/* -*- c++ -*- */ /* * Copyright 2002,2004,2005,2013 Free Software Foundation, Inc. * * This file is part of GNU Radio * * SPDX-License-Identifier: GPL-3.0-or-later * */ #ifndef INCLUDED_GR_FXPT_VCO_H #define INCLUDED_GR_FXPT_VCO_H #include <gnuradio/api.h> #include <gnuradio/fxpt.h> #include <gnuradio/gr_complex.h> namespace gr { /*! * \brief Voltage Controlled Oscillator (VCO) * \ingroup misc */ class /*GR_RUNTIME_API*/ fxpt_vco { int32_t d_phase; public: fxpt_vco() : d_phase(0) {} ~fxpt_vco() {} // radians void set_phase(float angle) { d_phase = fxpt::float_to_fixed(angle); } void adjust_phase(float delta_phase) { d_phase += fxpt::float_to_fixed(delta_phase); } float get_phase() const { return fxpt::fixed_to_float(d_phase); } // compute sin and cos for current phase angle void sincos(float* sinx, float* cosx) const { *sinx = fxpt::sin(d_phase); *cosx = fxpt::cos(d_phase); } // compute complex sine a block at a time void sincos(gr_complex* output, const float* input, int noutput_items, float k, float ampl = 1.0) { for (int i = 0; i < noutput_items; i++) { output[i] = gr_complex((float)(fxpt::cos(d_phase) * ampl), (float)(fxpt::sin(d_phase) * ampl)); adjust_phase(input[i] * k); } } // compute a block at a time void cos(float* output, const float* input, int noutput_items, float k, float ampl = 1.0) { for (int i = 0; i < noutput_items; i++) { output[i] = (float)(fxpt::cos(d_phase) * ampl); adjust_phase(input[i] * k); } } // compute cos or sin for current phase angle float cos() const { return fxpt::cos(d_phase); } float sin() const { return fxpt::sin(d_phase); } }; } /* namespace gr */ #endif /* INCLUDED_GR_FXPT_VCO_H */