-- Code generated by protoc-gen-tarantool. DO NOT EDIT. -- source: c_repeated.proto -- syntax: proto3 -- package: c_repeated local pb = require("pb") local wire = pb.wire local string_byte = string.byte local utf8_len = require('utf8').len local band = bit.band local rshift = bit.rshift local CHARS = wire.CHARS local table_new = require('table.new') local ffi = require('ffi') local INT64 = ffi.typeof('int64_t') local UINT64 = ffi.typeof('uint64_t') local M = {} M.options = {go_package = "tarantoolpb_synthetic/c_repeated"} -- Pre-declare message descriptors so cross-references resolve. M.Inner_descriptor = {name = "c_repeated.Inner"} M.Holder_descriptor = {name = "c_repeated.Holder"} -- Message: c_repeated.Inner M.Inner_descriptor.fields = { {name="v", id=1, kind='scalar', proto_type="int32"}, {name="s", id=2, kind='scalar', proto_type="string"}, } pb.finalize_message(M.Inner_descriptor) M.Inner_fields = pb.field_names({ v = "v", s = "s", }) -- Message: c_repeated.Holder M.Holder_descriptor.fields = { {name="packed_int32", id=1, kind='scalar', proto_type="int32", repeated=true, packed=true}, {name="packed_int64", id=2, kind='scalar', proto_type="int64", repeated=true, packed=true}, {name="packed_sint32", id=3, kind='scalar', proto_type="sint32", repeated=true, packed=true}, {name="packed_uint32", id=4, kind='scalar', proto_type="uint32", repeated=true, packed=true}, {name="packed_fixed32", id=5, kind='scalar', proto_type="fixed32", repeated=true, packed=true}, {name="packed_fixed64", id=6, kind='scalar', proto_type="fixed64", repeated=true, packed=true}, {name="packed_double", id=7, kind='scalar', proto_type="double", repeated=true, packed=true}, {name="packed_float", id=8, kind='scalar', proto_type="float", repeated=true, packed=true}, {name="packed_bool", id=9, kind='scalar', proto_type="bool", repeated=true, packed=true}, {name="unpacked_int32", id=20, kind='scalar', proto_type="int32", repeated=true, packed=false, options={packed = false}}, {name="unpacked_fixed64", id=21, kind='scalar', proto_type="fixed64", repeated=true, packed=false, options={packed = false}}, {name="unpacked_sint32", id=22, kind='scalar', proto_type="sint32", repeated=true, packed=false, options={packed = false}}, {name="strings", id=30, kind='scalar', proto_type="string", repeated=true}, {name="blobs", id=31, kind='scalar', proto_type="bytes", repeated=true}, {name="messages", id=40, kind='message', message=M.Inner_descriptor, repeated=true}, } pb.finalize_message(M.Holder_descriptor) M.Holder_fields = pb.field_names({ packed_int32 = "packed_int32", packed_int64 = "packed_int64", packed_sint32 = "packed_sint32", packed_uint32 = "packed_uint32", packed_fixed32 = "packed_fixed32", packed_fixed64 = "packed_fixed64", packed_double = "packed_double", packed_float = "packed_float", packed_bool = "packed_bool", unpacked_int32 = "unpacked_int32", unpacked_fixed64 = "unpacked_fixed64", unpacked_sint32 = "unpacked_sint32", strings = "strings", blobs = "blobs", messages = "messages", }) -- EmmyLua / lua-language-server type annotations. -- These are comments — no runtime effect. They give editors -- autocomplete and type-checking for the generated wrappers. ---@class c_repeated.Inner ---@field v integer ---@field s string ---@class c_repeated.Holder ---@field packed_int32 integer[] @ Packed scalars (proto3 default). One per encoder branch. ---@field packed_int64 integer[] ---@field packed_sint32 integer[] ---@field packed_uint32 integer[] ---@field packed_fixed32 integer[] ---@field packed_fixed64 integer[] ---@field packed_double number[] ---@field packed_float number[] ---@field packed_bool boolean[] ---@field unpacked_int32 integer[] @ Explicit unpacked — emits one tag per element. ---@field unpacked_fixed64 integer[] ---@field unpacked_sint32 integer[] ---@field strings string[] @ Length-delimited element kinds — never packable. ---@field blobs string[] ---@field messages c_repeated.Inner[] @ Repeated sub-message — per-element tag + length-prefix + body. ---@param t? c_repeated.Inner ---@return c_repeated.Inner function M.Inner_new(t) return t or {} end ---@param t c_repeated.Inner ---@return string function M.Inner_encode(t) return pb.encode(M.Inner_descriptor, t) end ---@param b string ---@return c_repeated.Inner function M.Inner_decode(b) return pb.decode(M.Inner_descriptor, b) end function M.Inner_decode_unsafe(b) return pb.decode_unsafe(M.Inner_descriptor, b) end ---@param b string ---@return pb.MessageView function M.Inner_decode_lazy(b) return pb.decode_lazy(M.Inner_descriptor, b) end ---@param t c_repeated.Inner ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.Inner_text(t, opts) return pb.text.encode(M.Inner_descriptor, t, opts) end ---@param t? c_repeated.Holder ---@return c_repeated.Holder function M.Holder_new(t) return t or {} end ---@param t c_repeated.Holder ---@return string function M.Holder_encode(t) return pb.encode(M.Holder_descriptor, t) end ---@param b string ---@return c_repeated.Holder function M.Holder_decode(b) return pb.decode(M.Holder_descriptor, b) end function M.Holder_decode_unsafe(b) return pb.decode_unsafe(M.Holder_descriptor, b) end ---@param b string ---@return pb.MessageView function M.Holder_decode_lazy(b) return pb.decode_lazy(M.Holder_descriptor, b) end ---@param t c_repeated.Holder ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.Holder_text(t, opts) return pb.text.encode(M.Holder_descriptor, t, opts) end return M