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321 lines
9.3 KiB
321 lines
9.3 KiB
// Velocity.cpp : Implementation of CVelocityTool
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//
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// Copyright (C) 2000 Microsoft Corporation. All Rights Reserved
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//
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#include "dmusicc.h"
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#include "dmusici.h"
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#include "debug.h"
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#include "velocity.h"
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#include "toolhelp.h"
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CVelocityTool::CVelocityTool()
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{
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ParamInfo Params[DMUS_VELOCITY_PARAMCOUNT] =
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{
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{ DMUS_VELOCITY_STRENGTH, MPT_INT,MP_CAPS_ALL,0,100,100,
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L"Percent",L"Strength",NULL }, // Strength - 100% by default
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{ DMUS_VELOCITY_LOWLIMIT, MPT_INT,MP_CAPS_ALL,1,127,1,
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L"Velocity",L"Lower Limit",NULL }, // Lower limit - 1 by default
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{ DMUS_VELOCITY_HIGHLIMIT, MPT_INT,MP_CAPS_ALL,1,127,127,
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L"Velocity",L"Upper Limit",NULL }, // Upper limit - 127 by default
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{ DMUS_VELOCITY_CURVESTART, MPT_INT,MP_CAPS_ALL,1,127,1,
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L"Velocity",L"Curve Start",NULL }, // Curve start - 1 by default
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{ DMUS_VELOCITY_CURVEEND, MPT_INT,MP_CAPS_ALL,1,127,127,
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L"Velocity",L"Curve End",NULL }, // Curve End - 127 by default
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};
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InitParams(DMUS_VELOCITY_PARAMCOUNT,Params);
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m_fMusicTime = TRUE; // override default setting.
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}
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STDMETHODIMP_(ULONG) CVelocityTool::AddRef()
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{
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return InterlockedIncrement(&m_cRef);
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}
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STDMETHODIMP_(ULONG) CVelocityTool::Release()
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{
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if( 0 == InterlockedDecrement(&m_cRef) )
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{
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delete this;
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return 0;
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}
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return m_cRef;
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}
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STDMETHODIMP CVelocityTool::QueryInterface(const IID &iid, void **ppv)
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{
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if (iid == IID_IUnknown || iid == IID_IDirectMusicTool || iid == IID_IDirectMusicTool8)
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{
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*ppv = static_cast<IDirectMusicTool8*>(this);
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}
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else if(iid == IID_IPersistStream)
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{
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*ppv = static_cast<IPersistStream*>(this);
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}
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else if(iid == IID_IDirectMusicVelocityTool)
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{
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*ppv = static_cast<IDirectMusicVelocityTool*>(this);
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}
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else if(iid == IID_IMediaParams)
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{
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*ppv = static_cast<IMediaParams*>(this);
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}
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else if(iid == IID_IMediaParamInfo)
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{
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*ppv = static_cast<IMediaParamInfo*>(this);
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}
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else if(iid == IID_ISpecifyPropertyPages)
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{
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*ppv = static_cast<ISpecifyPropertyPages*>(this);
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}
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else
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{
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*ppv = NULL;
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return E_NOINTERFACE;
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}
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AddRef();
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return S_OK;
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}
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//////////////////////////////////////////////////////////////////////
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// IPersistStream
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STDMETHODIMP CVelocityTool::GetClassID(CLSID* pClassID)
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{
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if (pClassID)
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{
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*pClassID = CLSID_DirectMusicVelocityTool;
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return S_OK;
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}
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return E_POINTER;
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}
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//////////////////////////////////////////////////////////////////////
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// IPersistStream Methods:
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STDMETHODIMP CVelocityTool::IsDirty()
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{
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if (m_fDirty) return S_OK;
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else return S_FALSE;
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}
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STDMETHODIMP CVelocityTool::Load(IStream* pStream)
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{
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EnterCriticalSection(&m_CrSec);
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DWORD dwChunkID;
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DWORD dwSize;
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HRESULT hr = pStream->Read(&dwChunkID, sizeof(dwChunkID), NULL);
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hr = pStream->Read(&dwSize, sizeof(dwSize), NULL);
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if(SUCCEEDED(hr) && (dwChunkID == FOURCC_VELOCITY_CHUNK))
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{
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DMUS_IO_VELOCITY_HEADER Header;
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memset(&Header,0,sizeof(Header));
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hr = pStream->Read(&Header, min(sizeof(Header),dwSize), NULL);
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if (SUCCEEDED(hr))
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{
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SetParam(DMUS_VELOCITY_STRENGTH,(float) Header.lStrength);
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SetParam(DMUS_VELOCITY_LOWLIMIT,(float) Header.lLowLimit);
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SetParam(DMUS_VELOCITY_HIGHLIMIT,(float) Header.lHighLimit);
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SetParam(DMUS_VELOCITY_CURVESTART,(float) Header.lCurveStart);
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SetParam(DMUS_VELOCITY_CURVEEND,(float) Header.lCurveEnd);
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}
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}
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m_fDirty = FALSE;
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LeaveCriticalSection(&m_CrSec);
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return hr;
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}
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STDMETHODIMP CVelocityTool::Save(IStream* pStream, BOOL fClearDirty)
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{
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EnterCriticalSection(&m_CrSec);
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DWORD dwChunkID = FOURCC_VELOCITY_CHUNK;
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DWORD dwSize = sizeof(DMUS_IO_VELOCITY_HEADER);
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HRESULT hr = pStream->Write(&dwChunkID, sizeof(dwChunkID), NULL);
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if (SUCCEEDED(hr))
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{
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hr = pStream->Write(&dwSize, sizeof(dwSize), NULL);
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}
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if (SUCCEEDED(hr))
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{
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DMUS_IO_VELOCITY_HEADER Header;
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GetParamInt(DMUS_VELOCITY_STRENGTH,MAX_REF_TIME,&Header.lStrength);
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GetParamInt(DMUS_VELOCITY_LOWLIMIT,MAX_REF_TIME,&Header.lLowLimit);
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GetParamInt(DMUS_VELOCITY_HIGHLIMIT,MAX_REF_TIME,&Header.lHighLimit);
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GetParamInt(DMUS_VELOCITY_CURVESTART,MAX_REF_TIME,&Header.lCurveStart);
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GetParamInt(DMUS_VELOCITY_CURVEEND,MAX_REF_TIME,&Header.lCurveEnd);
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hr = pStream->Write(&Header, sizeof(Header),NULL);
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}
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if (fClearDirty) m_fDirty = FALSE;
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LeaveCriticalSection(&m_CrSec);
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return hr;
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}
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STDMETHODIMP CVelocityTool::GetSizeMax(ULARGE_INTEGER* pcbSize)
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{
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if (pcbSize == NULL)
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{
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return E_POINTER;
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}
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pcbSize->QuadPart = sizeof(DMUS_IO_VELOCITY_HEADER) + 8; // Data plus RIFF header.
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return S_OK;
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}
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STDMETHODIMP CVelocityTool::GetPages(CAUUID * pPages)
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{
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pPages->cElems = 1;
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pPages->pElems = (GUID *) CoTaskMemAlloc(sizeof(GUID));
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if (pPages->pElems == NULL)
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return E_OUTOFMEMORY;
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*(pPages->pElems) = CLSID_VelocityPage;
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return NOERROR;
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}
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/////////////////////////////////////////////////////////////////
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// IDirectMusicTool
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STDMETHODIMP CVelocityTool::ProcessPMsg( IDirectMusicPerformance* pPerf,
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DMUS_PMSG* pPMsg )
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{
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// returning S_FREE frees the message. If StampPMsg()
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// fails, there is no destination for this message so
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// free it.
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if(NULL == pPMsg->pGraph )
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{
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return DMUS_S_FREE;
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}
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if (FAILED(pPMsg->pGraph->StampPMsg(pPMsg)))
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{
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return DMUS_S_FREE;
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}
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// We need to know the time format so we can call GetParamInt() to read control parameters.
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REFERENCE_TIME rtTime;
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if (m_fMusicTime) rtTime = pPMsg->mtTime;
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else rtTime = pPMsg->rtTime;
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if( pPMsg->dwType == DMUS_PMSGT_NOTE )
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{
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DMUS_NOTE_PMSG *pNote = (DMUS_NOTE_PMSG *) pPMsg;
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long lStrength;
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long lLowLimit, lHighLimit, lCurveStart, lCurveEnd;
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GetParamInt(DMUS_VELOCITY_STRENGTH,rtTime,&lStrength);
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GetParamInt(DMUS_VELOCITY_LOWLIMIT,rtTime,&lLowLimit);
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GetParamInt(DMUS_VELOCITY_HIGHLIMIT,rtTime,&lHighLimit);
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GetParamInt(DMUS_VELOCITY_CURVESTART,rtTime,&lCurveStart);
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GetParamInt(DMUS_VELOCITY_CURVEEND,rtTime,&lCurveEnd);
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if (lCurveStart <= lCurveEnd)
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{
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long lNewVelocity;
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if (pNote->bVelocity <= lCurveStart)
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{
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lNewVelocity = lLowLimit;
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}
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else if (pNote->bVelocity >= lCurveEnd)
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{
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lNewVelocity = lHighLimit;
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}
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else
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{
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// For this case, compute the point on the line between (lCurveStart, lLowLimit) and (lCurveEnd, lHighLimit)
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lNewVelocity = lLowLimit + ((lHighLimit - lLowLimit) * (pNote->bVelocity - lCurveStart)) / (lCurveEnd - lCurveStart);
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}
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// Now, calculate the change we want to apply.
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lNewVelocity -= pNote->bVelocity;
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// Scale it to the amount we'll actually do.
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lNewVelocity = (lNewVelocity * lStrength) / 100;
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lNewVelocity += pNote->bVelocity;
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if (lNewVelocity < 1) lNewVelocity = 1;
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if (lNewVelocity > 127) lNewVelocity = 127;
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pNote->bVelocity = (BYTE) lNewVelocity;
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}
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}
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return DMUS_S_REQUEUE;
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}
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STDMETHODIMP CVelocityTool::Clone( IDirectMusicTool ** ppTool)
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{
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CVelocityTool *pNew = new CVelocityTool;
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if (pNew)
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{
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HRESULT hr = pNew->CopyParamsFromSource(this);
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if (SUCCEEDED(hr))
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{
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*ppTool = (IDirectMusicTool *) pNew;
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}
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else
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{
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delete pNew;
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}
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return hr;
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}
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else
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{
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return E_OUTOFMEMORY;
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}
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}
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STDMETHODIMP CVelocityTool::SetStrength(long lStrength)
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{
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return SetParam(DMUS_VELOCITY_STRENGTH,(float) lStrength);
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}
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STDMETHODIMP CVelocityTool::SetLowLimit(long lVelocityOut)
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{
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return SetParam(DMUS_VELOCITY_LOWLIMIT,(float) lVelocityOut);
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}
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STDMETHODIMP CVelocityTool::SetHighLimit(long lVelocityOut)
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{
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return SetParam(DMUS_VELOCITY_HIGHLIMIT,(float) lVelocityOut);
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}
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STDMETHODIMP CVelocityTool::SetCurveStart(long lVelocityIn)
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{
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return SetParam(DMUS_VELOCITY_CURVESTART,(float) lVelocityIn);
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}
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STDMETHODIMP CVelocityTool::SetCurveEnd(long lVelocityIn)
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{
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return SetParam(DMUS_VELOCITY_CURVEEND,(float) lVelocityIn);
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}
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STDMETHODIMP CVelocityTool::GetStrength(long * plStrength)
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{
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return GetParamInt(DMUS_VELOCITY_STRENGTH,MAX_REF_TIME,plStrength);
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}
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STDMETHODIMP CVelocityTool::GetLowLimit(long * plVelocityOut)
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{
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return GetParamInt(DMUS_VELOCITY_LOWLIMIT,MAX_REF_TIME,plVelocityOut);
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}
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STDMETHODIMP CVelocityTool::GetHighLimit(long * plVelocityOut)
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{
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return GetParamInt(DMUS_VELOCITY_HIGHLIMIT,MAX_REF_TIME,plVelocityOut);
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}
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STDMETHODIMP CVelocityTool::GetCurveStart(long * plVelocityIn)
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{
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return GetParamInt(DMUS_VELOCITY_CURVESTART,MAX_REF_TIME,plVelocityIn);
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}
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STDMETHODIMP CVelocityTool::GetCurveEnd(long * plVelocityIn)
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{
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return GetParamInt(DMUS_VELOCITY_CURVEEND,MAX_REF_TIME,plVelocityIn);
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}
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