ml
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(* The MIT License (MIT) Copyright (c) 2016 Maxime Ransan <maxime.ransan@gmail.com> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. *) module E = Pb_exception module Pt = Pb_parsing_parse_tree module Tt = Pb_typing_type_tree module Typing_util = Pb_typing_util let scope_of_package : string option -> Tt.type_scope = function | Some s -> { Typing_util.empty_scope with Tt.packages = List.rev @@ Pb_util.rev_split_by_char '.' s; } | None -> Typing_util.empty_scope let get_default field_name field_options : Pb_option.constant option = match Pb_option.get field_options "default" with | Some (Pb_option.Scalar_value constant) -> Some constant | Some (Pb_option.Message_literal _) -> E.invalid_default_value ~field_name ~info:"message literals are unsupported for default values" () | Some (Pb_option.List_literal _) -> E.invalid_default_value ~field_name ~info:"list literals are unsupported for default values" () | None -> None let compile_field_p1 field_parsed : _ Tt.field = let { Pt.field_type; Pt.field_options; Pt.field_name; _ } = field_parsed in let field_default = get_default field_name field_options in { Tt.field_parsed; Tt.field_type; Tt.field_default; Tt.field_options } let compile_map_p1 map_parsed : _ Tt.map_field = let { Pt.map_name; Pt.map_number; Pt.map_key_type; Pt.map_value_type; Pt.map_options; } = map_parsed in Tt.{ map_name; map_number; map_key_type; map_value_type; map_options } let compile_oneof_p1 oneof_parsed : _ Tt.oneof = let init = { Tt.oneof_name = oneof_parsed.Pt.oneof_name; Tt.oneof_fields = []; Tt.oneof_options = Pb_option.empty; } in let oneof = List.fold_left (fun acc -> function | Pt.Oneof_field f -> { acc with Tt.oneof_fields = compile_field_p1 f :: acc.Tt.oneof_fields; } | Pt.Oneof_option (name, value) -> { acc with Tt.oneof_options = Pb_option.add acc.Tt.oneof_options name value; }) init oneof_parsed.Pt.oneof_body in (* now reverse the fields so they're back in the original order *) { oneof with Tt.oneof_fields = List.rev oneof.oneof_fields } let not_found f : bool = try f (); false with Not_found -> true let rec list_assoc2 x = function | [] -> raise Not_found | (a, b) :: l -> if compare b x = 0 then a else list_assoc2 x l let make_proto_type ~file_name ~file_options ~id ~scope ~spec : _ Tt.proto_type = { Tt.id; Tt.scope; Tt.file_name; Tt.file_options; Tt.spec } (** compile a [Pbpt] enum to a [Pbtt] type *) let compile_enum_p1 ?(parent_options = Pb_option.empty) file_name file_options scope parsed_enum = let { Pt.enum_id; enum_name; enum_body } = parsed_enum in let enum_values = Pb_util.List.filter_map (function | Pt.Enum_value { Pt.enum_value_name; enum_value_int; enum_value_options } -> Some Tt.{ enum_value_name; enum_value_int; enum_value_options } | _ -> None) enum_body in let enum_options = enum_body |> Pb_util.List.filter_map (function | Pt.Enum_option o -> Some o | _ -> None) |> List.fold_left (fun enum_options (name, value) -> Pb_option.add enum_options name value) Pb_option.empty in let spec = Tt.Enum { Tt.enum_name; Tt.enum_values; Tt.enum_options = Pb_option.merge parent_options enum_options; } in make_proto_type ~file_name ~file_options ~id:enum_id ~scope ~spec (** compile a [Pbpt] message a list of [Pbtt] types (ie messages can defined more than one type). *) let rec validate_message ?(parent_options = Pb_option.empty) file_name file_options message_scope parsed_message : _ Tt.proto_type list = let { Pt.id; Pt.message_name; Pt.message_body } = parsed_message in let { Tt.message_names; _ } = message_scope in let sub_scope = { message_scope with Tt.message_names = message_names @ [ message_name ] } in let module Acc = struct (* Ad-hoc module for the "large" accumulated data during the fold_left below. *) type ('a, 'b, 'd) t = { message_body: 'a list; extensions: 'b list; options: Pb_option.set; all_types: 'd list; } let e0 parent_options = { message_body = []; extensions = []; options = parent_options; all_types = []; } end in let acc = List.fold_left (fun acc field -> let { Acc.message_body; extensions; options; all_types } = acc in match field with | Pt.Message_field f -> let field = Tt.Message_field (compile_field_p1 f) in { acc with Acc.message_body = field :: message_body } | Pt.Message_map_field m -> let field = Tt.Message_map_field (compile_map_p1 m) in { acc with Acc.message_body = field :: message_body } | Pt.Message_oneof_field o -> let field = Tt.Message_oneof_field (compile_oneof_p1 o) in { acc with Acc.message_body = field :: message_body } | Pt.Message_sub m -> let parent_options = options in let all_sub_types = validate_message ~parent_options file_name file_options sub_scope m in { acc with Acc.all_types = all_types @ all_sub_types } | Pt.Message_enum parsed_enum -> let parent_options = options in let enum = compile_enum_p1 ~parent_options file_name file_options sub_scope parsed_enum in { acc with Acc.all_types = all_types @ [ enum ] } | Pt.Message_extension extension_ranges -> { acc with Acc.extensions = extensions @ extension_ranges } | Pt.Message_reserved _ -> acc (* TODO add support for checking reserved fields *) | Pt.Message_option message_option -> let options = Pb_option.add options (fst message_option) (snd message_option) in { acc with Acc.options }) (Acc.e0 parent_options) message_body in let message_body = List.rev acc.Acc.message_body in (* TODO: Maybe [validate_duplicate] should be in [Pb_parsing_util.verify_message] along with the proto3 invariant. *) (* Both field name and field number must be unique within a message scope. This includes the field in a oneof field inside the message. This function verifies this constrain and raises the corresponding Duplicated_field_number exception in case it is violated. *) let validate_duplicate (number_index : (int * string) list) name number = if not_found (fun () -> ignore @@ List.assoc number number_index) && not_found (fun () -> ignore @@ list_assoc2 name number_index) then (number, name) :: number_index else E.duplicated_field_number ~field_name:name ~previous_field_name:"" ~message_name () in let validate_duplicate_field number_index field = let number = Typing_util.field_number field in let name = Typing_util.field_name field in validate_duplicate number_index name number in ignore (List.fold_left (fun number_index -> function | Tt.Message_field field -> validate_duplicate_field number_index field | Tt.Message_oneof_field { Tt.oneof_fields; _ } -> List.fold_left validate_duplicate_field number_index oneof_fields | Tt.Message_map_field m -> let { Tt.map_name; map_number; _ } = m in validate_duplicate number_index map_name map_number) [] message_body : _ list); let spec = Tt.Message { Tt.extensions = acc.Acc.extensions; message_options = acc.Acc.options; message_name; message_body; } in acc.Acc.all_types @ [ make_proto_type ~file_name ~file_options ~id ~scope:message_scope ~spec ] let validate_service (scope : Tt.type_scope) ~file_name (service : Pt.service) : _ Tt.service = let { Pt.service_name; service_body } = service in let service_body = List.filter_map (function | Pt.Service_option _ -> None | Pt.Service_rpc { rpc_name; rpc_options; rpc_req_stream; rpc_req; rpc_res_stream; rpc_res; } -> let rpc_req = match rpc_req with | `User_defined ty -> ty | _ -> E.invalid_rpc_req_type ~service_name ~rpc_name () in let rpc_res = match rpc_res with | `User_defined ty -> ty | _ -> E.invalid_rpc_res_type ~service_name ~rpc_name () in let rpc = { Tt.rpc_name; rpc_options; rpc_req_stream; rpc_req; rpc_res_stream; rpc_res; } in Some rpc) service_body in { Tt.service_packages = scope.packages; service_file_name = file_name; service_name; service_body; } let validate (proto : Pt.proto) : _ Tt.proto = let { Pt.package; Pt.proto_file_name; messages; enums; file_options; services; _; } = proto in let file_name = Pb_util.Option.default "" proto_file_name in let scope = scope_of_package package in let pbtt_msgs = List.fold_right (fun e pbtt_msgs -> [ compile_enum_p1 file_name file_options scope e ] :: pbtt_msgs) enums [] in let proto_types = List.fold_left (fun pbtt_msgs pbpt_msg -> let tys = validate_message file_name file_options scope pbpt_msg in tys :: pbtt_msgs) pbtt_msgs messages in let proto_services = List.map (validate_service scope ~file_name) services in { Tt.proto_types; proto_services }
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