Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
#include "trandom.h"
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#include "tfxparam.h"
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#include "stdfx.h"
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class NoiseFx final : public TStandardRasterFx {
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  FX_PLUGIN_DECLARATION(NoiseFx)
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  TRasterFxPort m_input;
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  TDoubleParamP m_value;
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  TBoolParamP m_Red;
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  TBoolParamP m_Green;
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  TBoolParamP m_Blue;
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  TBoolParamP m_BW;
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  TBoolParamP m_Animate;
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public:
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  NoiseFx()
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      : m_value(100.0)
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      , m_Red(1.0)
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      , m_Green(1.0)
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      , m_Blue(1.0)
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      , m_BW(0.0)
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      , m_Animate(0.0) {
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    bindParam(this, "Intensity", m_value);
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    bindParam(this, "Red", m_Red);
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    bindParam(this, "Green", m_Green);
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    bindParam(this, "Blue", m_Blue);
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    bindParam(this, "Black_White", m_BW);
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    bindParam(this, "Animate", m_Animate);
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    addInputPort("Source", m_input);
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    m_value->setValueRange(0, (std::numeric_limits<double>::max)());</double>
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  }
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  ~NoiseFx(){};
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  bool doGetBBox(double frame, TRectD &bBox,
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                 const TRenderSettings &info) override {
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    if (m_input.isConnected())
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      return m_input->doGetBBox(frame, bBox, info);
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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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  void doCompute(TTile &tile, double frame, const TRenderSettings &ri) override;
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  std::string getAlias(double frame,
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                       const TRenderSettings &info) const override;
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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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//------------------------------------------------------------------------------
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namespace {
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template <class pixel=""></class>
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class RayleighNoise {
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  std::vector<double> noise_buf;</double>
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public:
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  RayleighNoise(double sigma, int seed = 0) {
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    noise_buf.resize(PIXEL::maxChannelValue + 1);
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    TRandom random(seed);
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    sigma = log(sigma * 0.07 + 1);
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    if (PIXEL::maxChannelValue == 255)
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      sigma = 2.0 * sigma * sigma * sigma * sigma;
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    else
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      sigma = 257.0 * 2.0 * sigma * sigma * sigma * sigma;
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    for (int i = 0; i < PIXEL::maxChannelValue + 1; i++) {
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      noise_buf[i] = sigma * sqrt(-log(1.0 - random.getFloat())) *
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                     cos(M_PI * (2.0 * random.getFloat() - 1.0));
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    }
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  }
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  double get_value(int index) {
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    tcrop(index, 0, PIXEL::maxChannelValue);
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    return noise_buf[index];
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  }
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};
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}
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template <typename channel_type="" pixel,="" pixelgray,="" typename=""></typename>
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void doNoise(TRasterPT<pixel> &ras, double sigma, bool bw, bool red, bool green,</pixel>
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             bool blue, bool animate, double frame) {
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  RayleighNoise<pixel> noise(sigma);</pixel>
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  TRandom random;
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  if (animate) random.setSeed(frame);
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  int j;
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  ras->lock();
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  for (j = 0; j < ras->getLy(); j++) {
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    PIXEL *pix    = ras->pixels(j);
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    PIXEL *endPix = pix + ras->getLx();
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    while (pix < endPix) {
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      if (bw) {
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        double index;
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        double value;
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        index = random.getFloat() * pix->m;  // PIXEL::maxChannelValue;
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        value = noise.get_value(tfloor(index));
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        // value =
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        // (value<pix->m)?((value>0)?(int)value:0):PIXEL::maxChannelValue;</pix->
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        // if(value)
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        //{
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        int reference;
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        reference = PIXELGRAY::from(*pix).value;
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        pix->r    = tcrop<int>(value + reference, 0, pix->m);</int>
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        pix->g    = tcrop<int>(value + reference, 0, pix->m);</int>
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        pix->b    = tcrop<int>(value + reference, 0, pix->m);</int>
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        //}
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      } else {
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        double r, g, b, index;
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        if (red) {
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          index  = random.getFloat() * pix->m;  // PIXEL::maxChannelValue;
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          r      = noise.get_value(tfloor(index)) + pix->r;
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          pix->r = tcrop<int>(r, 0, pix->m);</int>
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        }
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        if (green) {
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          index  = random.getFloat() * pix->m;  // PIXEL::maxChannelValue;
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          g      = noise.get_value(tfloor(index)) + pix->g;
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          pix->g = tcrop<int>(g, 0, pix->m);</int>
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        }
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        if (blue) {
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          index  = random.getFloat() * pix->m;  // PIXEL::maxChannelValue;
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          b      = noise.get_value(tfloor(index)) + pix->b;
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          pix->b = tcrop<int>(b, 0, pix->m);</int>
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        }
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      }
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      pix++;
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    }
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  }
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  ras->unlock();
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}
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//-------------------------------------------------------------------
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void NoiseFx::doCompute(TTile &tile, double frame, const TRenderSettings &ri) {
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  if (!m_input.isConnected()) return;
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  m_input->compute(tile, frame, ri);
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  double sigma = m_value->getValue(frame);
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  bool bw      = m_BW->getValue();
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  bool red     = m_Red->getValue();
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  bool green   = m_Green->getValue();
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  bool blue    = m_Blue->getValue();
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  bool animate = m_Animate->getValue();
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  if (sigma == 0.0) return;
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  TRaster32P raster32 = tile.getRaster();
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  if (raster32)
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    doNoise<tpixel32, tpixelgr8,="" uchar="">(raster32, sigma, bw, red, green, blue,</tpixel32,>
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                                        animate, frame);
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  else {
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    TRaster64P raster64 = tile.getRaster();
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    if (raster64)
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      doNoise<tpixel64, tpixelgr16,="" ushort="">(raster64, sigma, bw, red, green,</tpixel64,>
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                                            blue, animate, frame);
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    else
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      throw TException("Brightness&Contrast: unsupported Pixel Type");
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  }
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}
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//------------------------------------------------------------------
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std::string NoiseFx::getAlias(double frame, const TRenderSettings &info) const {
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  std::string alias = getFxType();
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  alias += "[";
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  // alias degli effetti connessi alle porte di input separati da virgole
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  // una porta non connessa da luogo a un alias vuoto (stringa vuota)
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  int i = 0;
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  for (i = 0; i < getInputPortCount(); i++) {
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    TFxPort *port = getInputPort(i);
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    if (port->isConnected()) {
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      TRasterFxP ifx = port->getFx();
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      assert(ifx);
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      alias += ifx->getAlias(frame, info);
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    }
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    alias += ",";
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  }
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  bool addframe = 0;
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  std::string paramalias("");
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  for (i = 0; i < getParams()->getParamCount(); i++) {
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    TParam *param = getParams()->getParam(i);
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    paramalias += param->getName() + "=" + param->getValueAlias(frame, 3);
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    if (param->getName() == "Animate" && param->getValueAlias(frame, 0) == "1")
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      addframe = true;
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  }
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  if (addframe) alias += std::to_string(frame) + ",";
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  alias += paramalias + "]";
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  return alias;
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}
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//------------------------------------------------------------------
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FX_PLUGIN_IDENTIFIER(NoiseFx, "noiseFx")