# Code generated by protox. Don't edit. # credo:disable-for-this-file defmodule PgQuery.SubscriptingRef do @moduledoc false if function_exported?(Protox, :check_generator_version, 1) do Protox.check_generator_version(1) else raise "This code was generated with protox 2 but the runtime is using an older version of protox." end @type t :: %__MODULE__{ refassgnexpr: PgQuery.Node.t() | nil, refexpr: PgQuery.Node.t() | nil, reflowerindexpr: [PgQuery.Node.t()], refupperindexpr: [PgQuery.Node.t()], refcollid: non_neg_integer(), reftypmod: integer(), refrestype: non_neg_integer(), refelemtype: non_neg_integer(), refcontainertype: non_neg_integer(), xpr: PgQuery.Node.t() | nil, __uf__: [{non_neg_integer(), Protox.Types.tag(), binary()}] } defstruct refassgnexpr: nil, refexpr: nil, reflowerindexpr: [], refupperindexpr: [], refcollid: 0, reftypmod: 0, refrestype: 0, refelemtype: 0, refcontainertype: 0, xpr: nil, __uf__: [] ( ( @spec encode(t()) :: {:ok, iodata(), non_neg_integer()} | {:error, any()} def encode(msg) do msg |> encode!() |> Tuple.insert_at(0, :ok) rescue e in [Protox.EncodingError, Protox.RequiredFieldsError] -> {:error, e} end @spec encode!(t()) :: {iodata(), non_neg_integer()} | no_return() def encode!(msg) do {_acc = [], _acc_size = 0} |> encode_refassgnexpr(msg) |> encode_refexpr(msg) |> encode_reflowerindexpr(msg) |> encode_refupperindexpr(msg) |> encode_refcollid(msg) |> encode_reftypmod(msg) |> encode_refrestype(msg) |> encode_refelemtype(msg) |> encode_refcontainertype(msg) |> encode_xpr(msg) |> encode_unknown_fields(msg) end ) defp encode_refassgnexpr({acc, acc_size}, msg) do if msg.refassgnexpr == nil do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_message(msg.refassgnexpr) {["R", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refassgnexpr, "invalid field value"), __STACKTRACE__ end defp encode_refexpr({acc, acc_size}, msg) do if msg.refexpr == nil do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_message(msg.refexpr) {["J", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refexpr, "invalid field value"), __STACKTRACE__ end defp encode_reflowerindexpr({acc, acc_size}, msg) do case msg.reflowerindexpr do [] -> {acc, acc_size} values -> {value_bytes, value_size} = ( {value_bytes, value_size} = Enum.reduce(values, {_local_acc = [], _local_acc_size = 0}, fn value, {local_acc, local_acc_size} -> {value_bytes, value_bytes_size} = Protox.Encode.encode_message(value) {[value_bytes, "B" | local_acc], local_acc_size + 1 + value_bytes_size} end) {Enum.reverse(value_bytes), value_size} ) {[value_bytes | acc], acc_size + value_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:reflowerindexpr, "invalid field value"), __STACKTRACE__ end defp encode_refupperindexpr({acc, acc_size}, msg) do case msg.refupperindexpr do [] -> {acc, acc_size} values -> {value_bytes, value_size} = ( {value_bytes, value_size} = Enum.reduce(values, {_local_acc = [], _local_acc_size = 0}, fn value, {local_acc, local_acc_size} -> {value_bytes, value_bytes_size} = Protox.Encode.encode_message(value) {[value_bytes, ":" | local_acc], local_acc_size + 1 + value_bytes_size} end) {Enum.reverse(value_bytes), value_size} ) {[value_bytes | acc], acc_size + value_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refupperindexpr, "invalid field value"), __STACKTRACE__ end defp encode_refcollid({acc, acc_size}, msg) do if msg.refcollid == 0 do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_uint32(msg.refcollid) {["0", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refcollid, "invalid field value"), __STACKTRACE__ end defp encode_reftypmod({acc, acc_size}, msg) do if msg.reftypmod == 0 do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_int32(msg.reftypmod) {["(", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:reftypmod, "invalid field value"), __STACKTRACE__ end defp encode_refrestype({acc, acc_size}, msg) do if msg.refrestype == 0 do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_uint32(msg.refrestype) {[" ", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refrestype, "invalid field value"), __STACKTRACE__ end defp encode_refelemtype({acc, acc_size}, msg) do if msg.refelemtype == 0 do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_uint32(msg.refelemtype) {["\x18", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refelemtype, "invalid field value"), __STACKTRACE__ end defp encode_refcontainertype({acc, acc_size}, msg) do if msg.refcontainertype == 0 do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_uint32(msg.refcontainertype) {["\x10", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:refcontainertype, "invalid field value"), __STACKTRACE__ end defp encode_xpr({acc, acc_size}, msg) do if msg.xpr == nil do {acc, acc_size} else {value_bytes, value_bytes_size} = Protox.Encode.encode_message(msg.xpr) {["\n", value_bytes | acc], acc_size + 1 + value_bytes_size} end rescue ArgumentError -> reraise Protox.EncodingError.new(:xpr, "invalid field value"), __STACKTRACE__ end defp encode_unknown_fields({acc, acc_size}, msg) do Enum.reduce(msg.__uf__, {acc, acc_size}, fn {tag, wire_type, bytes}, {acc, acc_size} -> case wire_type do 0 -> {key_bytes, key_size} = Protox.Encode.make_key_bytes(tag, :int32) {[acc, <>], acc_size + key_size + byte_size(bytes)} 1 -> {key_bytes, key_size} = Protox.Encode.make_key_bytes(tag, :double) {[acc, <>], acc_size + key_size + byte_size(bytes)} 2 -> {len_bytes, len_size} = bytes |> byte_size() |> Protox.Varint.encode() {key_bytes, key_size} = Protox.Encode.make_key_bytes(tag, :packed) {[acc, <>], acc_size + key_size + len_size + byte_size(bytes)} 5 -> {key_bytes, key_size} = Protox.Encode.make_key_bytes(tag, :float) {[acc, <>], acc_size + key_size + byte_size(bytes)} end end) end ) ( ( @spec decode(binary()) :: {:ok, t()} | {:error, any()} def decode(bytes) do {:ok, decode!(bytes)} rescue e in [Protox.DecodingError, Protox.IllegalTagError, Protox.RequiredFieldsError] -> {:error, e} end ( @spec decode!(binary()) :: t() | no_return() def decode!(bytes) do parse_key_value(bytes, struct(PgQuery.SubscriptingRef)) end ) ) ( @spec parse_key_value(binary(), struct()) :: struct() defp parse_key_value(<<>>, msg) do msg end defp parse_key_value(bytes, msg) do {field, rest} = case bytes do <<_::5, 3::3, _rest::binary>> -> raise Protox.DecodingError.new(bytes, "invalid wire type 3") <<_::5, 4::3, _rest::binary>> -> raise Protox.DecodingError.new(bytes, "invalid wire type 4") <<_::5, 6::3, _rest::binary>> -> raise Protox.DecodingError.new(bytes, "invalid wire type 6") <<_::5, 7::3, _rest::binary>> -> raise Protox.DecodingError.new(bytes, "invalid wire type 7") <<0::5, _::3, _rest::binary>> -> raise %Protox.IllegalTagError{} <<10::5, _wire_type::3, bytes::binary>> -> {len, bytes} = Protox.Varint.decode(bytes) {delimited, rest} = Protox.Decode.parse_delimited(bytes, len) {[ refassgnexpr: Protox.MergeMessage.merge(msg.refassgnexpr, PgQuery.Node.decode!(delimited)) ], rest} <<9::5, _wire_type::3, bytes::binary>> -> {len, bytes} = Protox.Varint.decode(bytes) {delimited, rest} = Protox.Decode.parse_delimited(bytes, len) {[refexpr: Protox.MergeMessage.merge(msg.refexpr, PgQuery.Node.decode!(delimited))], rest} <<8::5, _wire_type::3, bytes::binary>> -> {len, bytes} = Protox.Varint.decode(bytes) {delimited, rest} = Protox.Decode.parse_delimited(bytes, len) {[reflowerindexpr: msg.reflowerindexpr ++ [PgQuery.Node.decode!(delimited)]], rest} <<7::5, _wire_type::3, bytes::binary>> -> {len, bytes} = Protox.Varint.decode(bytes) {delimited, rest} = Protox.Decode.parse_delimited(bytes, len) {[refupperindexpr: msg.refupperindexpr ++ [PgQuery.Node.decode!(delimited)]], rest} <<6::5, _wire_type::3, bytes::binary>> -> {value, rest} = Protox.Decode.parse_uint32(bytes) {[refcollid: value], rest} <<5::5, _wire_type::3, bytes::binary>> -> {value, rest} = Protox.Decode.parse_int32(bytes) {[reftypmod: value], rest} <<4::5, _wire_type::3, bytes::binary>> -> {value, rest} = Protox.Decode.parse_uint32(bytes) {[refrestype: value], rest} <<3::5, _wire_type::3, bytes::binary>> -> {value, rest} = Protox.Decode.parse_uint32(bytes) {[refelemtype: value], rest} <<2::5, _wire_type::3, bytes::binary>> -> {value, rest} = Protox.Decode.parse_uint32(bytes) {[refcontainertype: value], rest} <<1::5, _wire_type::3, bytes::binary>> -> {len, bytes} = Protox.Varint.decode(bytes) {delimited, rest} = Protox.Decode.parse_delimited(bytes, len) {[xpr: Protox.MergeMessage.merge(msg.xpr, PgQuery.Node.decode!(delimited))], rest} <> -> {tag, wire_type, rest} = Protox.Decode.parse_key(bytes) {value, rest} = Protox.Decode.parse_unknown(tag, wire_type, rest) {[__uf__: msg.__uf__ ++ [value]], rest} end msg_updated = struct(msg, field) parse_key_value(rest, msg_updated) end ) ) ( @spec unknown_fields(struct()) :: [{non_neg_integer(), Protox.Types.tag(), binary()}] def unknown_fields(msg) do msg.__uf__ end @spec unknown_fields_name() :: :__uf__ def unknown_fields_name() do :__uf__ end @spec clear_unknown_fields(struct) :: struct def clear_unknown_fields(msg) do struct!(msg, __uf__: []) end ) ( @spec default(atom()) :: {:ok, boolean() | integer() | String.t() | float()} | {:error, :no_such_field | :no_default_value} def default(:refassgnexpr) do {:ok, nil} end def default(:refexpr) do {:ok, nil} end def default(:reflowerindexpr) do {:error, :no_default_value} end def default(:refupperindexpr) do {:error, :no_default_value} end def default(:refcollid) do {:ok, 0} end def default(:reftypmod) do {:ok, 0} end def default(:refrestype) do {:ok, 0} end def default(:refelemtype) do {:ok, 0} end def default(:refcontainertype) do {:ok, 0} end def default(:xpr) do {:ok, nil} end def default(_) do {:error, :no_such_field} end ) @spec schema() :: Protox.MessageSchema.t() def schema() do %{ __struct__: Protox.MessageSchema, fields: %{ refassgnexpr: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: nil}, label: :optional, name: :refassgnexpr, tag: 10, type: {:message, PgQuery.Node} }, refcollid: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: 0}, label: :optional, name: :refcollid, tag: 6, type: :uint32 }, refcontainertype: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: 0}, label: :optional, name: :refcontainertype, tag: 2, type: :uint32 }, refelemtype: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: 0}, label: :optional, name: :refelemtype, tag: 3, type: :uint32 }, refexpr: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: nil}, label: :optional, name: :refexpr, tag: 9, type: {:message, PgQuery.Node} }, reflowerindexpr: %{ __struct__: Protox.Field, extender: nil, kind: :unpacked, label: :repeated, name: :reflowerindexpr, tag: 8, type: {:message, PgQuery.Node} }, refrestype: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: 0}, label: :optional, name: :refrestype, tag: 4, type: :uint32 }, reftypmod: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: 0}, label: :optional, name: :reftypmod, tag: 5, type: :int32 }, refupperindexpr: %{ __struct__: Protox.Field, extender: nil, kind: :unpacked, label: :repeated, name: :refupperindexpr, tag: 7, type: {:message, PgQuery.Node} }, xpr: %{ __struct__: Protox.Field, extender: nil, kind: %{__struct__: Protox.Scalar, default_value: nil}, label: :optional, name: :xpr, tag: 1, type: {:message, PgQuery.Node} } }, file_options: nil, name: PgQuery.SubscriptingRef, syntax: :proto3 } end end