Rust
Rust
FTP through SSH Tunnel
See more FTP Examples
Demonstrates how to FTP through an SSH tunnel.The Chilkat SSH tunnel object is used to create a portable SSH tunnel w/ dynamic port forwarding on a background thread that the foreground thread can use for establishing connections through an SSH tunnel.
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// This example assumes the Chilkat API to have been previously unlocked.
// See Global Unlock Sample for sample code.
let _ = false;
let tunnel = chilkat::SshTunnel::new();
let ssh_hostname = "sftp.example.com".to_string();
let ssh_port = 22;
// Connect to an SSH server and establish the SSH tunnel:
if tunnel.connect(&ssh_hostname, ssh_port).is_err() {
println!("{}", tunnel.last_error_text());
return;
}
// Authenticate with the SSH server via a login/password
// or with a public key.
// This example demonstrates SSH password authentication.
if tunnel.authenticate_pw("mySshLogin", "mySshPassword").is_err() {
println!("{}", tunnel.last_error_text());
return;
}
// Indicate that the background SSH tunnel thread will behave as a SOCKS proxy server
// with dynamic port forwarding:
tunnel.set_dynamic_port_forwarding(true);
// We may optionally require that connecting clients authenticate with our SOCKS proxy server.
// To do this, set an inbound username/password. Any connecting clients would be required to
// use SOCKS5 with the correct username/password.
// If no inbound username/password is set, then our SOCKS proxy server will accept both
// SOCKS4 and SOCKS5 unauthenticated connections.
tunnel.set_inbound_socks_username("chilkat123");
tunnel.set_inbound_socks_password("password123");
// Start the listen/accept thread to begin accepting SOCKS proxy client connections.
// Listen on port 1080.
if tunnel.begin_accepting(1080).is_err() {
println!("{}", tunnel.last_error_text());
return;
}
// Now that a background thread is running a SOCKS proxy server that forwards connections
// through an SSH tunnel, it is possible to use any Chilkat implemented protocol that is SOCKS capable,
// such as Socket, HTTP, POP3, SMTP, IMAP, FTP, etc. The protocol may use SSL/TLS because the SSL/TLS
// will be passed through the SSH tunnel to the end-destination. Also, any number of simultaneous
// connections may be routed through the SSH tunnel.
// Let's do an FTP upload through the SSH tunnel. Both the control and data connections
// go through the tunnel.
let ftp = chilkat::Ftp2::new();
ftp.set_hostname("ftp.example.com");
ftp.set_username("login");
ftp.set_password("password");
// Indicate that the FTP2 object is to use our portable SOCKS proxy/SSH tunnel running in our background thread.
ftp.set_socks_hostname("localhost");
ftp.set_socks_port(1080);
ftp.set_socks_version(5);
ftp.set_socks_username("chilkat123");
ftp.set_socks_password("password123");
// Connect to the FTP server
if ftp.connect_only().is_err() {
println!("{}", ftp.last_error_text());
return;
}
// Authenticate with the FTP server.
if ftp.login_after_connect_only().is_err() {
println!("{}", ftp.last_error_text());
return;
}
// Change to the remote directory where the file will be uploaded.
if ftp.change_remote_dir("junk").is_err() {
println!("{}", ftp.last_error_text());
return;
}
// Upload a file.
let local_path = "/temp/hamlet.xml".to_string();
let remote_filename = "hamlet.xml".to_string();
if ftp.put_file(&local_path, &remote_filename).is_err() {
println!("{}", ftp.last_error_text());
return;
}
// This closes the SSH channel within the SSH tunnel,
// and thus closes the connection with the FTP server.
let _ = ftp.disconnect().is_ok();
println!("File Uploaded!");
// Stop the background listen/accept thread:
let wait_for_thread_exit = true;
if tunnel.stop_accepting(wait_for_thread_exit).is_err() {
println!("{}", tunnel.last_error_text());
return;
}
// Close the SSH tunnel (would also kick any remaining connected clients).
if tunnel.close_tunnel(wait_for_thread_exit).is_err() {
println!("{}", tunnel.last_error_text());
return;
}