Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
#include "texception.h"
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#include "tfxparam.h"
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#include "trop.h"
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#include "stdfx.h"
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#include "trasterfx.h"
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#include "tparamset.h"
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#include "tparamuiconcept.h"
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//-------------------------------------------------------------------
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Shinya Kitaoka 120a6e
class BaseRaylitFx : public TStandardRasterFx {
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protected:
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  TRasterFxPort m_input;
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  TPointParamP m_p;
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  TDoubleParamP m_z;
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  TDoubleParamP m_intensity;
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  TDoubleParamP m_decay;
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  TDoubleParamP m_smoothness;
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  TBoolParamP m_includeInput;
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public:
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  BaseRaylitFx()
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      : m_p(TPointD(0, 0))
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      , m_z(300.0)
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      , m_intensity(60)
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      , m_decay(1.0)
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      , m_smoothness(100)
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      , m_includeInput(false) {
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    m_p->getX()->setMeasureName("fxLength");
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    m_p->getY()->setMeasureName("fxLength");
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    bindParam(this, "p", m_p);
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    bindParam(this, "z", m_z);
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    bindParam(this, "intensity", m_intensity);
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    bindParam(this, "decay", m_decay);
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    bindParam(this, "smoothness", m_smoothness);
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    bindParam(this, "includeInput", m_includeInput);
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    addInputPort("Source", m_input);
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  }
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  ~BaseRaylitFx() {}
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  bool doGetBBox(double frame, TRectD &bBox,
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                 const TRenderSettings &info) override;
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  bool canHandle(const TRenderSettings &info, double frame) override {
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    return false;
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  }
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  int getMemoryRequirement(const TRectD &rect, double frame,
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                           const TRenderSettings &info) override;
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  void doDryCompute(TRectD &rect, double frame,
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                    const TRenderSettings &info) override;
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  void getParamUIs(TParamUIConcept *&concepts, int &length) override {
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    concepts = new TParamUIConcept[length = 1];
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    concepts[0].m_type  = TParamUIConcept::POINT;
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    concepts[0].m_label = "Center";
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    concepts[0].m_params.push_back(m_p);
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  }
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};
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//-------------------------------------------------------------------
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bool BaseRaylitFx::doGetBBox(double frame, TRectD &bBox,
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                             const TRenderSettings &info) {
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  if (m_input.isConnected()) {
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    bool ret      = m_input->doGetBBox(frame, bBox, info);
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    if (ret) bBox = TConsts::infiniteRectD;
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    return ret;
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  } else {
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    bBox = TRectD();
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    return false;
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  }
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};
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//-------------------------------------------------------------------
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void BaseRaylitFx::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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  TRectD bboxIn;
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  m_input->getBBox(frame, bboxIn, ri);
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  if (bboxIn == TConsts::infiniteRectD) bboxIn = rect;
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  TDimension sizeIn(std::max(tceil(bboxIn.getLx()), 1),
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                    std::max(tceil(bboxIn.getLy()), 1));
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  bboxIn = TRectD(bboxIn.getP00(), TDimensionD(sizeIn.lx, sizeIn.ly));
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  m_input->dryCompute(bboxIn, frame, ri);
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}
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//---------------------------------------------------------------------------
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int BaseRaylitFx::getMemoryRequirement(const TRectD &rect, double frame,
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                                       const TRenderSettings &info) {
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  TRectD bboxIn;
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  m_input->getBBox(frame, bboxIn, info);
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  if (bboxIn == TConsts::infiniteRectD) return -1;
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  if (bboxIn.isEmpty()) return 0;
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  return TRasterFx::memorySize(bboxIn, info.m_bpp);
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}
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//========================================================================================
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class RaylitFx final : public BaseRaylitFx {
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  FX_PLUGIN_DECLARATION(RaylitFx)
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protected:
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  TPixelParamP m_color;
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  TBoolParamP m_invert;
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public:
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  RaylitFx() : m_color(TPixel(255, 80, 0)), m_invert(false) {
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    bindParam(this, "color", m_color);
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    bindParam(this, "invert", m_invert);
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  }
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  void doCompute(TTile &tile, double frame, const TRenderSettings &) override;
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};
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FX_PLUGIN_IDENTIFIER(RaylitFx, "raylitFx")
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//-------------------------------------------------------------------
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void RaylitFx::doCompute(TTile &tileOut, double frame,
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                         const TRenderSettings &ri) {
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  if (!m_input.isConnected()) return;
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  double scale = sqrt(fabs(ri.m_affine.det()));
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  int shrink   = (ri.m_shrinkX + ri.m_shrinkY) / 2;
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  TPointD p(ri.m_affine * m_p->getValue(frame));
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  TRectD rectIn(tileOut.m_pos, TDimensionD(tileOut.getRaster()->getLx(),
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                                           tileOut.getRaster()->getLy()));
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  TRectD bboxIn;
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  m_input->getBBox(frame, bboxIn, ri);
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  if (bboxIn == TConsts::infiniteRectD) bboxIn = rectIn;
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  if (!bboxIn.isEmpty()) {
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    TPoint posIn, posOut;
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    TTile tileIn;
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    TDimension sizeIn(std::max(tceil(bboxIn.getLx()), 1),
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                      std::max(tceil(bboxIn.getLy()), 1));
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    m_input->allocateAndCompute(tileIn, bboxIn.getP00(), sizeIn,
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                                tileOut.getRaster(), frame, ri);
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    TRop::RaylitParams params;
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    params.m_scale = scale;
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    params.m_lightOriginSrc.x = params.m_lightOriginDst.x = p.x;
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    params.m_lightOriginSrc.y = params.m_lightOriginDst.y = p.y;
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    params.m_lightOriginSrc.z = params.m_lightOriginDst.z =
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        (int)m_z->getValue(frame);
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    params.m_color        = m_color->getValue(frame);
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    params.m_intensity    = m_intensity->getValue(frame);
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    params.m_decay        = m_decay->getValue(frame);
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    params.m_smoothness   = m_smoothness->getValue(frame);
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    params.m_invert       = m_invert->getValue();
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    params.m_includeInput = m_includeInput->getValue();
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    params.m_lightOriginSrc.x -= (int)tileIn.m_pos.x;
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    params.m_lightOriginSrc.y -= (int)tileIn.m_pos.y;
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    params.m_lightOriginDst.x -= (int)tileOut.m_pos.x;
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    params.m_lightOriginDst.y -= (int)tileOut.m_pos.y;
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    TRop::raylit(tileOut.getRaster(), tileIn.getRaster(), params);
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  }
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}
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//========================================================================================
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class ColorRaylitFx final : public BaseRaylitFx {
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  FX_PLUGIN_DECLARATION(ColorRaylitFx)
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public:
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  ColorRaylitFx() : BaseRaylitFx() {}
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  void doCompute(TTile &tile, double frame, const TRenderSettings &) override;
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};
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//-------------------------------------------------------------------
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void ColorRaylitFx::doCompute(TTile &tileOut, double frame,
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                              const TRenderSettings &ri) {
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  if (!m_input.isConnected()) return;
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  double scale = sqrt(fabs(ri.m_affine.det()));
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  int shrink   = (ri.m_shrinkX + ri.m_shrinkY) / 2;
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  TPointD p(ri.m_affine * m_p->getValue(frame));
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  TRectD rectIn(tileOut.m_pos, TDimensionD(tileOut.getRaster()->getLx(),
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                                           tileOut.getRaster()->getLy()));
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  TRectD bboxIn;
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  m_input->getBBox(frame, bboxIn, ri);
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  if (bboxIn == TConsts::infiniteRectD) bboxIn = rectIn;
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  if (!bboxIn.isEmpty()) {
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    TPoint posIn, posOut;
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    TTile tileIn;
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    TDimension sizeIn(std::max(tceil(bboxIn.getLx()), 1),
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                      std::max(tceil(bboxIn.getLy()), 1));
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    m_input->allocateAndCompute(tileIn, bboxIn.getP00(), sizeIn,
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                                tileOut.getRaster(), frame, ri);
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    TRop::RaylitParams params;
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    params.m_scale = scale;
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    params.m_lightOriginSrc.x = params.m_lightOriginDst.x = p.x;
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    params.m_lightOriginSrc.y = params.m_lightOriginDst.y = p.y;
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    params.m_lightOriginSrc.z = params.m_lightOriginDst.z =
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        (int)m_z->getValue(frame);
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    params.m_intensity    = m_intensity->getValue(frame);
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    params.m_decay        = m_decay->getValue(frame);
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    params.m_smoothness   = m_smoothness->getValue(frame);
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    params.m_includeInput = m_includeInput->getValue();
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    params.m_lightOriginSrc.x -= (int)tileIn.m_pos.x;
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    params.m_lightOriginSrc.y -= (int)tileIn.m_pos.y;
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    params.m_lightOriginDst.x -= (int)tileOut.m_pos.x;
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    params.m_lightOriginDst.y -= (int)tileOut.m_pos.y;
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    TRop::glassRaylit(tileOut.getRaster(), tileIn.getRaster(), params);
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  }
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}
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FX_PLUGIN_IDENTIFIER(ColorRaylitFx, "colorRaylitFx")