mirror of https://github.com/gnss-sdr/gnss-sdr
277 lines
11 KiB
C++
277 lines
11 KiB
C++
/*!
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* \file gps_l5_dll_pll_tracking.cc
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* \brief Interface of an adapter of a DLL+PLL tracking loop block
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* for GPS L5 to a TrackingInterface
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* \author Javier Arribas, 2017. jarribas(at)cttc.es
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*
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* Code DLL + carrier PLL according to the algorithms described in:
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* K.Borre, D.M.Akos, N.Bertelsen, P.Rinder, and S.H.Jensen,
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* A Software-Defined GPS and Galileo Receiver. A Single-Frequency
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* Approach, Birkhauser, 2007
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*
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* -------------------------------------------------------------------------
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*
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* Copyright (C) 2010-2015 (see AUTHORS file for a list of contributors)
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*
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* GNSS-SDR is a software defined Global Navigation
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* Satellite Systems receiver
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*
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* This file is part of GNSS-SDR.
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*
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* GNSS-SDR 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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* GNSS-SDR 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 GNSS-SDR. If not, see <http://www.gnu.org/licenses/>.
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*
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* -------------------------------------------------------------------------
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*/
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#include "gps_l5_dll_pll_tracking_fpga.h"
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#include "GPS_L5.h"
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#include "configuration_interface.h"
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#include "display.h"
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#include "gnss_sdr_flags.h"
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#include "gps_l5_signal.h"
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#include <glog/logging.h>
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#define NUM_PRNs 32
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using google::LogMessage;
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void GpsL5DllPllTrackingFpga::stop_tracking()
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{
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}
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GpsL5DllPllTrackingFpga::GpsL5DllPllTrackingFpga(
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ConfigurationInterface *configuration, const std::string& role,
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unsigned int in_streams, unsigned int out_streams) : role_(role), in_streams_(in_streams), out_streams_(out_streams)
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{
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//printf("L5 TRK CLASS CREATED\n");
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//dllpllconf_t trk_param;
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Dll_Pll_Conf_Fpga trk_param_fpga = Dll_Pll_Conf_Fpga();
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DLOG(INFO) << "role " << role;
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//################# CONFIGURATION PARAMETERS ########################
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//std::string default_item_type = "gr_complex";
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//std::string item_type = configuration->property(role + ".item_type", default_item_type);
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int fs_in_deprecated = configuration->property("GNSS-SDR.internal_fs_hz", 2048000);
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int fs_in = configuration->property("GNSS-SDR.internal_fs_sps", fs_in_deprecated);
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trk_param_fpga.fs_in = fs_in;
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bool dump = configuration->property(role + ".dump", false);
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trk_param_fpga.dump = dump;
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std::string default_dump_filename = "./track_ch";
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std::string dump_filename = configuration->property(role + ".dump_filename", default_dump_filename);
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trk_param_fpga.dump_filename = dump_filename;
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bool dump_mat = configuration->property(role + ".dump_mat", true);
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trk_param_fpga.dump_mat = dump_mat;
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float pll_bw_hz = configuration->property(role + ".pll_bw_hz", 50.0);
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if (FLAGS_pll_bw_hz != 0.0) pll_bw_hz = static_cast<float>(FLAGS_pll_bw_hz);
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trk_param_fpga.pll_bw_hz = pll_bw_hz;
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float dll_bw_hz = configuration->property(role + ".dll_bw_hz", 2.0);
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if (FLAGS_dll_bw_hz != 0.0) dll_bw_hz = static_cast<float>(FLAGS_dll_bw_hz);
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trk_param_fpga.dll_bw_hz = dll_bw_hz;
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float pll_bw_narrow_hz = configuration->property(role + ".pll_bw_narrow_hz", 2.0);
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trk_param_fpga.pll_bw_narrow_hz = pll_bw_narrow_hz;
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float dll_bw_narrow_hz = configuration->property(role + ".dll_bw_narrow_hz", 0.25);
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trk_param_fpga.dll_bw_narrow_hz = dll_bw_narrow_hz;
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float early_late_space_chips = configuration->property(role + ".early_late_space_chips", 0.5);
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trk_param_fpga.early_late_space_chips = early_late_space_chips;
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int vector_length = std::round(static_cast<double>(fs_in) / (static_cast<double>(GPS_L5i_CODE_RATE_HZ) / static_cast<double>(GPS_L5i_CODE_LENGTH_CHIPS)));
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trk_param_fpga.vector_length = vector_length;
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int extend_correlation_symbols = configuration->property(role + ".extend_correlation_symbols", 1);
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float early_late_space_narrow_chips = configuration->property(role + ".early_late_space_narrow_chips", 0.15);
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trk_param_fpga.early_late_space_narrow_chips = early_late_space_narrow_chips;
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bool track_pilot = configuration->property(role + ".track_pilot", false);
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if (extend_correlation_symbols < 1)
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{
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extend_correlation_symbols = 1;
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std::cout << TEXT_RED << "WARNING: GPS L5. extend_correlation_symbols must be bigger than 0. Coherent integration has been set to 1 symbol (1 ms)" << TEXT_RESET << std::endl;
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}
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else if (!track_pilot and extend_correlation_symbols > GPS_L5i_NH_CODE_LENGTH)
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{
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extend_correlation_symbols = GPS_L5i_NH_CODE_LENGTH;
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std::cout << TEXT_RED << "WARNING: GPS L5. extend_correlation_symbols must be lower than 11 when tracking the data component. Coherent integration has been set to 10 symbols (10 ms)" << TEXT_RESET << std::endl;
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}
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if ((extend_correlation_symbols > 1) and (pll_bw_narrow_hz > pll_bw_hz or dll_bw_narrow_hz > dll_bw_hz))
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{
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std::cout << TEXT_RED << "WARNING: GPS L5. PLL or DLL narrow tracking bandwidth is higher than wide tracking one" << TEXT_RESET << std::endl;
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}
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trk_param_fpga.extend_correlation_symbols = extend_correlation_symbols;
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trk_param_fpga.track_pilot = track_pilot;
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d_track_pilot = track_pilot;
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trk_param_fpga.very_early_late_space_chips = 0.0;
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trk_param_fpga.very_early_late_space_narrow_chips = 0.0;
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trk_param_fpga.system = 'G';
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char sig_[3] = "L5";
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std::memcpy(trk_param_fpga.signal, sig_, 3);
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int cn0_samples = configuration->property(role + ".cn0_samples", 20);
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if (FLAGS_cn0_samples != 20) cn0_samples = FLAGS_cn0_samples;
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trk_param_fpga.cn0_samples = cn0_samples;
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int cn0_min = configuration->property(role + ".cn0_min", 25);
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if (FLAGS_cn0_min != 25) cn0_min = FLAGS_cn0_min;
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trk_param_fpga.cn0_min = cn0_min;
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int max_lock_fail = configuration->property(role + ".max_lock_fail", 50);
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if (FLAGS_max_lock_fail != 50) max_lock_fail = FLAGS_max_lock_fail;
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trk_param_fpga.max_lock_fail = max_lock_fail;
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double carrier_lock_th = configuration->property(role + ".carrier_lock_th", 0.85);
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if (FLAGS_carrier_lock_th != 0.85) carrier_lock_th = FLAGS_carrier_lock_th;
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trk_param_fpga.carrier_lock_th = carrier_lock_th;
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// FPGA configuration parameters
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std::string default_device_name = "/dev/uio";
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std::string device_name = configuration->property(role + ".devicename", default_device_name);
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trk_param_fpga.device_name = device_name;
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unsigned int device_base = configuration->property(role + ".device_base", 1);
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trk_param_fpga.device_base = device_base;
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//unsigned int multicorr_type = configuration->property(role + ".multicorr_type", 0);
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trk_param_fpga.multicorr_type = 0; //multicorr_type : 0 -> 3 correlators, 1 -> 5 correlators
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//################# PRE-COMPUTE ALL THE CODES #################
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unsigned int code_samples_per_chip = 1;
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auto code_length_chips = static_cast<unsigned int>(GPS_L5i_CODE_LENGTH_CHIPS);
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//printf("TRK code_length_chips = %d\n", code_length_chips);
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float *tracking_code;
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float *data_code;
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tracking_code = static_cast<float *>(volk_gnsssdr_malloc(code_length_chips * sizeof(float), volk_gnsssdr_get_alignment()));
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if (trk_param_fpga.track_pilot)
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{
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data_code = static_cast<float *>(volk_gnsssdr_malloc(code_length_chips * sizeof(float), volk_gnsssdr_get_alignment()));
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}
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d_ca_codes = static_cast<int *>(volk_gnsssdr_malloc(static_cast<int>(code_length_chips * NUM_PRNs) * sizeof(int), volk_gnsssdr_get_alignment()));
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if (trk_param_fpga.track_pilot)
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{
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d_data_codes = static_cast<int *>(volk_gnsssdr_malloc((static_cast<unsigned int>(code_length_chips)) * NUM_PRNs * sizeof(int), volk_gnsssdr_get_alignment()));
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}
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//printf("start \n");
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for (unsigned int PRN = 1; PRN <= NUM_PRNs; PRN++)
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{
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if (track_pilot)
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{
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gps_l5q_code_gen_float(tracking_code, PRN);
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gps_l5i_code_gen_float(data_code, PRN);
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for (unsigned int s = 0; s < code_length_chips; s++)
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{
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d_ca_codes[static_cast<int>(code_length_chips) * (PRN - 1) + s] = static_cast<int>(tracking_code[s]);
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d_data_codes[static_cast<int>(code_length_chips) * (PRN - 1) + s] = static_cast<int>(data_code[s]);
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//printf("%f %d | ", data_codes_f[s], d_data_codes[static_cast<int>(Galileo_E1_B_CODE_LENGTH_CHIPS)* 2 * (PRN - 1) + s]);
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}
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}
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else
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{
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gps_l5i_code_gen_float(tracking_code, PRN);
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for (unsigned int s = 0; s < code_length_chips; s++)
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{
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d_ca_codes[static_cast<int>(code_length_chips) * (PRN - 1) + s] = static_cast<int>(data_code[s]);
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//printf("%f %d | ", ca_codes_f[s], d_ca_codes[static_cast<int>(Galileo_E1_B_CODE_LENGTH_CHIPS)* 2 * (PRN - 1) + s]);
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}
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}
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}
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//printf("end \n");
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delete[] tracking_code;
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if (trk_param_fpga.track_pilot)
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{
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delete[] data_code;
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}
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trk_param_fpga.ca_codes = d_ca_codes;
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trk_param_fpga.data_codes = d_data_codes;
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trk_param_fpga.code_length_chips = code_length_chips;
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trk_param_fpga.code_samples_per_chip = code_samples_per_chip; // 2 sample per chip
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//################# MAKE TRACKING GNURadio object ###################
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// if (item_type.compare("gr_complex") == 0)
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// {
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// item_size_ = sizeof(gr_complex);
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// tracking_ = dll_pll_veml_make_tracking(trk_param_fpga);
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// }
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// else
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// {
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// item_size_ = sizeof(gr_complex);
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// LOG(WARNING) << item_type << " unknown tracking item type.";
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// }
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//printf("call \n");
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tracking_fpga_sc = dll_pll_veml_make_tracking_fpga(trk_param_fpga);
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//printf("end2 \n");
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channel_ = 0;
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DLOG(INFO) << "tracking(" << tracking_fpga_sc->unique_id() << ")";
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}
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GpsL5DllPllTrackingFpga::~GpsL5DllPllTrackingFpga()
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{
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delete[] d_ca_codes;
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if (d_track_pilot)
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{
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delete[] d_data_codes;
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}
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}
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void GpsL5DllPllTrackingFpga::start_tracking()
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{
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tracking_fpga_sc->start_tracking();
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}
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/*
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* Set tracking channel unique ID
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*/
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void GpsL5DllPllTrackingFpga::set_channel(unsigned int channel)
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{
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channel_ = channel;
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tracking_fpga_sc->set_channel(channel);
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}
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void GpsL5DllPllTrackingFpga::set_gnss_synchro(Gnss_Synchro *p_gnss_synchro)
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{
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tracking_fpga_sc->set_gnss_synchro(p_gnss_synchro);
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}
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void GpsL5DllPllTrackingFpga::connect(gr::top_block_sptr top_block)
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{
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if (top_block)
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{ /* top_block is not null */
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};
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//nothing to connect, now the tracking uses gr_sync_decimator
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}
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void GpsL5DllPllTrackingFpga::disconnect(gr::top_block_sptr top_block)
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{
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if (top_block)
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{ /* top_block is not null */
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};
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//nothing to disconnect, now the tracking uses gr_sync_decimator
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}
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gr::basic_block_sptr GpsL5DllPllTrackingFpga::get_left_block()
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{
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return tracking_fpga_sc;
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}
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gr::basic_block_sptr GpsL5DllPllTrackingFpga::get_right_block()
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{
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return tracking_fpga_sc;
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}
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