graphicsdeviceinterface/directgdiadaptation/swsrc/swdirectgdidrawbmp.cpp
author Matt Plumtree <matt.plumtree@nokia.com>
Fri, 23 Apr 2010 17:57:02 +0100
branchNewGraphicsArchitecture
changeset 39 a4b63488e0b0
parent 0 5d03bc08d59c
permissions -rw-r--r--
Revise some of the compositor performance improvements to improve correctness. Implement pixel blending using a variation of Jim Blinn's no-division blending algorithm. Move transparency type simplification further up the composition code. Remove some unnecessary fields. Output to YUV implementation needs revision as it is actually converting from YUV (copy of source conversion code).

// Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies).
// All rights reserved.
// This component and the accompanying materials are made available
// under the terms of "Eclipse Public License v1.0"
// which accompanies this distribution, and is available
// at the URL "http://www.eclipse.org/legal/epl-v10.html".
//
// Initial Contributors:
// Nokia Corporation - initial contribution.
//
// Contributors:
//
// Description:
//

#include "swdirectgdiengine.h"
#include "swdirectgdibitmap.h"
#include "swdirectgdidriverimpl.h"
#include <bmalphablend.h>
#include <graphics/bitmap.inl>
#include <graphics/gdi/gdiinline.inl>

/**
@see MDirectGdiEngine::DrawBitmap(cosnt TRect&, const CFbsBitmap&, const TRect&)
@panic DGDIAdapter 7, if the bitmap is invalid (debug only). 
*/
void CSwDirectGdiEngine::DrawBitmap(const TRect& aDestRect,
									const CFbsBitmap& aSource,
									const TRect& aSourceRect)
	{
	if (aSource.ExtendedBitmapType() != KNullUid)
		{
		iDriver->SetError(KErrNotSupported); // Not supported for extended bitmaps
		return;
		}
	
	TRect destRect(aDestRect);
	destRect.Move(iOrigin);
	TRect targetRect(destRect);		 
	const CSwDirectGdiBitmap& srce = static_cast<const CSwDirectGdiBitmap&>(aSource);	

	CBitwiseBitmap* bmp = srce.Address();
	GRAPHICS_ASSERT_DEBUG(bmp,EDirectGdiPanicInvalidBitmap);

	const TInt limit = iDefaultRegionPtr->Count();
	const TBool opaqueSource = (!IsAlphaChannel(aSource.DisplayMode())) && (iDrawMode == DirectGdi::EDrawModePEN);
	if (opaqueSource)
		{
		iDrawMode = DirectGdi::EDrawModeWriteAlpha;
		}

	TRect clipRect(0,0,0,0);
	for (TInt count = 0; count < limit; count++)
		{
		clipRect = (*iDefaultRegionPtr)[count];
		if (!clipRect.Intersects(targetRect))
			{
			continue;
			}

		clipRect.Intersection(targetRect);
		DoDrawBitmap(destRect,bmp,aSource.DataAddress(),aSource.DataStride(),aSourceRect, clipRect);

		iDrawDevice->UpdateRegion(clipRect);
		}
	if (opaqueSource)
		{
		iDrawMode = DirectGdi::EDrawModePEN;
		}
	}

/*
Draws the bitmap. If aSrceRect equals aDestRect, a DoBitBlt() is performed instead.
@panic DGDIAdapter 1013, if the clipping rectangle is dully outside the destination bounds (debug only).
*/
void CSwDirectGdiEngine::DoDrawBitmap(const TRect& aDestRect,
							 CBitwiseBitmap* aBitmap,
							 TUint32* aBase,
							 TInt aStride,
							 const TRect& aSrceRect,
							 const TRect& aClipRect)
	{
#ifdef _DEBUG
	TRect deviceDestRect;
	iDrawDevice->GetDrawRect(deviceDestRect);
	GRAPHICS_ASSERT_DEBUG(aClipRect.iTl.iX >= deviceDestRect.iTl.iX, EDirectGdiPanicOutOfBounds);
	GRAPHICS_ASSERT_DEBUG(aClipRect.iTl.iY >= deviceDestRect.iTl.iY, EDirectGdiPanicOutOfBounds);
	GRAPHICS_ASSERT_DEBUG(aClipRect.iBr.iX <= deviceDestRect.iBr.iX, EDirectGdiPanicOutOfBounds);
	GRAPHICS_ASSERT_DEBUG(aClipRect.iBr.iY <= deviceDestRect.iBr.iY, EDirectGdiPanicOutOfBounds);
#endif

	if (aDestRect.Size() == aSrceRect.Size())
		{
		TRect clippedRect(aDestRect);
		clippedRect.Intersection(aClipRect);

		const TPoint destPoint(clippedRect.iTl);
		clippedRect.Move(aSrceRect.iTl - aDestRect.iTl);
		DoBitBlt(destPoint,aBitmap,aBase,aStride,clippedRect);

		return;
		}

	MFastBlend* fastBlend=NULL;
	if (FastBlendInterface(aBitmap,NULL,fastBlend)==KErrNone)
		{
		if (fastBlend->FastBlendBitmapScaled(aClipRect, aDestRect, aSrceRect, aBase, aStride, aBitmap->DisplayMode(), aBitmap->SizeInPixels(), GcDrawMode(iDrawMode), CFbsDrawDevice::ENoShadow)== KErrNone)
			{
			return;
			}
		}
	
	TUint32* scanLineBuffer = iDrawDevice->ScanLineBuffer();
	const TInt scanLineBytes = iDrawDevice->ScanLineBytes();
	TPtr8 scanLineDes(reinterpret_cast<TUint8*>(scanLineBuffer), scanLineBytes, scanLineBytes);

	// For EColor16MU targets, don't use EColor16MAP when draw mode is EDrawModeWriteAlpha.
	// Format conversion provides no performance gain and WriteLine expects EColor16MU 
	// in this case.
	const TDisplayMode dispMode = iDrawDevice->DisplayMode() == EColor16MU && iDrawMode == DirectGdi::EDrawModeWriteAlpha ? EColor16MU : iDrawDevice->ScanLineDisplayMode();

	TLinearDDA xLine;
	TInt bitmapXStart = 0;
	xLine.Construct(TPoint(aSrceRect.iTl.iX,aDestRect.iTl.iX),
					TPoint(aSrceRect.iBr.iX,aDestRect.iBr.iX),TLinearDDA::ELeft);
	xLine.JumpToYCoord(bitmapXStart,aClipRect.iTl.iX);

	TLinearDDA yLine;
	TPoint yCoord(aSrceRect.iTl.iY,aDestRect.iTl.iY);
	yLine.Construct(yCoord,TPoint(aSrceRect.iBr.iY,aDestRect.iBr.iY),TLinearDDA::ELeft);
	TInt dummy;
	yLine.JumpToYCoord2(dummy,aClipRect.iTl.iY);
	yCoord.SetXY(dummy,aClipRect.iTl.iY);

	const TInt srceWidth = aSrceRect.Width();
	const TInt destWidth = aDestRect.Width();
	const TInt clipWidth = aClipRect.Width();
	const TInt clipStrch = aClipRect.iTl.iX - aDestRect.iTl.iX;

	TLineScanningPosition lineScanPos(aBase);
	TBool finished = EFalse;
	const TPoint KZeroPoint(0,0);
	const CGraphicsContext::TDrawMode drawMode = GcDrawMode(iDrawMode);
	while (yCoord.iY < aClipRect.iBr.iY && !finished)
		{
		aBitmap->StretchScanLine(scanLineDes,TPoint(bitmapXStart,yCoord.iX),
								 clipStrch,clipWidth,destWidth,aSrceRect.iTl.iX,
								 srceWidth,KZeroPoint,dispMode,aBase,lineScanPos);
		if (yCoord.iY == aClipRect.iTl.iY)
			{
			aBitmap->SetCompressionBookmark(lineScanPos, aBase,NULL);
			}
		iDrawDevice->WriteLine(aClipRect.iTl.iX,yCoord.iY,clipWidth, scanLineBuffer, drawMode);
		finished = yLine.NextStep(yCoord);
		}
	}

/**
@see MDirectGdiEngine::DrawMaskedBitmap(cosnt TRect&, const CFbsBitmap&, const TRect&, const CFbsBitmap&, TBool)
@panic DGDIAdapter 7, if the source or mask bitmap is invalid (debug only).
*/
void CSwDirectGdiEngine::DrawBitmapMasked(const TRect& aDestRect,
						 const CFbsBitmap& aBitmap,
						 const TRect& aSourceRect,
						 const CFbsBitmap& aMaskBitmap,
						 TBool aInvertMask)
	{
	if ((aBitmap.ExtendedBitmapType() != KNullUid) || (aMaskBitmap.ExtendedBitmapType() != KNullUid))
		{
		iDriver->SetError(KErrNotSupported); // Not supported for extended bitmaps
		return;
		}

	aBitmap.BeginDataAccess();
	aMaskBitmap.BeginDataAccess();
	
	TRect destRect(aDestRect);
	destRect.Move(iOrigin);
	TRect targetRect(destRect);	
	const TBool opaqueSource = (!IsAlphaChannel(aBitmap.DisplayMode())) && (iDrawMode == DirectGdi::EDrawModePEN);
	
	CBitwiseBitmap* srcebmp = ((CSwDirectGdiBitmap&)aBitmap).Address();
	CBitwiseBitmap* maskbmp = ((CSwDirectGdiBitmap&)aMaskBitmap).Address();
	GRAPHICS_ASSERT_DEBUG(srcebmp,EDirectGdiPanicInvalidBitmap);
	GRAPHICS_ASSERT_DEBUG(maskbmp,EDirectGdiPanicInvalidBitmap);

	const TInt limit = iDefaultRegionPtr->Count();
	if (opaqueSource)
		{
		iDrawMode = DirectGdi::EDrawModeWriteAlpha;
		}
	TRect clipRect(0,0,0,0);
	for (TInt count = 0; count < limit; count++)
		{
		clipRect = (*iDefaultRegionPtr)[count];
		if (!clipRect.Intersects(targetRect))
			{
			continue;
			}
		clipRect.Intersection(targetRect);
		DoDrawBitmapMasked(destRect,
					   srcebmp,
					   aBitmap.DataAddress(),
					   aSourceRect,
					   maskbmp,
					   aMaskBitmap.DataAddress(),
					   aInvertMask,
					   clipRect);
		iDrawDevice->UpdateRegion(clipRect);
		}
	if (opaqueSource)
		{
		iDrawMode = DirectGdi::EDrawModePEN;
		}

	aBitmap.EndDataAccess(ETrue);
	aMaskBitmap.EndDataAccess(ETrue);
	}