GNU Radio 3.6.5 C++ API
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00001 /* -*- c++ -*- */ 00002 /* 00003 * Copyright 2002,2007,2012 Free Software Foundation, Inc. 00004 * 00005 * This file is part of GNU Radio 00006 * 00007 * GNU Radio is free software; you can redistribute it and/or modify 00008 * it under the terms of the GNU General Public License as published by 00009 * the Free Software Foundation; either version 3, or (at your option) 00010 * any later version. 00011 * 00012 * GNU Radio is distributed in the hope that it will be useful, 00013 * but WITHOUT ANY WARRANTY; without even the implied warranty of 00014 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 00015 * GNU General Public License for more details. 00016 * 00017 * You should have received a copy of the GNU General Public License 00018 * along with GNU Radio; see the file COPYING. If not, write to 00019 * the Free Software Foundation, Inc., 51 Franklin Street, 00020 * Boston, MA 02110-1301, USA. 00021 */ 00022 #ifndef _GRI_MMSE_FIR_INTERPOLATOR_CC_H_ 00023 #define _GRI_MMSE_FIR_INTERPOLATOR_CC_H_ 00024 00025 #include <filter/api.h> 00026 #include <filter/fir_filter.h> 00027 #include <gr_complex.h> 00028 #include <vector> 00029 00030 namespace gr { 00031 namespace filter { 00032 00033 /*! 00034 * \brief Compute intermediate samples between signal samples x(k*Ts) 00035 * \ingroup filter_primitive 00036 * 00037 * \details 00038 * This implements a Mininum Mean Squared Error interpolator with 00039 * 8 taps. It is suitable for signals where the bandwidth of 00040 * interest B = 1/(4*Ts) Where Ts is the time between samples. 00041 * 00042 * Although mu, the fractional delay, is specified as a float, it 00043 * is actually quantized. 0.0 <= mu <= 1.0. That is, mu is 00044 * quantized in the interpolate method to 32nd's of a sample. 00045 * 00046 * For more information, in the GNU Radio source code, see: 00047 * \li gnuradio-core/src/gen_interpolator_taps/README 00048 * \li gnuradio-core/src/gen_interpolator_taps/praxis.txt 00049 */ 00050 class FILTER_API mmse_fir_interpolator_cc 00051 { 00052 public: 00053 mmse_fir_interpolator_cc(); 00054 ~mmse_fir_interpolator_cc(); 00055 00056 unsigned ntaps() const; 00057 unsigned nsteps() const; 00058 00059 /*! 00060 * \brief compute a single interpolated output value. 00061 * 00062 * \p input must have ntaps() valid entries and be 8-byte aligned. 00063 * input[0] .. input[ntaps() - 1] are referenced to compute the output value. 00064 * \throws std::invalid_argument if input is not 8-byte aligned. 00065 * 00066 * \p mu must be in the range [0, 1] and specifies the fractional delay. 00067 * 00068 * \returns the interpolated input value. 00069 */ 00070 gr_complex interpolate(const gr_complex input[], float mu) const; 00071 00072 protected: 00073 std::vector<kernel::fir_filter_ccf *> filters; 00074 }; 00075 00076 } /* namespace filter */ 00077 } /* namespace gr */ 00078 00079 #endif /* _MMSE_FIR_INTERPOLATOR_CC_H_ */