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The Bouncy Castle Crypto package is a Java implementation of cryptographic algorithms. This jar contains JCE provider and lightweight API for the Bouncy Castle Cryptography APIs for JDK 1.4.
package org.bouncycastle.pqc.crypto.util;
import java.io.IOException;
import org.bouncycastle.asn1.ASN1Set;
import org.bouncycastle.asn1.DEROctetString;
import org.bouncycastle.asn1.pkcs.PrivateKeyInfo;
import org.bouncycastle.asn1.x509.AlgorithmIdentifier;
import org.bouncycastle.crypto.params.AsymmetricKeyParameter;
import org.bouncycastle.pqc.asn1.PQCObjectIdentifiers;
import org.bouncycastle.pqc.asn1.SPHINCS256KeyParams;
import org.bouncycastle.pqc.crypto.newhope.NHPrivateKeyParameters;
import org.bouncycastle.pqc.crypto.qtesla.QTESLAPrivateKeyParameters;
import org.bouncycastle.pqc.crypto.sphincs.SPHINCSPrivateKeyParameters;
import org.bouncycastle.util.Pack;
/**
* Factory to create ASN.1 private key info objects from lightweight private keys.
*/
public class PrivateKeyInfoFactory
{
private PrivateKeyInfoFactory()
{
}
/**
* Create a PrivateKeyInfo representation of a private key.
*
* @param privateKey the key to be encoded into the info object.
* @return the appropriate PrivateKeyInfo
* @throws java.io.IOException on an error encoding the key
*/
public static PrivateKeyInfo createPrivateKeyInfo(AsymmetricKeyParameter privateKey) throws IOException
{
return createPrivateKeyInfo(privateKey, null);
}
/**
* Create a PrivateKeyInfo representation of a private key with attributes.
*
* @param privateKey the key to be encoded into the info object.
* @param attributes the set of attributes to be included.
* @return the appropriate PrivateKeyInfo
* @throws java.io.IOException on an error encoding the key
*/
public static PrivateKeyInfo createPrivateKeyInfo(AsymmetricKeyParameter privateKey, ASN1Set attributes) throws IOException
{
if (privateKey instanceof QTESLAPrivateKeyParameters)
{
QTESLAPrivateKeyParameters keyParams = (QTESLAPrivateKeyParameters)privateKey;
AlgorithmIdentifier algorithmIdentifier = Utils.qTeslaLookupAlgID(keyParams.getSecurityCategory());
return new PrivateKeyInfo(algorithmIdentifier, new DEROctetString(keyParams.getSecret()), attributes);
}
else if (privateKey instanceof SPHINCSPrivateKeyParameters)
{
SPHINCSPrivateKeyParameters params = (SPHINCSPrivateKeyParameters)privateKey;
AlgorithmIdentifier algorithmIdentifier = new AlgorithmIdentifier(PQCObjectIdentifiers.sphincs256,
new SPHINCS256KeyParams(Utils.sphincs256LookupTreeAlgID(params.getTreeDigest())));
return new PrivateKeyInfo(algorithmIdentifier, new DEROctetString(params.getKeyData()));
}
else if (privateKey instanceof NHPrivateKeyParameters)
{
NHPrivateKeyParameters params = (NHPrivateKeyParameters)privateKey;
AlgorithmIdentifier algorithmIdentifier = new AlgorithmIdentifier(PQCObjectIdentifiers.newHope);
short[] privateKeyData = params.getSecData();
byte[] octets = new byte[privateKeyData.length * 2];
for (int i = 0; i != privateKeyData.length; i++)
{
Pack.shortToLittleEndian(privateKeyData[i], octets, i * 2);
}
return new PrivateKeyInfo(algorithmIdentifier, new DEROctetString(octets));
}
else
{
throw new IOException("key parameters not recognized");
}
}
}
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