Merge branch 'af-anssi'

This commit is contained in:
Dominik Schürmann
2017-01-05 14:13:01 +01:00
69 changed files with 3135 additions and 283 deletions
+7 -2
View File
@@ -97,7 +97,7 @@
android:theme="@style/Theme.Keychain.Light">
<!-- broadcast receiver for Wi-Fi Connection -->
<receiver
android:name=".receiver.NetworkReceiver"
android:name=".network.NetworkReceiver"
android:enabled="false"
android:exported="true" >
<intent-filter>
@@ -105,7 +105,7 @@
</intent-filter>
</receiver>
<!-- broadcast receiver for Orbots status -->
<receiver android:name=".util.orbot.OrbotStatusReceiver">
<receiver android:name=".network.orbot.OrbotStatusReceiver">
<intent-filter>
<action android:name="org.torproject.android.intent.action.STATUS"/>
</intent-filter>
@@ -483,6 +483,11 @@
android:configChanges="orientation|screenSize|keyboardHidden|keyboard"
android:label="@string/title_key_server_preference"
android:windowSoftInputMode="stateHidden" />
<activity
android:name=".ui.SettingsSmartPGPAuthoritiesActivity"
android:configChanges="orientation|screenSize|keyboardHidden|keyboard"
android:label="@string/title_smartpgp_authorities_preference"
android:windowSoftInputMode="stateHidden" />
<activity
android:name=".ui.SettingsCacheTTLActivity"
android:configChanges="orientation|screenSize|keyboardHidden|keyboard"
@@ -19,7 +19,11 @@ package org.sufficientlysecure.keychain;
import android.os.Environment;
import org.bouncycastle.bcpg.sig.KeyFlags;
import org.bouncycastle.jce.provider.BouncyCastleProvider;
import org.sufficientlysecure.keychain.securitytoken.KeyFormat;
import org.sufficientlysecure.keychain.securitytoken.RSAKeyFormat;
import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
import java.io.File;
import java.net.Proxy;
@@ -123,6 +127,8 @@ public final class Constants {
public static final String EXPERIMENTAL_ENABLE_WORD_CONFIRM = "experimentalEnableWordConfirm";
public static final String EXPERIMENTAL_ENABLE_LINKED_IDENTITIES = "experimentalEnableLinkedIdentities";
public static final String EXPERIMENTAL_ENABLE_KEYBASE = "experimentalEnableKeybase";
public static final String EXPERIMENTAL_SMARTPGP_VERIFY_AUTHORITY = "smartpgp_authorities_pref";
public static final String EXPERIMENTAL_SMARTPGP_AUTHORITIES = "smartpgp_authorities";
public static final class Theme {
public static final String LIGHT = "light";
@@ -156,4 +162,24 @@ public final class Constants {
public static final long backup_code = -2;
}
/**
* Default key configuration: 3072 bit RSA (certify, sign, encrypt)
*/
public static void addDefaultSubkeys(SaveKeyringParcel saveKeyringParcel) {
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(SaveKeyringParcel.Algorithm.RSA,
3072, null, KeyFlags.CERTIFY_OTHER, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(SaveKeyringParcel.Algorithm.RSA,
3072, null, KeyFlags.SIGN_DATA, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(SaveKeyringParcel.Algorithm.RSA,
3072, null, KeyFlags.ENCRYPT_COMMS | KeyFlags.ENCRYPT_STORAGE, 0L));
}
/**
* Default key format for OpenPGP smart cards v2: 2048 bit RSA (sign+certify, decrypt, auth)
*/
private static final int ELEN = 17; //65537
public static final KeyFormat SECURITY_TOKEN_V2_SIGN = new RSAKeyFormat(2048, ELEN, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
public static final KeyFormat SECURITY_TOKEN_V2_DEC = new RSAKeyFormat(2048, ELEN, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
public static final KeyFormat SECURITY_TOKEN_V2_AUTH = new RSAKeyFormat(2048, ELEN, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
}
@@ -40,7 +40,7 @@ import org.sufficientlysecure.keychain.ui.util.FormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.PRNGFixes;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.TlsHelper;
import org.sufficientlysecure.keychain.network.TlsCertificatePinning;
import java.security.Security;
import java.util.HashMap;
@@ -114,9 +114,9 @@ public class KeychainApplication extends Application {
// Update keyserver list as needed
Preferences.getPreferences(this).upgradePreferences(this);
TlsHelper.addPinnedCertificate("hkps.pool.sks-keyservers.net", getAssets(), "hkps.pool.sks-keyservers.net.CA.cer");
TlsHelper.addPinnedCertificate("pgp.mit.edu", getAssets(), "pgp.mit.edu.cer");
TlsHelper.addPinnedCertificate("api.keybase.io", getAssets(), "api.keybase.io.CA.cer");
TlsCertificatePinning.addPinnedCertificate("hkps.pool.sks-keyservers.net", getAssets(), "hkps.pool.sks-keyservers.net.CA.cer");
TlsCertificatePinning.addPinnedCertificate("pgp.mit.edu", getAssets(), "pgp.mit.edu.cer");
TlsCertificatePinning.addPinnedCertificate("api.keybase.io", getAssets(), "api.keybase.io.CA.cer");
TemporaryFileProvider.cleanUp(this);
@@ -30,9 +30,9 @@ import org.sufficientlysecure.keychain.pgp.UncachedPublicKey;
import org.sufficientlysecure.keychain.pgp.exception.PgpGeneralException;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpClientFactory;
import org.sufficientlysecure.keychain.network.OkHttpClientFactory;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.TlsHelper;
import org.sufficientlysecure.keychain.network.TlsCertificatePinning;
import java.io.IOException;
import java.net.Proxy;
@@ -128,7 +128,7 @@ public class FacebookKeyserver extends Keyserver {
throw new QueryFailedException("Cannot connect to Facebook. "
+ "Check your Internet connection!"
+ (proxy.getProxy() == Proxy.NO_PROXY ? "" : " Using proxy " + proxy.getProxy()));
} catch (TlsHelper.TlsHelperException e) {
} catch (TlsCertificatePinning.TlsCertificatePinningException e) {
Log.e(Constants.TAG, "Exception in cert pinning", e);
throw new QueryFailedException("Exception in cert pinning.");
}
@@ -25,7 +25,7 @@ import com.textuality.keybase.lib.User;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.network.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import java.util.ArrayList;
@@ -54,9 +54,9 @@ import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.pgp.PgpHelper;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpClientFactory;
import org.sufficientlysecure.keychain.network.OkHttpClientFactory;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.TlsHelper;
import org.sufficientlysecure.keychain.network.TlsCertificatePinning;
public class ParcelableHkpKeyserver extends Keyserver implements Parcelable {
@@ -228,7 +228,7 @@ public class ParcelableHkpKeyserver extends Keyserver implements Parcelable {
Log.e(Constants.TAG, "IOException at HkpKeyserver", e);
throw new Keyserver.QueryFailedException("Keyserver '" + mUrl + "' is unavailable. Check your Internet connection!" +
(proxy.getProxy() == Proxy.NO_PROXY ? "" : " Using proxy " + proxy.getProxy()));
} catch (TlsHelper.TlsHelperException e) {
} catch (TlsCertificatePinning.TlsCertificatePinningException e) {
Log.e(Constants.TAG, "Exception in pinning certs", e);
throw new Keyserver.QueryFailedException("Exception in pinning certs");
} catch (UnsupportedCharsetException e) {
@@ -439,7 +439,7 @@ public class ParcelableHkpKeyserver extends Keyserver implements Parcelable {
} catch (IOException e) {
Log.e(Constants.TAG, "IOException", e);
throw new Keyserver.AddKeyException();
} catch (TlsHelper.TlsHelperException e) {
} catch (TlsCertificatePinning.TlsCertificatePinningException e) {
Log.e(Constants.TAG, "Exception in pinning certs", e);
throw new Keyserver.AddKeyException();
} catch (URISyntaxException e) {
@@ -33,7 +33,7 @@ import org.sufficientlysecure.keychain.service.input.RequiredInputParcel;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.util.ArrayList;
@@ -33,7 +33,7 @@ import org.sufficientlysecure.keychain.operations.results.OperationResult.LogTyp
import org.sufficientlysecure.keychain.operations.results.OperationResult.OperationLog;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpClientFactory;
import org.sufficientlysecure.keychain.network.OkHttpClientFactory;
import java.io.IOException;
import java.net.MalformedURLException;
@@ -15,7 +15,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.receiver;
package org.sufficientlysecure.keychain.network;
import android.content.BroadcastReceiver;
import android.content.ComponentName;
@@ -15,7 +15,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.network;
import java.io.IOException;
import java.net.Proxy;
@@ -47,7 +47,7 @@ public class OkHttpClientFactory {
}
public static OkHttpClient getClientPinnedIfAvailable(URL url, Proxy proxy)
throws IOException, TlsHelper.TlsHelperException {
throws IOException, TlsCertificatePinning.TlsCertificatePinningException {
OkHttpClient.Builder builder = new OkHttpClient.Builder();
// don't follow any redirects for keyservers, as discussed in the security audit
@@ -66,8 +66,8 @@ public class OkHttpClientFactory {
// If a pinned cert is available, use it!
// NOTE: this fails gracefully back to "no pinning" if no cert is available.
if (url != null && TlsHelper.getPinnedSslSocketFactory(url) != null) {
builder.sslSocketFactory(TlsHelper.getPinnedSslSocketFactory(url));
if (url != null && TlsCertificatePinning.getPinnedSslSocketFactory(url) != null) {
builder.sslSocketFactory(TlsCertificatePinning.getPinnedSslSocketFactory(url));
}
return builder.build();
@@ -15,8 +15,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.network;
import com.textuality.keybase.lib.KeybaseUrlConnectionClient;
@@ -24,6 +23,7 @@ import okhttp3.OkHttpClient;
import okhttp3.Request;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.util.Log;
import java.io.IOException;
import java.net.Proxy;
@@ -44,7 +44,7 @@ public class OkHttpKeybaseClient implements KeybaseUrlConnectionClient {
} else {
client = OkHttpClientFactory.getSimpleClient();
}
} catch (TlsHelper.TlsHelperException e) {
} catch (TlsCertificatePinning.TlsCertificatePinningException e) {
Log.e(Constants.TAG, "TlsHelper failed", e);
throw new IOException("TlsHelper failed");
}
@@ -15,11 +15,12 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.network;
import android.content.res.AssetManager;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.util.Log;
import java.io.ByteArrayInputStream;
import java.io.ByteArrayOutputStream;
@@ -40,7 +41,7 @@ import javax.net.ssl.SSLContext;
import javax.net.ssl.SSLSocketFactory;
import javax.net.ssl.TrustManagerFactory;
public class TlsHelper {
public class TlsCertificatePinning {
private static Map<String, byte[]> sPinnedCertificates = new HashMap<>();
@@ -70,10 +71,10 @@ public class TlsHelper {
* Use pinned certificate for OkHttpClient if we have one.
*
* @return true, if certificate is available, false if not
* @throws TlsHelperException
* @throws TlsCertificatePinningException
* @throws IOException
*/
public static SSLSocketFactory getPinnedSslSocketFactory(URL url) throws TlsHelperException, IOException {
public static SSLSocketFactory getPinnedSslSocketFactory(URL url) throws TlsCertificatePinningException, IOException {
if (url.getProtocol().equals("https")) {
// use certificate PIN from assets if we have one
for (String host : sPinnedCertificates.keySet()) {
@@ -92,11 +93,11 @@ public class TlsHelper {
* to URLs with passed certificate.
*
* @param certificate certificate to pin
* @throws TlsHelperException
* @throws TlsCertificatePinningException
* @throws IOException
*/
private static SSLSocketFactory pinCertificate(byte[] certificate)
throws TlsHelperException, IOException {
throws TlsCertificatePinningException, IOException {
// We don't use OkHttp's CertificatePinner since it can not be used to pin self-signed
// certificate if such certificate is not accepted by TrustManager.
// (Refer to note at end of description:
@@ -124,12 +125,12 @@ public class TlsHelper {
return context.getSocketFactory();
} catch (CertificateException | KeyStoreException | KeyManagementException | NoSuchAlgorithmException e) {
throw new TlsHelperException(e);
throw new TlsCertificatePinningException(e);
}
}
public static class TlsHelperException extends Exception {
public TlsHelperException(Exception e) {
public static class TlsCertificatePinningException extends Exception {
TlsCertificatePinningException(Exception e) {
super(e);
}
}
@@ -47,7 +47,7 @@
*****
*/
package org.sufficientlysecure.keychain.util.orbot;
package org.sufficientlysecure.keychain.network.orbot;
import android.app.Activity;
import android.app.ProgressDialog;
@@ -13,7 +13,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util.orbot;
package org.sufficientlysecure.keychain.network.orbot;
import android.content.BroadcastReceiver;
import android.content.Context;
@@ -50,10 +50,9 @@ import org.sufficientlysecure.keychain.util.ParcelableFileCache;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.ProgressScaler;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.io.IOException;
import java.net.Proxy;
import java.util.ArrayList;
import java.util.GregorianCalendar;
import java.util.Iterator;
@@ -40,9 +40,9 @@ import org.sufficientlysecure.keychain.provider.ProviderHelper;
import org.sufficientlysecure.keychain.service.KeybaseVerificationParcel;
import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
import org.sufficientlysecure.keychain.service.input.RequiredInputParcel;
import org.sufficientlysecure.keychain.util.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.network.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.io.ByteArrayInputStream;
import java.io.InputStream;
@@ -45,7 +45,7 @@ import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
@@ -565,7 +565,8 @@ public abstract class OperationResult implements Parcelable {
MSG_MF_ERROR_DUPLICATE_KEYTOCARD_FOR_SLOT(LogLevel.ERROR, R.string.msg_mf_error_duplicate_keytocard_for_slot),
MSG_MF_ERROR_INVALID_FLAGS_FOR_KEYTOCARD(LogLevel.ERROR, R.string.msg_mf_error_invalid_flags_for_keytocard),
MSG_MF_ERROR_BAD_SECURITY_TOKEN_ALGO(LogLevel.ERROR, R.string.edit_key_error_bad_security_token_algo),
MSG_MF_ERROR_BAD_SECURITY_TOKEN_SIZE(LogLevel.ERROR, R.string.edit_key_error_bad_security_token_size),
MSG_MF_ERROR_BAD_SECURITY_TOKEN_RSA_KEY_SIZE(LogLevel.ERROR, R.string.edit_key_error_bad_security_token_size),
MSG_MF_ERROR_BAD_SECURITY_TOKEN_CURVE(LogLevel.ERROR, R.string.edit_key_error_bad_security_token_curve),
MSG_MF_ERROR_BAD_SECURITY_TOKEN_STRIPPED(LogLevel.ERROR, R.string.edit_key_error_bad_security_token_stripped),
MSG_MF_MASTER (LogLevel.DEBUG, R.string.msg_mf_master),
MSG_MF_PASSPHRASE (LogLevel.INFO, R.string.msg_mf_passphrase),
@@ -18,14 +18,27 @@
package org.sufficientlysecure.keychain.pgp;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTObjectIdentifiers;
import org.bouncycastle.bcpg.ECDHPublicBCPGKey;
import org.bouncycastle.bcpg.HashAlgorithmTags;
import org.bouncycastle.bcpg.SymmetricKeyAlgorithmTags;
import org.bouncycastle.bcpg.sig.KeyFlags;
import org.bouncycastle.openpgp.PGPException;
import org.bouncycastle.openpgp.PGPPublicKey;
import org.bouncycastle.openpgp.PGPSignature;
import org.bouncycastle.openpgp.operator.KeyFingerPrintCalculator;
import org.bouncycastle.openpgp.operator.RFC6637Utils;
import org.bouncycastle.openpgp.operator.jcajce.JcaPGPKeyConverter;
import org.bouncycastle.openpgp.operator.jcajce.JcePublicKeyKeyEncryptionMethodGenerator;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.pgp.exception.PgpGeneralException;
import org.sufficientlysecure.keychain.util.IterableIterator;
import org.sufficientlysecure.keychain.util.Log;
import java.io.IOException;
import java.security.PublicKey;
import java.security.interfaces.ECPublicKey;
import java.util.Calendar;
import java.util.Date;
import java.util.GregorianCalendar;
@@ -189,4 +202,62 @@ public class CanonicalizedPublicKey extends UncachedPublicKey {
return !isRevoked() && !isExpired();
}
// For use only in card export; returns the public key.
public ECPublicKey getSecurityTokenECPublicKey()
throws PgpGeneralException {
JcaPGPKeyConverter keyConverter = new JcaPGPKeyConverter();
PublicKey retVal;
try {
retVal = keyConverter.getPublicKey(mPublicKey);
} catch (PGPException e) {
throw new PgpGeneralException("Error converting public key!", e);
}
return (ECPublicKey) retVal;
}
public ASN1ObjectIdentifier getSecurityTokenHashAlgorithm()
throws PGPException {
if (!isEC()) {
throw new PGPException("Key encryption OID is valid only for EC key!");
}
final ECDHPublicBCPGKey eck = (ECDHPublicBCPGKey)mPublicKey.getPublicKeyPacket().getKey();
switch (eck.getHashAlgorithm()) {
case HashAlgorithmTags.SHA256:
return NISTObjectIdentifiers.id_sha256;
case HashAlgorithmTags.SHA384:
return NISTObjectIdentifiers.id_sha384;
case HashAlgorithmTags.SHA512:
return NISTObjectIdentifiers.id_sha512;
default:
throw new PGPException("Invalid hash algorithm for EC key : " + eck.getHashAlgorithm());
}
}
public int getSecurityTokenSymmetricKeySize()
throws PGPException {
if (!isEC()) {
throw new PGPException("Key encryption OID is valid only for EC key!");
}
final ECDHPublicBCPGKey eck = (ECDHPublicBCPGKey)mPublicKey.getPublicKeyPacket().getKey();
switch (eck.getSymmetricKeyAlgorithm()) {
case SymmetricKeyAlgorithmTags.AES_128:
return 128;
case SymmetricKeyAlgorithmTags.AES_192:
return 192;
case SymmetricKeyAlgorithmTags.AES_256:
return 256;
default:
throw new PGPException("Invalid symmetric encryption algorithm for EC key : " + eck.getSymmetricKeyAlgorithm());
}
}
public byte[] createUserKeyingMaterial(KeyFingerPrintCalculator fingerPrintCalculator)
throws IOException, PGPException {
return RFC6637Utils.createUserKeyingMaterial(mPublicKey.getPublicKeyPacket(), fingerPrintCalculator);
}
}
@@ -21,6 +21,7 @@ package org.sufficientlysecure.keychain.pgp;
import java.nio.ByteBuffer;
import java.security.PrivateKey;
import java.security.interfaces.ECPrivateKey;
import java.security.interfaces.RSAPrivateCrtKey;
import java.util.Date;
import java.util.HashMap;
@@ -299,7 +300,7 @@ public class CanonicalizedSecretKey extends CanonicalizedPublicKey {
}
// For use only in card export; returns the secret key in Chinese Remainder Theorem format.
public RSAPrivateCrtKey getCrtSecretKey() throws PgpGeneralException {
public RSAPrivateCrtKey getSecurityTokenRSASecretKey() throws PgpGeneralException {
if (mPrivateKeyState == PRIVATE_KEY_STATE_LOCKED) {
throw new PgpGeneralException("Cannot get secret key attributes while key is locked.");
}
@@ -319,6 +320,28 @@ public class CanonicalizedSecretKey extends CanonicalizedPublicKey {
return (RSAPrivateCrtKey)retVal;
}
// For use only in card export; returns the secret key.
public ECPrivateKey getSecurityTokenECSecretKey()
throws PgpGeneralException {
if (mPrivateKeyState == PRIVATE_KEY_STATE_LOCKED) {
throw new PgpGeneralException("Cannot get secret key attributes while key is locked.");
}
if (mPrivateKeyState == PRIVATE_KEY_STATE_DIVERT_TO_CARD) {
throw new PgpGeneralException("Cannot get secret key attributes of divert-to-card key.");
}
JcaPGPKeyConverter keyConverter = new JcaPGPKeyConverter();
PrivateKey retVal;
try {
retVal = keyConverter.getPrivateKey(mPrivateKey);
} catch (PGPException e) {
throw new PgpGeneralException("Error converting private key! " + e.getMessage(), e);
}
return (ECPrivateKey) retVal;
}
public byte[] getIv() {
return mSecretKey.getIV();
}
@@ -35,6 +35,10 @@ import java.util.Iterator;
import java.util.Stack;
import java.util.concurrent.atomic.AtomicBoolean;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.bcpg.ECDHPublicBCPGKey;
import org.bouncycastle.bcpg.ECDSAPublicBCPGKey;
import org.bouncycastle.bcpg.PublicKeyAlgorithmTags;
import org.bouncycastle.bcpg.S2K;
import org.bouncycastle.bcpg.sig.Features;
@@ -1645,20 +1649,44 @@ public class PgpKeyOperation {
}
private static boolean checkSecurityTokenCompatibility(PGPSecretKey key, OperationLog log, int indent) {
PGPPublicKey publicKey = key.getPublicKey();
int algorithm = publicKey.getAlgorithm();
if (algorithm != PublicKeyAlgorithmTags.RSA_ENCRYPT &&
algorithm != PublicKeyAlgorithmTags.RSA_SIGN &&
algorithm != PublicKeyAlgorithmTags.RSA_GENERAL) {
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_ALGO, indent + 1);
return false;
}
// Key size must be 2048
int keySize = publicKey.getBitStrength();
if (keySize != 2048) {
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_SIZE, indent + 1);
return false;
final PGPPublicKey publicKey = key.getPublicKey();
ASN1ObjectIdentifier curve;
switch (publicKey.getAlgorithm()) {
case PublicKeyAlgorithmTags.RSA_ENCRYPT:
case PublicKeyAlgorithmTags.RSA_SIGN:
case PublicKeyAlgorithmTags.RSA_GENERAL:
// Key size must be at least 2048 since OpenPGP card specification 3.x
if (publicKey.getBitStrength() < 2048) {
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_RSA_KEY_SIZE, indent + 1);
return false;
}
break;
case PublicKeyAlgorithmTags.ECDH:
curve = ((ECDHPublicBCPGKey)(publicKey.getPublicKeyPacket().getKey())).getCurveOID();
if (!curve.equals(NISTNamedCurves.getOID("P-256")) &&
!curve.equals(NISTNamedCurves.getOID("P-384")) &&
!curve.equals(NISTNamedCurves.getOID("P-521"))) {
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_CURVE, indent + 1);
return false;
}
break;
case PublicKeyAlgorithmTags.ECDSA:
curve = ((ECDSAPublicBCPGKey)(publicKey.getPublicKeyPacket().getKey())).getCurveOID();
if (!curve.equals(NISTNamedCurves.getOID("P-256")) &&
!curve.equals(NISTNamedCurves.getOID("P-384")) &&
!curve.equals(NISTNamedCurves.getOID("P-521"))) {
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_CURVE, indent + 1);
return false;
}
break;
default:
log.add(LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_ALGO, indent + 1);
return false;
}
// Secret key parts must be available
@@ -0,0 +1,111 @@
/*
* Copyright (C) 2016 Nikita Mikhailov <nikita.s.mikhailov@gmail.com>
* Copyright (C) 2016-2017 Arnaud Fontaine
*
* 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.securitytoken;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.asn1.x9.X9ECParameters;
import org.bouncycastle.bcpg.sig.KeyFlags;
import org.bouncycastle.math.ec.ECCurve;
import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
// 4.3.3.6 Algorithm Attributes
public class ECKeyFormat extends KeyFormat {
private final ECAlgorithmFormat mECAlgorithmFormat;
private final ASN1ObjectIdentifier mECCurveOID;
public ECKeyFormat(final ASN1ObjectIdentifier ecCurveOid,
final ECAlgorithmFormat ecAlgorithmFormat) {
super(KeyFormatType.ECKeyFormatType);
mECAlgorithmFormat = ecAlgorithmFormat;
mECCurveOID = ecCurveOid;
}
public ECKeyFormat.ECAlgorithmFormat getAlgorithmFormat() {
return mECAlgorithmFormat;
}
public ASN1ObjectIdentifier getCurveOID() {
return mECCurveOID;
}
public enum ECAlgorithmFormat {
ECDH((byte) 18, true, false),
ECDH_WITH_PUBKEY((byte) 18, true, true),
ECDSA((byte) 19, false, false),
ECDSA_WITH_PUBKEY((byte) 19, false, true);
private final byte mValue;
private final boolean mIsECDH;
private final boolean mWithPubkey;
ECAlgorithmFormat(final byte value, final boolean isECDH, final boolean withPubkey) {
mValue = value;
mIsECDH = isECDH;
mWithPubkey = withPubkey;
}
public static ECKeyFormat.ECAlgorithmFormat from(final byte bFirst, final byte bLast) {
for (ECKeyFormat.ECAlgorithmFormat format : values()) {
if (format.mValue == bFirst && ((bLast == (byte) 0xff) == format.isWithPubkey())) {
return format;
}
}
return null;
}
public final byte getValue() {
return mValue;
}
public final boolean isECDH() {
return mIsECDH;
}
public final boolean isWithPubkey() {
return mWithPubkey;
}
}
public void addToSaveKeyringParcel(SaveKeyringParcel keyring, int keyFlags) {
final X9ECParameters params = NISTNamedCurves.getByOID(mECCurveOID);
final ECCurve curve = params.getCurve();
SaveKeyringParcel.Algorithm algo = SaveKeyringParcel.Algorithm.ECDSA;
if (((keyFlags & KeyFlags.ENCRYPT_COMMS) == KeyFlags.ENCRYPT_COMMS)
|| ((keyFlags & KeyFlags.ENCRYPT_STORAGE) == KeyFlags.ENCRYPT_STORAGE)) {
algo = SaveKeyringParcel.Algorithm.ECDH;
}
SaveKeyringParcel.Curve scurve;
if (mECCurveOID.equals(NISTNamedCurves.getOID("P-256"))) {
scurve = SaveKeyringParcel.Curve.NIST_P256;
} else if (mECCurveOID.equals(NISTNamedCurves.getOID("P-384"))) {
scurve = SaveKeyringParcel.Curve.NIST_P384;
} else if (mECCurveOID.equals(NISTNamedCurves.getOID("P-521"))) {
scurve = SaveKeyringParcel.Curve.NIST_P521;
} else {
throw new IllegalArgumentException("Unsupported curve " + mECCurveOID);
}
keyring.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(algo,
curve.getFieldSize(), scurve, keyFlags, 0L));
}
}
@@ -13,7 +13,7 @@
* limitations under the License.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.securitytoken;
import java.io.IOException;
import java.nio.ByteBuffer;
@@ -17,71 +17,83 @@
package org.sufficientlysecure.keychain.securitytoken;
// 4.3.3.6 Algorithm Attributes
public class KeyFormat {
private int mAlgorithmId;
private int mModulusLength;
private int mExponentLength;
private AlgorithmFormat mAlgorithmFormat;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.bcpg.PublicKeyAlgorithmTags;
import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
import org.sufficientlysecure.keychain.ui.CreateSecurityTokenAlgorithmFragment;
public KeyFormat(byte[] bytes) {
mAlgorithmId = bytes[0];
mModulusLength = bytes[1] << 8 | bytes[2];
mExponentLength = bytes[3] << 8 | bytes[4];
mAlgorithmFormat = AlgorithmFormat.from(bytes[5]);
public abstract class KeyFormat {
if (mAlgorithmId != 1) { // RSA
throw new IllegalArgumentException("Unsupported Algorithm id " + mAlgorithmId);
}
public enum KeyFormatType {
RSAKeyFormatType,
ECKeyFormatType
};
private final KeyFormatType mKeyFormatType;
public KeyFormat(final KeyFormatType keyFormatType) {
mKeyFormatType = keyFormatType;
}
public int getAlgorithmId() {
return mAlgorithmId;
public final KeyFormatType keyFormatType() {
return mKeyFormatType;
}
public int getModulusLength() {
return mModulusLength;
}
public int getExponentLength() {
return mExponentLength;
}
public AlgorithmFormat getAlgorithmFormat() {
return mAlgorithmFormat;
}
public enum AlgorithmFormat {
STANDARD(0, false, false),
STANDARD_WITH_MODULUS(1, false, true),
CRT(2, true, false),
CRT_WITH_MODULUS(3, true, true);
private int mValue;
private boolean mIncludeModulus;
private boolean mIncludeCrt;
AlgorithmFormat(int value, boolean includeCrt, boolean includeModulus) {
mValue = value;
mIncludeModulus = includeModulus;
mIncludeCrt = includeCrt;
}
public static AlgorithmFormat from(byte b) {
for (AlgorithmFormat format : values()) {
if (format.mValue == b) {
return format;
public static KeyFormat fromBytes(byte[] bytes) {
switch (bytes[0]) {
case PublicKeyAlgorithmTags.RSA_GENERAL:
if (bytes.length < 6) {
throw new IllegalArgumentException("Bad length for RSA attributes");
}
}
return null;
}
return new RSAKeyFormat(bytes[1] << 8 | bytes[2],
bytes[3] << 8 | bytes[4],
RSAKeyFormat.RSAAlgorithmFormat.from(bytes[5]));
public boolean isIncludeModulus() {
return mIncludeModulus;
}
case PublicKeyAlgorithmTags.ECDH:
case PublicKeyAlgorithmTags.ECDSA:
if (bytes.length < 2) {
throw new IllegalArgumentException("Bad length for RSA attributes");
}
int len = bytes.length - 1;
if (bytes[bytes.length - 1] == (byte)0xff) {
len -= 1;
}
final byte[] boid = new byte[2 + len];
boid[0] = (byte)0x06;
boid[1] = (byte)len;
System.arraycopy(bytes, 1, boid, 2, len);
final ASN1ObjectIdentifier oid = ASN1ObjectIdentifier.getInstance(boid);
return new ECKeyFormat(oid, ECKeyFormat.ECAlgorithmFormat.from(bytes[0], bytes[bytes.length - 1]));
public boolean isIncludeCrt() {
return mIncludeCrt;
default:
throw new IllegalArgumentException("Unsupported Algorithm id " + bytes[0]);
}
}
public static KeyFormat fromCreationKeyType(CreateSecurityTokenAlgorithmFragment.SupportedKeyType t, boolean forEncryption) {
final int elen = 17; //65537
final ECKeyFormat.ECAlgorithmFormat kf =
forEncryption ? ECKeyFormat.ECAlgorithmFormat.ECDH_WITH_PUBKEY : ECKeyFormat.ECAlgorithmFormat.ECDSA_WITH_PUBKEY;
switch (t) {
case RSA_2048:
return new RSAKeyFormat(2048, elen, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
case RSA_3072:
return new RSAKeyFormat(3072, elen, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
case RSA_4096:
return new RSAKeyFormat(4096, elen, RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS);
case ECC_P256:
return new ECKeyFormat(NISTNamedCurves.getOID("P-256"), kf);
case ECC_P384:
return new ECKeyFormat(NISTNamedCurves.getOID("P-384"), kf);
case ECC_P521:
return new ECKeyFormat(NISTNamedCurves.getOID("P-521"), kf);
}
throw new IllegalArgumentException("Unsupported Algorithm id " + t);
}
public abstract void addToSaveKeyringParcel(SaveKeyringParcel keyring, int keyFlags);
}
@@ -17,8 +17,6 @@
package org.sufficientlysecure.keychain.securitytoken;
import org.sufficientlysecure.keychain.util.Iso7816TLV;
import java.io.IOException;
import java.util.HashMap;
import java.util.Map;
@@ -36,15 +34,19 @@ public class OpenPgpCapabilities {
private boolean mAttriburesChangable;
private boolean mHasKeyImport;
private byte mSMAlgo;
private int mSMAESKeySize;
private int mMaxCmdLen;
private int mMaxRspLen;
private Map<KeyType, KeyFormat> mKeyFormats;
public OpenPgpCapabilities(byte[] data) throws IOException {
Iso7816TLV[] tlvs = Iso7816TLV.readList(data, true);
mKeyFormats = new HashMap<>();
updateWithData(data);
}
public void updateWithData(byte[] data) throws IOException {
Iso7816TLV[] tlvs = Iso7816TLV.readList(data, true);
if (tlvs.length == 1 && tlvs[0].mT == 0x6E) {
tlvs = ((Iso7816TLV.Iso7816CompositeTLV) tlvs[0]).mSubs;
}
@@ -64,13 +66,13 @@ public class OpenPgpCapabilities {
parseExtendedCaps(tlv.mV);
break;
case 0xC1:
mKeyFormats.put(KeyType.SIGN, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.SIGN, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC2:
mKeyFormats.put(KeyType.ENCRYPT, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.ENCRYPT, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC3:
mKeyFormats.put(KeyType.AUTH, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.AUTH, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC4:
mPw1ValidForMultipleSignatures = tlv.mV[0] == 1;
@@ -86,13 +88,13 @@ public class OpenPgpCapabilities {
parseExtendedCaps(tlv.mV);
break;
case 0xC1:
mKeyFormats.put(KeyType.SIGN, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.SIGN, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC2:
mKeyFormats.put(KeyType.ENCRYPT, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.ENCRYPT, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC3:
mKeyFormats.put(KeyType.AUTH, new KeyFormat(tlv.mV));
mKeyFormats.put(KeyType.AUTH, KeyFormat.fromBytes(tlv.mV));
break;
case 0xC4:
mPw1ValidForMultipleSignatures = tlv.mV[0] == 1;
@@ -104,9 +106,9 @@ public class OpenPgpCapabilities {
private void parseExtendedCaps(byte[] v) {
mHasSM = (v[0] & MASK_SM) != 0;
mHasKeyImport = (v[0] & MASK_KEY_IMPORT) != 0;
mAttriburesChangable =(v[0] & MASK_ATTRIBUTES_CHANGABLE) != 0;
mAttriburesChangable = (v[0] & MASK_ATTRIBUTES_CHANGABLE) != 0;
mSMAlgo = v[1];
mSMAESKeySize = (v[1] == 1) ? 16 : 32;
mMaxCmdLen = (v[6] << 8) + v[7];
mMaxRspLen = (v[8] << 8) + v[9];
@@ -128,7 +130,7 @@ public class OpenPgpCapabilities {
return mHasSM;
}
public boolean isAttriburesChangable() {
public boolean isAttributesChangable() {
return mAttriburesChangable;
}
@@ -136,8 +138,8 @@ public class OpenPgpCapabilities {
return mHasKeyImport;
}
public byte getSMAlgo() {
return mSMAlgo;
public int getSMAESKeySize() {
return mSMAESKeySize;
}
public int getMaxCmdLen() {
@@ -0,0 +1,91 @@
/*
* Copyright (C) 2016 Nikita Mikhailov <nikita.s.mikhailov@gmail.com>
*
* 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.securitytoken;
import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
// 4.3.3.6 Algorithm Attributes
public class RSAKeyFormat extends KeyFormat {
private int mModulusLength;
private int mExponentLength;
private RSAAlgorithmFormat mRSAAlgorithmFormat;
public RSAKeyFormat(int modulusLength,
int exponentLength,
RSAAlgorithmFormat rsaAlgorithmFormat) {
super(KeyFormatType.RSAKeyFormatType);
mModulusLength = modulusLength;
mExponentLength = exponentLength;
mRSAAlgorithmFormat = rsaAlgorithmFormat;
}
public int getModulusLength() {
return mModulusLength;
}
public int getExponentLength() {
return mExponentLength;
}
public RSAAlgorithmFormat getAlgorithmFormat() {
return mRSAAlgorithmFormat;
}
public enum RSAAlgorithmFormat {
STANDARD((byte) 0, false, false),
STANDARD_WITH_MODULUS((byte) 1, false, true),
CRT((byte) 2, true, false),
CRT_WITH_MODULUS((byte) 3, true, true);
private byte mValue;
private boolean mIncludeModulus;
private boolean mIncludeCrt;
RSAAlgorithmFormat(byte value, boolean includeCrt, boolean includeModulus) {
mValue = value;
mIncludeModulus = includeModulus;
mIncludeCrt = includeCrt;
}
public static RSAAlgorithmFormat from(byte b) {
for (RSAAlgorithmFormat format : values()) {
if (format.mValue == b) {
return format;
}
}
return null;
}
public byte getValue() {
return mValue;
}
public boolean isIncludeModulus() {
return mIncludeModulus;
}
public boolean isIncludeCrt() {
return mIncludeCrt;
}
}
public void addToSaveKeyringParcel(SaveKeyringParcel keyring, int keyFlags) {
keyring.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(SaveKeyringParcel.Algorithm.RSA,
mModulusLength, null, keyFlags, 0L));
}
}
@@ -0,0 +1,714 @@
/*
* Copyright (C) 2016-2017 Arnaud Fontaine
*
* 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.securitytoken;
import android.content.Context;
import android.support.annotation.NonNull;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.asn1.x9.ECNamedCurveTable;
import org.bouncycastle.asn1.x9.X9ECParameters;
import org.bouncycastle.math.ec.ECCurve;
import org.bouncycastle.math.ec.ECPoint;
import org.bouncycastle.util.Arrays;
import org.sufficientlysecure.keychain.ui.SettingsSmartPGPAuthoritiesActivity;
import org.sufficientlysecure.keychain.util.Preferences;
import java.io.ByteArrayInputStream;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.security.AlgorithmParameters;
import java.security.InvalidAlgorithmParameterException;
import java.security.InvalidKeyException;
import java.security.KeyFactory;
import java.security.KeyPair;
import java.security.KeyPairGenerator;
import java.security.KeyStore;
import java.security.KeyStoreException;
import java.security.MessageDigest;
import java.security.NoSuchAlgorithmException;
import java.security.NoSuchProviderException;
import java.security.PublicKey;
import java.security.SecureRandom;
import java.security.cert.CertPathBuilder;
import java.security.cert.CertPathBuilderException;
import java.security.cert.CertStore;
import java.security.cert.Certificate;
import java.security.cert.CertificateException;
import java.security.cert.CertificateFactory;
import java.security.cert.CollectionCertStoreParameters;
import java.security.cert.PKIXBuilderParameters;
import java.security.cert.PKIXCertPathBuilderResult;
import java.security.cert.X509CertSelector;
import java.security.cert.X509Certificate;
import java.security.interfaces.ECPrivateKey;
import java.security.interfaces.ECPublicKey;
import java.security.spec.ECGenParameterSpec;
import java.security.spec.ECParameterSpec;
import java.security.spec.InvalidKeySpecException;
import java.security.spec.InvalidParameterSpecException;
import java.util.ArrayList;
import javax.crypto.BadPaddingException;
import javax.crypto.Cipher;
import javax.crypto.IllegalBlockSizeException;
import javax.crypto.KeyAgreement;
import javax.crypto.Mac;
import javax.crypto.NoSuchPaddingException;
import javax.crypto.SecretKey;
import javax.crypto.spec.IvParameterSpec;
import javax.crypto.spec.SecretKeySpec;
import javax.smartcardio.CommandAPDU;
import javax.smartcardio.ResponseAPDU;
class SCP11bSecureMessaging implements SecureMessaging {
private static final byte OPENPGP_SECURE_MESSAGING_CLA_MASK = (byte)0x04;
private static final byte[] OPENPGP_SECURE_MESSAGING_KEY_CRT = new byte[] { (byte)0xA6, (byte)0 };
private static final byte OPENPGP_SECURE_MESSAGING_KEY_ATTRIBUTES_TAG = (byte)0xD4;
private static final int AES_BLOCK_SIZE = 128 / 8;
private static final int SCP11_MAC_LENGTH = AES_BLOCK_SIZE / 2;
private static final String SCP11_SYMMETRIC_ALGO = "AES";
private static final String SCP11_CIPHER_ALGO = "AES/CBC/NoPadding";
private static final String SCP11_MAC_ALGO = "AESCMAC";
private static final String SCP11B_KEY_AGREEMENT_ALGO = "ECDH";
private static final String SCP11B_KEY_AGREEMENT_KEY_TYPE = "ECDH";
private static final String SCP11B_KEY_AGREEMENT_KEY_ALGO = "EC";
private static final String SCP11B_KEY_DERIVATION_ALGO = "SHA256";
private static final String CERTIFICATE_FORMAT = "X.509";
private static final String PROVIDER = "BC";
private static SecureRandom srand;
private static KeyFactory ecdhFactory;
private static CertificateFactory certFactory;
private SecretKey mSEnc;
private SecretKey mSMac;
private SecretKey mSRMac;
private short mEncryptionCounter;
private byte[] mMacChaining;
private SCP11bSecureMessaging() {
}
private void setKeys(@NonNull final byte[] sEnc,
@NonNull final byte[] sMac,
@NonNull final byte[] sRmac,
@NonNull final byte[] receipt)
throws SecureMessagingException {
if ((sEnc.length != sMac.length)
|| (sEnc.length != sRmac.length)
|| (receipt.length != AES_BLOCK_SIZE)) {
throw new SecureMessagingException("incoherent SCP11b key set");
}
mSEnc = new SecretKeySpec(sEnc, SCP11_SYMMETRIC_ALGO);
mSMac = new SecretKeySpec(sMac, SCP11_SYMMETRIC_ALGO);
mSRMac = new SecretKeySpec(sRmac, SCP11_SYMMETRIC_ALGO);
mEncryptionCounter = 0;
mMacChaining = receipt;
}
@Override
public void clearSession() {
mSEnc = null;
mSMac = null;
mSRMac = null;
mEncryptionCounter = 0;
mMacChaining = null;
}
@Override
public boolean isEstablished() {
return (mSEnc != null)
&& (mSMac != null)
&& (mSRMac != null)
&& (mMacChaining != null);
}
private static final ECParameterSpec getAlgorithmParameterSpec(final ECKeyFormat kf)
throws NoSuchProviderException, NoSuchAlgorithmException, InvalidParameterSpecException {
final AlgorithmParameters algoParams = AlgorithmParameters.getInstance(SCP11B_KEY_AGREEMENT_KEY_ALGO, PROVIDER);
algoParams.init(new ECGenParameterSpec(ECNamedCurveTable.getName(kf.getCurveOID())));
return algoParams.getParameterSpec(ECParameterSpec.class);
}
private static ECPublicKey newECDHPublicKey(final ECKeyFormat kf, byte[] data)
throws InvalidKeySpecException, NoSuchAlgorithmException,
InvalidParameterSpecException, NoSuchProviderException {
if (ecdhFactory == null) {
ecdhFactory = KeyFactory.getInstance(SCP11B_KEY_AGREEMENT_KEY_TYPE, PROVIDER);
}
final X9ECParameters params = NISTNamedCurves.getByOID(kf.getCurveOID());
if (params == null) {
throw new InvalidParameterSpecException("unsupported curve");
}
final ECCurve curve = params.getCurve();
final ECPoint p = curve.decodePoint(data);
if (!p.isValid()) {
throw new InvalidKeySpecException("invalid EC point");
}
final java.security.spec.ECPublicKeySpec pk = new java.security.spec.ECPublicKeySpec(
new java.security.spec.ECPoint(p.getAffineXCoord().toBigInteger(), p.getAffineYCoord().toBigInteger()),
getAlgorithmParameterSpec(kf));
return (ECPublicKey)(ecdhFactory.generatePublic(pk));
}
private static KeyPair generateECDHKeyPair(final ECKeyFormat kf)
throws NoSuchProviderException, NoSuchAlgorithmException,
InvalidParameterSpecException, InvalidAlgorithmParameterException {
final KeyPairGenerator gen = KeyPairGenerator.getInstance(SCP11B_KEY_AGREEMENT_KEY_ALGO, PROVIDER);
if (srand == null) {
srand = new SecureRandom();
}
gen.initialize(getAlgorithmParameterSpec(kf), srand);
return gen.generateKeyPair();
}
private static ECPublicKey verifyCertificate(final Context ctx,
final ECKeyFormat kf,
final byte[] data) throws IOException {
try {
if (certFactory == null) {
certFactory = CertificateFactory.getInstance(CERTIFICATE_FORMAT, PROVIDER);
}
final ECParameterSpec kfParams = getAlgorithmParameterSpec(kf);
final Certificate cert = certFactory.generateCertificate(new ByteArrayInputStream(data));
if (!(cert instanceof X509Certificate)) {
throw new IOException("invalid card certificate");
}
final X509Certificate cardCert = (X509Certificate) cert;
final PublicKey pk = cardCert.getPublicKey();
if (!(pk instanceof ECPublicKey)) {
throw new IOException("invalid card public key");
}
final ECPublicKey cardPk = (ECPublicKey) pk;
final ECParameterSpec cardPkParams = cardPk.getParams();
if (!kfParams.getCurve().equals(cardPkParams.getCurve())) {
throw new IOException("incoherent card certificate/public key format");
}
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(ctx);
if (ks == null) {
throw new KeyStoreException("no keystore found");
}
final X509CertSelector targetConstraints = new X509CertSelector();
targetConstraints.setCertificate(cardCert);
final ArrayList al = new ArrayList();
al.add(cardCert);
final CollectionCertStoreParameters certStoreParams = new CollectionCertStoreParameters(al);
final CertStore certStore = CertStore.getInstance("Collection", certStoreParams, PROVIDER);
final PKIXBuilderParameters pkixParams = new PKIXBuilderParameters(ks, targetConstraints);
pkixParams.setRevocationEnabled(false);
pkixParams.addCertStore(certStore);
final CertPathBuilder builder = CertPathBuilder.getInstance(CertPathBuilder.getDefaultType(), PROVIDER);
final PKIXCertPathBuilderResult result =
(PKIXCertPathBuilderResult) builder.build(pkixParams);
return cardPk;
} catch (CertificateException e) {
throw new IOException("invalid card certificate (" + e.getMessage() + ")");
} catch (NoSuchAlgorithmException e) {
throw new IOException("unknown algorithm (" + e.getMessage() + ")");
} catch (InvalidParameterSpecException e) {
throw new IOException("invalid card key parameters (" + e.getMessage() + ")");
} catch (IllegalArgumentException e) {
e.printStackTrace();
throw new IOException("illegal argument (" + e.getMessage() + ")");
} catch (NoSuchProviderException e) {
throw new IOException("unavailable crypto (" + e.getMessage() + ")");
} catch (KeyStoreException e) {
throw new IOException("failed to build keystore (" + e.getMessage() + ")");
} catch (InvalidAlgorithmParameterException e) {
throw new IOException("invalid algorithm parameter (" + e.getMessage() + ")");
} catch (CertPathBuilderException e) {
throw new IOException("invalid certificate path (" + e.getMessage() + ")");
}
}
public static void establish(final SecurityTokenHelper t, final Context ctx)
throws SecureMessagingException, IOException {
final int keySize = t.getOpenPgpCapabilities().getSMAESKeySize();
t.clearSecureMessaging();
if ((keySize != 16)
&& (keySize != 32)) {
throw new SecureMessagingException("invalid key size");
}
CommandAPDU cmd;
ResponseAPDU resp;
Iso7816TLV[] tlvs;
// retrieving key algorithm
cmd = new CommandAPDU(0, (byte)0xCA, (byte)0x00,
OPENPGP_SECURE_MESSAGING_KEY_ATTRIBUTES_TAG, SecurityTokenHelper.MAX_APDU_NE_EXT);
resp = t.communicate(cmd);
if (resp.getSW() != SecurityTokenHelper.APDU_SW_SUCCESS) {
throw new SecureMessagingException("failed to retrieve secure messaging key attributes");
}
tlvs = Iso7816TLV.readList(resp.getData(), true);
if ((tlvs == null)
|| (tlvs.length != 1)
|| ((byte)tlvs[0].mT != OPENPGP_SECURE_MESSAGING_KEY_ATTRIBUTES_TAG)) {
throw new SecureMessagingException("invalid format of secure messaging key attributes");
}
final KeyFormat kf = KeyFormat.fromBytes(tlvs[0].mV);
if (kf.keyFormatType() != KeyFormat.KeyFormatType.ECKeyFormatType) {
throw new SecureMessagingException("invalid format of secure messaging key");
}
final ECKeyFormat eckf = (ECKeyFormat)kf;
if (eckf.getCurveOID() == null) {
throw new SecureMessagingException("unsupported curve");
}
try {
ECPublicKey pkcard = null;
final Preferences prefs = Preferences.getPreferences(ctx);
if (prefs != null && prefs.getExperimentalSmartPGPAuthoritiesEnable()) {
// retrieving certificate
cmd = new CommandAPDU(0, (byte) 0xA5, (byte) 0x03, (byte) 0x04,
new byte[]{(byte) 0x60, (byte) 0x04, (byte) 0x5C, (byte) 0x02, (byte) 0x7F, (byte) 0x21});
resp = t.communicate(cmd);
if (resp.getSW() != SecurityTokenHelper.APDU_SW_SUCCESS) {
throw new SecureMessagingException("failed to select secure messaging certificate");
}
cmd = new CommandAPDU(0, (byte) 0xCA, (byte) 0x7F, (byte) 0x21, SecurityTokenHelper.MAX_APDU_NE_EXT);
resp = t.communicate(cmd);
if (resp.getSW() != SecurityTokenHelper.APDU_SW_SUCCESS) {
throw new SecureMessagingException("failed to retrieve secure messaging certificate");
}
pkcard = verifyCertificate(ctx, eckf, resp.getData());
} else {
// retrieving public key
cmd = new CommandAPDU(0, (byte) 0x47, (byte) 0x81, (byte) 0x00,
OPENPGP_SECURE_MESSAGING_KEY_CRT, SecurityTokenHelper.MAX_APDU_NE_EXT);
resp = t.communicate(cmd);
if (resp.getSW() != SecurityTokenHelper.APDU_SW_SUCCESS) {
throw new SecureMessagingException("failed to retrieve secure messaging public key");
}
tlvs = Iso7816TLV.readList(resp.getData(), true);
if ((tlvs == null)
|| (tlvs.length != 1)
|| ((short)tlvs[0].mT != (short)0x7f49)) {
throw new SecureMessagingException("invalid format of secure messaging key");
}
tlvs = Iso7816TLV.readList(tlvs[0].mV, true);
if ((tlvs == null)
|| (tlvs.length != 1)
|| ((byte)tlvs[0].mT != (byte)0x86)) {
throw new SecureMessagingException("invalid format of secure messaging key");
}
pkcard = newECDHPublicKey(eckf, tlvs[0].mV);
}
if (pkcard == null) {
throw new SecureMessagingException("No key in token for secure messaging");
}
final KeyPair ekoce = generateECDHKeyPair(eckf);
final ECPublicKey epkoce = (ECPublicKey)ekoce.getPublic();
final ECPrivateKey eskoce = (ECPrivateKey)ekoce.getPrivate();
final byte[] crt_template = new byte[] {
(byte)0xA6, (byte)0x0D,
(byte)0x90, (byte)0x02, (byte)0x11, (byte)0x00,
(byte)0x95, (byte)0x01, (byte)0x3C,
(byte)0x80, (byte)0x01, (byte)0x88,
(byte)0x81, (byte)0x01, (byte)keySize,
(byte)0x5F, (byte)0x49 };
int csize = (int)Math.ceil(epkoce.getParams().getCurve().getField().getFieldSize() / 8.0);
ByteArrayOutputStream pkout = new ByteArrayOutputStream(), bout = new ByteArrayOutputStream();
pkout.write((byte)0x04);
SecurityTokenUtils.writeBits(pkout, epkoce.getW().getAffineX(), csize);
SecurityTokenUtils.writeBits(pkout, epkoce.getW().getAffineY(), csize);
bout.write(crt_template);
bout.write(SecurityTokenUtils.encodeLength(pkout.size()));
pkout.writeTo(bout);
pkout = bout;
// internal authenticate
cmd = new CommandAPDU(0, (byte)0x88, (byte)0x01, (byte)0x0, pkout.toByteArray(),
SecurityTokenHelper.MAX_APDU_NE_EXT);
resp = t.communicate(cmd);
if (resp.getSW() != SecurityTokenHelper.APDU_SW_SUCCESS) {
throw new SecureMessagingException("failed to initiate internal authenticate");
}
tlvs = Iso7816TLV.readList(resp.getData(), true);
if ((tlvs == null)
|| (tlvs.length != 2)
|| (tlvs[0].mT == tlvs[1].mT)) {
throw new SecureMessagingException("invalid internal authenticate response");
}
byte[] receipt = null;
ECPublicKey epkcard = null;
for (int i = 0; i < tlvs.length; ++i) {
switch (tlvs[i].mT) {
case 0x86:
if (tlvs[i].mL != AES_BLOCK_SIZE) {
throw new SecureMessagingException("invalid size for receipt");
}
receipt = tlvs[i].mV;
break;
case 0x5F49:
epkcard = newECDHPublicKey(eckf, tlvs[i].mV);
break;
default:
throw new SecureMessagingException("unexpected data in internal authenticate response");
}
}
final KeyAgreement ecdhKa = KeyAgreement.getInstance(SCP11B_KEY_AGREEMENT_ALGO, PROVIDER);
bout = new ByteArrayOutputStream();
//compute ShSe
ecdhKa.init(eskoce);
ecdhKa.doPhase(epkcard, true);
bout.write(ecdhKa.generateSecret());
//compute ShSs
ecdhKa.init(eskoce);
ecdhKa.doPhase(pkcard, true);
bout.write(ecdhKa.generateSecret());
csize = bout.size() + 3;
bout.write(new byte[] {
(byte)0, (byte)0, (byte)0, (byte)0,
crt_template[8], crt_template[11],
(byte)keySize });
byte[] shs = bout.toByteArray();
//key derivation
final MessageDigest h = MessageDigest.getInstance(SCP11B_KEY_DERIVATION_ALGO, PROVIDER);
bout = new ByteArrayOutputStream();
while (bout.size() < 4 * keySize) {
++shs[csize];
bout.write(h.digest(shs));
}
shs = bout.toByteArray();
final byte[] rkey = Arrays.copyOfRange(shs, 0, keySize);
final byte[] sEnc = Arrays.copyOfRange(shs, keySize, 2 * keySize);
final byte[] sMac = Arrays.copyOfRange(shs, 2 * keySize, 3 * keySize);
final byte[] sRmac = Arrays.copyOfRange(shs, 3 * keySize, 4 * keySize);
//receipt computation
final Mac mac = Mac.getInstance(SCP11_MAC_ALGO, PROVIDER);
mac.init(new SecretKeySpec(rkey, SCP11_SYMMETRIC_ALGO));
shs = resp.getData();
mac.update(pkout.toByteArray());
mac.update(shs, 0, shs.length - 2 - AES_BLOCK_SIZE);
shs = mac.doFinal();
for(int i = 0; i < AES_BLOCK_SIZE; ++i) {
if (shs[i] != receipt[i]) {
throw new SecureMessagingException("corrupted receipt!");
}
}
final SCP11bSecureMessaging sm = new SCP11bSecureMessaging();
sm.setKeys(sEnc, sMac, sRmac, receipt);
t.setSecureMessaging(sm);
} catch (InvalidKeySpecException e) {
throw new SecureMessagingException("invalid key specification : " + e.getMessage());
} catch (NoSuchAlgorithmException e) {
throw new SecureMessagingException("unknown EC key algorithm : " + e.getMessage());
} catch (InvalidParameterSpecException e) {
throw new SecureMessagingException("invalid ECDH parameters : " + e.getMessage());
} catch (NoSuchProviderException e) {
throw new SecureMessagingException("unknown provider " + PROVIDER);
} catch (InvalidAlgorithmParameterException e) {
throw new SecureMessagingException("invalid algorithm parameters : " + e.getMessage());
} catch (InvalidKeyException e) {
throw new SecureMessagingException("invalid key : " + e.getMessage());
} catch (IllegalArgumentException e) {
throw new SecureMessagingException("illegal argument (" + e.getMessage() + ")");
}
}
@Override
public CommandAPDU encryptAndSign(CommandAPDU apdu)
throws SecureMessagingException {
if (!isEstablished()) {
throw new SecureMessagingException("not established");
}
++mEncryptionCounter;
if(mEncryptionCounter <= 0) {
throw new SecureMessagingException("exhausted encryption counter");
}
try {
byte[] data = apdu.getData();
if (data.length > 0) {
final Cipher cipher = Cipher.getInstance(SCP11_CIPHER_ALGO);
byte[] iv = new byte[AES_BLOCK_SIZE];
Arrays.fill(iv, (byte)0);
cipher.init(Cipher.ENCRYPT_MODE, mSEnc, new IvParameterSpec(iv));
iv[AES_BLOCK_SIZE - 2] = (byte)((mEncryptionCounter >> 8) & 0xff);
iv[AES_BLOCK_SIZE - 1] = (byte)(mEncryptionCounter & 0xff);
iv = cipher.doFinal(iv);
cipher.init(Cipher.ENCRYPT_MODE, mSEnc, new IvParameterSpec(iv));
final byte[] pdata = new byte[data.length + AES_BLOCK_SIZE - (data.length % AES_BLOCK_SIZE)];
System.arraycopy(data, 0, pdata, 0, data.length);
pdata[data.length] = (byte)0x80;
Arrays.fill(data, (byte)0);
data = cipher.doFinal(pdata);
Arrays.fill(pdata, (byte)0);
Arrays.fill(iv, (byte)0);
}
final int lcc = data.length + SCP11_MAC_LENGTH;
final byte[] odata = new byte[4 + 3 + lcc + 3];
int ooff = 0;
odata[ooff++] = (byte) (((byte) apdu.getCLA()) | OPENPGP_SECURE_MESSAGING_CLA_MASK);
odata[ooff++] = (byte) apdu.getINS();
odata[ooff++] = (byte) apdu.getP1();
odata[ooff++] = (byte) apdu.getP2();
if (lcc > 0xff) {
odata[ooff++] = (byte) 0;
odata[ooff++] = (byte) ((lcc >> 8) & 0xff);
}
odata[ooff++] = (byte) (lcc & 0xff);
System.arraycopy(data, 0, odata, ooff, data.length);
ooff += data.length;
Arrays.fill(data, (byte)0);
final Mac mac = Mac.getInstance(SCP11_MAC_ALGO, PROVIDER);
mac.init(mSMac);
mac.update(mMacChaining);
mac.update(odata, 0, ooff);
mMacChaining = mac.doFinal();
System.arraycopy(mMacChaining, 0, odata, ooff, SCP11_MAC_LENGTH);
ooff += SCP11_MAC_LENGTH;
if (lcc > 0xff) {
odata[ooff++] = (byte) 0;
}
odata[ooff++] = (byte) 0;
apdu = new CommandAPDU(odata, 0, ooff);
Arrays.fill(odata, (byte)0);
return apdu;
} catch (NoSuchAlgorithmException e) {
throw new SecureMessagingException("unavailable algorithm : " + e.getMessage());
} catch (NoSuchProviderException e) {
throw new SecureMessagingException("unavailable provider : " + e.getMessage());
} catch (NoSuchPaddingException e) {
throw new SecureMessagingException("unavailable padding algorithm : " + e.getMessage());
} catch (InvalidKeyException e) {
throw new SecureMessagingException("invalid key : " + e.getMessage());
} catch (InvalidAlgorithmParameterException e) {
throw new SecureMessagingException("invalid IV : " + e.getMessage());
} catch (BadPaddingException e) {
throw new SecureMessagingException("invalid IV : " + e.getMessage());
} catch (IllegalBlockSizeException e) {
throw new SecureMessagingException("invalid block size : " + e.getMessage());
}
}
@Override
public ResponseAPDU verifyAndDecrypt(ResponseAPDU apdu)
throws SecureMessagingException {
if (!isEstablished()) {
throw new SecureMessagingException("not established");
}
byte[] data = apdu.getData();
if ((data.length == 0) &&
(apdu.getSW() != 0x9000) &&
(apdu.getSW1() != 0x62) &&
(apdu.getSW1() != 0x63)) {
return apdu;
}
if (data.length < SCP11_MAC_LENGTH) {
throw new SecureMessagingException("missing or incomplete MAC in response");
}
try {
final Mac mac = Mac.getInstance(SCP11_MAC_ALGO, PROVIDER);
mac.init(mSRMac);
mac.update(mMacChaining);
if ((data.length - SCP11_MAC_LENGTH) > 0) {
mac.update(data, 0, data.length - SCP11_MAC_LENGTH);
}
mac.update((byte) apdu.getSW1());
mac.update((byte) apdu.getSW2());
final byte[] sig = mac.doFinal();
for (int i = 0; i < SCP11_MAC_LENGTH; ++i) {
if ((i >= sig.length)
|| (sig[i] != data[data.length - SCP11_MAC_LENGTH + i])) {
throw new SecureMessagingException("corrupted integrity");
}
}
if (((data.length - SCP11_MAC_LENGTH) % AES_BLOCK_SIZE) != 0) {
throw new SecureMessagingException("invalid encrypted data size");
}
if (data.length > SCP11_MAC_LENGTH) {
final Cipher cipher = Cipher.getInstance(SCP11_CIPHER_ALGO);
byte[] iv = new byte[AES_BLOCK_SIZE];
Arrays.fill(iv,(byte)0);
cipher.init(Cipher.ENCRYPT_MODE, mSEnc, new IvParameterSpec(iv));
iv[0] = (byte) 0x80;
iv[AES_BLOCK_SIZE - 2] = (byte) ((mEncryptionCounter >> 8) & 0xff);
iv[AES_BLOCK_SIZE - 1] = (byte) (mEncryptionCounter & 0xff);
iv = cipher.doFinal(iv);
cipher.init(Cipher.DECRYPT_MODE, mSEnc, new IvParameterSpec(iv));
data = cipher.doFinal(data, 0, data.length - SCP11_MAC_LENGTH);
int i = data.length - 1;
while ((0 < i) && (data[i] == (byte) 0)) --i;
if ((i <= 0) || (data[i] != (byte) 0x80)) {
throw new SecureMessagingException("invalid data padding after decryption");
}
final byte[] datasw = new byte[i + 2];
System.arraycopy(data, 0, datasw, 0, i);
datasw[datasw.length - 2] = (byte) apdu.getSW1();
datasw[datasw.length - 1] = (byte) apdu.getSW2();
Arrays.fill(data, (byte) 0);
data = datasw;
} else {
data = new byte[2];
data[0] = (byte) apdu.getSW1();
data[1] = (byte) apdu.getSW2();
}
apdu = new ResponseAPDU(data);
return apdu;
} catch (NoSuchAlgorithmException e) {
throw new SecureMessagingException("unavailable algorithm : " + e.getMessage());
} catch (NoSuchProviderException e) {
throw new SecureMessagingException("unknown provider : " + e.getMessage());
} catch (NoSuchPaddingException e) {
throw new SecureMessagingException("unavailable padding algorithm : " + e.getMessage());
} catch (InvalidKeyException e) {
throw new SecureMessagingException("invalid key : " + e.getMessage());
} catch (BadPaddingException e) {
throw new SecureMessagingException("invalid IV : " + e.getMessage());
} catch (InvalidAlgorithmParameterException e) {
throw new SecureMessagingException("invalid IV : " + e.getMessage());
} catch (IllegalBlockSizeException e) {
throw new SecureMessagingException("invalid block size : " + e.getMessage());
}
}
}
@@ -0,0 +1,34 @@
/*
* Copyright (C) 2016-2017 Arnaud Fontaine
*
* 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.securitytoken;
import java.io.IOException;
import javax.smartcardio.CommandAPDU;
import javax.smartcardio.ResponseAPDU;
public interface SecureMessaging {
void clearSession();
boolean isEstablished();
CommandAPDU encryptAndSign(CommandAPDU apdu) throws SecureMessagingException;
ResponseAPDU verifyAndDecrypt(ResponseAPDU apdu) throws SecureMessagingException;
}
@@ -0,0 +1,25 @@
/*
* Copyright (C) 2016-2017 Arnaud Fontaine
*
* 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.securitytoken;
public final class SecureMessagingException extends Exception {
public SecureMessagingException(String msg) {
super(msg);
}
}
@@ -1,6 +1,6 @@
/*
* Copyright (C) 2016 Nikita Mikhailov <nikita.s.mikhailov@gmail.com>
* Copyright (C) 2013-2015 Dominik Schürmann <dominik@dominikschuermann.de>
* Copyright (C) 2013-2017 Dominik Schürmann <dominik@dominikschuermann.de>
* Copyright (C) 2015 Vincent Breitmoser <v.breitmoser@mugenguild.com>
* Copyright (C) 2013-2014 Signe Rüsch
* Copyright (C) 2013-2014 Philipp Jakubeit
@@ -21,26 +21,48 @@
package org.sufficientlysecure.keychain.securitytoken;
import android.content.Context;
import android.support.annotation.NonNull;
import org.bouncycastle.asn1.ASN1Encodable;
import org.bouncycastle.asn1.ASN1Integer;
import org.bouncycastle.asn1.ASN1OutputStream;
import org.bouncycastle.asn1.DERSequence;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.asn1.x9.X9ECParameters;
import org.bouncycastle.bcpg.HashAlgorithmTags;
import org.bouncycastle.jcajce.util.MessageDigestUtils;
import org.bouncycastle.math.ec.ECPoint;
import org.bouncycastle.openpgp.PGPException;
import org.bouncycastle.openpgp.operator.PGPPad;
import org.bouncycastle.openpgp.operator.jcajce.JcaKeyFingerprintCalculator;
import org.bouncycastle.util.Arrays;
import org.bouncycastle.util.encoders.Hex;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.pgp.CanonicalizedPublicKey;
import org.sufficientlysecure.keychain.pgp.CanonicalizedSecretKey;
import org.sufficientlysecure.keychain.pgp.exception.PgpGeneralException;
import javax.crypto.Cipher;
import javax.crypto.NoSuchPaddingException;
import javax.crypto.spec.SecretKeySpec;
import javax.smartcardio.CommandAPDU;
import javax.smartcardio.ResponseAPDU;
import org.sufficientlysecure.keychain.securitytoken.usb.UsbTransportException;
import org.sufficientlysecure.keychain.util.Iso7816TLV;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.Passphrase;
import org.sufficientlysecure.keychain.util.SecurityTokenUtils;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.math.BigInteger;
import java.nio.ByteBuffer;
import java.security.InvalidKeyException;
import java.security.Key;
import java.security.MessageDigest;
import java.security.NoSuchAlgorithmException;
import java.security.interfaces.ECPrivateKey;
import java.security.interfaces.ECPublicKey;
import java.security.interfaces.RSAPrivateCrtKey;
/**
@@ -53,9 +75,9 @@ public class SecurityTokenHelper {
private static final int MAX_APDU_NC_EXT = 65535;
private static final int MAX_APDU_NE = 256;
private static final int MAX_APDU_NE_EXT = 65536;
static final int MAX_APDU_NE_EXT = 65536;
private static final int APDU_SW_SUCCESS = 0x9000;
static final int APDU_SW_SUCCESS = 0x9000;
private static final int APDU_SW1_RESPONSE_AVAILABLE = 0x61;
private static final int MASK_CLA_CHAINING = 1 << 4;
@@ -64,9 +86,13 @@ public class SecurityTokenHelper {
private static final String FIDESMO_APPS_AID_PREFIX = "A000000617";
private static final byte[] BLANK_FINGERPRINT = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
private final JcaKeyFingerprintCalculator fingerprintCalculator = new JcaKeyFingerprintCalculator();
private Transport mTransport;
private CardCapabilities mCardCapabilities;
private OpenPgpCapabilities mOpenPgpCapabilities;
private SecureMessaging mSecureMessaging;
private Passphrase mPin;
private Passphrase mAdminPin;
@@ -74,7 +100,13 @@ public class SecurityTokenHelper {
private boolean mPw1ValidatedForDecrypt; // Mode 82 does other things; consider renaming?
private boolean mPw3Validated;
protected SecurityTokenHelper() {
private SecurityTokenHelper() {
}
public static double parseOpenPgpVersion(final byte[] aid) {
float minv = aid[7];
while (minv > 0) minv /= 10.0;
return aid[6] + minv;
}
public static SecurityTokenHelper getInstance() {
@@ -136,12 +168,14 @@ public class SecurityTokenHelper {
private boolean isSlotEmpty(KeyType keyType) throws IOException {
// Note: special case: This should not happen, but happens with
// https://github.com/FluffyKaon/OpenPGP-Card, thus for now assume true
if (getKeyFingerprint(keyType) == null) return true;
if (getKeyFingerprint(keyType) == null) {
return true;
}
return keyMatchesFingerPrint(keyType, BLANK_FINGERPRINT);
}
public boolean keyMatchesFingerPrint(KeyType keyType, byte[] fingerprint) throws IOException {
private boolean keyMatchesFingerPrint(KeyType keyType, byte[] fingerprint) throws IOException {
return java.util.Arrays.equals(getKeyFingerprint(keyType), fingerprint);
}
@@ -150,7 +184,7 @@ public class SecurityTokenHelper {
*
* @throws IOException
*/
public void connectToDevice() throws IOException {
public void connectToDevice(final Context ctx) throws IOException {
// Connect on transport layer
mCardCapabilities = new CardCapabilities();
@@ -171,6 +205,16 @@ public class SecurityTokenHelper {
mPw1ValidatedForSignature = false;
mPw1ValidatedForDecrypt = false;
mPw3Validated = false;
if (mOpenPgpCapabilities.isHasSM()) {
try {
SCP11bSecureMessaging.establish(this, ctx);
} catch (SecureMessagingException e) {
mSecureMessaging = null;
Log.e(Constants.TAG, "failed to establish secure messaging", e);
}
}
}
/**
@@ -218,17 +262,62 @@ public class SecurityTokenHelper {
* Call DECIPHER command
*
* @param encryptedSessionKey the encoded session key
* @param publicKey
* @return the decoded session key
*/
public byte[] decryptSessionKey(@NonNull byte[] encryptedSessionKey) throws IOException {
public byte[] decryptSessionKey(@NonNull byte[] encryptedSessionKey,
CanonicalizedPublicKey publicKey)
throws IOException {
final KeyFormat kf = mOpenPgpCapabilities.getFormatForKeyType(KeyType.ENCRYPT);
if (!mPw1ValidatedForDecrypt) {
verifyPin(0x82); // (Verify PW1 with mode 82 for decryption)
}
// Transmit
byte[] data = Arrays.copyOfRange(encryptedSessionKey, 2, encryptedSessionKey.length);
if (data[0] != 0) {
data = Arrays.prepend(data, (byte) 0x00);
byte[] data;
int pLen = 0;
X9ECParameters x9Params;
switch (kf.keyFormatType()) {
case RSAKeyFormatType:
data = Arrays.copyOfRange(encryptedSessionKey, 2, encryptedSessionKey.length);
if (data[0] != 0) {
data = Arrays.prepend(data, (byte) 0x00);
}
break;
case ECKeyFormatType:
pLen = ((((encryptedSessionKey[0] & 0xff) << 8) + (encryptedSessionKey[1] & 0xff)) + 7) / 8;
data = new byte[pLen];
System.arraycopy(encryptedSessionKey, 2, data, 0, pLen);
final ECKeyFormat eckf = (ECKeyFormat) kf;
x9Params = NISTNamedCurves.getByOID(eckf.getCurveOID());
final ECPoint p = x9Params.getCurve().decodePoint(data);
if (!p.isValid()) {
throw new CardException("Invalid EC point!");
}
data = p.getEncoded(false);
data = Arrays.concatenate(
Hex.decode("86"),
new byte[]{(byte) data.length},
data);
data = Arrays.concatenate(
Hex.decode("7F49"),
new byte[]{(byte) data.length},
data);
data = Arrays.concatenate(
Hex.decode("A6"),
new byte[]{(byte) data.length},
data);
break;
default:
throw new CardException("Unknown encryption key type!");
}
CommandAPDU command = new CommandAPDU(0x00, 0x2A, 0x80, 0x86, data, MAX_APDU_NE_EXT);
@@ -238,7 +327,60 @@ public class SecurityTokenHelper {
throw new CardException("Deciphering with Security token failed on receive", response.getSW());
}
return response.getData();
switch (mOpenPgpCapabilities.getFormatForKeyType(KeyType.ENCRYPT).keyFormatType()) {
case RSAKeyFormatType:
return response.getData();
/* From 3.x OpenPGP card specification :
In case of ECDH the card supports a partial decrypt only.
With its own private key and the given public key the card calculates a shared secret
in compliance with the Elliptic Curve Key Agreement Scheme from Diffie-Hellman.
The shared secret is returned in the response, all other calculation for deciphering
are done outside of the card.
The shared secret obtained is a KEK (Key Encryption Key) that is used to wrap the
session key.
From rfc6637#section-13 :
This document explicitly discourages the use of algorithms other than AES as a KEK algorithm.
*/
case ECKeyFormatType:
data = response.getData();
final byte[] keyEnc = new byte[encryptedSessionKey[pLen + 2]];
System.arraycopy(encryptedSessionKey, 2 + pLen + 1, keyEnc, 0, keyEnc.length);
try {
final MessageDigest kdf = MessageDigest.getInstance(MessageDigestUtils.getDigestName(publicKey.getSecurityTokenHashAlgorithm()));
kdf.update(new byte[]{(byte) 0, (byte) 0, (byte) 0, (byte) 1});
kdf.update(data);
kdf.update(publicKey.createUserKeyingMaterial(fingerprintCalculator));
final byte[] kek = kdf.digest();
final Cipher c = Cipher.getInstance("AESWrap");
c.init(Cipher.UNWRAP_MODE, new SecretKeySpec(kek, 0, publicKey.getSecurityTokenSymmetricKeySize() / 8, "AES"));
final Key paddedSessionKey = c.unwrap(keyEnc, "Session", Cipher.SECRET_KEY);
Arrays.fill(kek, (byte) 0);
return PGPPad.unpadSessionData(paddedSessionKey.getEncoded());
} catch (NoSuchAlgorithmException e) {
throw new CardException("Unknown digest/encryption algorithm!");
} catch (NoSuchPaddingException e) {
throw new CardException("Unknown padding algorithm!");
} catch (PGPException e) {
throw new CardException(e.getMessage());
} catch (InvalidKeyException e) {
throw new CardException("Invalid KEK!");
}
default:
throw new CardException("Unknown encryption key type!");
}
}
/**
@@ -300,6 +442,36 @@ public class SecurityTokenHelper {
}
}
private void setKeyAttributes(final KeyType slot, final CanonicalizedSecretKey secretKey)
throws IOException {
if (mOpenPgpCapabilities.isAttributesChangable()) {
int tag;
if (slot == KeyType.SIGN) {
tag = 0xC1;
} else if (slot == KeyType.ENCRYPT) {
tag = 0xC2;
} else if (slot == KeyType.AUTH) {
tag = 0xC3;
} else {
throw new IOException("Unknown key for card.");
}
try {
putData(tag, SecurityTokenUtils.attributesFromSecretKey(slot, secretKey));
mOpenPgpCapabilities.updateWithData(getData(0x00, tag));
} catch (PgpGeneralException e) {
throw new IOException("Key algorithm not supported by the security token.");
}
}
}
/**
* Puts a key on the token in the given slot.
*
@@ -311,33 +483,58 @@ public class SecurityTokenHelper {
private void putKey(KeyType slot, CanonicalizedSecretKey secretKey, Passphrase passphrase)
throws IOException {
RSAPrivateCrtKey crtSecretKey;
try {
secretKey.unlock(passphrase);
crtSecretKey = secretKey.getCrtSecretKey();
} catch (PgpGeneralException e) {
throw new IOException(e.getMessage());
}
// Shouldn't happen; the UI should block the user from getting an incompatible key this far.
if (crtSecretKey.getModulus().bitLength() > 2048) {
throw new IOException("Key too large to export to Security Token.");
}
// Should happen only rarely; all GnuPG keys since 2006 use public exponent 65537.
if (!crtSecretKey.getPublicExponent().equals(new BigInteger("65537"))) {
throw new IOException("Invalid public exponent for smart Security Token.");
}
ECPrivateKey ecSecretKey;
ECPublicKey ecPublicKey;
if (!mPw3Validated) {
verifyPin(0x83); // (Verify PW3 with mode 83)
}
// Now we're ready to communicate with the token.
byte[] bytes = SecurityTokenUtils.createPrivKeyTemplate(crtSecretKey, slot,
mOpenPgpCapabilities.getFormatForKeyType(slot));
byte[] keyBytes = null;
CommandAPDU apdu = new CommandAPDU(0x00, 0xDB, 0x3F, 0xFF, bytes);
try {
secretKey.unlock(passphrase);
setKeyAttributes(slot, secretKey);
switch (mOpenPgpCapabilities.getFormatForKeyType(slot).keyFormatType()) {
case RSAKeyFormatType:
if (!secretKey.isRSA()) {
throw new IOException("Security Token not configured for RSA key.");
}
crtSecretKey = secretKey.getSecurityTokenRSASecretKey();
// Should happen only rarely; all GnuPG keys since 2006 use public exponent 65537.
if (!crtSecretKey.getPublicExponent().equals(new BigInteger("65537"))) {
throw new IOException("Invalid public exponent for smart Security Token.");
}
keyBytes = SecurityTokenUtils.createRSAPrivKeyTemplate(crtSecretKey, slot,
(RSAKeyFormat) (mOpenPgpCapabilities.getFormatForKeyType(slot)));
break;
case ECKeyFormatType:
if (!secretKey.isEC()) {
throw new IOException("Security Token not configured for EC key.");
}
secretKey.unlock(passphrase);
ecSecretKey = secretKey.getSecurityTokenECSecretKey();
ecPublicKey = secretKey.getSecurityTokenECPublicKey();
keyBytes = SecurityTokenUtils.createECPrivKeyTemplate(ecSecretKey, ecPublicKey, slot,
(ECKeyFormat) (mOpenPgpCapabilities.getFormatForKeyType(slot)));
break;
default:
throw new IOException("Key type unsupported by security token.");
}
} catch (PgpGeneralException e) {
throw new IOException(e.getMessage());
}
CommandAPDU apdu = new CommandAPDU(0x00, 0xDB, 0x3F, 0xFF, keyBytes);
ResponseAPDU response = communicate(apdu);
if (response.getSW() != APDU_SW_SUCCESS) {
@@ -423,10 +620,10 @@ public class SecurityTokenHelper {
}
dsi = Arrays.concatenate(Hex.decode(
"3021" // Tag/Length of Sequence, the 0x21 includes all following 33 bytes
+ "3009" // Tag/Length of Sequence, the 0x09 are the following header bytes
+ "0605" + "2B0E03021A" // OID of SHA1
+ "0500" // TLV coding of ZERO
+ "0414"), hash); // 0x14 are 20 hash bytes
+ "3009" // Tag/Length of Sequence, the 0x09 are the following header bytes
+ "0605" + "2B0E03021A" // OID of SHA1
+ "0500" // TLV coding of ZERO
+ "0414"), hash); // 0x14 are 20 hash bytes
break;
case HashAlgorithmTags.RIPEMD160:
if (hash.length != 20) {
@@ -462,8 +659,21 @@ public class SecurityTokenHelper {
throw new IOException("Not supported hash algo!");
}
byte[] data;
switch (mOpenPgpCapabilities.getFormatForKeyType(KeyType.SIGN).keyFormatType()) {
case RSAKeyFormatType:
data = dsi;
break;
case ECKeyFormatType:
data = hash;
break;
default:
throw new IOException("Not supported key type!");
}
// Command APDU for PERFORM SECURITY OPERATION: COMPUTE DIGITAL SIGNATURE (page 37)
CommandAPDU command = new CommandAPDU(0x00, 0x2A, 0x9E, 0x9A, dsi, MAX_APDU_NE_EXT);
CommandAPDU command = new CommandAPDU(0x00, 0x2A, 0x9E, 0x9A, data, MAX_APDU_NE_EXT);
ResponseAPDU response = communicate(command);
if (response.getSW() != APDU_SW_SUCCESS) {
@@ -477,9 +687,30 @@ public class SecurityTokenHelper {
byte[] signature = response.getData();
// Make sure the signature we received is actually the expected number of bytes long!
if (signature.length != 128 && signature.length != 256
&& signature.length != 384 && signature.length != 512) {
throw new IOException("Bad signature length! Expected 128/256/384/512 bytes, got " + signature.length);
switch (mOpenPgpCapabilities.getFormatForKeyType(KeyType.SIGN).keyFormatType()) {
case RSAKeyFormatType:
if (signature.length != 128 && signature.length != 256
&& signature.length != 384 && signature.length != 512) {
throw new IOException("Bad signature length! Expected 128/256/384/512 bytes, got " + signature.length);
}
break;
case ECKeyFormatType:
if (signature.length % 2 != 0) {
throw new IOException("Bad signature length!");
}
final byte[] br = new byte[signature.length / 2];
final byte[] bs = new byte[signature.length / 2];
for (int i = 0; i < br.length; ++i) {
br[i] = signature[i];
bs[i] = signature[br.length + i];
}
final ByteArrayOutputStream baos = new ByteArrayOutputStream();
ASN1OutputStream out = new ASN1OutputStream(baos);
out.writeObject(new DERSequence(new ASN1Encodable[]{new ASN1Integer(br), new ASN1Integer(bs)}));
out.flush();
signature = baos.toByteArray();
break;
}
return signature;
@@ -490,11 +721,21 @@ public class SecurityTokenHelper {
* Transceives APDU
* Splits extended APDU into short APDUs and chains them if necessary
* Performs GET RESPONSE command(ISO/IEC 7816-4 par.7.6.1) on retrieving if necessary
*
* @param apdu short or extended APDU to transceive
* @return response from the card
* @throws IOException
*/
private ResponseAPDU communicate(CommandAPDU apdu) throws IOException {
ResponseAPDU communicate(CommandAPDU apdu) throws IOException {
if ((mSecureMessaging != null) && mSecureMessaging.isEstablished()) {
try {
apdu = mSecureMessaging.encryptAndSign(apdu);
} catch (SecureMessagingException e) {
clearSecureMessaging();
throw new IOException("secure messaging encrypt/sign failure : " + e.getMessage());
}
}
ByteArrayOutputStream result = new ByteArrayOutputStream();
ResponseAPDU lastResponse = null;
@@ -541,7 +782,18 @@ public class SecurityTokenHelper {
result.write(lastResponse.getSW1());
result.write(lastResponse.getSW2());
return new ResponseAPDU(result.toByteArray());
lastResponse = new ResponseAPDU(result.toByteArray());
if ((mSecureMessaging != null) && mSecureMessaging.isEstablished()) {
try {
lastResponse = mSecureMessaging.verifyAndDecrypt(lastResponse);
} catch (SecureMessagingException e) {
clearSecureMessaging();
throw new IOException("secure messaging verify/decrypt failure : " + e.getMessage());
}
}
return lastResponse;
}
public Transport getTransport() {
@@ -549,6 +801,7 @@ public class SecurityTokenHelper {
}
public void setTransport(Transport mTransport) {
clearSecureMessaging();
this.mTransport = mTransport;
}
@@ -628,6 +881,9 @@ public class SecurityTokenHelper {
}
}
// secure messaging must be disabled before reactivation
clearSecureMessaging();
// reactivate token!
// NOTE: keep the order here! First execute _both_ reactivate commands. Before checking _both_ responses
// If a token is in a bad state and reactivate1 fails, it could still be reactivated with reactivate2
@@ -666,13 +922,32 @@ public class SecurityTokenHelper {
}
public boolean isPersistentConnectionAllowed() {
return mTransport != null && mTransport.isPersistentConnectionAllowed();
return mTransport != null &&
mTransport.isPersistentConnectionAllowed() &&
(mSecureMessaging == null ||
!mSecureMessaging.isEstablished());
}
public boolean isConnected() {
return mTransport != null && mTransport.isConnected();
}
public void clearSecureMessaging() {
if (mSecureMessaging != null) {
mSecureMessaging.clearSession();
}
mSecureMessaging = null;
}
void setSecureMessaging(final SecureMessaging sm) {
clearSecureMessaging();
mSecureMessaging = sm;
}
OpenPgpCapabilities getOpenPgpCapabilities() {
return mOpenPgpCapabilities;
}
private static class LazyHolder {
private static final SecurityTokenHelper SECURITY_TOKEN_HELPER = new SecurityTokenHelper();
}
@@ -15,21 +15,63 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.securitytoken;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.util.Arrays;
import org.bouncycastle.util.encoders.Hex;
import org.sufficientlysecure.keychain.securitytoken.KeyFormat;
import org.sufficientlysecure.keychain.pgp.CanonicalizedSecretKey;
import org.sufficientlysecure.keychain.pgp.exception.PgpGeneralException;
import org.sufficientlysecure.keychain.securitytoken.ECKeyFormat;
import org.sufficientlysecure.keychain.securitytoken.RSAKeyFormat;
import org.sufficientlysecure.keychain.securitytoken.KeyType;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.math.BigInteger;
import java.security.interfaces.ECPrivateKey;
import java.security.interfaces.ECPublicKey;
import java.security.interfaces.RSAPrivateCrtKey;
public class SecurityTokenUtils {
public static byte[] createPrivKeyTemplate(RSAPrivateCrtKey secretKey, KeyType slot,
KeyFormat format) throws IOException {
public static byte[] attributesFromSecretKey(final KeyType slot, final CanonicalizedSecretKey secretKey) throws IOException, PgpGeneralException {
if (secretKey.isRSA()) {
final int mModulusLength = secretKey.getBitStrength();
final int mExponentLength = secretKey.getSecurityTokenRSASecretKey().getPublicExponent().bitLength();
final byte[] attrs = new byte[6];
int i = 0;
attrs[i++] = (byte) 0x01;
attrs[i++] = (byte) ((mModulusLength >> 8) & 0xff);
attrs[i++] = (byte) (mModulusLength & 0xff);
attrs[i++] = (byte) ((mExponentLength >> 8) & 0xff);
attrs[i++] = (byte) (mExponentLength & 0xff);
attrs[i++] = RSAKeyFormat.RSAAlgorithmFormat.CRT_WITH_MODULUS.getValue();
return attrs;
} else if (secretKey.isEC()) {
final byte[] oid = new ASN1ObjectIdentifier(secretKey.getCurveOid()).getEncoded();
final byte[] attrs = new byte[1 + (oid.length - 2) + 1];
if (slot.equals(KeyType.SIGN))
attrs[0] = ECKeyFormat.ECAlgorithmFormat.ECDSA_WITH_PUBKEY.getValue();
else {
attrs[0] = ECKeyFormat.ECAlgorithmFormat.ECDH_WITH_PUBKEY.getValue();
}
System.arraycopy(oid, 2, attrs, 1, (oid.length - 2));
attrs[attrs.length - 1] = (byte) 0xff;
return attrs;
} else {
throw new IOException("Unsupported key type");
}
}
public static byte[] createRSAPrivKeyTemplate(RSAPrivateCrtKey secretKey, KeyType slot,
RSAKeyFormat format) throws IOException {
ByteArrayOutputStream stream = new ByteArrayOutputStream(),
template = new ByteArrayOutputStream(),
data = new ByteArrayOutputStream(),
@@ -86,6 +128,51 @@ public class SecurityTokenUtils {
stream.write(encodeLength(data.size()));
stream.write(data.toByteArray());
// Result tlv
res.write(Hex.decode("4D"));
res.write(encodeLength(stream.size()));
res.write(stream.toByteArray());
return res.toByteArray();
}
public static byte[] createECPrivKeyTemplate(ECPrivateKey secretKey, ECPublicKey publicKey, KeyType slot,
ECKeyFormat format) throws IOException {
ByteArrayOutputStream stream = new ByteArrayOutputStream(),
template = new ByteArrayOutputStream(),
data = new ByteArrayOutputStream(),
res = new ByteArrayOutputStream();
final int csize = (int) Math.ceil(publicKey.getParams().getCurve().getField().getFieldSize() / 8.0);
writeBits(data, secretKey.getS(), csize);
template.write(Hex.decode("92"));
template.write(encodeLength(data.size()));
if (format.getAlgorithmFormat().isWithPubkey()) {
data.write(Hex.decode("04"));
writeBits(data, publicKey.getW().getAffineX(), csize);
writeBits(data, publicKey.getW().getAffineY(), csize);
template.write(Hex.decode("99"));
template.write(encodeLength(1 + 2 * csize));
}
// Bundle up
// Ext header list data
// Control Reference Template to indicate the private key
stream.write(slot.getSlot());
stream.write(0);
// Cardholder private key template
stream.write(Hex.decode("7F48"));
stream.write(encodeLength(template.size()));
stream.write(template.toByteArray());
// Concatenation of key data as defined in DO 7F48
stream.write(Hex.decode("5F48"));
stream.write(encodeLength(data.size()));
stream.write(data.toByteArray());
// Result tlv
res.write(Hex.decode("4D"));
@@ -132,20 +219,21 @@ public class SecurityTokenUtils {
throw new IllegalArgumentException("width <= 0");
}
byte[] prime = value.toByteArray();
int stripIdx = 0;
while (prime[stripIdx] == 0 && stripIdx + 1 < prime.length) {
stripIdx++;
}
final byte[] prime = value.toByteArray();
int skip = 0;
if (prime.length - stripIdx > width) {
while ((skip < prime.length) && (prime[skip] == 0)) ++skip;
if ((prime.length - skip) > width) {
throw new IllegalArgumentException("not enough width to fit value: "
+ prime.length + "/" + width);
+ (prime.length - skip) + "/" + width);
}
byte[] res = new byte[width];
int empty = width - (prime.length - stripIdx);
System.arraycopy(prime, stripIdx, res, Math.max(0, empty), Math.min(prime.length, width));
byte[] res = new byte[width];
System.arraycopy(prime, skip,
res, width - (prime.length - skip),
prime.length - skip);
stream.write(res, 0, width);
Arrays.fill(res, (byte) 0);
@@ -15,7 +15,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.securitytoken;
import android.app.Activity;
import android.content.BroadcastReceiver;
@@ -27,6 +27,7 @@ import android.hardware.usb.UsbManager;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.ui.UsbEventReceiverActivity;
import org.sufficientlysecure.keychain.util.Log;
public class UsbConnectionDispatcher {
private Activity mActivity;
@@ -37,14 +37,14 @@ import org.sufficientlysecure.keychain.operations.results.ImportKeyResult;
import org.sufficientlysecure.keychain.operations.results.OperationResult;
import org.sufficientlysecure.keychain.provider.KeychainContract;
import org.sufficientlysecure.keychain.provider.ProviderHelper;
import org.sufficientlysecure.keychain.receiver.NetworkReceiver;
import org.sufficientlysecure.keychain.network.NetworkReceiver;
import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
import org.sufficientlysecure.keychain.ui.OrbotRequiredDialogActivity;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.util.ArrayList;
import java.util.GregorianCalendar;
@@ -31,6 +31,7 @@ import org.sufficientlysecure.keychain.pgp.exception.PgpKeyNotFoundException;
import org.sufficientlysecure.keychain.provider.CachedPublicKeyRing;
import org.sufficientlysecure.keychain.provider.KeychainContract.KeyRings;
import org.sufficientlysecure.keychain.provider.ProviderHelper;
import org.sufficientlysecure.keychain.securitytoken.KeyFormat;
import org.sufficientlysecure.keychain.ui.base.BaseSecurityTokenActivity;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Passphrase;
@@ -64,6 +65,9 @@ public class CreateKeyActivity extends BaseSecurityTokenActivity {
boolean mCreateSecurityToken;
Passphrase mSecurityTokenPin;
Passphrase mSecurityTokenAdminPin;
KeyFormat mSecurityTokenSign;
KeyFormat mSecurityTokenDec;
KeyFormat mSecurityTokenAuth;
Fragment mCurrentFragment;
@@ -97,6 +101,7 @@ public class CreateKeyActivity extends BaseSecurityTokenActivity {
mPassphrase = savedInstanceState.getParcelable(EXTRA_PASSPHRASE);
mFirstTime = savedInstanceState.getBoolean(EXTRA_FIRST_TIME);
mCreateSecurityToken = savedInstanceState.getBoolean(EXTRA_CREATE_SECURITY_TOKEN);
mSecurityTokenAid = savedInstanceState.getByteArray(EXTRA_SECURITY_TOKEN_AID);
mSecurityTokenPin = savedInstanceState.getParcelable(EXTRA_SECURITY_TOKEN_PIN);
mSecurityTokenAdminPin = savedInstanceState.getParcelable(EXTRA_SECURITY_TOKEN_ADMIN_PIN);
@@ -122,7 +127,7 @@ public class CreateKeyActivity extends BaseSecurityTokenActivity {
setTitle(R.string.title_import_keys);
} else {
Fragment frag = CreateSecurityTokenBlankFragment.newInstance();
Fragment frag = CreateSecurityTokenBlankFragment.newInstance(nfcAid);
loadFragment(frag, FragAction.START);
setTitle(R.string.title_manage_my_keys);
}
@@ -192,7 +197,7 @@ public class CreateKeyActivity extends BaseSecurityTokenActivity {
loadFragment(frag, FragAction.TO_RIGHT);
}
} else {
Fragment frag = CreateSecurityTokenBlankFragment.newInstance();
Fragment frag = CreateSecurityTokenBlankFragment.newInstance(mSecurityTokenAid);
loadFragment(frag, FragAction.TO_RIGHT);
}
}
@@ -221,6 +226,7 @@ public class CreateKeyActivity extends BaseSecurityTokenActivity {
outState.putParcelable(EXTRA_PASSPHRASE, mPassphrase);
outState.putBoolean(EXTRA_FIRST_TIME, mFirstTime);
outState.putBoolean(EXTRA_CREATE_SECURITY_TOKEN, mCreateSecurityToken);
outState.putByteArray(EXTRA_SECURITY_TOKEN_AID, mSecurityTokenAid);
outState.putParcelable(EXTRA_SECURITY_TOKEN_PIN, mSecurityTokenPin);
outState.putParcelable(EXTRA_SECURITY_TOKEN_ADMIN_PIN, mSecurityTokenAdminPin);
}
@@ -41,6 +41,7 @@ import org.sufficientlysecure.keychain.operations.results.EditKeyResult;
import org.sufficientlysecure.keychain.operations.results.OperationResult;
import org.sufficientlysecure.keychain.operations.results.UploadResult;
import org.sufficientlysecure.keychain.pgp.KeyRing;
import org.sufficientlysecure.keychain.pgp.PgpSecurityConstants;
import org.sufficientlysecure.keychain.pgp.exception.PgpKeyNotFoundException;
import org.sufficientlysecure.keychain.provider.CachedPublicKeyRing;
import org.sufficientlysecure.keychain.provider.KeychainContract;
@@ -283,22 +284,19 @@ public class CreateKeyFinalFragment extends Fragment {
SaveKeyringParcel saveKeyringParcel = new SaveKeyringParcel();
if (createKeyActivity.mCreateSecurityToken) {
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
2048, null, KeyFlags.SIGN_DATA | KeyFlags.CERTIFY_OTHER, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
2048, null, KeyFlags.ENCRYPT_COMMS | KeyFlags.ENCRYPT_STORAGE, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
2048, null, KeyFlags.AUTHENTICATION, 0L));
if (createKeyActivity.mSecurityTokenSign == null) {
createKeyActivity.mSecurityTokenSign = Constants.SECURITY_TOKEN_V2_SIGN;
createKeyActivity.mSecurityTokenDec = Constants.SECURITY_TOKEN_V2_DEC;
createKeyActivity.mSecurityTokenAuth = Constants.SECURITY_TOKEN_V2_AUTH;
}
createKeyActivity.mSecurityTokenSign.addToSaveKeyringParcel(saveKeyringParcel, KeyFlags.SIGN_DATA | KeyFlags.CERTIFY_OTHER);
createKeyActivity.mSecurityTokenDec.addToSaveKeyringParcel(saveKeyringParcel, KeyFlags.ENCRYPT_COMMS | KeyFlags.ENCRYPT_STORAGE);
createKeyActivity.mSecurityTokenAuth.addToSaveKeyringParcel(saveKeyringParcel, KeyFlags.AUTHENTICATION);
// use empty passphrase
saveKeyringParcel.setNewUnlock(new ChangeUnlockParcel(new Passphrase()));
} else {
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
3072, null, KeyFlags.CERTIFY_OTHER, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
3072, null, KeyFlags.SIGN_DATA, 0L));
saveKeyringParcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(Algorithm.RSA,
3072, null, KeyFlags.ENCRYPT_COMMS | KeyFlags.ENCRYPT_STORAGE, 0L));
Constants.addDefaultSubkeys(saveKeyringParcel);
if (createKeyActivity.mPassphrase != null) {
saveKeyringParcel.setNewUnlock(new ChangeUnlockParcel(createKeyActivity.mPassphrase));
@@ -0,0 +1,187 @@
/*
* Copyright (C) 2016 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.ui;
import android.app.Activity;
import android.content.Context;
import android.os.Bundle;
import android.support.v4.app.Fragment;
import android.support.v4.app.FragmentActivity;
import android.text.Html;
import android.view.LayoutInflater;
import android.view.View;
import android.view.ViewGroup;
import android.widget.ArrayAdapter;
import android.widget.Spinner;
import android.widget.TextView;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.securitytoken.KeyFormat;
import org.sufficientlysecure.keychain.securitytoken.SecurityTokenHelper;
import org.sufficientlysecure.keychain.ui.CreateKeyActivity.FragAction;
import org.sufficientlysecure.keychain.util.Choice;
import java.util.ArrayList;
import java.util.List;
public class CreateSecurityTokenAlgorithmFragment extends Fragment {
public enum SupportedKeyType {
RSA_2048, RSA_3072, RSA_4096, ECC_P256, ECC_P384, ECC_P521
}
private CreateKeyActivity mCreateKeyActivity;
private View mBackButton;
private View mNextButton;
private Spinner mSignKeySpinner;
private Spinner mDecKeySpinner;
private Spinner mAuthKeySpinner;
/**
* Creates new instance of this fragment
*/
public static CreateSecurityTokenAlgorithmFragment newInstance() {
CreateSecurityTokenAlgorithmFragment frag = new CreateSecurityTokenAlgorithmFragment();
Bundle args = new Bundle();
frag.setArguments(args);
return frag;
}
@Override
public View onCreateView(LayoutInflater inflater, ViewGroup container, Bundle savedInstanceState) {
final FragmentActivity context = getActivity();
View view = inflater.inflate(R.layout.create_yubi_key_algorithm_fragment, container, false);
mBackButton = view.findViewById(R.id.create_key_back_button);
mNextButton = view.findViewById(R.id.create_key_next_button);
mBackButton.setOnClickListener(new View.OnClickListener() {
@Override
public void onClick(View v) {
back();
}
});
mNextButton.setOnClickListener(new View.OnClickListener() {
@Override
public void onClick(View v) {
nextClicked();
}
});
mSignKeySpinner = (Spinner) view.findViewById(R.id.create_key_yubi_key_algorithm_sign);
mDecKeySpinner = (Spinner) view.findViewById(R.id.create_key_yubi_key_algorithm_dec);
mAuthKeySpinner = (Spinner) view.findViewById(R.id.create_key_yubi_key_algorithm_auth);
ArrayList<Choice<SupportedKeyType>> choices = new ArrayList<>();
choices.add(new Choice<>(SupportedKeyType.RSA_2048, getResources().getString(
R.string.rsa_2048), getResources().getString(R.string.rsa_2048_description_html)));
choices.add(new Choice<>(SupportedKeyType.RSA_3072, getResources().getString(
R.string.rsa_3072), getResources().getString(R.string.rsa_3072_description_html)));
choices.add(new Choice<>(SupportedKeyType.RSA_4096, getResources().getString(
R.string.rsa_4096), getResources().getString(R.string.rsa_4096_description_html)));
final double version = SecurityTokenHelper.parseOpenPgpVersion(mCreateKeyActivity.mSecurityTokenAid);
if (version >= 3.0) {
choices.add(new Choice<>(SupportedKeyType.ECC_P256, getResources().getString(
R.string.ecc_p256), getResources().getString(R.string.ecc_p256_description_html)));
choices.add(new Choice<>(SupportedKeyType.ECC_P384, getResources().getString(
R.string.ecc_p384), getResources().getString(R.string.ecc_p384_description_html)));
choices.add(new Choice<>(SupportedKeyType.ECC_P521, getResources().getString(
R.string.ecc_p521), getResources().getString(R.string.ecc_p521_description_html)));
}
TwoLineArrayAdapter adapter = new TwoLineArrayAdapter(context,
android.R.layout.simple_spinner_item, choices);
mSignKeySpinner.setAdapter(adapter);
mDecKeySpinner.setAdapter(adapter);
mAuthKeySpinner.setAdapter(adapter);
// make ECC nist256 the default for v3.x
for (int i = 0; i < choices.size(); ++i) {
if (version >= 3.0) {
if (choices.get(i).getId() == SupportedKeyType.ECC_P256) {
mSignKeySpinner.setSelection(i);
mDecKeySpinner.setSelection(i);
mAuthKeySpinner.setSelection(i);
break;
}
} else {
if (choices.get(i).getId() == SupportedKeyType.RSA_2048) {
mSignKeySpinner.setSelection(i);
mDecKeySpinner.setSelection(i);
mAuthKeySpinner.setSelection(i);
break;
}
}
}
return view;
}
@Override
public void onAttach(Activity activity) {
super.onAttach(activity);
mCreateKeyActivity = (CreateKeyActivity) getActivity();
}
private void back() {
mCreateKeyActivity.loadFragment(null, FragAction.TO_LEFT);
}
private void nextClicked() {
mCreateKeyActivity.mSecurityTokenSign = KeyFormat.fromCreationKeyType(((Choice<SupportedKeyType>) mSignKeySpinner.getSelectedItem()).getId(), false);
mCreateKeyActivity.mSecurityTokenDec = KeyFormat.fromCreationKeyType(((Choice<SupportedKeyType>) mDecKeySpinner.getSelectedItem()).getId(), true);
mCreateKeyActivity.mSecurityTokenAuth = KeyFormat.fromCreationKeyType(((Choice<SupportedKeyType>) mAuthKeySpinner.getSelectedItem()).getId(), false);
CreateKeyFinalFragment frag = CreateKeyFinalFragment.newInstance();
mCreateKeyActivity.loadFragment(frag, FragAction.TO_RIGHT);
}
private class TwoLineArrayAdapter extends ArrayAdapter<Choice<SupportedKeyType>> {
TwoLineArrayAdapter(Context context, int resource, List<Choice<SupportedKeyType>> objects) {
super(context, resource, objects);
}
@Override
public View getDropDownView(int position, View convertView, ViewGroup parent) {
// inflate view if not given one
if (convertView == null) {
convertView = getActivity().getLayoutInflater()
.inflate(R.layout.two_line_spinner_dropdown_item, parent, false);
}
Choice c = this.getItem(position);
TextView text1 = (TextView) convertView.findViewById(android.R.id.text1);
TextView text2 = (TextView) convertView.findViewById(android.R.id.text2);
text1.setText(c.getName());
text2.setText(Html.fromHtml(c.getDescription()));
return convertView;
}
}
}
@@ -34,14 +34,17 @@ public class CreateSecurityTokenBlankFragment extends Fragment {
View mBackButton;
View mNextButton;
private byte[] mAid;
/**
* Creates new instance of this fragment
*/
public static CreateSecurityTokenBlankFragment newInstance() {
public static CreateSecurityTokenBlankFragment newInstance(byte[] aid) {
CreateSecurityTokenBlankFragment frag = new CreateSecurityTokenBlankFragment();
Bundle args = new Bundle();
frag.mAid = aid;
frag.setArguments(args);
return frag;
@@ -83,6 +86,7 @@ public class CreateSecurityTokenBlankFragment extends Fragment {
private void nextClicked() {
mCreateKeyActivity.mCreateSecurityToken = true;
mCreateKeyActivity.mSecurityTokenAid = mAid;
CreateKeyNameFragment frag = CreateKeyNameFragment.newInstance();
mCreateKeyActivity.loadFragment(frag, FragAction.TO_RIGHT);
@@ -37,6 +37,7 @@ import org.sufficientlysecure.keychain.keyimport.ParcelableKeyRing;
import org.sufficientlysecure.keychain.keyimport.processing.CloudLoaderState;
import org.sufficientlysecure.keychain.operations.results.ImportKeyResult;
import org.sufficientlysecure.keychain.provider.KeychainContract.KeyRings;
import org.sufficientlysecure.keychain.securitytoken.SecurityTokenHelper;
import org.sufficientlysecure.keychain.service.ImportKeyringParcel;
import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
import org.sufficientlysecure.keychain.service.input.RequiredInputParcel;
@@ -66,6 +67,7 @@ public class CreateSecurityTokenImportResetFragment
private byte[] mTokenFingerprints;
private byte[] mTokenAid;
private double mTokenVersion;
private String mTokenUserId;
private String mTokenFingerprint;
private TextView vSerNo;
@@ -254,6 +256,7 @@ public class CreateSecurityTokenImportResetFragment
mTokenFingerprints = mCreateKeyActivity.getSecurityTokenHelper().getFingerprints();
mTokenAid = mCreateKeyActivity.getSecurityTokenHelper().getAid();
mTokenVersion = SecurityTokenHelper.parseOpenPgpVersion(mTokenAid);
mTokenUserId = mCreateKeyActivity.getSecurityTokenHelper().getUserId();
byte[] fp = new byte[20];
@@ -290,6 +293,7 @@ public class CreateSecurityTokenImportResetFragment
viewKeyIntent.setData(KeyRings.buildGenericKeyRingUri(masterKeyIds[0]));
viewKeyIntent.putExtra(ViewKeyActivity.EXTRA_DISPLAY_RESULT, result);
viewKeyIntent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_AID, mTokenAid);
viewKeyIntent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_VERSION, mTokenVersion);
viewKeyIntent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_USER_ID, mTokenUserId);
viewKeyIntent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_FINGERPRINTS, mTokenFingerprints);
@@ -30,6 +30,7 @@ import android.widget.EditText;
import android.widget.TextView;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.securitytoken.SecurityTokenHelper;
import org.sufficientlysecure.keychain.ui.CreateKeyActivity.FragAction;
import org.sufficientlysecure.keychain.util.Passphrase;
@@ -200,7 +201,14 @@ public class CreateSecurityTokenPinFragment extends Fragment {
mCreateKeyActivity.mSecurityTokenPin = new Passphrase(mPin.getText().toString());
CreateKeyFinalFragment frag = CreateKeyFinalFragment.newInstance();
final double version = SecurityTokenHelper.parseOpenPgpVersion(mCreateKeyActivity.mSecurityTokenAid);
Fragment frag;
if (version >= 3.0) {
frag = CreateSecurityTokenAlgorithmFragment.newInstance();
} else {
frag = CreateKeyFinalFragment.newInstance();
}
hideKeyboard();
mCreateKeyActivity.loadFragment(frag, FragAction.TO_RIGHT);
}
@@ -35,6 +35,8 @@ import android.view.ViewGroup;
import android.widget.AdapterView;
import android.widget.ListView;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.bcpg.PublicKeyAlgorithmTags;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
@@ -449,19 +451,31 @@ public class EditKeyFragment extends QueueingCryptoOperationFragment<SaveKeyring
break;
}
int algorithm = mSubkeysAdapter.getAlgorithm(position);
if (algorithm != PublicKeyAlgorithmTags.RSA_GENERAL
&& algorithm != PublicKeyAlgorithmTags.RSA_ENCRYPT
&& algorithm != PublicKeyAlgorithmTags.RSA_SIGN) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_algo, Notify.Style.ERROR)
.show();
break;
}
switch (mSubkeysAdapter.getAlgorithm(position)) {
case PublicKeyAlgorithmTags.RSA_GENERAL:
case PublicKeyAlgorithmTags.RSA_ENCRYPT:
case PublicKeyAlgorithmTags.RSA_SIGN:
if (mSubkeysAdapter.getKeySize(position) < 2048) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_size, Notify.Style.ERROR)
.show();
}
break;
if (mSubkeysAdapter.getKeySize(position) != 2048) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_size, Notify.Style.ERROR)
.show();
break;
case PublicKeyAlgorithmTags.ECDH:
case PublicKeyAlgorithmTags.ECDSA:
final ASN1ObjectIdentifier curve = NISTNamedCurves.getOID(mSubkeysAdapter.getCurveOid(position));
if (!curve.equals(NISTNamedCurves.getByName("P-256")) &&
!curve.equals(NISTNamedCurves.getByName("P-384")) &&
!curve.equals(NISTNamedCurves.getByName("P-521"))) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_curve, Notify.Style.ERROR)
.show();
}
break;
default:
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_algo, Notify.Style.ERROR)
.show();
break;
}
SubkeyChange change;
@@ -52,7 +52,7 @@ import org.sufficientlysecure.keychain.ui.util.PermissionsUtil;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.Preferences.CloudSearchPrefs;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.util.ArrayList;
@@ -35,7 +35,7 @@ import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
import org.sufficientlysecure.keychain.ui.util.ThemeChanger;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
/**
* Simply encapsulates a dialog. If orbot is not installed, it shows an install dialog, else a
@@ -291,17 +291,14 @@ public class PassphraseDialogActivity extends FragmentActivity {
final ImageButton keyboard = (ImageButton) mLayout.findViewById(R.id.passphrase_keyboard);
if (keyType == CanonicalizedSecretKey.SecretKeyType.PIN) {
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_NUMBER);
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_NUMBER | InputType.TYPE_TEXT_VARIATION_PASSWORD);
mPassphraseEditText.setTransformationMethod(PasswordTransformationMethod.getInstance());
keyboard.setVisibility(View.GONE);
} else if (keyType == CanonicalizedSecretKey.SecretKeyType.DIVERT_TO_CARD) {
if (Preferences.getPreferences(activity).useNumKeypadForSecurityTokenPin()) {
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_NUMBER);
keyboard.setImageResource(R.drawable.ic_alphabetical_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_alpha));
setKeyboardNumeric(keyboard);
} else {
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_TEXT | InputType.TYPE_TEXT_VARIATION_PASSWORD);
keyboard.setImageResource(R.drawable.ic_numeric_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_numeric));
setKeyboardAlphabetic(keyboard);
}
keyboard.setVisibility(View.VISIBLE);
@@ -312,15 +309,11 @@ public class PassphraseDialogActivity extends FragmentActivity {
if (prefs.useNumKeypadForSecurityTokenPin()) {
prefs.setUseNumKeypadForSecurityTokenPin(false);
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_TEXT | InputType.TYPE_TEXT_VARIATION_PASSWORD);
keyboard.setImageResource(R.drawable.ic_numeric_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_alpha));
setKeyboardAlphabetic(keyboard);
} else {
prefs.setUseNumKeypadForSecurityTokenPin(true);
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_NUMBER);
keyboard.setImageResource(R.drawable.ic_alphabetical_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_numeric));
setKeyboardNumeric(keyboard);
}
}
});
@@ -339,6 +332,22 @@ public class PassphraseDialogActivity extends FragmentActivity {
return dialog;
}
private void setKeyboardNumeric(ImageButton keyboard) {
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_NUMBER | InputType.TYPE_TEXT_VARIATION_PASSWORD);
// somehow InputType.TYPE_TEXT_VARIATION_PASSWORD is not enough...
mPassphraseEditText.setTransformationMethod(PasswordTransformationMethod.getInstance());
keyboard.setImageResource(R.drawable.ic_alphabetical_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_alpha));
}
private void setKeyboardAlphabetic(ImageButton keyboard) {
mPassphraseEditText.setInputType(InputType.TYPE_CLASS_TEXT | InputType.TYPE_TEXT_VARIATION_PASSWORD);
// somehow InputType.TYPE_TEXT_VARIATION_PASSWORD is not enough...
mPassphraseEditText.setTransformationMethod(PasswordTransformationMethod.getInstance());
keyboard.setImageResource(R.drawable.ic_numeric_black_24dp);
keyboard.setContentDescription(getString(R.string.passphrase_keyboard_hint_numeric));
}
/**
* Hack to open keyboard.
* This is the only method that I found to work across all Android versions
@@ -32,6 +32,7 @@ import android.widget.ViewAnimator;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.pgp.CanonicalizedPublicKeyRing;
import org.sufficientlysecure.keychain.pgp.CanonicalizedSecretKey;
import org.sufficientlysecure.keychain.pgp.CanonicalizedSecretKeyRing;
import org.sufficientlysecure.keychain.provider.KeychainContract;
@@ -192,9 +193,18 @@ public class SecurityTokenOperationActivity extends BaseSecurityTokenActivity {
throw new IOException(getString(R.string.error_wrong_security_token));
}
ProviderHelper providerHelper = new ProviderHelper(this);
CanonicalizedPublicKeyRing publicKeyRing;
try {
publicKeyRing = providerHelper.getCanonicalizedPublicKeyRing(
KeychainContract.KeyRings.buildUnifiedKeyRingsFindBySubkeyUri(mRequiredInput.getMasterKeyId()));
} catch (ProviderHelper.NotFoundException e) {
throw new IOException("Couldn't find subkey for key to token operation.");
}
for (int i = 0; i < mRequiredInput.mInputData.length; i++) {
byte[] encryptedSessionKey = mRequiredInput.mInputData[i];
byte[] decryptedSessionKey = mSecurityTokenHelper.decryptSessionKey(encryptedSessionKey);
byte[] decryptedSessionKey = mSecurityTokenHelper.decryptSessionKey(encryptedSessionKey, publicKeyRing.getPublicKey(tokenKeyId));
mInputParcel.addCryptoData(encryptedSessionKey, decryptedSessionKey);
}
break;
@@ -288,6 +298,7 @@ public class SecurityTokenOperationActivity extends BaseSecurityTokenActivity {
// Just close
finish();
} else {
mSecurityTokenHelper.clearSecureMessaging();
new AsyncTask<Void, Void, Void>() {
@Override
protected Void doInBackground(Void... params) {
@@ -56,14 +56,17 @@ import org.sufficientlysecure.keychain.ui.util.ThemeChanger;
import org.sufficientlysecure.keychain.keyimport.ParcelableHkpKeyserver;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.security.KeyStore;
import java.security.KeyStoreException;
import java.util.ArrayList;
import java.util.List;
public class SettingsActivity extends AppCompatPreferenceActivity {
public static final int REQUEST_CODE_KEYSERVER_PREF = 0x00007005;
public static final int REQUEST_CODE_SMARTPGP_AUTHORITIES_PREF = 0x00007006;
private static final int REQUEST_PERMISSION_READ_CONTACTS = 13;
private static Preferences sPreferences;
@@ -554,6 +557,8 @@ public class SettingsActivity extends AppCompatPreferenceActivity {
*/
public static class ExperimentalPrefsFragment extends PresetPreferenceFragment {
private PreferenceScreen mSmartPGPAuthoritiesPreference = null;
@Override
public void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
@@ -563,6 +568,51 @@ public class SettingsActivity extends AppCompatPreferenceActivity {
initializeTheme((ListPreference) findPreference(Constants.Pref.THEME));
mSmartPGPAuthoritiesPreference = (PreferenceScreen) findPreference(Constants.Pref.EXPERIMENTAL_SMARTPGP_AUTHORITIES);
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(getActivity());
int size = 0;
try {
if (ks != null) {
size = ks.size();
}
} catch (KeyStoreException e) {}
mSmartPGPAuthoritiesPreference.setSummary(getActivity().getResources().getQuantityString(R.plurals.n_authorities, size, size));
mSmartPGPAuthoritiesPreference
.setOnPreferenceClickListener(new Preference.OnPreferenceClickListener() {
public boolean onPreferenceClick(Preference preference) {
Intent intent = new Intent(getActivity(),
SettingsSmartPGPAuthoritiesActivity.class);
startActivityForResult(intent, REQUEST_CODE_SMARTPGP_AUTHORITIES_PREF);
return false;
}
});
}
@Override
public void onActivityResult(int requestCode, int resultCode, Intent data) {
switch (requestCode) {
case REQUEST_CODE_SMARTPGP_AUTHORITIES_PREF: {
// update preference, in case it changed
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(getActivity());
int size = 0;
try {
if (ks != null) {
size = ks.size();
}
} catch (KeyStoreException e) {}
mSmartPGPAuthoritiesPreference.setSummary(getActivity().getResources().getQuantityString(R.plurals.n_authorities, size, size));
break;
}
default: {
super.onActivityResult(requestCode, resultCode, data);
break;
}
}
}
private static void initializeTheme(final ListPreference themePref) {
@@ -0,0 +1,124 @@
/*
* Copyright (C) 2010-2014 Thialfihar <thi@thialfihar.org>
*
* 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.ui;
import android.content.Context;
import android.content.Intent;
import android.os.Bundle;
import android.view.MenuItem;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.ui.base.BaseActivity;
import java.io.File;
import java.io.FileInputStream;
import java.io.FileNotFoundException;
import java.io.FileOutputStream;
import java.io.IOException;
import java.security.KeyStore;
import java.security.KeyStoreException;
import java.security.NoSuchAlgorithmException;
import java.security.cert.CertificateException;
public class SettingsSmartPGPAuthoritiesActivity extends BaseActivity {
public static final String EXTRA_SMARTPGP_AUTHORITIES = "smartpgp_authorities";
private static final String KEYSTORE_FILE = "smartpgp_authorities.keystore";
@Override
public void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
Intent intent = getIntent();
String authorities[] = intent.getStringArrayExtra(EXTRA_SMARTPGP_AUTHORITIES);
loadFragment(savedInstanceState, authorities);
getSupportActionBar().setDisplayHomeAsUpEnabled(true);
}
@Override
public boolean onOptionsItemSelected(MenuItem item) {
switch (item.getItemId()) {
case android.R.id.home:
finish();
return true;
}
return super.onOptionsItemSelected(item);
}
@Override
protected void initLayout() {
setContentView(R.layout.smartpgp_authorities_preference);
}
private void loadFragment(Bundle savedInstanceState, String[] authorities) {
// However, if we're being restored from a previous state,
// then we don't need to do anything and should return or else
// we could end up with overlapping fragments.
if (savedInstanceState != null) {
return;
}
SettingsSmartPGPAuthorityFragment fragment = SettingsSmartPGPAuthorityFragment.newInstance(authorities);
// Add the fragment to the 'fragment_container' FrameLayout
// NOTE: We use commitAllowingStateLoss() to prevent weird crashes!
getSupportFragmentManager().beginTransaction()
.replace(R.id.smartpgp_authorities_settings_fragment_container, fragment)
.commitAllowingStateLoss();
// do it immediately!
getSupportFragmentManager().executePendingTransactions();
}
public static final KeyStore readKeystore(final Context ctx) {
try {
final File kf = new File(ctx.getFilesDir(), KEYSTORE_FILE);
final KeyStore ks = KeyStore.getInstance(KeyStore.getDefaultType());
ks.load(null, null);
if (kf.exists()) {
final FileInputStream fis = new FileInputStream(kf);
ks.load(fis, null);
fis.close();
}
return ks;
} catch (Exception e) {
return null;
}
}
public static final void writeKeystore(final Context ctx, final KeyStore ks) {
try {
final File kf = new File(ctx.getFilesDir(), KEYSTORE_FILE);
if (kf.exists()) {
kf.delete();
}
final FileOutputStream fos = new FileOutputStream(kf);
ks.store(fos, null);
fos.flush();
fos.close();
} catch (Exception e) {
}
}
}
@@ -0,0 +1,334 @@
/*
* Copyright (C) 2012-2015 Dominik Schürmann <dominik@dominikschuermann.de>
* Copyright (C) 2015 Adithya Abraham Philip <adithyaphilip@gmail.com>
*
* 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.ui;
import android.net.Uri;
import android.os.Bundle;
import android.os.Handler;
import android.os.Message;
import android.os.Messenger;
import android.support.v4.app.Fragment;
import android.support.v7.widget.LinearLayoutManager;
import android.support.v7.widget.RecyclerView;
import android.support.v7.widget.helper.ItemTouchHelper;
import android.view.LayoutInflater;
import android.view.Menu;
import android.view.MenuInflater;
import android.view.MenuItem;
import android.view.View;
import android.view.ViewGroup;
import android.widget.TextView;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.ui.dialog.AddEditSmartPGPAuthorityDialogFragment;
import org.sufficientlysecure.keychain.ui.util.Notify;
import org.sufficientlysecure.keychain.ui.util.recyclerview.ItemTouchHelperAdapter;
import org.sufficientlysecure.keychain.ui.util.recyclerview.ItemTouchHelperDragCallback;
import org.sufficientlysecure.keychain.ui.util.recyclerview.ItemTouchHelperViewHolder;
import org.sufficientlysecure.keychain.ui.util.recyclerview.RecyclerItemClickListener;
import java.io.IOException;
import java.io.InputStream;
import java.security.KeyStore;
import java.security.KeyStoreException;
import java.security.cert.Certificate;
import java.security.cert.CertificateException;
import java.security.cert.CertificateFactory;
import java.security.cert.X509Certificate;
import java.util.ArrayList;
import java.util.Collections;
import java.util.Enumeration;
import java.util.LinkedList;
import java.util.List;
public class SettingsSmartPGPAuthorityFragment extends Fragment implements RecyclerItemClickListener.OnItemClickListener {
private ItemTouchHelper mItemTouchHelper;
private ArrayList<String> mAuthorities;
private AuthorityListAdapter mAdapter;
public static SettingsSmartPGPAuthorityFragment newInstance(String[] authorities) {
return new SettingsSmartPGPAuthorityFragment();
}
@Override
public View onCreateView(LayoutInflater inflater, ViewGroup container, Bundle
savedInstanceState) {
return inflater.inflate(R.layout.settings_smartpgp_authority_fragment, null);
}
@Override
public void onViewCreated(View view, Bundle savedInstanceState) {
super.onViewCreated(view, savedInstanceState);
List<String> authorities = new LinkedList();
try {
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(getActivity());
final Enumeration<String> it = ks.aliases();
while (it.hasMoreElements()) {
authorities.add(it.nextElement());
}
} catch (Exception e) {
}
mAuthorities = new ArrayList<>(authorities);
mAdapter = new AuthorityListAdapter(mAuthorities);
RecyclerView recyclerView = (RecyclerView) view.findViewById(R.id.smartpgp_authority_recycler_view);
recyclerView.setAdapter(mAdapter);
recyclerView.setLayoutManager(new LinearLayoutManager(getActivity()));
ItemTouchHelper.Callback callback = new ItemTouchHelperDragCallback(mAdapter);
mItemTouchHelper = new ItemTouchHelper(callback);
mItemTouchHelper.attachToRecyclerView(recyclerView);
// for clicks
recyclerView.addOnItemTouchListener(new RecyclerItemClickListener(getActivity(), this));
// can't use item decoration because it doesn't move with drag and drop
// recyclerView.addItemDecoration(new DividerItemDecoration(getActivity(), null));
// We have a menu item to show in action bar.
setHasOptionsMenu(true);
}
@Override
public void onCreateOptionsMenu(final Menu menu, final MenuInflater inflater) {
inflater.inflate(R.menu.smartpgp_authority_pref_menu, menu);
super.onCreateOptionsMenu(menu, inflater);
}
@Override
public boolean onOptionsItemSelected(MenuItem item) {
switch (item.getItemId()) {
case R.id.menu_add_smartpgp_authority:
startAddAuthorityDialog();
return true;
default:
return super.onOptionsItemSelected(item);
}
}
private void startAddAuthorityDialog() {
startEditAuthorityDialog(AddEditSmartPGPAuthorityDialogFragment.Action.ADD, null, null, -1);
}
private void startEditAuthorityDialog(AddEditSmartPGPAuthorityDialogFragment.Action action,
final String old_alias, final Uri uri, final int position) {
Handler returnHandler = new Handler() {
@Override
public void handleMessage(Message message) {
Bundle data = message.getData();
final String new_alias = data.getString(AddEditSmartPGPAuthorityDialogFragment.OUT_ALIAS);
final int position = data.getInt(AddEditSmartPGPAuthorityDialogFragment.OUT_POSITION);
final String uri = data.getString(AddEditSmartPGPAuthorityDialogFragment.OUT_URI);
final AddEditSmartPGPAuthorityDialogFragment.Action action =
(AddEditSmartPGPAuthorityDialogFragment.Action)
data.getSerializable(AddEditSmartPGPAuthorityDialogFragment.OUT_ACTION);
switch(action) {
case ADD:
if (editAuthority(old_alias, new_alias, position, uri)) {
Notify.create(getActivity(), "Authority " + new_alias + " added",
Notify.LENGTH_SHORT, Notify.Style.OK).show();
}
break;
case EDIT:
if (editAuthority(old_alias, new_alias, position, uri)){
Notify.create(getActivity(), "Authority " + old_alias + " modified",
Notify.LENGTH_SHORT, Notify.Style.OK).show();
}
break;
case DELETE:
if (deleteAuthority(position)) {
Notify.create(getActivity(), "Authority " + old_alias + " deleted",
Notify.LENGTH_SHORT, Notify.Style.OK).show();
}
break;
}
}
};
// Create a new Messenger for the communication back
Messenger messenger = new Messenger(returnHandler);
AddEditSmartPGPAuthorityDialogFragment dialogFragment = AddEditSmartPGPAuthorityDialogFragment
.newInstance(messenger, action, old_alias, uri, position);
dialogFragment.show(getFragmentManager(), "addSmartPGPAuthorityDialog");
}
private boolean editAuthority(final String old_alias, final String new_alias, final int position, final String uri) {
try {
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(getContext());
if (ks == null) {
throw new KeyStoreException("no keystore found");
}
Certificate old_cert = null;
if (old_alias != null) {
old_cert = ks.getCertificate(old_alias);
ks.deleteEntry(old_alias);
mAuthorities.remove(old_alias);
mAdapter.notifyItemRemoved(position);
}
Certificate new_cert = null;
if (uri == null) {
new_cert = old_cert;
} else {
final InputStream fis = getContext().getContentResolver().openInputStream(Uri.parse(uri));
final CertificateFactory cf = CertificateFactory.getInstance("X.509");
new_cert = cf.generateCertificate(fis);
if (!(new_cert instanceof X509Certificate)) {
Notify.create(getActivity(), "Invalid certificate", Notify.LENGTH_LONG, Notify.Style.ERROR).show();
return false;
}
fis.close();
}
if (new_alias == null || new_cert == null) {
Notify.create(getActivity(), "Missing alias or certificate", Notify.LENGTH_LONG, Notify.Style.ERROR).show();
return false;
}
final X509Certificate x509cert = (X509Certificate)new_cert;
x509cert.checkValidity();
ks.setCertificateEntry(new_alias, x509cert);
SettingsSmartPGPAuthoritiesActivity.writeKeystore(getContext(), ks);
mAuthorities.add(new_alias);
mAdapter.notifyItemInserted(mAuthorities.size() - 1);
return true;
} catch (IOException e) {
Notify.create(getActivity(), "failed to open certificate (" + e.getMessage() + ")", Notify.LENGTH_LONG, Notify.Style.ERROR).show();
} catch (CertificateException e) {
Notify.create(getActivity(), "invalid certificate (" + e.getMessage() + ")", Notify.LENGTH_LONG, Notify.Style.ERROR).show();
} catch (KeyStoreException e) {
Notify.create(getActivity(), "invalid keystore (" + e.getMessage() + ")", Notify.LENGTH_LONG, Notify.Style.ERROR).show();
}
return false;
}
private boolean deleteAuthority(final int position) {
try {
final KeyStore ks = SettingsSmartPGPAuthoritiesActivity.readKeystore(getContext());
if (ks == null) {
return false;
}
ks.deleteEntry(mAuthorities.get(position));
SettingsSmartPGPAuthoritiesActivity.writeKeystore(getContext(), ks);
mAuthorities.remove(mAuthorities.get(position));
mAdapter.notifyItemRemoved(position);
return true;
} catch (Exception e) {
return false;
}
}
@Override
public void onItemClick(View view, int position) {
startEditAuthorityDialog(AddEditSmartPGPAuthorityDialogFragment.Action.EDIT,
mAuthorities.get(position), null, position);
}
public class AuthorityListAdapter extends RecyclerView.Adapter<AuthorityListAdapter.ViewHolder>
implements ItemTouchHelperAdapter {
private final List<String> mAuthorities;
public AuthorityListAdapter(List<String> authorities) {
mAuthorities = authorities;
}
@Override
public ViewHolder onCreateViewHolder(ViewGroup parent, int viewType) {
View view = LayoutInflater.from(parent.getContext())
.inflate(R.layout.settings_smartpgp_authority_item, parent, false);
return new ViewHolder(view);
}
@Override
public void onBindViewHolder(final ViewHolder holder, int position) {
holder.authorityName.setText(mAuthorities.get(position));
}
@Override
public void onItemMove(RecyclerView.ViewHolder source, RecyclerView.ViewHolder target,
int fromPosition, int toPosition) {
Collections.swap(mAuthorities, fromPosition, toPosition);
notifyItemMoved(fromPosition, toPosition);
}
@Override
public int getItemCount() {
return mAuthorities.size();
}
public class ViewHolder extends RecyclerView.ViewHolder implements
ItemTouchHelperViewHolder {
public final ViewGroup outerLayout;
public final TextView authorityName;
public ViewHolder(View itemView) {
super(itemView);
outerLayout = (ViewGroup) itemView.findViewById(R.id.outer_layout);
authorityName = (TextView) itemView.findViewById(R.id.smartpgp_authority_tv);
itemView.setClickable(true);
}
@Override
public void onItemSelected() {
}
@Override
public void onItemClear() {
}
}
}
}
@@ -111,6 +111,7 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
public static final String EXTRA_SECURITY_TOKEN_USER_ID = "security_token_user_id";
public static final String EXTRA_SECURITY_TOKEN_AID = "security_token_aid";
public static final String EXTRA_SECURITY_TOKEN_VERSION = "security_token_version";
public static final String EXTRA_SECURITY_TOKEN_FINGERPRINTS = "security_token_fingerprints";
@Retention(RetentionPolicy.SOURCE)
@@ -178,6 +179,7 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
private byte[] mSecurityTokenFingerprints;
private String mSecurityTokenUserId;
private byte[] mSecurityTokenAid;
private double mSecurityTokenVersion;
@SuppressLint("InflateParams")
@Override
@@ -671,7 +673,7 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
// if the master key of that key matches this one, just show the token dialog
if (KeyFormattingUtils.convertFingerprintToHex(candidateFp).equals(mFingerprintString)) {
showSecurityTokenFragment(mSecurityTokenFingerprints, mSecurityTokenUserId, mSecurityTokenAid);
showSecurityTokenFragment(mSecurityTokenFingerprints, mSecurityTokenUserId, mSecurityTokenAid, mSecurityTokenVersion);
return;
}
@@ -685,6 +687,7 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
ViewKeyActivity.this, ViewKeyActivity.class);
intent.setData(KeyRings.buildGenericKeyRingUri(masterKeyId));
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_AID, mSecurityTokenAid);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_VERSION, mSecurityTokenVersion);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_USER_ID, mSecurityTokenUserId);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_FINGERPRINTS, mSecurityTokenFingerprints);
startActivity(intent);
@@ -700,6 +703,7 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
Intent intent = new Intent(
ViewKeyActivity.this, CreateKeyActivity.class);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_AID, mSecurityTokenAid);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_VERSION, mSecurityTokenVersion);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_USER_ID, mSecurityTokenUserId);
intent.putExtra(ViewKeyActivity.EXTRA_SECURITY_TOKEN_FINGERPRINTS, mSecurityTokenFingerprints);
startActivity(intent);
@@ -710,13 +714,13 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
}
public void showSecurityTokenFragment(
final byte[] tokenFingerprints, final String tokenUserId, final byte[] tokenAid) {
final byte[] tokenFingerprints, final String tokenUserId, final byte[] tokenAid, final double tokenVersion) {
new Handler().post(new Runnable() {
@Override
public void run() {
ViewKeySecurityTokenFragment frag = ViewKeySecurityTokenFragment.newInstance(
mMasterKeyId, tokenFingerprints, tokenUserId, tokenAid);
mMasterKeyId, tokenFingerprints, tokenUserId, tokenAid, tokenVersion);
FragmentManager manager = getSupportFragmentManager();
@@ -899,7 +903,8 @@ public class ViewKeyActivity extends BaseSecurityTokenActivity implements
byte[] tokenFingerprints = intent.getByteArrayExtra(EXTRA_SECURITY_TOKEN_FINGERPRINTS);
String tokenUserId = intent.getStringExtra(EXTRA_SECURITY_TOKEN_USER_ID);
byte[] tokenAid = intent.getByteArrayExtra(EXTRA_SECURITY_TOKEN_AID);
showSecurityTokenFragment(tokenFingerprints, tokenUserId, tokenAid);
double tokenVersion = intent.getDoubleExtra(EXTRA_SECURITY_TOKEN_VERSION, 2.0);
showSecurityTokenFragment(tokenFingerprints, tokenUserId, tokenAid, tokenVersion);
}
mIsSecret = data.getInt(INDEX_HAS_ANY_SECRET) != 0;
@@ -38,6 +38,8 @@ import android.widget.AdapterView;
import android.widget.ListView;
import android.widget.ViewAnimator;
import org.bouncycastle.asn1.ASN1ObjectIdentifier;
import org.bouncycastle.asn1.nist.NISTNamedCurves;
import org.bouncycastle.bcpg.PublicKeyAlgorithmTags;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
@@ -356,19 +358,31 @@ public class ViewKeyAdvSubkeysFragment extends LoaderFragment implements
break;
}
int algorithm = mSubkeysAdapter.getAlgorithm(position);
if (algorithm != PublicKeyAlgorithmTags.RSA_GENERAL
&& algorithm != PublicKeyAlgorithmTags.RSA_ENCRYPT
&& algorithm != PublicKeyAlgorithmTags.RSA_SIGN) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_algo, Notify.Style.ERROR)
.show();
break;
}
switch (mSubkeysAdapter.getAlgorithm(position)) {
case PublicKeyAlgorithmTags.RSA_GENERAL:
case PublicKeyAlgorithmTags.RSA_ENCRYPT:
case PublicKeyAlgorithmTags.RSA_SIGN:
if (mSubkeysAdapter.getKeySize(position) < 2048) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_size, Notify.Style.ERROR)
.show();
}
break;
if (mSubkeysAdapter.getKeySize(position) != 2048) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_size, Notify.Style.ERROR)
.show();
break;
case PublicKeyAlgorithmTags.ECDH:
case PublicKeyAlgorithmTags.ECDSA:
final ASN1ObjectIdentifier curve = NISTNamedCurves.getOID(mSubkeysAdapter.getCurveOid(position));
if (!curve.equals(NISTNamedCurves.getOID("P-256")) &&
!curve.equals(NISTNamedCurves.getOID("P-384")) &&
!curve.equals(NISTNamedCurves.getOID("P-521"))) {
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_curve, Notify.Style.ERROR)
.show();
}
break;
default:
Notify.create(getActivity(), R.string.edit_key_error_bad_security_token_algo, Notify.Style.ERROR)
.show();
break;
}
SubkeyChange change;
@@ -53,10 +53,10 @@ import org.sufficientlysecure.keychain.ui.base.CryptoOperationHelper;
import org.sufficientlysecure.keychain.ui.base.LoaderFragment;
import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.network.OkHttpKeybaseClient;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.util.ArrayList;
import java.util.Hashtable;
@@ -50,10 +50,12 @@ public class ViewKeySecurityTokenFragment
public static final String ARG_FINGERPRINT = "fingerprint";
public static final String ARG_USER_ID = "user_id";
public static final String ARG_CARD_AID = "aid";
public static final String ARG_CARD_VERSION = "version";
private byte[][] mFingerprints;
private String mUserId;
private byte[] mCardAid;
private double mCardVersion;
private long mMasterKeyId;
private long[] mSubKeyIds;
@@ -61,7 +63,7 @@ public class ViewKeySecurityTokenFragment
private TextView vStatus;
public static ViewKeySecurityTokenFragment newInstance(long masterKeyId,
byte[] fingerprints, String userId, byte[] aid) {
byte[] fingerprints, String userId, byte[] aid, double version) {
ViewKeySecurityTokenFragment frag = new ViewKeySecurityTokenFragment();
Bundle args = new Bundle();
@@ -69,6 +71,7 @@ public class ViewKeySecurityTokenFragment
args.putByteArray(ARG_FINGERPRINT, fingerprints);
args.putString(ARG_USER_ID, userId);
args.putByteArray(ARG_CARD_AID, aid);
args.putDouble(ARG_CARD_VERSION, version);
frag.setArguments(args);
return frag;
@@ -91,6 +94,7 @@ public class ViewKeySecurityTokenFragment
}
mUserId = args.getString(ARG_USER_ID);
mCardAid = args.getByteArray(ARG_CARD_AID);
mCardVersion = args.getDouble(ARG_CARD_VERSION);
mMasterKeyId = args.getLong(ARG_MASTER_KEY_ID);
@@ -121,6 +121,11 @@ public class SubkeysAdapter extends CursorAdapter {
return mCursor.getInt(INDEX_KEY_SIZE);
}
public String getCurveOid(int position) {
mCursor.moveToPosition(position);
return mCursor.getString(INDEX_KEY_CURVE_OID);
}
public SecretKeyType getSecretKeyType(int position) {
mCursor.moveToPosition(position);
return SecretKeyType.fromNum(mCursor.getInt(INDEX_HAS_SECRET));
@@ -46,7 +46,7 @@ import org.sufficientlysecure.keychain.securitytoken.CardException;
import org.sufficientlysecure.keychain.securitytoken.NfcTransport;
import org.sufficientlysecure.keychain.securitytoken.SecurityTokenHelper;
import org.sufficientlysecure.keychain.securitytoken.Transport;
import org.sufficientlysecure.keychain.util.UsbConnectionDispatcher;
import org.sufficientlysecure.keychain.securitytoken.UsbConnectionDispatcher;
import org.sufficientlysecure.keychain.securitytoken.usb.UsbTransport;
import org.sufficientlysecure.keychain.ui.CreateKeyActivity;
import org.sufficientlysecure.keychain.ui.PassphraseDialogActivity;
@@ -91,9 +91,9 @@ public abstract class BaseSecurityTokenActivity extends BaseActivity
* Override to implement SecurityToken operations (background thread)
*/
protected void doSecurityTokenInBackground() throws IOException {
mSecurityTokenAid = mSecurityTokenHelper.getAid();
mSecurityTokenFingerprints = mSecurityTokenHelper.getFingerprints();
mSecurityTokenUserId = mSecurityTokenHelper.getUserId();
mSecurityTokenAid = mSecurityTokenHelper.getAid();
}
/**
@@ -168,7 +168,7 @@ public abstract class BaseSecurityTokenActivity extends BaseActivity
@Override
protected IOException doInBackground(Void... params) {
try {
handleSecurityToken(transport);
handleSecurityToken(transport, BaseSecurityTokenActivity.this);
} catch (IOException e) {
return e;
}
@@ -428,13 +428,13 @@ public abstract class BaseSecurityTokenActivity extends BaseActivity
}
}
protected void handleSecurityToken(Transport transport) throws IOException {
protected void handleSecurityToken(Transport transport, Context ctx) throws IOException {
// Don't reconnect if device was already connected
if (!(mSecurityTokenHelper.isPersistentConnectionAllowed()
&& mSecurityTokenHelper.isConnected()
&& mSecurityTokenHelper.getTransport().equals(transport))) {
mSecurityTokenHelper.setTransport(transport);
mSecurityTokenHelper.connectToDevice();
mSecurityTokenHelper.connectToDevice(ctx);
}
doSecurityTokenInBackground();
}
@@ -48,11 +48,11 @@ import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.keyimport.ParcelableHkpKeyserver;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.OkHttpClientFactory;
import org.sufficientlysecure.keychain.network.OkHttpClientFactory;
import org.sufficientlysecure.keychain.util.ParcelableProxy;
import org.sufficientlysecure.keychain.util.Preferences;
import org.sufficientlysecure.keychain.util.TlsHelper;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.TlsCertificatePinning;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
import java.io.IOException;
import java.net.MalformedURLException;
@@ -367,7 +367,7 @@ public class AddEditKeyserverDialogFragment extends DialogFragment implements On
// check TLS pinning only for non-Tor keyservers
if (onlyTrustedKeyserver
&& TlsHelper.getPinnedSslSocketFactory(keyserverUriHttp.toURL()) == null) {
&& TlsCertificatePinning.getPinnedSslSocketFactory(keyserverUriHttp.toURL()) == null) {
Log.w(Constants.TAG, "No pinned certificate for this host in OpenKeychain's assets.");
reason = VerifyReturn.NO_PINNED_CERTIFICATE;
return reason;
@@ -385,7 +385,7 @@ public class AddEditKeyserverDialogFragment extends DialogFragment implements On
keyserverUriOnion.toURL(), proxy.getProxy());
clientTor.newCall(new Request.Builder().url(keyserverUriOnion.toURL()).build()).execute();
}
} catch (TlsHelper.TlsHelperException e) {
} catch (TlsCertificatePinning.TlsCertificatePinningException e) {
reason = VerifyReturn.CONNECTION_FAILED;
} catch (MalformedURLException | URISyntaxException e) {
Log.w(Constants.TAG, "Invalid keyserver URL entered by user.");
@@ -0,0 +1,313 @@
/*
* Copyright (C) 2012-2014 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.ui.dialog;
import android.app.Activity;
import android.app.Dialog;
import android.content.Context;
import android.content.DialogInterface;
import android.content.Intent;
import android.net.Uri;
import android.os.Bundle;
import android.os.Message;
import android.os.Messenger;
import android.os.RemoteException;
import android.support.annotation.NonNull;
import android.support.design.widget.TextInputLayout;
import android.support.v4.app.DialogFragment;
import android.support.v7.app.AlertDialog;
import android.view.KeyEvent;
import android.view.LayoutInflater;
import android.view.View;
import android.view.inputmethod.EditorInfo;
import android.view.inputmethod.InputMethodManager;
import android.widget.Button;
import android.widget.EditText;
import android.widget.TextView;
import android.widget.TextView.OnEditorActionListener;
import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.ui.EncryptFilesFragment;
import org.sufficientlysecure.keychain.util.FileHelper;
import org.sufficientlysecure.keychain.util.Log;
public class AddEditSmartPGPAuthorityDialogFragment extends DialogFragment implements OnEditorActionListener {
private static final String IN_MESSENGER = "in_messenger";
private static final String IN_ACTION = "in_dialog_action";
private static final String IN_POSITION = "in_position";
private static final String IN_ALIAS = "in_authority";
private static final String IN_URI = "in_uri";
public static final String OUT_ACTION = "out_action";
public static final String OUT_ALIAS = "out_alias";
public static final String OUT_POSITION = "out_position";
public static final String OUT_URI = "out_uri";
private Messenger mMessenger;
private Action mAction;
private int mPosition;
private Uri mURI;
private EditText mAuthorityAliasText;
private TextInputLayout mAuthorityAliasTextLayout;
private Button mAuthorityAdd;
public enum Action {
ADD,
EDIT,
DELETE
}
public static AddEditSmartPGPAuthorityDialogFragment newInstance(Messenger messenger,
Action action,
String alias,
Uri uri,
int position) {
AddEditSmartPGPAuthorityDialogFragment frag = new AddEditSmartPGPAuthorityDialogFragment();
Bundle args = new Bundle();
args.putParcelable(IN_MESSENGER, messenger);
args.putSerializable(IN_ACTION, action);
args.putString(IN_ALIAS, alias);
args.putInt(IN_POSITION, position);
if (uri != null) {
args.putString(IN_URI, uri.toString());
}
frag.setArguments(args);
return frag;
}
@NonNull
@Override
public Dialog onCreateDialog(Bundle savedInstanceState) {
final Activity activity = getActivity();
mMessenger = getArguments().getParcelable(IN_MESSENGER);
mAction = (Action) getArguments().getSerializable(IN_ACTION);
mPosition = getArguments().getInt(IN_POSITION);
if (getArguments().getString(IN_URI) == null)
mURI = null;
else
mURI = Uri.parse(getArguments().getString(IN_URI));
CustomAlertDialogBuilder alert = new CustomAlertDialogBuilder(activity);
LayoutInflater inflater = activity.getLayoutInflater();
View view = inflater.inflate(R.layout.add_smartpgp_authority_dialog, null);
alert.setView(view);
mAuthorityAliasText = (EditText) view.findViewById(R.id.smartpgp_authority_alias_edit_text);
mAuthorityAliasTextLayout = (TextInputLayout) view.findViewById(R.id.smartpgp_authority_alias_edit_text_layout);
mAuthorityAdd = (Button) view.findViewById(R.id.smartpgp_authority_filename);
mAuthorityAdd.setOnClickListener(new View.OnClickListener() {
@Override
public void onClick(View view) {
FileHelper.openDocument(AddEditSmartPGPAuthorityDialogFragment.this, null, "*/*", false,
EncryptFilesFragment.REQUEST_CODE_INPUT);
}
});
mAuthorityAliasText.setText(getArguments().getString(IN_ALIAS));
switch (mAction) {
case ADD:
alert.setTitle(R.string.add_smartpgp_authority_dialog_title);
break;
case EDIT:
case DELETE:
alert.setTitle(R.string.show_smartpgp_authority_dialog_title);
break;
}
// we don't want dialog to be dismissed on click for keyserver addition or edit,
// thereby requiring the hack seen below and in onStart
alert.setPositiveButton(android.R.string.ok, new DialogInterface.OnClickListener() {
@Override
public void onClick(DialogInterface dialog, int id) {
// we need to have an empty listener to prevent errors on some devices as mentioned
// at http://stackoverflow.com/q/13746412/3000919
// actual listener set in onStart for adding keyservers or editing them
dismiss();
}
});
alert.setNegativeButton(android.R.string.cancel, new DialogInterface.OnClickListener() {
@Override
public void onClick(DialogInterface dialog, int id) {
dismiss();
}
});
switch (mAction) {
case EDIT:
case DELETE:
alert.setNeutralButton(R.string.label_smartpgp_authority_dialog_delete,
new DialogInterface.OnClickListener() {
@Override
public void onClick(DialogInterface dialog, int which) {
deleteAuthority();
}
});
break;
}
// Hack to open keyboard.
// This is the only method that I found to work across all Android versions
// http://turbomanage.wordpress.com/2012/05/02/show-soft-keyboard-automatically-when-edittext-receives-focus/
// Notes: * onCreateView can't be used because we want to add buttons to the dialog
// * opening in onActivityCreated does not work on Android 4.4
mAuthorityAliasText.setOnFocusChangeListener(new View.OnFocusChangeListener() {
@Override
public void onFocusChange(View v, boolean hasFocus) {
mAuthorityAliasText.post(new Runnable() {
@Override
public void run() {
InputMethodManager imm = (InputMethodManager) getActivity()
.getSystemService(Context.INPUT_METHOD_SERVICE);
imm.showSoftInput(mAuthorityAliasText, InputMethodManager.SHOW_IMPLICIT);
}
});
}
});
mAuthorityAliasText.requestFocus();
mAuthorityAliasText.setImeActionLabel(getString(android.R.string.ok),
EditorInfo.IME_ACTION_DONE);
mAuthorityAliasText.setOnEditorActionListener(this);
return alert.show();
}
@Override
public void onActivityResult(int requestCode, int resultCode, Intent data) {
switch (requestCode) {
case EncryptFilesFragment.REQUEST_CODE_INPUT:
if (data != null) {
mURI = data.getData();
} else {
mURI = null;
}
break;
}
}
@Override
public void onStart() {
super.onStart();
AlertDialog addKeyserverDialog = (AlertDialog) getDialog();
if (addKeyserverDialog != null) {
Button positiveButton = addKeyserverDialog.getButton(Dialog.BUTTON_POSITIVE);
positiveButton.setOnClickListener(new View.OnClickListener() {
@Override
public void onClick(View v) {
mAuthorityAliasTextLayout.setErrorEnabled(false);
dismiss();
// return unverified keyserver back to activity
authorityEdited();
}
});
}
}
public void authorityEdited() {
dismiss();
Bundle data = new Bundle();
data.putSerializable(OUT_ACTION, mAction);
data.putString(OUT_ALIAS, mAuthorityAliasText.getText().toString());
data.putInt(OUT_POSITION, mPosition);
if (mURI != null) {
data.putString(OUT_URI, mURI.toString());
}
sendMessageToHandler(data);
}
public void deleteAuthority() {
dismiss();
Bundle data = new Bundle();
data.putSerializable(OUT_ACTION, Action.DELETE);
data.putString(OUT_ALIAS, mAuthorityAliasText.getText().toString());
data.putInt(OUT_POSITION, mPosition);
sendMessageToHandler(data);
}
@Override
public void onDismiss(DialogInterface dialog) {
// hide keyboard on dismiss
hideKeyboard();
super.onDismiss(dialog);
}
private void hideKeyboard() {
if (getActivity() == null) {
return;
}
InputMethodManager inputManager = (InputMethodManager) getActivity()
.getSystemService(Context.INPUT_METHOD_SERVICE);
//check if no view has focus:
View v = getActivity().getCurrentFocus();
if (v == null)
return;
inputManager.hideSoftInputFromWindow(v.getWindowToken(), 0);
}
/**
* Associate the "done" button on the soft keyboard with the okay button in the view
*/
@Override
public boolean onEditorAction(TextView v, int actionId, KeyEvent event) {
if (EditorInfo.IME_ACTION_DONE == actionId) {
AlertDialog dialog = ((AlertDialog) getDialog());
Button bt = dialog.getButton(AlertDialog.BUTTON_POSITIVE);
bt.performClick();
return true;
}
return false;
}
/**
* Send message back to handler which is initialized in a activity
*
*/
private void sendMessageToHandler(Bundle data) {
Message msg = Message.obtain();
if (data != null) {
msg.setData(data);
}
try {
mMessenger.send(msg);
} catch (RemoteException e) {
Log.w(Constants.TAG, "Exception sending message, Is handler present?", e);
} catch (NullPointerException e) {
Log.w(Constants.TAG, "Messenger is null!", e);
}
}
}
@@ -36,7 +36,7 @@ import org.sufficientlysecure.keychain.Constants;
import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.ui.util.ThemeChanger;
import org.sufficientlysecure.keychain.util.Log;
import org.sufficientlysecure.keychain.util.orbot.OrbotHelper;
import org.sufficientlysecure.keychain.network.orbot.OrbotHelper;
/**
* displays a dialog asking the user to enable Tor
@@ -38,6 +38,7 @@ import org.sufficientlysecure.keychain.R;
import org.sufficientlysecure.keychain.provider.KeychainContract;
import org.sufficientlysecure.keychain.provider.ProviderHelper;
import org.sufficientlysecure.keychain.ui.util.Notify;
import org.sufficientlysecure.keychain.util.Log;
import java.lang.ref.WeakReference;
@@ -450,6 +450,10 @@ public class Preferences {
return mSharedPreferences.getBoolean(Pref.EXPERIMENTAL_ENABLE_KEYBASE, false);
}
public boolean getExperimentalSmartPGPAuthoritiesEnable() {
return mSharedPreferences.getBoolean(Pref.EXPERIMENTAL_SMARTPGP_VERIFY_AUTHORITY, false);
}
public void upgradePreferences(Context context) {
Log.d(Constants.TAG, "Upgrading preferences…");
int oldVersion = mSharedPreferences.getInt(Constants.Pref.PREF_VERSION, 0);
@@ -0,0 +1,45 @@
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
xmlns:custom="http://schemas.android.com/apk/res-auto"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:orientation="vertical"
android:paddingBottom="16dp"
android:paddingLeft="24dp"
android:paddingRight="24dp"
android:paddingTop="16dp">
<android.support.design.widget.TextInputLayout
android:id="@+id/smartpgp_authority_alias_edit_text_layout"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_marginBottom="8dp">
<EditText
android:id="@+id/smartpgp_authority_alias_edit_text"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_gravity="center_horizontal"
android:ems="10"
android:hint="@string/label_enter_smartpgp_authority_name"
android:imeOptions="actionDone"
android:inputType="textUri" />
</android.support.design.widget.TextInputLayout>
<Button
android:id="@+id/smartpgp_authority_filename"
android:paddingLeft="8dp"
android:paddingRight="8dp"
android:textAppearance="?android:attr/textAppearanceMedium"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:minHeight="?android:attr/listPreferredItemHeight"
android:layout_gravity="center"
android:text="@string/btn_add_files"
style="?android:attr/borderlessButtonStyle"
android:drawableLeft="@drawable/ic_folder_grey_24dp"
android:drawablePadding="16dp"
android:gravity="left|center_vertical" />
</LinearLayout>
@@ -0,0 +1,121 @@
<?xml version="1.0" encoding="UTF-8"?>
<RelativeLayout xmlns:android="http://schemas.android.com/apk/res/android"
xmlns:tools="http://schemas.android.com/tools"
android:layout_width="match_parent"
android:layout_height="match_parent">
<ScrollView
android:layout_width="match_parent"
android:layout_height="match_parent"
android:layout_above="@+id/create_key_buttons"
android:fillViewport="true">
<LinearLayout
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:orientation="vertical"
android:paddingLeft="16dp"
android:paddingRight="16dp">
<TextView
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_marginLeft="8dp"
android:layout_marginTop="16dp"
android:text="@string/create_key_yubi_key_algorithm_text"
android:textAppearance="?android:attr/textAppearanceMedium"
android:layout_marginBottom="16dp" />
<TextView
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_marginLeft="8dp"
android:layout_marginTop="16dp"
android:text="@string/create_key_yubi_key_algorithm_sign_text"
android:textAppearance="?android:attr/textAppearanceMedium" />
<org.sufficientlysecure.keychain.ui.util.spinner.FocusFirstItemSpinner
android:id="@+id/create_key_yubi_key_algorithm_sign"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:dropDownWidth="wrap_content"
android:layout_marginBottom="16dp"/>
<TextView
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_marginLeft="8dp"
android:layout_marginTop="16dp"
android:text="@string/create_key_yubi_key_algorithm_dec_text"
android:textAppearance="?android:attr/textAppearanceMedium" />
<org.sufficientlysecure.keychain.ui.util.spinner.FocusFirstItemSpinner
android:id="@+id/create_key_yubi_key_algorithm_dec"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:dropDownWidth="wrap_content"
android:layout_marginBottom="16dp"/>
<TextView
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_marginLeft="8dp"
android:layout_marginTop="16dp"
android:text="@string/create_key_yubi_key_algorithm_auth_text"
android:textAppearance="?android:attr/textAppearanceMedium" />
<org.sufficientlysecure.keychain.ui.util.spinner.FocusFirstItemSpinner
android:id="@+id/create_key_yubi_key_algorithm_auth"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:dropDownWidth="wrap_content"/>
</LinearLayout>
</ScrollView>
<LinearLayout
android:id="@+id/create_key_buttons"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_alignParentBottom="true"
android:layout_alignParentLeft="true"
android:layout_alignParentStart="true"
android:background="?attr/colorButtonRow"
android:orientation="horizontal">
<TextView
android:id="@+id/create_key_back_button"
style="?android:attr/borderlessButtonStyle"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_gravity="center_vertical"
android:layout_weight="1"
android:clickable="true"
android:drawableLeft="@drawable/ic_chevron_left_grey_24dp"
android:drawablePadding="8dp"
android:gravity="left|center_vertical"
android:minHeight="?android:attr/listPreferredItemHeight"
android:paddingLeft="16dp"
android:paddingRight="16dp"
android:text="@string/btn_back"
android:textAllCaps="true"
android:textAppearance="?android:attr/textAppearanceMedium" />
<TextView
android:id="@+id/create_key_next_button"
style="?android:attr/borderlessButtonStyle"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_gravity="center_vertical"
android:layout_weight="1"
android:clickable="true"
android:drawablePadding="8dp"
android:drawableRight="@drawable/ic_chevron_right_grey_24dp"
android:gravity="right|center_vertical"
android:minHeight="?android:attr/listPreferredItemHeight"
android:paddingLeft="16dp"
android:paddingRight="16dp"
android:text="@string/btn_next"
android:textAllCaps="true"
android:textAppearance="?android:attr/textAppearanceMedium" />
</LinearLayout>
</RelativeLayout>
@@ -0,0 +1,7 @@
<?xml version="1.0" encoding="utf-8"?>
<android.support.v7.widget.RecyclerView
xmlns:android="http://schemas.android.com/apk/res/android"
android:id="@+id/smartpgp_authority_recycler_view"
android:layout_width="match_parent"
android:layout_height="match_parent" />
@@ -0,0 +1,27 @@
<?xml version="1.0" encoding="utf-8"?>
<RelativeLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:id="@+id/outer_layout"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:minHeight="?listPreferredItemHeight">
<LinearLayout
android:id="@+id/smartpgp_authority_layout"
android:padding="6sp"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:layout_centerVertical="true"
android:orientation="vertical">
<TextView
android:id="@+id/smartpgp_authority_tv"
android:layout_width="match_parent"
android:layout_height="wrap_content"
android:textAppearance="?android:attr/textAppearanceMedium" />
</LinearLayout>
<View
android:layout_alignParentBottom="true"
style="@style/Divider"/>
</RelativeLayout>
@@ -0,0 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:orientation="vertical">
<include
android:id="@+id/toolbar_include"
layout="@layout/toolbar_standalone" />
<FrameLayout
android:id="@+id/smartpgp_authorities_settings_fragment_container"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:orientation="vertical" />
</LinearLayout>
@@ -0,0 +1,10 @@
<?xml version="1.0" encoding="utf-8"?>
<menu xmlns:android="http://schemas.android.com/apk/res/android"
xmlns:app="http://schemas.android.com/apk/res-auto">
<item
android:id="@+id/menu_add_smartpgp_authority"
android:title="@string/menu_search"
android:icon="@drawable/ic_add_white_24dp"
app:showAsAction="always" />
</menu>
+25 -1
View File
@@ -19,6 +19,7 @@
<string name="title_preferences">"Settings"</string>
<string name="title_api_registered_apps">"Apps"</string>
<string name="title_key_server_preference">"OpenPGP keyservers"</string>
<string name="title_smartpgp_authorities_preference">"SmartPGP authorities"</string>
<string name="title_cache_ttl_preference">"Customize 'Remember' choices"</string>
<string name="title_change_passphrase">"Change Password"</string>
<string name="title_share_fingerprint_with">"Share fingerprint with…"</string>
@@ -187,10 +188,14 @@
<string name="label_keyservers_title">"Keyservers"</string>
<string name="label_keyserver_settings_hint">"Drag to change order, tap to edit/delete"</string>
<string name="label_selected_keyserver_title">"Selected keyserver"</string>
<string name="label_selected_smartpgp_authority_title">"Selected authority"</string>
<string name="label_preferred">"preferred"</string>
<string name="label_enable_compression">"Enable compression"</string>
<string name="label_encrypt_filenames">"Encrypt filenames"</string>
<string name="label_hidden_recipients">"Hide recipients"</string>
<string name="label_smartpgp_verify">SmartPGP verify certificate</string>
<string name="label_smartpgp_verify_summary">"Validate tokens certificates against a set of trusted certification authorities"</string>
<string name="label_smartpgp_roots">SmartPGP trusted authorities</string>
<string name="label_verify_keyserver_connection">"Test connection"</string>
<string name="label_only_trusted_keyserver">"Only trusted keyserver"</string>
@@ -198,6 +203,8 @@
<string name="label_enter_keyserver_onion">"Optional Tor .onion URL"</string>
<string name="label_keyserver_dialog_delete">"Delete keyserver"</string>
<string name="label_theme">"Theme"</string>
<string name="label_enter_smartpgp_authority_name">Name</string>
<string name="label_smartpgp_authority_dialog_delete">"Delete authority"</string>
<string name="pref_keyserver">"OpenPGP keyservers"</string>
<string name="pref_keyserver_summary">"Search keys on selected OpenPGP keyservers (HKP protocol)"</string>
@@ -272,6 +279,11 @@
<item quantity="other">"%d keyservers"</item>
</plurals>
<plurals name="n_authorities">
<item quantity="one">"%d authority"</item>
<item quantity="other">"%d authorities"</item>
</plurals>
<string name="secret_key">"Secret Key:"</string>
<!-- choice -->
@@ -298,6 +310,8 @@
<string name="rsa_4096_description_html">"larger file size, considered secure until 2040+"</string>
<string name="ecc_p256">"ECC P-256"</string>
<string name="ecc_p256_description_html">"very tiny file size, considered secure until 2040 &lt;br/> &lt;u>experimental and not supported by all implementations&lt;/u>"</string>
<string name="ecc_p384">"ECC P-384"</string>
<string name="ecc_p384_description_html">"very tiny file size, considered secure until 2040 &lt;br/> &lt;u>experimental and not supported by all implementations&lt;/u>"</string>
<string name="ecc_p521">"ECC P-521"</string>
<string name="ecc_p521_description_html">"tiny file size, considered secure until 2040+ &lt;br/> &lt;u>experimental and not supported by all implementations&lt;/u>"</string>
<string name="usage_none">"None (subkey binding only)"</string>
@@ -771,7 +785,8 @@
<string name="edit_key_error_add_identity">"Add at least one identity!"</string>
<string name="edit_key_error_add_subkey">"Add at least one subkey!"</string>
<string name="edit_key_error_bad_security_token_algo">"Algorithm not supported by Security Token!"</string>
<string name="edit_key_error_bad_security_token_size">"Key size not supported by Security Token!"</string>
<string name="edit_key_error_bad_security_token_size">"RSA key lower than 2048 bits is not supported by Security Token since OpenPGP card specification 3.x!"</string>
<string name="edit_key_error_bad_security_token_curve">"Curve not supported by Security Token!"</string>
<string name="edit_key_error_bad_security_token_stripped">"Cannot move key to Security Token (either stripped or already on Security Token)!"</string>
<!-- Create key -->
@@ -800,6 +815,10 @@
<string name="create_key_yubi_key_pin_not_correct">"PIN is not correct!"</string>
<string name="create_key_yubi_key_pin_too_short">"PIN must be at least 6 numbers long!"</string>
<string name="create_key_yubi_key_pin_insecure">"Please choose a secure PIN, not 000000, 123456 or similar combinations (the top 20 most chosen PINs are not allowed)"</string>
<string name="create_key_yubi_key_algorithm_text">"Please choose an algorithm for each key."</string>
<string name="create_key_yubi_key_algorithm_sign_text">Signature key</string>
<string name="create_key_yubi_key_algorithm_dec_text">Decryption key</string>
<string name="create_key_yubi_key_algorithm_auth_text">Authentication key</string>
<!-- View key -->
<string name="view_key_revoked">"Revoked: Key must not be used anymore!"</string>
@@ -822,6 +841,11 @@
<string name="keyserver_preference_deleted">"%s deleted"</string>
<string name="keyserver_preference_cannot_delete_last">"Cannot delete last keyserver. At least one is required!"</string>
<!-- Add/Edit SmartPGP authority -->
<string name="add_smartpgp_authority_dialog_title">"Add authority"</string>
<string name="show_smartpgp_authority_dialog_title">"Edit authority"</string>
<string name="smartpgp_authority_preference_deleted">"%s deleted"</string>
<!-- Navigation Drawer -->
<string name="nav_keys">"Keys"</string>
<string name="nav_encrypt_decrypt">"Encrypt/Decrypt"</string>
@@ -35,4 +35,14 @@
android:persistent="true"
android:title="@string/label_theme" />
<SwitchPreference
android:defaultValue="false"
android:key="smartpgp_authorities_pref"
android:summary="@string/label_smartpgp_verify_summary"
android:title="@string/label_smartpgp_verify" />
<PreferenceScreen
android:dependency="smartpgp_authorities_pref"
android:key="smartpgp_authorities"
android:title="@string/label_smartpgp_roots" />
</PreferenceScreen>
@@ -856,15 +856,6 @@ public class PgpKeyOperationTest {
UncachedKeyRing modified;
{ // moveKeyToSecurityToken should fail with BAD_NFC_SIZE when presented with the RSA-3072 key
long keyId = KeyringTestingHelper.getSubkeyId(ringSecurityToken, 2);
parcelSecurityToken.reset();
parcelSecurityToken.mChangeSubKeys.add(new SubkeyChange(keyId, false, true));
assertModifyFailure("moveKeyToSecurityToken operation should fail on invalid key size", ringSecurityToken,
parcelSecurityToken, cryptoInput, LogType.MSG_MF_ERROR_BAD_SECURITY_TOKEN_SIZE);
}
{ // moveKeyToSecurityToken should fail with BAD_NFC_ALGO when presented with the DSA-1024 key
long keyId = KeyringTestingHelper.getSubkeyId(ringSecurityToken, 0);
parcelSecurityToken.reset();
@@ -13,20 +13,19 @@
* limitations under the License.
*/
package org.sufficientlysecure.keychain.util;
package org.sufficientlysecure.keychain.securitytoken;
import org.junit.Assert;
import org.junit.Before;
import org.junit.Test;
import org.junit.runner.RunWith;
import org.robolectric.RobolectricGradleTestRunner;
import org.robolectric.RobolectricTestRunner;
import org.robolectric.annotation.Config;
import org.robolectric.shadows.ShadowLog;
import org.bouncycastle.util.encoders.Hex;
import org.sufficientlysecure.keychain.BuildConfig;
import org.sufficientlysecure.keychain.WorkaroundBuildConfig;
import org.sufficientlysecure.keychain.util.Iso7816TLV.Iso7816CompositeTLV;
import org.sufficientlysecure.keychain.securitytoken.Iso7816TLV;
import org.sufficientlysecure.keychain.securitytoken.Iso7816TLV.Iso7816CompositeTLV;
@RunWith(RobolectricGradleTestRunner.class)
@Config(constants = WorkaroundBuildConfig.class, sdk = 23, manifest = "src/main/AndroidManifest.xml")
@@ -30,7 +30,6 @@ import org.robolectric.annotation.Config;
import org.robolectric.shadows.ShadowLog;
import org.sufficientlysecure.keychain.WorkaroundBuildConfig;
import org.sufficientlysecure.keychain.securitytoken.usb.UsbTransportException;
import org.sufficientlysecure.keychain.util.SecurityTokenUtils;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
@@ -128,7 +127,6 @@ public class SecurityTokenUtilsTest extends Mockito {
@Test
public void testPrivateKeyTemplateSimple2048() throws Exception {
KeyFormat format = new KeyFormat(Hex.decode("010000001800"));
RSAPrivateCrtKey key2048 = mock(RSAPrivateCrtKey.class);
byte[] tmp = new byte[128];
Arrays.fill(tmp, (byte) 0x11);
@@ -137,7 +135,8 @@ public class SecurityTokenUtilsTest extends Mockito {
Arrays.fill(tmp, (byte) 0x12);
when(key2048.getPrimeQ()).thenReturn(new BigInteger(tmp));
when(key2048.getPublicExponent()).thenReturn(new BigInteger("65537"));
BigInteger exp = new BigInteger("65537");
when(key2048.getPublicExponent()).thenReturn(exp);
Assert.assertArrayEquals(
Hex.decode("4d820115" + // Header TL
@@ -160,7 +159,7 @@ public class SecurityTokenUtilsTest extends Mockito {
"1212121212121212121212121212121212121212121212121212121212121212" +
"1212121212121212121212121212121212121212121212121212121212121212"
),
SecurityTokenUtils.createPrivKeyTemplate(key2048, KeyType.AUTH, format));
SecurityTokenUtils.createRSAPrivKeyTemplate(key2048, KeyType.AUTH, new RSAKeyFormat(2048, exp.bitLength(), RSAKeyFormat.RSAAlgorithmFormat.STANDARD)));
}
@Test