Android™
Android™
SSH Tunnel Authenticate with a SecureString Password and Private Key
See more SSH Tunnel Examples
Demonstrates the Chilkat SshTunnel.AuthenticateSecPwPk method, which authenticates using SecureString login and password objects together with a private key. The third argument is the SshKey private key.
Note: The private-key path is relative to the application's current working directory. Absolute paths may also be used. Supply the path to your own key file.
Background: This is the
SecureString form of two-factor tunnel authentication: the password is held encrypted in memory and combined with a private key for servers that require both. It is the most protective option when a deployment mandates two-factor SSH and you also want to minimize plaintext credential exposure in a long-running process.Chilkat Android™ Downloads
// Important: Don't forget to include the call to System.loadLibrary
// as shown at the bottom of this code sample.
package com.test;
import android.app.Activity;
import com.chilkatsoft.*;
import android.widget.TextView;
import android.os.Bundle;
public class SimpleActivity extends Activity {
private static final String TAG = "Chilkat";
// Called when the activity is first created.
@Override
public void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
boolean success = false;
// Demonstrates the SshTunnel.AuthenticateSecPwPk method, which authenticates using SecureString
// login and password objects together with a private key. The 1st argument is the username, the
// 2nd is the password, and the 3rd is an SshKey private key.
CkSshTunnel tunnel = new CkSshTunnel();
// The tunnel forwards accepted local connections to this destination through the SSH server.
tunnel.put_DestHostname("db.internal.example.com");
tunnel.put_DestPort(5432);
// Connect to the SSH server. This performs the TCP/proxy connection and SSH handshake, but
// does not authenticate yet.
int sshPort = 22;
success = tunnel.Connect("ssh.example.com",sshPort);
if (success == false) {
Log.i(TAG, tunnel.lastErrorText());
return;
}
// Normally you would not hard-code the password in source. You should instead obtain it
// from an interactive prompt, environment variable, or a secrets vault.
String password = "mySshPassword";
// Load the SSH private key. LoadText reads the file's text, which is then imported.
CkSshKey privKey = new CkSshKey();
String keyText = privKey.loadText("qa_data/id_rsa");
if (privKey.get_LastMethodSuccess() == false) {
Log.i(TAG, privKey.lastErrorText());
return;
}
success = privKey.FromOpenSshPrivateKey(keyText);
if (success == false) {
Log.i(TAG, privKey.lastErrorText());
return;
}
// Place the login and password into SecureString objects.
CkSecureString secureLogin = new CkSecureString();
secureLogin.Append("mySshLogin");
CkSecureString securePassword = new CkSecureString();
securePassword.Append(password);
success = tunnel.AuthenticateSecPwPk(secureLogin,securePassword,privKey);
if (success == false) {
Log.i(TAG, tunnel.lastErrorText());
return;
}
Log.i(TAG, "Authenticated.");
// After authenticating, call BeginAccepting to start listening for local connections to forward.
boolean waitForThreadExit = true;
success = tunnel.CloseTunnel(waitForThreadExit);
if (success == false) {
Log.i(TAG, tunnel.lastErrorText());
return;
}
}
static {
System.loadLibrary("chilkat");
// Note: If the incorrect library name is passed to System.loadLibrary,
// then you will see the following error message at application startup:
//"The application <your-application-name> has stopped unexpectedly. Please try again."
}
}