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The Bouncy Castle Java APIs for the TLS, including a JSSE provider. The APIs are designed primarily to be used in conjunction with the BC LTS provider but may also be used with other providers providing cryptographic services.
package org.bouncycastle.tls;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.io.InputStream;
import java.io.OutputStream;
import org.bouncycastle.tls.crypto.TlsAgreement;
import org.bouncycastle.tls.crypto.TlsECConfig;
import org.bouncycastle.tls.crypto.TlsSecret;
/**
* (D)TLS ECDH_anon key exchange (see RFC 4492).
*/
public class TlsECDHanonKeyExchange
extends AbstractTlsKeyExchange
{
private static int checkKeyExchange(int keyExchange)
{
switch (keyExchange)
{
case KeyExchangeAlgorithm.ECDH_anon:
return keyExchange;
default:
throw new IllegalArgumentException("unsupported key exchange algorithm");
}
}
protected TlsECConfig ecConfig;
protected TlsAgreement agreement;
public TlsECDHanonKeyExchange(int keyExchange)
{
this(keyExchange, null);
}
public TlsECDHanonKeyExchange(int keyExchange, TlsECConfig ecConfig)
{
super(checkKeyExchange(keyExchange));
this.ecConfig = ecConfig;
}
public void skipServerCredentials() throws IOException
{
}
public void processServerCredentials(TlsCredentials serverCredentials) throws IOException
{
throw new TlsFatalAlert(AlertDescription.internal_error);
}
public void processServerCertificate(Certificate serverCertificate) throws IOException
{
throw new TlsFatalAlert(AlertDescription.unexpected_message);
}
public boolean requiresServerKeyExchange()
{
return true;
}
public byte[] generateServerKeyExchange() throws IOException
{
ByteArrayOutputStream buf = new ByteArrayOutputStream();
TlsECCUtils.writeECConfig(ecConfig, buf);
this.agreement = context.getCrypto().createECDomain(ecConfig).createECDH();
generateEphemeral(buf);
return buf.toByteArray();
}
public void processServerKeyExchange(InputStream input) throws IOException
{
this.ecConfig = TlsECCUtils.receiveECDHConfig(context, input);
byte[] point = TlsUtils.readOpaque8(input, 1);
this.agreement = context.getCrypto().createECDomain(ecConfig).createECDH();
processEphemeral(point);
}
public short[] getClientCertificateTypes()
{
return null;
}
public void processClientCredentials(TlsCredentials clientCredentials) throws IOException
{
throw new TlsFatalAlert(AlertDescription.internal_error);
}
public void generateClientKeyExchange(OutputStream output) throws IOException
{
generateEphemeral(output);
}
public void processClientCertificate(Certificate clientCertificate) throws IOException
{
throw new TlsFatalAlert(AlertDescription.unexpected_message);
}
public void processClientKeyExchange(InputStream input) throws IOException
{
byte[] point = TlsUtils.readOpaque8(input, 1);
processEphemeral(point);
}
public TlsSecret generatePreMasterSecret() throws IOException
{
return agreement.calculateSecret();
}
protected void generateEphemeral(OutputStream output) throws IOException
{
byte[] point = agreement.generateEphemeral();
TlsUtils.writeOpaque8(point, output);
}
protected void processEphemeral(byte[] point) throws IOException
{
TlsECCUtils.checkPointEncoding(ecConfig.getNamedGroup(), point);
this.agreement.receivePeerValue(point);
}
}
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