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package org.bouncycastle.tls;
import org.bouncycastle.tls.crypto.CryptoHashAlgorithm;
import org.bouncycastle.tls.crypto.TlsCrypto;
import org.bouncycastle.tls.crypto.TlsHash;
import org.bouncycastle.util.Arrays;
/**
* A combined hash, which implements md5(m) || sha1(m).
*/
public class CombinedHash
implements TlsHash
{
protected TlsContext context;
protected TlsCrypto crypto;
protected TlsHash md5;
protected TlsHash sha1;
CombinedHash(TlsContext context, TlsHash md5, TlsHash sha1)
{
this.context = context;
this.crypto = context.getCrypto();
this.md5 = md5;
this.sha1 = sha1;
}
public CombinedHash(TlsCrypto crypto)
{
this.crypto = crypto;
this.md5 = crypto.createHash(CryptoHashAlgorithm.md5);
this.sha1 = crypto.createHash(CryptoHashAlgorithm.sha1);
}
public CombinedHash(CombinedHash t)
{
this.context = t.context;
this.crypto = t.crypto;
this.md5 = t.md5.cloneHash();
this.sha1 = t.sha1.cloneHash();
}
public void update(byte[] input, int inOff, int len)
{
md5.update(input, inOff, len);
sha1.update(input, inOff, len);
}
public byte[] calculateHash()
{
if (null != context && TlsUtils.isSSL(context))
{
SSL3Utils.completeCombinedHash(context, md5, sha1);
}
return Arrays.concatenate(md5.calculateHash(), sha1.calculateHash());
}
public TlsHash cloneHash()
{
return new CombinedHash(this);
}
public void reset()
{
md5.reset();
sha1.reset();
}
}