Hi

   Thanks marcus. I am new to Gnu Radio and Python. I am working on USRP
N200 with RFX2400. I am trying to make digital-bert scripts to work for UHD.
I made some changes in the code but i am encoutering errors. The latest
error is shown below:


aravind@COE-CW85V91:~/gnuradio/gnuradio-examples/python/digital-bert$
./benchmark_tx1.py --tx-freq=2500M  -g 32 --ip=192.168.10.2
linux; GNU C++ version 4.4.5; Boost_104200; UHD_003.001.002-5239879

>>> gr_fir_ccf: using SSE
Modulation: 250k bits/sec
TX IF rate: 500k samples/sec
USRP interpolation: 256
DAC amplitude: 2000
-- Opening a USRP2/N-Series device...
-- Current recv frame size: 1472 bytes
-- Current send frame size: 1472 bytes

UHD Warning:
    The recv buffer could not be resized sufficiently.
    Target sock buff size: 50000000 bytes.
    Actual sock buff size: 131071 bytes.
    See the transport application notes on buffer resizing.
    Please run: sudo sysctl -w net.core.rmem_max=50000000

UHD Warning:
    The recv buffer could not be resized sufficiently.
    Target sock buff size: 50000000 bytes.
    Actual sock buff size: 131071 bytes.
    See the transport application notes on buffer resizing.
    Please run: sudo sysctl -w net.core.rmem_max=50000000
-- mboard0 is MIMO master

UHD Warning:
    Unable to set the thread priority. Performance may be negatively
affected.
    Please see the general application notes in the manual for instructions.
    EnvironmentError: OSError: error in pthread_setschedparam
Gain d'board: 32 dB
Actual center frequency 2.5G
UUterminate called after throwing an instance of
'boost::exception_detail::clone_impl<boost::exception_detail::error_info_injector<boost::math::rounding_error>
>'
  what():  Error in function boost::math::iround<d>(d): Value
7.3939377762685976e+134 can not be represented in the target integer type.
Aborted

any help or feedback will be appreciated.

Thanks
--Saketh


On Thu, Aug 4, 2011 at 1:28 PM, saketh kumar <m.sakethku...@gmail.com>wrote:

> Hi
>
>   I am trying to make digital-bert scripts work with USRP N200, RFX2400. I
> have changed my code a little bit. But it shows me an error saying "object
> has no attribute".
>
>
> aravind@COE-2X85V91:~/gnuradio/gnuradio-examples/python/digital-bert$
> ./benchmark_tx1.py -f 2500M
> linux; GNU C++ version 4.4.5; Boost_104200; UHD_003.001.002-ba0e3c8
>
> >>> gr_fir_ccf: using SSE
> Modulation: 250k bits/sec
> TX IF rate: 500k samples/sec
> USRP interpolation: 256
> DAC amplitude: 2000
> Traceback (most recent call last):
>   File "./benchmark_tx1.py", line 108, in <module>
>     tb = tx_bpsk_block(options)
>   File "./benchmark_tx1.py", line 52, in __init__
>     self._setup_usrp(options.ip,
>   File "/usr/local/lib/python2.6/dist-packages/gnuradio/gr/top_block.py",
> line 94, in __getattr__
>     return getattr(self._tb, name)
> AttributeError: 'gr_top_block_sptr' object has no attribute '_setup_usrp'
>
> Can anyone help me out, how to resolve this error ? Attached is my little
> modified code.
> --
> Saketh Kumar
>



-- 
Saketh Kumar
#!/usr/bin/env python
#
# Copyright 2008 Free Software Foundation, Inc.
#
# This file is part of GNU Radio
#
# GNU Radio 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, or (at your option)
# any later version.
#
# GNU Radio 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 GNU Radio; see the file COPYING.  If not, write to
# the Free Software Foundation, Inc., 51 Franklin Street,
# Boston, MA 02110-1301, USA.
#

from gnuradio import gr, eng_notation, uhd
from gnuradio.eng_option import eng_option
from optparse import OptionParser
from transmit_path import transmit_path
import sys


_dac_rate = 128e6

n2s = eng_notation.num_to_str

class tx_bpsk_block(gr.top_block):
    def __init__(self, options):    
        gr.top_block.__init__(self, "tx_mpsk")

        self._transmitter = transmit_path(options.sps,
                                          options.excess_bw,
                                          options.amplitude)

        if_rate = options.rate*options.sps
        interp = int(_dac_rate/if_rate)


        print "Modulation:", n2s(options.rate), "bits/sec"
        print "TX IF rate:", n2s(if_rate), "samples/sec"
        print "USRP interpolation:", interp
        print "DAC amplitude:", options.amplitude

        self._setup_usrp(options.ip,
                         interp,
                         options.gain,
                         options.tx_freq)
        
        self.connect(self._transmitter, self._usrp)

        
    def _setup_usrp(self,ip,interp, gain, tx_freq):
        self._usrp = uhd.usrp_sink(device_addr="",
                                   io_type=uhd.io_type.COMPLEX_FLOAT32,
                                   num_channels=1
                                  )
        
        #set Tx Gain
        self._usrp.set_gain(gain,0)
        print "Gain d'board:",(n2s(gain)),"dB" 
        
        #Tune to center frequency
        tr = self._usrp.set_center_freq(options.tx_freq, 0)

        if not (tr):
            print "Failed to tune to Tx frequency to %s" % 
(n2s(options.tx_freq))
        else:
            print "Actual center frequency",n2s(options.tx_freq)

        
def get_options():
    parser = OptionParser(option_class=eng_option)
    parser.add_option("--ip", 
"--device_addr",type="string",default="192.168.10.2",
                      help="device address[default=%default]")
    parser.add_option("-g", "--gain", type="eng_float", default=None,
                      help="set TX gain (default is midpoint)")
    parser.add_option("-f", "--tx-freq", type="eng_float", default=None,
                      help="set Tx frequency to FREQ", metavar="FREQ")
    parser.add_option("-a", "--amplitude", type="eng_float", default=2000,
                      help="set Tx amplitude (0-32767) (default=%default)")
    parser.add_option("-r", "--rate", type="eng_float", default=250e3,
                      help="Select modulation symbol rate (default=%default)")
    parser.add_option("", "--sps", type="int", default=2,
                      help="Select samples per symbol (default=%default)")
    parser.add_option("", "--excess-bw", type="eng_float", default=0.35,
                      help="Select RRC excess bandwidth (default=%default)")
                      
    (options, args) = parser.parse_args()
    if len(args) != 0:
        parser.print_help()
        sys.exit(1)
        
    if options.tx_freq == None:
        print "Must supply frequency as -f or --freq"
        sys.exit(1)

    return (options, args)

if __name__ == "__main__":
    (options, args) = get_options()
    
    tb = tx_bpsk_block(options)

    try:
        tb.run()
    except KeyboardInterrupt:
        pass
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