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390 lines
11 KiB
390 lines
11 KiB
#include <windows.h>
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#include "sverb.h"
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#include "sverbp.h"
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#include "clone.h"
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STD_CREATE(WavesReverb)
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::NDQueryInterface
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//
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// Subclass can override if it wants to implement more interfaces.
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//
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STDMETHODIMP CDirectSoundWavesReverbDMO::NDQueryInterface(THIS_ REFIID riid, LPVOID *ppv)
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{
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IMP_DSDMO_QI(riid,ppv);
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if (riid == IID_IPersist)
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{
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return GetInterface((IPersist*)this, ppv);
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}
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else if (riid == IID_IMediaObject)
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{
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return GetInterface((IMediaObject*)this, ppv);
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}
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else if (riid == IID_IDirectSoundFXWavesReverb)
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{
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return GetInterface((IDirectSoundFXWavesReverb*)this, ppv);
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}
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else if (riid == IID_ISpecifyPropertyPages)
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{
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return GetInterface((ISpecifyPropertyPages*)this, ppv);
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}
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else if (riid == IID_IMediaParams)
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{
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return GetInterface((IMediaParams*)this, ppv);
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}
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else if (riid == IID_IMediaParamInfo)
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{
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return GetInterface((IMediaParamInfo*)this, ppv);
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}
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else
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return CComBase::NDQueryInterface(riid, ppv);
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::Clone
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//
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STDMETHODIMP CDirectSoundWavesReverbDMO::Clone(IMediaObjectInPlace **pp)
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{
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return StandardDMOClone<CDirectSoundWavesReverbDMO, DSFXWavesReverb>(this, pp);
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::CDirectSoundWavesReverbDMO
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//
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CDirectSoundWavesReverbDMO::CDirectSoundWavesReverbDMO( IUnknown *pUnk, HRESULT *phr )
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: CComBase( pUnk, phr ),
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m_fDirty(TRUE),
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m_pbCoeffs(NULL),
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m_plStates(NULL),
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m_fInitCPCMDMO(false),
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m_pfnSVerbProcess(NULL),
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m_fGain(DSFX_WAVESREVERB_INGAIN_DEFAULT),
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m_fMix(DSFX_WAVESREVERB_REVERBMIX_DEFAULT),
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m_fTime(DSFX_WAVESREVERB_REVERBTIME_DEFAULT),
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m_fRatio(DSFX_WAVESREVERB_HIGHFREQRTRATIO_DEFAULT)
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{
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::~CDirectSoundWavesReverbDMO
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//
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CDirectSoundWavesReverbDMO::~CDirectSoundWavesReverbDMO()
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{
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delete[] m_pbCoeffs;
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delete[] m_plStates;
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}
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const MP_CAPS g_capsAll = MP_CAPS_CURVE_JUMP | MP_CAPS_CURVE_LINEAR | MP_CAPS_CURVE_SQUARE | MP_CAPS_CURVE_INVSQUARE | MP_CAPS_CURVE_SINE;
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static ParamInfo g_params[] =
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{
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// index type caps min, max, neutral, unit text, label, pwchText
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SVP_Gain, MPT_FLOAT, g_capsAll, DSFX_WAVESREVERB_INGAIN_MIN, DSFX_WAVESREVERB_INGAIN_MAX, DSFX_WAVESREVERB_INGAIN_DEFAULT, L"dB", L"InGain", L"",
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SVP_Mix, MPT_FLOAT, g_capsAll, DSFX_WAVESREVERB_REVERBMIX_MIN, DSFX_WAVESREVERB_REVERBMIX_MAX, DSFX_WAVESREVERB_REVERBMIX_DEFAULT, L"dB", L"ReverbMix", L"",
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SVP_ReverbTime, MPT_FLOAT, g_capsAll, DSFX_WAVESREVERB_REVERBTIME_MIN, DSFX_WAVESREVERB_REVERBTIME_MAX, DSFX_WAVESREVERB_REVERBTIME_DEFAULT, L"ms", L"ReverbTime", L"",
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SVP_Ratio, MPT_FLOAT, g_capsAll, DSFX_WAVESREVERB_HIGHFREQRTRATIO_MIN, DSFX_WAVESREVERB_HIGHFREQRTRATIO_MAX, DSFX_WAVESREVERB_HIGHFREQRTRATIO_DEFAULT, L"", L"HighFreqRTRatio", L"",
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};
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HRESULT CDirectSoundWavesReverbDMO::InitOnCreation()
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{
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HRESULT hr = InitParams(1, &GUID_TIME_REFERENCE, 0, 0, sizeof(g_params)/sizeof(*g_params), g_params);
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return hr;
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}
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HRESULT CDirectSoundWavesReverbDMO::Init()
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{
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HRESULT hr = S_OK;
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DMO_MEDIA_TYPE *pmt = InputType();
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if (pmt->majortype != MEDIATYPE_Audio ||
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pmt->subtype != MEDIASUBTYPE_PCM ||
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pmt->formattype != FORMAT_WaveFormatEx)
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{
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hr = E_INVALIDARG;
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TraceI(1,"ERROR: Invalid Format specified during SetInputType()\n");
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}
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WAVEFORMATEX *pwfex = (WAVEFORMATEX*)pmt->pbFormat;
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if (SUCCEEDED(hr))
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{
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if (pwfex->wFormatTag != WAVE_FORMAT_PCM ||
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pwfex->wBitsPerSample != 16)
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{
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hr = E_INVALIDARG;
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TraceI(1,"ERROR: Invalid Format specified during SetInputType()\n");
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}
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}
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if (SUCCEEDED(hr))
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{
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switch (pwfex->nChannels)
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{
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case 1:
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m_pfnSVerbProcess = SVerbMonoToMonoShort;
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break;
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case 2:
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m_pfnSVerbProcess = SVerbStereoToStereoShort;
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break;
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default:
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hr = E_FAIL;
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TraceI(1,"ERROR: Waves Reverb only supports mono or stereo\n");
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}
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}
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// Formats have been set. Initialize the reverb.
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//
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m_pbCoeffs = new BYTE[GetCoefsSize()];
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m_plStates = new long[(GetStatesSize() + sizeof(long) - 1)/ sizeof(long)];
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if (m_pbCoeffs == NULL || m_plStates == NULL)
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{
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hr = E_OUTOFMEMORY;
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TraceI(1,"ERROR: Out of memory\n");
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}
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if (SUCCEEDED(hr))
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{
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memset(m_plStates, 0, GetStatesSize());
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InitSVerb((float)m_ulSamplingRate, m_pbCoeffs);
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InitSVerbStates(m_plStates);
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m_fInitCPCMDMO = true;
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}
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Discontinuity();
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return hr;
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}
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HRESULT CDirectSoundWavesReverbDMO::Discontinuity()
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{
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HRESULT hr;
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DSFXWavesReverb wavesreverb;
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if (m_pbCoeffs && m_plStates)
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{
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memset(m_plStates, 0, GetStatesSize());
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InitSVerb((float)m_ulSamplingRate, m_pbCoeffs);
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InitSVerbStates(m_plStates);
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}
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hr = GetAllParameters(&wavesreverb);
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if (SUCCEEDED(hr))
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{
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hr = SetAllParameters(&wavesreverb);
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}
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if (SUCCEEDED(hr))
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{
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UpdateCoefficients();
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}
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return hr;
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::FBRProcess
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//
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HRESULT CDirectSoundWavesReverbDMO::FBRProcess(DWORD cSamples, BYTE *pIn, BYTE *pOut)
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{
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assert(m_pfnSVerbProcess);
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(*m_pfnSVerbProcess)(
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cSamples,
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(short*)pIn,
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(short*)pOut,
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m_pbCoeffs,
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m_plStates);
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return S_OK;
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::ProcessInPlace
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//
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HRESULT CDirectSoundWavesReverbDMO::ProcessInPlace(ULONG ulQuanta, LPBYTE pcbData, REFERENCE_TIME rtStart, DWORD dwFlags)
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{
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// Update parameter values from any curves that may be in effect.
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if (this->GetActiveParamBits())
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{
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this->UpdateActiveParams(rtStart, *this);
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this->UpdateCoefficients();
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}
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return FBRProcess(ulQuanta, pcbData, pcbData);
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::SetParam
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//
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STDMETHODIMP CDirectSoundWavesReverbDMO::SetParam(DWORD dwParamIndex,MP_DATA value)
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{
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HRESULT hr = SetParamInternal(dwParamIndex, value, false);
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if (SUCCEEDED(hr))
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this->UpdateCoefficients();
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return hr;
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::SetParamInternal
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//
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HRESULT CDirectSoundWavesReverbDMO::SetParamInternal(DWORD dwParamIndex, MP_DATA value, bool fSkipPasssingToParamManager)
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{
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switch (dwParamIndex)
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{
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case SVP_Gain:
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CHECK_PARAM(DSFX_WAVESREVERB_INGAIN_MIN, DSFX_WAVESREVERB_INGAIN_MAX);
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m_fGain = value;
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break;
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case SVP_Mix:
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CHECK_PARAM(DSFX_WAVESREVERB_REVERBMIX_MIN,DSFX_WAVESREVERB_REVERBMIX_MAX);
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m_fMix = value;
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break;
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case SVP_ReverbTime:
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CHECK_PARAM(DSFX_WAVESREVERB_REVERBTIME_MIN,DSFX_WAVESREVERB_REVERBTIME_MAX);
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m_fTime = value;
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break;
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case SVP_Ratio:
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CHECK_PARAM(DSFX_WAVESREVERB_HIGHFREQRTRATIO_MIN,DSFX_WAVESREVERB_HIGHFREQRTRATIO_MAX);
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m_fRatio = value;
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break;
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default:
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return E_FAIL;
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}
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// Let base class set this so it can handle all the rest of the param calls
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//
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HRESULT hr = fSkipPasssingToParamManager ? S_OK : CParamsManager::SetParam(dwParamIndex, value);
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return hr;
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}
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void CDirectSoundWavesReverbDMO::UpdateCoefficients()
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{
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// Waves Reverb has a single SetSVerb call that updates all parameters simultaneously instead of internal
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// state variables that are updated incrementally by changes to individual parameters as the other DMOs do.
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if (m_fInitCPCMDMO)
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{
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SetSVerb(
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m_fGain,
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m_fMix,
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m_fTime,
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m_fRatio,
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m_pbCoeffs);
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}
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::SetAllParameters
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//
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STDMETHODIMP CDirectSoundWavesReverbDMO::SetAllParameters(THIS_ LPCDSFXWavesReverb pwr)
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{
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HRESULT hr = S_OK;
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// Check that the pointer is not NULL
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if (pwr == NULL)
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{
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TraceI(1,"ERROR: pwr is NULL\n");
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hr = E_POINTER;
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}
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// Set the parameters
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if (SUCCEEDED(hr)) hr = SetParamInternal(SVP_Gain, pwr->fInGain, false);
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if (SUCCEEDED(hr)) hr = SetParamInternal(SVP_Mix, pwr->fReverbMix, false);
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if (SUCCEEDED(hr)) hr = SetParamInternal(SVP_ReverbTime, pwr->fReverbTime, false);
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if (SUCCEEDED(hr)) hr = SetParamInternal(SVP_Ratio, pwr->fHighFreqRTRatio, false);
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this->UpdateCoefficients();
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return hr;
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}
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//////////////////////////////////////////////////////////////////////////////
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//
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// CDirectSoundWavesReverbDMO::GetAllParameters
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//
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HRESULT CDirectSoundWavesReverbDMO::GetAllParameters(THIS_ LPDSFXWavesReverb pwr)
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{
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HRESULT hr = S_OK;
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MP_DATA mpd;
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if (pwr == NULL) return E_POINTER;
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#define GET_PARAM(x,y) \
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if (SUCCEEDED(hr)) { \
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hr = GetParam(x, &mpd); \
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if (SUCCEEDED(hr)) pwr->y = mpd; \
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}
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#define GET_PARAM_LONG(x,y) \
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if (SUCCEEDED(hr)) { \
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hr = GetParam(x, &mpd); \
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if (SUCCEEDED(hr)) pwr->y = (long)mpd; \
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}
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GET_PARAM(SVP_Gain, fInGain);
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GET_PARAM(SVP_Mix, fReverbMix);
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GET_PARAM(SVP_ReverbTime, fReverbTime);
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GET_PARAM(SVP_Ratio, fHighFreqRTRatio);
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return S_OK;
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}
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HRESULT CDirectSoundWavesReverbDMO::CheckInputType(const DMO_MEDIA_TYPE *pmt)
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{
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if (NULL == pmt) {
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return E_POINTER;
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}
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// Verify that this is PCM with a WAVEFORMATEX format specifier
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if ((pmt->majortype != MEDIATYPE_Audio) ||
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(pmt->subtype != MEDIASUBTYPE_PCM) ||
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(pmt->formattype != FORMAT_WaveFormatEx) ||
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(pmt->cbFormat < sizeof(WAVEFORMATEX)) ||
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(pmt->pbFormat == NULL))
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return DMO_E_TYPE_NOT_ACCEPTED;
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// Verify the wave format
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WAVEFORMATEX *pWave = (WAVEFORMATEX*)pmt->pbFormat;
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if (pWave->wFormatTag != WAVE_FORMAT_PCM ||
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pWave->wBitsPerSample != 16 ||
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pWave->nChannels != 1 && pWave->nChannels != 2)
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{
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return DMO_E_TYPE_NOT_ACCEPTED;
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}
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return NOERROR;
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}
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// GetClassID
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//
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// Part of the persistent file support. We must supply our class id
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// which can be saved in a graph file and used on loading a graph with
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// this fx in it to instantiate this filter via CoCreateInstance.
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//
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HRESULT CDirectSoundWavesReverbDMO::GetClassID(CLSID *pClsid)
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{
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if (pClsid==NULL) {
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return E_POINTER;
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}
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*pClsid = GUID_DSFX_WAVES_REVERB;
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return NOERROR;
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} // GetClassID
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