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134
Assets/BestHTTP/SecureProtocol/crypto/signers/GenericSigner.cs
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134
Assets/BestHTTP/SecureProtocol/crypto/signers/GenericSigner.cs
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#if !BESTHTTP_DISABLE_ALTERNATE_SSL && (!UNITY_WEBGL || UNITY_EDITOR)
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using System;
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using Org.BouncyCastle.Crypto.Parameters;
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using Org.BouncyCastle.Security;
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using Org.BouncyCastle.Utilities;
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namespace Org.BouncyCastle.Crypto.Signers
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{
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public class GenericSigner
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: ISigner
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{
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private readonly IAsymmetricBlockCipher engine;
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private readonly IDigest digest;
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private bool forSigning;
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public GenericSigner(
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IAsymmetricBlockCipher engine,
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IDigest digest)
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{
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this.engine = engine;
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this.digest = digest;
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}
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public virtual string AlgorithmName
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{
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get { return "Generic(" + engine.AlgorithmName + "/" + digest.AlgorithmName + ")"; }
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}
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/**
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* initialise the signer for signing or verification.
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*
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* @param forSigning
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* true if for signing, false otherwise
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* @param parameters
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* necessary parameters.
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*/
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public virtual void Init(bool forSigning, ICipherParameters parameters)
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{
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this.forSigning = forSigning;
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AsymmetricKeyParameter k;
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if (parameters is ParametersWithRandom)
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{
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k = (AsymmetricKeyParameter)((ParametersWithRandom)parameters).Parameters;
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}
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else
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{
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k = (AsymmetricKeyParameter)parameters;
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}
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if (forSigning && !k.IsPrivate)
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throw new InvalidKeyException("Signing requires private key.");
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if (!forSigning && k.IsPrivate)
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throw new InvalidKeyException("Verification requires public key.");
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Reset();
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engine.Init(forSigning, parameters);
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}
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/**
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* update the internal digest with the byte b
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*/
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public virtual void Update(byte input)
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{
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digest.Update(input);
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}
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/**
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* update the internal digest with the byte array in
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*/
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public virtual void BlockUpdate(byte[] input, int inOff, int length)
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{
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digest.BlockUpdate(input, inOff, length);
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}
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/**
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* Generate a signature for the message we've been loaded with using the key
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* we were initialised with.
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*/
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public virtual byte[] GenerateSignature()
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{
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if (!forSigning)
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throw new InvalidOperationException("GenericSigner not initialised for signature generation.");
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byte[] hash = new byte[digest.GetDigestSize()];
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digest.DoFinal(hash, 0);
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return engine.ProcessBlock(hash, 0, hash.Length);
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}
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/**
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* return true if the internal state represents the signature described in
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* the passed in array.
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*/
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public virtual bool VerifySignature(byte[] signature)
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{
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if (forSigning)
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throw new InvalidOperationException("GenericSigner not initialised for verification");
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byte[] hash = new byte[digest.GetDigestSize()];
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digest.DoFinal(hash, 0);
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try
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{
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byte[] sig = engine.ProcessBlock(signature, 0, signature.Length);
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// Extend with leading zeroes to match the digest size, if necessary.
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if (sig.Length < hash.Length)
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{
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byte[] tmp = new byte[hash.Length];
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Array.Copy(sig, 0, tmp, tmp.Length - sig.Length, sig.Length);
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sig = tmp;
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}
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return Arrays.ConstantTimeAreEqual(sig, hash);
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}
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catch (Exception)
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{
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return false;
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}
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}
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public virtual void Reset()
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{
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digest.Reset();
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}
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}
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}
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#endif
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