Debugger: NTSC: Import 16x1 and 64x1 bmp for palette

This commit is contained in:
michaelangel007 2016-10-14 12:12:02 -07:00
parent c96b935fff
commit 8c0f20bc84

View File

@ -5031,6 +5031,190 @@ Update_t CmdNTSC (int nArgs)
#endif
};
class Transpose64x1
{
public:
static void transposeTo64x256( const uint8_t *pSrc, uint8_t *pDst )
{
const uint32_t nBPP = 4; // bytes per pixel
// Expand y from 1 to 256 rows
const size_t nBytesPerScanLine = 16 * 4 * nBPP; // 16 colors * 4 phases
for( int y = 0; y < 256; y++ )
memcpy( pDst + y*nBytesPerScanLine, pSrc, nBytesPerScanLine );
}
};
// Transpose from 16x1 to 4096x16
class Transpose16x1
{
public:
/*
.Column
. Phases 0..3
. X P0 P1 P2 P3
. 0 0 0 0 0
. 1 1 8 4 2
. 2 2 1 8 4
. 3 3 9 C 6
. 4 4 2 1 8
. 5 5 A 5 A
. 6 6 3 9 C
. 7 7 B D E
. 8 8 4 2 1
. 9 9 C 6 3
. A A 5 A 5
. B B D E 7
. C C 6 3 9
. D D E 7 B
. E E 7 B D
. F F F F F
.
. 1 2 4 8 Delta
*/
static void transposeTo64x1( const uint8_t *pSrc, uint8_t *pDst )
{
const uint32_t *pPhase0 = (uint32_t*) pSrc;
/* */ uint32_t *pTmp = (uint32_t*) pDst;
#if 1 // Loop
// Expand x from 16 colors (single phase) to 64 colors (16 * 4 phases)
for( int iPhase = 0; iPhase < 4; iPhase++ )
{
int phase = iPhase;
if (iPhase == 1) phase = 3;
if (iPhase == 3) phase = 1;
int mul = (1 << phase); // Mul: *1 *8 *4 *2
for( int iDstX = 0; iDstX < 16; iDstX++ )
{
int iSrcX = (iDstX * mul) % 15; // Delta: +1 +2 +4 +8
if (iDstX == 15)
iSrcX = 15;
#if 0 // _DEBUG
char text[ 128 ];
sprintf( text, "[ %X ] = [ %X ]\n", iDstX, iSrcX );
OutputDebugStringA( text );
#endif
pTmp[ iDstX + 16*iPhase ] = pPhase0[ iSrcX ];
}
}
#else // Manual Loop unrolled
const uint32_t nBPP = 4; // bytes per pixel
const size_t nBytesPerScanLine = 16 * 4 * nBPP; // 16 colors * 4 phases
memcpy( pDst, pSrc, nBytesPerScanLine );
int iPhase = 1;
int iDstX = iPhase * 16;
pTmp[ iDstX + 0x0 ] = pPhase0[ 0x0 ];
pTmp[ iDstX + 0x1 ] = pPhase0[ 0x8 ];
pTmp[ iDstX + 0x2 ] = pPhase0[ 0x1 ];
pTmp[ iDstX + 0x3 ] = pPhase0[ 0x9 ];
pTmp[ iDstX + 0x4 ] = pPhase0[ 0x2 ];
pTmp[ iDstX + 0x5 ] = pPhase0[ 0xA ];
pTmp[ iDstX + 0x6 ] = pPhase0[ 0x3 ];
pTmp[ iDstX + 0x7 ] = pPhase0[ 0xB ];
pTmp[ iDstX + 0x8 ] = pPhase0[ 0x4 ];
pTmp[ iDstX + 0x9 ] = pPhase0[ 0xC ];
pTmp[ iDstX + 0xA ] = pPhase0[ 0x5 ];
pTmp[ iDstX + 0xB ] = pPhase0[ 0xD ];
pTmp[ iDstX + 0xC ] = pPhase0[ 0x6 ];
pTmp[ iDstX + 0xD ] = pPhase0[ 0xE ];
pTmp[ iDstX + 0xE ] = pPhase0[ 0x7 ];
pTmp[ iDstX + 0xF ] = pPhase0[ 0xF ];
iPhase = 2;
iDstX = iPhase * 16;
pTmp[ iDstX + 0x0 ] = pPhase0[ 0x0 ];
pTmp[ iDstX + 0x1 ] = pPhase0[ 0x4 ];
pTmp[ iDstX + 0x2 ] = pPhase0[ 0x8 ];
pTmp[ iDstX + 0x3 ] = pPhase0[ 0xC ];
pTmp[ iDstX + 0x4 ] = pPhase0[ 0x1 ];
pTmp[ iDstX + 0x5 ] = pPhase0[ 0x5 ];
pTmp[ iDstX + 0x6 ] = pPhase0[ 0x9 ];
pTmp[ iDstX + 0x7 ] = pPhase0[ 0xD ];
pTmp[ iDstX + 0x8 ] = pPhase0[ 0x2 ];
pTmp[ iDstX + 0x9 ] = pPhase0[ 0x6 ];
pTmp[ iDstX + 0xA ] = pPhase0[ 0xA ];
pTmp[ iDstX + 0xB ] = pPhase0[ 0xE ];
pTmp[ iDstX + 0xC ] = pPhase0[ 0x3 ];
pTmp[ iDstX + 0xD ] = pPhase0[ 0x7 ];
pTmp[ iDstX + 0xE ] = pPhase0[ 0xB ];
pTmp[ iDstX + 0xF ] = pPhase0[ 0xF ];
iPhase = 3;
iDstX = iPhase * 16;
pTmp[ iDstX + 0x0 ] = pPhase0[ 0x0 ];
pTmp[ iDstX + 0x1 ] = pPhase0[ 0x2 ];
pTmp[ iDstX + 0x2 ] = pPhase0[ 0x4 ];
pTmp[ iDstX + 0x3 ] = pPhase0[ 0x6 ];
pTmp[ iDstX + 0x4 ] = pPhase0[ 0x8 ];
pTmp[ iDstX + 0x5 ] = pPhase0[ 0xA ];
pTmp[ iDstX + 0x6 ] = pPhase0[ 0xC ];
pTmp[ iDstX + 0x7 ] = pPhase0[ 0xE ];
pTmp[ iDstX + 0x8 ] = pPhase0[ 0x1 ];
pTmp[ iDstX + 0x9 ] = pPhase0[ 0x3 ];
pTmp[ iDstX + 0xA ] = pPhase0[ 0x5 ];
pTmp[ iDstX + 0xB ] = pPhase0[ 0x7 ];
pTmp[ iDstX + 0xC ] = pPhase0[ 0x9 ];
pTmp[ iDstX + 0xD ] = pPhase0[ 0xB ];
pTmp[ iDstX + 0xE ] = pPhase0[ 0xD ];
pTmp[ iDstX + 0xF ] = pPhase0[ 0xF ];
#endif
}
/*
. Source layout = 16x1 @ 32-bit
. | phase 0 |
. +----+----+----+----+----+----+----+----+----+----+----+----+----+----+----+----+
. |BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA|BGRA| row 0
. +----+----+----+----+----+----+----+----+----+----+----+----+----+----+----+----+
. \ 0/ \ 1/ \ 2/ \ 3/ \ 4/ \ 5/ \ 6/ \ 7/ \ 8/ \ 9/ \ A/ \ B/ \ C/ \ D/ \ E/ \ F/
.
. |<----------------------------------- 16 px ----------------------------------->|
. 64 byte
.
. Destination layout = 4096x4 @ 32-bit
. +----+----+----+----+----+
. |BGRA|BGRA|BGRA|... |BGRA| phase 0
. +----+----+----+----+----+
. |BGRA|BGRA|BGRA|... |BGRA| phase 1
. +----+----+----+----+----|
. |BGRA|BGRA|BGRA|... |BGRA| phase 2
. +----+----+----+----+----+
. |BGRA|BGRA|BGRA|... |BGRA| phase 3
. +----+----+----+----+----+
. 0 1 2 4095 column
*/
/*
static void transposeFrom16x1( const uint8_t *pSrc, uint8_t *pDst )
{
const uint8_t *pTmp = pSrc;
const uint32_t nBPP = 4; // bytes per pixel
for( int x = 0; x < 16; x++ )
{
pTmp = pSrc + (x * nBPP); // dst is 16-px column
for( int y = 0; y < 256; y++ )
{
*pDst++ = pTmp[0];
*pDst++ = pTmp[1];
*pDst++ = pTmp[2];
*pDst++ = pTmp[3];
}
}
/*
// we duplicate phase 0 a total of 4 times
const size_t nBytesPerScanLine = 4096 * nBPP;
for( int iPhase = 1; iPhase < 4; iPhase++ )
memcpy( pDst + iPhase*nBytesPerScanLine, pDst, nBytesPerScanLine );
}
*/
};
class Transpose4096x4
{
/*
@ -5059,10 +5243,32 @@ Update_t CmdNTSC (int nArgs)
. +----+----+----+----+----+----+----+----+
. \ 16 px / \ 16 px / \ 16 px / \ 16 px / = 64 pixels
. 64 byte 64 byte 64 byte 64 byte
.
.Column
. Phases 0..3
. X P0 P1 P2 P3
. 0 0 0 0 0
. 1 1 8 4 2
. 2 2 1 8 4
. 3 3 9 C 6
. 4 4 2 1 8
. 5 5 A 5 A
. 6 6 3 9 C
. 7 7 B D E
. 8 8 4 2 1
. 9 9 C 6 3
. A A 5 A 5
. B B D E 7
. C C 6 3 9
. D D E 7 B
. E E 7 B D
. F F F F F
.
. 1 2 4 8 Delta
*/
public:
static void transposeTo64x256( size_t nSize, const uint8_t *pSrc, uint8_t *pDst )
static void transposeTo64x256( const uint8_t *pSrc, uint8_t *pDst )
{
/* */ uint8_t *pTmp = pDst;
const uint32_t nBPP = 4; // bytes per pixel
@ -5082,7 +5288,7 @@ Update_t CmdNTSC (int nArgs)
}
}
static void transposeFrom64x256( size_t nSize, const uint8_t *pSrc, uint8_t *pDst )
static void transposeFrom64x256( const uint8_t *pSrc, uint8_t *pDst )
{
const uint8_t *pTmp = pSrc;
const uint32_t nBPP = 4; // bytes per pixel
@ -5133,7 +5339,7 @@ Update_t CmdNTSC (int nArgs)
{
// need to save 32-bit bpp as 24-bit bpp
// VideoSaveScreenShot()
Transpose4096x4::transposeTo64x256( g_nChromaSize, (uint8_t*) pChromaTable, pSwizzled );
Transpose4096x4::transposeTo64x256( (uint8_t*) pChromaTable, pSwizzled );
// Write BMP header
WinBmpHeader_t bmp, *pBmp = &bmp;
@ -5176,20 +5382,31 @@ Update_t CmdNTSC (int nArgs)
uint8_t *pSwizzled = new uint8_t[ g_nChromaSize ];
bool bSwizzle = true;
WinBmpHeader4_t bmp, *pBmp = &bmp;
if( iFileType == TYPE_BMP )
{
WinBmpHeader4_t bmp, *pBmp = &bmp;
fread( pBmp, sizeof( WinBmpHeader4_t ), 1, pFile );
fseek( pFile, pBmp->nOffsetData, SEEK_SET );
if( 0
|| (pBmp->nWidthPixels != 64 )
|| (pBmp->nHeightPixels != 256)
|| (pBmp->nBitsPerPixel != 32 )
|| (pBmp->nOffsetData > nFileSize)
)
if (pBmp->nBitsPerPixel != 32)
{
strcpy( aStatusText, "Bitmap not 64x256@32" );
strcpy( aStatusText, "Bitmap not 32-bit RGBA" );
goto _error;
}
if (pBmp->nOffsetData > nFileSize)
{
strcpy( aStatusText, "Bad BITMAP: Data > file size !?" );
goto _error;
}
if( !
( ((pBmp->nWidthPixels == 64 ) && (pBmp->nHeightPixels == 256))
|| ((pBmp->nWidthPixels == 64 ) && (pBmp->nHeightPixels == 1))
|| ((pBmp->nWidthPixels == 16 ) && (pBmp->nHeightPixels == 1))
))
{
strcpy( aStatusText, "Bitmap not 64x256, 64x1, or 16x1" );
goto _error;
}
@ -5221,7 +5438,30 @@ Update_t CmdNTSC (int nArgs)
if( iFileType == TYPE_BMP )
{
Transpose4096x4::transposeFrom64x256( g_nChromaSize, pSwizzled, (uint8_t*) pChromaTable );
if (pBmp->nHeightPixels == 1)
{
uint8_t *pTemp64x256 = new uint8_t[ 64 * 256 * 4 ];
memset( pTemp64x256, 0, g_nChromaSize );
//Transpose16x1::transposeFrom16x1( pSwizzled, (uint8_t*) pChromaTable );
if (pBmp->nWidthPixels == 16)
{
Transpose16x1::transposeTo64x1( pSwizzled, pTemp64x256 );
Transpose64x1::transposeTo64x256( pTemp64x256, pTemp64x256 );
}
else
if (pBmp->nWidthPixels == 64)
Transpose64x1::transposeTo64x256( pSwizzled, pTemp64x256 );
Transpose4096x4::transposeFrom64x256( pTemp64x256, (uint8_t*) pChromaTable );
delete [] pTemp64x256;
}
else
Transpose4096x4::transposeFrom64x256( pSwizzled, (uint8_t*) pChromaTable );
if( bSwizzle )
Swizzle32::ABGRswizzleBGRA( g_nChromaSize, (uint8_t*) pChromaTable, (uint8_t*) pChromaTable );
}