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https://github.com/gnss-sdr/gnss-sdr
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Filling the Signal field in all cases
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@ -129,11 +129,11 @@ galileo_e1_dll_pll_veml_tracking_cc::galileo_e1_dll_pll_veml_tracking_cc(
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// Initialization of local code replica
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// Get space for a vector with the sinboc(1,1) replica sampled 2x/chip
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d_ca_code = static_cast<gr_complex*>(volk_malloc((2*Galileo_E1_B_CODE_LENGTH_CHIPS) * sizeof(gr_complex), volk_get_alignment()));
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d_ca_code = static_cast<gr_complex*>(volk_malloc((2 * Galileo_E1_B_CODE_LENGTH_CHIPS) * sizeof(gr_complex), volk_get_alignment()));
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// correlator outputs (scalar)
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d_n_correlator_taps = 5; // Very-Early, Early, Prompt, Late, Very-Late
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d_correlator_outs = static_cast<gr_complex*>(volk_malloc(d_n_correlator_taps*sizeof(gr_complex), volk_get_alignment()));
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d_correlator_outs = static_cast<gr_complex*>(volk_malloc(d_n_correlator_taps * sizeof(gr_complex), volk_get_alignment()));
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for (int n = 0; n < d_n_correlator_taps; n++)
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{
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d_correlator_outs[n] = gr_complex(0,0);
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@ -153,7 +153,7 @@ galileo_e1_dll_pll_veml_tracking_cc::galileo_e1_dll_pll_veml_tracking_cc(
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d_local_code_shift_chips[3] = d_very_early_late_spc_chips;
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d_local_code_shift_chips[4] = d_very_early_late_spc_chips * 2.0;
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d_correlation_length_samples=d_vector_length;
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d_correlation_length_samples = d_vector_length;
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multicorrelator_cpu.init(2 * d_correlation_length_samples, d_n_correlator_taps);
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@ -204,7 +204,7 @@ void galileo_e1_dll_pll_veml_tracking_cc::start_tracking()
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{
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d_acq_code_phase_samples = d_acquisition_gnss_synchro->Acq_delay_samples;
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d_acq_carrier_doppler_hz = d_acquisition_gnss_synchro->Acq_doppler_hz;
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d_acq_sample_stamp = d_acquisition_gnss_synchro->Acq_samplestamp_samples;
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d_acq_sample_stamp = d_acquisition_gnss_synchro->Acq_samplestamp_samples;
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// DLL/PLL filter initialization
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d_carrier_loop_filter.initialize(); // initialize the carrier filter
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@ -218,7 +218,7 @@ void galileo_e1_dll_pll_veml_tracking_cc::start_tracking()
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2 * Galileo_E1_CODE_CHIP_RATE_HZ,
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0);
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multicorrelator_cpu.set_local_code_and_taps(static_cast<int>(2*Galileo_E1_B_CODE_LENGTH_CHIPS), d_ca_code, d_local_code_shift_chips);
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multicorrelator_cpu.set_local_code_and_taps(static_cast<int>(2 * Galileo_E1_B_CODE_LENGTH_CHIPS), d_ca_code, d_local_code_shift_chips);
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for (int n = 0; n < d_n_correlator_taps; n++)
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{
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d_correlator_outs[n] = gr_complex(0,0);
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@ -274,7 +274,7 @@ int galileo_e1_dll_pll_veml_tracking_cc::general_work (int noutput_items __attri
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const gr_complex* in = (gr_complex*) input_items[0];
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Gnss_Synchro **out = (Gnss_Synchro **) &output_items[0];
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// GNSS_SYNCHRO OBJECT to interchange data between tracking->telemetry_decoder
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Gnss_Synchro current_synchro_data;
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Gnss_Synchro current_synchro_data = Gnss_Synchro();
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if (d_enable_tracking == true)
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{
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@ -407,7 +407,7 @@ int galileo_e1_dll_pll_veml_tracking_cc::general_work (int noutput_items __attri
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current_synchro_data.Carrier_Doppler_hz = d_carrier_doppler_hz;
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current_synchro_data.CN0_dB_hz = d_CN0_SNV_dB_Hz;
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current_synchro_data.Flag_valid_symbol_output = true;
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current_synchro_data.correlation_length_ms=4;
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current_synchro_data.correlation_length_ms = 4;
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}
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else
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@ -420,6 +420,9 @@ int galileo_e1_dll_pll_veml_tracking_cc::general_work (int noutput_items __attri
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}
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//assign the GNURadio block output data
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current_synchro_data.System = {'E'};
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std::string str_aux = "1B";
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const char * str = str_aux.c_str(); // get a C style null terminated string
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std::memcpy((void*)current_synchro_data.Signal, str, 3);
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*out[0] = current_synchro_data;
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if(d_dump)
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@ -269,7 +269,7 @@ int Galileo_E1_Tcp_Connector_Tracking_cc::general_work (int noutput_items __attr
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tcp_packet_data tcp_data;
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// GNSS_SYNCHRO OBJECT to interchange data between tracking->telemetry_decoder
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Gnss_Synchro current_synchro_data;
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Gnss_Synchro current_synchro_data = Gnss_Synchro();
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// Block input data and block output stream pointers
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const gr_complex* in = (gr_complex*) input_items[0];
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Gnss_Synchro **out = (Gnss_Synchro **) &output_items[0];
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@ -433,7 +433,12 @@ int Galileo_E1_Tcp_Connector_Tracking_cc::general_work (int noutput_items __attr
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}
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//assign the GNURadio block output data
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current_synchro_data.System = {'E'};
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std::string str_aux = "1B";
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const char * str = str_aux.c_str(); // get a C style null terminated string
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std::memcpy((void*)current_synchro_data.Signal, str, 3);
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*out[0] = current_synchro_data;
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if(d_dump)
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{
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// MULTIPLEXED FILE RECORDING - Record results to file
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@ -310,7 +310,7 @@ int Gps_L1_Ca_Tcp_Connector_Tracking_cc::general_work (int noutput_items __attri
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tcp_packet_data tcp_data;
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// GNSS_SYNCHRO OBJECT to interchange data between tracking->telemetry_decoder
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Gnss_Synchro current_synchro_data;
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Gnss_Synchro current_synchro_data = Gnss_Synchro();
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// Block input data and block output stream pointers
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const gr_complex* in = (gr_complex*) input_items[0];
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Gnss_Synchro **out = (Gnss_Synchro **) &output_items[0];
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@ -486,7 +486,12 @@ int Gps_L1_Ca_Tcp_Connector_Tracking_cc::general_work (int noutput_items __attri
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//assign the GNURadio block output data
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current_synchro_data.System = {'G'};
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std::string str_aux = "1C";
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const char * str = str_aux.c_str(); // get a C style null terminated string
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std::memcpy((void*)current_synchro_data.Signal, str, 3);
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*out[0] = current_synchro_data;
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if(d_dump)
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{
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// MULTIPLEXED FILE RECORDING - Record results to file
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