use of sun.security.x509.X500Name in project candlepin by candlepin.
the class X509CRLStreamWriterTest method setUp.
@Before
public void setUp() throws Exception {
issuer = new X500Name("CN=Test Issuer");
generator = KeyPairGenerator.getInstance("RSA");
generator.initialize(2048);
keyPair = generator.generateKeyPair();
signer = new JcaContentSignerBuilder("SHA256WithRSAEncryption").setProvider(BC_PROVIDER).build(keyPair.getPrivate());
outfile = new File(folder.getRoot(), "new.crl");
Security.addProvider(BC_PROVIDER);
}
use of sun.security.x509.X500Name in project candlepin by candlepin.
the class BouncyCastlePKIUtility method createX509Certificate.
@Override
public X509Certificate createX509Certificate(String dn, Set<X509ExtensionWrapper> extensions, Set<X509ByteExtensionWrapper> byteExtensions, Date startDate, Date endDate, KeyPair clientKeyPair, BigInteger serialNumber, String alternateName) throws GeneralSecurityException, IOException {
X509Certificate caCert = reader.getCACert();
byte[] publicKeyEncoded = clientKeyPair.getPublic().getEncoded();
X509v3CertificateBuilder certGen = new X509v3CertificateBuilder(X500Name.getInstance(caCert.getSubjectX500Principal().getEncoded()), serialNumber, startDate, endDate, new X500Name(dn), SubjectPublicKeyInfo.getInstance(publicKeyEncoded));
// set key usage - required for proper x509 function
KeyUsage keyUsage = new KeyUsage(KeyUsage.digitalSignature | KeyUsage.keyEncipherment | KeyUsage.dataEncipherment);
// add SSL extensions - required for proper x509 function
NetscapeCertType certType = new NetscapeCertType(NetscapeCertType.sslClient | NetscapeCertType.smime);
certGen.addExtension(MiscObjectIdentifiers.netscapeCertType, false, certType);
certGen.addExtension(Extension.keyUsage, false, keyUsage);
JcaX509ExtensionUtils extensionUtil = new JcaX509ExtensionUtils();
AuthorityKeyIdentifier aki = extensionUtil.createAuthorityKeyIdentifier(caCert);
certGen.addExtension(Extension.authorityKeyIdentifier, false, aki.getEncoded());
certGen.addExtension(Extension.subjectKeyIdentifier, false, subjectKeyWriter.getSubjectKeyIdentifier(clientKeyPair, extensions));
certGen.addExtension(Extension.extendedKeyUsage, false, new ExtendedKeyUsage(KeyPurposeId.id_kp_clientAuth));
// Add an additional alternative name if provided.
if (alternateName != null) {
/*
Why add the certificate subject again as an alternative name? RFC 6125 Section 6.4.4
stipulates that if SANs are provided, a validator MUST use them instead of the certificate
subject. If no SANs are present, the RFC allows the validator to use the subject field. So,
if we do have an SAN to add, we need to add the subject field again as an SAN.
See http://stackoverflow.com/questions/5935369 and
https://tools.ietf.org/html/rfc6125#section-6.4.4 and
NB: These extensions should *not* be marked critical since the subject field is not empty.
*/
GeneralName subject = new GeneralName(GeneralName.directoryName, dn);
GeneralName name = new GeneralName(GeneralName.directoryName, "CN=" + alternateName);
ASN1Encodable[] altNameArray = { subject, name };
GeneralNames altNames = GeneralNames.getInstance(new DERSequence(altNameArray));
certGen.addExtension(Extension.subjectAlternativeName, false, altNames);
}
if (extensions != null) {
for (X509ExtensionWrapper wrapper : extensions) {
// Bouncycastle hates null values. So, set them to blank
// if they are null
String value = wrapper.getValue() == null ? "" : wrapper.getValue();
certGen.addExtension(wrapper.toASN1Primitive(), wrapper.isCritical(), new DERUTF8String(value));
}
}
if (byteExtensions != null) {
for (X509ByteExtensionWrapper wrapper : byteExtensions) {
// Bouncycastle hates null values. So, set them to blank
// if they are null
byte[] value = wrapper.getValue() == null ? new byte[0] : wrapper.getValue();
certGen.addExtension(wrapper.toASN1Primitive(), wrapper.isCritical(), new DEROctetString(value));
}
}
JcaContentSignerBuilder builder = new JcaContentSignerBuilder(SIGNATURE_ALGO).setProvider(BC_PROVIDER);
ContentSigner signer;
try {
signer = builder.build(reader.getCaKey());
} catch (OperatorCreationException e) {
throw new IOException(e);
}
// Generate the certificate
return new JcaX509CertificateConverter().getCertificate(certGen.build(signer));
}
use of sun.security.x509.X500Name in project credhub by cloudfoundry-incubator.
the class UserContext method parseAppIdentifier.
private String parseAppIdentifier(String subjectDn) {
final X500Name dnName = new X500Name(subjectDn);
final RDN[] rdNs = dnName.getRDNs(BCStyle.OU);
return rdNs[0].getFirst().getValue().toString();
}
use of sun.security.x509.X500Name in project credhub by cloudfoundry-incubator.
the class CertificateGeneratorTest method beforeEach.
@Before
public void beforeEach() throws Exception {
TestHelper.getBouncyCastleProvider();
keyGenerator = mock(LibcryptoRsaKeyPairGenerator.class);
signedCertificateGenerator = mock(SignedCertificateGenerator.class);
certificateAuthorityService = mock(CertificateAuthorityService.class);
permissionCheckingService = mock(PermissionCheckingService.class);
userContext = mock(UserContext.class);
subject = new CertificateGenerator(keyGenerator, signedCertificateGenerator, certificateAuthorityService);
when(permissionCheckingService.hasPermission(anyString(), anyString(), any())).thenReturn(true);
fakeKeyPairGenerator = new FakeKeyPairGenerator();
rootCaDn = new X500Name("O=foo,ST=bar,C=root");
signeeDn = new X500Name("O=foo,ST=bar,C=mars");
rootCaKeyPair = fakeKeyPairGenerator.generate();
X509CertificateHolder caX509CertHolder = makeCert(rootCaKeyPair, rootCaKeyPair.getPrivate(), rootCaDn, rootCaDn, true);
rootCaX509Certificate = new JcaX509CertificateConverter().setProvider(BouncyCastleProvider.PROVIDER_NAME).getCertificate(caX509CertHolder);
rootCa = new CertificateCredentialValue(null, CertificateFormatter.pemOf(rootCaX509Certificate), CertificateFormatter.pemOf(rootCaKeyPair.getPrivate()), null);
generationParameters = new CertificateGenerationRequestParameters();
generationParameters.setOrganization("foo");
generationParameters.setState("bar");
generationParameters.setCaName("my-ca-name");
generationParameters.setCountry("mars");
generationParameters.setDuration(365);
inputParameters = new CertificateGenerationParameters(generationParameters);
}
use of sun.security.x509.X500Name in project jruby-openssl by jruby.
the class X509CRL method sign.
@JRubyMethod
public IRubyObject sign(final ThreadContext context, final IRubyObject key, IRubyObject digest) {
final Ruby runtime = context.runtime;
final String signatureAlgorithm = getSignatureAlgorithm(runtime, (PKey) key, (Digest) digest);
final X500Name issuerName = ((X509Name) issuer).getX500Name();
final java.util.Date thisUpdate = getLastUpdate().toDate();
final X509v2CRLBuilder generator = new X509v2CRLBuilder(issuerName, thisUpdate);
final java.util.Date nextUpdate = getNextUpdate().toDate();
generator.setNextUpdate(nextUpdate);
if (revoked != null) {
for (int i = 0; i < revoked.size(); i++) {
final X509Revoked rev = (X509Revoked) revoked.entry(i);
BigInteger serial = new BigInteger(rev.callMethod(context, "serial").toString());
RubyTime t1 = (RubyTime) rev.callMethod(context, "time").callMethod(context, "getutc");
t1.setMicroseconds(0);
final Extensions revExts;
if (rev.hasExtensions()) {
final RubyArray exts = rev.extensions();
final ASN1Encodable[] array = new ASN1Encodable[exts.size()];
for (int j = 0; j < exts.size(); j++) {
final X509Extension ext = (X509Extension) exts.entry(j);
try {
array[j] = ext.toASN1Sequence();
} catch (IOException e) {
throw newCRLError(runtime, e);
}
}
revExts = Extensions.getInstance(new DERSequence(array));
} else {
revExts = null;
}
generator.addCRLEntry(serial, t1.getJavaDate(), revExts);
}
}
try {
for (int i = 0; i < extensions.size(); i++) {
X509Extension ext = (X509Extension) extensions.entry(i);
ASN1Encodable value = ext.getRealValue();
generator.addExtension(ext.getRealObjectID(), ext.isRealCritical(), value);
}
} catch (IOException e) {
throw newCRLError(runtime, e);
}
final PrivateKey privateKey = ((PKey) key).getPrivateKey();
try {
if (avoidJavaSecurity) {
// NOT IMPLEMENTED
} else {
// crl = generator.generate(((PKey) key).getPrivateKey());
}
/*
AlgorithmIdentifier keyAldID = new AlgorithmIdentifier(new ASN1ObjectIdentifier(keyAlg));
AlgorithmIdentifier digAldID = new AlgorithmIdentifier(new ASN1ObjectIdentifier(digAlg));
final BcContentSignerBuilder signerBuilder;
final AsymmetricKeyParameter signerPrivateKey;
if ( isDSA ) {
signerBuilder = new BcDSAContentSignerBuilder(keyAldID, digAldID);
DSAPrivateKey privateKey = (DSAPrivateKey) ((PKey) key).getPrivateKey();
DSAParameters params = new DSAParameters(
privateKey.getParams().getP(),
privateKey.getParams().getQ(),
privateKey.getParams().getG()
);
signerPrivateKey = new DSAPrivateKeyParameters(privateKey.getX(), params);
}
*/
ContentSigner signer = new JcaContentSignerBuilder(signatureAlgorithm).build(privateKey);
this.crlHolder = generator.build(signer);
this.crl = null;
} catch (IllegalStateException e) {
debugStackTrace(e);
throw newCRLError(runtime, e);
} catch (Exception e) {
debugStackTrace(e);
throw newCRLError(runtime, e.getMessage());
}
final ASN1Primitive crlVal = getCRLValue(runtime);
ASN1Sequence v1 = (ASN1Sequence) (((ASN1Sequence) crlVal).getObjectAt(0));
final ASN1EncodableVector build1 = new ASN1EncodableVector();
int copyIndex = 0;
if (v1.getObjectAt(0) instanceof ASN1Integer)
copyIndex++;
build1.add(new ASN1Integer(new BigInteger(version.toString())));
while (copyIndex < v1.size()) {
build1.add(v1.getObjectAt(copyIndex++));
}
final ASN1EncodableVector build2 = new ASN1EncodableVector();
build2.add(new DLSequence(build1));
build2.add(((ASN1Sequence) crlVal).getObjectAt(1));
build2.add(((ASN1Sequence) crlVal).getObjectAt(2));
this.crlValue = new DLSequence(build2);
changed = false;
return this;
}
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