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185 lines
11 KiB
185 lines
11 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.IO; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Math; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Security; |
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Tls.Crypto |
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{ |
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/// <summary>Service and object creation interface for the primitive types and services that are associated with |
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/// cryptography in the API.</summary> |
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public interface TlsCrypto |
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{ |
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/// <summary>Return true if this TlsCrypto can perform raw signatures and verifications for all supported |
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/// algorithms.</summary> |
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/// <returns>true if this instance can perform raw signatures and verifications for all supported algorithms, |
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/// false otherwise.</returns> |
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bool HasAllRawSignatureAlgorithms(); |
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/// <summary>Return true if this TlsCrypto can support DH key agreement.</summary> |
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/// <returns>true if this instance can support DH key agreement, false otherwise.</returns> |
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bool HasDHAgreement(); |
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/// <summary>Return true if this TlsCrypto can support ECDH key agreement.</summary> |
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/// <returns>true if this instance can support ECDH key agreement, false otherwise.</returns> |
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bool HasECDHAgreement(); |
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/// <summary>Return true if this TlsCrypto can support the passed in block/stream encryption algorithm. |
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/// </summary> |
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/// <param name="encryptionAlgorithm">the algorithm of interest.</param> |
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/// <returns>true if encryptionAlgorithm is supported, false otherwise.</returns> |
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bool HasEncryptionAlgorithm(int encryptionAlgorithm); |
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/// <summary>Return true if this TlsCrypto can support the passed in hash algorithm.</summary> |
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/// <param name="cryptoHashAlgorithm">the algorithm of interest.</param> |
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/// <returns>true if cryptoHashAlgorithm is supported, false otherwise.</returns> |
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bool HasCryptoHashAlgorithm(int cryptoHashAlgorithm); |
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/// <summary>Return true if this TlsCrypto can support the passed in signature algorithm (not necessarily in |
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/// combination with EVERY hash algorithm).</summary> |
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/// <param name="cryptoSignatureAlgorithm">the algorithm of interest.</param> |
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/// <returns>true if cryptoSignatureAlgorithm is supported, false otherwise.</returns> |
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bool HasCryptoSignatureAlgorithm(int cryptoSignatureAlgorithm); |
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/// <summary>Return true if this TlsCrypto can support the passed in MAC algorithm.</summary> |
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/// <param name="macAlgorithm">the algorithm of interest.</param> |
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/// <returns>true if macAlgorithm is supported, false otherwise.</returns> |
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bool HasMacAlgorithm(int macAlgorithm); |
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/// <summary>Return true if this TlsCrypto supports the passed in <see cref="NamedGroup">named group</see> |
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/// value.</summary> |
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/// <returns>true if this instance supports the passed in <see cref="NamedGroup">named group</see> value. |
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/// </returns> |
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bool HasNamedGroup(int namedGroup); |
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/// <summary>Return true if this TlsCrypto can support RSA encryption/decryption.</summary> |
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/// <returns>true if this instance can support RSA encryption/decryption, false otherwise.</returns> |
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bool HasRsaEncryption(); |
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/// <summary>Return true if this TlsCrypto can support the passed in signature algorithm (not necessarily in |
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/// combination with EVERY hash algorithm).</summary> |
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/// <returns>true if signatureAlgorithm is supported, false otherwise.</returns> |
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bool HasSignatureAlgorithm(short signatureAlgorithm); |
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/// <summary>Return true if this TlsCrypto can support the passed in signature algorithm.</summary> |
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/// <param name="sigAndHashAlgorithm">the algorithm of interest.</param> |
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/// <returns>true if sigAndHashAlgorithm is supported, false otherwise.</returns> |
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bool HasSignatureAndHashAlgorithm(SignatureAndHashAlgorithm sigAndHashAlgorithm); |
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/// <summary>Return true if this TlsCrypto can support the passed in signature scheme.</summary> |
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/// <param name="signatureScheme">the scheme of interest.</param> |
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/// <returns>true if signatureScheme is supported, false otherwise.</returns> |
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bool HasSignatureScheme(int signatureScheme); |
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/// <summary>Return true if this TlsCrypto can support SRP authentication.</summary> |
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/// <returns>true if this instance can support SRP authentication, false otherwise.</returns> |
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bool HasSrpAuthentication(); |
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/// <summary>Create a TlsSecret object based on provided data.</summary> |
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/// <param name="data">the data to base the TlsSecret on.</param> |
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/// <returns>a TlsSecret based on the provided data.</returns> |
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TlsSecret CreateSecret(byte[] data); |
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/// <summary>Create a TlsSecret object containing a randomly-generated RSA PreMasterSecret</summary> |
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/// <param name="clientVersion">the client version to place in the first 2 bytes</param> |
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/// <returns>a TlsSecret containing the PreMasterSecret.</returns> |
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TlsSecret GenerateRsaPreMasterSecret(ProtocolVersion clientVersion); |
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/// <summary>Return the primary (safest) SecureRandom for this crypto.</summary> |
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/// <returns>a SecureRandom suitable for key generation.</returns> |
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SecureRandom SecureRandom { get; } |
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/// <summary>Create a TlsCertificate from an ASN.1 binary encoding of an X.509 certificate.</summary> |
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/// <param name="encoding">DER/BER encoding of the certificate of interest.</param> |
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/// <returns>a TlsCertificate.</returns> |
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/// <exception cref="IOException">if there is an issue on decoding or constructing the certificate.</exception> |
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TlsCertificate CreateCertificate(byte[] encoding); |
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/// <summary>Create a cipher for the specified encryption and MAC algorithms.</summary> |
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/// <remarks> |
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/// See enumeration classes <see cref="EncryptionAlgorithm"/>, <see cref="MacAlgorithm"/> for appropriate |
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/// argument values. |
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/// </remarks> |
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/// <param name="cryptoParams">context specific parameters.</param> |
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/// <param name="encryptionAlgorithm">the encryption algorithm to be employed by the cipher.</param> |
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/// <param name="macAlgorithm">the MAC algorithm to be employed by the cipher.</param> |
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/// <returns>a <see cref="TlsCipher"/> implementing the encryption and MAC algorithms.</returns> |
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/// <exception cref="IOException"/> |
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TlsCipher CreateCipher(TlsCryptoParameters cryptoParams, int encryptionAlgorithm, int macAlgorithm); |
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/// <summary>Create a domain object supporting the domain parameters described in dhConfig.</summary> |
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/// <param name="dhConfig">the config describing the DH parameters to use.</param> |
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/// <returns>a TlsDHDomain supporting the parameters in dhConfig.</returns> |
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TlsDHDomain CreateDHDomain(TlsDHConfig dhConfig); |
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/// <summary>Create a domain object supporting the domain parameters described in ecConfig.</summary> |
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/// <param name="ecConfig">the config describing the EC parameters to use.</param> |
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/// <returns>a TlsECDomain supporting the parameters in ecConfig.</returns> |
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TlsECDomain CreateECDomain(TlsECConfig ecConfig); |
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/// <summary>Adopt the passed in secret, creating a new copy of it.</summary> |
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/// <param name="secret">the secret to make a copy of.</param> |
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/// <returns>a TlsSecret based on the original secret.</returns> |
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TlsSecret AdoptSecret(TlsSecret secret); |
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/// <summary>Create a suitable hash for the hash algorithm identifier passed in.</summary> |
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/// <remarks> |
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/// See enumeration class <see cref="CryptoHashAlgorithm"/> for appropriate argument values. |
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/// </remarks> |
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/// <param name="cryptoHashAlgorithm">the hash algorithm the hash needs to implement.</param> |
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/// <returns>a <see cref="TlsHash"/>.</returns> |
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TlsHash CreateHash(int cryptoHashAlgorithm); |
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/// <summary>Create a suitable HMAC for the MAC algorithm identifier passed in.</summary> |
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/// <remarks> |
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/// See enumeration class <see cref="MacAlgorithm"/> for appropriate argument values. |
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/// </remarks> |
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/// <param name="macAlgorithm">the MAC algorithm the HMAC needs to match.</param> |
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/// <returns>a <see cref="TlsHmac"/>.</returns> |
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TlsHmac CreateHmac(int macAlgorithm); |
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/// <summary>Create a suitable HMAC using the hash algorithm identifier passed in.</summary> |
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/// <remarks> |
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/// See enumeration class <see cref="CryptoHashAlgorithm"/> for appropriate argument values. |
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/// </remarks> |
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/// <param name="cryptoHashAlgorithm">the hash algorithm the HMAC should use.</param> |
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/// <returns>a <see cref="TlsHmac"/>.</returns> |
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TlsHmac CreateHmacForHash(int cryptoHashAlgorithm); |
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/// <summary>Create a nonce generator.</summary> |
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/// <remarks> |
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/// Each call should construct a new generator, and the generator should be returned from this call only after |
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/// automatically seeding from this <see cref="TlsCrypto"/>'s entropy source, and from the provided additional |
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/// seed material. The output of each returned generator must be completely independent of the others. |
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/// </remarks> |
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/// <param name="additionalSeedMaterial">context-specific seed material</param> |
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/// <returns>a <see cref="TlsNonceGenerator"/>.</returns> |
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TlsNonceGenerator CreateNonceGenerator(byte[] additionalSeedMaterial); |
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/// <summary>Create an SRP-6 client.</summary> |
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/// <param name="srpConfig">client config.</param> |
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/// <returns>an initialised SRP6 client object.</returns> |
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TlsSrp6Client CreateSrp6Client(TlsSrpConfig srpConfig); |
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/// <summary>Create an SRP-6 server.</summary> |
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/// <param name="srpConfig">server config.</param> |
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/// <param name="srpVerifier">the SRP6 verifier value.</param> |
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/// <returns>an initialised SRP6 server object.</returns> |
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TlsSrp6Server CreateSrp6Server(TlsSrpConfig srpConfig, BigInteger srpVerifier); |
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/// <summary>Create an SRP-6 verifier generator.</summary> |
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/// <param name="srpConfig">generator config.</param> |
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/// <returns>an initialized SRP6 verifier generator.</returns> |
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TlsSrp6VerifierGenerator CreateSrp6VerifierGenerator(TlsSrpConfig srpConfig); |
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/// <summary>Setup an initial "secret" for a chain of HKDF calls (RFC 5869), containing a string of HashLen |
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/// zeroes.</summary> |
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/// <param name="cryptoHashAlgorithm">the hash algorithm to instantiate HMAC with. See |
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/// <see cref="CryptoHashAlgorithm"/> for values.</param> |
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TlsSecret HkdfInit(int cryptoHashAlgorithm); |
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} |
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} |
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#pragma warning restore |
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#endif
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