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https://github.com/SatDump/SatDump
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135 lines
No EOL
4.6 KiB
C++
135 lines
No EOL
4.6 KiB
C++
#include "fir.h"
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#include <cstring>
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#include <volk/volk.h>
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#include <algorithm>
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#ifndef M_PI
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#define M_PI 3.14159265358979323846 /* pi */
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#endif
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namespace dsp
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{
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CCFIRBlock::CCFIRBlock(std::shared_ptr<dsp::stream<complex_t>> input, std::vector<float> taps) : Block(input)
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{
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// Get alignement parameters
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align = volk_get_alignment();
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aligned_tap_count = std::max<int>(1, align / sizeof(complex_t));
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// Set taps
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ntaps = taps.size();
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// Init taps
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this->taps = (float **)volk_malloc(aligned_tap_count * sizeof(float *), align);
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for (int i = 0; i < aligned_tap_count; i++)
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{
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this->taps[i] = (float *)volk_malloc((ntaps + aligned_tap_count - 1) * sizeof(float), align);
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memset(this->taps[i], 0, ntaps + aligned_tap_count - 1);
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for (int j = 0; j < ntaps; j++)
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this->taps[i][i + j] = taps[(ntaps - 1) - j]; // Reverse taps
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}
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// Init history buffer
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int size_hist = 2 * STREAM_BUFFER_SIZE;
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history = (complex_t *)volk_malloc(size_hist * sizeof(complex_t), align);
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std::fill(history, &history[size_hist], 0);
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}
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CCFIRBlock::~CCFIRBlock()
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{
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for (int i = 0; i < aligned_tap_count; i++)
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volk_free(taps[i]);
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volk_free(taps);
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volk_free(history);
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}
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void CCFIRBlock::work()
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{
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int nsamples = input_stream->read();
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if (nsamples <= 0)
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{
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input_stream->flush();
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return;
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}
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memcpy(&history[ntaps], input_stream->readBuf, nsamples * sizeof(complex_t));
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input_stream->flush();
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for (int i = 0; i < nsamples; i++)
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{
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// Doing it this way instead of the normal :
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// volk_32fc_32f_dot_prod_32fc(&output_stream->writeBuf[i], &history[i + 1], taps, ntaps);
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// turns out to enhance performances quite a bit... Initially tested this after noticing
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// inconsistencies between the above simple way and GNU Radio's implementation
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const complex_t *ar = (complex_t *)((size_t)&history[i + 1] & ~(align - 1));
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const unsigned al = &history[i + 1] - ar;
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volk_32fc_32f_dot_prod_32fc_a((lv_32fc_t *)&output_stream->writeBuf[i], (lv_32fc_t *)ar, taps[al], ntaps + al);
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}
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output_stream->swap(nsamples);
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memmove(&history[0], &history[nsamples], ntaps * sizeof(complex_t));
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}
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FFFIRBlock::FFFIRBlock(std::shared_ptr<dsp::stream<float>> input, std::vector<float> taps) : Block(input)
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{
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// Set taps
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// Get alignement parameters
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align = volk_get_alignment();
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aligned_tap_count = std::max<int>(1, align / sizeof(float));
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// Set taps
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ntaps = taps.size();
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std::reverse(taps.begin(), taps.end());
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// Init taps
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this->taps = (float **)volk_malloc(aligned_tap_count * sizeof(float *), align);
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for (int i = 0; i < aligned_tap_count; i++)
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{
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this->taps[i] = (float *)volk_malloc((ntaps + aligned_tap_count - 1) * sizeof(float), align);
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memset(this->taps[i], 0, ntaps + aligned_tap_count - 1);
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for (int j = 0; j < ntaps; j++)
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this->taps[i][i + j] = taps[j];
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}
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// Init history buffer
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int size_hist = 2 * STREAM_BUFFER_SIZE;
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history = (float *)volk_malloc(size_hist * sizeof(float), align);
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std::fill(history, &history[size_hist], 0);
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}
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FFFIRBlock::~FFFIRBlock()
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{
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for (int i = 0; i < aligned_tap_count; i++)
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volk_free(taps[i]);
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volk_free(taps);
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volk_free(history);
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}
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void FFFIRBlock::work()
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{
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int nsamples = input_stream->read();
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if (nsamples <= 0)
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{
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input_stream->flush();
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return;
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}
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memcpy(&history[ntaps], input_stream->readBuf, nsamples * sizeof(float));
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input_stream->flush();
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for (int i = 0; i < nsamples; i++)
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{
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// Doing it this way instead of the normal :
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// volk_32f_x2_dot_prod_32f(&output_stream->writeBuf[i], &history[i + 1], taps, ntaps);
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// turns out to enhance performances quite a bit... Initially tested this after noticing
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// inconsistencies between the above simple way and GNU Radio's implementation
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const float *ar = (float *)((size_t)&history[i + 1] & ~(align - 1));
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const unsigned al = &history[i + 1] - ar;
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volk_32f_x2_dot_prod_32f_a(&output_stream->writeBuf[i], ar, taps[al], ntaps + al);
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}
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output_stream->swap(nsamples);
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memmove(&history[0], &history[nsamples], ntaps * sizeof(float));
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}
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} |