205 lines
5.6 KiB
Python
205 lines
5.6 KiB
Python
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#!/usr/bin/env python2
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# -*- coding: utf-8 -*-
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# Virtual Um-interface (fake transceiver)
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# OsmocomBB <-> OsmoBTS bridge
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#
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# (C) 2017 by Vadim Yanitskiy <axilirator@gmail.com>
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#
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# All Rights Reserved
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License along
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# with this program; if not, write to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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import signal
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import getopt
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import select
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import sys
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from ctrl_if_bts import CTRLInterfaceBTS
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from ctrl_if_bb import CTRLInterfaceBB
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from burst_fwd import BurstForwarder
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from udp_link import UDPLink
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from clck_gen import CLCKGen
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COPYRIGHT = \
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"Copyright (C) 2017 by Vadim Yanitskiy <axilirator@gmail.com>\n" \
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"License GPLv2+: GNU GPL version 2 or later " \
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"<http://gnu.org/licenses/gpl.html>\n" \
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"This is free software: you are free to change and redistribute it.\n" \
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"There is NO WARRANTY, to the extent permitted by law.\n"
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class Application:
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# Application variables
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bts_addr = "127.0.0.1"
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bb_addr = "127.0.0.1"
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bts_base_port = 5700
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bb_base_port = 5703
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def __init__(self):
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self.print_copyright()
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self.parse_argv()
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# Set up signal handlers
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signal.signal(signal.SIGINT, self.sig_handler)
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def run(self):
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# Init TRX CTRL interface for BTS
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self.bts_ctrl = CTRLInterfaceBTS(self.bts_addr,
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self.bts_base_port + 101, self.bts_base_port + 1)
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# Init TRX CTRL interface for BB
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self.bb_ctrl = CTRLInterfaceBB(self.bb_addr,
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self.bb_base_port + 101, self.bb_base_port + 1)
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# BTS <-> BB burst forwarding
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self.bts_data = UDPLink(self.bts_addr,
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self.bts_base_port + 102, self.bts_base_port + 2)
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self.bb_data = UDPLink(self.bb_addr,
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self.bb_base_port + 102, self.bb_base_port + 2)
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self.burst_fwd = BurstForwarder(self.bts_data, self.bb_data)
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# Share clock between BTS and BB
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self.bts_clck = UDPLink(self.bts_addr,
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self.bts_base_port + 100, self.bts_base_port)
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self.bb_clck = UDPLink(self.bb_addr,
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self.bb_base_port + 100, self.bb_base_port)
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self.clck_gen = CLCKGen([self.bts_clck, self.bb_clck])
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self.clck_gen.start()
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print("[i] Init complete")
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# Enter main loop
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while True:
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socks = [self.bts_ctrl.sock, self.bb_ctrl.sock,
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self.bts_data.sock, self.bb_data.sock]
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# Wait until we get any data on any socket
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r_event, w_event, x_event = select.select(socks, [], [])
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# Downlink: BTS -> BB
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if self.bts_data.sock in r_event:
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self.burst_fwd.bts2bb()
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# Uplink: BB -> BTS
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if self.bb_data.sock in r_event:
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self.burst_fwd.bb2bts()
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# CTRL commands from BTS
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if self.bts_ctrl.sock in r_event:
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data, addr = self.bts_ctrl.sock.recvfrom(128)
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self.bts_ctrl.handle_rx(data)
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# CTRL commands from BB
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if self.bb_ctrl.sock in r_event:
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data, addr = self.bb_ctrl.sock.recvfrom(128)
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self.bb_ctrl.handle_rx(data)
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def shutdown(self):
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print("[i] Shutting down...")
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# Stop clock generator
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self.clck_gen.stop()
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# Close CLCK interfaces
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self.bts_clck.shutdown()
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self.bb_clck.shutdown()
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# Close CTRL interfaces
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self.bts_ctrl.shutdown()
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self.bb_ctrl.shutdown()
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# Close DATA interfaces
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self.bts_data.shutdown()
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self.bb_data.shutdown()
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def print_copyright(self):
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print(COPYRIGHT)
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def print_help(self, msg = None):
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s = " Usage: " + sys.argv[0] + " [options]\n\n" \
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" Some help...\n" \
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" -h --help this text\n\n"
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s += " TRX interface specific\n" \
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" -R --bts-addr Set BTS remote address (default %s)\n" \
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" -r --bb-addr Set BB remote address (default %s)\n" \
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" -P --bts-base-port Set BTS base port number (default %d)\n" \
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" -p --bb-base-port Set BB base port number (default %d)\n"
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print(s % (self.bts_addr, self.bb_addr,
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self.bts_base_port, self.bb_base_port))
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if msg is not None:
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print(msg)
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def parse_argv(self):
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try:
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opts, args = getopt.getopt(sys.argv[1:],
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"R:r:P:p:h",
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["help", "bts-addr=", "bb-addr=",
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"bts-base-port=", "bb-base-port="])
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except getopt.GetoptError as err:
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self.print_help("[!] " + str(err))
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sys.exit(2)
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for o, v in opts:
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if o in ("-h", "--help"):
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self.print_help()
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sys.exit(2)
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elif o in ("-R", "--bts-addr"):
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self.bts_addr = v
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elif o in ("-r", "--bb-addr"):
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self.bb_addr = v
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elif o in ("-P", "--bts-base-port"):
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self.bts_base_port = int(v)
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elif o in ("-p", "--bb-base-port"):
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self.bb_base_port = int(v)
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# Ensure there is no overlap between ports
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if self.bts_base_port == self.bb_base_port:
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self.print_help("[!] BTS and BB base ports should be different")
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sys.exit(2)
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bts_ports = [
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self.bts_base_port + 0, self.bts_base_port + 100,
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self.bts_base_port + 1, self.bts_base_port + 101,
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self.bts_base_port + 2, self.bts_base_port + 102,
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]
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bb_ports = [
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self.bb_base_port + 0, self.bb_base_port + 100,
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self.bb_base_port + 1, self.bb_base_port + 101,
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self.bb_base_port + 2, self.bb_base_port + 102,
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]
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for p in bb_ports:
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if p in bts_ports:
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self.print_help("[!] BTS and BB ports overlap detected")
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sys.exit(2)
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def sig_handler(self, signum, frame):
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print("Signal %d received" % signum)
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if signum is signal.SIGINT:
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self.shutdown()
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sys.exit(0)
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if __name__ == '__main__':
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app = Application()
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app.run()
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