//
// Copyright 2010 Ettus Research LLC
//
// This program 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 of the License, or
// (at your option) any later version.
//
// This program 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, see .
//
#include
#include
#include
#include
#include //system time
#include
#include
#include
namespace po = boost::program_options;
int UHD_SAFE_MAIN(int argc, char *argv[]){
uhd::set_thread_priority_safe();
//variables to be set by po
std::string args;
size_t total_duration;
size_t samps_per_packet;
double tx_rate, freq;
float ampl;
//setup the program options
po::options_description desc("Allowed options");
desc.add_options()
("help", "help message")
("args", po::value(&args)->default_value(""), "simple uhd device address args")
("duration", po::value(&total_duration)->default_value(3), "number of seconds to transmit")
("spp", po::value(&samps_per_packet)->default_value(1000), "number of samples per packet")
("txrate", po::value(&tx_rate)->default_value(100e6/16), "rate of outgoing samples")
("freq", po::value(&freq)->default_value(0), "rf center frequency in Hz")
("ampl", po::value(&l)->default_value(float(0.3)), "amplitude of each sample")
("dilv", "specify to disable inner-loop verbose")
;
po::variables_map vm;
po::store(po::parse_command_line(argc, argv, desc), vm);
po::notify(vm);
//print the help message
if (vm.count("help")){
std::cout << boost::format("UHD TX Continuous Samples %s") % desc << std::endl;
return ~0;
}
bool verbose = vm.count("dilv") == 0;
//create a usrp device
std::cout << std::endl;
std::cout << boost::format("Creating the usrp device with: %s...") % args << std::endl;
uhd::usrp::simple_usrp::sptr sdev = uhd::usrp::simple_usrp::make(args);
uhd::device::sptr dev = sdev->get_device();
std::cout << boost::format("Using Device: %s") % sdev->get_pp_string() << std::endl;
//set properties on the device
std::cout << boost::format("Setting TX Rate: %f Msps...") % (tx_rate/1e6) << std::endl;
sdev->set_tx_rate(tx_rate);
std::cout << boost::format("Actual TX Rate: %f Msps...") % (sdev->get_tx_rate()/1e6) << std::endl;
sdev->set_tx_freq(freq);
//allocate data to send
std::vector > buff(samps_per_packet, std::complex(ampl, ampl));
//setup the metadata flags
uhd::tx_metadata_t md;
md.start_of_burst = true; //always SOB (good for continuous streaming)
md.end_of_burst = false;
//send the data in multiple packets
boost::system_time end_time(boost::get_system_time() + boost::posix_time::seconds(total_duration));
while(end_time > boost::get_system_time()){
//send samples per packet (driver fragments internally)
size_t num_tx_samps = dev->send(
&buff.front(), samps_per_packet, md,
uhd::io_type_t::COMPLEX_FLOAT32,
uhd::device::SEND_MODE_FULL_BUFF
);
if(verbose) std::cout << std::endl << boost::format("Sent %d samples") % num_tx_samps << std::endl;
}
//send a mini EOB packet
if(verbose) std::cout << std::endl << boost::format("Sending packet with end-of-burst") << std::endl;
md.start_of_burst = false;
md.end_of_burst = true;
dev->send(
NULL, 0, md,
uhd::io_type_t::COMPLEX_FLOAT32,
uhd::device::SEND_MODE_FULL_BUFF
);
//finished
std::cout << std::endl << "Done!" << std::endl << std::endl;
return 0;
}