201 lines
4.1 KiB
C++
201 lines
4.1 KiB
C++
/*
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* ParamEq.cpp
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* -----------
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* Purpose: Implementation of the DMO Parametric Equalizer DSP (for non-Windows platforms)
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* Notes : (currently none)
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* Authors: OpenMPT Devs
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* The OpenMPT source code is released under the BSD license. Read LICENSE for more details.
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*/
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#include "stdafx.h"
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#ifndef NO_PLUGINS
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#include "../../Sndfile.h"
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#include "ParamEq.h"
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#endif // !NO_PLUGINS
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OPENMPT_NAMESPACE_BEGIN
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#ifndef NO_PLUGINS
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namespace DMO
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{
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IMixPlugin* ParamEq::Create(VSTPluginLib &factory, CSoundFile &sndFile, SNDMIXPLUGIN *mixStruct)
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{
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return new (std::nothrow) ParamEq(factory, sndFile, mixStruct);
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}
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ParamEq::ParamEq(VSTPluginLib &factory, CSoundFile &sndFile, SNDMIXPLUGIN *mixStruct)
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: IMixPlugin(factory, sndFile, mixStruct)
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, m_maxFreqParam(1.0f)
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{
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m_param[kEqCenter] = (8000.0f - 80.0f) / 15920.0f;
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m_param[kEqBandwidth] = 0.314286f;
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m_param[kEqGain] = 0.5f;
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m_mixBuffer.Initialize(2, 2);
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InsertIntoFactoryList();
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}
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void ParamEq::Process(float *pOutL, float *pOutR, uint32 numFrames)
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{
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if(!m_mixBuffer.Ok())
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return;
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const float *in[2] = { m_mixBuffer.GetInputBuffer(0), m_mixBuffer.GetInputBuffer(1) };
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float *out[2] = { m_mixBuffer.GetOutputBuffer(0), m_mixBuffer.GetOutputBuffer(1) };
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if(m_param[kEqGain] == 0.5f)
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{
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memcpy(out[0], in[0], numFrames * sizeof(float));
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memcpy(out[1], in[1], numFrames * sizeof(float));
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} else
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{
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for(uint32 i = numFrames; i != 0; i--)
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{
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for(uint8 channel = 0; channel < 2; channel++)
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{
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float x = *(in[channel])++;
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float y = b0DIVa0 * x + b1DIVa0 * x1[channel] + b2DIVa0 * x2[channel] - a1DIVa0 * y1[channel] - a2DIVa0 * y2[channel];
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x2[channel] = x1[channel];
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x1[channel] = x;
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y2[channel] = y1[channel];
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y1[channel] = y;
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*(out[channel])++ = y;
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}
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}
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}
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ProcessMixOps(pOutL, pOutR, m_mixBuffer.GetOutputBuffer(0), m_mixBuffer.GetOutputBuffer(1), numFrames);
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}
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PlugParamValue ParamEq::GetParameter(PlugParamIndex index)
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{
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if(index < kEqNumParameters)
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{
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return m_param[index];
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}
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return 0;
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}
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void ParamEq::SetParameter(PlugParamIndex index, PlugParamValue value)
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{
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if(index < kEqNumParameters)
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{
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Limit(value, 0.0f, 1.0f);
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m_param[index] = value;
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RecalculateEqParams();
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}
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}
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void ParamEq::Resume()
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{
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m_isResumed = true;
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// Limit center frequency to a third of the sampling rate.
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m_maxFreqParam = Clamp((m_SndFile.GetSampleRate() / 3.0f - 80.0f) / 15920.0f, 0.0f, 1.0f);
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RecalculateEqParams();
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PositionChanged();
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}
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void ParamEq::PositionChanged()
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{
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// Reset filter state
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x1[0] = x2[0] = 0;
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x1[1] = x2[1] = 0;
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y1[0] = y2[0] = 0;
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y1[1] = y2[1] = 0;
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}
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#ifdef MODPLUG_TRACKER
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CString ParamEq::GetParamName(PlugParamIndex param)
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{
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switch(param)
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{
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case kEqCenter: return _T("Center");
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case kEqBandwidth: return _T("Bandwidth");
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case kEqGain: return _T("Gain");
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}
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return CString();
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}
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CString ParamEq::GetParamLabel(PlugParamIndex param)
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{
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switch(param)
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{
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case kEqCenter: return _T("Hz");
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case kEqBandwidth: return _T("Semitones");
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case kEqGain: return _T("dB");
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}
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return CString();
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}
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CString ParamEq::GetParamDisplay(PlugParamIndex param)
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{
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float value = 0.0f;
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switch(param)
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{
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case kEqCenter:
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value = FreqInHertz();
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break;
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case kEqBandwidth:
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value = BandwidthInSemitones();
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break;
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case kEqGain:
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value = GainInDecibel();
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break;
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}
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CString s;
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s.Format(_T("%.2f"), value);
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return s;
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}
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#endif // MODPLUG_TRACKER
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void ParamEq::RecalculateEqParams()
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{
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LimitMax(m_param[kEqCenter], m_maxFreqParam);
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const float freq = FreqInHertz() / m_SndFile.GetSampleRate();
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const float a = std::pow(10.0f, GainInDecibel() / 40.0f);
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const float w0 = 2.0f * float(M_PI) * freq;
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const float sinW0 = std::sin(w0);
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const float cosW0 = std::cos(w0);
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const float alpha = sinW0 * std::sinh((BandwidthInSemitones() * (float(M_LN2) / 24.0f)) * w0 / sinW0);
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const float b0 = 1.0f + alpha * a;
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const float b1 = -2.0f * cosW0;
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const float b2 = 1.0f - alpha * a;
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const float a0 = 1.0f + alpha / a;
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const float a1 = -2.0f * cosW0;
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const float a2 = 1.0f - alpha / a;
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b0DIVa0 = b0 / a0;
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b1DIVa0 = b1 / a0;
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b2DIVa0 = b2 / a0;
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a1DIVa0 = a1 / a0;
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a2DIVa0 = a2 / a0;
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}
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} // namespace DMO
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#else
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MPT_MSVC_WORKAROUND_LNK4221(ParamEq)
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#endif // !NO_PLUGINS
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OPENMPT_NAMESPACE_END
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