gns3-server/gns3server/utils/asyncio/telnet_server.py

416 lines
14 KiB
Python

#
# Copyright (C) 2014 GNS3 Technologies Inc.
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
import asyncio
import asyncio.subprocess
import contextlib
import logging
import socket
import telnetlib3
from telnetlib3.server import TelnetServer
from telnetlib3.telopt import DONT, ECHO, IAC, NAWS, WILL, WONT
log = logging.getLogger(__name__)
READ_SIZE = 1024
BROADCAST_DRAIN_TIMEOUT = 10
class _ManagedTelnetListener:
"""Compatibility wrapper that owns AsyncioTelnetServer shutdown."""
def __init__(self, telnet_server, listener):
self._telnet_server = telnet_server
self._listener = listener
self._close_task = None
def close(self):
if self._close_task is None:
self._close_task = asyncio.create_task(self._telnet_server.close())
async def wait_closed(self):
self.close()
with contextlib.suppress(asyncio.CancelledError):
await self._close_task
def __getattr__(self, attribute):
return getattr(self._listener, attribute)
class TelnetConnection:
"""Default implementation of telnet connection which may but may not be used."""
def __init__(self, reader, writer, window_size_changed_callback=None):
self.is_closing = False
self._reader = reader
self._writer = writer
self._window_size_changed_callback = window_size_changed_callback
@property
def reader(self):
return self._reader
@property
def writer(self):
return self._writer
async def connected(self):
"""Method called when client is connected"""
pass
async def disconnected(self):
"""Method called when client is disconnecting"""
pass
async def window_size_changed(self, columns, rows):
"""Method called when window size changed, only can occur when
`naws` flag is enabled in server configuration."""
if self._window_size_changed_callback:
await self._window_size_changed_callback(columns, rows)
async def feed(self, data):
"""Handles incoming data."""
def send(self, data):
"""Send data back to client."""
data = data.decode().replace("\n", "\r\n")
self.writer.write(data.encode())
def close(self):
"""Close current connection."""
self.is_closing = True
class AsyncioTelnetServer:
def __init__(
self,
reader=None,
writer=None,
binary=True,
echo=False,
naws=False,
window_size_changed_callback=None,
connection_factory=None,
):
"""
Initialize telnet server.
:param naws: when True, window size negotiation callbacks are enabled.
:param connection_factory: optional factory to inject a custom connection implementation.
"""
assert connection_factory is None or (
connection_factory is not None and reader is None and writer is None
), "Please use either reader and writer either connection_factory, otherwise duplicate data may be produced."
self._reader = reader
self._writer = writer
self._window_size_changed_callback = window_size_changed_callback
self._binary = binary
self._echo = echo
self._naws = naws
self._connections = {}
self._pending_window_sizes = {}
self._connections_lock = asyncio.Lock()
self._close_lock = asyncio.Lock()
self._broadcast_task = None
self._server = None
self._server_handle = None
def default_connection_factory(reader, writer, window_size_changed_callback):
return TelnetConnection(reader, writer, window_size_changed_callback)
if connection_factory is None:
connection_factory = default_connection_factory
self._connection_factory = connection_factory
@staticmethod
async def write_client_intro(writer, echo=False):
"""Write a minimal telnet intro to an upstream console endpoint."""
if echo:
writer.write(IAC + WILL + ECHO)
else:
writer.write(IAC + WONT + ECHO + IAC + DONT + ECHO)
await writer.drain()
async def start(self, host, port):
"""Start a telnetlib3-backed listener and return a managed server handle."""
if self._server is not None:
raise RuntimeError("AsyncioTelnetServer is already started")
protocol_factory = self._build_protocol_factory()
self._server = await telnetlib3.create_server(
host=host,
port=port,
protocol_factory=protocol_factory,
shell=self._run_client_session,
encoding=False,
force_binary=self._binary,
never_send_ga=True,
line_mode=not self._binary,
timeout=0,
connect_maxwait=1.0,
)
self._server_handle = _ManagedTelnetListener(self, self._server)
if self._reader is not None and self._broadcast_task is None:
self._broadcast_task = asyncio.create_task(self._broadcast_from_upstream())
return self._server_handle
async def run(self, network_reader, network_writer):
"""Backward-compatible entrypoint for asyncio.start_server(server.run, ...)."""
await self._run_client_session(network_reader, network_writer)
async def close(self):
async with self._close_lock:
if self._broadcast_task is not None:
broadcast_task = self._broadcast_task
self._broadcast_task = None
broadcast_task.cancel()
with contextlib.suppress(asyncio.CancelledError):
await broadcast_task
else:
await self._disconnect_all_clients()
if self._server is not None:
self._server.close()
await self._server.wait_closed()
self._server = None
self._server_handle = None
async def client_connected_hook(self):
pass
def _build_protocol_factory(self):
parent = self
class GNS3TelnetServer(TelnetServer):
def _negotiate_echo(self):
if self._echo_negotiated:
return
self._echo_negotiated = True
if self.line_mode:
return
if parent._echo:
self.writer.iac(WILL, ECHO)
else:
self.writer.iac(WONT, ECHO)
self.writer.iac(DONT, ECHO)
def begin_advanced_negotiation(self):
super().begin_advanced_negotiation()
if not parent._naws:
self.writer.iac(DONT, NAWS)
def on_naws(self, rows, cols):
super().on_naws(rows, cols)
parent._handle_naws(self.writer, cols, rows)
return GNS3TelnetServer
def _handle_naws(self, writer, columns, rows):
if not self._naws:
return
asyncio.create_task(self._dispatch_window_size(writer, columns, rows))
async def _dispatch_window_size(self, writer, columns, rows):
async with self._connections_lock:
connection = self._connections.get(writer)
if connection is None:
self._pending_window_sizes[writer] = (columns, rows)
return
await self._invoke_window_size_changed(connection, columns, rows)
async def _invoke_window_size_changed(self, connection, columns, rows):
try:
await connection.window_size_changed(columns, rows)
except asyncio.CancelledError:
raise
except (ConnectionError, OSError):
connection.close()
except Exception:
log.exception("Unhandled exception in window_size_changed callback for %r", connection)
async def _run_client_session(self, network_reader, network_writer):
self._set_socket_options(network_writer)
connection = self._connection_factory(network_reader, network_writer, self._window_size_changed_callback)
async with self._connections_lock:
self._connections[network_writer] = connection
pending_window_size = self._pending_window_sizes.pop(network_writer, None)
if pending_window_size is not None:
columns, rows = pending_window_size
await self._invoke_window_size_changed(connection, columns, rows)
try:
await connection.connected()
await self.client_connected_hook()
while True:
data = await network_reader.read(READ_SIZE)
if not data:
break
if not self._binary:
data = data.replace(b"\r\n", b"\n")
if self._writer is not None:
self._writer.write(data)
await self._writer.drain()
await connection.feed(data)
if connection.is_closing:
break
except asyncio.CancelledError:
raise
except (ConnectionError, OSError):
pass
finally:
await self._disconnect_client(network_writer)
async def _broadcast_from_upstream(self):
try:
while True:
data = await self._reader.read(READ_SIZE)
if not data:
break
for network_writer, connection in await self._get_connections_snapshot():
try:
connection.writer.write(data)
await asyncio.wait_for(connection.writer.drain(), timeout=BROADCAST_DRAIN_TIMEOUT)
except (OSError, ConnectionError, asyncio.TimeoutError) as e:
client_info = self._get_peername(network_writer)
log.debug(
"Error sending data to client %s: %s, closing and removing from connection table.",
client_info,
e,
)
connection.close()
await self._disconnect_client(network_writer)
except asyncio.CancelledError:
raise
except (ConnectionError, OSError):
pass
finally:
await self._disconnect_all_clients()
async def _get_connections_snapshot(self):
async with self._connections_lock:
return list(self._connections.items())
async def _disconnect_all_clients(self):
async with self._connections_lock:
writers = list(self._connections.keys())
for network_writer in writers:
await self._disconnect_client(network_writer)
async def _disconnect_client(self, network_writer):
async with self._connections_lock:
connection = self._connections.pop(network_writer, None)
self._pending_window_sizes.pop(network_writer, None)
if connection is not None:
with contextlib.suppress(Exception):
await connection.disconnected()
with contextlib.suppress(AttributeError, OSError):
network_writer.close()
wait_closed = getattr(network_writer, "wait_closed", None)
if callable(wait_closed):
with contextlib.suppress(ConnectionError, OSError):
await wait_closed()
@staticmethod
def _get_peername(network_writer):
with contextlib.suppress(OSError, AttributeError):
sock = network_writer.get_extra_info("socket")
if sock is not None:
return sock.getpeername()
return network_writer.get_extra_info("peername")
@staticmethod
def _set_socket_options(network_writer):
sock = network_writer.get_extra_info("socket")
if sock is None:
return
with contextlib.suppress(OSError):
sock.setsockopt(socket.SOL_SOCKET, socket.SO_KEEPALIVE, 1)
sock.setsockopt(socket.IPPROTO_TCP, socket.TCP_NODELAY, 1)
# 60 sec keep alives, close tcp session after 4 missed.
# This keeps stateful firewalls from aging out long-lived sessions.
try:
if hasattr(socket, "TCP_KEEPIDLE"):
sock.setsockopt(socket.IPPROTO_TCP, socket.TCP_KEEPIDLE, 60)
elif hasattr(socket, "TCP_KEEPALIVE"):
sock.setsockopt(socket.IPPROTO_TCP, socket.TCP_KEEPALIVE, 60)
else:
raise AttributeError("No TCP keepalive idle socket option is available")
sock.setsockopt(socket.IPPROTO_TCP, socket.TCP_KEEPINTVL, 10)
sock.setsockopt(socket.IPPROTO_TCP, socket.TCP_KEEPCNT, 4)
except (AttributeError, OSError):
log.debug("Failed to tune TCP keepalive for telnet client; using OS defaults", exc_info=True)
if __name__ == "__main__":
logging.basicConfig(level=logging.DEBUG)
loop = asyncio.get_event_loop()
process = loop.run_until_complete(
asyncio.ensure_future(
asyncio.subprocess.create_subprocess_exec(
"/bin/sh",
"-i",
stdout=asyncio.subprocess.PIPE,
stderr=asyncio.subprocess.STDOUT,
stdin=asyncio.subprocess.PIPE,
)
)
)
server = AsyncioTelnetServer(reader=process.stdout, writer=process.stdin, binary=False, echo=False)
loop.run_until_complete(server.start("127.0.0.1", 4444))
try:
loop.run_forever()
except KeyboardInterrupt:
pass
loop.run_until_complete(server.close())
loop.close()