API update
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@@ -22,10 +22,23 @@ import org.openintents.openpgp.OpenPgpError;
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interface IOpenPgpCallback {
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/**
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* CryptoSignatureResult is only returned if the Callback was used from decryptAndVerify
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*
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* onSuccess returns on successful OpenPGP operations.
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*
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* @param outputBytes
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* contains resulting output bytes (decrypted content (when input was encrypted)
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* or content without signature (when input was signed-only))
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* @param signatureResult
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* signatureResult is only non-null if decryptAndVerify() was called and the content
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* was encrypted or signed-and-encrypted.
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*/
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oneway void onSuccess(in byte[] outputBytes, in OpenPgpSignatureResult signatureResult);
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/**
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* onError returns on errors or when allowUserInteraction was set to false, but user interaction
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* was required execute an OpenPGP operation.
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*
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* @param error
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* See OpenPgpError class for more information.
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*/
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oneway void onError(in OpenPgpError error);
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}
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@@ -23,61 +23,67 @@ import org.openintents.openpgp.IOpenPgpCallback;
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* Results are returned to the callback, which has to be implemented on client side.
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*/
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interface IOpenPgpService {
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/**
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* Encrypt
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*
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* After successful encryption, callback's onSuccess will contain the resulting output bytes.
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*
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* @param inputBytes
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* Byte array you want to encrypt
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* @param encryptionUserIds
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* User Ids (emails) of recipients
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* @param asciiArmor
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* Encode for ASCII (Radix-64, 33 percent overhead compared to binary)
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* Encode result for ASCII (Radix-64, 33 percent overhead compared to binary)
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* @param allowUserInteraction
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* Allows the OpenPGP Provider to handle missing keys by showing activities
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* @param callback
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* Callback where to return results
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*/
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oneway void encrypt(in byte[] inputBytes, in String[] encryptionUserIds,
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in boolean asciiArmor, in boolean allowUserInteraction, in IOpenPgpCallback callback);
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/**
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* Sign
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*
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* @param inputBytes
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* Byte array you want to encrypt
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* @param asciiArmor
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* Encode for ASCII (Radix-64, 33 percent overhead compared to binary)
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* @param allowUserInteraction
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* Allows the OpenPGP Provider to handle missing keys by showing activities
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* @param callback
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* Callback where to return results
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*/
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oneway void sign(in byte[] inputBytes, in boolean asciiArmor, in boolean allowUserInteraction,
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oneway void encrypt(in byte[] inputBytes, in String[] encryptionUserIds, in boolean asciiArmor,
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in IOpenPgpCallback callback);
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/**
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* Sign then encrypt
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* Sign
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*
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* After successful signing, callback's onSuccess will contain the resulting output bytes.
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*
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* @param inputBytes
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* Byte array you want to encrypt
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* @param encryptionUserIds
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* User Ids (emails) of recipients
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* @param signatureUserId
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* User Ids (email) of sender
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* Byte array you want to sign
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* @param asciiArmor
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* Encode for ASCII (Radix-64, 33 percent overhead compared to binary)
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* Encode result for ASCII (Radix-64, 33 percent overhead compared to binary)
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* @param allowUserInteraction
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* Allows the OpenPGP Provider to handle missing keys by showing activities
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* @param callback
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* Callback where to return results
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*/
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oneway void signAndEncrypt(in byte[] inputBytes, in String[] encryptionUserIds,
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in boolean asciiArmor, in boolean allowUserInteraction, in IOpenPgpCallback callback);
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oneway void sign(in byte[] inputBytes, in boolean asciiArmor, in IOpenPgpCallback callback);
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/**
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* Decrypts and verifies given input bytes. If no signature is present this method
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* will only decrypt.
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* Sign then encrypt
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*
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* After successful signing and encryption, callback's onSuccess will contain the resulting output bytes.
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*
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* @param inputBytes
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* Byte array you want to sign and encrypt
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* @param encryptionUserIds
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* User Ids (emails) of recipients
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* @param asciiArmor
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* Encode result for ASCII (Radix-64, 33 percent overhead compared to binary)
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* @param allowUserInteraction
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* Allows the OpenPGP Provider to handle missing keys by showing activities
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* @param callback
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* Callback where to return results
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*/
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oneway void signAndEncrypt(in byte[] inputBytes, in String[] encryptionUserIds, in boolean asciiArmor,
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in IOpenPgpCallback callback);
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/**
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* Decrypts and verifies given input bytes. This methods handles encrypted-only, signed-and-encrypted,
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* and also signed-only inputBytes.
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*
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* After successful decryption/verification, callback's onSuccess will contain the resulting output bytes.
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* The signatureResult in onSuccess is only non-null if signed-and-encrypted or signed-only inputBytes were given.
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*
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* @param inputBytes
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* Byte array you want to decrypt and verify
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@@ -86,7 +92,8 @@ interface IOpenPgpService {
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* @param callback
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* Callback where to return results
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*/
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oneway void decryptAndVerify(in byte[] inputBytes, in boolean allowUserInteraction,
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in IOpenPgpCallback callback);
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oneway void decryptAndVerify(in byte[] inputBytes, in IOpenPgpCallback callback);
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boolean isKeyAvailable(in String[] userIds);
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}
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@@ -20,9 +20,13 @@ import android.os.Parcel;
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import android.os.Parcelable;
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public class OpenPgpSignatureResult implements Parcelable {
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// generic error on signature verification
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public static final int SIGNATURE_ERROR = 0;
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// successfully verified signature, with trusted public key
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public static final int SIGNATURE_SUCCESS_TRUSTED = 1;
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public static final int SIGNATURE_UNKNOWN = 2;
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// no public key was found for this signature verification
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public static final int SIGNATURE_UNKNOWN_PUB_KEY = 2;
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// successfully verified signature, but with untrusted public key
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public static final int SIGNATURE_SUCCESS_UNTRUSTED = 3;
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int signatureStatus;
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@@ -139,7 +139,7 @@ public class OpenPgpProviderActivity extends Activity {
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try {
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mCryptoServiceConnection.getService().encrypt(inputBytes,
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mEncryptUserIds.getText().toString().split(","), true, true, encryptCallback);
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mEncryptUserIds.getText().toString().split(","), true, encryptCallback);
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} catch (RemoteException e) {
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Log.e(Constants.TAG, "CryptoProviderDemo", e);
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}
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@@ -149,7 +149,7 @@ public class OpenPgpProviderActivity extends Activity {
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byte[] inputBytes = mMessage.getText().toString().getBytes();
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try {
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mCryptoServiceConnection.getService().sign(inputBytes, true, true, encryptCallback);
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mCryptoServiceConnection.getService().sign(inputBytes, true, encryptCallback);
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} catch (RemoteException e) {
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Log.e(Constants.TAG, "CryptoProviderDemo", e);
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}
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@@ -160,7 +160,7 @@ public class OpenPgpProviderActivity extends Activity {
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try {
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mCryptoServiceConnection.getService().signAndEncrypt(inputBytes,
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mEncryptUserIds.getText().toString().split(","), true, true, encryptCallback);
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mEncryptUserIds.getText().toString().split(","), true, encryptCallback);
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} catch (RemoteException e) {
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Log.e(Constants.TAG, "CryptoProviderDemo", e);
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}
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@@ -170,7 +170,7 @@ public class OpenPgpProviderActivity extends Activity {
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byte[] inputBytes = mCiphertext.getText().toString().getBytes();
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try {
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mCryptoServiceConnection.getService().decryptAndVerify(inputBytes, true,
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mCryptoServiceConnection.getService().decryptAndVerify(inputBytes,
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decryptAndVerifyCallback);
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} catch (RemoteException e) {
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Log.e(Constants.TAG, "CryptoProviderDemo", e);
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