%% Generated by the Erlang ASN.1 BER_V2-compiler version, utilizing bit-syntax:4.0.1 %% Purpose: encoder and decoder to the types in mod XmppAddr -module('XmppAddr'). -compile(nowarn_unused_vars). -include("XmppAddr.hrl"). -asn1_info([{vsn,'4.0.1'}, {module,'XmppAddr'}, {options,[{i,"src"},{outdir,"src"},noobj,{i,"."},{i,"asn1"}]}]). -export([encoding_rule/0,bit_string_format/0, legacy_erlang_types/0]). -export(['dialyzer-suppressions'/1]). -export([ 'enc_XmppAddr'/2 ]). -export([ 'dec_XmppAddr'/2 ]). -export([ 'id-on-xmppAddr'/0 ]). -export([info/0]). -export([encode/2,decode/2]). encoding_rule() -> ber. bit_string_format() -> bitstring. legacy_erlang_types() -> false. encode(Type, Data) -> try iolist_to_binary(element(1, encode_disp(Type, Data))) of Bytes -> {ok,Bytes} catch Class:Exception when Class =:= error; Class =:= exit -> case Exception of {error,Reason}=Error -> Error; Reason -> {error,{asn1,Reason}} end end. decode(Type,Data) -> try decode_disp(Type, element(1, ber_decode_nif(Data))) of Result -> {ok,Result} catch Class:Exception when Class =:= error; Class =:= exit -> case Exception of {error,Reason}=Error -> Error; Reason -> {error,{asn1,Reason}} end end. encode_disp('XmppAddr',Data) -> 'enc_XmppAddr'(Data); encode_disp(Type,_Data) -> exit({error,{asn1,{undefined_type,Type}}}). decode_disp('XmppAddr',Data) -> 'dec_XmppAddr'(Data); decode_disp(Type,_Data) -> exit({error,{asn1,{undefined_type,Type}}}). info() -> case ?MODULE:module_info(attributes) of Attributes when is_list(Attributes) -> case lists:keyfind(asn1_info, 1, Attributes) of {_,Info} when is_list(Info) -> Info; _ -> [] end; _ -> [] end. %%================================ %% XmppAddr %%================================ 'enc_XmppAddr'(Val) -> 'enc_XmppAddr'(Val, [<<12>>]). 'enc_XmppAddr'(Val, TagIn) -> encode_UTF8_string(Val, TagIn). 'dec_XmppAddr'(Tlv) -> 'dec_XmppAddr'(Tlv, [12]). 'dec_XmppAddr'(Tlv, TagIn) -> decode_UTF8_string(Tlv, TagIn). 'id-on-xmppAddr'() -> {1,3,6,1,5,5,7,8,5}. %%% %%% Run-time functions. %%% 'dialyzer-suppressions'(Arg) -> ok. ber_decode_nif(B) -> asn1rt_nif:decode_ber_tlv(B). collect_parts(TlvList) -> collect_parts(TlvList, []). collect_parts([{_,L}|Rest], Acc) when is_list(L) -> collect_parts(Rest, [collect_parts(L)|Acc]); collect_parts([{3,<>}|Rest], _Acc) -> collect_parts_bit(Rest, [Bits], Unused); collect_parts([{_T,V}|Rest], Acc) -> collect_parts(Rest, [V|Acc]); collect_parts([], Acc) -> list_to_binary(lists:reverse(Acc)). collect_parts_bit([{3,<>}|Rest], Acc, Uacc) -> collect_parts_bit(Rest, [Bits|Acc], Unused + Uacc); collect_parts_bit([], Acc, Uacc) -> list_to_binary([Uacc|lists:reverse(Acc)]). decode_UTF8_string(Tlv, TagsIn) -> Val = match_tags(Tlv, TagsIn), case Val of [_|_] = PartList -> collect_parts(PartList); Bin -> Bin end. encode_UTF8_string(UTF8String, TagIn) when is_binary(UTF8String) -> encode_tags(TagIn, UTF8String, byte_size(UTF8String)); encode_UTF8_string(UTF8String, TagIn) -> encode_tags(TagIn, UTF8String, length(UTF8String)). encode_length(L) when L =< 127 -> {[L],1}; encode_length(L) -> Oct = minimum_octets(L), Len = length(Oct), if Len =< 126 -> {[128 bor Len|Oct],Len + 1}; true -> exit({error,{asn1,too_long_length_oct,Len}}) end. encode_tags([Tag|Trest], BytesSoFar, LenSoFar) -> {Bytes2,L2} = encode_length(LenSoFar), encode_tags(Trest, [Tag,Bytes2|BytesSoFar], LenSoFar + byte_size(Tag) + L2); encode_tags([], BytesSoFar, LenSoFar) -> {BytesSoFar,LenSoFar}. match_tags({T,V}, [T]) -> V; match_tags({T,V}, [T|Tt]) -> match_tags(V, Tt); match_tags([{T,V}], [T|Tt]) -> match_tags(V, Tt); match_tags([{T,_V}|_] = Vlist, [T]) -> Vlist; match_tags(Tlv, []) -> Tlv; match_tags({Tag,_V} = Tlv, [T|_Tt]) -> exit({error,{asn1,{wrong_tag,{{expected,T},{got,Tag,Tlv}}}}}). minimum_octets(0, Acc) -> Acc; minimum_octets(Val, Acc) -> minimum_octets(Val bsr 8, [Val band 255|Acc]). minimum_octets(Val) -> minimum_octets(Val, []).