multimodel.cpp 7.46 KB
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////////////////////////////////////////////////////////
//
// GEM - Graphics Environment for Multimedia
//
// zmoelnig@iem.kug.ac.at
//
// Implementation file
//
//    Copyright (c) 1997-1999 Mark Danks.
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//    Copyright (c) Günther Geiger.
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//    Copyright (c) 2001-2011 IOhannes m zmölnig. forum::für::umläute. IEM. zmoelnig@iem.at
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//    For information on usage and redistribution, and for a DISCLAIMER OF ALL
//    WARRANTIES, see the file, "GEM.LICENSE.TERMS" in this distribution.
//
/////////////////////////////////////////////////////////
#include "multimodel.h"
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#include "Gem/State.h"
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#include <stdio.h>

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#ifdef _MSC_VER
# define snprintf _snprintf
#endif

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CPPEXTERN_NEW_WITH_FOUR_ARGS(multimodel, t_symbol *, A_DEFSYM, t_floatarg, A_DEFFLOAT, t_floatarg, A_DEFFLOAT, t_floatarg, A_DEFFLOAT);
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/////////////////////////////////////////////////////////
//
// multimodel
//
/////////////////////////////////////////////////////////
// Constructor
//
/////////////////////////////////////////////////////////
multimodel :: multimodel(t_symbol *filename, t_floatarg baseModel,
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                         t_floatarg topModel, t_floatarg skipRate)
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  : m_curModel(-1),
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    m_currentH(1.f), m_currentW(1.f)
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{
  inlet_new(this->x_obj, &this->x_obj->ob_pd, &s_float, gensym("mdl_num"));
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  // make sure that there are some characters
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  if (filename->s_name[0])
    openMess(filename->s_name, baseModel, topModel, skipRate);
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}

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////////////////////////////////////////////////////////
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// Destructor
//
/////////////////////////////////////////////////////////
multimodel :: ~multimodel()
{
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  cleanMultimodel();
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}

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void multimodel :: openMess(const std::string&filename, 
                            float baseModel, float topModel, float skipRate)
{
  int skipRatei=static_cast<int>(skipRate);
  int topModeli=static_cast<int>(topModel);
  int baseModeli=static_cast<int>(baseModel);
  if (skipRatei == 0) {
    if (topModeli == 0)
      open(filename, 0, baseModeli, 1);
    else
      open(filename, baseModeli, topModeli, 1);
  }
  else open(filename, baseModeli, topModeli, skipRatei);
}


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/////////////////////////////////////////////////////////
// cleanMultimodel
//
/////////////////////////////////////////////////////////
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void multimodel :: cleanMultimodel(void)
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{
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  unsigned int i;
  for(i=0; i<m_loaders.size(); i++) {
    if (m_loaders[i])
      delete m_loaders[i];
    m_loaders[i]=NULL;
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  }
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  m_loaders.clear();
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}

/////////////////////////////////////////////////////////
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// open
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//
/////////////////////////////////////////////////////////
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void multimodel :: open(const std::string&filename, int baseModel, int topModel, int skipRate)
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{
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  std::vector<gem::plugins::modelloader*>loaders;
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  if (!topModel) {
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    error("requires an int for number of models");
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    return;
  }
  if (baseModel > topModel) {
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    error("top range less than base model");
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    return;
  }
  if (skipRate < 1) skipRate = 1;
  char preName[256];
  char postName[256];
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  int i = 0;
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  const char *strPtr = filename.c_str();
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  while (strPtr[i] && strPtr[i] != '*') {
    preName[i] = strPtr[i];
    i++;
  }
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  if (!strPtr[i]) {
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    error("unable to find * in file name");
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    return;
  }

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  preName[i] = '\0';
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  strcpy(postName, &(strPtr[i+1]));
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  // need to figure out how many filenames there are to load
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  int numModels = (topModel + 1 - baseModel) / skipRate;
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  int realNum = baseModel;
  char bufName[MAXPDSTRING];
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  canvas_makefilename(const_cast<t_canvas*>(getCanvas()), preName, bufName, MAXPDSTRING);
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  char newName[MAXPDSTRING];
  newName[0]=0;
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  for (i = 0; i < numModels; i++, realNum += skipRate) {
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    snprintf(newName, MAXPDSTRING, "%s%d%s", bufName, realNum, postName);
    newName[MAXPDSTRING-1]=0;
    verbose(1, "trying to load '%s'", newName);
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    gem::plugins::modelloader*loader=gem::plugins::modelloader::getInstance();
    if(!loader) break;

    if(loader->open(newName, m_properties))
      loaders.push_back(loader);
    else {
      delete loader;
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      break;
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    }
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  }

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  if(loaders.size()!=numModels) {
    /* outch, something went wrong! */
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    error("failed to load model#%d of %d (%s)...resetting to original models", i, numModels, newName);
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    unsigned int ui;
    for(ui=0; ui<loaders.size(); ui++) {
      if(loaders[ui])
        delete loaders[ui];
      loaders[ui]=NULL;
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    }
    loaders.clear();
    return;
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  }

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  cleanMultimodel();
  m_loaders=loaders;
  m_curModel = 0;

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  post("loaded models: %s %s from %d to %d skipping %d",
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       bufName, postName, baseModel, topModel, skipRate);
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  setModified();
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}

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void multimodel :: applyProperties(void)
{
  unsigned int i;
  for(i=0; i<m_loaders.size(); i++) {
    if(m_loaders[i])
      m_loaders[i]->setProperties(m_properties);
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  }
}

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/////////////////////////////////////////////////////////
// materialMess
//
/////////////////////////////////////////////////////////
void multimodel :: textureMess(int state)
{
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  std::string textype;
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  switch(state) {
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  case 0:
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    textype="linear";
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    break;
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  case 1:
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    textype="spheremap";
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    break;
  case 2:
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    textype="UV";
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    break;
  default:
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    break;
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  }
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  if(textype.empty()) {
    m_properties.erase("textype");
  } else {
    gem::any value=textype;
    m_properties.set("textype", value);
  }
  applyProperties();
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}

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/////////////////////////////////////////////////////////
// smoothMess
//
/////////////////////////////////////////////////////////
void multimodel :: smoothMess(float fsmooth)
{  
  m_properties.set("smooth", fsmooth);
  applyProperties();
}
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/////////////////////////////////////////////////////////
// matrialMess
//
/////////////////////////////////////////////////////////
void multimodel :: rescaleMess(bool state)
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{
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  gem::any value=state;
  m_properties.set("rescale", value);
  applyProperties();
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}
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/////////////////////////////////////////////////////////
// render
//
/////////////////////////////////////////////////////////
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void multimodel :: render(GemState *state)
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{
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  if (0==m_loaders.size() || m_curModel<0 || ((unsigned int)m_curModel)>=m_loaders.size())
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    return;
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  if (state && (m_currentH != state->texCoordX(2) || m_currentW != state->texCoordY(2))) {
    m_currentH = state->texCoordX(2);
    m_currentW = state->texCoordY(2);
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    m_properties.set("texwidth", m_currentW);
    m_properties.set("texheight", m_currentH);
    applyProperties();
  }
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  m_loaders[m_curModel]->render();
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}

/////////////////////////////////////////////////////////
// changeModel
//
/////////////////////////////////////////////////////////
void multimodel :: changeModel(int modelNum)
{
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  if (modelNum < 0 || ((unsigned int)modelNum) >= m_loaders.size()) {
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    error("selection %d out of range: 0..%d", modelNum, m_loaders.size()-1);
    return;
  }
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  m_curModel = modelNum;
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  //  setModified();
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}

/////////////////////////////////////////////////////////
// static member function
//
/////////////////////////////////////////////////////////
void multimodel :: obj_setupCallback(t_class *classPtr)
{
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  class_addmethod(classPtr, reinterpret_cast<t_method>(&multimodel::openMessCallback),
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                  gensym("open"), A_SYMBOL, A_FLOAT, A_DEFFLOAT, A_DEFFLOAT, A_NULL);
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  CPPEXTERN_MSG1(classPtr, "mdl_num", changeModel, int);
  CPPEXTERN_MSG1(classPtr, "rescale", rescaleMess, bool);
  CPPEXTERN_MSG1(classPtr, "texture", textureMess, int);
  CPPEXTERN_MSG1(classPtr, "smooth", smoothMess, float);
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}
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void multimodel :: openMessCallback(void *data, t_symbol *filesymbol, t_float baseModel,
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                                    t_floatarg topModel, t_floatarg skipRate)
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{
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  GetMyClass(data)->openMess(filesymbol->s_name, baseModel, topModel, skipRate);
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}