Files
loongoffice/drawinglayer/source/processor3d/zbufferprocessor3d.cxx
Michael Meeks 44cfc7cb65 re-base on ALv2 code. Includes (at least) relevant parts of:
linecap: Reintegrating finished LineCap feature
    Patch contributed by Regina Henschel
    http://svn.apache.org/viewvc?view=revision&revision=1232507

    Patches contributed by Sven Jacobi
    impress212: #i81610# fixed animation export
    http://svn.apache.org/viewvc?view=revision&revision=1167620
    impress212: drawinglayer gbuild environment changes
    http://svn.apache.org/viewvc?view=revision&revision=1167627
    http://svn.apache.org/viewvc?view=revision&revision=1167628
    impress212: DffPropSet -> minor code improvements, removing table
    http://svn.apache.org/viewvc?view=revision&revision=1167634
    impress212: #158494# fixed excel import (text rotation)
    http://svn.apache.org/viewvc?view=revision&revision=1167638

    Patches contributed by Armin Le Grand
    Svg: Reintegrated Svg replacement from /branches/alg/svgreplavement
    http://svn.apache.org/viewvc?view=revision&revision=1220836
    #118728# changed indentifying definitions for Svg file detection
    http://svn.apache.org/viewvc?view=revision&revision=1229961
    #118838# LineGeometry creation for complicated cases optimized to
	create single Polygons
    http://svn.apache.org/viewvc?view=revision&revision=1236232
    #119176# corrected file type detection for SVG for svg files
	without xml header
    http://svn.apache.org/viewvc?view=revision&revision=1309445
    #118728# Extended Svg file detection
    http://svn.apache.org/viewvc?view=revision&revision=1230531
    #118529# solve break converters and convert commands for OLEs and images
    http://svn.apache.org/viewvc?view=revision&revision=1186168
    svg: added WaE changes from branch svgreplacement to trunc
    http://svn.apache.org/viewvc?view=revision&revision=1222974
    svg: corrected missing member initialization
    http://svn.apache.org/viewvc?view=revision&revision=1226134
    fix for #118525#: Using primitives for chart sub-geometry visualisation
    http://svn.apache.org/viewvc?view=revision&revision=1226879
    #118898# Adapted ImpGraphic::ImplGetBitmap to correctly convert
	metafiles to bitmapEx ...
    http://svn.apache.org/viewvc?view=revision&revision=1293316
    fix for #118525#: removed no longer used variable maOriginalMapMode, one
    more exception eliminated
    http://svn.apache.org/viewvc?view=revision&revision=1227097
    #16758# Added buffering to the VDev usages of the VclProcessor2D derivates...
    http://svn.apache.org/viewvc?view=revision&revision=1229521
    #116758# Secured VDev buffer device to Vcl deinit
    http://svn.apache.org/viewvc?view=revision&revision=1230574
    #116758# added remembering allocated VDevs for VDevBuffer to be able to also
    delete these when vcl goes down; it should never happen, but You never know
    http://svn.apache.org/viewvc?view=revision&revision=1230927
    #118730# Changed SvgClipPathNode to use MaskPrimitive2D for primitive
	representation instead of TransparencePrimitive2D
    http://svn.apache.org/viewvc?view=revision&revision=1231198
    #118822# secured 3D geometry creation (slices) by subdividing the 2D
    source polyPolygon early
    http://svn.apache.org/viewvc?view=revision&revision=1234749
    #118829# enhanced Svg gradient quality, obstacles avoided
    http://svn.apache.org/viewvc?view=revision&revision=1235361
    #118834# Unified usage of TextBreakupHelper as single tooling class
    for i18n text primitive breakup
    http://svn.apache.org/viewvc?view=revision&revision=1236110
    #118853# added square pixel size limit to conversion of
    TransparencePrimitive2D to Metafile action
    http://svn.apache.org/viewvc?view=revision&revision=1237656
    #118824# coreccted mirroring and boundrect when the graphicmanager
    is used for bitmap output
    http://svn.apache.org/viewvc?view=revision&revision=1240097
    #115092# Corrected VclProcessor2D::RenderPolygonStrokePrimitive2D for
    various optimization scenarios
    http://svn.apache.org/viewvc?view=revision&revision=1241434
    #118783# Corrected errors in ID strings, corrected Svg line/fill export,
    corrected polygon close state
    http://svn.apache.org/viewvc?view=revision&revision=1232006
    #118796# corrected null-pointer usage in SVG text exporter
    http://svn.apache.org/viewvc?view=revision&revision=1240262
    #118729# Use GraphicStreamUrl and GraphicUrl to allow multi image
    import with linked graphics, too
    http://svn.apache.org/viewvc?view=revision&revision=1229962
    #118898# corrected error in GDIMetaFile::GetBoundRect in handling
    MetaFloatTransparentAction
    http://svn.apache.org/viewvc?view=revision&revision=1293349
    #118855# Corrected handling of possibly created empty clipRegions
    after PolyPolygon clipping
    http://svn.apache.org/viewvc?view=revision&revision=1237725
	#115962# Better (but not yet optimal, see comments in task) handling
	of MetaFloatTransparentAction in PDF export
	http://svn.apache.org/viewvc?view=revision&revision=1241078
    IP clearance: #118466# This patch removes librsvg, libcroco, libgsf, ...
    http://svn.apache.org/viewvc?view=revision&revision=1200879
    118779# Added svg content streaming in/out to ImpGraphic stream operators
    http://svn.apache.org/viewvc?view=revision&revision=1231908
    linecap: correctons for WaE and mac drawing
    http://svn.apache.org/viewvc?view=revision&revision=1232793
    svg: uses current system Dpi for Svg replacement image creation
    http://svn.apache.org/viewvc?view=revision&revision=1233948

    Patches contributed by Mathias Bauer (and others)
    gnumake4 work variously
    http://svn.apache.org/viewvc?view=revision&revision=1394326
    http://svn.apache.org/viewvc?view=revision&revision=1396797
    http://svn.apache.org/viewvc?view=revision&revision=1397315
    http://svn.apache.org/viewvc?view=revision&revision=1394326
    Remove duplicate header includes.
    cws mba34issues01: #i117720#: convert assertion into warning
    http://svn.apache.org/viewvc?view=revision&revision=1172352
    118485 - Styles for OLEs are not saved. Submitted by Armin Le Grand.
    http://svn.apache.org/viewvc?view=revision&revision=1182166
    cws mba34issues01: #i117714#: remove assertion
    http://svn.apache.org/viewvc?view=revision&revision=1172357

    Patch contributed by Jurgen Schmidt
    add some additional checks to ensure proper reading operations
    http://svn.apache.org/viewvc?view=revision&revision=1209022
    mostly prefer our stream / bounds checking work.

    Patches contributed by Herbert Duerr
    #i118816# add clarifying comment regarding Font::*Color*() methods
    http://svn.apache.org/viewvc?view=revision&revision=1233833
    extend macro->string handling for empty strings
    http://svn.apache.org/viewvc?view=revision&revision=1175801
    avoid magic constants for SALCOLOR_NONE
    http://svn.apache.org/viewvc?view=revision&revision=1177543
    initialize slant properly in ImplFontMetricData constructor (author=iorsh)
    http://svn.apache.org/viewvc?view=revision&revision=1177551
    #i118675# make check for extension updates more stable
    http://svn.apache.org/viewvc?view=revision&revision=1214797
    #a118617# remove VBasicEventListener.dll binary
    There are no known users depending on its CLSID
    http://svn.apache.org/viewvc?view=revision&revision=1203697

    Patches contributed by Ariel Constenla-Haile
    Fix build breaker on Linux/gcc
    http://svn.apache.org/viewvc?view=revision&revision=1221104
    Fix crash when trying to instantiate css.graphic.GraphicRasterizer_RSVG
    http://svn.apache.org/viewvc?view=revision&revision=1215559

    Patches contributed by Oliver-Rainer Wittmann
    sw34bf06: #i117962# - method <SwFlyFrm::IsPaint(..)> - consider
    instances of <SwFlyDrawObj>
    http://svn.apache.org/viewvc?view=revision&revision=1172120
    sw34bf06: #i117783# - Writer's implementation of XPagePrintable -
    apply print settings to new printing routines
    http://svn.apache.org/viewvc?view=revision&revision=1172115

    gnumake4 work variously from Hans-Joachim Lankenau
    http://svn.apache.org/viewvc?view=revision&revision=1397315
    http://svn.apache.org/viewvc?view=revision&revision=1396797
    http://svn.apache.org/viewvc?view=revision&revision=1396782
    http://svn.apache.org/viewvc?view=revision&revision=1394707
    plus some amount of re-splitting of legacy headers.

    Patch contributed by Pavel Janik
    WaE: Remove unused variables.
    http://svn.apache.org/viewvc?view=revision&revision=1230697

    Patches contributed by Takashi Ono
    mingwport35: i#117795: MinGW port fix for vcl2gnumake
    http://svn.apache.org/viewvc?view=revision&revision=1172091
    mingwport35: i#117795: MinGW port fix for vcl2gnumake
    http://svn.apache.org/viewvc?view=revision&revision=1172091

    Patch contributed by Christian Lippka
    impress212: #i98044# re enable Text menu for outline and title shapes
    http://svn.apache.org/viewvc?view=revision&revision=1167639

    Patch contributed by Andre Fischer
    118674: Made category B code optional and disabled by default.
    http://svn.apache.org/viewvc?view=revision&revision=1215131
    118881: Ignore empty paragraphs after bullets.
    http://svn.apache.org/viewvc?view=revision&revision=1296205

    Patches contributed by Philipp Lohmann
    ooo340fixes: #i117780# use rtl allocator
    http://svn.apache.org/viewvc?view=revision&revision=1172087
    ooo34gsl02: #i117807# fix an off by one error (index actually
    inside the pfb section header)
    http://svn.apache.org/viewvc?view=revision&revision=1167576

various cleanups, related compilation fixes, warning cleanups, re-working
of obsolete stl template pieces to use boost instead, changed string
classes, re-adapt KDE about data, about dialog, fixing warnings,
and other fixes & improvements.
Disable svg import / render for about/ branding code-paths for now.
Restore full icon theme set.
Remove OS/2 conditionals and sources.
Remove conflicting gtk/full-screen monitors support.
Retain existing svg rasterizer files - temporarily disabled.
Standardize stringificaiton and fixup dllpostfix issues.
Rename SvgGradientHelper::== to equalTo to avoid overloading issues.
Use the flat GdiPlus API for LineCaps calls.
2012-11-06 11:58:16 +00:00

821 lines
36 KiB
C++

/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
* This file is part of the LibreOffice project.
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/.
*
* This file incorporates work covered by the following license notice:
*
* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed
* with this work for additional information regarding copyright
* ownership. The ASF licenses this file to you under the Apache
* License, Version 2.0 (the "License"); you may not use this file
* except in compliance with the License. You may obtain a copy of
* the License at http://www.apache.org/licenses/LICENSE-2.0 .
*/
#include <drawinglayer/processor3d/zbufferprocessor3d.hxx>
#include <basegfx/raster/bpixelraster.hxx>
#include <vcl/bmpacc.hxx>
#include <basegfx/raster/rasterconvert3d.hxx>
#include <basegfx/raster/bzpixelraster.hxx>
#include <drawinglayer/attribute/materialattribute3d.hxx>
#include <drawinglayer/texture/texture.hxx>
#include <drawinglayer/primitive3d/drawinglayer_primitivetypes3d.hxx>
#include <drawinglayer/primitive3d/textureprimitive3d.hxx>
#include <drawinglayer/primitive3d/polygonprimitive3d.hxx>
#include <drawinglayer/primitive3d/polypolygonprimitive3d.hxx>
#include <drawinglayer/geometry/viewinformation2d.hxx>
#include <basegfx/polygon/b3dpolygontools.hxx>
#include <basegfx/polygon/b3dpolypolygontools.hxx>
#include <drawinglayer/attribute/sdrlightingattribute3d.hxx>
//////////////////////////////////////////////////////////////////////////////
using namespace com::sun::star;
//////////////////////////////////////////////////////////////////////////////
namespace
{
BitmapEx BPixelRasterToBitmapEx(const basegfx::BPixelRaster& rRaster, sal_uInt16 mnAntiAlialize)
{
BitmapEx aRetval;
const sal_uInt32 nWidth(mnAntiAlialize ? rRaster.getWidth()/mnAntiAlialize : rRaster.getWidth());
const sal_uInt32 nHeight(mnAntiAlialize ? rRaster.getHeight()/mnAntiAlialize : rRaster.getHeight());
if(nWidth && nHeight)
{
const Size aDestSize(nWidth, nHeight);
sal_uInt8 nInitAlpha(255);
Bitmap aContent(aDestSize, 24);
AlphaMask aAlpha(aDestSize, &nInitAlpha);
BitmapWriteAccess* pContent = aContent.AcquireWriteAccess();
BitmapWriteAccess* pAlpha = aAlpha.AcquireWriteAccess();
if(pContent && pAlpha)
{
if(mnAntiAlialize)
{
const sal_uInt16 nDivisor(mnAntiAlialize * mnAntiAlialize);
for(sal_uInt32 y(0L); y < nHeight; y++)
{
for(sal_uInt32 x(0L); x < nWidth; x++)
{
sal_uInt16 nRed(0);
sal_uInt16 nGreen(0);
sal_uInt16 nBlue(0);
sal_uInt16 nOpacity(0);
sal_uInt32 nIndex(rRaster.getIndexFromXY(x * mnAntiAlialize, y * mnAntiAlialize));
for(sal_uInt32 c(0); c < mnAntiAlialize; c++)
{
for(sal_uInt32 d(0); d < mnAntiAlialize; d++)
{
const basegfx::BPixel& rPixel(rRaster.getBPixel(nIndex++));
nRed = nRed + rPixel.getRed();
nGreen = nGreen + rPixel.getGreen();
nBlue = nBlue + rPixel.getBlue();
nOpacity = nOpacity + rPixel.getOpacity();
}
nIndex += rRaster.getWidth() - mnAntiAlialize;
}
nOpacity = nOpacity / nDivisor;
if(nOpacity)
{
pContent->SetPixel(y, x, BitmapColor(
(sal_uInt8)(nRed / nDivisor),
(sal_uInt8)(nGreen / nDivisor),
(sal_uInt8)(nBlue / nDivisor)));
pAlpha->SetPixel(y, x, BitmapColor(255 - (sal_uInt8)nOpacity));
}
}
}
}
else
{
sal_uInt32 nIndex(0L);
for(sal_uInt32 y(0L); y < nHeight; y++)
{
for(sal_uInt32 x(0L); x < nWidth; x++)
{
const basegfx::BPixel& rPixel(rRaster.getBPixel(nIndex++));
if(rPixel.getOpacity())
{
pContent->SetPixel(y, x, BitmapColor(rPixel.getRed(), rPixel.getGreen(), rPixel.getBlue()));
pAlpha->SetPixel(y, x, BitmapColor(255 - rPixel.getOpacity()));
}
}
}
}
aContent.ReleaseAccess(pContent);
aAlpha.ReleaseAccess(pAlpha);
}
aRetval = BitmapEx(aContent, aAlpha);
// #i101811# set PrefMapMode and PrefSize at newly created Bitmap
aRetval.SetPrefMapMode(MAP_PIXEL);
aRetval.SetPrefSize(Size(nWidth, nHeight));
}
return aRetval;
}
} // end of anonymous namespace
//////////////////////////////////////////////////////////////////////////////
class ZBufferRasterConverter3D : public basegfx::RasterConverter3D
{
private:
const drawinglayer::processor3d::DefaultProcessor3D& mrProcessor;
basegfx::BZPixelRaster& mrBuffer;
// interpolators for a single line span
basegfx::ip_single maIntZ;
basegfx::ip_triple maIntColor;
basegfx::ip_triple maIntNormal;
basegfx::ip_double maIntTexture;
basegfx::ip_triple maIntInvTexture;
// current material to use for ratsreconversion
const drawinglayer::attribute::MaterialAttribute3D* mpCurrentMaterial;
// bitfield
// some boolean flags for line span interpolator usages
unsigned mbModifyColor : 1;
unsigned mbUseTex : 1;
unsigned mbHasTexCoor : 1;
unsigned mbHasInvTexCoor : 1;
unsigned mbUseNrm : 1;
unsigned mbUseCol : 1;
void getTextureCoor(basegfx::B2DPoint& rTarget) const
{
if(mbHasTexCoor)
{
rTarget.setX(maIntTexture.getX().getVal());
rTarget.setY(maIntTexture.getY().getVal());
}
else if(mbHasInvTexCoor)
{
const double fZFactor(maIntInvTexture.getZ().getVal());
const double fInvZFactor(basegfx::fTools::equalZero(fZFactor) ? 1.0 : 1.0 / fZFactor);
rTarget.setX(maIntInvTexture.getX().getVal() * fInvZFactor);
rTarget.setY(maIntInvTexture.getY().getVal() * fInvZFactor);
}
}
void incrementLineSpanInterpolators(double fStep)
{
maIntZ.increment(fStep);
if(mbUseTex)
{
if(mbHasTexCoor)
{
maIntTexture.increment(fStep);
}
else if(mbHasInvTexCoor)
{
maIntInvTexture.increment(fStep);
}
}
if(mbUseNrm)
{
maIntNormal.increment(fStep);
}
if(mbUseCol)
{
maIntColor.increment(fStep);
}
}
double decideColorAndOpacity(basegfx::BColor& rColor)
{
// init values with full opacity and material color
OSL_ENSURE(0 != mpCurrentMaterial, "CurrentMaterial not set (!)");
double fOpacity(1.0);
rColor = mpCurrentMaterial->getColor();
if(mbUseTex)
{
basegfx::B2DPoint aTexCoor(0.0, 0.0);
getTextureCoor(aTexCoor);
if(mrProcessor.getGeoTexSvx().get())
{
// calc color in spot. This may also set to invisible already when
// e.g. bitmap textures have transparent parts
mrProcessor.getGeoTexSvx()->modifyBColor(aTexCoor, rColor, fOpacity);
}
if(basegfx::fTools::more(fOpacity, 0.0) && mrProcessor.getTransparenceGeoTexSvx().get())
{
// calc opacity. Object has a 2nd texture, a transparence texture
mrProcessor.getTransparenceGeoTexSvx()->modifyOpacity(aTexCoor, fOpacity);
}
}
if(basegfx::fTools::more(fOpacity, 0.0))
{
if(mrProcessor.getGeoTexSvx().get())
{
if(mbUseNrm)
{
// blend texture with phong
rColor = mrProcessor.getSdrLightingAttribute().solveColorModel(
basegfx::B3DVector(maIntNormal.getX().getVal(), maIntNormal.getY().getVal(), maIntNormal.getZ().getVal()),
rColor,
mpCurrentMaterial->getSpecular(),
mpCurrentMaterial->getEmission(),
mpCurrentMaterial->getSpecularIntensity());
}
else if(mbUseCol)
{
// blend texture with gouraud
basegfx::BColor aBlendColor(maIntColor.getX().getVal(), maIntColor.getY().getVal(), maIntColor.getZ().getVal());
rColor *= aBlendColor;
}
else if(mrProcessor.getModulate())
{
// blend texture with single material color
rColor *= mpCurrentMaterial->getColor();
}
}
else
{
if(mbUseNrm)
{
// modify color with phong
rColor = mrProcessor.getSdrLightingAttribute().solveColorModel(
basegfx::B3DVector(maIntNormal.getX().getVal(), maIntNormal.getY().getVal(), maIntNormal.getZ().getVal()),
rColor,
mpCurrentMaterial->getSpecular(),
mpCurrentMaterial->getEmission(),
mpCurrentMaterial->getSpecularIntensity());
}
else if(mbUseCol)
{
// modify color with gouraud
rColor.setRed(maIntColor.getX().getVal());
rColor.setGreen(maIntColor.getY().getVal());
rColor.setBlue(maIntColor.getZ().getVal());
}
}
if(mbModifyColor)
{
rColor = mrProcessor.getBColorModifierStack().getModifiedColor(rColor);
}
}
return fOpacity;
}
void setupLineSpanInterpolators(const basegfx::RasterConversionLineEntry3D& rA, const basegfx::RasterConversionLineEntry3D& rB)
{
// get inverse XDelta
const double xInvDelta(1.0 / (rB.getX().getVal() - rA.getX().getVal()));
// prepare Z-interpolator
const double fZA(rA.getZ().getVal());
const double fZB(rB.getZ().getVal());
maIntZ = basegfx::ip_single(fZA, (fZB - fZA) * xInvDelta);
// get bools and init other interpolators on demand accordingly
mbModifyColor = mrProcessor.getBColorModifierStack().count();
mbHasTexCoor = SCANLINE_EMPTY_INDEX != rA.getTextureIndex() && SCANLINE_EMPTY_INDEX != rB.getTextureIndex();
mbHasInvTexCoor = SCANLINE_EMPTY_INDEX != rA.getInverseTextureIndex() && SCANLINE_EMPTY_INDEX != rB.getInverseTextureIndex();
const bool bTextureActive(mrProcessor.getGeoTexSvx().get() || mrProcessor.getTransparenceGeoTexSvx().get());
mbUseTex = bTextureActive && (mbHasTexCoor || mbHasInvTexCoor || mrProcessor.getSimpleTextureActive());
const bool bUseColorTex(mbUseTex && mrProcessor.getGeoTexSvx().get());
const bool bNeedNrmOrCol(!bUseColorTex || (bUseColorTex && mrProcessor.getModulate()));
mbUseNrm = bNeedNrmOrCol && SCANLINE_EMPTY_INDEX != rA.getNormalIndex() && SCANLINE_EMPTY_INDEX != rB.getNormalIndex();
mbUseCol = !mbUseNrm && bNeedNrmOrCol && SCANLINE_EMPTY_INDEX != rA.getColorIndex() && SCANLINE_EMPTY_INDEX != rB.getColorIndex();
if(mbUseTex)
{
if(mbHasTexCoor)
{
const basegfx::ip_double& rTA(getTextureInterpolators()[rA.getTextureIndex()]);
const basegfx::ip_double& rTB(getTextureInterpolators()[rB.getTextureIndex()]);
maIntTexture = basegfx::ip_double(
rTA.getX().getVal(), (rTB.getX().getVal() - rTA.getX().getVal()) * xInvDelta,
rTA.getY().getVal(), (rTB.getY().getVal() - rTA.getY().getVal()) * xInvDelta);
}
else if(mbHasInvTexCoor)
{
const basegfx::ip_triple& rITA(getInverseTextureInterpolators()[rA.getInverseTextureIndex()]);
const basegfx::ip_triple& rITB(getInverseTextureInterpolators()[rB.getInverseTextureIndex()]);
maIntInvTexture = basegfx::ip_triple(
rITA.getX().getVal(), (rITB.getX().getVal() - rITA.getX().getVal()) * xInvDelta,
rITA.getY().getVal(), (rITB.getY().getVal() - rITA.getY().getVal()) * xInvDelta,
rITA.getZ().getVal(), (rITB.getZ().getVal() - rITA.getZ().getVal()) * xInvDelta);
}
}
if(mbUseNrm)
{
const basegfx::ip_triple& rNA(getNormalInterpolators()[rA.getNormalIndex()]);
const basegfx::ip_triple& rNB(getNormalInterpolators()[rB.getNormalIndex()]);
maIntNormal = basegfx::ip_triple(
rNA.getX().getVal(), (rNB.getX().getVal() - rNA.getX().getVal()) * xInvDelta,
rNA.getY().getVal(), (rNB.getY().getVal() - rNA.getY().getVal()) * xInvDelta,
rNA.getZ().getVal(), (rNB.getZ().getVal() - rNA.getZ().getVal()) * xInvDelta);
}
if(mbUseCol)
{
const basegfx::ip_triple& rCA(getColorInterpolators()[rA.getColorIndex()]);
const basegfx::ip_triple& rCB(getColorInterpolators()[rB.getColorIndex()]);
maIntColor = basegfx::ip_triple(
rCA.getX().getVal(), (rCB.getX().getVal() - rCA.getX().getVal()) * xInvDelta,
rCA.getY().getVal(), (rCB.getY().getVal() - rCA.getY().getVal()) * xInvDelta,
rCA.getZ().getVal(), (rCB.getZ().getVal() - rCA.getZ().getVal()) * xInvDelta);
}
}
virtual void processLineSpan(const basegfx::RasterConversionLineEntry3D& rA, const basegfx::RasterConversionLineEntry3D& rB, sal_Int32 nLine, sal_uInt32 nSpanCount);
public:
ZBufferRasterConverter3D(basegfx::BZPixelRaster& rBuffer, const drawinglayer::processor3d::ZBufferProcessor3D& rProcessor)
: basegfx::RasterConverter3D(),
mrProcessor(rProcessor),
mrBuffer(rBuffer),
maIntZ(),
maIntColor(),
maIntNormal(),
maIntTexture(),
maIntInvTexture(),
mpCurrentMaterial(0),
mbModifyColor(false),
mbUseTex(false),
mbHasTexCoor(false),
mbHasInvTexCoor(false),
mbUseNrm(false),
mbUseCol(false)
{}
void setCurrentMaterial(const drawinglayer::attribute::MaterialAttribute3D& rMaterial)
{
mpCurrentMaterial = &rMaterial;
}
};
void ZBufferRasterConverter3D::processLineSpan(const basegfx::RasterConversionLineEntry3D& rA, const basegfx::RasterConversionLineEntry3D& rB, sal_Int32 nLine, sal_uInt32 nSpanCount)
{
if(!(nSpanCount & 0x0001))
{
if(nLine >= 0 && nLine < (sal_Int32)mrBuffer.getHeight())
{
sal_uInt32 nXA(::std::min(mrBuffer.getWidth(), (sal_uInt32)::std::max((sal_Int32)0, basegfx::fround(rA.getX().getVal()))));
const sal_uInt32 nXB(::std::min(mrBuffer.getWidth(), (sal_uInt32)::std::max((sal_Int32)0, basegfx::fround(rB.getX().getVal()))));
if(nXA < nXB)
{
// prepare the span interpolators
setupLineSpanInterpolators(rA, rB);
// bring span interpolators to start condition by incrementing with the possible difference of
// clamped and non-clamped XStart. Interpolators are setup relying on double precision
// X-values, so that difference is the correct value to compensate for possible clampings
incrementLineSpanInterpolators(static_cast<double>(nXA) - rA.getX().getVal());
// prepare scanline index
sal_uInt32 nScanlineIndex(mrBuffer.getIndexFromXY(nXA, static_cast<sal_uInt32>(nLine)));
basegfx::BColor aNewColor;
while(nXA < nXB)
{
// early-test Z values if we need to do anything at all
const double fNewZ(::std::max(0.0, ::std::min((double)0xffff, maIntZ.getVal())));
const sal_uInt16 nNewZ(static_cast< sal_uInt16 >(fNewZ));
sal_uInt16& rOldZ(mrBuffer.getZ(nScanlineIndex));
if(nNewZ > rOldZ)
{
// detect color and opacity for this pixel
const sal_uInt16 nOpacity(::std::max((sal_Int16)0, static_cast< sal_Int16 >(decideColorAndOpacity(aNewColor) * 255.0)));
if(nOpacity > 0)
{
// avoid color overrun
aNewColor.clamp();
if(nOpacity >= 0x00ff)
{
// full opacity (not transparent), set z and color
rOldZ = nNewZ;
mrBuffer.getBPixel(nScanlineIndex) = basegfx::BPixel(aNewColor, 0xff);
}
else
{
basegfx::BPixel& rDest = mrBuffer.getBPixel(nScanlineIndex);
if(rDest.getOpacity())
{
// mix new color by using
// color' = color * (1 - opacity) + newcolor * opacity
const sal_uInt16 nTransparence(0x0100 - nOpacity);
rDest.setRed((sal_uInt8)(((rDest.getRed() * nTransparence) + ((sal_uInt16)(255.0 * aNewColor.getRed()) * nOpacity)) >> 8));
rDest.setGreen((sal_uInt8)(((rDest.getGreen() * nTransparence) + ((sal_uInt16)(255.0 * aNewColor.getGreen()) * nOpacity)) >> 8));
rDest.setBlue((sal_uInt8)(((rDest.getBlue() * nTransparence) + ((sal_uInt16)(255.0 * aNewColor.getBlue()) * nOpacity)) >> 8));
if(0xff != rDest.getOpacity())
{
// both are transparent, mix new opacity by using
// opacity = newopacity * (1 - oldopacity) + oldopacity
rDest.setOpacity(((sal_uInt8)((nOpacity * (0x0100 - rDest.getOpacity())) >> 8)) + rDest.getOpacity());
}
}
else
{
// dest is unused, set color
rDest = basegfx::BPixel(aNewColor, (sal_uInt8)nOpacity);
}
}
}
}
// increments
nScanlineIndex++;
nXA++;
incrementLineSpanInterpolators(1.0);
}
}
}
}
}
//////////////////////////////////////////////////////////////////////////////
// helper class to buffer output for transparent rasterprimitives (filled areas
// and lines) until the end of processing. To ensure correct transparent
// visualisation, ZBuffers require to not set Z and to mix with the transparent
// color. If transparent rasterprimitives overlap, it gets necessary to
// paint transparent rasterprimitives from back to front to ensure that the
// mixing happens from back to front. For that purpose, transparent
// rasterprimitives are held in this class during the processing run, remember
// all data and will be rendered
class RasterPrimitive3D
{
private:
boost::shared_ptr< drawinglayer::texture::GeoTexSvx > mpGeoTexSvx;
boost::shared_ptr< drawinglayer::texture::GeoTexSvx > mpTransparenceGeoTexSvx;
drawinglayer::attribute::MaterialAttribute3D maMaterial;
basegfx::B3DPolyPolygon maPolyPolygon;
double mfCenterZ;
// bitfield
bool mbModulate : 1;
bool mbFilter : 1;
bool mbSimpleTextureActive : 1;
bool mbIsLine : 1;
public:
RasterPrimitive3D(
const boost::shared_ptr< drawinglayer::texture::GeoTexSvx >& pGeoTexSvx,
const boost::shared_ptr< drawinglayer::texture::GeoTexSvx >& pTransparenceGeoTexSvx,
const drawinglayer::attribute::MaterialAttribute3D& rMaterial,
const basegfx::B3DPolyPolygon& rPolyPolygon,
bool bModulate,
bool bFilter,
bool bSimpleTextureActive,
bool bIsLine)
: mpGeoTexSvx(pGeoTexSvx),
mpTransparenceGeoTexSvx(pTransparenceGeoTexSvx),
maMaterial(rMaterial),
maPolyPolygon(rPolyPolygon),
mfCenterZ(basegfx::tools::getRange(rPolyPolygon).getCenter().getZ()),
mbModulate(bModulate),
mbFilter(bFilter),
mbSimpleTextureActive(bSimpleTextureActive),
mbIsLine(bIsLine)
{
}
RasterPrimitive3D& operator=(const RasterPrimitive3D& rComp)
{
mpGeoTexSvx = rComp.mpGeoTexSvx;
mpTransparenceGeoTexSvx = rComp.mpTransparenceGeoTexSvx;
maMaterial = rComp.maMaterial;
maPolyPolygon = rComp.maPolyPolygon;
mfCenterZ = rComp.mfCenterZ;
mbModulate = rComp.mbModulate;
mbFilter = rComp.mbFilter;
mbSimpleTextureActive = rComp.mbSimpleTextureActive;
mbIsLine = rComp.mbIsLine;
return *this;
}
bool operator<(const RasterPrimitive3D& rComp) const
{
return mfCenterZ < rComp.mfCenterZ;
}
const boost::shared_ptr< drawinglayer::texture::GeoTexSvx >& getGeoTexSvx() const { return mpGeoTexSvx; }
const boost::shared_ptr< drawinglayer::texture::GeoTexSvx >& getTransparenceGeoTexSvx() const { return mpTransparenceGeoTexSvx; }
const drawinglayer::attribute::MaterialAttribute3D& getMaterial() const { return maMaterial; }
const basegfx::B3DPolyPolygon& getPolyPolygon() const { return maPolyPolygon; }
bool getModulate() const { return mbModulate; }
bool getFilter() const { return mbFilter; }
bool getSimpleTextureActive() const { return mbSimpleTextureActive; }
bool getIsLine() const { return mbIsLine; }
};
//////////////////////////////////////////////////////////////////////////////
namespace drawinglayer
{
namespace processor3d
{
void ZBufferProcessor3D::rasterconvertB3DPolygon(const attribute::MaterialAttribute3D& rMaterial, const basegfx::B3DPolygon& rHairline) const
{
if(mpBZPixelRaster)
{
if(getTransparenceCounter())
{
// transparent output; record for later sorting and painting from
// back to front
if(!mpRasterPrimitive3Ds)
{
const_cast< ZBufferProcessor3D* >(this)->mpRasterPrimitive3Ds = new std::vector< RasterPrimitive3D >;
}
mpRasterPrimitive3Ds->push_back(RasterPrimitive3D(
getGeoTexSvx(),
getTransparenceGeoTexSvx(),
rMaterial,
basegfx::B3DPolyPolygon(rHairline),
getModulate(),
getFilter(),
getSimpleTextureActive(),
true));
}
else
{
// do rasterconversion
mpZBufferRasterConverter3D->setCurrentMaterial(rMaterial);
if(mnAntiAlialize > 1)
{
const bool bForceLineSnap(getOptionsDrawinglayer().IsAntiAliasing() && getOptionsDrawinglayer().IsSnapHorVerLinesToDiscrete());
if(bForceLineSnap)
{
basegfx::B3DHomMatrix aTransform;
basegfx::B3DPolygon aSnappedHairline(rHairline);
const double fScaleDown(1.0 / mnAntiAlialize);
const double fScaleUp(mnAntiAlialize);
// take oversampling out
aTransform.scale(fScaleDown, fScaleDown, 1.0);
aSnappedHairline.transform(aTransform);
// snap to integer
aSnappedHairline = basegfx::tools::snapPointsOfHorizontalOrVerticalEdges(aSnappedHairline);
// add oversampling again
aTransform.identity();
aTransform.scale(fScaleUp, fScaleUp, 1.0);
aSnappedHairline.transform(aTransform);
mpZBufferRasterConverter3D->rasterconvertB3DPolygon(aSnappedHairline, 0, mpBZPixelRaster->getHeight(), mnAntiAlialize);
}
else
{
mpZBufferRasterConverter3D->rasterconvertB3DPolygon(rHairline, 0, mpBZPixelRaster->getHeight(), mnAntiAlialize);
}
}
else
{
mpZBufferRasterConverter3D->rasterconvertB3DPolygon(rHairline, 0, mpBZPixelRaster->getHeight(), 1);
}
}
}
}
void ZBufferProcessor3D::rasterconvertB3DPolyPolygon(const attribute::MaterialAttribute3D& rMaterial, const basegfx::B3DPolyPolygon& rFill) const
{
if(mpBZPixelRaster)
{
if(getTransparenceCounter())
{
// transparent output; record for later sorting and painting from
// back to front
if(!mpRasterPrimitive3Ds)
{
const_cast< ZBufferProcessor3D* >(this)->mpRasterPrimitive3Ds = new std::vector< RasterPrimitive3D >;
}
mpRasterPrimitive3Ds->push_back(RasterPrimitive3D(
getGeoTexSvx(),
getTransparenceGeoTexSvx(),
rMaterial,
rFill,
getModulate(),
getFilter(),
getSimpleTextureActive(),
false));
}
else
{
mpZBufferRasterConverter3D->setCurrentMaterial(rMaterial);
mpZBufferRasterConverter3D->rasterconvertB3DPolyPolygon(rFill, &maInvEyeToView, 0, mpBZPixelRaster->getHeight());
}
}
}
ZBufferProcessor3D::ZBufferProcessor3D(
const geometry::ViewInformation3D& rViewInformation3D,
const geometry::ViewInformation2D& rViewInformation2D,
const attribute::SdrSceneAttribute& rSdrSceneAttribute,
const attribute::SdrLightingAttribute& rSdrLightingAttribute,
double fSizeX,
double fSizeY,
const basegfx::B2DRange& rVisiblePart,
sal_uInt16 nAntiAlialize)
: DefaultProcessor3D(rViewInformation3D, rSdrSceneAttribute, rSdrLightingAttribute),
mpBZPixelRaster(0),
maInvEyeToView(),
mpZBufferRasterConverter3D(0),
mnAntiAlialize(nAntiAlialize),
mpRasterPrimitive3Ds(0)
{
// generate ViewSizes
const double fFullViewSizeX((rViewInformation2D.getObjectToViewTransformation() * basegfx::B2DVector(fSizeX, 0.0)).getLength());
const double fFullViewSizeY((rViewInformation2D.getObjectToViewTransformation() * basegfx::B2DVector(0.0, fSizeY)).getLength());
const double fViewSizeX(fFullViewSizeX * rVisiblePart.getWidth());
const double fViewSizeY(fFullViewSizeY * rVisiblePart.getHeight());
// generate RasterWidth and RasterHeight
const sal_uInt32 nRasterWidth((sal_uInt32)basegfx::fround(fViewSizeX) + 1);
const sal_uInt32 nRasterHeight((sal_uInt32)basegfx::fround(fViewSizeY) + 1);
if(nRasterWidth && nRasterHeight)
{
// create view unit buffer
mpBZPixelRaster = new basegfx::BZPixelRaster(
mnAntiAlialize ? nRasterWidth * mnAntiAlialize : nRasterWidth,
mnAntiAlialize ? nRasterHeight * mnAntiAlialize : nRasterHeight);
OSL_ENSURE(mpBZPixelRaster, "ZBufferProcessor3D: Could not allocate basegfx::BZPixelRaster (!)");
// create DeviceToView for Z-Buffer renderer since Z is handled
// different from standard 3D transformations (Z is mirrored). Also
// the transformation includes the step from unit device coordinates
// to discrete units ([-1.0 .. 1.0] -> [minDiscrete .. maxDiscrete]
basegfx::B3DHomMatrix aDeviceToView;
{
// step one:
//
// bring from [-1.0 .. 1.0] in X,Y and Z to [0.0 .. 1.0]. Also
// necessary to
// - flip Y due to screen orientation
// - flip Z due to Z-Buffer orientation from back to front
aDeviceToView.scale(0.5, -0.5, -0.5);
aDeviceToView.translate(0.5, 0.5, 0.5);
}
{
// step two:
//
// bring from [0.0 .. 1.0] in X,Y and Z to view cordinates
//
// #i102611#
// also: scale Z to [1.5 .. 65534.5]. Normally, a range of [0.0 .. 65535.0]
// could be used, but a 'unused' value is needed, so '0' is used what reduces
// the range to [1.0 .. 65535.0]. It has also shown that small numerical errors
// (smaller as basegfx::fTools::mfSmallValue, which is 0.000000001) happen.
// Instead of checking those by basegfx::fTools methods which would cost
// runtime, just add another 0.5 tolerance to the start and end of the Z-Buffer
// range, thus resulting in [1.5 .. 65534.5]
const double fMaxZDepth(65533.0);
aDeviceToView.translate(-rVisiblePart.getMinX(), -rVisiblePart.getMinY(), 0.0);
if(mnAntiAlialize)
aDeviceToView.scale(fFullViewSizeX * mnAntiAlialize, fFullViewSizeY * mnAntiAlialize, fMaxZDepth);
else
aDeviceToView.scale(fFullViewSizeX, fFullViewSizeY, fMaxZDepth);
aDeviceToView.translate(0.0, 0.0, 1.5);
}
// update local ViewInformation3D with own DeviceToView
const geometry::ViewInformation3D aNewViewInformation3D(
getViewInformation3D().getObjectTransformation(),
getViewInformation3D().getOrientation(),
getViewInformation3D().getProjection(),
aDeviceToView,
getViewInformation3D().getViewTime(),
getViewInformation3D().getExtendedInformationSequence());
updateViewInformation(aNewViewInformation3D);
// prepare inverse EyeToView transformation. This can be done in constructor
// since changes in object transformations when processing TransformPrimitive3Ds
// do not influence this prepared partial transformation
maInvEyeToView = getViewInformation3D().getDeviceToView() * getViewInformation3D().getProjection();
maInvEyeToView.invert();
// prepare maRasterRange
maRasterRange.reset();
maRasterRange.expand(basegfx::B2DPoint(0.0, 0.0));
maRasterRange.expand(basegfx::B2DPoint(mpBZPixelRaster->getWidth(), mpBZPixelRaster->getHeight()));
// create the raster converter
mpZBufferRasterConverter3D = new ZBufferRasterConverter3D(*mpBZPixelRaster, *this);
}
}
ZBufferProcessor3D::~ZBufferProcessor3D()
{
if(mpBZPixelRaster)
{
delete mpZBufferRasterConverter3D;
delete mpBZPixelRaster;
}
if(mpRasterPrimitive3Ds)
{
OSL_FAIL("ZBufferProcessor3D: destructed, but there are unrendered transparent geometries. Use ZBufferProcessor3D::finish() to render these (!)");
delete mpRasterPrimitive3Ds;
}
}
void ZBufferProcessor3D::finish()
{
if(mpRasterPrimitive3Ds)
{
// there are transparent rasterprimitives
const sal_uInt32 nSize(mpRasterPrimitive3Ds->size());
if(nSize > 1)
{
// sort them from back to front
std::sort(mpRasterPrimitive3Ds->begin(), mpRasterPrimitive3Ds->end());
}
for(sal_uInt32 a(0); a < nSize; a++)
{
// paint each one by setting the remembered data and calling
// the render method
const RasterPrimitive3D& rCandidate = (*mpRasterPrimitive3Ds)[a];
mpGeoTexSvx = rCandidate.getGeoTexSvx();
mpTransparenceGeoTexSvx = rCandidate.getTransparenceGeoTexSvx();
mbModulate = rCandidate.getModulate();
mbFilter = rCandidate.getFilter();
mbSimpleTextureActive = rCandidate.getSimpleTextureActive();
if(rCandidate.getIsLine())
{
rasterconvertB3DPolygon(
rCandidate.getMaterial(),
rCandidate.getPolyPolygon().getB3DPolygon(0));
}
else
{
rasterconvertB3DPolyPolygon(
rCandidate.getMaterial(),
rCandidate.getPolyPolygon());
}
}
// delete them to signal the destructor that all is done and
// to allow asserting there
delete mpRasterPrimitive3Ds;
mpRasterPrimitive3Ds = 0;
}
}
BitmapEx ZBufferProcessor3D::getBitmapEx() const
{
if(mpBZPixelRaster)
{
return BPixelRasterToBitmapEx(*mpBZPixelRaster, mnAntiAlialize);
}
return BitmapEx();
}
} // end of namespace processor3d
} // end of namespace drawinglayer
/* vim:set shiftwidth=4 softtabstop=4 expandtab: */