mirror of
https://foundry.openuru.org/gitblit/r/CWE-ou-minkata.git
synced 2025-07-17 18:59:09 +00:00
Use premultiplied alpha for plDynamicTextMaps on GUI controls.
This fixes the irregular dark fringes around light text when not exactly pixel-aligned that are caused by independent interpolation of color and alpha. It also makes calculations simpler for things to come.
This commit is contained in:
committed by
Anne Marije v/d Meer
parent
b34577103e
commit
8c5286400a
@ -103,6 +103,7 @@ struct hsColorRGBA {
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hsColorRGBA& FromARGB32(uint32_t c);
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uint32_t ToARGB32() const;
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uint32_t ToARGB32Premultiplied() const;
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void Read(hsStream *stream);
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void Write(hsStream *stream) const;
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@ -141,6 +142,14 @@ inline uint32_t hsColorRGBA::ToARGB32() const
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| (uint32_t(b * 255.99f) << 0);
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}
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inline uint32_t hsColorRGBA::ToARGB32Premultiplied() const
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{
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return (uint32_t(a * 255.0f + 0.5f) << 24)
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| (uint32_t(a * r * 255.0f + 0.5f) << 16)
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| (uint32_t(a * g * 255.0f + 0.5f) << 8)
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| (uint32_t(a * b * 255.0f + 0.5f) << 0);
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}
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inline hsColorRGBA operator+(const hsColorRGBA& s, const hsColorRGBA& t)
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{
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hsColorRGBA res;
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@ -683,7 +683,7 @@ bool pfGUIControlMod::ISetUpDynTextMap( plPipeline *pipe )
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extraH -= height;
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fDynTextMap->Reset();
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fDynTextMap->Create( width, height, HasFlag( kXparentBgnd ), extraW, extraH );
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fDynTextMap->Create( width, height, HasFlag( kXparentBgnd ), extraW, extraH, true );
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fDynTextMap->SetFont( GetColorScheme()->fFontFace, GetColorScheme()->fFontSize, GetColorScheme()->fFontFlags,
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HasFlag( kXparentBgnd ) ? false : true );
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@ -694,6 +694,7 @@ bool pfGUIControlMod::ISetUpDynTextMap( plPipeline *pipe )
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// out with 1:1 mapping from textel to pixel
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plLayer *layer = (plLayer *)fDynTextLayer;
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layer->SetTransform( fDynTextMap->GetLayerTransform() );
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layer->SetBlendFlags( layer->GetBlendFlags() | hsGMatState::kBlendAlphaPremultiplied );
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// Let the derived classes do their things
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IPostSetUpDynTextMap();
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@ -85,7 +85,8 @@ enum hsGMatBlendFlags {
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kBlendEnvBumpNext = 0x800000,
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kBlendSubtract = 0x1000000,
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kBlendRevSubtract = 0x2000000,
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kBlendAlphaTestHigh = 0x4000000
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kBlendAlphaTestHigh = 0x4000000,
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kBlendAlphaPremultiplied = 0x8000000
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};
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enum hsGMatClampFlags {
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@ -76,7 +76,7 @@ plProfile_Extern(MemMipmaps);
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//// Constructor & Destructor /////////////////////////////////////////////////
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plDynamicTextMap::plDynamicTextMap()
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: fVisWidth(0), fVisHeight(0), fHasAlpha(false), fJustify(kLeftJustify),
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: fVisWidth(0), fVisHeight(0), fHasAlpha(false), fPremultipliedAlpha(false), fJustify(kLeftJustify),
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fInitBuffer(nullptr), fFontSize(0), fFontFlags(0),
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fFontAntiAliasRGB(false), fFontBlockRGB(false), fHasCreateBeenCalled(false)
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{
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@ -88,10 +88,10 @@ plDynamicTextMap::~plDynamicTextMap()
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Reset();
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}
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plDynamicTextMap::plDynamicTextMap( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth, uint32_t extraHeight )
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plDynamicTextMap::plDynamicTextMap( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth, uint32_t extraHeight, bool premultipliedAlpha )
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: fInitBuffer(nullptr)
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{
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Create( width, height, hasAlpha, extraWidth, extraHeight );
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Create( width, height, hasAlpha, extraWidth, extraHeight, premultipliedAlpha );
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}
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//// SetNoCreate //////////////////////////////////////////////////////////////
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@ -113,7 +113,7 @@ void plDynamicTextMap::SetNoCreate( uint32_t width, uint32_t height, bool has
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//// Create ///////////////////////////////////////////////////////////////////
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void plDynamicTextMap::Create( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth, uint32_t extraHeight )
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void plDynamicTextMap::Create( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth, uint32_t extraHeight, bool premultipliedAlpha )
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{
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SetConfig( hasAlpha ? kARGB32Config : kRGB32Config );
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@ -121,6 +121,7 @@ void plDynamicTextMap::Create( uint32_t width, uint32_t height, bool hasAlpha
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fVisWidth = (uint16_t)width;
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fVisHeight = (uint16_t)height;
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fHasAlpha = hasAlpha;
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fPremultipliedAlpha = premultipliedAlpha;
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for( fWidth = 1; fWidth < width + extraWidth; fWidth <<= 1 );
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for( fHeight = 1; fHeight < height + extraHeight; fHeight <<= 1 );
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@ -385,7 +386,7 @@ void plDynamicTextMap::ClearToColor( hsColorRGBA &color )
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if( !IIsValid() )
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return;
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uint32_t i, hex = color.ToARGB32();
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uint32_t i, hex = fPremultipliedAlpha ? color.ToARGB32Premultiplied() : color.ToARGB32();
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uint32_t *data = (uint32_t *)fImage;
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// Buffer is of size fVisWidth x fVisHeight, so we need a bit of work to do this right
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@ -500,6 +501,7 @@ void plDynamicTextMap::DrawString( uint16_t x, uint16_t y, const wchar_t *tex
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fCurrFont->SetRenderClipRect( 0, 0, fVisWidth, fVisHeight );
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fCurrFont->SetRenderColor( fFontColor.ToARGB32() );
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fCurrFont->SetRenderFlag( plFont::kRenderIntoAlpha, fFontBlockRGB );
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fCurrFont->SetRenderFlag( plFont::kRenderAlphaPremultiplied, fPremultipliedAlpha );
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fCurrFont->RenderString( this, x, y, text );
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}
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@ -520,6 +522,7 @@ void plDynamicTextMap::DrawClippedString( int16_t x, int16_t y, const wchar_t
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fCurrFont->SetRenderClipping( x, y, width, height );
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fCurrFont->SetRenderColor( fFontColor.ToARGB32() );
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fCurrFont->SetRenderFlag( plFont::kRenderIntoAlpha, fFontBlockRGB );
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fCurrFont->SetRenderFlag( plFont::kRenderAlphaPremultiplied, fPremultipliedAlpha );
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fCurrFont->RenderString( this, x, y, text );
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}
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@ -539,6 +542,7 @@ void plDynamicTextMap::DrawClippedString( int16_t x, int16_t y, const wchar_t
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SetJustify( fJustify );
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fCurrFont->SetRenderClipping( clipX, clipY, width, height );
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fCurrFont->SetRenderColor( fFontColor.ToARGB32() );
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fCurrFont->SetRenderFlag( plFont::kRenderAlphaPremultiplied, fPremultipliedAlpha );
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fCurrFont->RenderString( this, x, y, text );
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}
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@ -559,6 +563,7 @@ void plDynamicTextMap::DrawWrappedString( uint16_t x, uint16_t y, const wchar
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fCurrFont->SetRenderWrapping( x, y, width, height );
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fCurrFont->SetRenderColor( fFontColor.ToARGB32() );
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fCurrFont->SetRenderFlag( plFont::kRenderIntoAlpha, fFontBlockRGB );
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fCurrFont->SetRenderFlag( plFont::kRenderAlphaPremultiplied, fPremultipliedAlpha );
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fCurrFont->RenderString( this, x, y, text, lastX, lastY );
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}
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@ -639,7 +644,7 @@ void plDynamicTextMap::FillRect( uint16_t x, uint16_t y, uint16_t width, uint
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width = (uint16_t)(fWidth - x);
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// Gee, how hard can it REALLY be?
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uint32_t i, hex = color.ToARGB32();
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uint32_t i, hex = fPremultipliedAlpha ? color.ToARGB32Premultiplied() : color.ToARGB32();
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height += y;
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if( height > fHeight )
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height = (uint16_t)fHeight;
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@ -664,7 +669,7 @@ void plDynamicTextMap::FrameRect( uint16_t x, uint16_t y, uint16_t width, uin
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height = (uint16_t)(fHeight - y);
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// Shouldn't be much harder
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uint32_t i, hex = color.ToARGB32();
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uint32_t i, hex = fPremultipliedAlpha ? color.ToARGB32Premultiplied() : color.ToARGB32();
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uint32_t *dest1, *dest2;
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dest1 = GetAddr32( x, y );
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@ -699,6 +704,9 @@ void plDynamicTextMap::DrawImage( uint16_t x, uint16_t y, plMipmap *image, Dr
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else if( method == kImgSprite )
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opts.fFlags = plMipmap::kCopySrcAlpha;
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if( fPremultipliedAlpha )
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opts.fFlags |= plMipmap::kDestPremultiplied;
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Composite( image, x, y, &opts );
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/// HACK for now, since the alpha in the mipmap gets copied straight into the
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@ -737,6 +745,9 @@ void plDynamicTextMap::DrawClippedImage( uint16_t x, uint16_t y, plMipmap *im
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else if( method == kImgSprite )
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opts.fFlags = plMipmap::kCopySrcAlpha;
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if( fPremultipliedAlpha )
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opts.fFlags |= plMipmap::kDestPremultiplied;
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opts.fSrcClipX = srcClipX;
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opts.fSrcClipY = srcClipY;
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opts.fSrcClipWidth = srcClipWidth;
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@ -883,6 +894,7 @@ void plDynamicTextMap::Swap( plDynamicTextMap *other )
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// Swap DTMap info
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SWAP_ME( bool, fHasAlpha, other->fHasAlpha );
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SWAP_ME( bool, fPremultipliedAlpha, other->fPremultipliedAlpha );
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SWAP_ME( bool, fShadowed, other->fShadowed );
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SWAP_ME( Justify, fJustify, other->fJustify );
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@ -113,14 +113,14 @@ class plDynamicTextMap : public plMipmap
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plDynamicTextMap();
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plDynamicTextMap( uint32_t width, uint32_t height, bool hasAlpha = false, uint32_t extraWidth = 0, uint32_t extraHeight = 0 );
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plDynamicTextMap( uint32_t width, uint32_t height, bool hasAlpha = false, uint32_t extraWidth = 0, uint32_t extraHeight = 0, bool premultipliedAlpha = false );
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virtual ~plDynamicTextMap();
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CLASSNAME_REGISTER( plDynamicTextMap );
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GETINTERFACE_ANY( plDynamicTextMap, plMipmap );
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void Create( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth = 0, uint32_t extraHeight = 0 );
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void Create( uint32_t width, uint32_t height, bool hasAlpha, uint32_t extraWidth = 0, uint32_t extraHeight = 0, bool premultipliedAlpha = false );
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void SetNoCreate( uint32_t width, uint32_t height, bool hasAlpha );
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virtual void Reset( void );
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@ -221,7 +221,7 @@ class plDynamicTextMap : public plMipmap
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uint32_t *IAllocateOSSurface( uint16_t width, uint16_t height );
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void IDestroyOSSurface( void );
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bool fHasAlpha, fShadowed;
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bool fHasAlpha, fPremultipliedAlpha, fShadowed;
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Justify fJustify;
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plString fFontFace;
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@ -334,7 +334,9 @@ void plFont::IRenderString( plMipmap *mip, uint16_t x, uint16_t y, const wcha
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{
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if( fRenderInfo.fFlags & kRenderIntoAlpha )
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{
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if( ( fRenderInfo.fColor & 0xff000000 ) != 0xff000000 )
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if( fRenderInfo.fFlags & kRenderAlphaPremultiplied )
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fRenderInfo.fRenderFunc = &plFont::IRenderChar8To32AlphaPremultiplied;
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else if( ( fRenderInfo.fColor & 0xff000000 ) != 0xff000000 )
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fRenderInfo.fRenderFunc = &plFont::IRenderChar8To32Alpha;
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else
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fRenderInfo.fRenderFunc = &plFont::IRenderChar8To32FullAlpha;
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@ -1021,6 +1023,65 @@ void plFont::IRenderChar8To32Alpha( const plFont::plCharacter &c )
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}
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}
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void plFont::IRenderChar8To32AlphaPremultiplied( const plFont::plCharacter &c )
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{
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uint8_t *src = fBMapData + c.fBitmapOff;
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uint32_t *destPtr, *destBasePtr = (uint32_t *)( fRenderInfo.fDestPtr - c.fBaseline * fRenderInfo.fDestStride );
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int16_t x, y, thisHeight, xstart, thisWidth;
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uint8_t srcA, srcR, srcG, srcB;
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// Unfortunately for some fonts, their right kern value actually is
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// farther left than the right edge of the bitmap (think of overlapping
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// script fonts). Ideally, we should store the actual width of each char's
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// bitmap and use that here. However, it really shouldn't make too big of a
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// difference, especially since the dest pixels that we end up overlapping
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// should already be in the cache. If it does, time to upgrade the font
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// format (again)
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thisWidth = fWidth;// + (int32_t)c.fRightKern;
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if( thisWidth >= fRenderInfo.fMaxWidth )
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thisWidth = fRenderInfo.fMaxWidth;
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xstart = fRenderInfo.fClipRect.fX - fRenderInfo.fX;
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if( xstart < 0 )
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xstart = 0;
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srcA = (uint8_t)(( fRenderInfo.fColor >> 24 ) & 0x000000ff);
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srcR = (uint8_t)(( fRenderInfo.fColor >> 16 ) & 0x000000ff);
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srcG = (uint8_t)(( fRenderInfo.fColor >> 8 ) & 0x000000ff);
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srcB = (uint8_t)(( fRenderInfo.fColor ) & 0x000000ff);
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y = fRenderInfo.fClipRect.fY - fRenderInfo.fY + (int16_t)c.fBaseline;
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if( y < 0 )
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y = 0;
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else
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{
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destBasePtr = (uint32_t *)( (uint8_t *)destBasePtr + y*fRenderInfo.fDestStride );
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src += y*fRenderInfo.fNumCols;
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}
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thisHeight = fRenderInfo.fMaxHeight + (int16_t)c.fBaseline;
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if( thisHeight > (int16_t)c.fHeight )
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thisHeight = (int16_t)c.fHeight;
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for( ; y < thisHeight; y++ )
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{
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destPtr = destBasePtr;
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for( x = xstart; x < thisWidth; x++ )
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{
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uint32_t a = src[ x ];
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if (a != 0)
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{
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if (srcA != 0xff)
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a = (srcA*a + 127)/255;
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destPtr[ x ] = ( a << 24 ) | (((srcR*a + 127)/255) << 16) | (((srcG*a + 127)/255) << 8) | ((srcB*a + 127)/255);
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}
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}
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destBasePtr = (uint32_t *)( (uint8_t *)destBasePtr + fRenderInfo.fDestStride );
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src += fWidth;
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}
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}
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void plFont::IRenderCharNull( const plCharacter &c )
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{
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@ -116,6 +116,7 @@ class plFont : public hsKeyedObject
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// value between the renderColor and the destColor and
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// leave the alpha as-is
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// This flag has no effect on monochrome fonts
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kRenderAlphaPremultiplied = 0x00001000, // Destination has color values premultiplied by alpha
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};
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enum Flags
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@ -231,6 +232,7 @@ class plFont : public hsKeyedObject
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void IRenderChar8To32( const plCharacter &c );
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void IRenderChar8To32Alpha( const plCharacter &c );
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void IRenderChar8To32FullAlpha( const plCharacter &c );
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void IRenderChar8To32AlphaPremultiplied( const plCharacter &c );
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void IRenderCharNull( const plCharacter &c );
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public:
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@ -1746,6 +1746,18 @@ void plMipmap::Composite( plMipmap *source, uint16_t x, uint16_t y, plMipmap:
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for( pY = (uint16_t)srcHeight; pY > 0; pY-- )
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{
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memcpy( dstPtr, srcPtr, srcRowBytesToCopy );
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if( options->fFlags & kDestPremultiplied )
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{
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// multiply color values by alpha
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for( pX = 0; pX < srcWidth; pX++ )
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{
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srcAlpha = ((dstPtr[ pX ] >> 24) & 0x000000ff);
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dstPtr[ pX ] = ( srcAlpha << 24 )
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| (((((dstPtr[ pX ] >> 16) & 0xff)*srcAlpha + 127)/255) << 16)
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| (((((dstPtr[ pX ] >> 8) & 0xff)*srcAlpha + 127)/255) << 8)
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| (((((dstPtr[ pX ] ) & 0xff)*srcAlpha + 127)/255) );
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}
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}
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dstPtr += dstRowBytes >> 2;
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srcPtr += srcRowBytes >> 2;
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}
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@ -1777,7 +1789,15 @@ void plMipmap::Composite( plMipmap *source, uint16_t x, uint16_t y, plMipmap:
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{
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srcAlpha = options->fOpacity * ( ( srcPtr[ pX ] >> 16 ) & 0x0000ff00 ) / 255 / 256;
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if( srcAlpha != 0 )
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dstPtr[ pX ] = ( srcPtr[ pX ] & 0x00ffffff ) | ( srcAlpha << 24 );
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{
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if( options->fFlags & kDestPremultiplied )
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dstPtr[ pX ] = ( srcAlpha << 24 )
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| (((((srcPtr[ pX ] >> 16) & 0xff)*srcAlpha + 127)/255) << 16)
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| (((((srcPtr[ pX ] >> 8) & 0xff)*srcAlpha + 127)/255) << 8)
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| (((((srcPtr[ pX ] ) & 0xff)*srcAlpha + 127)/255) );
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else
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dstPtr[ pX ] = ( srcPtr[ pX ] & 0x00ffffff ) | ( srcAlpha << 24 );
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}
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}
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dstPtr += dstRowBytes >> 2;
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srcPtr += srcRowBytes >> 2;
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@ -234,11 +234,14 @@ class plMipmap : public plBitmap
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enum CompositeFlags
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{
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kForceOpaque = 0x0001, // Copy src pixels raw, force dest alphas to opaque
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kCopySrcAlpha = 0x0002, // Copy the src pixels raw, including alphas, overwrite dest
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kBlendSrcAlpha = 0x0004, // Blend src pixels onto dest using src alpha, dest alpha = src alpha
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kMaskSrcAlpha = 0x0008, // Same as copySrcAlpha, but dest is untouched when src alpha = 0
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kBlendWriteAlpha= 0x0010 // Like default (0), but writes dest alpha values
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kForceOpaque = 0x0001, // Copy src pixels raw, force dest alphas to opaque
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kCopySrcAlpha = 0x0002, // Copy the src pixels raw, including alphas, overwrite dest
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kBlendSrcAlpha = 0x0004, // Blend src pixels onto dest using src alpha, dest alpha = src alpha
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kMaskSrcAlpha = 0x0008, // Same as copySrcAlpha, but dest is untouched when src alpha = 0
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kBlendWriteAlpha = 0x0010, // Like default (0), but writes dest alpha values
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kDestPremultiplied = 0x0020, // Dest has color premultiplied by alpha
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// (src always assumed nonpremultiplied for now)
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};
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class CompositeOptions
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@ -7211,12 +7211,26 @@ void plDXPipeline::IHandleFirstStageBlend()
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fD3DDevice->SetRenderState( D3DRS_ALPHABLENDENABLE, TRUE );
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if( fLayerState[0].fBlendFlags & hsGMatState::kBlendInvertFinalAlpha )
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{
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fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_INVSRCALPHA );
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if( fLayerState[0].fBlendFlags & hsGMatState::kBlendAlphaPremultiplied )
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||||
{
|
||||
fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_ONE );
|
||||
}
|
||||
else
|
||||
{
|
||||
fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_INVSRCALPHA );
|
||||
}
|
||||
fD3DDevice->SetRenderState( D3DRS_DESTBLEND, D3DBLEND_SRCALPHA );
|
||||
}
|
||||
else
|
||||
{
|
||||
fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_SRCALPHA );
|
||||
if( fLayerState[0].fBlendFlags & hsGMatState::kBlendAlphaPremultiplied )
|
||||
{
|
||||
fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_ONE );
|
||||
}
|
||||
else
|
||||
{
|
||||
fD3DDevice->SetRenderState( D3DRS_SRCBLEND, D3DBLEND_SRCALPHA );
|
||||
}
|
||||
fD3DDevice->SetRenderState( D3DRS_DESTBLEND, D3DBLEND_INVSRCALPHA );
|
||||
}
|
||||
break;
|
||||
|
Reference in New Issue
Block a user