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📄 gr_fft_vfc.cc

📁 这是用python语言写的一个数字广播的信号处理工具包。利用它
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/* -*- c++ -*- *//* * Copyright 2004 Free Software Foundation, Inc. *  * This file is part of GNU Radio *  * GNU Radio is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 3, or (at your option) * any later version. *  * GNU Radio is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the * GNU General Public License for more details. *  * You should have received a copy of the GNU General Public License * along with GNU Radio; see the file COPYING.  If not, write to * the Free Software Foundation, Inc., 51 Franklin Street, * Boston, MA 02110-1301, USA. */#ifdef HAVE_CONFIG_H#include "config.h"#endif#include <gr_fft_vfc.h>#include <gr_io_signature.h>#include <gri_fft.h>#include <math.h>#include <stdexcept>#include <string.h>// FIXME after this is working, change to use native real to complex fft.// It should run twice as fast.gr_fft_vfc_sptrgr_make_fft_vfc (int fft_size, bool forward, const std::vector<float> window){  return gr_fft_vfc_sptr (new gr_fft_vfc (fft_size, forward, window));}gr_fft_vfc::gr_fft_vfc (int fft_size, bool forward, const std::vector<float> window)  : gr_sync_block ("fft_vfc",		   gr_make_io_signature (1, 1, fft_size * sizeof (float)),		   gr_make_io_signature (1, 1, fft_size * sizeof (gr_complex))),    d_fft_size(fft_size), d_window(){  if (!forward){    fprintf (stderr, "fft_vfc: forward must == true\n");    throw std::invalid_argument ("fft_vfc: forward must == true");  }  d_fft = new gri_fft_complex (d_fft_size, forward);  set_window(window);}gr_fft_vfc::~gr_fft_vfc (){  delete d_fft;}intgr_fft_vfc::work (int noutput_items,		  gr_vector_const_void_star &input_items,		  gr_vector_void_star &output_items){  const float *in = (const float *) input_items[0];  gr_complex *out = (gr_complex *) output_items[0];  unsigned int output_data_size = output_signature()->sizeof_stream_item (0);  int count = 0;  while (count++ < noutput_items){    // copy input into optimally aligned buffer    if (d_window.size()){      gr_complex *dst = d_fft->get_inbuf();      for (unsigned int i = 0; i < d_fft_size; i++)		// apply window	dst[i] = in[i] * d_window[i];    }    else {      gr_complex *dst = d_fft->get_inbuf();      for (unsigned int i = 0; i < d_fft_size; i++)		// float to complex conversion	dst[i] = in[i];				           }    // compute the fft    d_fft->execute ();    // cpoy result to our output    memcpy (out, d_fft->get_outbuf (), output_data_size);    in  += d_fft_size;    out += d_fft_size;  }  return noutput_items;}bool gr_fft_vfc::set_window(const std::vector<float> window){  if(window.size()==0 || window.size()==d_fft_size) {    d_window=window;    return true;  }  else     return false;}

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