Files
Work/mixer/Main.cpp
2024-08-07 09:16:27 -04:00

274 lines
6.5 KiB
C++

#include <common/windows.hpp>
#include <mixer/mainwnd.hpp>
#include <sample/wave.hpp>
/*
//#include <mixer/SampleDataInterface.hpp>
//#include <mixer/SampleDataImpl.hpp>
//#include <mixer/SampleData.hpp>
typedef struct _SAMPLE_DATA
{
union
{
int b4:4;
int b8:8;
int b16:16;
int b32:32;
};
}SAMPLE_DATA;
typedef SAMPLE_DATA SampleData;
class PureSampleEx
{
public:
typedef enum BitsPerSample{Bit4=4,Bit8=8,Bit16=16,Bit32=32};
enum{BitsPerByte=8};
PureSampleEx();
virtual ~PureSampleEx();
PureSampleEx &operator=(const PureSampleEx &pureSampleEx);
bool operator==(const PureSampleEx &pureSampleEx);
bool convert(BitsPerSample bitsPerSample);
bool convert(PureSampleEx &pureSampleEx,BitsPerSample bitsPerSample);
bool initialize(BitsPerSample bitsPerSample,int numSamples);
bool getAt(int sampleIndex,SampleData &sampleData);
bool setAt(int sampleIndex,SampleData &sampleData);
bool isOkay(void)const;
DWORD getSizeBytes(void)const;
DWORD getNumSamples(void)const;
private:
static int getRequiredLength(BitsPerSample bitsPerSample,int numSamples);
static void translate(SampleData &srcData,BitsPerSample srcBitsPerSample,SampleData &dstData,BitsPerSample &dstBitsPerSample);
Array<BYTE> mSampleData;
BitsPerSample mBitsPerSample;
DWORD mNumSamples;
};
inline
PureSampleEx::PureSampleEx()
: mBitsPerSample(Bit8), mNumSamples(0)
{
}
inline
PureSampleEx::~PureSampleEx()
{
}
inline
bool PureSampleEx::initialize(BitsPerSample bitsPerSample,int numSamples)
{
mBitsPerSample=bitsPerSample;
mNumSamples=numSamples;
mSampleData.size(getRequiredLength(bitsPerSample,numSamples));
return true;
}
inline
int PureSampleEx::getRequiredLength(BitsPerSample bitsPerSample,int numSamples)
{
return ((float)bitsPerSample/(float)BitsPerByte)*numSamples;
}
inline
PureSampleEx &PureSampleEx::operator=(const PureSampleEx &pureSampleEx)
{
mSampleData=pureSampleEx.mSampleData;
mBitsPerSample=pureSampleEx.mBitsPerSample;
mNumSamples=pureSampleEx.mNumSamples;
return *this;
}
inline
bool PureSampleEx::operator==(const PureSampleEx &pureSampleEx)
{
if(mBitsPerSample!=pureSampleEx.mBitsPerSample || mNumSamples!=pureSampleEx.mNumSamples)return false;
return mSampleData==pureSampleEx.mSampleData;
}
bool PureSampleEx::convert(BitsPerSample bitsPerSample)
{
PureSampleEx pureSampleEx;
convert(pureSampleEx,bitsPerSample);
*this=pureSampleEx;
return true;
}
bool PureSampleEx::convert(PureSampleEx &pureSampleEx,BitsPerSample bitsPerSample)
{
SampleData srcData;
SampleData dstData;
if(!isOkay())return false;
pureSampleEx.initialize(bitsPerSample,getNumSamples());
for(int index=0;index<getNumSamples();index++)
{
getAt(index,srcData);
translate(srcData,mBitsPerSample,dstData,bitsPerSample);
pureSampleEx.setAt(index,dstData);
}
return pureSampleEx.isOkay();
}
void PureSampleEx::translate(SampleData &srcData,BitsPerSample srcBitsPerSample,SampleData &dstData,BitsPerSample &dstBitsPerSample)
{
if(Bit4==srcBitsPerSample)
{
if(Bit4==dstBitsPerSample)dstData.b4=srcData.b4;
else if(Bit8==dstBitsPerSample)dstData.b8=srcData.b4;
else if(Bit16==dstBitsPerSample)dstData.b16=srcData.b4;
else dstData.b32=srcData.b4;
}
else if(Bit8==srcBitsPerSample)
{
if(Bit4==dstBitsPerSample)dstData.b4=srcData.b8;
else if(Bit8==dstBitsPerSample)dstData.b8=srcData.b8;
else if(Bit16==dstBitsPerSample)dstData.b16=srcData.b8;
else dstData.b32=srcData.b8;
}
else if(Bit16==srcBitsPerSample)
{
if(Bit4==dstBitsPerSample)dstData.b4=srcData.b16;
else if(Bit8==dstBitsPerSample)dstData.b8=srcData.b16;
else if(Bit16==dstBitsPerSample)dstData.b16=srcData.b16;
else dstData.b32=srcData.b16;
}
else
{
if(Bit4==dstBitsPerSample)dstData.b4=srcData.b32;
else if(Bit8==dstBitsPerSample)dstData.b8=srcData.b32;
else if(Bit16==dstBitsPerSample)dstData.b16=srcData.b32;
else dstData.b32=srcData.b32;
}
}
inline
bool PureSampleEx::getAt(int sampleIndex,SampleData &sampleData)
{
float index;
int byteIndex;
if(sampleIndex>=mNumSamples)return false;
index=((float)mBitsPerSample/(float)BitsPerByte)*(float)sampleIndex;
byteIndex=index;
if(Bit4==mBitsPerSample)
{
BYTE b=mSampleData[byteIndex];
if(0.00==(float)byteIndex-index)sampleData.b4=b;
else sampleData.b4=(b>>4);
}
else if(Bit8==mBitsPerSample)
{
sampleData.b8=mSampleData[byteIndex];
}
else if(Bit16==mBitsPerSample)
{
sampleData.b16=*((WORD*)&mSampleData[byteIndex]);
}
else if(Bit32==mBitsPerSample)
{
sampleData.b32=*((DWORD*)&mSampleData[byteIndex]);
}
return true;
}
inline
bool PureSampleEx::setAt(int sampleIndex,SampleData &sampleData)
{
float index;
int byteIndex;
if(sampleIndex>=mNumSamples)return false;
index=((float)mBitsPerSample/(float)BitsPerByte)*(float)sampleIndex;
byteIndex=index;
if(Bit4==mBitsPerSample)
{
BYTE b=mSampleData[byteIndex];
if(0.00==(float)byteIndex-index)mSampleData[byteIndex]=(b&0xF0)|sampleData.b4;
else mSampleData[byteIndex]=(b&0x0F)|(((BYTE)sampleData.b4)<<4);
}
else if(Bit8==mBitsPerSample)
{
mSampleData[byteIndex]=sampleData.b8;
}
else if(Bit16==mBitsPerSample)
{
*((WORD*)&mSampleData[byteIndex])=sampleData.b16;
}
else if(Bit32==mBitsPerSample)
{
*((DWORD*)&mSampleData[byteIndex])=sampleData.b32;
}
return true;
}
inline
DWORD PureSampleEx::getSizeBytes(void)const
{
return getRequiredLength(mBitsPerSample,getNumSamples());
}
inline
DWORD PureSampleEx::getNumSamples(void)const
{
return mNumSamples;
}
inline
bool PureSampleEx::isOkay(void)const
{
return mNumSamples?true:false;
}
*/
// *************************************************************************************************
/*
PureSampleEx bm;
PureSampleEx bm2;
PureSampleEx bm3;
SampleData sampleData;
bm.initialize(PureSampleEx::Bit4,1000000);
for(int index=0;index<bm.getNumSamples();index++)
{
sampleData.b4=index;
bm.setAt(index,sampleData);
}
bm.getAt(1,sampleData);
bm.convert(bm2,PureSampleEx::Bit16);
bm3=bm2;
if(bm3==bm2)::OutputDebugString("Equal\n");
else ::OutputDebugString("Not Equal\n");
*/
/* WaveForm wave;
SmartPointer<SampleData> sample;
if(!wave.open("D:\\Program Files\\FruityLoops3\\Samples\\Packs\\Basic\\Kicks\\Kick.wav"))return 0;
FormatChunk &formatChunk=wave.getFormatChunk();
PureSample &pureSample=wave.getPureSample();
if(16==formatChunk.bitsPerSample())
{
UHUGE *sampleData=pureSample.sampleData();
}
else if(8==formatChunk.bitsPerSample())
{
UHUGE *sampleData=pureSample.sampleData();
}
*/
int PASCAL WinMain(HINSTANCE /*hInstance*/,HINSTANCE /*hPrevInstance*/,LPSTR lpszCmdLine,int /*nCmdShow*/)
{
MainWindow mainWindow;
return mainWindow.messageLoop();
}