51daab8588
* removed unused tcleanuppreprocessor.cpp and .h Signed-off-by: Jeremy Bullock <jcbullock@gmail.com> * removed unused directory lzodriver Signed-off-by: Jeremy Bullock <jcbullock@gmail.com> * OpenToonz changes as of 11-11-20 Co-authored-by: Sean Kuehl <teddscottfelt@gmail.com>
855 lines
26 KiB
C++
855 lines
26 KiB
C++
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#include "toonz/toonzimageutils.h"
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#include "tstroke.h"
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#include "tpalette.h"
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#include "tofflinegl.h"
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#include "tvectorrenderdata.h"
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#include "tvectorgl.h"
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#include "trop.h"
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#include "toonz/ttileset.h"
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#include "toonz/tcenterlinevectorizer.h"
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#include "tregion.h"
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#include "trasterimage.h"
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#include "ttoonzimage.h"
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#include "ttzpimagefx.h"
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#include "tlevel_io.h"
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#include "tsystem.h"
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#include "tstream.h"
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#include "tsimplecolorstyles.h"
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//-------------------------------------------------------------------
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namespace {
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const int BackgroundStyle = 0;
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//-------------------------------------------------------------------
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TRect rasterizeStroke(TOfflineGL *&gl, const TRect &rasBounds, TStroke *stroke,
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TPalette *palette, const TRectD &clip, bool doAntialias) {
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TRectD bbox = clip * stroke->getBBox();
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TRect rect = convert(bbox).enlarge(1) * rasBounds;
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if (rect.getLx() <= 0 || rect.getLy() <= 0) return TRect();
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gl = new TOfflineGL(rect.getSize());
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gl->makeCurrent();
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gl->clear(TPixel32::White);
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TPaletteP plt = palette->clone();
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int styleId = stroke->getStyle();
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TColorStyleP style = plt->getStyle(styleId);
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assert(style);
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style->setMainColor(TPixel32::Black);
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TTranslation affine(-convert(rect.getP00()));
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TVectorRenderData rd(affine, gl->getBounds(), plt.getPointer(), 0, false,
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doAntialias);
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tglDraw(rd, stroke);
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glFinish();
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return rect;
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}
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//-------------------------------------------------------------------
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TRect rasterizeStroke(TOfflineGL *&gl, TRect rasBounds, TStroke *stroke,
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TRectD clip, bool filled = false) {
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TDimension d = rasBounds.getSize();
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TPointD offset(d.lx * 0.5, d.ly * 0.5);
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TTranslation offsetMatrix(offset);
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TRectD strokeBBox = stroke->getBBox().enlarge(2);
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if (!clip.isEmpty())
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strokeBBox = offsetMatrix * (strokeBBox * clip);
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else
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strokeBBox = offsetMatrix * strokeBBox;
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TRect rect = ToonzImageUtils::convertWorldToRaster(strokeBBox, 0) * rasBounds;
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if (!rect.isEmpty()) {
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gl = new TOfflineGL(rect.getSize());
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gl->makeCurrent();
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glClearColor(1, 1, 1, 1);
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glClear(GL_COLOR_BUFFER_BIT);
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TPalette *palette = new TPalette();
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TTranslation affine(-strokeBBox.getP00() + offset);
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TVectorRenderData rd(affine, gl->getBounds(), palette, 0, false, true);
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int oldStyle = stroke->getStyle();
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stroke->setStyle(1);
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if (filled) {
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TVectorImage vi;
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vi.addStroke(new TStroke(*stroke));
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vi.findRegions();
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vi.selectFill(vi.getBBox().enlarge(2), 0, 1, false, true, false);
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tglDraw(rd, &vi);
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} else
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tglDraw(rd, stroke);
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delete palette;
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stroke->setStyle(oldStyle);
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glFinish();
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}
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return rect;
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}
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//-------------------------------------------------------------------
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TRect rasterizeRegion(TOfflineGL *&gl, TRect rasBounds, TRegion *region,
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TRectD clip) {
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TRectD regionBBox = region->getBBox();
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if (!clip.isEmpty()) regionBBox = regionBBox * clip;
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TRect rect = convert(regionBBox) * rasBounds;
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if (!rect.isEmpty()) {
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gl = new TOfflineGL(rect.getSize());
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gl->makeCurrent();
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gl->clear(TPixel32::White);
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glPushAttrib(GL_ALL_ATTRIB_BITS);
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glEnable(GL_ALPHA_TEST);
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glAlphaFunc(GL_GREATER, 0);
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TPalette *palette = new TPalette();
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TTranslation affine(-convert(rect.getP00()));
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TVectorRenderData rd(affine, gl->getBounds(), palette, 0, true, true);
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int oldStyle = region->getStyle();
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region->setStyle(1);
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tglDraw(rd, region);
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glDisable(GL_ALPHA_TEST);
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glPopAttrib();
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region->setStyle(oldStyle);
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glFinish();
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delete palette;
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}
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return rect;
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}
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//-------------------------------------------------------------------
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void fastAddPaintRegion(const TToonzImageP &ti, TRegion *region, int newPaintId,
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int maxStyleId, TRectD clip = TRectD()) {
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TRasterCM32P ras = ti->getRaster();
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TOfflineGL *gl;
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TRect rect = rasterizeRegion(gl, ras->getBounds(), region, clip);
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if (rect.isEmpty()) return;
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TRaster32P glRas = gl->getRaster();
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assert(TPixelCM32::getMaxTone() == 255);
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ras->lock();
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glRas->lock();
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for (int y = rect.y0; y <= rect.y1; y++) {
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TPixel32 *inPix = glRas->pixels(y - rect.y0);
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TPixelCM32 *outPix = ras->pixels(y) + rect.x0;
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TPixel32 *inEndPix = inPix + rect.x1 - rect.x0 + 1;
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for (; inPix < inEndPix; ++outPix, ++inPix)
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if (inPix->r < 128) {
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outPix->setPaint(newPaintId);
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outPix->setTone(255);
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}
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}
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ras->unlock();
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glRas->unlock();
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delete gl;
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TRegion *subregion;
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UINT i = 0;
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for (; i < region->getSubregionCount(); ++i) {
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subregion = region->getSubregion(i);
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fastAddPaintRegion(ti, subregion,
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std::min(maxStyleId, subregion->getStyle()), maxStyleId);
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}
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}
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}
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//-------------------------------------------------------------------
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TRect ToonzImageUtils::convertWorldToRaster(const TRectD area,
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const TToonzImageP ti) {
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if (area.isEmpty()) return TRect();
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if (!ti || !ti->getRaster())
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return TRect(tfloor(area.x0), tfloor(area.y0), tfloor(area.x1) - 1,
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tfloor(area.y1) - 1);
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TRasterCM32P ras = ti->getRaster();
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TRectD rect(area + ras->getCenterD());
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return TRect(tfloor(rect.x0), tfloor(rect.y0), tceil(rect.x1) - 1,
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tceil(rect.y1) - 1);
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}
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//-------------------------------------------------------------------
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TRectD ToonzImageUtils::convertRasterToWorld(const TRect area,
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const TToonzImageP ti) {
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if (area.isEmpty()) return TRectD();
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TRectD rect(area.x0, area.y0, area.x1 + 1, area.y1 + 1);
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if (ti && ti->getRaster()) rect = rect - ti->getRaster()->getCenterD();
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return rect;
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}
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//-------------------------------------------------------------------
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// clip in coordinate world (cioe' della stroke)
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// overlaying inks, blend inks always "lose" on normal inks
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static TRect fastAddInkStroke(
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const TToonzImageP &ti, TStroke *stroke, int inkId, bool selective,
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bool filled, TRectD clip, bool doAntialiasing = true,
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const std::set<int> &blendInks = std::set<int>()) {
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TRasterCM32P ras = ti->getRaster();
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TOfflineGL *gl = 0;
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TRect rectRender = rasterizeStroke(gl, ras->getBounds(), stroke,
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ti->getPalette(), clip, doAntialiasing);
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if (!gl) return TRect();
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TRaster32P glRas = gl->getRaster();
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TRasterCM32P outRas = ras->extract(rectRender);
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assert(glRas->getSize() == outRas->getSize());
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assert(TPixelCM32::getMaxTone() == 255);
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outRas->lock();
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glRas->lock();
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bool isBlendInkUp = (blendInks.find(inkId) != blendInks.end());
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for (int y = 0; y < outRas->getLy(); ++y) {
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TPixel32 *inPix = glRas->pixels(y);
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TPixelCM32 *outPix = outRas->pixels(y);
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for (int x = 0; x < outRas->getLx(); ++outPix, ++inPix, ++x) {
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int upTone = inPix->r;
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int dnTone = outPix->getTone();
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if (doAntialiasing) {
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// overlaying inks, blend inks always "lose" on normal inks
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bool isBlendInkDn =
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(blendInks.find(outPix->getInk()) != blendInks.end());
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if (isBlendInkUp && !isBlendInkDn && dnTone < 255) continue;
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if (isBlendInkDn && !isBlendInkUp && upTone < 255) {
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*outPix = TPixelCM32(inkId, outPix->getPaint(), upTone);
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continue;
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}
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// The upper pixel replaces the lower one, *if*
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// a) It's more opaque
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// b) If the ink id id not the same, ink is not completely transparent
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// c) ...
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if ((upTone <= dnTone) &&
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((outPix->getInk() == inkId) || (upTone != 255)) &&
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(!selective || !outPix->isPureInk()))
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*outPix = TPixelCM32(inkId, outPix->getPaint(), upTone);
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} else {
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if (!selective || !outPix->isPureInk()) {
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// if(upTone<=192 && upTone<=dnTone)
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if (upTone == 0) *outPix = TPixelCM32(inkId, outPix->getPaint(), 0);
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}
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}
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}
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}
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outRas->unlock();
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glRas->unlock();
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delete gl;
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return rectRender;
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}
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// clip in coordinate world (cioe' della stroke)
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TRect ToonzImageUtils::addInkStroke(const TToonzImageP &ti, TStroke *stroke,
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int inkId, bool selective, bool filled,
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TRectD clip, bool doAntialiasing) {
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TStroke *s = new TStroke(*stroke);
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TPoint tiCenter = ti->getRaster()->getCenter();
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s->transform(TTranslation(tiCenter.x, tiCenter.y));
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TRect rect =
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fastAddInkStroke(ti, s, inkId, selective, filled, clip, doAntialiasing);
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rect -= tiCenter;
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return rect;
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}
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//-------------------------------------------------------------------
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TRect ToonzImageUtils::changeColorStroke(
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const TToonzImageP &ti, const ChangeColorStrokeSettings &settings) {
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if (!settings.changeInk && !settings.changePaint) return TRect();
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TRasterCM32P ras = ti->getRaster();
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TOfflineGL *gl;
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TRect rect =
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rasterizeStroke(gl, ras->getBounds(), settings.stroke, settings.clip);
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if (rect.isEmpty()) {
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return rect;
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}
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TRaster32P glRas = gl->getRaster();
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ras->lock();
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glRas->lock();
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for (int y = rect.y0; y <= rect.y1; ++y) {
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TPixel32 *inPix = glRas->pixels(y - rect.y0);
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TPixelCM32 *outPix = ras->pixels(y) + rect.x0;
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TPixel32 *inEndPix = inPix + rect.x1 - rect.x0 + 1;
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for (; inPix < inEndPix; ++outPix, ++inPix) {
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if (inPix->r < 128 && settings.changeInk && !outPix->isPurePaint())
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outPix->setInk(settings.colorId);
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if (inPix->r < 128 && settings.changePaint &&
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(settings.maskPaintId == -1 ||
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outPix->getPaint() == settings.maskPaintId))
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outPix->setPaint(settings.colorId);
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}
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}
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delete gl;
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ras->unlock();
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glRas->unlock();
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return rect;
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}
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//-------------------------------------------------------------------
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TRect ToonzImageUtils::eraseRect(const TToonzImageP &ti, const TRectD &area,
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int maskId, bool onInk, bool onPaint) {
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assert(onInk || onPaint);
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TRasterCM32P ras = ti->getRaster();
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TRect rect = convertWorldToRaster(area, ti) * ras->getBounds();
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if (rect.isEmpty()) return rect;
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ras->lock();
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for (int y = rect.y0; y <= rect.y1; y++) {
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TPixelCM32 *pix = ras->pixels(y) + rect.x0;
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TPixelCM32 *endPix = ras->pixels(y) + rect.x1 + 1;
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for (; pix < endPix; ++pix) {
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if (onPaint && (maskId == -1 || maskId == pix->getPaint()))
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pix->setPaint(BackgroundStyle);
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if (onInk && (maskId == -1 || maskId == pix->getInk()))
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*pix = TPixelCM32(BackgroundStyle, pix->getPaint(),
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TPixelCM32::getMaxTone());
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}
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}
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ras->unlock();
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return rect;
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}
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//-------------------------------------------------------------------
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std::vector<TRect> ToonzImageUtils::paste(const TToonzImageP &ti,
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const TTileSetCM32 *tileSet) {
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std::vector<TRect> rects;
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TRasterCM32P raster = ti->getRaster();
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// for(int i=0;i<tileSet->getTileCount();i++)
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for (int i = tileSet->getTileCount() - 1; i >= 0; i--) {
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const TTileSetCM32::Tile *tile = tileSet->getTile(i);
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TRasterCM32P rasCM32;
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tile->getRaster(rasCM32);
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assert(!!rasCM32);
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raster->copy(rasCM32, tile->m_rasterBounds.getP00());
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rects.push_back(tile->m_rasterBounds);
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}
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return rects;
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}
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//-------------------------------------------------------------------
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// DA RIFARE
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// e' lenta da far schifo
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//! Converts a TVectorImage into a TToonzImage. The input vector image
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//! is transformed through the passed affine \b aff, and put into a
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//! TToonzImage strictly covering the bounding box of the transformed
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//! vector image. The output image has its lower-left position in the
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//! world reference specified by the \b pos parameter, which is granted to
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//! be an integer displacement of the passed value. Additional parameters
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//! include an integer \b enlarge by which the output image is enlarged with
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//! respect to the transformed image's bbox, and the bool \b transformThickness
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//! to specify whether the transformation should involve strokes' thickensses
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//! or not.
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TToonzImageP ToonzImageUtils::vectorToToonzImage(
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const TVectorImageP &vimage, const TAffine &aff, TPalette *palette,
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const TPointD &outputPos, const TDimension &outputSize,
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const std::vector<TRasterFxRenderDataP> *fxs, bool transformThickness) {
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if (!vimage || !palette) return 0;
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// Transform the vector image through aff
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TVectorImageP vi = vimage->clone();
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vi->transform(aff, transformThickness);
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// Allocate the output ToonzImage
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TRasterCM32P raster(outputSize.lx, outputSize.ly);
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raster->clear();
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TToonzImageP ti(raster, raster->getBounds());
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ti->setPalette(palette->clone());
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// Shift outputPos to the origin
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vi->transform(TTranslation(-outputPos));
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int strokeCount = vi->getStrokeCount();
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std::vector<int> strokeIndex(strokeCount);
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std::vector<TStroke *> strokes(strokeCount);
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int maxStyleId = palette->getStyleCount() - 1;
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int i;
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for (i = 0; i < strokeCount; ++i) {
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strokeIndex[i] = i;
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strokes[i] = vi->getStroke(i);
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}
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vi->notifyChangedStrokes(strokeIndex, strokes);
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int regionCount = vi->getRegionCount();
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// In such reference, the clip for rendering strokes is the output size
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TRectD clip(TDimensionD(outputSize.lx, outputSize.ly));
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std::set<int> colors;
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if (fxs) {
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for (i = 0; i < (int)fxs->size(); i++) {
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SandorFxRenderData *sandorData =
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dynamic_cast<SandorFxRenderData *>((*fxs)[i].getPointer());
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if (sandorData && sandorData->m_type == BlendTz) {
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std::string indexes =
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::to_string(sandorData->m_blendParams.m_colorIndex);
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std::vector<std::string> items;
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parseIndexes(indexes, items);
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PaletteFilterFxRenderData paletteFilterData;
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insertIndexes(items, &paletteFilterData);
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colors.insert(paletteFilterData.m_colors.begin(),
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paletteFilterData.m_colors.end());
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}
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}
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}
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int k, l;
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for (i = 0; i < strokeCount;) {
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// Draw all regions which have the same group.
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for (k = 0; k < regionCount; ++k)
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if (vi->areDifferentGroup(i, false, k, true) == -1) {
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TRegion *region = vi->getRegion(k);
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fastAddPaintRegion(ti, region, std::min(maxStyleId, region->getStyle()),
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maxStyleId);
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}
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// Find the first stroke which does not belong to the group
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for (k = i;
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k < strokeCount && vi->areDifferentGroup(i, false, k, false) == -1;
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++k)
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;
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// Draw all found strokes
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for (l = i; l < k; ++l) {
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TStroke *stroke = vi->getStroke(l);
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bool visible = false;
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int styleId = stroke->getStyle();
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TColorStyleP style = palette->getStyle(styleId);
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assert(style);
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int colorCount = style->getColorParamCount();
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if (colorCount == 0)
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visible = true;
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else {
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visible = false;
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for (int j = 0; j < style->getColorParamCount() && !visible; j++) {
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TPixel32 color = style->getColorParamValue(j);
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if (color.m != 0) visible = true;
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}
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}
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if (visible)
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fastAddInkStroke(ti, stroke, std::min(maxStyleId, stroke->getStyle()),
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false, false, clip, true, colors);
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}
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i = k;
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}
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return ti;
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}
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//-------------------------------------------------------------------
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TPalette *ToonzImageUtils::loadTzPalette(const TFilePath &pltFile) {
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TImageP pltImg;
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TImageReader loader(pltFile);
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pltImg = loader.load();
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TRasterImageP pltRasImg(pltImg);
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if (!pltRasImg) return 0;
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TRaster32P rasPlt = pltRasImg->getRaster();
|
|
if (!rasPlt) return 0;
|
|
|
|
std::map<int, std::pair<std::string, std::string>> pltColorNames;
|
|
std::map<int, std::pair<std::string, std::string>>::iterator it;
|
|
loader.getTzpPaletteColorNames(pltColorNames);
|
|
|
|
TPalette *palette = new TPalette();
|
|
|
|
const int offset = 0;
|
|
|
|
assert(rasPlt->getLy() == 2);
|
|
rasPlt->lock();
|
|
TPixel32 *pixelRow = rasPlt->pixels(0);
|
|
int x = 0;
|
|
int count = palette->getStyleCount();
|
|
|
|
for (; x < rasPlt->getLx(); ++x) {
|
|
TSolidColorStyle *style = new TSolidColorStyle(pixelRow[x]);
|
|
if ((it = pltColorNames.find(x)) != pltColorNames.end()) {
|
|
std::string styleName = it->second.second;
|
|
style->setName(::to_wstring(styleName));
|
|
}
|
|
if (x < count) palette->setStyle(x, style);
|
|
// palette->setStyle(x, pixelRow[x]);
|
|
else
|
|
palette->addStyle(style);
|
|
}
|
|
|
|
// aggiungo solo i colori usati (salvo il BG)
|
|
|
|
TPalette::Page *page = palette->getPage(0);
|
|
// nella pagina c'e' gia' lo sfondo e il colore 1:
|
|
// tolgo quest'ultimo
|
|
page->removeStyle(1);
|
|
// aggiungo gli altri
|
|
std::map<std::wstring, int> pages;
|
|
std::map<std::wstring, int>::iterator itpage;
|
|
|
|
pixelRow = rasPlt->pixels(1);
|
|
for (x = 0; x < rasPlt->getLx(); ++x) {
|
|
if ((it = pltColorNames.find(x)) != pltColorNames.end()) {
|
|
std::wstring pageName;
|
|
pageName = ::to_wstring(it->second.first);
|
|
if (x == 0) {
|
|
page = palette->getPage(0);
|
|
page->setName(pageName);
|
|
pages[pageName] = 0;
|
|
} else if ((itpage = pages.find(pageName)) != pages.end())
|
|
page = palette->getPage(itpage->second);
|
|
else {
|
|
page = palette->addPage(pageName);
|
|
pages[pageName] = page->getIndex();
|
|
}
|
|
} else
|
|
page = palette->getPage(0);
|
|
|
|
if (pixelRow[x].r == 255) page->addStyle(offset + x);
|
|
}
|
|
rasPlt->unlock();
|
|
|
|
return palette;
|
|
}
|
|
|
|
//-------------------------------------------------------------------
|
|
|
|
void ToonzImageUtils::getUsedStyles(std::set<int> &styles,
|
|
const TToonzImageP &ti) {
|
|
TRasterCM32P ras = ti->getRaster();
|
|
if (!ras) return;
|
|
int lx = ras->getLx();
|
|
int ly = ras->getLy();
|
|
ras->lock();
|
|
for (int y = 0; y < ly; y++) {
|
|
TPixelCM32 *pix = ras->pixels(y);
|
|
TPixelCM32 *endPix = pix + lx;
|
|
while (pix < endPix) {
|
|
styles.insert(pix->getInk());
|
|
styles.insert(pix->getPaint());
|
|
++pix;
|
|
}
|
|
}
|
|
ras->unlock();
|
|
}
|
|
|
|
void ToonzImageUtils::scrambleStyles(const TToonzImageP &ti,
|
|
std::map<int, int> styleTable) {
|
|
TRasterCM32P ras = ti->getRaster();
|
|
if (!ras) return;
|
|
if (styleTable.empty()) return;
|
|
std::map<int, int>::iterator it;
|
|
std::vector<int> lut(4096, -1);
|
|
bool isIdentity = true;
|
|
for (it = styleTable.begin(); it != styleTable.end(); ++it) {
|
|
int j = it->first, k = it->second;
|
|
assert(j >= 0);
|
|
assert(j < 1000000);
|
|
if (j >= (int)lut.size()) lut.resize(j + 1, -1);
|
|
lut[j] = k;
|
|
if (j != k) isIdentity = false;
|
|
}
|
|
if (isIdentity) return;
|
|
|
|
int m = lut.size();
|
|
int lx = ras->getLx();
|
|
int ly = ras->getLy();
|
|
ras->lock();
|
|
for (int y = 0; y < ly; y++) {
|
|
TPixelCM32 *pix = ras->pixels(y);
|
|
TPixelCM32 *endPix = pix + lx;
|
|
while (pix < endPix) {
|
|
int ink = pix->getInk();
|
|
if (0 <= ink && ink < m && lut[ink] >= 0) ink = lut[ink];
|
|
int paint = pix->getPaint();
|
|
if (0 <= paint && paint < m && lut[paint] >= 0) paint = lut[paint];
|
|
if (ink != pix->getInk() || paint != pix->getPaint()) {
|
|
*pix = TPixelCM32(ink, paint, pix->getTone());
|
|
}
|
|
++pix;
|
|
}
|
|
}
|
|
ras->unlock();
|
|
}
|
|
|
|
//----------------------------------------------------------------------------------
|
|
|
|
#ifdef LEVO
|
|
|
|
bool ToonzImageUtils::convertToTlv(const TFilePath &levelPathIn) {
|
|
try {
|
|
TFilePath levelPathOut = levelPathIn.getParentDir() +
|
|
TFilePath(levelPathIn.getWideName() + L".tlv");
|
|
|
|
TLevelReaderP lr(levelPathIn);
|
|
TLevelP level = lr->loadInfo();
|
|
|
|
TLevelWriterP lw(levelPathOut, 0);
|
|
|
|
TPalette *plt = new TPalette();
|
|
|
|
TLevel::Iterator it = level->begin();
|
|
TLevel::Iterator end = level->end();
|
|
for (; it != level->end(); ++it) {
|
|
try {
|
|
TImageReaderP ir = lr->getFrameReader(it->first);
|
|
TRasterImageP img = ir->load();
|
|
double dpix, dpiy;
|
|
img->getDpi(dpix, dpiy);
|
|
TRasterCM32P raster(convert(img->getBBox()).getSize());
|
|
|
|
TRop::convert(raster, img->getRaster());
|
|
|
|
TImageWriterP iw = lw->getFrameWriter(it->first);
|
|
TToonzImageP outimg(raster, raster->getBounds());
|
|
outimg->setDpi(dpix, dpiy);
|
|
outimg->setPalette(plt);
|
|
iw->save(outimg);
|
|
|
|
} catch (...) {
|
|
return false;
|
|
// string msg="Frame "+toString(it->first.getNumber())+": conversion
|
|
// failed!";
|
|
// cout << msg << endl;
|
|
}
|
|
}
|
|
|
|
TFilePath pltPath = lw->getFilePath().withNoFrame().withType("tpl");
|
|
if (TSystem::touchParentDir(pltPath)) {
|
|
if (TSystem::doesExistFileOrLevel(pltPath))
|
|
TSystem::removeFileOrLevel(pltPath);
|
|
TOStream os(pltPath);
|
|
os << plt;
|
|
}
|
|
|
|
lr = TLevelReaderP();
|
|
lw = TLevelWriterP();
|
|
// delete plt;
|
|
|
|
return true;
|
|
} catch (...) {
|
|
return false;
|
|
}
|
|
}
|
|
|
|
#endif
|
|
|
|
//----------------------------------------------------------------------------------
|
|
|
|
void ToonzImageUtils::eraseImage(const TToonzImageP &ti,
|
|
const TRaster32P &image, const TPoint &pos,
|
|
bool invert, bool eraseInk, bool erasePaint,
|
|
bool selective, int styleId) {
|
|
TRect rasBounds = ti->getRaster()->getBounds();
|
|
TRect imageBounds = image->getBounds() + pos;
|
|
|
|
if (invert) {
|
|
/*----------------------------------------
|
|
┌───┬─┐
|
|
│③ │②│
|
|
├─┬─┤ │
|
|
│④│★│ │
|
|
│ ├─┴─┤
|
|
│ │① │
|
|
└─┴───┘
|
|
★はFreeHandで囲んだ領域のバウンディングボックス
|
|
外側のワクはラスタ画像のフチ
|
|
-----------------------------------------*/
|
|
TRect rect;
|
|
/*- ①の部分を消す -*/
|
|
if (rasBounds.y0 != imageBounds.y0) {
|
|
rect = TRect(imageBounds.x0, rasBounds.y0, rasBounds.x1, imageBounds.y0);
|
|
ToonzImageUtils::eraseRect(
|
|
ti, ToonzImageUtils::convertRasterToWorld(rect, ti),
|
|
selective ? styleId : -1, eraseInk, erasePaint);
|
|
}
|
|
/*- ②の部分を消す -*/
|
|
if (imageBounds.x1 != rasBounds.x1) {
|
|
rect = TRect(imageBounds.x1, imageBounds.y0, rasBounds.x1, rasBounds.y1);
|
|
ToonzImageUtils::eraseRect(
|
|
ti, ToonzImageUtils::convertRasterToWorld(rect, ti),
|
|
selective ? styleId : -1, eraseInk, erasePaint);
|
|
}
|
|
/*- ③の部分を消す -*/
|
|
if (imageBounds.y1 != rasBounds.y1) {
|
|
rect = TRect(rasBounds.x0, imageBounds.y1, imageBounds.x1, rasBounds.y1);
|
|
ToonzImageUtils::eraseRect(
|
|
ti, ToonzImageUtils::convertRasterToWorld(rect, ti),
|
|
selective ? styleId : -1, eraseInk, erasePaint);
|
|
}
|
|
/*- ④の部分を消す -*/
|
|
if (rasBounds.x0 != imageBounds.x0) {
|
|
rect = TRect(rasBounds.x0, rasBounds.y0, imageBounds.x0, imageBounds.y1);
|
|
ToonzImageUtils::eraseRect(
|
|
ti, ToonzImageUtils::convertRasterToWorld(rect, ti),
|
|
selective ? styleId : -1, eraseInk, erasePaint);
|
|
}
|
|
}
|
|
|
|
TRasterCM32P workRas = ti->getRaster()->extract(imageBounds);
|
|
|
|
int y;
|
|
for (y = 0; y < workRas->getLy(); y++) {
|
|
TPixelCM32 *outPix = workRas->pixels(y);
|
|
TPixelCM32 *outEndPix = outPix + workRas->getLx();
|
|
TPixel32 *inPix = image->pixels(y);
|
|
for (; outPix != outEndPix; outPix++, inPix++) {
|
|
bool canEraseInk =
|
|
!selective || (selective && styleId == outPix->getInk());
|
|
bool canErasePaint =
|
|
!selective || (selective && styleId == outPix->getPaint());
|
|
|
|
int paint, tone;
|
|
if (!invert) {
|
|
paint = inPix->m > 0 && erasePaint && canErasePaint
|
|
? 0
|
|
: outPix->getPaint();
|
|
tone = inPix->m > 0 && eraseInk && canEraseInk
|
|
? std::max(outPix->getTone(), (int)inPix->m)
|
|
: outPix->getTone();
|
|
} else {
|
|
paint = inPix->m < 255 && erasePaint && canErasePaint
|
|
? 0
|
|
: outPix->getPaint();
|
|
tone = inPix->m < 255 && eraseInk && canEraseInk
|
|
? std::max(outPix->getTone(), 255 - (int)inPix->m)
|
|
: outPix->getTone();
|
|
}
|
|
*outPix = TPixelCM32(outPix->getInk(), paint, tone);
|
|
}
|
|
}
|
|
}
|
|
|
|
//-----------------------------------------------------------------------
|
|
|
|
std::string ToonzImageUtils::premultiply(const TFilePath &levelPath) {
|
|
assert(0);
|
|
/*
|
|
if (levelPath==TFilePath())
|
|
return "";
|
|
|
|
if(!TSystem::doesExistFileOrLevel(levelPath))
|
|
return string("Can't find level")+toString(levelPath.getWideString());
|
|
|
|
TFileType::Type type = TFileType::getInfo(levelPath);
|
|
if(type == TFileType::CMAPPED_LEVEL)
|
|
return "Cannot premultiply the selected file.";
|
|
|
|
if (type == TFileType::VECTOR_LEVEL || type == TFileType::VECTOR_IMAGE)
|
|
return "Cannot premultiply a vector-based level.";
|
|
|
|
if (type != TFileType::RASTER_LEVEL && type != TFileType::RASTER_IMAGE)
|
|
return "Cannot premultiply the selected file.";
|
|
|
|
try
|
|
{
|
|
TLevelReaderP lr = TLevelReaderP(levelPath);
|
|
if (!lr) return "";
|
|
TLevelP level = lr->loadInfo();
|
|
if(!level || level->getFrameCount()==0) return "";
|
|
string format = levelPath.getType();
|
|
|
|
|
|
TPropertyGroup* prop =
|
|
TApplication::instance()
|
|
->getCurrentScene()
|
|
->getProperties()
|
|
->getOutputProperties()
|
|
->getFileFormatProperties(format)
|
|
->clone();
|
|
assert(prop);
|
|
|
|
TEnumProperty *p = (TEnumProperty*)prop->getProperty("Bits Per Pixel");
|
|
int bpp = p?atoi((toString(p->getValue()).c_str())):32;
|
|
if (bpp!=32 && bpp!=64) //non ha senso premoltiplicare senza il canale alpha...
|
|
{
|
|
if (bpp<32)
|
|
p->setValue(L"32(RGBM)");
|
|
else
|
|
p->setValue(L"64(RGBM)");
|
|
}
|
|
|
|
bool isMovie = (format=="avi");
|
|
|
|
|
|
TLevelWriterP lw;
|
|
if (!isMovie)
|
|
{
|
|
lw = TLevelWriterP(levelPath, prop);
|
|
if (!lw) return "";
|
|
}
|
|
|
|
int count = 0;
|
|
TLevel::Iterator it = level->begin();
|
|
|
|
for (;it!=level->end(); ++it)
|
|
{
|
|
TImageReaderP ir = lr->getFrameReader(it->first);
|
|
|
|
TRasterImageP rimg = (TRasterImageP)ir->load();
|
|
if (!rimg)
|
|
continue;
|
|
|
|
TRop::premultiply(rimg->getRaster());
|
|
ir = 0;
|
|
|
|
if (isMovie)
|
|
level->setFrame(it->first, rimg);
|
|
else
|
|
{
|
|
TImageWriterP iw = lw->getFrameWriter(it->first);
|
|
iw->save(rimg);
|
|
iw = 0;
|
|
}
|
|
}
|
|
|
|
lr = TLevelReaderP();
|
|
|
|
if (isMovie)
|
|
{
|
|
TSystem::deleteFile(levelPath);
|
|
lw = TLevelWriterP(levelPath, prop);
|
|
if (!lw) return "";
|
|
lw->save(level);
|
|
}
|
|
if (prop)
|
|
delete prop;
|
|
}catch(...)
|
|
{
|
|
return "Cannot premultiply the selected file.";
|
|
}
|
|
*/
|
|
|
|
return "";
|
|
}
|