mirror of
https://github.com/gnss-sdr/gnss-sdr
synced 2024-12-14 20:20:35 +00:00
Replace raw pointers by smart pointers. Remove delete
This commit is contained in:
parent
2cc06c8b63
commit
d72542861f
@ -145,10 +145,10 @@ galileo_e5a_noncoherentIQ_acquisition_caf_cc::galileo_e5a_noncoherentIQ_acquisit
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}
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -210,9 +210,6 @@ galileo_e5a_noncoherentIQ_acquisition_caf_cc::~galileo_e5a_noncoherentIQ_acquisi
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}
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}
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delete d_fft_if;
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delete d_ifft;
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try
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{
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if (d_dump)
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@ -44,6 +44,7 @@
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#include <gnuradio/fft/fft.h>
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#include <gnuradio/gr_complex.h>
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#include <fstream>
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#include <memory>
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#include <string>
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#include <utility>
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@ -122,8 +123,8 @@ private:
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gr_complex* d_fft_code_Q_A;
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gr_complex* d_fft_code_Q_B;
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gr_complex* d_inbuffer;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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unsigned int d_code_phase;
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float d_doppler_freq;
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@ -87,10 +87,10 @@ galileo_pcps_8ms_acquisition_cc::galileo_pcps_8ms_acquisition_cc(
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d_magnitude = static_cast<float *>(volk_gnsssdr_malloc(d_fft_size * sizeof(float), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -123,9 +123,6 @@ galileo_pcps_8ms_acquisition_cc::~galileo_pcps_8ms_acquisition_cc()
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volk_gnsssdr_free(d_fft_code_B);
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volk_gnsssdr_free(d_magnitude);
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delete d_ifft;
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delete d_fft_if;
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try
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{
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if (d_dump)
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@ -38,6 +38,7 @@
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#include <gnuradio/fft/fft.h>
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#include <gnuradio/gr_complex.h>
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#include <fstream>
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#include <memory>
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#include <string>
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#include <utility>
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@ -105,8 +106,8 @@ private:
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uint32_t d_num_doppler_bins;
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gr_complex* d_fft_code_A;
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gr_complex* d_fft_code_B;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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@ -140,10 +140,10 @@ pcps_acquisition::pcps_acquisition(const Acq_Conf& conf_) : gr::block("pcps_acqu
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d_input_signal = static_cast<gr_complex*>(volk_gnsssdr_malloc(d_fft_size * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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d_gnss_synchro = nullptr;
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d_grid_doppler_wipeoffs = nullptr;
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@ -237,8 +237,6 @@ pcps_acquisition::~pcps_acquisition()
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volk_gnsssdr_free(d_magnitude);
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volk_gnsssdr_free(d_tmp_buffer);
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volk_gnsssdr_free(d_input_signal);
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delete d_ifft;
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delete d_fft_if;
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volk_gnsssdr_free(d_data_buffer);
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if (d_cshort)
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{
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@ -62,6 +62,7 @@
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#include <gnuradio/types.h> // for gr_vector_const_void_star
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#include <volk/volk_complex.h> // for lv_16sc_t
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#include <cstdint>
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#include <memory>
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#include <string>
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#include <utility>
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@ -138,8 +139,8 @@ private:
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gr_complex* d_fft_codes;
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gr_complex* d_data_buffer;
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lv_16sc_t* d_data_buffer_sc;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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arma::fmat grid_;
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arma::fmat narrow_grid_;
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@ -93,10 +93,10 @@ pcps_acquisition_fine_doppler_cc::pcps_acquisition_fine_doppler_cc(const Acq_Con
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d_10_ms_buffer = static_cast<gr_complex *>(volk_gnsssdr_malloc(50 * d_samples_per_ms * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = conf_.dump;
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@ -168,6 +168,7 @@ unsigned int pcps_acquisition_fine_doppler_cc::nextPowerOf2(unsigned int n)
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return n;
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}
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void pcps_acquisition_fine_doppler_cc::set_doppler_step(unsigned int doppler_step)
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{
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d_doppler_step = doppler_step;
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@ -208,8 +209,6 @@ pcps_acquisition_fine_doppler_cc::~pcps_acquisition_fine_doppler_cc()
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volk_gnsssdr_free(d_fft_codes);
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volk_gnsssdr_free(d_magnitude);
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volk_gnsssdr_free(d_10_ms_buffer);
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delete d_ifft;
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delete d_fft_if;
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free_grid_memory();
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}
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@ -58,6 +58,7 @@
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#include <gnuradio/gr_complex.h>
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#include <cstdint>
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#include <fstream>
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#include <memory>
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#include <string>
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#include <utility>
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@ -109,8 +110,8 @@ private:
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float** d_grid_data;
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gr_complex** d_grid_doppler_wipeoffs;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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unsigned int d_code_phase;
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float d_doppler_freq;
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@ -82,10 +82,10 @@ pcps_assisted_acquisition_cc::pcps_assisted_acquisition_cc(
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d_carrier = static_cast<gr_complex *>(volk_gnsssdr_malloc(d_fft_size * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -129,8 +129,6 @@ pcps_assisted_acquisition_cc::~pcps_assisted_acquisition_cc()
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{
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volk_gnsssdr_free(d_carrier);
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volk_gnsssdr_free(d_fft_codes);
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delete d_ifft;
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delete d_fft_if;
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try
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{
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if (d_dump)
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@ -54,6 +54,7 @@
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#include <gnuradio/fft/fft.h>
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#include <gnuradio/gr_complex.h>
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#include <fstream>
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#include <memory>
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#include <string>
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#include <utility>
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@ -125,8 +126,8 @@ private:
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float** d_grid_data;
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gr_complex** d_grid_doppler_wipeoffs;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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@ -97,10 +97,10 @@ pcps_cccwsr_acquisition_cc::pcps_cccwsr_acquisition_cc(
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d_magnitude = static_cast<float *>(volk_gnsssdr_malloc(d_fft_size * sizeof(float), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -137,9 +137,6 @@ pcps_cccwsr_acquisition_cc::~pcps_cccwsr_acquisition_cc()
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volk_gnsssdr_free(d_correlation_minus);
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volk_gnsssdr_free(d_magnitude);
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delete d_ifft;
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delete d_fft_if;
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try
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{
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if (d_dump)
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@ -43,6 +43,7 @@
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#include <gnuradio/fft/fft.h>
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#include <gnuradio/gr_complex.h>
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#include <fstream>
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#include <memory>
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#include <string>
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#include <utility>
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@ -100,8 +101,8 @@ private:
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uint32_t d_num_doppler_bins;
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gr_complex* d_fft_code_data;
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gr_complex* d_fft_code_pilot;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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@ -131,10 +131,10 @@ pcps_opencl_acquisition_cc::pcps_opencl_acquisition_cc(
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if (d_opencl != 0)
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{
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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}
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// For dumping samples into a file
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@ -179,11 +179,6 @@ pcps_opencl_acquisition_cc::~pcps_opencl_acquisition_cc()
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clFFT_DestroyPlan(d_cl_fft_plan);
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}
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else
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{
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delete d_ifft;
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delete d_fft_if;
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}
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try
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{
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@ -123,8 +123,8 @@ private:
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gr_complex** d_grid_doppler_wipeoffs;
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uint32_t d_num_doppler_bins;
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gr_complex* d_fft_codes;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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@ -106,9 +106,9 @@ pcps_quicksync_acquisition_cc::pcps_quicksync_acquisition_cc(
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d_code = new gr_complex[d_samples_per_code]();
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -122,7 +122,6 @@ pcps_quicksync_acquisition_cc::pcps_quicksync_acquisition_cc(
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d_threshold = 0;
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d_doppler_step = 0;
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d_grid_doppler_wipeoffs = nullptr;
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d_fft_if2 = nullptr;
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d_gnss_synchro = nullptr;
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d_code_phase = 0;
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d_doppler_freq = 0;
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@ -150,8 +149,6 @@ pcps_quicksync_acquisition_cc::~pcps_quicksync_acquisition_cc()
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volk_gnsssdr_free(d_magnitude);
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volk_gnsssdr_free(d_magnitude_folded);
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delete d_ifft;
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delete d_fft_if;
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delete d_code;
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delete d_possible_delay;
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delete d_corr_output_f;
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@ -136,9 +136,8 @@ private:
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gr_complex** d_grid_doppler_wipeoffs;
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uint32_t d_num_doppler_bins;
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gr_complex* d_fft_codes;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_fft_if2;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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@ -113,10 +113,10 @@ pcps_tong_acquisition_cc::pcps_tong_acquisition_cc(
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d_magnitude = static_cast<float *>(volk_gnsssdr_malloc(d_fft_size * sizeof(float), volk_gnsssdr_get_alignment()));
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// Direct FFT
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d_fft_if = new gr::fft::fft_complex(d_fft_size, true);
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d_fft_if = std::make_shared<gr::fft::fft_complex>(d_fft_size, true);
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// Inverse FFT
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d_ifft = new gr::fft::fft_complex(d_fft_size, false);
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d_ifft = std::make_shared<gr::fft::fft_complex>(d_fft_size, false);
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// For dumping samples into a file
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d_dump = dump;
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@ -134,6 +134,7 @@ pcps_tong_acquisition_cc::pcps_tong_acquisition_cc(
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d_channel = 0;
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}
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pcps_tong_acquisition_cc::~pcps_tong_acquisition_cc()
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{
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if (d_num_doppler_bins > 0)
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@ -150,9 +151,6 @@ pcps_tong_acquisition_cc::~pcps_tong_acquisition_cc()
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volk_gnsssdr_free(d_fft_codes);
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volk_gnsssdr_free(d_magnitude);
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delete d_ifft;
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delete d_fft_if;
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try
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{
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if (d_dump)
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@ -121,8 +121,8 @@ private:
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uint32_t d_num_doppler_bins;
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gr_complex* d_fft_codes;
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float** d_grid_data;
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gr::fft::fft_complex* d_fft_if;
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gr::fft::fft_complex* d_ifft;
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std::shared_ptr<gr::fft::fft_complex> d_fft_if;
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std::shared_ptr<gr::fft::fft_complex> d_ifft;
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Gnss_Synchro* d_gnss_synchro;
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uint32_t d_code_phase;
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float d_doppler_freq;
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