org.bouncycastle.crypto.general.GuardedSignatureOperatorUsingSecureRandomFactory Maven / Gradle / Ivy
Go to download
Show more of this group Show more artifacts with this name
Show all versions of bc-fips Show documentation
Show all versions of bc-fips Show documentation
The FIPS 140-3 Bouncy Castle Crypto package is a Java implementation of cryptographic algorithms certified to FIPS 140-3 level 1. This jar contains JCE provider and low-level API for the BC-FJA version 2.0.0, FIPS Certificate #4743. Please see certificate for certified platform details.
package org.bouncycastle.crypto.general;
import org.bouncycastle.crypto.AsymmetricPrivateKey;
import org.bouncycastle.crypto.AsymmetricPublicKey;
import org.bouncycastle.crypto.CryptoServicesRegistrar;
import org.bouncycastle.crypto.OutputSignerUsingSecureRandom;
import org.bouncycastle.crypto.OutputVerifier;
import org.bouncycastle.crypto.Parameters;
import org.bouncycastle.crypto.SignatureOperatorFactory;
import org.bouncycastle.crypto.fips.FipsStatus;
import org.bouncycastle.crypto.fips.FipsUnapprovedOperationError;
abstract class GuardedSignatureOperatorUsingSecureRandomFactory
implements SignatureOperatorFactory
{
// package protect constructor
GuardedSignatureOperatorUsingSecureRandomFactory()
{
FipsStatus.isReady();
if (CryptoServicesRegistrar.isInApprovedOnlyMode())
{
throw new FipsUnapprovedOperationError("Attempt to create unapproved factory in approved only mode");
}
}
public final OutputSignerUsingSecureRandom createSigner(AsymmetricPrivateKey key, T parameters)
{
if (CryptoServicesRegistrar.isInApprovedOnlyMode())
{
throw new FipsUnapprovedOperationError("Attempt to create unapproved algorithm in approved only mode", parameters.getAlgorithm());
}
return doCreateSigner(key, parameters);
}
public final OutputVerifier createVerifier(AsymmetricPublicKey key, T parameters)
{
if (CryptoServicesRegistrar.isInApprovedOnlyMode())
{
throw new FipsUnapprovedOperationError("Attempt to create unapproved algorithm in approved only mode", parameters.getAlgorithm());
}
return doCreateVerifier(key, parameters);
}
protected abstract OutputSignerUsingSecureRandom doCreateSigner(AsymmetricPrivateKey key, T parameter);
protected abstract OutputVerifier doCreateVerifier(AsymmetricPublicKey key, T parameter);
}