%% Generated by the Erlang ASN.1 BER compiler. Version: 5.1 %% Purpose: Encoding and decoding of the types in PKIXAlgs-2009. -module('PKIXAlgs-2009'). -compile(nowarn_unused_vars). -dialyzer(no_improper_lists). -dialyzer(no_match). -include("PKIXAlgs-2009.hrl"). -asn1_info([{vsn,'5.1'}, {module,'PKIXAlgs-2009'}, {options,[warnings,ber,errors, {cwd,"/Users/maxim/depot/synrc/ca/priv/csr"}, {outdir,"/Users/maxim/depot/synrc/ca/priv/csr"}, {i,"."}, {i,"/Users/maxim/depot/synrc/ca/priv/csr"}]}]). -export([encoding_rule/0,maps/0,bit_string_format/0, legacy_erlang_types/0]). -export(['dialyzer-suppressions'/1]). -export([ enc_RSAPublicKey/2, 'enc_DSA-Params'/2, enc_DSAPublicKey/2, enc_DomainParameters/2, enc_ValidationParams/2, enc_DiffieHellmanPublicNumber/2, enc_DHPublicKey/2, 'enc_KEA-Params-Id'/2, enc_ECPoint/2, enc_ECParameters/2, 'enc_DSA-Sig-Value'/2, 'enc_ECDSA-Sig-Value'/2 ]). -export([ dec_RSAPublicKey/2, 'dec_DSA-Params'/2, dec_DSAPublicKey/2, dec_DomainParameters/2, dec_ValidationParams/2, dec_DiffieHellmanPublicNumber/2, dec_DHPublicKey/2, 'dec_KEA-Params-Id'/2, dec_ECPoint/2, dec_ECParameters/2, 'dec_DSA-Sig-Value'/2, 'dec_ECDSA-Sig-Value'/2 ]). -export([ 'enc_pk-rsa'/3, 'enc_pk-dsa'/3, 'enc_pk-dh'/3, 'enc_pk-kea'/3, 'enc_pk-ec'/3, 'enc_pk-ecDH'/3, 'enc_pk-ecMQV'/3, 'enc_sa-rsaWithMD2'/3, 'enc_sa-rsaWithMD5'/3, 'enc_sa-rsaWithSHA1'/3, 'enc_sa-dsaWithSHA1'/3, 'enc_sa-dsaWithSHA224'/3, 'enc_sa-dsaWithSHA256'/3, 'enc_sa-ecdsaWithSHA1'/3, 'enc_sa-ecdsaWithSHA224'/3, 'enc_sa-ecdsaWithSHA256'/3, 'enc_sa-ecdsaWithSHA384'/3, 'enc_sa-ecdsaWithSHA512'/3, 'enc_mda-md2'/3, 'enc_mda-md5'/3, 'enc_mda-sha1'/3, 'enc_sa-ecdsaWithSHA512_smimeCaps'/3, 'enc_sa-ecdsaWithSHA384_smimeCaps'/3, 'enc_sa-ecdsaWithSHA256_smimeCaps'/3, 'enc_sa-ecdsaWithSHA224_smimeCaps'/3, 'enc_sa-dsaWithSHA1_smimeCaps'/3, 'enc_sa-rsaWithSHA1_smimeCaps'/3, 'enc_sa-dsaWithSHA256_smimeCaps'/3, 'enc_sa-dsaWithSHA224_smimeCaps'/3, 'enc_sa-ecdsaWithSHA1_smimeCaps'/3, 'enc_sa-rsaWithMD5_smimeCaps'/3, 'enc_sa-rsaWithMD2_smimeCaps'/3 ]). -export([ 'dec_pk-rsa'/3, 'dec_pk-dsa'/3, 'dec_pk-dh'/3, 'dec_pk-kea'/3, 'dec_pk-ec'/3, 'dec_pk-ecDH'/3, 'dec_pk-ecMQV'/3, 'dec_sa-rsaWithMD2'/3, 'dec_sa-rsaWithMD5'/3, 'dec_sa-rsaWithSHA1'/3, 'dec_sa-dsaWithSHA1'/3, 'dec_sa-dsaWithSHA224'/3, 'dec_sa-dsaWithSHA256'/3, 'dec_sa-ecdsaWithSHA1'/3, 'dec_sa-ecdsaWithSHA224'/3, 'dec_sa-ecdsaWithSHA256'/3, 'dec_sa-ecdsaWithSHA384'/3, 'dec_sa-ecdsaWithSHA512'/3, 'dec_mda-md2'/3, 'dec_mda-md5'/3, 'dec_mda-sha1'/3, 'dec_sa-ecdsaWithSHA512_smimeCaps'/3, 'dec_sa-ecdsaWithSHA384_smimeCaps'/3, 'dec_sa-ecdsaWithSHA256_smimeCaps'/3, 'dec_sa-ecdsaWithSHA224_smimeCaps'/3, 'dec_sa-dsaWithSHA1_smimeCaps'/3, 'dec_sa-rsaWithSHA1_smimeCaps'/3, 'dec_sa-dsaWithSHA256_smimeCaps'/3, 'dec_sa-dsaWithSHA224_smimeCaps'/3, 'dec_sa-ecdsaWithSHA1_smimeCaps'/3, 'dec_sa-rsaWithMD5_smimeCaps'/3, 'dec_sa-rsaWithMD2_smimeCaps'/3 ]). -export([ getenc_PublicKeys/1, getenc_SignatureAlgs/1, getenc_SMimeCaps/1, getenc_NamedCurve/1, getenc_HashAlgs/1 ]). -export([ getdec_PublicKeys/1, getdec_SignatureAlgs/1, getdec_SMimeCaps/1, getdec_NamedCurve/1, getdec_HashAlgs/1 ]). -export([ rsaEncryption/0, 'id-dsa'/0, dhpublicnumber/0, 'id-keyExchangeAlgorithm'/0, 'id-ecPublicKey'/0, 'id-ecDH'/0, 'id-ecMQV'/0, secp192r1/0, sect163k1/0, sect163r2/0, secp224r1/0, sect233k1/0, sect233r1/0, secp256r1/0, sect283k1/0, sect283r1/0, secp384r1/0, sect409k1/0, sect409r1/0, secp521r1/0, sect571k1/0, sect571r1/0, md2WithRSAEncryption/0, md5WithRSAEncryption/0, sha1WithRSAEncryption/0, 'dsa-with-sha1'/0, 'dsa-with-sha224'/0, 'dsa-with-sha256'/0, 'ecdsa-with-SHA1'/0, 'ecdsa-with-SHA224'/0, 'ecdsa-with-SHA256'/0, 'ecdsa-with-SHA384'/0, 'ecdsa-with-SHA512'/0, 'id-md2'/0, 'id-md5'/0, 'id-sha1'/0 ]). -export([info/0]). -export([encode/2,decode/2]). encoding_rule() -> ber. maps() -> false. 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:Stk when Class =:= error; Class =:= exit -> case Exception of {error,{asn1,Reason}} -> {error,{asn1,{Reason,Stk}}}; Reason -> {error,{asn1,{Reason,Stk}}} end end. decode(Type, Data) -> try Result = decode_disp(Type, element(1, ber_decode_nif(Data))), {ok,Result} catch Class:Exception:Stk when Class =:= error; Class =:= exit -> case Exception of {error,{asn1,Reason}} -> {error,{asn1,{Reason,Stk}}}; Reason -> {error,{asn1,{Reason,Stk}}} end end. encode_disp('RSAPublicKey', Data) -> enc_RSAPublicKey(Data); encode_disp('DSA-Params', Data) -> 'enc_DSA-Params'(Data); encode_disp('DSAPublicKey', Data) -> enc_DSAPublicKey(Data); encode_disp('DomainParameters', Data) -> enc_DomainParameters(Data); encode_disp('ValidationParams', Data) -> enc_ValidationParams(Data); encode_disp('DiffieHellmanPublicNumber', Data) -> enc_DiffieHellmanPublicNumber(Data); encode_disp('DHPublicKey', Data) -> enc_DHPublicKey(Data); encode_disp('KEA-Params-Id', Data) -> 'enc_KEA-Params-Id'(Data); encode_disp('ECPoint', Data) -> enc_ECPoint(Data); encode_disp('ECParameters', Data) -> enc_ECParameters(Data); encode_disp('DSA-Sig-Value', Data) -> 'enc_DSA-Sig-Value'(Data); encode_disp('ECDSA-Sig-Value', Data) -> 'enc_ECDSA-Sig-Value'(Data); encode_disp(Type, _Data) -> exit({error,{asn1,{undefined_type,Type}}}). decode_disp('RSAPublicKey', Data) -> dec_RSAPublicKey(Data); decode_disp('DSA-Params', Data) -> 'dec_DSA-Params'(Data); decode_disp('DSAPublicKey', Data) -> dec_DSAPublicKey(Data); decode_disp('DomainParameters', Data) -> dec_DomainParameters(Data); decode_disp('ValidationParams', Data) -> dec_ValidationParams(Data); decode_disp('DiffieHellmanPublicNumber', Data) -> dec_DiffieHellmanPublicNumber(Data); decode_disp('DHPublicKey', Data) -> dec_DHPublicKey(Data); decode_disp('KEA-Params-Id', Data) -> 'dec_KEA-Params-Id'(Data); decode_disp('ECPoint', Data) -> dec_ECPoint(Data); decode_disp('ECParameters', Data) -> dec_ECParameters(Data); decode_disp('DSA-Sig-Value', Data) -> 'dec_DSA-Sig-Value'(Data); decode_disp('ECDSA-Sig-Value', Data) -> 'dec_ECDSA-Sig-Value'(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. %%================================ %% RSAPublicKey %%================================ enc_RSAPublicKey(Val) -> enc_RSAPublicKey(Val, [<<48>>]). enc_RSAPublicKey(Val, TagIn) -> {_,Cindex1,Cindex2} = Val, %%------------------------------------------------- %% attribute modulus(1) with type INTEGER %%------------------------------------------------- {EncBytes1,EncLen1} = encode_integer(Cindex1, [<<2>>]), %%------------------------------------------------- %% attribute publicExponent(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), BytesSoFar = [EncBytes1, EncBytes2], LenSoFar = EncLen1 + EncLen2, encode_tags(TagIn, BytesSoFar, LenSoFar). dec_RSAPublicKey(Tlv) -> dec_RSAPublicKey(Tlv, [16]). dec_RSAPublicKey(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute modulus(1) with type INTEGER %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_integer(V1, [2]), %%------------------------------------------------- %% attribute publicExponent(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), case Tlv3 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv3}}}) % extra fields not allowed end, Res1 = {'RSAPublicKey',Term1,Term2}, Res1. %%================================ %% DSA-Params %%================================ 'enc_DSA-Params'(Val) -> 'enc_DSA-Params'(Val, [<<48>>]). 'enc_DSA-Params'(Val, TagIn) -> {_,Cindex1,Cindex2,Cindex3} = Val, %%------------------------------------------------- %% attribute p(1) with type INTEGER %%------------------------------------------------- {EncBytes1,EncLen1} = encode_integer(Cindex1, [<<2>>]), %%------------------------------------------------- %% attribute q(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), %%------------------------------------------------- %% attribute g(3) with type INTEGER %%------------------------------------------------- {EncBytes3,EncLen3} = encode_integer(Cindex3, [<<2>>]), BytesSoFar = [EncBytes1, EncBytes2, EncBytes3], LenSoFar = EncLen1 + EncLen2 + EncLen3, encode_tags(TagIn, BytesSoFar, LenSoFar). 'dec_DSA-Params'(Tlv) -> 'dec_DSA-Params'(Tlv, [16]). 'dec_DSA-Params'(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute p(1) with type INTEGER %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_integer(V1, [2]), %%------------------------------------------------- %% attribute q(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), %%------------------------------------------------- %% attribute g(3) with type INTEGER %%------------------------------------------------- [V3|Tlv4] = Tlv3, Term3 = decode_integer(V3, [2]), case Tlv4 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv4}}}) % extra fields not allowed end, Res1 = {'DSA-Params',Term1,Term2,Term3}, Res1. %%================================ %% DSAPublicKey %%================================ enc_DSAPublicKey(Val) -> enc_DSAPublicKey(Val, [<<2>>]). enc_DSAPublicKey(Val, TagIn) -> encode_integer(Val, TagIn). dec_DSAPublicKey(Tlv) -> dec_DSAPublicKey(Tlv, [2]). dec_DSAPublicKey(Tlv, TagIn) -> decode_integer(Tlv, TagIn). %%================================ %% DomainParameters %%================================ enc_DomainParameters(Val) -> enc_DomainParameters(Val, [<<48>>]). enc_DomainParameters(Val, TagIn) -> {_,Cindex1,Cindex2,Cindex3,Cindex4,Cindex5} = Val, %%------------------------------------------------- %% attribute p(1) with type INTEGER %%------------------------------------------------- {EncBytes1,EncLen1} = encode_integer(Cindex1, [<<2>>]), %%------------------------------------------------- %% attribute g(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), %%------------------------------------------------- %% attribute q(3) with type INTEGER %%------------------------------------------------- {EncBytes3,EncLen3} = encode_integer(Cindex3, [<<2>>]), %%------------------------------------------------- %% attribute j(4) with type INTEGER OPTIONAL %%------------------------------------------------- {EncBytes4,EncLen4} = case Cindex4 of asn1_NOVALUE -> {<<>>,0}; _ -> encode_integer(Cindex4, [<<2>>]) end, %%------------------------------------------------- %% attribute validationParams(5) External PKIXAlgs-2009:ValidationParams OPTIONAL %%------------------------------------------------- {EncBytes5,EncLen5} = case Cindex5 of asn1_NOVALUE -> {<<>>,0}; _ -> 'enc_ValidationParams'(Cindex5, [<<48>>]) end, BytesSoFar = [EncBytes1, EncBytes2, EncBytes3, EncBytes4, EncBytes5], LenSoFar = EncLen1 + EncLen2 + EncLen3 + EncLen4 + EncLen5, encode_tags(TagIn, BytesSoFar, LenSoFar). dec_DomainParameters(Tlv) -> dec_DomainParameters(Tlv, [16]). dec_DomainParameters(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute p(1) with type INTEGER %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_integer(V1, [2]), %%------------------------------------------------- %% attribute g(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), %%------------------------------------------------- %% attribute q(3) with type INTEGER %%------------------------------------------------- [V3|Tlv4] = Tlv3, Term3 = decode_integer(V3, [2]), %%------------------------------------------------- %% attribute j(4) with type INTEGER OPTIONAL %%------------------------------------------------- {Term4,Tlv5} = case Tlv4 of [{2,V4}|TempTlv5] -> {decode_integer(V4, []), TempTlv5}; _ -> { asn1_NOVALUE, Tlv4} end, %%------------------------------------------------- %% attribute validationParams(5) External PKIXAlgs-2009:ValidationParams OPTIONAL %%------------------------------------------------- {Term5,Tlv6} = case Tlv5 of [{16,V5}|TempTlv6] -> {'dec_ValidationParams'(V5, []), TempTlv6}; _ -> { asn1_NOVALUE, Tlv5} end, case Tlv6 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv6}}}) % extra fields not allowed end, Res1 = {'DomainParameters',Term1,Term2,Term3,Term4,Term5}, Res1. %%================================ %% ValidationParams %%================================ enc_ValidationParams(Val) -> enc_ValidationParams(Val, [<<48>>]). enc_ValidationParams(Val, TagIn) -> {_,Cindex1,Cindex2} = Val, %%------------------------------------------------- %% attribute seed(1) with type BIT STRING %%------------------------------------------------- {EncBytes1,EncLen1} = encode_unnamed_bit_string(Cindex1, [<<3>>]), %%------------------------------------------------- %% attribute pgenCounter(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), BytesSoFar = [EncBytes1, EncBytes2], LenSoFar = EncLen1 + EncLen2, encode_tags(TagIn, BytesSoFar, LenSoFar). dec_ValidationParams(Tlv) -> dec_ValidationParams(Tlv, [16]). dec_ValidationParams(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute seed(1) with type BIT STRING %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_native_bit_string(V1, [3]), %%------------------------------------------------- %% attribute pgenCounter(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), case Tlv3 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv3}}}) % extra fields not allowed end, Res1 = {'ValidationParams',Term1,Term2}, Res1. %%================================ %% DiffieHellmanPublicNumber %%================================ enc_DiffieHellmanPublicNumber(Val) -> enc_DiffieHellmanPublicNumber(Val, [<<2>>]). enc_DiffieHellmanPublicNumber(Val, TagIn) -> encode_integer(Val, TagIn). dec_DiffieHellmanPublicNumber(Tlv) -> dec_DiffieHellmanPublicNumber(Tlv, [2]). dec_DiffieHellmanPublicNumber(Tlv, TagIn) -> decode_integer(Tlv, TagIn). %%================================ %% DHPublicKey %%================================ enc_DHPublicKey(Val) -> enc_DHPublicKey(Val, [<<2>>]). enc_DHPublicKey(Val, TagIn) -> encode_integer(Val, TagIn). dec_DHPublicKey(Tlv) -> dec_DHPublicKey(Tlv, [2]). dec_DHPublicKey(Tlv, TagIn) -> decode_integer(Tlv, TagIn). %%================================ %% KEA-Params-Id %%================================ 'enc_KEA-Params-Id'(Val) -> 'enc_KEA-Params-Id'(Val, [<<4>>]). 'enc_KEA-Params-Id'(Val, TagIn) -> encode_restricted_string(Val, TagIn). 'dec_KEA-Params-Id'(Tlv) -> 'dec_KEA-Params-Id'(Tlv, [4]). 'dec_KEA-Params-Id'(Tlv, TagIn) -> decode_octet_string(Tlv, TagIn). %%================================ %% ECPoint %%================================ enc_ECPoint(Val) -> enc_ECPoint(Val, [<<4>>]). enc_ECPoint(Val, TagIn) -> encode_restricted_string(Val, TagIn). dec_ECPoint(Tlv) -> dec_ECPoint(Tlv, [4]). dec_ECPoint(Tlv, TagIn) -> decode_octet_string(Tlv, TagIn). %%================================ %% ECParameters %%================================ enc_ECParameters(Val) -> enc_ECParameters(Val, []). enc_ECParameters(Val, TagIn) -> {EncBytes,EncLen} = case element(1,Val) of namedCurve -> encode_object_identifier(element(2,Val), [<<6>>]); Else -> exit({error,{asn1,{invalid_choice_type,Else}}}) end, encode_tags(TagIn, EncBytes, EncLen). dec_ECParameters(Tlv) -> dec_ECParameters(Tlv, []). dec_ECParameters(Tlv, TagIn) -> Tlv1 = match_tags(Tlv, TagIn), case (case Tlv1 of [CtempTlv1] -> CtempTlv1; _ -> Tlv1 end) of %% 'namedCurve' {6, V1} -> {namedCurve, decode_object_identifier(V1, [])}; Else -> exit({error,{asn1,{invalid_choice_tag,Else}}}) end . %%================================ %% DSA-Sig-Value %%================================ 'enc_DSA-Sig-Value'(Val) -> 'enc_DSA-Sig-Value'(Val, [<<48>>]). 'enc_DSA-Sig-Value'(Val, TagIn) -> {_,Cindex1,Cindex2} = Val, %%------------------------------------------------- %% attribute r(1) with type INTEGER %%------------------------------------------------- {EncBytes1,EncLen1} = encode_integer(Cindex1, [<<2>>]), %%------------------------------------------------- %% attribute s(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), BytesSoFar = [EncBytes1, EncBytes2], LenSoFar = EncLen1 + EncLen2, encode_tags(TagIn, BytesSoFar, LenSoFar). 'dec_DSA-Sig-Value'(Tlv) -> 'dec_DSA-Sig-Value'(Tlv, [16]). 'dec_DSA-Sig-Value'(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute r(1) with type INTEGER %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_integer(V1, [2]), %%------------------------------------------------- %% attribute s(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), case Tlv3 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv3}}}) % extra fields not allowed end, Res1 = {'DSA-Sig-Value',Term1,Term2}, Res1. %%================================ %% ECDSA-Sig-Value %%================================ 'enc_ECDSA-Sig-Value'(Val) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]). 'enc_ECDSA-Sig-Value'(Val, TagIn) -> {_,Cindex1,Cindex2} = Val, %%------------------------------------------------- %% attribute r(1) with type INTEGER %%------------------------------------------------- {EncBytes1,EncLen1} = encode_integer(Cindex1, [<<2>>]), %%------------------------------------------------- %% attribute s(2) with type INTEGER %%------------------------------------------------- {EncBytes2,EncLen2} = encode_integer(Cindex2, [<<2>>]), BytesSoFar = [EncBytes1, EncBytes2], LenSoFar = EncLen1 + EncLen2, encode_tags(TagIn, BytesSoFar, LenSoFar). 'dec_ECDSA-Sig-Value'(Tlv) -> 'dec_ECDSA-Sig-Value'(Tlv, [16]). 'dec_ECDSA-Sig-Value'(Tlv, TagIn) -> %%------------------------------------------------- %% decode tag and length %%------------------------------------------------- Tlv1 = match_tags(Tlv, TagIn), %%------------------------------------------------- %% attribute r(1) with type INTEGER %%------------------------------------------------- [V1|Tlv2] = Tlv1, Term1 = decode_integer(V1, [2]), %%------------------------------------------------- %% attribute s(2) with type INTEGER %%------------------------------------------------- [V2|Tlv3] = Tlv2, Term2 = decode_integer(V2, [2]), case Tlv3 of [] -> true;_ -> exit({error,{asn1, {unexpected,Tlv3}}}) % extra fields not allowed end, Res1 = {'ECDSA-Sig-Value',Term1,Term2}, Res1. rsaEncryption() -> {1,2,840,113549,1,1,1}. 'id-dsa'() -> {1,2,840,10040,4,1}. dhpublicnumber() -> {1,2,840,10046,2,1}. 'id-keyExchangeAlgorithm'() -> {2,16,840,1,101,2,1,1,22}. 'id-ecPublicKey'() -> {1,2,840,10045,2,1}. 'id-ecDH'() -> {1,3,132,1,12}. 'id-ecMQV'() -> {1,3,132,1,13}. secp192r1() -> {1,2,840,10045,3,1,1}. sect163k1() -> {1,3,132,0,1}. sect163r2() -> {1,3,132,0,15}. secp224r1() -> {1,3,132,0,33}. sect233k1() -> {1,3,132,0,26}. sect233r1() -> {1,3,132,0,27}. secp256r1() -> {1,2,840,10045,3,1,7}. sect283k1() -> {1,3,132,0,16}. sect283r1() -> {1,3,132,0,17}. secp384r1() -> {1,3,132,0,34}. sect409k1() -> {1,3,132,0,36}. sect409r1() -> {1,3,132,0,37}. secp521r1() -> {1,3,132,0,35}. sect571k1() -> {1,3,132,0,38}. sect571r1() -> {1,3,132,0,39}. md2WithRSAEncryption() -> {1,2,840,113549,1,1,2}. md5WithRSAEncryption() -> {1,2,840,113549,1,1,4}. sha1WithRSAEncryption() -> {1,2,840,113549,1,1,5}. 'dsa-with-sha1'() -> {1,2,840,10040,4,3}. 'dsa-with-sha224'() -> {2,16,840,1,101,3,4,3,1}. 'dsa-with-sha256'() -> {2,16,840,1,101,3,4,3,2}. 'ecdsa-with-SHA1'() -> {1,2,840,10045,4,1}. 'ecdsa-with-SHA224'() -> {1,2,840,10045,4,3,1}. 'ecdsa-with-SHA256'() -> {1,2,840,10045,4,3,2}. 'ecdsa-with-SHA384'() -> {1,2,840,10045,4,3,3}. 'ecdsa-with-SHA512'() -> {1,2,840,10045,4,3,4}. 'id-md2'() -> {1,2,840,113549,2,2}. 'id-md5'() -> {1,2,840,113549,2,5}. 'id-sha1'() -> {1,3,14,3,2,26}. %%================================ %% pk-rsa %%================================ 'enc_pk-rsa'('KeyValue', Val, _RestPrimFieldName) -> enc_RSAPublicKey(Val, [<<48>>]); 'enc_pk-rsa'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_pk-rsa'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-rsa'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_RSAPublicKey(Tlv, [16]); 'dec_pk-rsa'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_pk-rsa'('PrivateKey', Bytes,_) -> Bytes. tlv_format(Bytes) when is_binary(Bytes) -> {Tlv,_} = ber_decode_nif(Bytes), Tlv; tlv_format(Bytes) -> Bytes. %%================================ %% pk-dsa %%================================ 'enc_pk-dsa'('KeyValue', Val, _RestPrimFieldName) -> enc_DSAPublicKey(Val, [<<2>>]); 'enc_pk-dsa'('Params', Val, _RestPrimFieldName) -> 'enc_DSA-Params'(Val, [<<48>>]); 'enc_pk-dsa'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-dsa'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_DSAPublicKey(Tlv, [2]); 'dec_pk-dsa'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_DSA-Params'(Tlv, [16]); 'dec_pk-dsa'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% pk-dh %%================================ 'enc_pk-dh'('KeyValue', Val, _RestPrimFieldName) -> enc_DHPublicKey(Val, [<<2>>]); 'enc_pk-dh'('Params', Val, _RestPrimFieldName) -> enc_DomainParameters(Val, [<<48>>]); 'enc_pk-dh'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-dh'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_DHPublicKey(Tlv, [2]); 'dec_pk-dh'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), dec_DomainParameters(Tlv, [16]); 'dec_pk-dh'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% pk-kea %%================================ 'enc_pk-kea'('KeyValue', Val, _RestPrimFieldName) -> {Val,0}; 'enc_pk-kea'('Params', Val, _RestPrimFieldName) -> 'enc_KEA-Params-Id'(Val, [<<4>>]); 'enc_pk-kea'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-kea'('KeyValue', Bytes,_) -> Bytes; 'dec_pk-kea'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_KEA-Params-Id'(Tlv, [4]); 'dec_pk-kea'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% pk-ec %%================================ 'enc_pk-ec'('KeyValue', Val, _RestPrimFieldName) -> enc_ECPoint(Val, [<<4>>]); 'enc_pk-ec'('Params', Val, _RestPrimFieldName) -> enc_ECParameters(Val, []); 'enc_pk-ec'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-ec'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECPoint(Tlv, [4]); 'dec_pk-ec'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECParameters(Tlv, []); 'dec_pk-ec'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% pk-ecDH %%================================ 'enc_pk-ecDH'('KeyValue', Val, _RestPrimFieldName) -> enc_ECPoint(Val, [<<4>>]); 'enc_pk-ecDH'('Params', Val, _RestPrimFieldName) -> enc_ECParameters(Val, []); 'enc_pk-ecDH'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-ecDH'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECPoint(Tlv, [4]); 'dec_pk-ecDH'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECParameters(Tlv, []); 'dec_pk-ecDH'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% pk-ecMQV %%================================ 'enc_pk-ecMQV'('KeyValue', Val, _RestPrimFieldName) -> enc_ECPoint(Val, [<<4>>]); 'enc_pk-ecMQV'('Params', Val, _RestPrimFieldName) -> enc_ECParameters(Val, []); 'enc_pk-ecMQV'('PrivateKey', Val, _RestPrimFieldName) -> {Val,0}. 'dec_pk-ecMQV'('KeyValue', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECPoint(Tlv, [4]); 'dec_pk-ecMQV'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), dec_ECParameters(Tlv, []); 'dec_pk-ecMQV'('PrivateKey', Bytes,_) -> Bytes. %%================================ %% sa-rsaWithMD2 %%================================ 'enc_sa-rsaWithMD2'('Value', Val, _RestPrimFieldName) -> {Val,0}; 'enc_sa-rsaWithMD2'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-rsaWithMD2'(smimeCaps, Val, [H|T]) -> 'enc_sa-rsaWithMD2_smimeCaps'(H, Val, T). 'dec_sa-rsaWithMD2'('Value', Bytes,_) -> Bytes; 'dec_sa-rsaWithMD2'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-rsaWithMD2'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-rsaWithMD2_smimeCaps'(H, Bytes, T). %%================================ %% sa-rsaWithMD5 %%================================ 'enc_sa-rsaWithMD5'('Value', Val, _RestPrimFieldName) -> {Val,0}; 'enc_sa-rsaWithMD5'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-rsaWithMD5'(smimeCaps, Val, [H|T]) -> 'enc_sa-rsaWithMD5_smimeCaps'(H, Val, T). 'dec_sa-rsaWithMD5'('Value', Bytes,_) -> Bytes; 'dec_sa-rsaWithMD5'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-rsaWithMD5'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-rsaWithMD5_smimeCaps'(H, Bytes, T). %%================================ %% sa-rsaWithSHA1 %%================================ 'enc_sa-rsaWithSHA1'('Value', Val, _RestPrimFieldName) -> {Val,0}; 'enc_sa-rsaWithSHA1'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-rsaWithSHA1'(smimeCaps, Val, [H|T]) -> 'enc_sa-rsaWithSHA1_smimeCaps'(H, Val, T). 'dec_sa-rsaWithSHA1'('Value', Bytes,_) -> Bytes; 'dec_sa-rsaWithSHA1'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-rsaWithSHA1'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-rsaWithSHA1_smimeCaps'(H, Bytes, T). %%================================ %% sa-dsaWithSHA1 %%================================ 'enc_sa-dsaWithSHA1'('Value', Val, _RestPrimFieldName) -> 'enc_DSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-dsaWithSHA1'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-dsaWithSHA1'(smimeCaps, Val, [H|T]) -> 'enc_sa-dsaWithSHA1_smimeCaps'(H, Val, T). 'dec_sa-dsaWithSHA1'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_DSA-Sig-Value'(Tlv, [16]); 'dec_sa-dsaWithSHA1'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-dsaWithSHA1'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-dsaWithSHA1_smimeCaps'(H, Bytes, T). %%================================ %% sa-dsaWithSHA224 %%================================ 'enc_sa-dsaWithSHA224'('Value', Val, _RestPrimFieldName) -> 'enc_DSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-dsaWithSHA224'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-dsaWithSHA224'(smimeCaps, Val, [H|T]) -> 'enc_sa-dsaWithSHA224_smimeCaps'(H, Val, T). 'dec_sa-dsaWithSHA224'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_DSA-Sig-Value'(Tlv, [16]); 'dec_sa-dsaWithSHA224'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-dsaWithSHA224'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-dsaWithSHA224_smimeCaps'(H, Bytes, T). %%================================ %% sa-dsaWithSHA256 %%================================ 'enc_sa-dsaWithSHA256'('Value', Val, _RestPrimFieldName) -> 'enc_DSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-dsaWithSHA256'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-dsaWithSHA256'(smimeCaps, Val, [H|T]) -> 'enc_sa-dsaWithSHA256_smimeCaps'(H, Val, T). 'dec_sa-dsaWithSHA256'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_DSA-Sig-Value'(Tlv, [16]); 'dec_sa-dsaWithSHA256'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-dsaWithSHA256'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-dsaWithSHA256_smimeCaps'(H, Bytes, T). %%================================ %% sa-ecdsaWithSHA1 %%================================ 'enc_sa-ecdsaWithSHA1'('Value', Val, _RestPrimFieldName) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-ecdsaWithSHA1'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-ecdsaWithSHA1'(smimeCaps, Val, [H|T]) -> 'enc_sa-ecdsaWithSHA1_smimeCaps'(H, Val, T). 'dec_sa-ecdsaWithSHA1'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_ECDSA-Sig-Value'(Tlv, [16]); 'dec_sa-ecdsaWithSHA1'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-ecdsaWithSHA1'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-ecdsaWithSHA1_smimeCaps'(H, Bytes, T). %%================================ %% sa-ecdsaWithSHA224 %%================================ 'enc_sa-ecdsaWithSHA224'('Value', Val, _RestPrimFieldName) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-ecdsaWithSHA224'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-ecdsaWithSHA224'(smimeCaps, Val, [H|T]) -> 'enc_sa-ecdsaWithSHA224_smimeCaps'(H, Val, T). 'dec_sa-ecdsaWithSHA224'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_ECDSA-Sig-Value'(Tlv, [16]); 'dec_sa-ecdsaWithSHA224'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-ecdsaWithSHA224'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-ecdsaWithSHA224_smimeCaps'(H, Bytes, T). %%================================ %% sa-ecdsaWithSHA256 %%================================ 'enc_sa-ecdsaWithSHA256'('Value', Val, _RestPrimFieldName) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-ecdsaWithSHA256'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-ecdsaWithSHA256'(smimeCaps, Val, [H|T]) -> 'enc_sa-ecdsaWithSHA256_smimeCaps'(H, Val, T). 'dec_sa-ecdsaWithSHA256'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_ECDSA-Sig-Value'(Tlv, [16]); 'dec_sa-ecdsaWithSHA256'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-ecdsaWithSHA256'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-ecdsaWithSHA256_smimeCaps'(H, Bytes, T). %%================================ %% sa-ecdsaWithSHA384 %%================================ 'enc_sa-ecdsaWithSHA384'('Value', Val, _RestPrimFieldName) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-ecdsaWithSHA384'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-ecdsaWithSHA384'(smimeCaps, Val, [H|T]) -> 'enc_sa-ecdsaWithSHA384_smimeCaps'(H, Val, T). 'dec_sa-ecdsaWithSHA384'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_ECDSA-Sig-Value'(Tlv, [16]); 'dec_sa-ecdsaWithSHA384'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-ecdsaWithSHA384'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-ecdsaWithSHA384_smimeCaps'(H, Bytes, T). %%================================ %% sa-ecdsaWithSHA512 %%================================ 'enc_sa-ecdsaWithSHA512'('Value', Val, _RestPrimFieldName) -> 'enc_ECDSA-Sig-Value'(Val, [<<48>>]); 'enc_sa-ecdsaWithSHA512'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]); 'enc_sa-ecdsaWithSHA512'(smimeCaps, Val, [H|T]) -> 'enc_sa-ecdsaWithSHA512_smimeCaps'(H, Val, T). 'dec_sa-ecdsaWithSHA512'('Value', Bytes,_) -> Tlv = tlv_format(Bytes), 'dec_ECDSA-Sig-Value'(Tlv, [16]); 'dec_sa-ecdsaWithSHA512'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]); 'dec_sa-ecdsaWithSHA512'(smimeCaps, Bytes,[H|T]) -> 'dec_sa-ecdsaWithSHA512_smimeCaps'(H, Bytes, T). %%================================ %% mda-md2 %%================================ 'enc_mda-md2'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]). 'dec_mda-md2'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]). %%================================ %% mda-md5 %%================================ 'enc_mda-md5'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]). 'dec_mda-md5'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]). %%================================ %% mda-sha1 %%================================ 'enc_mda-sha1'('Params', Val, _RestPrimFieldName) -> encode_null(Val, [<<5>>]). 'dec_mda-sha1'('Params', Bytes,_) -> Tlv = tlv_format(Bytes), decode_null(Tlv, [5]). %%================================ %% sa-ecdsaWithSHA512_smimeCaps %%================================ 'enc_sa-ecdsaWithSHA512_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-ecdsaWithSHA512_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-ecdsaWithSHA384_smimeCaps %%================================ 'enc_sa-ecdsaWithSHA384_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-ecdsaWithSHA384_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-ecdsaWithSHA256_smimeCaps %%================================ 'enc_sa-ecdsaWithSHA256_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-ecdsaWithSHA256_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-ecdsaWithSHA224_smimeCaps %%================================ 'enc_sa-ecdsaWithSHA224_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-ecdsaWithSHA224_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-dsaWithSHA1_smimeCaps %%================================ 'enc_sa-dsaWithSHA1_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-dsaWithSHA1_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-rsaWithSHA1_smimeCaps %%================================ 'enc_sa-rsaWithSHA1_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-rsaWithSHA1_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-dsaWithSHA256_smimeCaps %%================================ 'enc_sa-dsaWithSHA256_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-dsaWithSHA256_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-dsaWithSHA224_smimeCaps %%================================ 'enc_sa-dsaWithSHA224_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-dsaWithSHA224_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-ecdsaWithSHA1_smimeCaps %%================================ 'enc_sa-ecdsaWithSHA1_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-ecdsaWithSHA1_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-rsaWithMD5_smimeCaps %%================================ 'enc_sa-rsaWithMD5_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-rsaWithMD5_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% sa-rsaWithMD2_smimeCaps %%================================ 'enc_sa-rsaWithMD2_smimeCaps'('Type', Val, _RestPrimFieldName) -> {Val,0}. 'dec_sa-rsaWithMD2_smimeCaps'('Type', Bytes,_) -> Bytes. %%================================ %% PublicKeys %%================================ getenc_PublicKeys(Id) when Id =:= {1,3,132,1,12} -> fun 'enc_pk-ecDH'/3; getenc_PublicKeys(Id) when Id =:= {1,3,132,1,13} -> fun 'enc_pk-ecMQV'/3; getenc_PublicKeys(Id) when Id =:= {1,2,840,10040,4,1} -> fun 'enc_pk-dsa'/3; getenc_PublicKeys(Id) when Id =:= {1,2,840,10045,2,1} -> fun 'enc_pk-ec'/3; getenc_PublicKeys(Id) when Id =:= {1,2,840,10046,2,1} -> fun 'enc_pk-dh'/3; getenc_PublicKeys(Id) when Id =:= {1,2,840,113549,1,1,1} -> fun 'enc_pk-rsa'/3; getenc_PublicKeys(Id) when Id =:= {2,16,840,1,101,2,1,1,22} -> fun 'enc_pk-kea'/3; getenc_PublicKeys(_) -> fun(_, Val, _RestPrimFieldName) -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end. getdec_PublicKeys(Id) when Id =:= {1,3,132,1,12} -> fun 'dec_pk-ecDH'/3; getdec_PublicKeys(Id) when Id =:= {1,3,132,1,13} -> fun 'dec_pk-ecMQV'/3; getdec_PublicKeys(Id) when Id =:= {1,2,840,10040,4,1} -> fun 'dec_pk-dsa'/3; getdec_PublicKeys(Id) when Id =:= {1,2,840,10045,2,1} -> fun 'dec_pk-ec'/3; getdec_PublicKeys(Id) when Id =:= {1,2,840,10046,2,1} -> fun 'dec_pk-dh'/3; getdec_PublicKeys(Id) when Id =:= {1,2,840,113549,1,1,1} -> fun 'dec_pk-rsa'/3; getdec_PublicKeys(Id) when Id =:= {2,16,840,1,101,2,1,1,22} -> fun 'dec_pk-kea'/3; getdec_PublicKeys(_) -> fun(_,Bytes, _RestPrimFieldName) -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end. %%================================ %% SignatureAlgs %%================================ getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10040,4,3} -> fun 'enc_sa-dsaWithSHA1'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,1} -> fun 'enc_sa-ecdsaWithSHA1'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,1} -> fun 'enc_sa-ecdsaWithSHA224'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,2} -> fun 'enc_sa-ecdsaWithSHA256'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,3} -> fun 'enc_sa-ecdsaWithSHA384'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,4} -> fun 'enc_sa-ecdsaWithSHA512'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,2} -> fun 'enc_sa-rsaWithMD2'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,4} -> fun 'enc_sa-rsaWithMD5'/3; getenc_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,5} -> fun 'enc_sa-rsaWithSHA1'/3; getenc_SignatureAlgs(Id) when Id =:= {2,16,840,1,101,3,4,3,1} -> fun 'enc_sa-dsaWithSHA224'/3; getenc_SignatureAlgs(Id) when Id =:= {2,16,840,1,101,3,4,3,2} -> fun 'enc_sa-dsaWithSHA256'/3; getenc_SignatureAlgs(_) -> fun(_, Val, _RestPrimFieldName) -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end. getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10040,4,3} -> fun 'dec_sa-dsaWithSHA1'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,1} -> fun 'dec_sa-ecdsaWithSHA1'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,1} -> fun 'dec_sa-ecdsaWithSHA224'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,2} -> fun 'dec_sa-ecdsaWithSHA256'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,3} -> fun 'dec_sa-ecdsaWithSHA384'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,10045,4,3,4} -> fun 'dec_sa-ecdsaWithSHA512'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,2} -> fun 'dec_sa-rsaWithMD2'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,4} -> fun 'dec_sa-rsaWithMD5'/3; getdec_SignatureAlgs(Id) when Id =:= {1,2,840,113549,1,1,5} -> fun 'dec_sa-rsaWithSHA1'/3; getdec_SignatureAlgs(Id) when Id =:= {2,16,840,1,101,3,4,3,1} -> fun 'dec_sa-dsaWithSHA224'/3; getdec_SignatureAlgs(Id) when Id =:= {2,16,840,1,101,3,4,3,2} -> fun 'dec_sa-dsaWithSHA256'/3; getdec_SignatureAlgs(_) -> fun(_,Bytes, _RestPrimFieldName) -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end. %%================================ %% SMimeCaps %%================================ getenc_SMimeCaps({1,2,840,10040,4,3}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,10045,4,1}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,10045,4,3,1}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,10045,4,3,2}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,10045,4,3,3}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,10045,4,3,4}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,113549,1,1,2}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,113549,1,1,4}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({1,2,840,113549,1,1,5}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({2,16,840,1,101,3,4,3,1}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps({2,16,840,1,101,3,4,3,2}) -> fun(Type, Val, _RestPrimFieldName) -> case Type of 'Type' -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end end; getenc_SMimeCaps(_) -> fun(_, Val, _RestPrimFieldName) -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end. 'getdec_SMimeCaps'({1,2,840,10040,4,3}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,10045,4,1}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,10045,4,3,1}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,10045,4,3,2}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,10045,4,3,3}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,10045,4,3,4}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,113549,1,1,2}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,113549,1,1,4}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({1,2,840,113549,1,1,5}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({2,16,840,1,101,3,4,3,1}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; 'getdec_SMimeCaps'({2,16,840,1,101,3,4,3,2}) -> fun(Type, Bytes, _RestPrimFieldName) -> case Type of 'Type' -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end end; getdec_SMimeCaps(_) -> fun(_,Bytes, _RestPrimFieldName) -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end. %%================================ %% NamedCurve %%================================ getenc_NamedCurve(_) -> fun(_, Val, _RestPrimFieldName) -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end. getdec_NamedCurve(_) -> fun(_,Bytes, _RestPrimFieldName) -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end. %%================================ %% HashAlgs %%================================ getenc_HashAlgs(Id) when Id =:= {1,2,840,113549,2,2} -> fun 'enc_mda-md2'/3; getenc_HashAlgs(Id) when Id =:= {1,2,840,113549,2,5} -> fun 'enc_mda-md5'/3; getenc_HashAlgs(Id) when Id =:= {1,3,14,3,2,26} -> fun 'enc_mda-sha1'/3; getenc_HashAlgs(_) -> fun(_, Val, _RestPrimFieldName) -> case Val of {asn1_OPENTYPE,Bin} when is_binary(Bin) -> {Bin,byte_size(Bin)} end end. getdec_HashAlgs(Id) when Id =:= {1,2,840,113549,2,2} -> fun 'dec_mda-md2'/3; getdec_HashAlgs(Id) when Id =:= {1,2,840,113549,2,5} -> fun 'dec_mda-md5'/3; getdec_HashAlgs(Id) when Id =:= {1,3,14,3,2,26} -> fun 'dec_mda-sha1'/3; getdec_HashAlgs(_) -> fun(_,Bytes, _RestPrimFieldName) -> case Bytes of Bin when is_binary(Bin) -> {asn1_OPENTYPE,Bin}; _ -> {asn1_OPENTYPE,ber_encode(Bytes)} end end. %%% %%% Run-time functions. %%% 'dialyzer-suppressions'(Arg) -> ok. ber_decode_nif(B) -> asn1rt_nif:decode_ber_tlv(B). ber_encode([Tlv]) -> ber_encode(Tlv); ber_encode(Tlv) when is_binary(Tlv) -> Tlv; ber_encode(Tlv) -> asn1rt_nif:encode_ber_tlv(Tlv). 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)]). dec_subidentifiers(<<>>, _Av, Al) -> lists:reverse(Al); dec_subidentifiers(<<1:1,H:7,T/binary>>, Av, Al) -> dec_subidentifiers(T, Av bsl 7 + H, Al); dec_subidentifiers(<>, Av, Al) -> dec_subidentifiers(T, 0, [Av bsl 7 + H | Al]). decode_integer(Tlv, TagIn) -> Bin = match_tags(Tlv, TagIn), Len = byte_size(Bin), <> = Bin, Int. decode_native_bit_string(Buffer, Tags) -> case match_and_collect(Buffer, Tags) of <<0>> -> <<>>; <> -> Size = bit_size(Bits) - Unused, <> = Bits, Val end. decode_null(Tlv, Tags) -> Val = match_tags(Tlv, Tags), case Val of <<>> -> 'NULL'; _ -> exit({error, {asn1, {decode_null, Val}}}) end. decode_object_identifier(Tlv, Tags) -> Val = match_tags(Tlv, Tags), [AddedObjVal | ObjVals] = dec_subidentifiers(Val, 0, []), {Val1, Val2} = if AddedObjVal < 40 -> {0, AddedObjVal}; AddedObjVal < 80 -> {1, AddedObjVal - 40}; true -> {2, AddedObjVal - 80} end, list_to_tuple([Val1, Val2 | ObjVals]). decode_octet_string(Tlv, TagsIn) -> Bin = match_and_collect(Tlv, TagsIn), binary:copy(Bin). e_object_identifier({'OBJECT IDENTIFIER', V}) -> e_object_identifier(V); e_object_identifier(V) when is_tuple(V) -> e_object_identifier(tuple_to_list(V)); e_object_identifier([E1, E2 | Tail]) -> Head = 40 * E1 + E2, {H, Lh} = mk_object_val(Head), {R, Lr} = lists:mapfoldl(fun enc_obj_id_tail/2, 0, Tail), {[H | R], Lh + Lr}. enc_obj_id_tail(H, Len) -> {B, L} = mk_object_val(H), {B, Len + L}. encode_integer(Val) -> Bytes = if Val >= 0 -> encode_integer_pos(Val, []); true -> encode_integer_neg(Val, []) end, {Bytes, length(Bytes)}. encode_integer(Val, Tag) when is_integer(Val) -> encode_tags(Tag, encode_integer(Val)); encode_integer(Val, _Tag) -> exit({error, {asn1, {encode_integer, Val}}}). encode_integer_neg(-1, [B1 | _T] = L) when B1 > 127 -> L; encode_integer_neg(N, Acc) -> encode_integer_neg(N bsr 8, [N band 255 | Acc]). encode_integer_pos(0, [B | _Acc] = L) when B < 128 -> L; encode_integer_pos(N, Acc) -> encode_integer_pos(N bsr 8, [N band 255 | Acc]). 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_null(_Val, TagIn) -> encode_tags(TagIn, [], 0). encode_object_identifier(Val, TagIn) -> encode_tags(TagIn, e_object_identifier(Val)). encode_restricted_string(OctetList, TagIn) when is_binary(OctetList) -> encode_tags(TagIn, OctetList, byte_size(OctetList)); encode_restricted_string(OctetList, TagIn) when is_list(OctetList) -> encode_tags(TagIn, OctetList, length(OctetList)). encode_tags(TagIn, {BytesSoFar, LenSoFar}) -> encode_tags(TagIn, BytesSoFar, LenSoFar). 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}. encode_unnamed_bit_string(Bits, TagIn) -> Unused = (8 - bit_size(Bits) band 7) band 7, Bin = <>, encode_tags(TagIn, Bin, byte_size(Bin)). match_and_collect(Tlv, TagsIn) -> Val = match_tags(Tlv, TagsIn), case Val of [_ | _] = PartList -> collect_parts(PartList); Bin when is_binary(Bin) -> Bin end. 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, []). mk_object_val(0, Ack, Len) -> {Ack, Len}; mk_object_val(Val, Ack, Len) -> mk_object_val(Val bsr 7, [Val band 127 bor 128 | Ack], Len + 1). mk_object_val(Val) when Val =< 127 -> {[255 band Val], 1}; mk_object_val(Val) -> mk_object_val(Val bsr 7, [Val band 127], 1).