2020-08-22 00:50:38 +02:00
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// The module websocket implements the websocket server capabilities
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module websocket
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2020-11-15 21:54:47 +01:00
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import net
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2020-08-22 00:50:38 +02:00
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import x.openssl
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import log
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import sync
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import time
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import rand
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2020-12-02 04:02:53 +01:00
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// Server holds state of websocket server connection
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2020-08-22 00:50:38 +02:00
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pub struct Server {
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mut:
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2020-12-02 04:02:53 +01:00
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clients map[string]&ServerClient // Clients connected to this server
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logger &log.Log // Logger used to log
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ls net.TcpListener // TCpLister used to get incoming connection to socket
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accept_client_callbacks []AcceptClientFn // Accept client callback functions
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message_callbacks []MessageEventHandler // New message callback functions
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close_callbacks []CloseEventHandler // Close message callback functions
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2020-08-22 00:50:38 +02:00
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pub:
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2020-12-02 04:02:53 +01:00
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port int // Port used as listen to incoming connections
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is_ssl bool // True if secure connection (not supported yet on server)
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pub mut:
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ping_interval int = 30
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// Interval for automatic sending ping to connected clients in seconds
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state State // Current state of connection
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2020-08-22 00:50:38 +02:00
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}
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2020-12-02 04:02:53 +01:00
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// ServerClient has state of connected clients
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2020-08-22 00:50:38 +02:00
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struct ServerClient {
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pub:
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resource_name string // The resource that the client access
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client_key string // Unique key of client
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2020-08-22 00:50:38 +02:00
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pub mut:
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server &Server // The server instance
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client &Client // The client instance
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}
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// new_server instance new websocket server on port and route
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pub fn new_server(port int, route string) &Server {
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return &Server{
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port: port
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logger: &log.Log{
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level: .info
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}
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state: .closed
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}
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}
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2020-12-02 04:02:53 +01:00
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// set_ping_interval sets the interval that the server will send ping messages to clients
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pub fn (mut s Server) set_ping_interval(seconds int) {
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s.ping_interval = seconds
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}
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// listen, start listen to incoming connections
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pub fn (mut s Server) listen() ? {
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s.logger.info('websocket server: start listen on port $s.port')
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s.ls = net.listen_tcp(s.port) ?
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s.set_state(.open)
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go s.handle_ping()
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for {
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mut c := s.accept_new_client() or {
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continue
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}
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go s.serve_client(mut c)
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}
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s.logger.info('websocket server: end listen on port $s.port')
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}
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// Close server (not implemented)
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fn (mut s Server) close() {
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}
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// handle_ping sends ping to all clients every set interval
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fn (mut s Server) handle_ping() {
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mut clients_to_remove := []string{}
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for s.state == .open {
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time.sleep(s.ping_interval)
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for _, cli in s.clients {
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mut c := cli
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if c.client.state == .open {
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c.client.ping() or {
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s.logger.debug('server-> error sending ping to client')
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c.client.close(1002, 'Closing connection: ping send error') or {
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// we want to continue even if error
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continue
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}
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clients_to_remove << c.client.id
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}
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if (time.now().unix - c.client.last_pong_ut) > s.ping_interval * 2 {
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clients_to_remove << c.client.id
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c.client.close(1000, 'no pong received') or {
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continue
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}
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}
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}
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}
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// TODO replace for with s.clients.delete_all(clients_to_remove) if (https://github.com/vlang/v/pull/6020) merges
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for client in clients_to_remove {
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lock {
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s.clients.delete(client)
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}
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}
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clients_to_remove.clear()
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}
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}
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// serve_client accepts incoming connection and setup the websocket handshake
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fn (mut s Server) serve_client(mut c Client) ? {
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c.logger.debug('server-> Start serve client ($c.id)')
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defer {
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c.logger.debug('server-> End serve client ($c.id)')
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}
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mut handshake_response, mut server_client := s.handle_server_handshake(mut c) ?
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accept := s.send_connect_event(mut server_client) ?
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if !accept {
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s.logger.debug('server-> client not accepted')
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c.shutdown_socket() ?
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return
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}
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// The client is accepted
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c.socket_write(handshake_response.bytes()) ?
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lock {
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s.clients[server_client.client.id] = server_client
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}
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s.setup_callbacks(mut server_client)
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c.listen() or {
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s.logger.error(err)
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return error(err)
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}
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}
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// setup_callbacks initialize all callback functions
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fn (mut s Server) setup_callbacks(mut sc ServerClient) {
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if s.message_callbacks.len > 0 {
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for cb in s.message_callbacks {
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if cb.is_ref {
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sc.client.on_message_ref(cb.handler2, cb.ref)
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} else {
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sc.client.on_message(cb.handler)
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}
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}
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}
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if s.close_callbacks.len > 0 {
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for cb in s.close_callbacks {
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if cb.is_ref {
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sc.client.on_close_ref(cb.handler2, cb.ref)
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} else {
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sc.client.on_close(cb.handler)
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}
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}
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}
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// Set standard close so we can remove client if closed
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sc.client.on_close_ref(fn (mut c Client, code int, reason string, mut sc ServerClient) ? {
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c.logger.debug('server-> Delete client')
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lock {
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sc.server.clients.delete(sc.client.id)
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}
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}, sc)
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}
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// accept_new_client creates a new client instance for client connects to socket
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fn (mut s Server) accept_new_client() ?&Client {
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mut new_conn := s.ls.accept() ?
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c := &Client{
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is_server: true
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conn: new_conn
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ssl_conn: openssl.new_ssl_conn()
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logger: s.logger
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state: .open
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last_pong_ut: time.now().unix
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id: rand.uuid_v4()
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}
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return c
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}
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// set_state sets current state in a thread safe way
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fn (mut s Server) set_state(state State) {
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lock {
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s.state = state
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}
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}
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// free, manual free memory of Server instance
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pub fn (mut s Server) free() {
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unsafe {
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s.clients.free()
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s.accept_client_callbacks.free()
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s.message_callbacks.free()
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s.close_callbacks.free()
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}
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}
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