%% -*- coding: utf-8 -*- %% Automatically generated, do not edit %% Generated by gpb_compile version 3.26.5 -module(kpl_agg_pb). -export([encode_msg/1, encode_msg/2]). -export([decode_msg/2, decode_msg/3]). -export([merge_msgs/2, merge_msgs/3]). -export([verify_msg/1, verify_msg/2]). -export([get_msg_defs/0]). -export([get_msg_names/0]). -export([get_enum_names/0]). -export([find_msg_def/1, fetch_msg_def/1]). -export([find_enum_def/1, fetch_enum_def/1]). -export([enum_symbol_by_value/2, enum_value_by_symbol/2]). -export([get_service_names/0]). -export([get_service_def/1]). -export([get_rpc_names/1]). -export([find_rpc_def/2, fetch_rpc_def/2]). -export([get_package_name/0]). -export([gpb_version_as_string/0, gpb_version_as_list/0]). -include("kpl_agg_pb.hrl"). -include("gpb.hrl"). %% enumerated types -export_type([]). %% message types -type 'Tag'() :: #'Tag'{}. -type 'Record'() :: #'Record'{}. -type 'AggregatedRecord'() :: #'AggregatedRecord'{}. -export_type(['Tag'/0, 'Record'/0, 'AggregatedRecord'/0]). -spec encode_msg(_) -> binary(). encode_msg(Msg) -> encode_msg(Msg, []). -spec encode_msg(_, list()) -> binary(). encode_msg(Msg, Opts) -> case proplists:get_bool(verify, Opts) of true -> verify_msg(Msg, Opts); false -> ok end, TrUserData = proplists:get_value(user_data, Opts), case Msg of #'Tag'{} -> e_msg_Tag(Msg, TrUserData); #'Record'{} -> e_msg_Record(Msg, TrUserData); #'AggregatedRecord'{} -> e_msg_AggregatedRecord(Msg, TrUserData) end. e_msg_Tag(Msg, TrUserData) -> e_msg_Tag(Msg, <<>>, TrUserData). e_msg_Tag(#'Tag'{key = F1, value = F2}, Bin, TrUserData) -> B1 = begin TrF1 = id(F1, TrUserData), e_type_string(TrF1, <>) end, if F2 == undefined -> B1; true -> begin TrF2 = id(F2, TrUserData), e_type_string(TrF2, <>) end end. e_msg_Record(Msg, TrUserData) -> e_msg_Record(Msg, <<>>, TrUserData). e_msg_Record(#'Record'{partition_key_index = F1, explicit_hash_key_index = F2, data = F3, tags = F4}, Bin, TrUserData) -> B1 = begin TrF1 = id(F1, TrUserData), e_varint(TrF1, <>) end, B2 = if F2 == undefined -> B1; true -> begin TrF2 = id(F2, TrUserData), e_varint(TrF2, <>) end end, B3 = begin TrF3 = id(F3, TrUserData), e_type_bytes(TrF3, <>) end, begin TrF4 = id(F4, TrUserData), if TrF4 == [] -> B3; true -> e_field_Record_tags(TrF4, B3, TrUserData) end end. e_msg_AggregatedRecord(Msg, TrUserData) -> e_msg_AggregatedRecord(Msg, <<>>, TrUserData). e_msg_AggregatedRecord(#'AggregatedRecord'{partition_key_table = F1, explicit_hash_key_table = F2, records = F3}, Bin, TrUserData) -> B1 = begin TrF1 = id(F1, TrUserData), if TrF1 == [] -> Bin; true -> e_field_AggregatedRecord_partition_key_table(TrF1, Bin, TrUserData) end end, B2 = begin TrF2 = id(F2, TrUserData), if TrF2 == [] -> B1; true -> e_field_AggregatedRecord_explicit_hash_key_table(TrF2, B1, TrUserData) end end, begin TrF3 = id(F3, TrUserData), if TrF3 == [] -> B2; true -> e_field_AggregatedRecord_records(TrF3, B2, TrUserData) end end. e_mfield_Record_tags(Msg, Bin, TrUserData) -> SubBin = e_msg_Tag(Msg, <<>>, TrUserData), Bin2 = e_varint(byte_size(SubBin), Bin), <>. e_field_Record_tags([Elem | Rest], Bin, TrUserData) -> Bin2 = <>, Bin3 = e_mfield_Record_tags(id(Elem, TrUserData), Bin2, TrUserData), e_field_Record_tags(Rest, Bin3, TrUserData); e_field_Record_tags([], Bin, _TrUserData) -> Bin. e_field_AggregatedRecord_partition_key_table([Elem | Rest], Bin, TrUserData) -> Bin2 = <>, Bin3 = e_type_string(id(Elem, TrUserData), Bin2), e_field_AggregatedRecord_partition_key_table(Rest, Bin3, TrUserData); e_field_AggregatedRecord_partition_key_table([], Bin, _TrUserData) -> Bin. e_field_AggregatedRecord_explicit_hash_key_table([Elem | Rest], Bin, TrUserData) -> Bin2 = <>, Bin3 = e_type_string(id(Elem, TrUserData), Bin2), e_field_AggregatedRecord_explicit_hash_key_table(Rest, Bin3, TrUserData); e_field_AggregatedRecord_explicit_hash_key_table([], Bin, _TrUserData) -> Bin. e_mfield_AggregatedRecord_records(Msg, Bin, TrUserData) -> SubBin = e_msg_Record(Msg, <<>>, TrUserData), Bin2 = e_varint(byte_size(SubBin), Bin), <>. e_field_AggregatedRecord_records([Elem | Rest], Bin, TrUserData) -> Bin2 = <>, Bin3 = e_mfield_AggregatedRecord_records(id(Elem, TrUserData), Bin2, TrUserData), e_field_AggregatedRecord_records(Rest, Bin3, TrUserData); e_field_AggregatedRecord_records([], Bin, _TrUserData) -> Bin. e_type_string(S, Bin) -> Utf8 = unicode:characters_to_binary(S), Bin2 = e_varint(byte_size(Utf8), Bin), <>. e_type_bytes(Bytes, Bin) when is_binary(Bytes) -> Bin2 = e_varint(byte_size(Bytes), Bin), <>; e_type_bytes(Bytes, Bin) when is_list(Bytes) -> BytesBin = iolist_to_binary(Bytes), Bin2 = e_varint(byte_size(BytesBin), Bin), <>. e_varint(N, Bin) when N =< 127 -> <>; e_varint(N, Bin) -> Bin2 = <>, e_varint(N bsr 7, Bin2). decode_msg(Bin, MsgName) when is_binary(Bin) -> decode_msg(Bin, MsgName, []). decode_msg(Bin, MsgName, Opts) when is_binary(Bin) -> TrUserData = proplists:get_value(user_data, Opts), case MsgName of 'Tag' -> d_msg_Tag(Bin, TrUserData); 'Record' -> d_msg_Record(Bin, TrUserData); 'AggregatedRecord' -> d_msg_AggregatedRecord(Bin, TrUserData) end. d_msg_Tag(Bin, TrUserData) -> dfp_read_field_def_Tag(Bin, 0, 0, id(undefined, TrUserData), id(undefined, TrUserData), TrUserData). dfp_read_field_def_Tag(<<10, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> d_field_Tag_key(Rest, Z1, Z2, F1, F2, TrUserData); dfp_read_field_def_Tag(<<18, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> d_field_Tag_value(Rest, Z1, Z2, F1, F2, TrUserData); dfp_read_field_def_Tag(<<>>, 0, 0, F1, F2, _) -> #'Tag'{key = F1, value = F2}; dfp_read_field_def_Tag(Other, Z1, Z2, F1, F2, TrUserData) -> dg_read_field_def_Tag(Other, Z1, Z2, F1, F2, TrUserData). dg_read_field_def_Tag(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) when N < 32 - 7 -> dg_read_field_def_Tag(Rest, N + 7, X bsl N + Acc, F1, F2, TrUserData); dg_read_field_def_Tag(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) -> Key = X bsl N + Acc, case Key of 10 -> d_field_Tag_key(Rest, 0, 0, F1, F2, TrUserData); 18 -> d_field_Tag_value(Rest, 0, 0, F1, F2, TrUserData); _ -> case Key band 7 of 0 -> skip_varint_Tag(Rest, 0, 0, F1, F2, TrUserData); 1 -> skip_64_Tag(Rest, 0, 0, F1, F2, TrUserData); 2 -> skip_length_delimited_Tag(Rest, 0, 0, F1, F2, TrUserData); 5 -> skip_32_Tag(Rest, 0, 0, F1, F2, TrUserData) end end; dg_read_field_def_Tag(<<>>, 0, 0, F1, F2, _) -> #'Tag'{key = F1, value = F2}. d_field_Tag_key(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) when N < 57 -> d_field_Tag_key(Rest, N + 7, X bsl N + Acc, F1, F2, TrUserData); d_field_Tag_key(<<0:1, X:7, Rest/binary>>, N, Acc, _, F2, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = binary:copy(Bytes), dfp_read_field_def_Tag(Rest2, 0, 0, NewFValue, F2, TrUserData). d_field_Tag_value(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) when N < 57 -> d_field_Tag_value(Rest, N + 7, X bsl N + Acc, F1, F2, TrUserData); d_field_Tag_value(<<0:1, X:7, Rest/binary>>, N, Acc, F1, _, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = binary:copy(Bytes), dfp_read_field_def_Tag(Rest2, 0, 0, F1, NewFValue, TrUserData). skip_varint_Tag(<<1:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> skip_varint_Tag(Rest, Z1, Z2, F1, F2, TrUserData); skip_varint_Tag(<<0:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> dfp_read_field_def_Tag(Rest, Z1, Z2, F1, F2, TrUserData). skip_length_delimited_Tag(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) when N < 57 -> skip_length_delimited_Tag(Rest, N + 7, X bsl N + Acc, F1, F2, TrUserData); skip_length_delimited_Tag(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, TrUserData) -> Length = X bsl N + Acc, <<_:Length/binary, Rest2/binary>> = Rest, dfp_read_field_def_Tag(Rest2, 0, 0, F1, F2, TrUserData). skip_32_Tag(<<_:32, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> dfp_read_field_def_Tag(Rest, Z1, Z2, F1, F2, TrUserData). skip_64_Tag(<<_:64, Rest/binary>>, Z1, Z2, F1, F2, TrUserData) -> dfp_read_field_def_Tag(Rest, Z1, Z2, F1, F2, TrUserData). d_msg_Record(Bin, TrUserData) -> dfp_read_field_def_Record(Bin, 0, 0, id(undefined, TrUserData), id(undefined, TrUserData), id(undefined, TrUserData), id([], TrUserData), TrUserData). dfp_read_field_def_Record(<<8, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> d_field_Record_partition_key_index(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData); dfp_read_field_def_Record(<<16, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> d_field_Record_explicit_hash_key_index(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData); dfp_read_field_def_Record(<<26, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> d_field_Record_data(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData); dfp_read_field_def_Record(<<34, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> d_field_Record_tags(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData); dfp_read_field_def_Record(<<>>, 0, 0, F1, F2, F3, F4, TrUserData) -> #'Record'{partition_key_index = F1, explicit_hash_key_index = F2, data = F3, tags = lists_reverse(F4, TrUserData)}; dfp_read_field_def_Record(Other, Z1, Z2, F1, F2, F3, F4, TrUserData) -> dg_read_field_def_Record(Other, Z1, Z2, F1, F2, F3, F4, TrUserData). dg_read_field_def_Record(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 32 - 7 -> dg_read_field_def_Record(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); dg_read_field_def_Record(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) -> Key = X bsl N + Acc, case Key of 8 -> d_field_Record_partition_key_index(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 16 -> d_field_Record_explicit_hash_key_index(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 26 -> d_field_Record_data(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 34 -> d_field_Record_tags(Rest, 0, 0, F1, F2, F3, F4, TrUserData); _ -> case Key band 7 of 0 -> skip_varint_Record(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 1 -> skip_64_Record(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 2 -> skip_length_delimited_Record(Rest, 0, 0, F1, F2, F3, F4, TrUserData); 5 -> skip_32_Record(Rest, 0, 0, F1, F2, F3, F4, TrUserData) end end; dg_read_field_def_Record(<<>>, 0, 0, F1, F2, F3, F4, TrUserData) -> #'Record'{partition_key_index = F1, explicit_hash_key_index = F2, data = F3, tags = lists_reverse(F4, TrUserData)}. d_field_Record_partition_key_index(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 57 -> d_field_Record_partition_key_index(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); d_field_Record_partition_key_index(<<0:1, X:7, Rest/binary>>, N, Acc, _, F2, F3, F4, TrUserData) -> NewFValue = X bsl N + Acc, dfp_read_field_def_Record(Rest, 0, 0, NewFValue, F2, F3, F4, TrUserData). d_field_Record_explicit_hash_key_index(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 57 -> d_field_Record_explicit_hash_key_index(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); d_field_Record_explicit_hash_key_index(<<0:1, X:7, Rest/binary>>, N, Acc, F1, _, F3, F4, TrUserData) -> NewFValue = X bsl N + Acc, dfp_read_field_def_Record(Rest, 0, 0, F1, NewFValue, F3, F4, TrUserData). d_field_Record_data(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 57 -> d_field_Record_data(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); d_field_Record_data(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, _, F4, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = binary:copy(Bytes), dfp_read_field_def_Record(Rest2, 0, 0, F1, F2, NewFValue, F4, TrUserData). d_field_Record_tags(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 57 -> d_field_Record_tags(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); d_field_Record_tags(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = id(d_msg_Tag(Bs, TrUserData), TrUserData), dfp_read_field_def_Record(Rest2, 0, 0, F1, F2, F3, cons(NewFValue, F4, TrUserData), TrUserData). skip_varint_Record(<<1:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> skip_varint_Record(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData); skip_varint_Record(<<0:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> dfp_read_field_def_Record(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData). skip_length_delimited_Record(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) when N < 57 -> skip_length_delimited_Record(Rest, N + 7, X bsl N + Acc, F1, F2, F3, F4, TrUserData); skip_length_delimited_Record(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, F4, TrUserData) -> Length = X bsl N + Acc, <<_:Length/binary, Rest2/binary>> = Rest, dfp_read_field_def_Record(Rest2, 0, 0, F1, F2, F3, F4, TrUserData). skip_32_Record(<<_:32, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> dfp_read_field_def_Record(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData). skip_64_Record(<<_:64, Rest/binary>>, Z1, Z2, F1, F2, F3, F4, TrUserData) -> dfp_read_field_def_Record(Rest, Z1, Z2, F1, F2, F3, F4, TrUserData). d_msg_AggregatedRecord(Bin, TrUserData) -> dfp_read_field_def_AggregatedRecord(Bin, 0, 0, id([], TrUserData), id([], TrUserData), id([], TrUserData), TrUserData). dfp_read_field_def_AggregatedRecord(<<10, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> d_field_AggregatedRecord_partition_key_table(Rest, Z1, Z2, F1, F2, F3, TrUserData); dfp_read_field_def_AggregatedRecord(<<18, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> d_field_AggregatedRecord_explicit_hash_key_table(Rest, Z1, Z2, F1, F2, F3, TrUserData); dfp_read_field_def_AggregatedRecord(<<26, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> d_field_AggregatedRecord_records(Rest, Z1, Z2, F1, F2, F3, TrUserData); dfp_read_field_def_AggregatedRecord(<<>>, 0, 0, F1, F2, F3, TrUserData) -> #'AggregatedRecord'{partition_key_table = lists_reverse(F1, TrUserData), explicit_hash_key_table = lists_reverse(F2, TrUserData), records = lists_reverse(F3, TrUserData)}; dfp_read_field_def_AggregatedRecord(Other, Z1, Z2, F1, F2, F3, TrUserData) -> dg_read_field_def_AggregatedRecord(Other, Z1, Z2, F1, F2, F3, TrUserData). dg_read_field_def_AggregatedRecord(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) when N < 32 - 7 -> dg_read_field_def_AggregatedRecord(Rest, N + 7, X bsl N + Acc, F1, F2, F3, TrUserData); dg_read_field_def_AggregatedRecord(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) -> Key = X bsl N + Acc, case Key of 10 -> d_field_AggregatedRecord_partition_key_table(Rest, 0, 0, F1, F2, F3, TrUserData); 18 -> d_field_AggregatedRecord_explicit_hash_key_table(Rest, 0, 0, F1, F2, F3, TrUserData); 26 -> d_field_AggregatedRecord_records(Rest, 0, 0, F1, F2, F3, TrUserData); _ -> case Key band 7 of 0 -> skip_varint_AggregatedRecord(Rest, 0, 0, F1, F2, F3, TrUserData); 1 -> skip_64_AggregatedRecord(Rest, 0, 0, F1, F2, F3, TrUserData); 2 -> skip_length_delimited_AggregatedRecord(Rest, 0, 0, F1, F2, F3, TrUserData); 5 -> skip_32_AggregatedRecord(Rest, 0, 0, F1, F2, F3, TrUserData) end end; dg_read_field_def_AggregatedRecord(<<>>, 0, 0, F1, F2, F3, TrUserData) -> #'AggregatedRecord'{partition_key_table = lists_reverse(F1, TrUserData), explicit_hash_key_table = lists_reverse(F2, TrUserData), records = lists_reverse(F3, TrUserData)}. d_field_AggregatedRecord_partition_key_table(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) when N < 57 -> d_field_AggregatedRecord_partition_key_table(Rest, N + 7, X bsl N + Acc, F1, F2, F3, TrUserData); d_field_AggregatedRecord_partition_key_table(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = binary:copy(Bytes), dfp_read_field_def_AggregatedRecord(Rest2, 0, 0, cons(NewFValue, F1, TrUserData), F2, F3, TrUserData). d_field_AggregatedRecord_explicit_hash_key_table(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) when N < 57 -> d_field_AggregatedRecord_explicit_hash_key_table(Rest, N + 7, X bsl N + Acc, F1, F2, F3, TrUserData); d_field_AggregatedRecord_explicit_hash_key_table(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = binary:copy(Bytes), dfp_read_field_def_AggregatedRecord(Rest2, 0, 0, F1, cons(NewFValue, F2, TrUserData), F3, TrUserData). d_field_AggregatedRecord_records(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) when N < 57 -> d_field_AggregatedRecord_records(Rest, N + 7, X bsl N + Acc, F1, F2, F3, TrUserData); d_field_AggregatedRecord_records(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) -> Len = X bsl N + Acc, <> = Rest, NewFValue = id(d_msg_Record(Bs, TrUserData), TrUserData), dfp_read_field_def_AggregatedRecord(Rest2, 0, 0, F1, F2, cons(NewFValue, F3, TrUserData), TrUserData). skip_varint_AggregatedRecord(<<1:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> skip_varint_AggregatedRecord(Rest, Z1, Z2, F1, F2, F3, TrUserData); skip_varint_AggregatedRecord(<<0:1, _:7, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> dfp_read_field_def_AggregatedRecord(Rest, Z1, Z2, F1, F2, F3, TrUserData). skip_length_delimited_AggregatedRecord(<<1:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) when N < 57 -> skip_length_delimited_AggregatedRecord(Rest, N + 7, X bsl N + Acc, F1, F2, F3, TrUserData); skip_length_delimited_AggregatedRecord(<<0:1, X:7, Rest/binary>>, N, Acc, F1, F2, F3, TrUserData) -> Length = X bsl N + Acc, <<_:Length/binary, Rest2/binary>> = Rest, dfp_read_field_def_AggregatedRecord(Rest2, 0, 0, F1, F2, F3, TrUserData). skip_32_AggregatedRecord(<<_:32, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> dfp_read_field_def_AggregatedRecord(Rest, Z1, Z2, F1, F2, F3, TrUserData). skip_64_AggregatedRecord(<<_:64, Rest/binary>>, Z1, Z2, F1, F2, F3, TrUserData) -> dfp_read_field_def_AggregatedRecord(Rest, Z1, Z2, F1, F2, F3, TrUserData). merge_msgs(Prev, New) -> merge_msgs(Prev, New, []). merge_msgs(Prev, New, Opts) when element(1, Prev) =:= element(1, New) -> TrUserData = proplists:get_value(user_data, Opts), case Prev of #'Tag'{} -> merge_msg_Tag(Prev, New, TrUserData); #'Record'{} -> merge_msg_Record(Prev, New, TrUserData); #'AggregatedRecord'{} -> merge_msg_AggregatedRecord(Prev, New, TrUserData) end. merge_msg_Tag(#'Tag'{value = PFvalue}, #'Tag'{key = NFkey, value = NFvalue}, _) -> #'Tag'{key = NFkey, value = if NFvalue =:= undefined -> PFvalue; true -> NFvalue end}. merge_msg_Record(#'Record'{explicit_hash_key_index = PFexplicit_hash_key_index, tags = PFtags}, #'Record'{partition_key_index = NFpartition_key_index, explicit_hash_key_index = NFexplicit_hash_key_index, data = NFdata, tags = NFtags}, TrUserData) -> #'Record'{partition_key_index = NFpartition_key_index, explicit_hash_key_index = if NFexplicit_hash_key_index =:= undefined -> PFexplicit_hash_key_index; true -> NFexplicit_hash_key_index end, data = NFdata, tags = 'erlang_++'(PFtags, NFtags, TrUserData)}. merge_msg_AggregatedRecord(#'AggregatedRecord'{partition_key_table = PFpartition_key_table, explicit_hash_key_table = PFexplicit_hash_key_table, records = PFrecords}, #'AggregatedRecord'{partition_key_table = NFpartition_key_table, explicit_hash_key_table = NFexplicit_hash_key_table, records = NFrecords}, TrUserData) -> #'AggregatedRecord'{partition_key_table = 'erlang_++'(PFpartition_key_table, NFpartition_key_table, TrUserData), explicit_hash_key_table = 'erlang_++'(PFexplicit_hash_key_table, NFexplicit_hash_key_table, TrUserData), records = 'erlang_++'(PFrecords, NFrecords, TrUserData)}. verify_msg(Msg) -> verify_msg(Msg, []). verify_msg(Msg, Opts) -> TrUserData = proplists:get_value(user_data, Opts), case Msg of #'Tag'{} -> v_msg_Tag(Msg, ['Tag'], TrUserData); #'Record'{} -> v_msg_Record(Msg, ['Record'], TrUserData); #'AggregatedRecord'{} -> v_msg_AggregatedRecord(Msg, ['AggregatedRecord'], TrUserData); _ -> mk_type_error(not_a_known_message, Msg, []) end. -dialyzer({nowarn_function,v_msg_Tag/3}). v_msg_Tag(#'Tag'{key = F1, value = F2}, Path, _) -> v_type_string(F1, [key | Path]), if F2 == undefined -> ok; true -> v_type_string(F2, [value | Path]) end, ok; v_msg_Tag(X, Path, _TrUserData) -> mk_type_error({expected_msg, 'Tag'}, X, Path). -dialyzer({nowarn_function,v_msg_Record/3}). v_msg_Record(#'Record'{partition_key_index = F1, explicit_hash_key_index = F2, data = F3, tags = F4}, Path, TrUserData) -> v_type_uint64(F1, [partition_key_index | Path]), if F2 == undefined -> ok; true -> v_type_uint64(F2, [explicit_hash_key_index | Path]) end, v_type_bytes(F3, [data | Path]), if is_list(F4) -> _ = [v_msg_Tag(Elem, [tags | Path], TrUserData) || Elem <- F4], ok; true -> mk_type_error({invalid_list_of, {msg, 'Tag'}}, F4, Path) end, ok; v_msg_Record(X, Path, _TrUserData) -> mk_type_error({expected_msg, 'Record'}, X, Path). -dialyzer({nowarn_function,v_msg_AggregatedRecord/3}). v_msg_AggregatedRecord(#'AggregatedRecord'{partition_key_table = F1, explicit_hash_key_table = F2, records = F3}, Path, TrUserData) -> if is_list(F1) -> _ = [v_type_string(Elem, [partition_key_table | Path]) || Elem <- F1], ok; true -> mk_type_error({invalid_list_of, string}, F1, Path) end, if is_list(F2) -> _ = [v_type_string(Elem, [explicit_hash_key_table | Path]) || Elem <- F2], ok; true -> mk_type_error({invalid_list_of, string}, F2, Path) end, if is_list(F3) -> _ = [v_msg_Record(Elem, [records | Path], TrUserData) || Elem <- F3], ok; true -> mk_type_error({invalid_list_of, {msg, 'Record'}}, F3, Path) end, ok. -dialyzer({nowarn_function,v_type_uint64/2}). v_type_uint64(N, _Path) when 0 =< N, N =< 18446744073709551615 -> ok; v_type_uint64(N, Path) when is_integer(N) -> mk_type_error({value_out_of_range, uint64, unsigned, 64}, N, Path); v_type_uint64(X, Path) -> mk_type_error({bad_integer, uint64, unsigned, 64}, X, Path). -dialyzer({nowarn_function,v_type_string/2}). v_type_string(S, Path) when is_list(S); is_binary(S) -> try unicode:characters_to_binary(S) of B when is_binary(B) -> ok; {error, _, _} -> mk_type_error(bad_unicode_string, S, Path) catch error:badarg -> mk_type_error(bad_unicode_string, S, Path) end; v_type_string(X, Path) -> mk_type_error(bad_unicode_string, X, Path). -dialyzer({nowarn_function,v_type_bytes/2}). v_type_bytes(B, _Path) when is_binary(B) -> ok; v_type_bytes(B, _Path) when is_list(B) -> ok; v_type_bytes(X, Path) -> mk_type_error(bad_binary_value, X, Path). -spec mk_type_error(_, _, list()) -> no_return(). mk_type_error(Error, ValueSeen, Path) -> Path2 = prettify_path(Path), erlang:error({gpb_type_error, {Error, [{value, ValueSeen}, {path, Path2}]}}). prettify_path([]) -> top_level; prettify_path(PathR) -> list_to_atom(string:join(lists:map(fun atom_to_list/1, lists:reverse(PathR)), ".")). -compile({inline,id/2}). id(X, _TrUserData) -> X. -compile({inline,cons/3}). cons(Elem, Acc, _TrUserData) -> [Elem | Acc]. -compile({inline,lists_reverse/2}). 'lists_reverse'(L, _TrUserData) -> lists:reverse(L). -compile({inline,'erlang_++'/3}). 'erlang_++'(A, B, _TrUserData) -> A ++ B. get_msg_defs() -> [{{msg, 'Tag'}, [#field{name = key, fnum = 1, rnum = 2, type = string, occurrence = required, opts = []}, #field{name = value, fnum = 2, rnum = 3, type = string, occurrence = optional, opts = []}]}, {{msg, 'Record'}, [#field{name = partition_key_index, fnum = 1, rnum = 2, type = uint64, occurrence = required, opts = []}, #field{name = explicit_hash_key_index, fnum = 2, rnum = 3, type = uint64, occurrence = optional, opts = []}, #field{name = data, fnum = 3, rnum = 4, type = bytes, occurrence = required, opts = []}, #field{name = tags, fnum = 4, rnum = 5, type = {msg, 'Tag'}, occurrence = repeated, opts = []}]}, {{msg, 'AggregatedRecord'}, [#field{name = partition_key_table, fnum = 1, rnum = 2, type = string, occurrence = repeated, opts = []}, #field{name = explicit_hash_key_table, fnum = 2, rnum = 3, type = string, occurrence = repeated, opts = []}, #field{name = records, fnum = 3, rnum = 4, type = {msg, 'Record'}, occurrence = repeated, opts = []}]}]. get_msg_names() -> ['Tag', 'Record', 'AggregatedRecord']. get_enum_names() -> []. fetch_msg_def(MsgName) -> case find_msg_def(MsgName) of Fs when is_list(Fs) -> Fs; error -> erlang:error({no_such_msg, MsgName}) end. -spec fetch_enum_def(_) -> no_return(). fetch_enum_def(EnumName) -> erlang:error({no_such_enum, EnumName}). find_msg_def('Tag') -> [#field{name = key, fnum = 1, rnum = 2, type = string, occurrence = required, opts = []}, #field{name = value, fnum = 2, rnum = 3, type = string, occurrence = optional, opts = []}]; find_msg_def('Record') -> [#field{name = partition_key_index, fnum = 1, rnum = 2, type = uint64, occurrence = required, opts = []}, #field{name = explicit_hash_key_index, fnum = 2, rnum = 3, type = uint64, occurrence = optional, opts = []}, #field{name = data, fnum = 3, rnum = 4, type = bytes, occurrence = required, opts = []}, #field{name = tags, fnum = 4, rnum = 5, type = {msg, 'Tag'}, occurrence = repeated, opts = []}]; find_msg_def('AggregatedRecord') -> [#field{name = partition_key_table, fnum = 1, rnum = 2, type = string, occurrence = repeated, opts = []}, #field{name = explicit_hash_key_table, fnum = 2, rnum = 3, type = string, occurrence = repeated, opts = []}, #field{name = records, fnum = 3, rnum = 4, type = {msg, 'Record'}, occurrence = repeated, opts = []}]; find_msg_def(_) -> error. find_enum_def(_) -> error. -spec enum_symbol_by_value(_, _) -> no_return(). enum_symbol_by_value(E, V) -> erlang:error({no_enum_defs, E, V}). -spec enum_value_by_symbol(_, _) -> no_return(). enum_value_by_symbol(E, V) -> erlang:error({no_enum_defs, E, V}). get_service_names() -> []. get_service_def(_) -> error. get_rpc_names(_) -> error. find_rpc_def(_, _) -> error. -spec fetch_rpc_def(_, _) -> no_return(). fetch_rpc_def(ServiceName, RpcName) -> erlang:error({no_such_rpc, ServiceName, RpcName}). get_package_name() -> undefined. gpb_version_as_string() -> "3.26.5". gpb_version_as_list() -> [3,26,5].