open-keychain/OpenKeychain/src/main/java/org/sufficientlysecure/keychain/pgp/OpenPgpSignatureResultBuilder.java

107 lines
3.6 KiB
Java

/*
* Copyright (C) 2014 Dominik Schürmann <dominik@dominikschuermann.de>
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.pgp;
import org.openintents.openpgp.OpenPgpSignatureResult;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.util.Log;
/**
* This class can be used to build OpenPgpSignatureResult objects based on several checks.
* It serves as a constraint which information are returned inside an OpenPgpSignatureResult object.
*/
public class OpenPgpSignatureResultBuilder {
// OpenPgpSignatureResult
private boolean mSignatureOnly = false;
private String mUserId;
private long mKeyId;
// builder
private boolean mSignatureAvailable = false;
private boolean mKnownKey = false;
private boolean mValidSignature = false;
private boolean mIsSignatureKeyCertified = false;
public void signatureOnly(boolean signatureOnly) {
this.mSignatureOnly = signatureOnly;
}
public void userId(String userId) {
this.mUserId = userId;
}
public void keyId(long keyId) {
this.mKeyId = keyId;
}
public void knownKey(boolean knownKey) {
this.mKnownKey = knownKey;
}
public void validSignature(boolean validSignature) {
this.mValidSignature = validSignature;
}
public void signatureKeyCertified(boolean isSignatureKeyCertified) {
this.mIsSignatureKeyCertified = isSignatureKeyCertified;
}
public void signatureAvailable(boolean signatureAvailable) {
this.mSignatureAvailable = signatureAvailable;
}
public OpenPgpSignatureResult build() {
if (mSignatureAvailable) {
OpenPgpSignatureResult result = new OpenPgpSignatureResult();
result.setSignatureOnly(mSignatureOnly);
// valid sig!
if (mKnownKey) {
if (mValidSignature) {
result.setKeyId(mKeyId);
result.setUserId(mUserId);
if (mIsSignatureKeyCertified) {
Log.d(Constants.TAG, "SIGNATURE_SUCCESS_CERTIFIED");
result.setStatus(OpenPgpSignatureResult.SIGNATURE_SUCCESS_CERTIFIED);
} else {
Log.d(Constants.TAG, "SIGNATURE_SUCCESS_UNCERTIFIED");
result.setStatus(OpenPgpSignatureResult.SIGNATURE_SUCCESS_UNCERTIFIED);
}
} else {
Log.d(Constants.TAG, "Error! Invalid signature.");
result.setStatus(OpenPgpSignatureResult.SIGNATURE_ERROR);
}
} else {
result.setKeyId(mKeyId);
Log.d(Constants.TAG, "SIGNATURE_UNKNOWN_PUB_KEY");
result.setStatus(OpenPgpSignatureResult.SIGNATURE_UNKNOWN_PUB_KEY);
}
return result;
} else {
Log.d(Constants.TAG, "no signature found!");
return null;
}
}
}