GNU Radio 3.4.2 C++ API
gr_fir_fcc.h
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00001 /* -*- c++ -*- */
00002 /*
00003  * Copyright 2002,2003 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 
00023 /*
00024  * WARNING: This file is automatically generated by generate_gr_fir_XXX.py
00025  * Any changes made to this file will be overwritten.
00026  */
00027 
00028 
00029 #ifndef INCLUDED_GR_FIR_FCC_H
00030 #define INCLUDED_GR_FIR_FCC_H
00031 
00032 #include <vector>
00033 #include <gr_types.h>
00034 #include <gr_reverse.h>
00035 
00036 /*!
00037  * \brief Abstract class for FIR with float input, gr_complex output and gr_complex taps
00038  * \ingroup filter_primitive
00039  * 
00040  * This is the abstract class for a Finite Impulse Response filter.
00041  *
00042  * The trailing suffix has the form _IOT where I codes the input type,
00043  * O codes the output type, and T codes the tap type.
00044  * I,O,T are elements of the set 's' (short), 'f' (float), 'c' (gr_complex), 'i' (int)
00045  */
00046 
00047 class gr_fir_fcc {
00048 
00049 protected:
00050   std::vector<gr_complex>       d_taps;         // reversed taps
00051 
00052 public:
00053 
00054   // CONSTRUCTORS
00055 
00056   /*!
00057    * \brief construct new FIR with given taps.
00058    *
00059    * Note that taps must be in forward order, e.g., coefficient 0 is
00060    * stored in new_taps[0], coefficient 1 is stored in
00061    * new_taps[1], etc.
00062    */
00063   gr_fir_fcc () {}
00064   gr_fir_fcc (const std::vector<gr_complex> &taps) : d_taps (gr_reverse(taps)) {}
00065 
00066   virtual ~gr_fir_fcc ();
00067 
00068   // MANIPULATORS
00069 
00070   /*!
00071    * \brief compute a single output value.
00072    *
00073    * \p input must have ntaps() valid entries.
00074    * input[0] .. input[ntaps() - 1] are referenced to compute the output value.
00075    *
00076    * \returns the filtered input value.
00077    */
00078   virtual gr_complex filter (const float input[]) = 0;
00079 
00080   /*!
00081    * \brief compute an array of N output values.
00082    *
00083    * \p input must have (n - 1 + ntaps()) valid entries.
00084    * input[0] .. input[n - 1 + ntaps() - 1] are referenced to compute the output values.
00085    */
00086   virtual void filterN (gr_complex output[], const float input[],
00087                         unsigned long n) = 0;
00088 
00089   /*!
00090    * \brief compute an array of N output values, decimating the input
00091    *
00092    * \p input must have (decimate * (n - 1) + ntaps()) valid entries.
00093    * input[0] .. input[decimate * (n - 1) + ntaps() - 1] are referenced to 
00094    * compute the output values.
00095    */
00096   virtual void filterNdec (gr_complex output[], const float input[],
00097                            unsigned long n, unsigned decimate) = 0;
00098 
00099   /*!
00100    * \brief install \p new_taps as the current taps.
00101    */
00102   virtual void set_taps (const std::vector<gr_complex> &taps)
00103   {
00104     d_taps = gr_reverse(taps);
00105   }
00106 
00107   // ACCESSORS
00108 
00109   /*!
00110    * \return number of taps in filter.
00111    */
00112   unsigned ntaps () const { return d_taps.size (); }
00113 
00114   /*!
00115    * \return current taps
00116    */
00117   virtual const std::vector<gr_complex> get_taps () const
00118   {
00119     return gr_reverse(d_taps);
00120   }
00121 };
00122 
00123 #endif /* INCLUDED_GR_FIR_FCC_H */