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126 lines
4.4 KiB
126 lines
4.4 KiB
1 year ago
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#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 BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities;
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Tls.Crypto.Impl
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{
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/// <summary>A generic TLS MAC implementation, acting as an HMAC based on some underlying Digest.</summary>
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public class TlsSuiteHmac
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: TlsSuiteMac
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{
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protected static int GetMacSize(TlsCryptoParameters cryptoParams, TlsMac mac)
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{
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int macSize = mac.MacLength;
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if (cryptoParams.SecurityParameters.IsTruncatedHmac)
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{
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macSize = System.Math.Min(macSize, 10);
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}
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return macSize;
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}
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protected readonly TlsCryptoParameters m_cryptoParams;
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protected readonly TlsHmac m_mac;
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protected readonly int m_digestBlockSize;
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protected readonly int m_digestOverhead;
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protected readonly int m_macSize;
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/// <summary>Generate a new instance of a TlsMac.</summary>
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/// <param name="cryptoParams">the TLS client context specific crypto parameters.</param>
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/// <param name="mac">The MAC to use.</param>
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public TlsSuiteHmac(TlsCryptoParameters cryptoParams, TlsHmac mac)
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{
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this.m_cryptoParams = cryptoParams;
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this.m_mac = mac;
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this.m_macSize = GetMacSize(cryptoParams, mac);
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this.m_digestBlockSize = mac.InternalBlockSize;
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// TODO This should check the actual algorithm, not assume based on the digest size
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if (TlsImplUtilities.IsSsl(cryptoParams) && mac.MacLength == 20)
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{
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/*
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* NOTE: For the SSL 3.0 MAC with SHA-1, the secret + input pad is not block-aligned.
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*/
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this.m_digestOverhead = 4;
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}
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else
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{
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this.m_digestOverhead = m_digestBlockSize / 8;
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}
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}
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public virtual int Size
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{
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get { return m_macSize; }
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}
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public virtual byte[] CalculateMac(long seqNo, short type, byte[] msg, int msgOff, int msgLen)
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{
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ProtocolVersion serverVersion = m_cryptoParams.ServerVersion;
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bool isSsl = serverVersion.IsSsl;
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byte[] macHeader = new byte[isSsl ? 11 : 13];
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TlsUtilities.WriteUint64(seqNo, macHeader, 0);
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TlsUtilities.WriteUint8(type, macHeader, 8);
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if (!isSsl)
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{
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TlsUtilities.WriteVersion(serverVersion, macHeader, 9);
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}
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TlsUtilities.WriteUint16(msgLen, macHeader, macHeader.Length - 2);
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m_mac.Update(macHeader, 0, macHeader.Length);
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m_mac.Update(msg, msgOff, msgLen);
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return Truncate(m_mac.CalculateMac());
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}
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public virtual byte[] CalculateMacConstantTime(long seqNo, short type, byte[] msg, int msgOff, int msgLen,
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int fullLength, byte[] dummyData)
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{
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/*
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* Actual MAC only calculated on 'length' bytes...
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*/
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byte[] result = CalculateMac(seqNo, type, msg, msgOff, msgLen);
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/*
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* ...but ensure a constant number of complete digest blocks are processed (as many as would
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* be needed for 'fullLength' bytes of input).
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*/
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int headerLength = TlsImplUtilities.IsSsl(m_cryptoParams) ? 11 : 13;
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// How many extra full blocks do we need to calculate?
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int extra = GetDigestBlockCount(headerLength + fullLength) - GetDigestBlockCount(headerLength + msgLen);
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while (--extra >= 0)
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{
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m_mac.Update(dummyData, 0, m_digestBlockSize);
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}
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// One more byte in case the implementation is "lazy" about processing blocks
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m_mac.Update(dummyData, 0, 1);
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m_mac.Reset();
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return result;
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}
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protected virtual int GetDigestBlockCount(int inputLength)
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{
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// NOTE: The input pad for HMAC is always a full digest block
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// NOTE: This calculation assumes a minimum of 1 pad byte
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return (inputLength + m_digestOverhead) / m_digestBlockSize;
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}
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protected virtual byte[] Truncate(byte[] bs)
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{
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if (bs.Length <= m_macSize)
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return bs;
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return Arrays.CopyOf(bs, m_macSize);
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}
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}
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}
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#pragma warning restore
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#endif
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