185 lines
4.9 KiB
Python
185 lines
4.9 KiB
Python
#!/usr/bin/env python2
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# -*- coding: utf-8 -*-
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# GR-GSM based transceiver
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# Follow graph implementation
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#
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# (C) 2016-2017 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 pmt
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import time
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import grgsm
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import osmosdr
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from math import pi
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from gnuradio.eng_option import eng_option
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from gnuradio import eng_notation
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from gnuradio.filter import firdes
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from gnuradio import blocks
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from gnuradio import gr
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class RadioInterface(gr.top_block):
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# PHY specific variables
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samp_rate = 2000000
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shiftoff = 400e3
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subdev_spec = "" # TODO: use it
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device_args = ""
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fc = 941.6e6 # TODO: set ARFCN to 0?
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gain = 30
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ppm = 0
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# Application state flags
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trx_started = False
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fc_set = False
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def __init__(self, phy_args, phy_subdev_spec,
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phy_sample_rate, phy_gain, phy_ppm,
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trx_remote_addr, trx_base_port):
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print("[i] Init Radio interface")
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# TRX block specific variables
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self.trx_remote_addr = trx_remote_addr
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self.trx_base_port = trx_base_port
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# PHY specific variables
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self.subdev_spec = phy_subdev_spec
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self.samp_rate = phy_sample_rate
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self.device_args = phy_args
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self.gain = phy_gain
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self.ppm = phy_ppm
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gr.top_block.__init__(self, "GR-GSM TRX")
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shift_fc = self.fc - self.shiftoff
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##################################################
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# PHY Definition
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##################################################
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self.phy = osmosdr.source(
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args = "numchan=%d %s" % (1, self.device_args))
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self.phy.set_bandwidth(250e3 + abs(self.shiftoff), 0)
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self.phy.set_center_freq(shift_fc, 0)
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self.phy.set_sample_rate(self.samp_rate)
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self.phy.set_freq_corr(self.ppm, 0)
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self.phy.set_iq_balance_mode(2, 0)
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self.phy.set_dc_offset_mode(2, 0)
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self.phy.set_gain_mode(False, 0)
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self.phy.set_gain(self.gain, 0)
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self.phy.set_if_gain(20, 0)
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self.phy.set_bb_gain(20, 0)
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self.phy.set_antenna("", 0)
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##################################################
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# GR-GSM Magic
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##################################################
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self.blocks_rotator = blocks.rotator_cc(
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-2 * pi * self.shiftoff / self.samp_rate)
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self.gsm_input = grgsm.gsm_input(
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ppm = self.ppm, osr = 4, fc = self.fc,
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samp_rate_in = self.samp_rate)
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self.gsm_receiver = grgsm.receiver(4, ([0]), ([]))
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self.gsm_clck_ctrl = grgsm.clock_offset_control(
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shift_fc, self.samp_rate, osr = 4)
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# TODO: implement configurable TS filter
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self.gsm_ts_filter = grgsm.burst_timeslot_filter(0)
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self.gsm_trx_if = grgsm.trx(self.trx_remote_addr,
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str(self.trx_base_port))
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##################################################
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# Connections
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##################################################
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self.connect((self.phy, 0), (self.blocks_rotator, 0))
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self.connect((self.blocks_rotator, 0), (self.gsm_input, 0))
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self.connect((self.gsm_input, 0), (self.gsm_receiver, 0))
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self.msg_connect((self.gsm_receiver, 'measurements'),
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(self.gsm_clck_ctrl, 'measurements'))
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self.msg_connect((self.gsm_clck_ctrl, 'ctrl'),
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(self.gsm_input, 'ctrl_in'))
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self.msg_connect((self.gsm_receiver, 'C0'),
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(self.gsm_ts_filter, 'in'))
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self.msg_connect((self.gsm_ts_filter, 'out'),
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(self.gsm_trx_if, 'bursts'))
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def check_available(self):
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return self.fc_set
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def shutdown(self):
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print("[i] Shutdown Radio interface")
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self.stop()
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self.wait()
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def get_args(self):
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return self.args
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def set_args(self, args):
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self.args = args
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def get_fc(self):
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return self.fc
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def set_fc(self, fc):
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self.phy.set_center_freq(fc - self.shiftoff, 0)
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self.gsm_input.set_fc(fc)
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self.fc_set = True
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self.fc = fc
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def get_gain(self):
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return self.gain
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def set_gain(self, gain):
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self.phy.set_gain(gain, 0)
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self.gain = gain
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def get_ppm(self):
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return self.ppm
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def set_ppm(self, ppm):
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self.rtlsdr_source_0.set_freq_corr(ppm, 0)
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self.ppm = ppm
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def get_samp_rate(self):
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return self.samp_rate
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def set_samp_rate(self, samp_rate):
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self.blocks_rotator.set_phase_inc(
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-2 * pi * self.shiftoff / samp_rate)
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self.gsm_input.set_samp_rate_in(samp_rate)
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self.phy.set_sample_rate(samp_rate)
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self.samp_rate = samp_rate
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def get_shiftoff(self):
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return self.shiftoff
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def set_shiftoff(self, shiftoff):
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self.blocks_rotator.set_phase_inc(
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-2 * pi * shiftoff / self.samp_rate)
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self.phy.set_bandwidth(250e3 + abs(shiftoff), 0)
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self.phy.set_center_freq(self.fc - shiftoff, 0)
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self.shiftoff = shiftoff
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