Source code for smtpd

#! /usr/bin/env python3
"""An RFC 5321 smtp proxy with optional RFC 1870 and RFC 6531 extensions.

Usage: %(program)s [options] [localhost:localport [remotehost:remoteport]]

Options:

    --nosetuid
    -n
        This program generally tries to setuid `nobody', unless this flag is
        set.  The setuid call will fail if this program is not run as root (in
        which case, use this flag).

    --version
    -V
        Print the version number and exit.

    --class classname
    -c classname
        Use `classname' as the concrete SMTP proxy class.  Uses `PureProxy' by
        default.

    --size limit
    -s limit
        Restrict the total size of the incoming message to "limit" number of
        bytes via the RFC 1870 SIZE extension.  Defaults to 33554432 bytes.

    --smtputf8
    -u
        Enable the SMTPUTF8 extension and behave as an RFC 6531 smtp proxy.

    --debug
    -d
        Turn on debugging prints.

    --help
    -h
        Print this message and exit.

Version: %(__version__)s

If localhost is not given then `localhost' is used, and if localport is not
given then 8025 is used.  If remotehost is not given then `localhost' is used,
and if remoteport is not given, then 25 is used.
"""

# Overview:
#
# This file implements the minimal SMTP protocol as defined in RFC 5321.  It
# has a hierarchy of classes which implement the backend functionality for the
# smtpd.  A number of classes are provided:
#
#   SMTPServer - the base class for the backend.  Raises NotImplementedError
#   if you try to use it.
#
#   DebuggingServer - simply prints each message it receives on stdout.
#
#   PureProxy - Proxies all messages to a real smtpd which does final
#   delivery.  One known problem with this class is that it doesn't handle
#   SMTP errors from the backend server at all.  This should be fixed
#   (contributions are welcome!).
#
#   MailmanProxy - An experimental hack to work with GNU Mailman
#   <www.list.org>.  Using this server as your real incoming smtpd, your
#   mailhost will automatically recognize and accept mail destined to Mailman
#   lists when those lists are created.  Every message not destined for a list
#   gets forwarded to a real backend smtpd, as with PureProxy.  Again, errors
#   are not handled correctly yet.
#
#
# Author: Barry Warsaw <barry@python.org>
#
# TODO:
#
# - support mailbox delivery
# - alias files
# - Handle more ESMTP extensions
# - handle error codes from the backend smtpd

import sys
import os
import errno
import getopt
import time
import socket
import asyncore
import asynchat
import collections
from warnings import warn
from email._header_value_parser import get_addr_spec, get_angle_addr

__all__ = [
    "SMTPChannel", "SMTPServer", "DebuggingServer", "PureProxy",
    "MailmanProxy",
]

program = sys.argv[0]
__version__ = 'Python SMTP proxy version 0.3'


class Devnull:
    def write(self, msg): pass
    def flush(self): pass


DEBUGSTREAM = Devnull()
NEWLINE = '\n'
COMMASPACE = ', '
DATA_SIZE_DEFAULT = 33554432


def usage(code, msg=''):
    print(__doc__ % globals(), file=sys.stderr)
    if msg:
        print(msg, file=sys.stderr)
    sys.exit(code)


[docs]class SMTPChannel(asynchat.async_chat): COMMAND = 0 DATA = 1 command_size_limit = 512 command_size_limits = collections.defaultdict(lambda x=command_size_limit: x) @property def max_command_size_limit(self): try: return max(self.command_size_limits.values()) except ValueError: return self.command_size_limit def __init__(self, server, conn, addr, data_size_limit=DATA_SIZE_DEFAULT, map=None, enable_SMTPUTF8=False, decode_data=False): asynchat.async_chat.__init__(self, conn, map=map) self.smtp_server = server self.conn = conn self.addr = addr self.data_size_limit = data_size_limit self.enable_SMTPUTF8 = enable_SMTPUTF8 self._decode_data = decode_data if enable_SMTPUTF8 and decode_data: raise ValueError("decode_data and enable_SMTPUTF8 cannot" " be set to True at the same time") if decode_data: self._emptystring = '' self._linesep = '\r\n' self._dotsep = '.' self._newline = NEWLINE else: self._emptystring = b'' self._linesep = b'\r\n' self._dotsep = ord(b'.') self._newline = b'\n' self._set_rset_state() self.seen_greeting = '' self.extended_smtp = False self.command_size_limits.clear() self.fqdn = socket.getfqdn() try: self.peer = conn.getpeername() except OSError as err: # a race condition may occur if the other end is closing # before we can get the peername self.close() if err.args[0] != errno.ENOTCONN: raise return print('Peer:', repr(self.peer), file=DEBUGSTREAM) self.push('220 %s %s' % (self.fqdn, __version__)) def _set_post_data_state(self): """Reset state variables to their post-DATA state.""" self.smtp_state = self.COMMAND self.mailfrom = None self.rcpttos = [] self.require_SMTPUTF8 = False self.num_bytes = 0 self.set_terminator(b'\r\n') def _set_rset_state(self): """Reset all state variables except the greeting.""" self._set_post_data_state() self.received_data = '' self.received_lines = [] # properties for backwards-compatibility @property def __server(self): warn("Access to __server attribute on SMTPChannel is deprecated, " "use 'smtp_server' instead", DeprecationWarning, 2) return self.smtp_server @__server.setter def __server(self, value): warn("Setting __server attribute on SMTPChannel is deprecated, " "set 'smtp_server' instead", DeprecationWarning, 2) self.smtp_server = value @property def __line(self): warn("Access to __line attribute on SMTPChannel is deprecated, " "use 'received_lines' instead", DeprecationWarning, 2) return self.received_lines @__line.setter def __line(self, value): warn("Setting __line attribute on SMTPChannel is deprecated, " "set 'received_lines' instead", DeprecationWarning, 2) self.received_lines = value @property def __state(self): warn("Access to __state attribute on SMTPChannel is deprecated, " "use 'smtp_state' instead", DeprecationWarning, 2) return self.smtp_state @__state.setter def __state(self, value): warn("Setting __state attribute on SMTPChannel is deprecated, " "set 'smtp_state' instead", DeprecationWarning, 2) self.smtp_state = value @property def __greeting(self): warn("Access to __greeting attribute on SMTPChannel is deprecated, " "use 'seen_greeting' instead", DeprecationWarning, 2) return self.seen_greeting @__greeting.setter def __greeting(self, value): warn("Setting __greeting attribute on SMTPChannel is deprecated, " "set 'seen_greeting' instead", DeprecationWarning, 2) self.seen_greeting = value @property def __mailfrom(self): warn("Access to __mailfrom attribute on SMTPChannel is deprecated, " "use 'mailfrom' instead", DeprecationWarning, 2) return self.mailfrom @__mailfrom.setter def __mailfrom(self, value): warn("Setting __mailfrom attribute on SMTPChannel is deprecated, " "set 'mailfrom' instead", DeprecationWarning, 2) self.mailfrom = value @property def __rcpttos(self): warn("Access to __rcpttos attribute on SMTPChannel is deprecated, " "use 'rcpttos' instead", DeprecationWarning, 2) return self.rcpttos @__rcpttos.setter def __rcpttos(self, value): warn("Setting __rcpttos attribute on SMTPChannel is deprecated, " "set 'rcpttos' instead", DeprecationWarning, 2) self.rcpttos = value @property def __data(self): warn("Access to __data attribute on SMTPChannel is deprecated, " "use 'received_data' instead", DeprecationWarning, 2) return self.received_data @__data.setter def __data(self, value): warn("Setting __data attribute on SMTPChannel is deprecated, " "set 'received_data' instead", DeprecationWarning, 2) self.received_data = value @property def __fqdn(self): warn("Access to __fqdn attribute on SMTPChannel is deprecated, " "use 'fqdn' instead", DeprecationWarning, 2) return self.fqdn @__fqdn.setter def __fqdn(self, value): warn("Setting __fqdn attribute on SMTPChannel is deprecated, " "set 'fqdn' instead", DeprecationWarning, 2) self.fqdn = value @property def __peer(self): warn("Access to __peer attribute on SMTPChannel is deprecated, " "use 'peer' instead", DeprecationWarning, 2) return self.peer @__peer.setter def __peer(self, value): warn("Setting __peer attribute on SMTPChannel is deprecated, " "set 'peer' instead", DeprecationWarning, 2) self.peer = value @property def __conn(self): warn("Access to __conn attribute on SMTPChannel is deprecated, " "use 'conn' instead", DeprecationWarning, 2) return self.conn @__conn.setter def __conn(self, value): warn("Setting __conn attribute on SMTPChannel is deprecated, " "set 'conn' instead", DeprecationWarning, 2) self.conn = value @property def __addr(self): warn("Access to __addr attribute on SMTPChannel is deprecated, " "use 'addr' instead", DeprecationWarning, 2) return self.addr @__addr.setter def __addr(self, value): warn("Setting __addr attribute on SMTPChannel is deprecated, " "set 'addr' instead", DeprecationWarning, 2) self.addr = value # Overrides base class for convenience. def push(self, msg): asynchat.async_chat.push(self, bytes( msg + '\r\n', 'utf-8' if self.require_SMTPUTF8 else 'ascii')) # Implementation of base class abstract method def collect_incoming_data(self, data): limit = None if self.smtp_state == self.COMMAND: limit = self.max_command_size_limit elif self.smtp_state == self.DATA: limit = self.data_size_limit if limit and self.num_bytes > limit: return elif limit: self.num_bytes += len(data) if self._decode_data: self.received_lines.append(str(data, 'utf-8')) else: self.received_lines.append(data) # Implementation of base class abstract method def found_terminator(self): line = self._emptystring.join(self.received_lines) print('Data:', repr(line), file=DEBUGSTREAM) self.received_lines = [] if self.smtp_state == self.COMMAND: sz, self.num_bytes = self.num_bytes, 0 if not line: self.push('500 Error: bad syntax') return if not self._decode_data: line = str(line, 'utf-8') i = line.find(' ') if i < 0: command = line.upper() arg = None else: command = line[:i].upper() arg = line[i+1:].strip() max_sz = (self.command_size_limits[command] if self.extended_smtp else self.command_size_limit) if sz > max_sz: self.push('500 Error: line too long') return method = getattr(self, 'smtp_' + command, None) if not method: self.push('500 Error: command "%s" not recognized' % command) return method(arg) return else: if self.smtp_state != self.DATA: self.push('451 Internal confusion') self.num_bytes = 0 return if self.data_size_limit and self.num_bytes > self.data_size_limit: self.push('552 Error: Too much mail data') self.num_bytes = 0 return # Remove extraneous carriage returns and de-transparency according # to RFC 5321, Section 4.5.2. data = [] for text in line.split(self._linesep): if text and text[0] == self._dotsep: data.append(text[1:]) else: data.append(text) self.received_data = self._newline.join(data) args = (self.peer, self.mailfrom, self.rcpttos, self.received_data) kwargs = {} if not self._decode_data: kwargs = { 'mail_options': self.mail_options, 'rcpt_options': self.rcpt_options, } status = self.smtp_server.process_message(*args, **kwargs) self._set_post_data_state() if not status: self.push('250 OK') else: self.push(status) # SMTP and ESMTP commands def smtp_HELO(self, arg): if not arg: self.push('501 Syntax: HELO hostname') return # See issue #21783 for a discussion of this behavior. if self.seen_greeting: self.push('503 Duplicate HELO/EHLO') return self._set_rset_state() self.seen_greeting = arg self.push('250 %s' % self.fqdn) def smtp_EHLO(self, arg): if not arg: self.push('501 Syntax: EHLO hostname') return # See issue #21783 for a discussion of this behavior. if self.seen_greeting: self.push('503 Duplicate HELO/EHLO') return self._set_rset_state() self.seen_greeting = arg self.extended_smtp = True self.push('250-%s' % self.fqdn) if self.data_size_limit: self.push('250-SIZE %s' % self.data_size_limit) self.command_size_limits['MAIL'] += 26 if not self._decode_data: self.push('250-8BITMIME') if self.enable_SMTPUTF8: self.push('250-SMTPUTF8') self.command_size_limits['MAIL'] += 10 self.push('250 HELP') def smtp_NOOP(self, arg): if arg: self.push('501 Syntax: NOOP') else: self.push('250 OK') def smtp_QUIT(self, arg): # args is ignored self.push('221 Bye') self.close_when_done() def _strip_command_keyword(self, keyword, arg): keylen = len(keyword) if arg[:keylen].upper() == keyword: return arg[keylen:].strip() return '' def _getaddr(self, arg): if not arg: return '', '' if arg.lstrip().startswith('<'): address, rest = get_angle_addr(arg) else: address, rest = get_addr_spec(arg) if not address: return address, rest return address.addr_spec, rest def _getparams(self, params): # Return params as dictionary. Return None if not all parameters # appear to be syntactically valid according to RFC 1869. result = {} for param in params: param, eq, value = param.partition('=') if not param.isalnum() or eq and not value: return None result[param] = value if eq else True return result def smtp_HELP(self, arg): if arg: extended = ' [SP <mail-parameters>]' lc_arg = arg.upper() if lc_arg == 'EHLO': self.push('250 Syntax: EHLO hostname') elif lc_arg == 'HELO': self.push('250 Syntax: HELO hostname') elif lc_arg == 'MAIL': msg = '250 Syntax: MAIL FROM: <address>' if self.extended_smtp: msg += extended self.push(msg) elif lc_arg == 'RCPT': msg = '250 Syntax: RCPT TO: <address>' if self.extended_smtp: msg += extended self.push(msg) elif lc_arg == 'DATA': self.push('250 Syntax: DATA') elif lc_arg == 'RSET': self.push('250 Syntax: RSET') elif lc_arg == 'NOOP': self.push('250 Syntax: NOOP') elif lc_arg == 'QUIT': self.push('250 Syntax: QUIT') elif lc_arg == 'VRFY': self.push('250 Syntax: VRFY <address>') else: self.push('501 Supported commands: EHLO HELO MAIL RCPT ' 'DATA RSET NOOP QUIT VRFY') else: self.push('250 Supported commands: EHLO HELO MAIL RCPT DATA ' 'RSET NOOP QUIT VRFY') def smtp_VRFY(self, arg): if arg: address, params = self._getaddr(arg) if address: self.push('252 Cannot VRFY user, but will accept message ' 'and attempt delivery') else: self.push('502 Could not VRFY %s' % arg) else: self.push('501 Syntax: VRFY <address>') def smtp_MAIL(self, arg): if not self.seen_greeting: self.push('503 Error: send HELO first') return print('===> MAIL', arg, file=DEBUGSTREAM) syntaxerr = '501 Syntax: MAIL FROM: <address>' if self.extended_smtp: syntaxerr += ' [SP <mail-parameters>]' if arg is None: self.push(syntaxerr) return arg = self._strip_command_keyword('FROM:', arg) address, params = self._getaddr(arg) if not address: self.push(syntaxerr) return if not self.extended_smtp and params: self.push(syntaxerr) return if self.mailfrom: self.push('503 Error: nested MAIL command') return self.mail_options = params.upper().split() params = self._getparams(self.mail_options) if params is None: self.push(syntaxerr) return if not self._decode_data: body = params.pop('BODY', '7BIT') if body not in ['7BIT', '8BITMIME']: self.push('501 Error: BODY can only be one of 7BIT, 8BITMIME') return if self.enable_SMTPUTF8: smtputf8 = params.pop('SMTPUTF8', False) if smtputf8 is True: self.require_SMTPUTF8 = True elif smtputf8 is not False: self.push('501 Error: SMTPUTF8 takes no arguments') return size = params.pop('SIZE', None) if size: if not size.isdigit(): self.push(syntaxerr) return elif self.data_size_limit and int(size) > self.data_size_limit: self.push('552 Error: message size exceeds fixed maximum message size') return if len(params.keys()) > 0: self.push('555 MAIL FROM parameters not recognized or not implemented') return self.mailfrom = address print('sender:', self.mailfrom, file=DEBUGSTREAM) self.push('250 OK') def smtp_RCPT(self, arg): if not self.seen_greeting: self.push('503 Error: send HELO first'); return print('===> RCPT', arg, file=DEBUGSTREAM) if not self.mailfrom: self.push('503 Error: need MAIL command') return syntaxerr = '501 Syntax: RCPT TO: <address>' if self.extended_smtp: syntaxerr += ' [SP <mail-parameters>]' if arg is None: self.push(syntaxerr) return arg = self._strip_command_keyword('TO:', arg) address, params = self._getaddr(arg) if not address: self.push(syntaxerr) return if not self.extended_smtp and params: self.push(syntaxerr) return self.rcpt_options = params.upper().split() params = self._getparams(self.rcpt_options) if params is None: self.push(syntaxerr) return # XXX currently there are no options we recognize. if len(params.keys()) > 0: self.push('555 RCPT TO parameters not recognized or not implemented') return self.rcpttos.append(address) print('recips:', self.rcpttos, file=DEBUGSTREAM) self.push('250 OK') def smtp_RSET(self, arg): if arg: self.push('501 Syntax: RSET') return self._set_rset_state() self.push('250 OK') def smtp_DATA(self, arg): if not self.seen_greeting: self.push('503 Error: send HELO first'); return if not self.rcpttos: self.push('503 Error: need RCPT command') return if arg: self.push('501 Syntax: DATA') return self.smtp_state = self.DATA self.set_terminator(b'\r\n.\r\n') self.push('354 End data with <CR><LF>.<CR><LF>') # Commands that have not been implemented def smtp_EXPN(self, arg): self.push('502 EXPN not implemented')
[docs]class SMTPServer(asyncore.dispatcher): # SMTPChannel class to use for managing client connections channel_class = SMTPChannel def __init__(self, localaddr, remoteaddr, data_size_limit=DATA_SIZE_DEFAULT, map=None, enable_SMTPUTF8=False, decode_data=False): self._localaddr = localaddr self._remoteaddr = remoteaddr self.data_size_limit = data_size_limit self.enable_SMTPUTF8 = enable_SMTPUTF8 self._decode_data = decode_data if enable_SMTPUTF8 and decode_data: raise ValueError("decode_data and enable_SMTPUTF8 cannot" " be set to True at the same time") asyncore.dispatcher.__init__(self, map=map) try: gai_results = socket.getaddrinfo(*localaddr, type=socket.SOCK_STREAM) self.create_socket(gai_results[0][0], gai_results[0][1]) # try to re-use a server port if possible self.set_reuse_addr() self.bind(localaddr) self.listen(5) except: self.close() raise else: print('%s started at %s\n\tLocal addr: %s\n\tRemote addr:%s' % ( self.__class__.__name__, time.ctime(time.time()), localaddr, remoteaddr), file=DEBUGSTREAM) def handle_accepted(self, conn, addr): print('Incoming connection from %s' % repr(addr), file=DEBUGSTREAM) channel = self.channel_class(self, conn, addr, self.data_size_limit, self._map, self.enable_SMTPUTF8, self._decode_data) # API for "doing something useful with the message"
[docs] def process_message(self, peer, mailfrom, rcpttos, data, **kwargs): """Override this abstract method to handle messages from the client. peer is a tuple containing (ipaddr, port) of the client that made the socket connection to our smtp port. mailfrom is the raw address the client claims the message is coming from. rcpttos is a list of raw addresses the client wishes to deliver the message to. data is a string containing the entire full text of the message, headers (if supplied) and all. It has been `de-transparencied' according to RFC 821, Section 4.5.2. In other words, a line containing a `.' followed by other text has had the leading dot removed. kwargs is a dictionary containing additional information. It is empty if decode_data=True was given as init parameter, otherwise it will contain the following keys: 'mail_options': list of parameters to the mail command. All elements are uppercase strings. Example: ['BODY=8BITMIME', 'SMTPUTF8']. 'rcpt_options': same, for the rcpt command. This function should return None for a normal `250 Ok' response; otherwise, it should return the desired response string in RFC 821 format. """ raise NotImplementedError
[docs]class DebuggingServer(SMTPServer): def _print_message_content(self, peer, data): inheaders = 1 lines = data.splitlines() for line in lines: # headers first if inheaders and not line: peerheader = 'X-Peer: ' + peer[0] if not isinstance(data, str): # decoded_data=false; make header match other binary output peerheader = repr(peerheader.encode('utf-8')) print(peerheader) inheaders = 0 if not isinstance(data, str): # Avoid spurious 'str on bytes instance' warning. line = repr(line) print(line) def process_message(self, peer, mailfrom, rcpttos, data, **kwargs): print('---------- MESSAGE FOLLOWS ----------') if kwargs: if kwargs.get('mail_options'): print('mail options: %s' % kwargs['mail_options']) if kwargs.get('rcpt_options'): print('rcpt options: %s\n' % kwargs['rcpt_options']) self._print_message_content(peer, data) print('------------ END MESSAGE ------------')
[docs]class PureProxy(SMTPServer): def __init__(self, *args, **kwargs): if 'enable_SMTPUTF8' in kwargs and kwargs['enable_SMTPUTF8']: raise ValueError("PureProxy does not support SMTPUTF8.") super(PureProxy, self).__init__(*args, **kwargs) def process_message(self, peer, mailfrom, rcpttos, data): lines = data.split('\n') # Look for the last header i = 0 for line in lines: if not line: break i += 1 lines.insert(i, 'X-Peer: %s' % peer[0]) data = NEWLINE.join(lines) refused = self._deliver(mailfrom, rcpttos, data) # TBD: what to do with refused addresses? print('we got some refusals:', refused, file=DEBUGSTREAM) def _deliver(self, mailfrom, rcpttos, data): import smtplib refused = {} try: s = smtplib.SMTP() s.connect(self._remoteaddr[0], self._remoteaddr[1]) try: refused = s.sendmail(mailfrom, rcpttos, data) finally: s.quit() except smtplib.SMTPRecipientsRefused as e: print('got SMTPRecipientsRefused', file=DEBUGSTREAM) refused = e.recipients except (OSError, smtplib.SMTPException) as e: print('got', e.__class__, file=DEBUGSTREAM) # All recipients were refused. If the exception had an associated # error code, use it. Otherwise,fake it with a non-triggering # exception code. errcode = getattr(e, 'smtp_code', -1) errmsg = getattr(e, 'smtp_error', 'ignore') for r in rcpttos: refused[r] = (errcode, errmsg) return refused
[docs]class MailmanProxy(PureProxy): def __init__(self, *args, **kwargs): if 'enable_SMTPUTF8' in kwargs and kwargs['enable_SMTPUTF8']: raise ValueError("MailmanProxy does not support SMTPUTF8.") super(PureProxy, self).__init__(*args, **kwargs) def process_message(self, peer, mailfrom, rcpttos, data): from io import StringIO from Mailman import Utils from Mailman import Message from Mailman import MailList # If the message is to a Mailman mailing list, then we'll invoke the # Mailman script directly, without going through the real smtpd. # Otherwise we'll forward it to the local proxy for disposition. listnames = [] for rcpt in rcpttos: local = rcpt.lower().split('@')[0] # We allow the following variations on the theme # listname # listname-admin # listname-owner # listname-request # listname-join # listname-leave parts = local.split('-') if len(parts) > 2: continue listname = parts[0] if len(parts) == 2: command = parts[1] else: command = '' if not Utils.list_exists(listname) or command not in ( '', 'admin', 'owner', 'request', 'join', 'leave'): continue listnames.append((rcpt, listname, command)) # Remove all list recipients from rcpttos and forward what we're not # going to take care of ourselves. Linear removal should be fine # since we don't expect a large number of recipients. for rcpt, listname, command in listnames: rcpttos.remove(rcpt) # If there's any non-list destined recipients left, print('forwarding recips:', ' '.join(rcpttos), file=DEBUGSTREAM) if rcpttos: refused = self._deliver(mailfrom, rcpttos, data) # TBD: what to do with refused addresses? print('we got refusals:', refused, file=DEBUGSTREAM) # Now deliver directly to the list commands mlists = {} s = StringIO(data) msg = Message.Message(s) # These headers are required for the proper execution of Mailman. All # MTAs in existence seem to add these if the original message doesn't # have them. if not msg.get('from'): msg['From'] = mailfrom if not msg.get('date'): msg['Date'] = time.ctime(time.time()) for rcpt, listname, command in listnames: print('sending message to', rcpt, file=DEBUGSTREAM) mlist = mlists.get(listname) if not mlist: mlist = MailList.MailList(listname, lock=0) mlists[listname] = mlist # dispatch on the type of command if command == '': # post msg.Enqueue(mlist, tolist=1) elif command == 'admin': msg.Enqueue(mlist, toadmin=1) elif command == 'owner': msg.Enqueue(mlist, toowner=1) elif command == 'request': msg.Enqueue(mlist, torequest=1) elif command in ('join', 'leave'): # TBD: this is a hack! if command == 'join': msg['Subject'] = 'subscribe' else: msg['Subject'] = 'unsubscribe' msg.Enqueue(mlist, torequest=1)
class Options: setuid = True classname = 'PureProxy' size_limit = None enable_SMTPUTF8 = False def parseargs(): global DEBUGSTREAM try: opts, args = getopt.getopt( sys.argv[1:], 'nVhc:s:du', ['class=', 'nosetuid', 'version', 'help', 'size=', 'debug', 'smtputf8']) except getopt.error as e: usage(1, e) options = Options() for opt, arg in opts: if opt in ('-h', '--help'): usage(0) elif opt in ('-V', '--version'): print(__version__) sys.exit(0) elif opt in ('-n', '--nosetuid'): options.setuid = False elif opt in ('-c', '--class'): options.classname = arg elif opt in ('-d', '--debug'): DEBUGSTREAM = sys.stderr elif opt in ('-u', '--smtputf8'): options.enable_SMTPUTF8 = True elif opt in ('-s', '--size'): try: int_size = int(arg) options.size_limit = int_size except: print('Invalid size: ' + arg, file=sys.stderr) sys.exit(1) # parse the rest of the arguments if len(args) < 1: localspec = 'localhost:8025' remotespec = 'localhost:25' elif len(args) < 2: localspec = args[0] remotespec = 'localhost:25' elif len(args) < 3: localspec = args[0] remotespec = args[1] else: usage(1, 'Invalid arguments: %s' % COMMASPACE.join(args)) # split into host/port pairs i = localspec.find(':') if i < 0: usage(1, 'Bad local spec: %s' % localspec) options.localhost = localspec[:i] try: options.localport = int(localspec[i+1:]) except ValueError: usage(1, 'Bad local port: %s' % localspec) i = remotespec.find(':') if i < 0: usage(1, 'Bad remote spec: %s' % remotespec) options.remotehost = remotespec[:i] try: options.remoteport = int(remotespec[i+1:]) except ValueError: usage(1, 'Bad remote port: %s' % remotespec) return options if __name__ == '__main__': options = parseargs() # Become nobody classname = options.classname if "." in classname: lastdot = classname.rfind(".") mod = __import__(classname[:lastdot], globals(), locals(), [""]) classname = classname[lastdot+1:] else: import __main__ as mod class_ = getattr(mod, classname) proxy = class_((options.localhost, options.localport), (options.remotehost, options.remoteport), options.size_limit, enable_SMTPUTF8=options.enable_SMTPUTF8) if options.setuid: try: import pwd except ImportError: print('Cannot import module "pwd"; try running with -n option.', file=sys.stderr) sys.exit(1) nobody = pwd.getpwnam('nobody')[2] try: os.setuid(nobody) except PermissionError: print('Cannot setuid "nobody"; try running with -n option.', file=sys.stderr) sys.exit(1) try: asyncore.loop() except KeyboardInterrupt: pass