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📄 megaco_per_bin_drv_media_gateway_control_v2.erl

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'enc_ModemDescriptor_mpl_components'(T, ['enc_PropertyParm'(H) | Acc]).'dec_ModemDescriptor_mpl'(Bytes,_) ->{Num,Bytes1} = ?RT_PER:decode_length(Bytes,undefined),'dec_ModemDescriptor_mpl_components'(Num, Bytes1, telltype, []).'dec_ModemDescriptor_mpl_components'(0, Bytes, _, Acc) ->   {lists:reverse(Acc), Bytes};'dec_ModemDescriptor_mpl_components'(Num, Bytes, _, Acc) ->   {Term,Remain} = 'dec_PropertyParm'(Bytes,telltype),   'dec_ModemDescriptor_mpl_components'(Num-1, Remain, telltype, [Term|Acc]).'dec_ModemDescriptor'(Bytes,_) ->{Opt,Bytes1} = ?RT_PER:getoptionals2(Bytes,1), %% attribute number 1 with type SEQUENCE OF{Term1,Bytes2} = 'dec_ModemDescriptor_mtl'(Bytes1, telltype),%% attribute number 2 with type SEQUENCE OF{Term2,Bytes3} = 'dec_ModemDescriptor_mpl'(Bytes2, telltype),%%  attribute number 3 with type NonStandardData{Term3,Bytes4} = case Opt band (1 bsl 0) of_Opt1 when _Opt1 > 0 ->'dec_NonStandardData'(Bytes3,telltype);0 ->{asn1_NOVALUE,Bytes3}end,{{'ModemDescriptor',Term1,Term2,Term3},Bytes4}.'enc_RequestID'({'RequestID',Val}) ->'enc_RequestID'(Val);'enc_RequestID'(Val) ->  %%INTEGER with effective constraint: [{'ValueRange',{0,4294967295}}]  ?RT_PER:encode_integer([{'ValueRange',{0,4294967295}}],Val).'dec_RequestID'(Bytes,_) ->?RT_PER:decode_constrained_number(Bytes,{0,4294967295},4294967296).'enc_SigParameter'(Val) ->{Val1,Opt} = ?RT_PER:fixoptionals([4],1,Val),[?RT_PER:setext(false), Opt,%% attribute number 1 with type OCTET STRING  begin    [Tmpval1,Tmpval2] = element(2,Val1),    [[10,8,Tmpval1],[10,8,Tmpval2]]  end,%% attribute number 2 with type Externaltypereference793megaco_per_bin_drv_media_gateway_control_v2Value'enc_Value'(element(3,Val1)),case element(4,Val1) ofasn1_NOVALUE -> [];Tmpval3 ->%% attribute number 3 with type CHOICE'enc_SigParameter_extraInfo'(Tmpval3)end].'enc_SigParameter_extraInfo'({'SigParameter_extraInfo',Val}) ->'enc_SigParameter_extraInfo'(Val);'enc_SigParameter_extraInfo'(Val) ->[?RT_PER:set_choice(element(1,Val),[relation,range,sublist], 3),case element(1,Val) ofrelation ->case (case element(2,Val) of {_,_}->element(2,element(2,Val));_->element(2,Val) end) of'greaterThan' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 0)];'smallerThan' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 1)];'unequalTo' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 2)];{asn1_enum,EnumV} when integer(EnumV), EnumV > 2 -> [1,?RT_PER:encode_small_number(EnumV)];EnumVal -> exit({error,{asn1, {enumerated_not_in_range, EnumVal}}})end;range ->case element(2,Val) of  true -> [1];  false -> [0];  _ -> exit({error,{asn1,{encode_boolean,element(2,Val)}}})end;sublist ->case element(2,Val) of  true -> [1];  false -> [0];  _ -> exit({error,{asn1,{encode_boolean,element(2,Val)}}})endend].'dec_SigParameter_extraInfo'(Bytes,_) ->{Choice,Bytes1} = ?RT_PER:getchoice(Bytes,3, 0),{Cname,{Val,NewBytes}} = case Choice of0 -> {relation,?RT_PER:decode_enumerated(Bytes1,[{'ValueRange',{0,2}}],{{greaterThan,smallerThan,unequalTo},{}})};1 -> {range,?RT_PER:decode_boolean(Bytes1)};2 -> {sublist,?RT_PER:decode_boolean(Bytes1)}end,{{Cname,Val},NewBytes}.'dec_SigParameter'(Bytes,_) ->{Ext,Bytes1} = ?RT_PER:getext(Bytes),{Opt,Bytes2} = ?RT_PER:getoptionals2(Bytes1,1), %% attribute number 1 with type OCTET STRING{Term1,Bytes3} =   ?RT_PER:decode_octet_string(Bytes2,2,false),%%  attribute number 2 with type Value{Term2,Bytes4} = 'dec_Value'(Bytes3,telltype),%% attribute number 3 with type CHOICE{Term3,Bytes5} = case Opt band (1 bsl 0) of_Opt1 when _Opt1 > 0 ->'dec_SigParameter_extraInfo'(Bytes4, telltype);0 ->{asn1_NOVALUE,Bytes4}end,{Extensions,Bytes6} = ?RT_PER:getextension(Ext,Bytes5),Bytes7= ?RT_PER:skipextensions(Bytes6,1,Extensions),{{'SigParameter',Term1,Term2,Term3},Bytes7}.'enc_NotifyCompletion'({'NotifyCompletion',Val}) ->'enc_NotifyCompletion'(Val);'enc_NotifyCompletion'(Val) ->?RT_PER:encode_bit_string(no,Val,[{onTimeOut,0},{onInterruptByEvent,1},{onInterruptByNewSignalDescr,2},{otherReason,3}]).'dec_NotifyCompletion'(Bytes,_) ->?RT_PER:decode_bit_string(Bytes,[],[{onTimeOut,0},{onInterruptByEvent,1},{onInterruptByNewSignalDescr,2},{otherReason,3}]).'enc_SignalName'({'SignalName',Val}) ->'enc_SignalName'(Val);'enc_SignalName'(Val) ->  begin    case length(Val) of      Tmpval1 when Tmpval1 == 4 -> [2,20,Tmpval1,Val];      _ -> exit({error,{value_out_of_bounds,Val}})    end  end.'dec_SignalName'(Bytes,_) ->  ?RT_PER:decode_octet_string(Bytes,4,false).'enc_SignalType'({'SignalType',Val}) ->'enc_SignalType'(Val);'enc_SignalType'(Val) ->case (case Val of {_,_}->element(2,Val);_->Val end) of'brief' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 0)];'onOff' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 1)];'timeOut' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 2)];{asn1_enum,EnumV} when integer(EnumV), EnumV > 2 -> [1,?RT_PER:encode_small_number(EnumV)];EnumVal -> exit({error,{asn1, {enumerated_not_in_range, EnumVal}}})end.'dec_SignalType'(Bytes,_) ->?RT_PER:decode_enumerated(Bytes,[{'ValueRange',{0,2}}],{{brief,onOff,timeOut},{}}).'enc_Signal'(Val) ->{Val1,Opt} = ?RT_PER:fixoptionals([3,4,5,6,7],5,Val),[?RT_PER:setext(false), Opt,%% attribute number 1 with type OCTET STRING  begin    case length(element(2,Val1)) of      Tmpval1 when Tmpval1 == 4 -> [2,20,Tmpval1,element(2,Val1)];      _ -> exit({error,{value_out_of_bounds,element(2,Val1)}})    end  end,case element(3,Val1) ofasn1_NOVALUE -> [];Tmpval2 ->%% attribute number 2 with type INTEGER  %%INTEGER with effective constraint: [{'ValueRange',{0,65535},65536,{octets,2}}]  begin  case Tmpval2 of    Tmpval3 when Tmpval3=<65535,Tmpval3>=0 ->      [20,2,<<(Tmpval3- 0):16>>];    Tmpval3 ->      exit({error,{value_out_of_bounds,Tmpval3}})  end  endend,case element(4,Val1) ofasn1_NOVALUE -> [];Tmpval4 ->%% attribute number 3 with type ENUMERATEDcase (case Tmpval4 of {_,_}->element(2,Tmpval4);_->Tmpval4 end) of'brief' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 0)];'onOff' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 1)];'timeOut' -> [0,?RT_PER:encode_integer([{'ValueRange',{0,2}}], 2)];{asn1_enum,EnumV} when integer(EnumV), EnumV > 2 -> [1,?RT_PER:encode_small_number(EnumV)];EnumVal -> exit({error,{asn1, {enumerated_not_in_range, EnumVal}}})endend,case element(5,Val1) ofasn1_NOVALUE -> [];Tmpval5 ->%% attribute number 4 with type INTEGER  %%INTEGER with effective constraint: [{'ValueRange',{0,65535},65536,{octets,2}}]  begin  case Tmpval5 of    Tmpval6 when Tmpval6=<65535,Tmpval6>=0 ->      [20,2,<<(Tmpval6- 0):16>>];    Tmpval6 ->      exit({error,{value_out_of_bounds,Tmpval6}})  end  endend,case element(6,Val1) ofasn1_NOVALUE -> [];Tmpval7 ->%% attribute number 5 with type BIT STRING?RT_PER:encode_bit_string(no,Tmpval7,[{onTimeOut,0},{onInterruptByEvent,1},{onInterruptByNewSignalDescr,2},{otherReason,3}])end,case element(7,Val1) ofasn1_NOVALUE -> [];Tmpval8 ->%% attribute number 6 with type BOOLEANcase Tmpval8 of  true -> [1];  false -> [0];  _ -> exit({error,{asn1,{encode_boolean,Tmpval8}}})endend,%% attribute number 7 with type SEQUENCE OF'enc_Signal_sigParList'(element(8,Val1))].'enc_Signal_sigParList'({'Signal_sigParList',Val}) ->'enc_Signal_sigParList'(Val);'enc_Signal_sigParList'(Val) ->[   ?RT_PER:encode_length(undefined,length(Val)),   'enc_Signal_sigParList_components'(Val, [])].'enc_Signal_sigParList_components'([], Acc) -> lists:reverse(Acc);'enc_Signal_sigParList_components'([H|T], Acc) ->'enc_Signal_sigParList_components'(T, ['enc_SigParameter'(H) | Acc]).'dec_Signal_sigParList'(Bytes,_) ->{Num,Bytes1} = ?RT_PER:decode_length(Bytes,undefined),'dec_Signal_sigParList_components'(Num, Bytes1, telltype, []).'dec_Signal_sigParList_components'(0, Bytes, _, Acc) ->   {lists:reverse(Acc), Bytes};'dec_Signal_sigParList_components'(Num, Bytes, _, Acc) ->   {Term,Remain} = 'dec_SigParameter'(Bytes,telltype),   'dec_Signal_sigParList_components'(Num-1, Remain, telltype, [Term|Acc]).'dec_Signal'(Bytes,_) ->{Ext,Bytes1} = ?RT_PER:getext(Bytes),{Opt,Bytes2} = ?RT_PER:getoptionals2(Bytes1,5), %% attribute number 1 with type OCTET STRING{Term1,Bytes3} =   ?RT_PER:decode_octet_string(Bytes2,4,false),%% attribute number 2 with type INTEGER{Term2,Bytes4} = case Opt band (1 bsl 4) of_Opt1 when _Opt1 > 0 ->  begin    {Tmpterm1,Tmpremain1}=?RT_PER:getoctets(Bytes3,2),    {Tmpterm1+0,Tmpremain1}  end;0 ->{asn1_NOVALUE,Bytes3}end,%% attribute number 3 with type ENUMERATED{Term3,Bytes5} = case Opt band (1 bsl 3) of_Opt2 when _Opt2 > 0 ->?RT_PER:decode_enumerated(Bytes4,[{'ValueRange',{0,2}}],{{brief,onOff,timeOut},{}});0 ->{asn1_NOVALUE,Bytes4}end,%% attribute number 4 with type INTEGER{Term4,Bytes6} = case Opt band (1 bsl 2) of_Opt3 when _Opt3 > 0 ->  begin    {Tmpterm2,Tmpremain2}=?RT_PER:getoctets(Bytes5,2),    {Tmpterm2+0,Tmpremain2}  end;0 ->{asn1_NOVALUE,Bytes5}end,%% attribute number 5 with type BIT STRING{Term5,Bytes7} = case Opt band (1 bsl 1) of_Opt4 when _Opt4 > 0 ->?RT_PER:decode_bit_string(Bytes6,[],[{onTimeOut,0},{onInterruptByEvent,1},{onInterruptByNewSignalDescr,2},{otherReason,3}]);0 ->{asn1_NOVALUE,Bytes6}end,%% attribute number 6 with type BOOLEAN{Term6,Bytes8} = case Opt band (1 bsl 0) of_Opt5 when _Opt5 > 0 ->?RT_PER:decode_boolean(Bytes7);0 ->{asn1_NOVALUE,Bytes7}end,%% attribute number 7 with type SEQUENCE OF{Term7,Bytes9} = 'dec_Signal_sigParList'(Bytes8, telltype),{Extensions,Bytes10} = ?RT_PER:getextension(Ext,Bytes9),Bytes11= ?RT_PER:skipextensions(Bytes10,1,Extensions),{{'Signal',Term1,Term2,Term3,Term4,Term5,Term6,Term7},Bytes11}.'enc_SeqSigList'(Val) ->Val1 = ?RT_PER:list_to_record('SeqSigList', Val),[%% attribute number 1 with type INTEGER  %%INTEGER with effective constraint: [{'ValueRange',{0,65535},65536,{octets,2}}]  begin  Tmpval1=element(2,Val1),  case Tmpval1 of    Tmpval2 when Tmpval2=<65535,Tmpval2>=0 ->      [20,2,<<(Tmpval2- 0):16>>];    Tmpval2 ->      exit({error,{value_out_of_bounds,Tmpval2}})  end  end,%% attribute number 2 with type SEQUENCE OF'enc_SeqSigList_signalList'(element(3,Val1))].'enc_SeqSigList_signalList'({'SeqSigList_signalList',Val}) ->'enc_SeqSigList_signalList'(Val);'enc_SeqSigList_signalList'(Val) ->[   ?RT_PER:encode_length(undefined,length(Val)),   'enc_SeqSigList_signalList_components'(Val, [])].'enc_SeqSigList_signalList_components'([], Acc) -> lists:reverse(Acc);'enc_SeqSigList_signalList_components'([H|T], Acc) ->'enc_SeqSigList_signalList_components'(T, ['enc_Signal'(H) | Acc]).'dec_SeqSigList_signalList'(Bytes,_) ->{Num,Bytes1} = ?RT_PER:decod

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