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lib/soulless/game/lq/elixir_soulless_game_lq_optional_operation.ex
# credo:disable-for-this-file
defmodule Soulless.Game.Lq.OptionalOperation do
@moduledoc false
defstruct type: 0,
combination: [],
change_tiles: [],
change_tile_states: [],
gap_type: 0,
__uf__: []
(
(
@spec encode(struct) :: {:ok, iodata} | {:error, any}
def encode(msg) do
try do
{:ok, encode!(msg)}
rescue
e in [Protox.EncodingError, Protox.RequiredFieldsError] -> {:error, e}
end
end
@spec encode!(struct) :: iodata | no_return
def encode!(msg) do
[]
|> encode_type(msg)
|> encode_combination(msg)
|> encode_change_tiles(msg)
|> encode_change_tile_states(msg)
|> encode_gap_type(msg)
|> encode_unknown_fields(msg)
end
)
[]
[
defp encode_type(acc, msg) do
try do
if msg.type == 0 do
acc
else
[acc, "\b", Protox.Encode.encode_uint32(msg.type)]
end
rescue
ArgumentError ->
reraise Protox.EncodingError.new(:type, "invalid field value"), __STACKTRACE__
end
end,
defp encode_combination(acc, msg) do
try do
case msg.combination do
[] ->
acc
values ->
[
acc,
Enum.reduce(values, [], fn value, acc ->
[acc, "\x12", Protox.Encode.encode_string(value)]
end)
]
end
rescue
ArgumentError ->
reraise Protox.EncodingError.new(:combination, "invalid field value"), __STACKTRACE__
end
end,
defp encode_change_tiles(acc, msg) do
try do
case msg.change_tiles do
[] ->
acc
values ->
[
acc,
Enum.reduce(values, [], fn value, acc ->
[acc, "\x1A", Protox.Encode.encode_string(value)]
end)
]
end
rescue
ArgumentError ->
reraise Protox.EncodingError.new(:change_tiles, "invalid field value"), __STACKTRACE__
end
end,
defp encode_change_tile_states(acc, msg) do
try do
case msg.change_tile_states do
[] ->
acc
values ->
[
acc,
"\"",
(
{bytes, len} =
Enum.reduce(values, {[], 0}, fn value, {acc, len} ->
value_bytes = :binary.list_to_bin([Protox.Encode.encode_int32(value)])
{[acc, value_bytes], len + byte_size(value_bytes)}
end)
[Protox.Varint.encode(len), bytes]
)
]
end
rescue
ArgumentError ->
reraise Protox.EncodingError.new(:change_tile_states, "invalid field value"),
__STACKTRACE__
end
end,
defp encode_gap_type(acc, msg) do
try do
if msg.gap_type == 0 do
acc
else
[acc, "(", Protox.Encode.encode_uint32(msg.gap_type)]
end
rescue
ArgumentError ->
reraise Protox.EncodingError.new(:gap_type, "invalid field value"), __STACKTRACE__
end
end
]
defp encode_unknown_fields(acc, msg) do
Enum.reduce(msg.__struct__.unknown_fields(msg), acc, fn {tag, wire_type, bytes}, acc ->
case wire_type do
0 ->
[acc, Protox.Encode.make_key_bytes(tag, :int32), bytes]
1 ->
[acc, Protox.Encode.make_key_bytes(tag, :double), bytes]
2 ->
len_bytes = bytes |> byte_size() |> Protox.Varint.encode()
[acc, Protox.Encode.make_key_bytes(tag, :packed), len_bytes, bytes]
5 ->
[acc, Protox.Encode.make_key_bytes(tag, :float), bytes]
end
end)
end
)
(
(
@spec decode(binary) :: {:ok, struct} | {:error, any}
def decode(bytes) do
try do
{:ok, decode!(bytes)}
rescue
e in [Protox.DecodingError, Protox.IllegalTagError, Protox.RequiredFieldsError] ->
{:error, e}
end
end
(
@spec decode!(binary) :: struct | no_return
def decode!(bytes) do
parse_key_value(bytes, struct(Soulless.Game.Lq.OptionalOperation))
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 Protox.Decode.parse_key(bytes) do
{0, _, _} ->
raise %Protox.IllegalTagError{}
{1, _, bytes} ->
{value, rest} = Protox.Decode.parse_uint32(bytes)
{[type: value], rest}
{2, _, bytes} ->
{len, bytes} = Protox.Varint.decode(bytes)
{delimited, rest} = Protox.Decode.parse_delimited(bytes, len)
{[combination: msg.combination ++ [delimited]], rest}
{3, _, bytes} ->
{len, bytes} = Protox.Varint.decode(bytes)
{delimited, rest} = Protox.Decode.parse_delimited(bytes, len)
{[change_tiles: msg.change_tiles ++ [delimited]], rest}
{4, 2, bytes} ->
{len, bytes} = Protox.Varint.decode(bytes)
{delimited, rest} = Protox.Decode.parse_delimited(bytes, len)
{[
change_tile_states:
msg.change_tile_states ++ Protox.Decode.parse_repeated_int32([], delimited)
], rest}
{4, _, bytes} ->
{value, rest} = Protox.Decode.parse_int32(bytes)
{[change_tile_states: msg.change_tile_states ++ [value]], rest}
{5, _, bytes} ->
{value, rest} = Protox.Decode.parse_uint32(bytes)
{[gap_type: value], rest}
{tag, wire_type, rest} ->
{value, rest} = Protox.Decode.parse_unknown(tag, wire_type, rest)
{[
{msg.__struct__.unknown_fields_name,
[value | msg.__struct__.unknown_fields(msg)]}
], rest}
end
msg_updated = struct(msg, field)
parse_key_value(rest, msg_updated)
end
)
[]
)
(
@spec json_decode(iodata(), keyword()) :: {:ok, struct()} | {:error, any()}
def json_decode(input, opts \\ []) do
try do
{:ok, json_decode!(input, opts)}
rescue
e in Protox.JsonDecodingError -> {:error, e}
end
end
@spec json_decode!(iodata(), keyword()) :: struct() | no_return()
def json_decode!(input, opts \\ []) do
{json_library_wrapper, json_library} = Protox.JsonLibrary.get_library(opts, :decode)
Protox.JsonDecode.decode!(
input,
Soulless.Game.Lq.OptionalOperation,
&json_library_wrapper.decode!(json_library, &1)
)
end
@spec json_encode(struct(), keyword()) :: {:ok, iodata()} | {:error, any()}
def json_encode(msg, opts \\ []) do
try do
{:ok, json_encode!(msg, opts)}
rescue
e in Protox.JsonEncodingError -> {:error, e}
end
end
@spec json_encode!(struct(), keyword()) :: iodata() | no_return()
def json_encode!(msg, opts \\ []) do
{json_library_wrapper, json_library} = Protox.JsonLibrary.get_library(opts, :encode)
Protox.JsonEncode.encode!(msg, &json_library_wrapper.encode!(json_library, &1))
end
)
(
@deprecated "Use fields_defs()/0 instead"
@spec defs() :: %{
required(non_neg_integer) => {atom, Protox.Types.kind(), Protox.Types.type()}
}
def defs() do
%{
1 => {:type, {:scalar, 0}, :uint32},
2 => {:combination, :unpacked, :string},
3 => {:change_tiles, :unpacked, :string},
4 => {:change_tile_states, :packed, :int32},
5 => {:gap_type, {:scalar, 0}, :uint32}
}
end
@deprecated "Use fields_defs()/0 instead"
@spec defs_by_name() :: %{
required(atom) => {non_neg_integer, Protox.Types.kind(), Protox.Types.type()}
}
def defs_by_name() do
%{
change_tile_states: {4, :packed, :int32},
change_tiles: {3, :unpacked, :string},
combination: {2, :unpacked, :string},
gap_type: {5, {:scalar, 0}, :uint32},
type: {1, {:scalar, 0}, :uint32}
}
end
)
(
@spec fields_defs() :: list(Protox.Field.t())
def fields_defs() do
[
%{
__struct__: Protox.Field,
json_name: "type",
kind: {:scalar, 0},
label: :optional,
name: :type,
tag: 1,
type: :uint32
},
%{
__struct__: Protox.Field,
json_name: "combination",
kind: :unpacked,
label: :repeated,
name: :combination,
tag: 2,
type: :string
},
%{
__struct__: Protox.Field,
json_name: "changeTiles",
kind: :unpacked,
label: :repeated,
name: :change_tiles,
tag: 3,
type: :string
},
%{
__struct__: Protox.Field,
json_name: "changeTileStates",
kind: :packed,
label: :repeated,
name: :change_tile_states,
tag: 4,
type: :int32
},
%{
__struct__: Protox.Field,
json_name: "gapType",
kind: {:scalar, 0},
label: :optional,
name: :gap_type,
tag: 5,
type: :uint32
}
]
end
[
@spec(field_def(atom) :: {:ok, Protox.Field.t()} | {:error, :no_such_field}),
(
def field_def(:type) do
{:ok,
%{
__struct__: Protox.Field,
json_name: "type",
kind: {:scalar, 0},
label: :optional,
name: :type,
tag: 1,
type: :uint32
}}
end
def field_def("type") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "type",
kind: {:scalar, 0},
label: :optional,
name: :type,
tag: 1,
type: :uint32
}}
end
[]
),
(
def field_def(:combination) do
{:ok,
%{
__struct__: Protox.Field,
json_name: "combination",
kind: :unpacked,
label: :repeated,
name: :combination,
tag: 2,
type: :string
}}
end
def field_def("combination") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "combination",
kind: :unpacked,
label: :repeated,
name: :combination,
tag: 2,
type: :string
}}
end
[]
),
(
def field_def(:change_tiles) do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTiles",
kind: :unpacked,
label: :repeated,
name: :change_tiles,
tag: 3,
type: :string
}}
end
def field_def("changeTiles") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTiles",
kind: :unpacked,
label: :repeated,
name: :change_tiles,
tag: 3,
type: :string
}}
end
def field_def("change_tiles") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTiles",
kind: :unpacked,
label: :repeated,
name: :change_tiles,
tag: 3,
type: :string
}}
end
),
(
def field_def(:change_tile_states) do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTileStates",
kind: :packed,
label: :repeated,
name: :change_tile_states,
tag: 4,
type: :int32
}}
end
def field_def("changeTileStates") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTileStates",
kind: :packed,
label: :repeated,
name: :change_tile_states,
tag: 4,
type: :int32
}}
end
def field_def("change_tile_states") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "changeTileStates",
kind: :packed,
label: :repeated,
name: :change_tile_states,
tag: 4,
type: :int32
}}
end
),
(
def field_def(:gap_type) do
{:ok,
%{
__struct__: Protox.Field,
json_name: "gapType",
kind: {:scalar, 0},
label: :optional,
name: :gap_type,
tag: 5,
type: :uint32
}}
end
def field_def("gapType") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "gapType",
kind: {:scalar, 0},
label: :optional,
name: :gap_type,
tag: 5,
type: :uint32
}}
end
def field_def("gap_type") do
{:ok,
%{
__struct__: Protox.Field,
json_name: "gapType",
kind: {:scalar, 0},
label: :optional,
name: :gap_type,
tag: 5,
type: :uint32
}}
end
),
def field_def(_) do
{:error, :no_such_field}
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, [{unknown_fields_name(), []}])
end
)
(
@spec required_fields() :: []
def required_fields() do
[]
end
)
(
@spec syntax() :: atom()
def syntax() do
:proto3
end
)
[
@spec(default(atom) :: {:ok, boolean | integer | String.t() | float} | {:error, atom}),
def default(:type) do
{:ok, 0}
end,
def default(:combination) do
{:error, :no_default_value}
end,
def default(:change_tiles) do
{:error, :no_default_value}
end,
def default(:change_tile_states) do
{:error, :no_default_value}
end,
def default(:gap_type) do
{:ok, 0}
end,
def default(_) do
{:error, :no_such_field}
end
]
end