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#ifdef _MSC_VER
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#pragma warning(disable : 4996)
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#endif
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#include "ttzpimagefx.h"
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#include "texception.h"
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#include "tfxparam.h"
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#include "stdfx.h"
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#include "trasterfx.h"
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#include "tspectrumparam.h"
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class ArtContourFx final : public TStandardRasterFx {
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  FX_PLUGIN_DECLARATION(ArtContourFx)
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  TRasterFxPort m_input;
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  TRasterFxPort m_controller;
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  TStringParamP m_colorIndex;
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  TBoolParamP m_keepColor;
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  TBoolParamP m_keepLine;
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  TBoolParamP m_includeAlpha;
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  TDoubleParamP m_density;
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  TRangeParamP m_distance;
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  TBoolParamP m_randomness;
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  TRangeParamP m_orientation;
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  TRangeParamP m_size;
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public:
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  ArtContourFx()
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      : m_colorIndex(L"1,2,3")
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      , m_keepColor(false)
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      , m_keepLine(false)
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      , m_includeAlpha(true)
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      , m_density(0.0)
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      , m_distance(DoublePair(30.0, 30.0))
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      , m_randomness(true)
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      , m_orientation(DoublePair(0.0, 180.0))
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      , m_size(DoublePair(30.0, 30.0)) {
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    bindParam(this, "Color_Index", m_colorIndex);
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    bindParam(this, "Keep_color", m_keepColor);
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    bindParam(this, "Keep_Line", m_keepLine);
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    bindParam(this, "Include_Alpha", m_includeAlpha);
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    bindParam(this, "Density", m_density);
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    bindParam(this, "Distance", m_distance);
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    bindParam(this, "Randomness", m_randomness);
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    bindParam(this, "Orientation", m_orientation);
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    bindParam(this, "Size", m_size);
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    addInputPort("Source", m_input);
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    addInputPort("Controller", m_controller);
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    m_density->setValueRange(0.0, 100.0);
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    m_distance->getMin()->setValueRange(0.0, 1000.0);
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    m_distance->getMax()->setValueRange(0.0, 1000.0);
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    m_orientation->getMin()->setValueRange(-180.0, 180.0);
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    m_orientation->getMax()->setValueRange(-180.0, 180.0);
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    m_orientation->getMin()->setMeasureName("angle");
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    m_orientation->getMax()->setMeasureName("angle");
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    m_size->getMin()->setValueRange(0.0, 1000.0);
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    m_size->getMax()->setValueRange(0.0, 1000.0);
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  }
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  ~ArtContourFx() {}
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  //----------------------------------------------------------------------------
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  SandorFxRenderData *buildRenderData(double frame, int shrink,
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                                      const TRectD &controlBox,
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                                      const std::string &controllerAlias) {
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    int argc = 12;
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    const char *argv[12];
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    argv[0] = strsave(::to_string(m_colorIndex->getValue()).c_str());
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    getValues(argv, argc, frame);
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    SandorFxRenderData *artContourData =
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        new SandorFxRenderData(ArtAtContour, argc, argv, 0, shrink, controlBox);
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    ArtAtContourParams ¶ms        = artContourData->m_contourParams;
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    params.m_density                  = m_density->getValue(frame) / 100;
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    params.m_colorIndex               = m_colorIndex->getValue();
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    params.m_keepLine                 = m_keepLine->getValue();
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    params.m_includeAlpha             = m_includeAlpha->getValue();
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    params.m_maxOrientation           = m_orientation->getValue(frame).second;
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    params.m_maxDistance              = m_distance->getValue(frame).second / 10;
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    params.m_maxSize                  = m_size->getValue(frame).second / 100;
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    params.m_minOrientation           = m_orientation->getValue(frame).first;
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    params.m_minDistance              = m_distance->getValue(frame).first / 10;
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    params.m_minSize                  = m_size->getValue(frame).first / 100;
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    params.m_randomness               = m_randomness->getValue();
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    params.m_keepColor                = m_keepColor->getValue();
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    artContourData->m_controllerAlias = controllerAlias;
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    return artContourData;
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  }
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  //----------------------------------------------------------------------------
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  bool doGetBBox(double frame, TRectD &bBox,
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                 const TRenderSettings &ri) override {
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    if (m_input.isConnected() && m_controller.isConnected()) {
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      TRectD controlBox, inputBox;
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      TRenderSettings ri2(ri);
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      ri2.m_affine = TAffine();
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      m_controller->getBBox(frame, controlBox, ri2);
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      TRenderSettings ri3(ri);
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      int shrink = tround((ri.m_shrinkX + ri.m_shrinkY) / 2.0);
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      // Should be there no need for the alias...
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      SandorFxRenderData *artContourData =
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          buildRenderData(frame, shrink, controlBox, "");
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      ri3.m_data.push_back(artContourData);
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      return m_input->doGetBBox(frame, bBox, ri3);
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    } else if (m_input.isConnected()) {
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      m_input->doGetBBox(frame, bBox, ri);
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      return false;
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    }
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    bBox = TRectD();
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    return false;
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  }
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  //-----------------------------------------------------------------------------
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  bool canHandle(const TRenderSettings &info, double frame) override {
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    return true;
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  }
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  //-----------------------------------------------------------------------------
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  bool allowUserCacheOnPort(int port) override { return port != 0; }
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  //-----------------------------------------------------------------------------
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  void doDryCompute(TRectD &rect, double frame,
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                    const TRenderSettings &ri) override;
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  //-----------------------------------------------------------------------------
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  void doCompute(TTile &tile, double frame, const TRenderSettings &ri) override;
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  //-----------------------------------------------------------------------------
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private:
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  void getValues(const char *argv[], int argc, double frame) {
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    double values[12];
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    values[1]  = m_size->getValue(frame).second / 100;
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    values[2]  = m_size->getValue(frame).first / 100;
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    values[3]  = m_orientation->getValue(frame).second;
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    values[4]  = m_orientation->getValue(frame).first;
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    values[5]  = m_randomness->getValue() ? 1.0 : 0.0;
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    values[6]  = m_distance->getValue(frame).second / 10;
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    values[7]  = m_distance->getValue(frame).first / 10;
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    values[8]  = m_density->getValue(frame) / 100;
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    values[9]  = m_keepLine->getValue() ? 1.0 : 0.0;
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    values[10] = m_keepColor->getValue() ? 1.0 : 0.0;
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    values[11] = m_includeAlpha->getValue() ? 1.0 : 0.0;
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    convertParam(values, argv, argc);
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  }
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  //----------------------------------------------------------------------
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  char *strsave(const char *t) {
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    char *s;
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    s = (char *)malloc(strlen(t) + 1);
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    strcpy(s, t);
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    return s;
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  }
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  //-----------------------------------------------------------------------
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  void convertParam(double param[], const char *cParam[], int cParamLen) {
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    std::string app;
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    for (int i = 1; i <= 11; i++) {
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      app       = std::to_string(param[i]);
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      cParam[i] = strsave(app.c_str());
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    }
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  }
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};
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FX_PLUGIN_IDENTIFIER(ArtContourFx, "artContourFx");
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//-----------------------------------------------------------------------------
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void ArtContourFx::doDryCompute(TRectD &rect, double frame,
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                                const TRenderSettings &ri) {
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  if (!m_input.isConnected()) return;
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  if (!m_controller.isConnected()) return;
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  TRenderSettings ri2(ri);
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  ri2.m_affine = TAffine();
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  TRectD controlBox;
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  m_controller->getBBox(frame, controlBox, ri2);
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  if (controlBox == TConsts::infiniteRectD) controlBox = rect;
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  TDimension dim = convert(controlBox).getSize();
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  TRectD controlRect(controlBox.getP00(), TDimensionD(dim.lx, dim.ly));
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  m_controller->dryCompute(controlRect, frame, ri2);
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  TRenderSettings ri3(ri);
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  int shrink               = tround((ri.m_shrinkX + ri.m_shrinkY) / 2.0);
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  std::string controlAlias = m_controller->getAlias(frame, ri2);
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  SandorFxRenderData *artContourData =
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      buildRenderData(frame, shrink, controlBox, controlAlias);
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  ri3.m_data.push_back(artContourData);
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  ri3.m_userCachable = false;
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  m_input->dryCompute(rect, frame, ri3);
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}
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//-----------------------------------------------------------------------------
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void ArtContourFx::doCompute(TTile &tile, double frame,
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                             const TRenderSettings &ri) {
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  if (!m_input.isConnected()) return;
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  if (!m_controller.isConnected()) {
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    m_input->compute(tile, frame, ri);
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    return;
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  }
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  TRenderSettings ri2(ri);
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  ri2.m_affine = TAffine();
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  TRectD controlBox;
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  m_controller->getBBox(frame, controlBox, ri2);
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  if (controlBox == TConsts::infiniteRectD) {
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    TDimension tileDim = tile.getRaster()->getSize();
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    controlBox = TRectD(tile.m_pos, TDimensionD(tileDim.lx, tileDim.ly));
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  }
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  TTile ctrTile;
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  ctrTile.m_pos  = controlBox.getP00();
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  TDimension dim = convert(controlBox).getSize();
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  m_controller->allocateAndCompute(ctrTile, ctrTile.m_pos, dim,
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                                   tile.getRaster(), frame, ri2);
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  TRenderSettings ri3(ri);
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  // Build the render data
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  int shrink               = tround((ri.m_shrinkX + ri.m_shrinkY) / 2.0);
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  std::string controlAlias = m_controller->getAlias(frame, ri2);
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  SandorFxRenderData *artContourData =
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      buildRenderData(frame, shrink, controlBox, controlAlias);
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  // Add the controller raster
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  artContourData->m_controller = ctrTile.getRaster();
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  // Push the data among the others
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  ri3.m_data.push_back(artContourData);
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  ri3.m_userCachable = false;
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  m_input->compute(tile, frame, ri3);
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}