Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
#include "tregionprop.h"
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#include "tstroke.h"
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#include "tregion.h"
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//#include "tcurves.h"
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//#include "tgl.h"
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//#include "tcolorfunctions.h"
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#include "tmathutil.h"
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#include "drawutil.h"
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#include "tvectorrenderdata.h"
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//#include "tcolorstyles.h"
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#include "tsimplecolorstyles.h"
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//#include "tcurveutil.h"
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//#include "tdebugmessage.h"
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//#include "tflash.h"
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#ifndef _WIN32
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#define CALLBACK
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#endif
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//=============================================================================
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TRegionProp::TRegionProp(const TRegion *region)
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    : m_region(region), m_regionChanged(true) {}
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//-------------------------------------------------------------------
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//===================================================================
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namespace {
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//-------------------------------------------------------------------
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bool computeOutline(const TRegion *region,
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                    TRegionOutline::PointVector &polyline,
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                    const double pixelSize) {
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  bool doAntialiasing = false;
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  polyline.clear();
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  std::vector<tpointd> polyline2d;</tpointd>
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  std::vector<int> indices;</int>
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  int i, edgeSize = region->getEdgeCount(), oldSize = 0;
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  for (i = 0; i < edgeSize; i++) {
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    TEdge &edge = *region->getEdge(i);
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    if (edge.m_index >= 0 && edge.m_s) {
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      bool outline = (edge.m_s->getAverageThickness() == 0.0);
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      if (outline && !doAntialiasing) {
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        // The region must be antialiased if it has at least one invisible
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        // (0-thin) edge
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        doAntialiasing = true;
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        // Plus, edges will have to be reproduced independently from the edge
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        // side
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        indices.reserve(edgeSize);
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      }
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      if (outline && (edge.m_w0 > edge.m_w1)) {
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        int newSize = polyline2d.size();
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        if (oldSize < newSize) {
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          // There is a sequence of forward vertices
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          indices.push_back(newSize - oldSize);
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          oldSize = newSize;
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        }
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        stroke2polyline(polyline2d, *edge.m_s, pixelSize, edge.m_w1, edge.m_w0,
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                        true);
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        // Insert the sequence of backward vertices
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        newSize = polyline2d.size();
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        indices.push_back(oldSize - newSize);
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        oldSize = newSize;
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      } else
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        stroke2polyline(polyline2d, *edge.m_s, pixelSize, edge.m_w0, edge.m_w1);
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    }
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  }
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  // Copy points to the output
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  int pointNumber = polyline2d.size();
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  polyline.reserve(pointNumber);
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  int j, k, l, indicesCount = indices.size();
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  for (i = 0, k = 0; k < indicesCount; ++k) {
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    l = indices[k];
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    if (l == 0) continue;
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    if (l > 0) {
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      l = i + l;
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      for (j = i; j < l; ++j) polyline.push_back(T3DPointD(polyline2d[j], 0.0));
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      i      = l;
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    } else {
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      l = i - l;
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      j = l - 1;
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      // Inverted sequences are symmetric by construction.
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      // If necessary, chop the last element.
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      if (polyline2d[i] == polyline2d[j]) ++i;
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      for (; j >= i; --j) polyline.push_back(T3DPointD(polyline2d[j], 0.0));
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      i = l;
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    }
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  }
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  // Finally, copy the remaining (forward) ones
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  for (; i < pointNumber; ++i)
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    polyline.push_back(T3DPointD(polyline2d[i], 0.0));
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  return doAntialiasing;
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}
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/*!
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 This function accept a polygon which can have autointersections,
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 and creates a number of not-autointersecting polygons. the second function is
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 for recursive calls.
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 It is used for The GlTessellator
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*/
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//-------------------------------------------------------------------
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//-------------------------------------------------------------------
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}  // end namaspace
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//-------------------------------------------------------------------
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//-------------------------------------------------------------------
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void OutlineRegionProp::computeRegionOutline() {
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  int subRegionNumber = getRegion()->getSubregionCount();
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  TRegionOutline::PointVector app;
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  m_outline.m_exterior.clear();
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  computeOutline(getRegion(), app, m_pixelSize);
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  m_outline.m_doAntialiasing = true;
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  m_outline.m_exterior.push_back(app);
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  m_outline.m_interior.clear();
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  m_outline.m_interior.reserve(subRegionNumber);
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  for (int i = 0; i < subRegionNumber; i++) {
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    app.clear();
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    computeOutline(getRegion()->getSubregion(i), app, m_pixelSize);
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    m_outline.m_doAntialiasing = true;
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    m_outline.m_interior.push_back(app);
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  }
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  m_outline.m_bbox = getRegion()->getBBox();
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}
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//-------------------------------------------------------------------
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OutlineRegionProp::OutlineRegionProp(const TRegion *region,
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                                     const TOutlineStyleP colorStyle)
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    : TRegionProp(region), m_pixelSize(0), m_colorStyle(colorStyle) {
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  m_styleVersionNumber = m_colorStyle->getVersionNumber();
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}
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//-------------------------------------------------------------------
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void OutlineRegionProp::draw(const TVectorRenderData &rd) {
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  if (rd.m_clippingRect != TRect() && !rd.m_is3dView &&
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      !(rd.m_aff * getRegion()->getBBox()).overlaps(convert(rd.m_clippingRect)))
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    return;
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  glPushMatrix();
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  tglMultMatrix(rd.m_aff);
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  double pixelSize = sqrt(tglGetPixelSize2());
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  if (!isAlmostZero(pixelSize - m_pixelSize, 1e-5) || m_regionChanged ||
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      m_styleVersionNumber != m_colorStyle->getVersionNumber()) {
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    m_pixelSize     = pixelSize;
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    m_regionChanged = false;
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    computeRegionOutline();
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    TOutlineStyle::RegionOutlineModifier *modifier =
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        m_colorStyle->getRegionOutlineModifier();
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    if (modifier) modifier->modify(m_outline);
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    m_styleVersionNumber = m_colorStyle->getVersionNumber();
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  }
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  assert(!m_outline.m_exterior.empty());
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  m_colorStyle->drawRegion(rd.m_cf, rd.m_antiAliasing && rd.m_regionAntialias,
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                           m_outline);
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  glPopMatrix();
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}
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//-------------------------------------------------------------------
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TRegionProp *OutlineRegionProp::clone(const TRegion *region) const {
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  OutlineRegionProp *prop = new OutlineRegionProp(region, m_colorStyle);
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  prop->m_regionChanged   = m_regionChanged;
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  prop->m_pixelSize       = m_pixelSize;
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  prop->m_outline         = m_outline;
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  return prop;
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}
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//-------------------------------------------------------------------
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const TColorStyle *OutlineRegionProp::getColorStyle() const {
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  return m_colorStyle.getPointer();
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}
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//-------------------------------------------------------------------
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void OutlineRegionProp::draw(TFlash &flash) {
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  m_colorStyle->drawRegion(flash, getRegion());
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  /*
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//flash.setColor(m_colorStyle->getMainColor());
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m_colorStyle->setFill(flash);
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//rd.setTexture(m_colorStyle->getMainColor());
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for (i=0; i<(int)r->getEdgeCount(); i++)
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  computeQuadChain(*r->getEdge(i), quadArray, toBeDeleted);
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flash.drawPolygon(quadArray);
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clearPointerContainer(toBeDeleted);
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*/
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}