mirror of
https://github.com/fairwaves/UHD-Fairwaves.git
synced 2025-11-18 12:22:56 +00:00
218 lines
8.1 KiB
C++
218 lines
8.1 KiB
C++
//
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// Copyright 2010 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/paths.hpp>
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#include <uhd/property_tree.hpp>
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#include <uhd/usrp/multi_usrp.hpp>
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#include <uhd/usrp/dboard_eeprom.hpp>
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#include <boost/filesystem.hpp>
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#include <iostream>
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#include <vector>
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#include <complex>
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#include <cmath>
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#include <fstream>
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namespace fs = boost::filesystem;
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struct result_t{double freq, real_corr, imag_corr, best, delta;};
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typedef std::complex<float> samp_type;
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/***********************************************************************
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* Constants
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**********************************************************************/
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static const double tau = 6.28318531;
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static const size_t wave_table_len = 8192;
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static const size_t num_search_steps = 5;
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static const size_t num_search_iters = 7;
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static const double default_freq_step = 7.3e6;
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static const size_t default_num_samps = 10000;
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/***********************************************************************
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* Set standard defaults for devices
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**********************************************************************/
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static inline void set_optimum_defaults(uhd::usrp::multi_usrp::sptr usrp){
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uhd::property_tree::sptr tree = usrp->get_device()->get_tree();
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const uhd::fs_path mb_path = "/mboards/0";
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const std::string mb_name = tree->access<std::string>(mb_path / "name").get();
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if (mb_name.find("USRP2") != std::string::npos or mb_name.find("N200") != std::string::npos or mb_name.find("N210") != std::string::npos){
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usrp->set_tx_rate(12.5e6);
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usrp->set_rx_rate(12.5e6);
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}
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else if (mb_name.find("B100") != std::string::npos){
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usrp->set_tx_rate(4e6);
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usrp->set_rx_rate(4e6);
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}
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else if (mb_name.find("E100") != std::string::npos or mb_name.find("E110") != std::string::npos){
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usrp->set_tx_rate(4e6);
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usrp->set_rx_rate(8e6);
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}
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else{
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throw std::runtime_error("self-calibration is not supported for this hardware");
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}
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const uhd::fs_path tx_fe_path = "/mboards/0/dboards/A/tx_frontends/0";
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const std::string tx_name = tree->access<std::string>(tx_fe_path / "name").get();
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if (tx_name.find("WBX") != std::string::npos or tx_name.find("SBX") != std::string::npos){
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usrp->set_tx_gain(0);
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}
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else{
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throw std::runtime_error("self-calibration is not supported for this hardware");
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}
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const uhd::fs_path rx_fe_path = "/mboards/0/dboards/A/tx_frontends/0";
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const std::string rx_name = tree->access<std::string>(rx_fe_path / "name").get();
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if (rx_name.find("WBX") != std::string::npos or rx_name.find("SBX") != std::string::npos){
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usrp->set_rx_gain(25);
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}
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else{
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throw std::runtime_error("self-calibration is not supported for this hardware");
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}
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}
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/***********************************************************************
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* Sinusoid wave table
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**********************************************************************/
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class wave_table{
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public:
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wave_table(const double ampl){
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_table.resize(wave_table_len);
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for (size_t i = 0; i < wave_table_len; i++){
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_table[i] = samp_type(std::polar(ampl, (tau*i)/wave_table_len));
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}
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}
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inline samp_type operator()(const size_t index) const{
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return _table[index % wave_table_len];
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}
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private:
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std::vector<samp_type > _table;
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};
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/***********************************************************************
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* Compute power of a tone
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**********************************************************************/
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static inline double compute_tone_dbrms(
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const std::vector<samp_type > &samples,
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const double freq //freq is fractional
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){
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//shift the samples so the tone at freq is down at DC
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//and average the samples to measure the DC component
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samp_type average = 0;
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for (size_t i = 0; i < samples.size(); i++){
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average += samp_type(std::polar(1.0, -freq*tau*i)) * samples[i];
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}
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return 20*std::log10(std::abs(average/float(samples.size())));
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}
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/***********************************************************************
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* Write a dat file
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**********************************************************************/
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static inline void write_samples_to_file(
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const std::vector<samp_type > &samples, const std::string &file
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){
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std::ofstream outfile(file.c_str(), std::ofstream::binary);
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outfile.write((const char*)&samples.front(), samples.size()*sizeof(samp_type));
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outfile.close();
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}
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/***********************************************************************
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* Store data to file
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**********************************************************************/
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static void store_results(
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uhd::usrp::multi_usrp::sptr usrp,
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const std::vector<result_t> &results,
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const std::string &XX,
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const std::string &xx,
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const std::string &what
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){
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//extract eeprom serial
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uhd::property_tree::sptr tree = usrp->get_device()->get_tree();
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const uhd::fs_path db_path = "/mboards/0/dboards/A/" + xx + "_eeprom";
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const uhd::usrp::dboard_eeprom_t db_eeprom = tree->access<uhd::usrp::dboard_eeprom_t>(db_path).get();
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if (db_eeprom.serial.empty()) throw std::runtime_error(XX + " dboard has empty serial!");
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//make the calibration file path
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fs::path cal_data_path = fs::path(uhd::get_app_path()) / ".uhd";
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fs::create_directory(cal_data_path);
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cal_data_path = cal_data_path / "cal";
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fs::create_directory(cal_data_path);
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cal_data_path = cal_data_path / str(boost::format("%s_%s_cal_v0.1_%s.csv") % xx % what % db_eeprom.serial);
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if (fs::exists(cal_data_path)){
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fs::rename(cal_data_path, cal_data_path.string() + str(boost::format(".%d") % time(NULL)));
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}
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//fill the calibration file
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std::ofstream cal_data(cal_data_path.string().c_str());
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cal_data << boost::format("name, %s Frontend Calibration\n") % XX;
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cal_data << boost::format("serial, %s\n") % db_eeprom.serial;
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cal_data << boost::format("timestamp, %d\n") % time(NULL);
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cal_data << boost::format("version, 0, 1\n");
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cal_data << boost::format("DATA STARTS HERE\n");
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cal_data << "lo_frequency, correction_real, correction_imag, measured, delta\n";
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for (size_t i = 0; i < results.size(); i++){
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cal_data
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<< results[i].freq << ", "
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<< results[i].real_corr << ", "
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<< results[i].imag_corr << ", "
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<< results[i].best << ", "
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<< results[i].delta << "\n"
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;
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}
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std::cout << "wrote cal data to " << cal_data_path << std::endl;
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}
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/***********************************************************************
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* Data capture routine
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**********************************************************************/
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static void capture_samples(
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uhd::usrp::multi_usrp::sptr usrp,
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uhd::rx_streamer::sptr rx_stream,
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std::vector<samp_type > &buff,
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const size_t nsamps_requested
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){
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buff.resize(nsamps_requested);
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uhd::rx_metadata_t md;
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uhd::stream_cmd_t stream_cmd(uhd::stream_cmd_t::STREAM_MODE_NUM_SAMPS_AND_DONE);
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stream_cmd.num_samps = buff.size();
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stream_cmd.stream_now = true;
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usrp->issue_stream_cmd(stream_cmd);
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const size_t num_rx_samps = rx_stream->recv(&buff.front(), buff.size(), md);
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//validate the received data
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if (md.error_code != uhd::rx_metadata_t::ERROR_CODE_NONE){
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throw std::runtime_error(str(boost::format(
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"Unexpected error code 0x%x"
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) % md.error_code));
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}
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//we can live if all the data didnt come in
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if (num_rx_samps > buff.size()/2){
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buff.resize(num_rx_samps);
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return;
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}
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if (num_rx_samps != buff.size()){
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throw std::runtime_error("did not get all the samples requested");
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}
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}
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