mirror of
https://github.com/saymrwulf/uhd.git
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185 lines
7.6 KiB
C++
185 lines
7.6 KiB
C++
//
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// Copyright 2011 Ettus Research LLC
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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 3 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
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//
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#include <uhd/utils/thread_priority.hpp>
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#include <uhd/utils/safe_main.hpp>
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#include <uhd/usrp/multi_usrp.hpp>
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#include <boost/program_options.hpp>
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#include <boost/format.hpp>
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#include <boost/thread.hpp>
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#include <iostream>
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#include <fstream>
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#include <complex>
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namespace po = boost::program_options;
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template<typename samp_type> void send_from_file(
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uhd::usrp::multi_usrp::sptr usrp,
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const std::string &cpu_format,
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const std::string &file,
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size_t samps_per_buff
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){
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//create a transmit streamer
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uhd::stream_args_t stream_args(cpu_format);
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uhd::tx_streamer::sptr tx_stream = usrp->get_tx_stream(stream_args);
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uhd::tx_metadata_t md;
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md.start_of_burst = false;
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md.end_of_burst = false;
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std::vector<samp_type> buff(samps_per_buff);
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std::ifstream infile(file.c_str(), std::ifstream::binary);
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//loop until the entire file has been read
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while(not md.end_of_burst){
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infile.read((char*)&buff.front(), buff.size()*sizeof(samp_type));
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size_t num_tx_samps = infile.gcount()/sizeof(samp_type);
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md.end_of_burst = infile.eof();
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tx_stream->send(&buff.front(), num_tx_samps, md);
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}
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infile.close();
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}
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int UHD_SAFE_MAIN(int argc, char *argv[]){
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uhd::set_thread_priority_safe();
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//variables to be set by po
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std::string args, file, type, ant, subdev, ref;
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size_t spb;
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double rate, freq, gain, bw;
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//setup the program options
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po::options_description desc("Allowed options");
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desc.add_options()
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("help", "help message")
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("args", po::value<std::string>(&args)->default_value(""), "multi uhd device address args")
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("file", po::value<std::string>(&file)->default_value("usrp_samples.dat"), "name of the file to read binary samples from")
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("type", po::value<std::string>(&type)->default_value("short"), "sample type: double, float, or short")
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("spb", po::value<size_t>(&spb)->default_value(10000), "samples per buffer")
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("rate", po::value<double>(&rate), "rate of outgoing samples")
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("freq", po::value<double>(&freq), "RF center frequency in Hz")
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("gain", po::value<double>(&gain), "gain for the RF chain")
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("ant", po::value<std::string>(&ant), "daughterboard antenna selection")
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("subdev", po::value<std::string>(&subdev), "daughterboard subdevice specification")
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("bw", po::value<double>(&bw), "daughterboard IF filter bandwidth in Hz")
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("ref", po::value<std::string>(&ref)->default_value("INTERNAL"), "waveform type (INTERNAL, EXTERNAL, MIMO)")
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;
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po::variables_map vm;
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po::store(po::parse_command_line(argc, argv, desc), vm);
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po::notify(vm);
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//print the help message
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if (vm.count("help")){
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std::cout << boost::format("UHD TX samples from file %s") % desc << std::endl;
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return ~0;
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}
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//create a usrp device
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std::cout << std::endl;
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std::cout << boost::format("Creating the usrp device with: %s...") % args << std::endl;
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uhd::usrp::multi_usrp::sptr usrp = uhd::usrp::multi_usrp::make(args);
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//Lock mboard clocks
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if (ref == "MIMO") {
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uhd::clock_config_t clock_config;
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clock_config.ref_source = uhd::clock_config_t::REF_MIMO;
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clock_config.pps_source = uhd::clock_config_t::PPS_MIMO;
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usrp->set_clock_config(clock_config, 0);
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}
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else if (ref == "EXTERNAL") {
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usrp->set_clock_config(uhd::clock_config_t::external(), 0);
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}
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else if (ref == "INTERNAL") {
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usrp->set_clock_config(uhd::clock_config_t::internal(), 0);
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}
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//always select the subdevice first, the channel mapping affects the other settings
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if (vm.count("subdev")) usrp->set_tx_subdev_spec(subdev);
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std::cout << boost::format("Using Device: %s") % usrp->get_pp_string() << std::endl;
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//set the sample rate
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if (not vm.count("rate")){
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std::cerr << "Please specify the sample rate with --rate" << std::endl;
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return ~0;
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}
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std::cout << boost::format("Setting TX Rate: %f Msps...") % (rate/1e6) << std::endl;
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usrp->set_tx_rate(rate);
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std::cout << boost::format("Actual TX Rate: %f Msps...") % (usrp->get_tx_rate()/1e6) << std::endl << std::endl;
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//set the center frequency
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if (not vm.count("freq")){
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std::cerr << "Please specify the center frequency with --freq" << std::endl;
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return ~0;
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}
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std::cout << boost::format("Setting TX Freq: %f MHz...") % (freq/1e6) << std::endl;
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usrp->set_tx_freq(freq);
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std::cout << boost::format("Actual TX Freq: %f MHz...") % (usrp->get_tx_freq()/1e6) << std::endl << std::endl;
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//set the rf gain
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if (vm.count("gain")){
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std::cout << boost::format("Setting TX Gain: %f dB...") % gain << std::endl;
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usrp->set_tx_gain(gain);
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std::cout << boost::format("Actual TX Gain: %f dB...") % usrp->get_tx_gain() << std::endl << std::endl;
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}
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//set the IF filter bandwidth
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if (vm.count("bw")){
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std::cout << boost::format("Setting TX Bandwidth: %f MHz...") % bw << std::endl;
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usrp->set_tx_bandwidth(bw);
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std::cout << boost::format("Actual TX Bandwidth: %f MHz...") % usrp->get_tx_bandwidth() << std::endl << std::endl;
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}
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//set the antenna
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if (vm.count("ant")) usrp->set_tx_antenna(ant);
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boost::this_thread::sleep(boost::posix_time::seconds(1)); //allow for some setup time
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//Check Ref and LO Lock detect
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std::vector<std::string> sensor_names;
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sensor_names = usrp->get_tx_sensor_names(0);
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if (std::find(sensor_names.begin(), sensor_names.end(), "lo_locked") != sensor_names.end()) {
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uhd::sensor_value_t lo_locked = usrp->get_tx_sensor("lo_locked",0);
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std::cout << boost::format("Checking TX: %s ...") % lo_locked.to_pp_string() << std::endl;
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UHD_ASSERT_THROW(lo_locked.to_bool());
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}
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sensor_names = usrp->get_mboard_sensor_names(0);
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if ((ref == "MIMO") and (std::find(sensor_names.begin(), sensor_names.end(), "mimo_locked") != sensor_names.end())) {
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uhd::sensor_value_t mimo_locked = usrp->get_mboard_sensor("mimo_locked",0);
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std::cout << boost::format("Checking TX: %s ...") % mimo_locked.to_pp_string() << std::endl;
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UHD_ASSERT_THROW(mimo_locked.to_bool());
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}
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if ((ref == "EXTERNAL") and (std::find(sensor_names.begin(), sensor_names.end(), "ref_locked") != sensor_names.end())) {
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uhd::sensor_value_t ref_locked = usrp->get_mboard_sensor("ref_locked",0);
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std::cout << boost::format("Checking TX: %s ...") % ref_locked.to_pp_string() << std::endl;
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UHD_ASSERT_THROW(ref_locked.to_bool());
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}
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//send from file
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if (type == "double") send_from_file<std::complex<double> >(usrp, "fc64", file, spb);
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else if (type == "float") send_from_file<std::complex<float> >(usrp, "fc32", file, spb);
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else if (type == "short") send_from_file<std::complex<short> >(usrp, "sc16", file, spb);
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else throw std::runtime_error("Unknown type " + type);
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//finished
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std::cout << std::endl << "Done!" << std::endl << std::endl;
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return 0;
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}
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