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https://github.com/nsacyber/HIRS.git
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Modified RIM details page controller to pass truststore certs to the RIM validator class. Modified the RIM validator class to log details when signature validation fails.
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6b612a9ec4
commit
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@ -35,13 +35,16 @@ import java.security.KeyStore;
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import java.security.NoSuchAlgorithmException;
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import java.security.PublicKey;
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import java.security.cert.CertificateException;
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import java.security.cert.X509Certificate;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.Collection;
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import java.util.Collections;
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import java.util.HashMap;
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import java.util.LinkedList;
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import java.util.List;
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import java.util.Map;
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import java.util.Set;
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import java.util.UUID;
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/**
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@ -303,6 +306,16 @@ public class ReferenceManifestDetailsPageController extends PageController<Refer
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for (Certificate certificate : certificates) {
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caCert = (CertificateAuthorityCredential) certificate;
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KeyStore keystore = ValidationService.getCaChain(caCert, caCertificateRepository);
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try {
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List<X509Certificate> truststore =
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convertCACsToX509Certificates(ValidationService.getCaChainRec(caCert,
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Collections.emptySet(),
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caCertificateRepository));
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RIM_VALIDATOR.setTrustStore(truststore);
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} catch (IOException e) {
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log.error("Error building CA chain for " + caCert.getSubjectKeyIdentifier() + ": "
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+ e.getMessage());
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}
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if (RIM_VALIDATOR.validateXmlSignature(caCert.getX509Certificate().getPublicKey(),
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caCert.getSubjectKeyIdString(), caCert.getEncodedPublicKey())) {
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try {
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@ -333,6 +346,20 @@ public class ReferenceManifestDetailsPageController extends PageController<Refer
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return data;
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}
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/**
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* This method converts a Set<CertificateAuthorityCredential> to a List<X509Certificate>.
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* @param set of CACs to convert
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* @return list of X509Certificates
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*/
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private static List<X509Certificate> convertCACsToX509Certificates(Set<CertificateAuthorityCredential> set)
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throws IOException {
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ArrayList<X509Certificate> certs = new ArrayList<>(set.size());
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for (CertificateAuthorityCredential cac : set) {
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certs.add(cac.getX509Certificate());
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}
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return certs;
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}
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/**
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* This method takes the place of an entire class for a string builder.
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* Gathers all information and returns it for displays.
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@ -8,6 +8,7 @@ import jakarta.xml.bind.Unmarshaller;
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import lombok.extern.log4j.Log4j2;
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import org.bouncycastle.asn1.x509.Extension;
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import org.bouncycastle.cert.jcajce.JcaX509ExtensionUtils;
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import org.bouncycastle.jcajce.provider.asymmetric.X509;
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import org.bouncycastle.jce.provider.BouncyCastleProvider;
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import org.w3c.dom.Document;
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import org.w3c.dom.Element;
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@ -23,6 +24,7 @@ import javax.xml.crypto.KeySelectorResult;
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import javax.xml.crypto.MarshalException;
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import javax.xml.crypto.XMLCryptoContext;
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import javax.xml.crypto.XMLStructure;
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import javax.xml.crypto.dsig.Reference;
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import javax.xml.crypto.dsig.XMLSignature;
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import javax.xml.crypto.dsig.XMLSignatureException;
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import javax.xml.crypto.dsig.XMLSignatureFactory;
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@ -154,12 +156,20 @@ public class ReferenceManifestValidator {
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/**
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* Setter for the truststore file path.
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* @param trustStoreFile the truststore
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* @param trustStoreFile the file path to reference
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*/
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public void setTrustStoreFile(String trustStoreFile) {
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this.trustStoreFile = trustStoreFile;
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}
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/**
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* Setter for truststore
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* @param trustStore the List of X509Certificates
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*/
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public void setTrustStore(List<X509Certificate> trustStore) {
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this.trustStore = trustStore;
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}
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/**
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* Setter for rimel file path.
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* @param rimEventLog the rimel file
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@ -220,8 +230,7 @@ public class ReferenceManifestValidator {
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X509Certificate embeddedCert = parseCertFromPEMString(
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certElement.item(0).getTextContent());
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if (embeddedCert != null) {
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if (Arrays.equals(embeddedCert.getPublicKey().getEncoded(),
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encodedPublicKey)) {
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if (isCertChainValid(embeddedCert)) {
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context = new DOMValidateContext(new X509KeySelector(), nodes.item(0));
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}
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}
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@ -375,7 +384,12 @@ public class ReferenceManifestValidator {
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try {
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XMLSignatureFactory sigFactory = XMLSignatureFactory.getInstance("DOM");
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XMLSignature signature = sigFactory.unmarshalXMLSignature(context);
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return signature.validate(context);
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boolean isValid = signature.validate(context);
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if (isValid) {
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return true;
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} else {
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whySignatureInvalid(signature, context);
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}
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} catch (MarshalException e) {
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log.warn("Error while unmarshalling XML signature: " + e.getMessage());
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} catch (XMLSignatureException e) {
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@ -385,6 +399,149 @@ public class ReferenceManifestValidator {
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return false;
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}
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/**
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* This method attempts to gather information on why a signature failed to validate.
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* The <SignatureValue> and each <Reference> is cryptographically validated and the
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* results are logged.
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*
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* @param signature the signature that failed to validate
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* @param context the context used for validation
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* @throws XMLSignatureException
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*/
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private void whySignatureInvalid(final XMLSignature signature, final DOMValidateContext context)
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throws XMLSignatureException{
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log.error("Verifying xml signature:");
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boolean cryptoValidity = signature.getSignatureValue().validate(context);
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if (cryptoValidity) {
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log.error("Signature value is valid.");
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} else {
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log.error("Signature value is invalid!");
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}
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Iterator itr = signature.getSignedInfo().getReferences().iterator();
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while (itr.hasNext()) {
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Reference reference = (Reference) itr.next();
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boolean refValidity = reference.validate(context);
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String refUri = reference.getURI();
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if (refUri.isEmpty()) {
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refUri = "whole document";
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}
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if (refValidity) {
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log.error("Reference for " + refUri + " is valid.");
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} else {
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log.error("Reference for " + refUri + " is invalid!");
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}
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}
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}
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/**
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* This method validates the cert chain for a given certificate. The truststore is iterated
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* over until a root CA is found, otherwise an error is returned.
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* @param cert the certificate at the start of the chain
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* @return true if the chain is valid
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* @throws Exception if a valid chain is not found in the truststore
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*/
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private boolean isCertChainValid(final X509Certificate cert)
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throws Exception {
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if (cert == null || trustStore == null) {
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throw new Exception("Null certificate or truststore received");
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} else if (trustStore.size() == 0) {
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throw new Exception("Truststore is empty");
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}
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final String INT_CA_ERROR = "Intermediate CA found, searching for root CA";
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String errorMessage = "";
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X509Certificate chainCert = cert;
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boolean isChainCertValid;
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do {
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isChainCertValid = false;
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log.error("Validating " + chainCert.getSubjectX500Principal().getName());
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for (X509Certificate trustedCert : trustStore) {
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boolean isIssuer = areYouMyIssuer(chainCert, trustedCert);
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boolean isSigner = areYouMySigner(chainCert, trustedCert);
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if (isIssuer && isSigner) {
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if (isSelfSigned(trustedCert)) {
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log.info("Root CA found.");
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return true;
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} else {
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chainCert = trustedCert;
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isChainCertValid = true;
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log.info("Intermediate CA found.");
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break;
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}
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} else {
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if (!isIssuer) {
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errorMessage = "Issuer cert not found";
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} else if (!isSigner) {
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errorMessage = "Signing cert not found";
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}
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}
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}
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} while (isChainCertValid);
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log.error("CA chain validation failed to validate "
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+ chainCert.getSubjectX500Principal().getName());
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return false;
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}
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/**
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* This method checks if cert's issuerDN matches issuer's subjectDN.
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* @param cert the signed certificate
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* @param issuer the signing certificate
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* @return true if they match, false if not
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* @throws Exception if either argument is null
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*/
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private boolean areYouMyIssuer(final X509Certificate cert, final X509Certificate issuer)
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throws Exception {
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if (cert == null || issuer == null) {
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throw new Exception("Cannot verify issuer, null certificate received");
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}
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X500Principal issuerDN = new X500Principal(cert.getIssuerX500Principal().getName());
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return issuer.getSubjectX500Principal().equals(issuerDN);
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}
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/**
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* This method checks if cert's signature matches signer's public key.
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* @param cert the signed certificate
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* @param signer the signing certificate
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* @return true if they match
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* @throws Exception if an error occurs or there is no match
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*/
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private boolean areYouMySigner(final X509Certificate cert, final X509Certificate signer)
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throws Exception {
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if (cert == null || signer == null) {
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throw new Exception("Cannot verify signature, null certificate received");
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}
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try {
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cert.verify(signer.getPublicKey(), BouncyCastleProvider.PROVIDER_NAME);
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return true;
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} catch (NoSuchAlgorithmException e) {
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throw new Exception("Signing algorithm in signing cert not supported");
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} catch (InvalidKeyException e) {
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throw new Exception("Signing certificate key does not match signature");
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} catch (NoSuchProviderException e) {
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throw new Exception("Error with BouncyCastleProvider: " + e.getMessage());
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} catch (SignatureException e) {
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String error = "Error with signature: " + e.getMessage()
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+ System.lineSeparator()
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+ "Certificate needed for verification is missing: "
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+ signer.getSubjectX500Principal().getName();
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log.error(error);
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} catch (CertificateException e) {
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throw new Exception("Encoding error: " + e.getMessage());
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}
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return false;
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}
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/**
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* This method checks if a given certificate is self signed or not.
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* @param cert the cert to check
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* @return true if self signed, false if not
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*/
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private boolean isSelfSigned(final X509Certificate cert) {
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return cert.getIssuerX500Principal().equals(cert.getSubjectX500Principal());
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}
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/**
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* This internal class handles selecting an X509 certificate embedded in a KeyInfo element.
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* It is passed as a parameter to a DOMValidateContext that uses it to validate
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@ -474,106 +631,6 @@ public class ReferenceManifestValidator {
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&& name.equalsIgnoreCase("RSA");
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}
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/**
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* This method validates the cert chain for a given certificate. The truststore is iterated
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* over until a root CA is found, otherwise an error is returned.
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* @param cert the certificate at the start of the chain
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* @return true if the chain is valid
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* @throws Exception if a valid chain is not found in the truststore
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*/
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private boolean isCertChainValid(final X509Certificate cert)
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throws Exception {
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if (cert == null || trustStore == null) {
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throw new Exception("Null certificate or truststore received");
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} else if (trustStore.size() == 0) {
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throw new Exception("Truststore is empty");
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}
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final String INT_CA_ERROR = "Intermediate CA found, searching for root CA";
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String errorMessage = "";
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X509Certificate startOfChain = cert;
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do {
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for (X509Certificate trustedCert : trustStore) {
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boolean isIssuer = areYouMyIssuer(startOfChain, trustedCert);
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boolean isSigner = areYouMySigner(startOfChain, trustedCert);
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if (isIssuer && isSigner) {
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if (isSelfSigned(trustedCert)) {
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return true;
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} else {
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startOfChain = trustedCert;
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errorMessage = INT_CA_ERROR;
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break;
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}
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} else {
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if (!isIssuer) {
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errorMessage = "Issuer cert not found";
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} else if (!isSigner) {
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errorMessage = "Signing cert not found";
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}
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}
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}
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} while (errorMessage.equals(INT_CA_ERROR));
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throw new Exception("Error while validating cert chain: " + errorMessage);
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}
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/**
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* This method checks if cert's issuerDN matches issuer's subjectDN.
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* @param cert the signed certificate
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* @param issuer the signing certificate
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* @return true if they match, false if not
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* @throws Exception if either argument is null
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*/
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private boolean areYouMyIssuer(final X509Certificate cert, final X509Certificate issuer)
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throws Exception {
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if (cert == null || issuer == null) {
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throw new Exception("Cannot verify issuer, null certificate received");
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}
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X500Principal issuerDN = new X500Principal(cert.getIssuerX500Principal().getName());
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return issuer.getSubjectX500Principal().equals(issuerDN);
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}
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/**
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* This method checks if cert's signature matches signer's public key.
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* @param cert the signed certificate
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* @param signer the signing certificate
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* @return true if they match
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* @throws Exception if an error occurs or there is no match
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*/
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private boolean areYouMySigner(final X509Certificate cert, final X509Certificate signer)
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throws Exception {
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if (cert == null || signer == null) {
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throw new Exception("Cannot verify signature, null certificate received");
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}
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try {
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cert.verify(signer.getPublicKey(), BouncyCastleProvider.PROVIDER_NAME);
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return true;
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} catch (NoSuchAlgorithmException e) {
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throw new Exception("Signing algorithm in signing cert not supported");
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} catch (InvalidKeyException e) {
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throw new Exception("Signing certificate key does not match signature");
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} catch (NoSuchProviderException e) {
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throw new Exception("Error with BouncyCastleProvider: " + e.getMessage());
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} catch (SignatureException e) {
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String error = "Error with signature: " + e.getMessage()
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+ System.lineSeparator()
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+ "Certificate needed for verification is missing: "
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+ signer.getSubjectX500Principal().getName();
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throw new Exception(error);
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} catch (CertificateException e) {
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throw new Exception("Encoding error: " + e.getMessage());
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}
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}
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/**
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* This method checks if a given certificate is self signed or not.
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* @param cert the cert to check
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* @return true if self signed, false if not
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*/
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private boolean isSelfSigned(final X509Certificate cert) {
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return cert.getIssuerX500Principal().equals(cert.getSubjectX500Principal());
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}
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/**
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* This method compares a public key against those in the truststore.
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* @param pk a public key
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