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557 lines
26 KiB
557 lines
26 KiB
#if !BESTHTTP_DISABLE_ALTERNATE_SSL && (!UNITY_WEBGL || UNITY_EDITOR) |
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#pragma warning disable |
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using System; |
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using System.Collections; |
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using System.IO; |
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|
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.CryptoPro; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.Nist; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.Oiw; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.Pkcs; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.TeleTrust; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.X509; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.X9; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Security; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Collections; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.X509; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Operators; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Asn1.Utilities; |
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Pkcs |
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{ |
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/// <remarks> |
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/// A class for verifying and creating Pkcs10 Certification requests. |
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/// </remarks> |
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/// <code> |
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/// CertificationRequest ::= Sequence { |
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/// certificationRequestInfo CertificationRequestInfo, |
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/// signatureAlgorithm AlgorithmIdentifier{{ SignatureAlgorithms }}, |
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/// signature BIT STRING |
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/// } |
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/// |
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/// CertificationRequestInfo ::= Sequence { |
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/// version Integer { v1(0) } (v1,...), |
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/// subject Name, |
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/// subjectPKInfo SubjectPublicKeyInfo{{ PKInfoAlgorithms }}, |
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/// attributes [0] Attributes{{ CRIAttributes }} |
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/// } |
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/// |
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/// Attributes { ATTRIBUTE:IOSet } ::= Set OF Attr{{ IOSet }} |
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/// |
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/// Attr { ATTRIBUTE:IOSet } ::= Sequence { |
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/// type ATTRIBUTE.&id({IOSet}), |
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/// values Set SIZE(1..MAX) OF ATTRIBUTE.&Type({IOSet}{\@type}) |
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/// } |
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/// </code> |
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/// see <a href="http://www.rsasecurity.com/rsalabs/node.asp?id=2132"/> |
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public class Pkcs10CertificationRequest |
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: CertificationRequest |
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{ |
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protected static readonly IDictionary algorithms = BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.CreateHashtable(); |
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protected static readonly IDictionary exParams = BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.CreateHashtable(); |
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protected static readonly IDictionary keyAlgorithms = BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.CreateHashtable(); |
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protected static readonly IDictionary oids = BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.CreateHashtable(); |
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protected static readonly ISet noParams = new HashSet(); |
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|
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static Pkcs10CertificationRequest() |
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{ |
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algorithms.Add("MD2WITHRSAENCRYPTION", PkcsObjectIdentifiers.MD2WithRsaEncryption); |
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algorithms.Add("MD2WITHRSA", PkcsObjectIdentifiers.MD2WithRsaEncryption); |
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algorithms.Add("MD5WITHRSAENCRYPTION", PkcsObjectIdentifiers.MD5WithRsaEncryption); |
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algorithms.Add("MD5WITHRSA", PkcsObjectIdentifiers.MD5WithRsaEncryption); |
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algorithms.Add("RSAWITHMD5", PkcsObjectIdentifiers.MD5WithRsaEncryption); |
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algorithms.Add("SHA1WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha1WithRsaEncryption); |
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algorithms.Add("SHA-1WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha1WithRsaEncryption); |
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algorithms.Add("SHA1WITHRSA", PkcsObjectIdentifiers.Sha1WithRsaEncryption); |
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algorithms.Add("SHA-1WITHRSA", PkcsObjectIdentifiers.Sha1WithRsaEncryption); |
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algorithms.Add("SHA224WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha224WithRsaEncryption); |
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algorithms.Add("SHA-224WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha224WithRsaEncryption); |
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algorithms.Add("SHA224WITHRSA", PkcsObjectIdentifiers.Sha224WithRsaEncryption); |
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algorithms.Add("SHA-224WITHRSA", PkcsObjectIdentifiers.Sha224WithRsaEncryption); |
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algorithms.Add("SHA256WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha256WithRsaEncryption); |
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algorithms.Add("SHA-256WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha256WithRsaEncryption); |
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algorithms.Add("SHA256WITHRSA", PkcsObjectIdentifiers.Sha256WithRsaEncryption); |
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algorithms.Add("SHA-256WITHRSA", PkcsObjectIdentifiers.Sha256WithRsaEncryption); |
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algorithms.Add("SHA384WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha384WithRsaEncryption); |
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algorithms.Add("SHA-384WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha384WithRsaEncryption); |
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algorithms.Add("SHA384WITHRSA", PkcsObjectIdentifiers.Sha384WithRsaEncryption); |
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algorithms.Add("SHA-384WITHRSA", PkcsObjectIdentifiers.Sha384WithRsaEncryption); |
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algorithms.Add("SHA512WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512WithRsaEncryption); |
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algorithms.Add("SHA-512WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512WithRsaEncryption); |
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algorithms.Add("SHA512WITHRSA", PkcsObjectIdentifiers.Sha512WithRsaEncryption); |
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algorithms.Add("SHA-512WITHRSA", PkcsObjectIdentifiers.Sha512WithRsaEncryption); |
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algorithms.Add("SHA512(224)WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512_224WithRSAEncryption); |
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algorithms.Add("SHA-512(224)WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512_224WithRSAEncryption); |
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algorithms.Add("SHA512(224)WITHRSA", PkcsObjectIdentifiers.Sha512_224WithRSAEncryption); |
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algorithms.Add("SHA-512(224)WITHRSA", PkcsObjectIdentifiers.Sha512_224WithRSAEncryption); |
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algorithms.Add("SHA512(256)WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512_256WithRSAEncryption); |
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algorithms.Add("SHA-512(256)WITHRSAENCRYPTION", PkcsObjectIdentifiers.Sha512_256WithRSAEncryption); |
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algorithms.Add("SHA512(256)WITHRSA", PkcsObjectIdentifiers.Sha512_256WithRSAEncryption); |
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algorithms.Add("SHA-512(256)WITHRSA", PkcsObjectIdentifiers.Sha512_256WithRSAEncryption); |
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algorithms.Add("SHA1WITHRSAANDMGF1", PkcsObjectIdentifiers.IdRsassaPss); |
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algorithms.Add("SHA224WITHRSAANDMGF1", PkcsObjectIdentifiers.IdRsassaPss); |
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algorithms.Add("SHA256WITHRSAANDMGF1", PkcsObjectIdentifiers.IdRsassaPss); |
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algorithms.Add("SHA384WITHRSAANDMGF1", PkcsObjectIdentifiers.IdRsassaPss); |
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algorithms.Add("SHA512WITHRSAANDMGF1", PkcsObjectIdentifiers.IdRsassaPss); |
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algorithms.Add("RSAWITHSHA1", PkcsObjectIdentifiers.Sha1WithRsaEncryption); |
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algorithms.Add("RIPEMD128WITHRSAENCRYPTION", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD128); |
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algorithms.Add("RIPEMD128WITHRSA", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD128); |
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algorithms.Add("RIPEMD160WITHRSAENCRYPTION", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD160); |
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algorithms.Add("RIPEMD160WITHRSA", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD160); |
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algorithms.Add("RIPEMD256WITHRSAENCRYPTION", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD256); |
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algorithms.Add("RIPEMD256WITHRSA", TeleTrusTObjectIdentifiers.RsaSignatureWithRipeMD256); |
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algorithms.Add("SHA1WITHDSA", X9ObjectIdentifiers.IdDsaWithSha1); |
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algorithms.Add("DSAWITHSHA1", X9ObjectIdentifiers.IdDsaWithSha1); |
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algorithms.Add("SHA224WITHDSA", NistObjectIdentifiers.DsaWithSha224); |
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algorithms.Add("SHA256WITHDSA", NistObjectIdentifiers.DsaWithSha256); |
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algorithms.Add("SHA384WITHDSA", NistObjectIdentifiers.DsaWithSha384); |
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algorithms.Add("SHA512WITHDSA", NistObjectIdentifiers.DsaWithSha512); |
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algorithms.Add("SHA1WITHECDSA", X9ObjectIdentifiers.ECDsaWithSha1); |
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algorithms.Add("SHA224WITHECDSA", X9ObjectIdentifiers.ECDsaWithSha224); |
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algorithms.Add("SHA256WITHECDSA", X9ObjectIdentifiers.ECDsaWithSha256); |
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algorithms.Add("SHA384WITHECDSA", X9ObjectIdentifiers.ECDsaWithSha384); |
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algorithms.Add("SHA512WITHECDSA", X9ObjectIdentifiers.ECDsaWithSha512); |
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algorithms.Add("ECDSAWITHSHA1", X9ObjectIdentifiers.ECDsaWithSha1); |
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algorithms.Add("GOST3411WITHGOST3410", CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x94); |
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algorithms.Add("GOST3410WITHGOST3411", CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x94); |
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algorithms.Add("GOST3411WITHECGOST3410", CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x2001); |
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algorithms.Add("GOST3411WITHECGOST3410-2001", CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x2001); |
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algorithms.Add("GOST3411WITHGOST3410-2001", CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x2001); |
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// |
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// reverse mappings |
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// |
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oids.Add(PkcsObjectIdentifiers.Sha1WithRsaEncryption, "SHA1WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha224WithRsaEncryption, "SHA224WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha256WithRsaEncryption, "SHA256WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha384WithRsaEncryption, "SHA384WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha512WithRsaEncryption, "SHA512WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha512_224WithRSAEncryption, "SHA512(224)WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.Sha512_256WithRSAEncryption, "SHA512(256)WITHRSA"); |
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oids.Add(CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x94, "GOST3411WITHGOST3410"); |
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oids.Add(CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x2001, "GOST3411WITHECGOST3410"); |
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oids.Add(PkcsObjectIdentifiers.MD5WithRsaEncryption, "MD5WITHRSA"); |
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oids.Add(PkcsObjectIdentifiers.MD2WithRsaEncryption, "MD2WITHRSA"); |
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oids.Add(X9ObjectIdentifiers.IdDsaWithSha1, "SHA1WITHDSA"); |
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oids.Add(X9ObjectIdentifiers.ECDsaWithSha1, "SHA1WITHECDSA"); |
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oids.Add(X9ObjectIdentifiers.ECDsaWithSha224, "SHA224WITHECDSA"); |
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oids.Add(X9ObjectIdentifiers.ECDsaWithSha256, "SHA256WITHECDSA"); |
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oids.Add(X9ObjectIdentifiers.ECDsaWithSha384, "SHA384WITHECDSA"); |
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oids.Add(X9ObjectIdentifiers.ECDsaWithSha512, "SHA512WITHECDSA"); |
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oids.Add(OiwObjectIdentifiers.MD5WithRsa, "MD5WITHRSA"); |
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oids.Add(OiwObjectIdentifiers.Sha1WithRsa, "SHA1WITHRSA"); |
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oids.Add(OiwObjectIdentifiers.DsaWithSha1, "SHA1WITHDSA"); |
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oids.Add(NistObjectIdentifiers.DsaWithSha224, "SHA224WITHDSA"); |
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oids.Add(NistObjectIdentifiers.DsaWithSha256, "SHA256WITHDSA"); |
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// |
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// key types |
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// |
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keyAlgorithms.Add(PkcsObjectIdentifiers.RsaEncryption, "RSA"); |
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keyAlgorithms.Add(X9ObjectIdentifiers.IdDsa, "DSA"); |
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// |
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// According to RFC 3279, the ASN.1 encoding SHALL (id-dsa-with-sha1) or MUST (ecdsa-with-SHA*) omit the parameters field. |
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// The parameters field SHALL be NULL for RSA based signature algorithms. |
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// |
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noParams.Add(X9ObjectIdentifiers.ECDsaWithSha1); |
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noParams.Add(X9ObjectIdentifiers.ECDsaWithSha224); |
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noParams.Add(X9ObjectIdentifiers.ECDsaWithSha256); |
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noParams.Add(X9ObjectIdentifiers.ECDsaWithSha384); |
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noParams.Add(X9ObjectIdentifiers.ECDsaWithSha512); |
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noParams.Add(X9ObjectIdentifiers.IdDsaWithSha1); |
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noParams.Add(OiwObjectIdentifiers.DsaWithSha1); |
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noParams.Add(NistObjectIdentifiers.DsaWithSha224); |
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noParams.Add(NistObjectIdentifiers.DsaWithSha256); |
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// |
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// RFC 4491 |
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// |
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noParams.Add(CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x94); |
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noParams.Add(CryptoProObjectIdentifiers.GostR3411x94WithGostR3410x2001); |
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// |
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// explicit params |
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// |
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AlgorithmIdentifier sha1AlgId = new AlgorithmIdentifier(OiwObjectIdentifiers.IdSha1, DerNull.Instance); |
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exParams.Add("SHA1WITHRSAANDMGF1", CreatePssParams(sha1AlgId, 20)); |
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AlgorithmIdentifier sha224AlgId = new AlgorithmIdentifier(NistObjectIdentifiers.IdSha224, DerNull.Instance); |
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exParams.Add("SHA224WITHRSAANDMGF1", CreatePssParams(sha224AlgId, 28)); |
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AlgorithmIdentifier sha256AlgId = new AlgorithmIdentifier(NistObjectIdentifiers.IdSha256, DerNull.Instance); |
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exParams.Add("SHA256WITHRSAANDMGF1", CreatePssParams(sha256AlgId, 32)); |
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AlgorithmIdentifier sha384AlgId = new AlgorithmIdentifier(NistObjectIdentifiers.IdSha384, DerNull.Instance); |
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exParams.Add("SHA384WITHRSAANDMGF1", CreatePssParams(sha384AlgId, 48)); |
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AlgorithmIdentifier sha512AlgId = new AlgorithmIdentifier(NistObjectIdentifiers.IdSha512, DerNull.Instance); |
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exParams.Add("SHA512WITHRSAANDMGF1", CreatePssParams(sha512AlgId, 64)); |
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} |
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private static RsassaPssParameters CreatePssParams( |
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AlgorithmIdentifier hashAlgId, |
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int saltSize) |
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{ |
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return new RsassaPssParameters( |
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hashAlgId, |
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new AlgorithmIdentifier(PkcsObjectIdentifiers.IdMgf1, hashAlgId), |
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new DerInteger(saltSize), |
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new DerInteger(1)); |
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} |
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protected Pkcs10CertificationRequest() |
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{ |
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} |
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public Pkcs10CertificationRequest( |
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byte[] encoded) |
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: base((Asn1Sequence)Asn1Object.FromByteArray(encoded)) |
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{ |
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} |
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public Pkcs10CertificationRequest( |
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Asn1Sequence seq) |
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: base(seq) |
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{ |
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} |
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public Pkcs10CertificationRequest( |
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Stream input) |
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: base((Asn1Sequence)Asn1Object.FromStream(input)) |
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{ |
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} |
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/// <summary> |
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/// Instantiate a Pkcs10CertificationRequest object with the necessary credentials. |
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/// </summary> |
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///<param name="signatureAlgorithm">Name of Sig Alg.</param> |
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/// <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param> |
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/// <param name="publicKey">Public Key to be included in cert reqest.</param> |
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/// <param name="attributes">ASN1Set of Attributes.</param> |
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/// <param name="signingKey">Matching Private key for nominated (above) public key to be used to sign the request.</param> |
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public Pkcs10CertificationRequest( |
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string signatureAlgorithm, |
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X509Name subject, |
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AsymmetricKeyParameter publicKey, |
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Asn1Set attributes, |
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AsymmetricKeyParameter signingKey) |
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: this(new Asn1SignatureFactory(signatureAlgorithm, signingKey), subject, publicKey, attributes) |
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{ |
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} |
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/// <summary> |
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/// Instantiate a Pkcs10CertificationRequest object with the necessary credentials. |
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/// </summary> |
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///<param name="signatureFactory">The factory for signature calculators to sign the PKCS#10 request with.</param> |
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/// <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param> |
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/// <param name="publicKey">Public Key to be included in cert reqest.</param> |
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/// <param name="attributes">ASN1Set of Attributes.</param> |
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/// <param name="signingKey">Ignored.</param> |
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public Pkcs10CertificationRequest( |
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ISignatureFactory signatureFactory, |
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X509Name subject, |
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AsymmetricKeyParameter publicKey, |
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Asn1Set attributes, |
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AsymmetricKeyParameter signingKey) |
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: this(signatureFactory, subject, publicKey, attributes) |
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{ |
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} |
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|
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/// <summary> |
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/// Instantiate a Pkcs10CertificationRequest object with the necessary credentials. |
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/// </summary> |
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///<param name="signatureFactory">The factory for signature calculators to sign the PKCS#10 request with.</param> |
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/// <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param> |
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/// <param name="publicKey">Public Key to be included in cert reqest.</param> |
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/// <param name="attributes">ASN1Set of Attributes.</param> |
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public Pkcs10CertificationRequest( |
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ISignatureFactory signatureFactory, |
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X509Name subject, |
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AsymmetricKeyParameter publicKey, |
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Asn1Set attributes) |
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{ |
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if (signatureFactory == null) |
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throw new ArgumentNullException("signatureFactory"); |
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if (subject == null) |
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throw new ArgumentNullException("subject"); |
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if (publicKey == null) |
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throw new ArgumentNullException("publicKey"); |
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if (publicKey.IsPrivate) |
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throw new ArgumentException("expected public key", "publicKey"); |
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Init(signatureFactory, subject, publicKey, attributes); |
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} |
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private void Init( |
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ISignatureFactory signatureFactory, |
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X509Name subject, |
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AsymmetricKeyParameter publicKey, |
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Asn1Set attributes) |
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{ |
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this.sigAlgId = (AlgorithmIdentifier)signatureFactory.AlgorithmDetails; |
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SubjectPublicKeyInfo pubInfo = SubjectPublicKeyInfoFactory.CreateSubjectPublicKeyInfo(publicKey); |
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this.reqInfo = new CertificationRequestInfo(subject, pubInfo, attributes); |
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IStreamCalculator streamCalculator = signatureFactory.CreateCalculator(); |
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byte[] reqInfoData = reqInfo.GetDerEncoded(); |
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streamCalculator.Stream.Write(reqInfoData, 0, reqInfoData.Length); |
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BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.Dispose(streamCalculator.Stream); |
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// Generate Signature. |
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sigBits = new DerBitString(((IBlockResult)streamCalculator.GetResult()).Collect()); |
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} |
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// internal Pkcs10CertificationRequest( |
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// Asn1InputStream seqStream) |
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// { |
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// Asn1Sequence seq = (Asn1Sequence) seqStream.ReadObject(); |
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// try |
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// { |
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// this.reqInfo = CertificationRequestInfo.GetInstance(seq[0]); |
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// this.sigAlgId = AlgorithmIdentifier.GetInstance(seq[1]); |
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// this.sigBits = (DerBitString) seq[2]; |
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// } |
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// catch (Exception ex) |
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// { |
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// throw new ArgumentException("Create From Asn1Sequence: " + ex.Message); |
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// } |
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// } |
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/// <summary> |
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/// Get the public key. |
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/// </summary> |
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/// <returns>The public key.</returns> |
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public AsymmetricKeyParameter GetPublicKey() |
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{ |
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return PublicKeyFactory.CreateKey(reqInfo.SubjectPublicKeyInfo); |
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} |
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/// <summary> |
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/// Verify Pkcs10 Cert Request is valid. |
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/// </summary> |
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/// <returns>true = valid.</returns> |
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public bool Verify() |
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{ |
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return Verify(this.GetPublicKey()); |
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} |
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public bool Verify( |
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AsymmetricKeyParameter publicKey) |
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{ |
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return Verify(new Asn1VerifierFactoryProvider(publicKey)); |
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} |
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public bool Verify( |
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IVerifierFactoryProvider verifierProvider) |
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{ |
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return Verify(verifierProvider.CreateVerifierFactory(sigAlgId)); |
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} |
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public bool Verify( |
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IVerifierFactory verifier) |
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{ |
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try |
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{ |
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byte[] b = reqInfo.GetDerEncoded(); |
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IStreamCalculator streamCalculator = verifier.CreateCalculator(); |
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streamCalculator.Stream.Write(b, 0, b.Length); |
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BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.Dispose(streamCalculator.Stream); |
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return ((IVerifier)streamCalculator.GetResult()).IsVerified(sigBits.GetOctets()); |
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} |
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catch (Exception e) |
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{ |
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throw new SignatureException("exception encoding TBS cert request", e); |
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} |
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} |
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// /// <summary> |
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// /// Get the Der Encoded Pkcs10 Certification Request. |
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// /// </summary> |
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// /// <returns>A byte array.</returns> |
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// public byte[] GetEncoded() |
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// { |
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// return new CertificationRequest(reqInfo, sigAlgId, sigBits).GetDerEncoded(); |
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// } |
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// TODO Figure out how to set parameters on an ISigner |
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private void SetSignatureParameters( |
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ISigner signature, |
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Asn1Encodable asn1Params) |
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{ |
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if (asn1Params != null && !(asn1Params is Asn1Null)) |
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{ |
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// AlgorithmParameters sigParams = AlgorithmParameters.GetInstance(signature.getAlgorithm()); |
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// |
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// try |
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// { |
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// sigParams.init(asn1Params.ToAsn1Object().GetDerEncoded()); |
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// } |
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// catch (IOException e) |
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// { |
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// throw new SignatureException("IOException decoding parameters: " + e.Message); |
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// } |
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if (BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.EndsWith(signature.AlgorithmName, "MGF1")) |
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{ |
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throw BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Platform.CreateNotImplementedException("signature algorithm with MGF1"); |
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|
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// try |
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// { |
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// signature.setParameter(sigParams.getParameterSpec(PSSParameterSpec.class)); |
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// } |
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// catch (GeneralSecurityException e) |
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// { |
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// throw new SignatureException("Exception extracting parameters: " + e.getMessage()); |
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// } |
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} |
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} |
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} |
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|
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internal static string GetSignatureName( |
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AlgorithmIdentifier sigAlgId) |
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{ |
|
Asn1Encodable asn1Params = sigAlgId.Parameters; |
|
|
|
if (asn1Params != null && !(asn1Params is Asn1Null)) |
|
{ |
|
if (sigAlgId.Algorithm.Equals(PkcsObjectIdentifiers.IdRsassaPss)) |
|
{ |
|
RsassaPssParameters rsaParams = RsassaPssParameters.GetInstance(asn1Params); |
|
return GetDigestAlgName(rsaParams.HashAlgorithm.Algorithm) + "withRSAandMGF1"; |
|
} |
|
} |
|
|
|
return sigAlgId.Algorithm.Id; |
|
} |
|
|
|
private static string GetDigestAlgName( |
|
DerObjectIdentifier digestAlgOID) |
|
{ |
|
if (PkcsObjectIdentifiers.MD5.Equals(digestAlgOID)) |
|
{ |
|
return "MD5"; |
|
} |
|
else if (OiwObjectIdentifiers.IdSha1.Equals(digestAlgOID)) |
|
{ |
|
return "SHA1"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha224.Equals(digestAlgOID)) |
|
{ |
|
return "SHA224"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha256.Equals(digestAlgOID)) |
|
{ |
|
return "SHA256"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha384.Equals(digestAlgOID)) |
|
{ |
|
return "SHA384"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha512.Equals(digestAlgOID)) |
|
{ |
|
return "SHA512"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha512_224.Equals(digestAlgOID)) |
|
{ |
|
return "SHA512(224)"; |
|
} |
|
else if (NistObjectIdentifiers.IdSha512_256.Equals(digestAlgOID)) |
|
{ |
|
return "SHA512(256)"; |
|
} |
|
else if (TeleTrusTObjectIdentifiers.RipeMD128.Equals(digestAlgOID)) |
|
{ |
|
return "RIPEMD128"; |
|
} |
|
else if (TeleTrusTObjectIdentifiers.RipeMD160.Equals(digestAlgOID)) |
|
{ |
|
return "RIPEMD160"; |
|
} |
|
else if (TeleTrusTObjectIdentifiers.RipeMD256.Equals(digestAlgOID)) |
|
{ |
|
return "RIPEMD256"; |
|
} |
|
else if (CryptoProObjectIdentifiers.GostR3411.Equals(digestAlgOID)) |
|
{ |
|
return "GOST3411"; |
|
} |
|
else |
|
{ |
|
return digestAlgOID.Id; |
|
} |
|
} |
|
|
|
/// <summary> |
|
/// Returns X509Extensions if the Extensions Request attribute can be found and returns the extensions block. |
|
/// </summary> |
|
/// <returns>X509Extensions block or null if one cannot be found.</returns> |
|
public X509Extensions GetRequestedExtensions() |
|
{ |
|
if (reqInfo.Attributes != null) |
|
{ |
|
foreach (Asn1Encodable item in reqInfo.Attributes) |
|
{ |
|
AttributePkcs attributePkcs; |
|
try |
|
{ |
|
attributePkcs = AttributePkcs.GetInstance(item); |
|
|
|
} |
|
catch (ArgumentException ex) |
|
{ |
|
throw new ArgumentException("encountered non PKCS attribute in extensions block", ex); |
|
} |
|
|
|
if (attributePkcs.AttrType.Equals(PkcsObjectIdentifiers.Pkcs9AtExtensionRequest)) |
|
{ |
|
X509ExtensionsGenerator generator = new X509ExtensionsGenerator(); |
|
|
|
Asn1Sequence extensionSequence = Asn1Sequence.GetInstance(attributePkcs.AttrValues[0]); |
|
|
|
|
|
foreach (Asn1Encodable seqItem in extensionSequence) |
|
{ |
|
|
|
Asn1Sequence itemSeq = Asn1Sequence.GetInstance(seqItem); |
|
if (itemSeq.Count == 2) |
|
{ |
|
generator.AddExtension(DerObjectIdentifier.GetInstance(itemSeq[0]), false, Asn1OctetString.GetInstance(itemSeq[1]).GetOctets()); |
|
} |
|
else if (itemSeq.Count == 3) |
|
{ |
|
generator.AddExtension(DerObjectIdentifier.GetInstance(itemSeq[0]), DerBoolean.GetInstance(itemSeq[1]).IsTrue, Asn1OctetString.GetInstance(itemSeq[2]).GetOctets()); |
|
} |
|
else |
|
{ |
|
throw new ArgumentException("incorrect sequence size of X509Extension got " + itemSeq.Count + " expected 2 or 3"); |
|
} |
|
} |
|
|
|
return generator.Generate(); |
|
} |
|
|
|
} |
|
} |
|
|
|
return null; |
|
} |
|
|
|
} |
|
} |
|
#pragma warning restore |
|
#endif
|
|
|