/* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */ /* Rubber Band Library An audio time-stretching and pitch-shifting library. Copyright 2007-2018 Particular Programs Ltd. This program 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 2 of the License, or (at your option) any later version. See the file COPYING included with this distribution for more information. Alternatively, if you have a valid commercial licence for the Rubber Band Library obtained by agreement with the copyright holders, you may redistribute and/or modify it under the terms described in that licence. If you wish to distribute code using the Rubber Band Library under terms other than those of the GNU General Public License, you must obtain a valid commercial licence before doing so. */ #include "SpectralDifferenceAudioCurve.h" #include "system/Allocators.h" #include "system/VectorOps.h" namespace RubberBand { SpectralDifferenceAudioCurve::SpectralDifferenceAudioCurve(Parameters parameters) : AudioCurveCalculator(parameters) { m_mag = allocate(m_lastPerceivedBin + 1); m_tmpbuf = allocate(m_lastPerceivedBin + 1); v_zero(m_mag, m_lastPerceivedBin + 1); } SpectralDifferenceAudioCurve::~SpectralDifferenceAudioCurve() { deallocate(m_mag); deallocate(m_tmpbuf); } void SpectralDifferenceAudioCurve::reset() { v_zero(m_mag, m_lastPerceivedBin + 1); } void SpectralDifferenceAudioCurve::setFftSize(int newSize) { deallocate(m_tmpbuf); deallocate(m_mag); AudioCurveCalculator::setFftSize(newSize); m_mag = allocate(m_lastPerceivedBin + 1); m_tmpbuf = allocate(m_lastPerceivedBin + 1); reset(); } float SpectralDifferenceAudioCurve::processFloat(const float *R__ mag, int increment) { double result = 0.0; const int hs1 = m_lastPerceivedBin + 1; v_convert(m_tmpbuf, mag, hs1); v_square(m_tmpbuf, hs1); v_subtract(m_mag, m_tmpbuf, hs1); v_abs(m_mag, hs1); v_sqrt(m_mag, hs1); for (int i = 0; i < hs1; ++i) { result += m_mag[i]; } v_copy(m_mag, m_tmpbuf, hs1); return result; } double SpectralDifferenceAudioCurve::processDouble(const double *R__ mag, int increment) { double result = 0.0; const int hs1 = m_lastPerceivedBin + 1; v_convert(m_tmpbuf, mag, hs1); v_square(m_tmpbuf, hs1); v_subtract(m_mag, m_tmpbuf, hs1); v_abs(m_mag, hs1); v_sqrt(m_mag, hs1); for (int i = 0; i < hs1; ++i) { result += m_mag[i]; } v_copy(m_mag, m_tmpbuf, hs1); return result; } }