#!/usr/bin/env python """ Copyright 2010-2011 Free Software Foundation, Inc. This file is part of GNU Radio GNU Radio Companion 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 2 of the License, or (at your option) any later version. GNU Radio Companion 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, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA """ MAIN_TMPL = """\ UHD: Multi USRP $sourk.title() uhd_multi_usrp_$(sourk) from gnuradio import uhd uhd.multi_usrp_$(sourk)( device_addr=\$dev_addr, io_type=uhd.io_type.\$type.type, num_channels=\$nchan, ) \#if \$sync() self.\$(id).set_clock_config(uhd.clock_config.external(), uhd.ALL_MBOARDS); self.\$(id).setime_unknown_pps(uhd.time_spec()) \#end if #for $m in range($max_mboards) \#if \$num_mboards() > $m and \$sd_spec$(m)() self.\$(id).set_subdev_spec(\$sd_spec$(m), $m) \#end if #end for self.\$(id).set_samp_rate(\$samp_rate) #for $n in range($max_nchan) \#if \$nchan() > $n self.\$(id).set_center_freq(\$center_freq$(n), $n) self.\$(id).set_gain(\$gain$(n), $n) \#if \$ant$(n)() self.\$(id).set_antenna(\$ant$(n), $n) \#end if \#if \$bw$(n)() self.\$(id).set_bandwidth(\$bw$(n), $n) \#end if \#end if #end for set_samp_rate(\$samp_rate) #for $n in range($max_nchan) set_center_freq(\$center_freq$(n), $n) set_gain(\$gain$(n), $n) set_antenna(\$ant$(n), $n) set_bandwidth(\$bw$(n), $n) #end for Input Type type enum Device Addr dev_addr addr0=192.168.10.2, addr1=192.168.10.3 string \#if \$dev_addr() none \#else part \#end if Sync sync sync enum \#if \$sync() then 'none' else 'part'# Num Mboards num_mboards 2 int #for $m in range(1, $max_mboards+1) #end for #for $m in range($max_mboards) Mb$(m): Subdev Spec sd_spec$(m) string \#if not \$num_mboards() > $m all \#elif \$sd_spec$(m)() none \#else part \#end if #end for Num Channels nchan 2 int #for $n in range(1, $max_nchan+1) #end for Samp Rate (Sps) samp_rate samp_rate real $params $max_nchan >= \$nchan \$nchan > 0 $max_mboards >= \$num_mboards \$num_mboards > 0 \$nchan >= \$num_mboards <$sourk> $direction \$type \$type.vlen \$nchan The UHD Multi USRP $sourk.title() Block: Device Address: The device address is a delimited string used to locate UHD devices on your system. \\ Use the device address to specify a list of devices. USRP2 Example: addr0=192.168.10.2, addr1=192.168.10.3 Num Motherboards: Selects the number of USRP motherboards in this multi-USRP configuration. Subdevice specification: Each motherboard should have its own subdevice specification \\ and all subdevice specifications should be the same length. \\ Select the subdevice or subdevices for each channel using a markup string. \\ The markup string consists of a list of dboard_slot:subdev_name pairs (one pair per channel). \\ If left blank, the UHD will try to select the first subdevice on your system. \\ See the application notes for further details. Single channel example: :AB Dual channel example: :A :B Num Channels: Selects the total number of channels in this multi-USRP configuration. Ex: 4 motherboards with 2 channels per board = 8 channels total Sample rate: The sample rate is the number of samples per second input by this block. \\ The UHD device driver will try its best to match the requested sample rate. \\ If the requested rate is not possible, the UHD block will print an error at runtime. Center frequency: The center frequency is the overall frequency of the RF chain. \\ For greater control of how the UHD tunes elements in the RF chain, \\ pass a tune_request object rather than a simple target frequency. Tuning with an LO offset example: uhd.tune_request(freq, lo_off) Antenna: For subdevices with only one antenna, this may be left blank. \\ Otherwise, the user should specify one of the possible antenna choices. \\ See the daughterboard application notes for the possible antenna choices. Bandwidth: To use the default bandwidth filter setting, this should be zero. \\ Only certain subdevices have configurable bandwidth filters. \\ See the daughterboard application notes for possible configurations. """ PARAMS_TMPL = """ Ch$(n): Center Freq (Hz) center_freq$(n) 0 real \#if \$nchan() > $n then 'none' else 'all'# Ch$(n): Gain (dB) gain$(n) 0 real \#if \$nchan() > $n then 'none' else 'all'# Ch$(n): Antenna ant$(n) string \#if not \$nchan() > $n all \#elif \$ant$(n)() none \#else part \#end if Ch$(n): Bandwidth (Hz) bw$(n) 0 real \#if not \$nchan() > $n all \#elif \$bw$(n)() none \#else part \#end if """ def parse_tmpl(_tmpl, **kwargs): from Cheetah import Template return str(Template.Template(_tmpl, kwargs)) max_num_mboards = 4 max_num_channels = max_num_mboards*4 if __name__ == '__main__': import sys for file in sys.argv[1:]: if 'source' in file: sourk = 'source' direction = 'out' elif 'sink' in file: sourk = 'sink' direction = 'in' else: raise Exception, 'is %s a source or sink?'%file params = ''.join([parse_tmpl(PARAMS_TMPL, n=n) for n in range(max_num_channels)]) open(file, 'w').write(parse_tmpl(MAIN_TMPL, max_nchan=max_num_channels, max_mboards=max_num_mboards, params=params, sourk=sourk, direction=direction, ))