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JavaScript Requires Chilkat v11.0.0+

IMAP SSH Tunneling (Port Forwarding)

Demonstrates how to setup and use an SSH tunnel for IMAP.
Note
This example is intended for running within a Chilkat.Js embedded JavaScript engine. All Chilkat JavaScript examples require Chilkat v11.4.0 or greater.
JavaScript
var success = false;

//  This example assumes the Chilkat API to have been previously unlocked.
//  See Global Unlock Sample for sample code.

var imap = new CkImap();

//  The SSH hostname may be a hostname or an 
//  IP address, such as "192.168.1.108".
//  The port is typically 22 (the standard port for SSH).
var sshHostname = "www.mysshserver.com";
var sshPort = 22;

//  Connect to an SSH server and establish the SSH tunnel:
success = imap.SshOpenTunnel(sshHostname,sshPort);
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  Authenticate with the SSH server via a login/password
//  or with a public key.
//  This example demonstrates SSH password authentication.
//  Note: This is not authenticating with the IMAP server, it is
//  for authenticating with the SSH server, which is separate.
success = imap.SshAuthenticatePw("mySshLogin","mySshPassword");
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  OK, the SSH tunnel is setup.  The IMAP component may
//  be used exactly the same as usual, except all communications
//  are sent through the SSH tunnel.

//  Connect to an IMAP server via the SSH tunnel.
//  Because the SSH tunnel has been previously setup,
//  this does not establish a direct connection with the IMAP
//  server.  It directs the SSH server to establish the connection.

//  In this example, the IMAP server requires SSL/TLS.  The TLS connection
//  will be enclosed within the SSH tunnel.
imap.Ssl = true;
imap.Port = 993;
success = imap.Connect("imap.my-imap-server.com");
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  Authenticate with the IMAP server via the SSH tunnel.
success = imap.Login("myLogin","myPassword");
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  Select an IMAP mailbox
success = imap.SelectMailbox("Inbox");
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  How many messages in Inbox?
var msgCount = imap.NumMessages;
if (msgCount == 0) {
    console.log("No messages found.");
    return;
}

var upperBound = 10;
if (msgCount < upperBound) {
    upperBound = msgCount;
}

//  Download up to the 1st 10 messages.
var email = new CkEmail();
var i;
var bUid = false;
for (i = 1; i <= upperBound; i++) {

    success = imap.FetchEmail(false,i,bUid,email);
    if (success == false) {
        console.log(imap.LastErrorText);
        return;
    }

    console.log(email.From);
    console.log(email.Subject);
    console.log("----");
}

//  Disconnect from the IMAP server.
//  The SSH tunnel remains open.
success = imap.Disconnect();
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  It is possible to re-use the existing SSH tunnel for the next connection:
success = imap.Connect("imap.my-imap-server2.com");
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  Review the LastErrorText to see that the connection was made via the SSH tunnel:
console.log(imap.LastErrorText);

success = imap.Disconnect();
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

//  Finally, close the SSH tunnel.
success = imap.SshCloseTunnel();
if (success == false) {
    console.log(imap.LastErrorText);
    return;
}

console.log("IMAP SSH tunneling example completed.");