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https://github.com/gnss-sdr/gnss-sdr
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Apply fixes by clang-tidy
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@ -67,8 +67,8 @@
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using google::LogMessage;
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pcps_opencl_acquisition_cc_sptr pcps_make_opencl_acquisition_cc(
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unsigned int sampled_ms, unsigned int max_dwells,
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unsigned int doppler_max, long fs_in,
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uint32_t sampled_ms, uint32_t max_dwells,
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uint32_t doppler_max, int64_t fs_in,
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int samples_per_ms, int samples_per_code,
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bool bit_transition_flag,
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bool dump,
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@ -81,10 +81,10 @@ pcps_opencl_acquisition_cc_sptr pcps_make_opencl_acquisition_cc(
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pcps_opencl_acquisition_cc::pcps_opencl_acquisition_cc(
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unsigned int sampled_ms,
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unsigned int max_dwells,
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unsigned int doppler_max,
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long fs_in,
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uint32_t sampled_ms,
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uint32_t max_dwells,
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uint32_t doppler_max,
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int64_t fs_in,
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int samples_per_ms,
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int samples_per_code,
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bool bit_transition_flag,
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@ -115,7 +115,7 @@ pcps_opencl_acquisition_cc::pcps_opencl_acquisition_cc(
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d_cl_fft_batch_size = 1;
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d_in_buffer = new gr_complex *[d_max_dwells];
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for (unsigned int i = 0; i < d_max_dwells; i++)
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for (uint32_t i = 0; i < d_max_dwells; i++)
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{
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d_in_buffer[i] = static_cast<gr_complex *>(volk_gnsssdr_malloc(d_fft_size * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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}
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@ -123,7 +123,7 @@ pcps_opencl_acquisition_cc::pcps_opencl_acquisition_cc(
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d_fft_codes = static_cast<gr_complex *>(volk_gnsssdr_malloc(d_fft_size_pow2 * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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d_zero_vector = static_cast<gr_complex *>(volk_gnsssdr_malloc((d_fft_size_pow2 - d_fft_size) * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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for (unsigned int i = 0; i < (d_fft_size_pow2 - d_fft_size); i++)
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for (uint32_t i = 0; i < (d_fft_size_pow2 - d_fft_size); i++)
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{
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d_zero_vector[i] = gr_complex(0.0, 0.0);
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}
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@ -149,14 +149,14 @@ pcps_opencl_acquisition_cc::~pcps_opencl_acquisition_cc()
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{
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if (d_num_doppler_bins > 0)
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{
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for (unsigned int i = 0; i < d_num_doppler_bins; i++)
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for (uint32_t i = 0; i < d_num_doppler_bins; i++)
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{
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volk_gnsssdr_free(d_grid_doppler_wipeoffs[i]);
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}
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delete[] d_grid_doppler_wipeoffs;
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}
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for (unsigned int i = 0; i < d_max_dwells; i++)
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for (uint32_t i = 0; i < d_max_dwells; i++)
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{
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volk_gnsssdr_free(d_in_buffer[i]);
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}
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@ -314,7 +314,7 @@ void pcps_opencl_acquisition_cc::init()
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d_cl_buffer_grid_doppler_wipeoffs = new cl::Buffer *[d_num_doppler_bins];
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}
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for (unsigned int doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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for (uint32_t doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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{
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d_grid_doppler_wipeoffs[doppler_index] = static_cast<gr_complex *>(volk_gnsssdr_malloc(d_fft_size * sizeof(gr_complex), volk_gnsssdr_get_alignment()));
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@ -407,7 +407,7 @@ void pcps_opencl_acquisition_cc::acquisition_core_volk()
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d_input_power /= static_cast<float>(d_fft_size);
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// 2- Doppler frequency search loop
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for (unsigned int doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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for (uint32_t doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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{
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// doppler search steps
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doppler = -static_cast<int>(d_doppler_max) + d_doppler_step * doppler_index;
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@ -543,7 +543,7 @@ void pcps_opencl_acquisition_cc::acquisition_core_opencl()
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cl::Kernel kernel;
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// 2- Doppler frequency search loop
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for (unsigned int doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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for (uint32_t doppler_index = 0; doppler_index < d_num_doppler_bins; doppler_index++)
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{
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// doppler search steps
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@ -736,8 +736,8 @@ int pcps_opencl_acquisition_cc::general_work(int noutput_items,
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// Fill internal buffer with d_max_dwells signal blocks. This step ensures that
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// consecutive signal blocks will be processed in multi-dwell operation. This is
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// essential when d_bit_transition_flag = true.
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unsigned int num_dwells = std::min(static_cast<int>(d_max_dwells - d_in_dwell_count), ninput_items[0]);
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for (unsigned int i = 0; i < num_dwells; i++)
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uint32_t num_dwells = std::min(static_cast<int>(d_max_dwells - d_in_dwell_count), ninput_items[0]);
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for (uint32_t i = 0; i < num_dwells; i++)
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{
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memcpy(d_in_buffer[d_in_dwell_count++], static_cast<const gr_complex *>(input_items[i]),
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sizeof(gr_complex) * d_fft_size);
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@ -56,6 +56,7 @@
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#include <gnuradio/block.h>
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#include <gnuradio/fft/fft.h>
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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 <string>
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#include <vector>
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@ -71,8 +72,8 @@ class pcps_opencl_acquisition_cc;
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typedef boost::shared_ptr<pcps_opencl_acquisition_cc> pcps_opencl_acquisition_cc_sptr;
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pcps_opencl_acquisition_cc_sptr
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pcps_make_opencl_acquisition_cc(unsigned int sampled_ms, unsigned int max_dwells,
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unsigned int doppler_max, long fs_in,
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pcps_make_opencl_acquisition_cc(uint32_t sampled_ms, uint32_t max_dwells,
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uint32_t doppler_max, int64_t fs_in,
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int samples_per_ms, int samples_per_code,
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bool bit_transition_flag,
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bool dump,
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@ -88,15 +89,15 @@ class pcps_opencl_acquisition_cc : public gr::block
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{
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private:
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friend pcps_opencl_acquisition_cc_sptr
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pcps_make_opencl_acquisition_cc(unsigned int sampled_ms, unsigned int max_dwells,
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unsigned int doppler_max, long fs_in,
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pcps_make_opencl_acquisition_cc(uint32_t sampled_ms, uint32_t max_dwells,
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uint32_t doppler_max, int64_t fs_in,
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int samples_per_ms, int samples_per_code,
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bool bit_transition_flag,
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bool dump,
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std::string dump_filename);
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pcps_opencl_acquisition_cc(unsigned int sampled_ms, unsigned int max_dwells,
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unsigned int doppler_max, long fs_in,
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pcps_opencl_acquisition_cc(uint32_t sampled_ms, uint32_t max_dwells,
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uint32_t doppler_max, int64_t fs_in,
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int samples_per_ms, int samples_per_code,
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bool bit_transition_flag,
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bool dump,
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@ -107,28 +108,28 @@ private:
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int init_opencl_environment(const std::string& kernel_filename);
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long d_fs_in;
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int64_t d_fs_in;
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int d_samples_per_ms;
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int d_samples_per_code;
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unsigned int d_doppler_resolution;
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uint32_t d_doppler_resolution;
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float d_threshold;
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std::string d_satellite_str;
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unsigned int d_doppler_max;
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unsigned int d_doppler_step;
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unsigned int d_sampled_ms;
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unsigned int d_max_dwells;
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unsigned int d_well_count;
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unsigned int d_fft_size;
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unsigned int d_fft_size_pow2;
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uint32_t d_doppler_max;
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uint32_t d_doppler_step;
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uint32_t d_sampled_ms;
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uint32_t d_max_dwells;
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uint32_t d_well_count;
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uint32_t d_fft_size;
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uint32_t d_fft_size_pow2;
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int* d_max_doppler_indexs;
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uint64_t d_sample_counter;
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gr_complex** d_grid_doppler_wipeoffs;
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unsigned int d_num_doppler_bins;
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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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Gnss_Synchro* d_gnss_synchro;
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unsigned int d_code_phase;
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uint32_t d_code_phase;
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float d_doppler_freq;
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float d_mag;
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float* d_magnitude;
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@ -140,12 +141,12 @@ private:
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int d_state;
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bool d_core_working;
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bool d_dump;
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unsigned int d_channel;
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uint32_t d_channel;
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std::string d_dump_filename;
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gr_complex* d_zero_vector;
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gr_complex** d_in_buffer;
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std::vector<uint64_t> d_sample_counter_buffer;
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unsigned int d_in_dwell_count;
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uint32_t d_in_dwell_count;
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cl::Platform d_cl_platform;
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cl::Device d_cl_device;
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@ -182,7 +183,7 @@ public:
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/*!
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* \brief Returns the maximum peak of grid search.
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*/
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inline unsigned int mag() const
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inline uint32_t mag() const
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{
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return d_mag;
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}
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@ -219,7 +220,7 @@ public:
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* \brief Set acquisition channel unique ID
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* \param channel - receiver channel.
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*/
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inline void set_channel(unsigned int channel)
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inline void set_channel(uint32_t channel)
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{
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d_channel = channel;
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}
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@ -238,7 +239,7 @@ public:
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* \brief Set maximum Doppler grid search
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* \param doppler_max - Maximum Doppler shift considered in the grid search [Hz].
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*/
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inline void set_doppler_max(unsigned int doppler_max)
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inline void set_doppler_max(uint32_t doppler_max)
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{
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d_doppler_max = doppler_max;
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}
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@ -247,7 +248,7 @@ public:
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* \brief Set Doppler steps for the grid search
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* \param doppler_step - Frequency bin of the search grid [Hz].
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*/
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inline void set_doppler_step(unsigned int doppler_step)
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inline void set_doppler_step(uint32_t doppler_step)
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{
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d_doppler_step = doppler_step;
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}
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