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//------------------------------------------------------------
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//------------------------------------------------------------
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// MAGiC
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// Jean Christophe Cuilli�e et Vincent FRANCOIS
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// D�artement de G�ie M�anique - UQTR
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//------------------------------------------------------------
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// Le projet MAGIC est un projet de recherche du d�artement
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// de g�ie m�anique de l'Universit�du Qu�ec �
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// Trois Rivi�es
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// Les librairies ne peuvent �re utilis�s sans l'accord
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// des auteurs (contact : francois@uqtr.ca)
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//------------------------------------------------------------
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//------------------------------------------------------------
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//
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// mg_file.cpp
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//
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//------------------------------------------------------------
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//------------------------------------------------------------
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// COPYRIGHT 2000
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// Version du 02/03/2006 �11H22
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//------------------------------------------------------------
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//------------------------------------------------------------
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#include "gestionversion.h"
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#pragma hdrstop
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#include "mg_file.h"
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#include "pars_argument.h"
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#include "parse.h"
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#ifdef BREP_STEP
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#include "step_surface.h"
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#include "step_courbe.h"
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#include "step_point.h"
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#endif
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#ifdef BREP_SAT
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#include "acis_surface.h"
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#include "acis_courbe.h"
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#include "acis_point.h"
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#endif
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#ifdef BREP_SLD
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#include "sld_point.h"
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#include "sld_courbe.h"
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#include "sld_surface.h"
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#include "sld_fonction.h"
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#endif
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#include "lc_point.h"
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//OCC
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#ifdef BREP_OCC
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#include "OCC_Surface.h"
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#include "OCC_POINT.h"
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#include "OCC_Courbe.h"
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#include "OCC_FONCTION1.h"
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#include "TopoDS_Shape.hxx"
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#include "TopoDS.hxx"
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#endif
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//---------------------------------------------------------------------------
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// CAD4FE Headers
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#ifdef WINDOWS_VERSION
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#include "CAD4FE_MCEdge.h"
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#include "CAD4FE_MCFace.h"
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#include "CAD4FE_MCVertex.h"
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#include "CAD4FE_PolySurface.h"
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#include "CAD4FE_PolyCurve.h"
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#include "CAD4FE_MCNode.h"
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#include "CAD4FE_MCSegment.h"
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#include "CAD4FE_MCTriangle.h"
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#include "CAD4FE_m3d_MCTriangle.h"
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#endif
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//---------------------------------------------------------------------------
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//---------------------------------------------------------------------------
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#pragma package(smart_init)
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MG_FILE::MG_FILE():MG_GESTIONNAIRE()
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{
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}
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MG_FILE::MG_FILE(char* chemin):MG_GESTIONNAIRE()
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{
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code_de_lecture=lire(chemin);
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}
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MG_FILE::~MG_FILE()
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{
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}
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int MG_FILE::get_code_de_lecture(void)
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{
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return code_de_lecture;
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}
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long MG_FILE::cid(std::string str)
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{
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const char *p=str.c_str();
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if (*p=='$') return atol(p+1);
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return -1;
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}
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int MG_FILE::lire(char* chemin)
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{
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FILE *in;
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char ligne[3000];
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in=fopen(chemin,"rt");
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if (in==NULL) return 0;
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PARS_ARGUMENT param[100];
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PARSE parse;
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MG_GEOMETRIE *mggeo;
#ifdef WINDOWS_VERSION |
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std::multimap<CAD4FE::MCVertex*, unsigned long> mapMergedRefVertices; |
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#endif
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bool updatedMergedRefVertices = false;
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do
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{
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int ierr;
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std::string ligne=parse.lire(in,';',&ierr);
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parse.decode(ligne.c_str(),"@;",param);
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const char *chaine=param[0].argument[0].c_str();
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if ((chaine[0]=='/') && (chaine[1]=='/'))
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{
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if ((chaine[2]=='*')&&(chaine[3]=='i'))
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{
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unsigned long id;
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sscanf(chaine,"//*i:%lu;",&id);
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entiteidmax=id;
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}
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}
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else if (param[0].argument[0]!="FIN")
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{
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parse.decode(ligne.c_str(),"%@=@(@);",param);
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std::string entite=param[1].argument[0];
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long id=atol(param[0].argument[0].c_str());
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std::string data=param[2].argument[0] ;
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MG_MAILLAGE *mgmai;
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FEM_MAILLAGE *femmai;
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if (entite=="GEOMETRIE")
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{
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parse.decode(data.c_str(),"@,@,@,@",param+2);
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double unite=atof(param[2].argument[0].c_str());
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std::string typegeo=param[3].argument[0];
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std::string chemin=param[4].argument[0];
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#ifdef BREP_STEP
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if (typegeo=="STEP")
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{
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fichstep.change_nom((char *)chemin.c_str());
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int code=fichstep.lire();
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if (code==0) return 0;
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mggeo=new MG_GEOMETRIE("STEP",id,fichstep.get_nom(),unite);
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ajouter_mg_geometrie(mggeo);
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}
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#endif
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#ifdef BREP_SAT
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if (typegeo=="ACIS")
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{
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fichsat.change_nom((char *)chemin.c_str());
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int code=fichsat.lire();
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if (code==0) return 0;
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mggeo=new MG_GEOMETRIE("ACIS",id,fichsat.get_nom(),unite);
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ajouter_mg_geometrie(mggeo);
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}
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#endif
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#ifdef BREP_SLD
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if (typegeo=="SLD")
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{
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fonction->Connection();
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fonction->OuvrirFichier((char *)chemin.c_str() );
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mggeo=new MG_GEOMETRIE("SLD",id,chemin.c_str(),unite);
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ajouter_mg_geometrie(mggeo);
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ouvertsld=1;
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}
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#endif
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#ifdef BREP_OCC
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if (typegeo=="OCC")
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{
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fonction1->OuvrirFichier((char *)chemin.c_str() );
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mggeo=new MG_GEOMETRIE("OCC",id,chemin.c_str(),unite);
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ajouter_mg_geometrie(mggeo);
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}
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#endif
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std::string nommat="";
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if (param[5].argument[0]!="")
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nommat=param[5].argument[0];
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mggeo->change_gest_materiau((char*)nommat.c_str());
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}
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if (entite=="VOLUME")
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{
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parse.decode(data.c_str(),"@,@,@,@,(&)",param+2);
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MG_VOLUME* mgvol=new MG_VOLUME(param[2].argument[0],id);
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mggeo->ajouter_mg_volume(mgvol);
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int nummat=atoi((char*)param[4].argument[0].c_str());
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mgvol->change_num_materiau(nummat);
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int nb=atoi(param[5].argument[0].c_str());
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if (nb!=0)
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{
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for (int i=0;i<nb;i++)
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{
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parse.decode(param[6].argument[i].c_str(),"(@,@)",param+7);
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char nom[3];
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double val;
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strcpy(nom,param[7].argument[0].c_str());
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val=atof(param[8].argument[0].c_str());
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mgvol->ajouter_ccf(nom,val);
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}
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}
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}
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if (entite=="COQUE")
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{
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parse.decode(data.c_str(),"@,@,@,@,(&)",param+2);
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MG_COQUE* mgcoq=new MG_COQUE(param[2].argument[0],id);
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mggeo->ajouter_mg_coque(mgcoq);
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int nummat=atoi((char*)param[4].argument[0].c_str());
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mgcoq->change_num_materiau(nummat);
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int nb=atoi(param[5].argument[0].c_str());
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if (nb!=0)
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{
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for (int i=0;i<nb;i++)
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{
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parse.decode(param[6].argument[i].c_str(),"(@,@)",param+7);
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char nom[3];
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double val;
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strcpy(nom,param[7].argument[0].c_str());
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val=atof(param[8].argument[0].c_str());
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mgcoq->ajouter_ccf(nom,val);
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}
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}
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}
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if (entite=="POUTRE")
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{
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parse.decode(data.c_str(),"@,@,@,@,(&)",param+2);
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MG_POUTRE* mgpoutre=new MG_POUTRE(param[2].argument[0],id);
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mggeo->ajouter_mg_poutre(mgpoutre);
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int nummat=atoi((char*)param[4].argument[0].c_str());
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mgpoutre->change_num_materiau(nummat);
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int nb=atoi(param[5].argument[0].c_str());
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if (nb!=0)
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{
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for (int i=0;i<nb;i++)
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{
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parse.decode(param[6].argument[i].c_str(),"(@,@)",param+7);
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char nom[3];
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double val;
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strcpy(nom,param[7].argument[0].c_str());
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val=atof(param[8].argument[0].c_str());
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mgpoutre->ajouter_ccf(nom,val);
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}
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}
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}
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if (entite=="COQUILLE")
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{
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parse.decode(data.c_str(),"@,@",param+2);
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long ident=cid(param[2].argument[0]);
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MG_VOLUME* mgvol=mggeo->get_mg_volumeid(ident);
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MG_COQUE* mgcoq=mggeo->get_mg_coqueid(ident);
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if (mgvol!=NULL)
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{
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MG_COQUILLE* mgcoq=new MG_COQUILLE(id,mgvol);
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mggeo->ajouter_mg_coquille(mgcoq,mgvol);
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}
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if (mgcoq!=NULL)
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{
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MG_COQUILLE* mgcoquille=new MG_COQUILLE(id,mgcoq);
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mggeo->ajouter_mg_coquille(mgcoquille,mgcoq);
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}
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}
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#ifdef BREP_STEP
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if (entite=="SURFACE_STEP")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idstepsuf=atol(param[2].argument[0].c_str());
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ST_SURFACE *stsurf=fichstep.lst_surface.getid(idstepsuf);
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STEP_SURFACE* stepsurf=new STEP_SURFACE(id,stsurf);
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mggeo->ajouter_mg_surface(stepsurf);
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}
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if (entite=="COURBE_STEP")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idstepcur=atol(param[2].argument[0].c_str());
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ST_COURBE *stcur=fichstep.lst_courbe.getid(idstepcur);
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STEP_COURBE* stepcur=new STEP_COURBE(id,stcur);
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mggeo->ajouter_mg_courbe(stepcur);
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}
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if (entite=="POINT_STEP")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idsteppt=atol(param[2].argument[0].c_str());
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ST_POINT *stpt=fichstep.lst_point.getid(idsteppt);
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STEP_POINT* steppt=new STEP_POINT(id,stpt);
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mggeo->ajouter_mg_point(steppt);
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}
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#endif
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#ifdef BREP_SAT
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if (entite=="SURFACE_SAT")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idsatsuf=atol(param[2].argument[0].c_str());
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SAT_SURFACE *satsurf=fichsat.lst_surface.getid(idsatsuf);
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ACIS_SURFACE* acissurf=new ACIS_SURFACE(id,satsurf);
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mggeo->ajouter_mg_surface(acissurf);
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}
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if (entite=="COURBE_SAT")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idsatcur=atol(param[2].argument[0].c_str());
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SAT_COURBE *satcur=fichsat.lst_courbe.getid(idsatcur);
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ACIS_COURBE* aciscur=new ACIS_COURBE(id,satcur);
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mggeo->ajouter_mg_courbe(aciscur);
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}
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if (entite=="POINT_SAT")
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{
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parse.decode(data.c_str(),"@",param+2);
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long idsatpt=atol(param[2].argument[0].c_str());
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SAT_POINT *satpt=fichsat.lst_point.getid(idsatpt);
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ACIS_POINT* acispt=new ACIS_POINT(id,satpt);
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mggeo->ajouter_mg_point(acispt);
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}
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#endif
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#ifdef BREP_SLD
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if (entite=="SURFACE_SLD")
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{
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parse.decode(data.c_str(),"@",param+2);
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CComPtr<IFace2> swface;
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char* idsld=(char*)param[2].argument[0].c_str();
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SLD_SURFACE* sldsurf=new SLD_SURFACE(id,idsld,*fonction);
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mggeo->ajouter_mg_surface(sldsurf);
|
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}
|
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if (entite=="COURBE_SLD")
|
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{
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parse.decode(data.c_str(),"@",param+2);
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CComPtr<IEdge> swedge;
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char* idsld=(char*)param[2].argument[0].c_str();
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SLD_COURBE* sldcrb=new SLD_COURBE(id,idsld,*fonction);
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mggeo->ajouter_mg_courbe(sldcrb);
|
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}
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|
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if (entite=="POINT_SLD")
|
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{
|
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parse.decode(data.c_str(),"@",param+2);
|
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CComPtr<IVertex> swvertex;
|
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char* idsld=(char*)param[2].argument[0].c_str();
|
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SLD_POINT* sldpoint=new SLD_POINT(id,idsld,*fonction);
|
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mggeo->ajouter_mg_point(sldpoint);
|
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}
|
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|
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#endif
|
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|
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#ifdef BREP_OCC
|
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if (entite=="SURFACE_OCC")
|
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{
|
360 |
parse.decode(data.c_str(),"@",param+2);
|
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long idocc=atol(param[2].argument[0].c_str());
|
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const TopoDS_Shape& occshape=fonction1->GetShape(idocc);
|
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TopoDS_Face occface=TopoDS::Face(occshape);
|
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OCC_SURFACE* occsurf=new OCC_SURFACE(id,occface, *fonction1);
|
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mggeo->ajouter_mg_surface(occsurf);
|
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}
|
367 |
if (entite=="COURBE_OCC")
|
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{
|
369 |
parse.decode(data.c_str(),"@",param+2);
|
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long idocc=atol(param[2].argument[0].c_str());
|
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const TopoDS_Shape& occshape=fonction1->GetShape(idocc);
|
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TopoDS_Edge occedge=TopoDS::Edge(occshape);
|
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OCC_COURBE* occcrb=new OCC_COURBE(id,occedge, *fonction1);
|
374 |
mggeo->ajouter_mg_courbe(occcrb);
|
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}
|
376 |
if (entite=="POINT_OCC")
|
377 |
{
|
378 |
parse.decode(data.c_str(),"@",param+2);
|
379 |
long idocc=atol(param[2].argument[0].c_str());
|
380 |
const TopoDS_Shape& occshape=fonction1->GetShape(idocc);
|
381 |
TopoDS_Vertex occvertex=TopoDS::Vertex(occshape);
|
382 |
OCC_POINT* occpoint=new OCC_POINT(id,occvertex, *fonction1);
|
383 |
mggeo->ajouter_mg_point(occpoint);
|
384 |
}
|
385 |
#endif |
386 |
#ifdef WINDOWS_VERSION
|
387 |
if (entite=="CAD4FE_POLYCURVE")
|
388 |
{
|
389 |
CAD4FE::PolyCurve * polycurve = NULL; |
390 |
parse.decode(data.c_str(),"@,(&)",param+2); |
391 |
int nb = atoi(param[2].argument[0].c_str()); |
392 |
|
393 |
if (nb == 0) |
394 |
{ |
395 |
printf("PolyCurve %d is formed with reference vertex : ", id); |
396 |
parse.decode(param[3].argument[0].c_str(),"@",param+4); |
397 |
int idRefVertex; |
398 |
idRefVertex=cid(param[4].argument[0].c_str()); |
399 |
printf("%d ;\n ", idRefVertex); |
400 |
MG_SOMMET * refVertex = mggeo->get_mg_sommetid(idRefVertex); |
401 |
polycurve = new CAD4FE::PolyCurve(refVertex); |
402 |
} |
403 |
else |
404 |
{ |
405 |
printf("PolyCurve %d is formed with reference edges : ", id); |
406 |
polycurve = new CAD4FE::PolyCurve;
|
407 |
for (int i=0;i<nb;i++)
|
408 |
{
|
409 |
parse.decode(param[3].argument[i].c_str(),"@",param+4);
|
410 |
int idRefEdge;
|
411 |
idRefEdge=cid(param[4].argument[0].c_str());
|
412 |
printf("%d ; ", idRefEdge);
|
413 |
MG_ARETE * refEdge = mggeo->get_mg_areteid(idRefEdge);
|
414 |
CAD4FE::PolyCurve tmpPC(refEdge); |
415 |
polycurve->Merge(tmpPC);
|
416 |
}
|
417 |
printf("\n");
|
418 |
} |
419 |
|
420 |
polycurve->change_id(id);
|
421 |
mggeo->ajouter_mg_courbe(polycurve);
|
422 |
}
|
423 |
|
424 |
|
425 |
if (entite=="CAD4FE_POLYSURFACE")
|
426 |
{
|
427 |
CAD4FE::PolySurface * polysurface = new CAD4FE::PolySurface;
|
428 |
polysurface->change_id(id);
|
429 |
mggeo->ajouter_mg_surface(polysurface);
|
430 |
|
431 |
parse.decode(data.c_str(),"@,(&)",param+2);
|
432 |
|
433 |
int nb = atoi(param[2].argument[0].c_str());
|
434 |
printf("PolySurface %d is formed with reference faces : ", id);
|
435 |
for (int i=0;i<nb;i++)
|
436 |
{
|
437 |
parse.decode(param[3].argument[i].c_str(),"@",param+4);
|
438 |
int idRefFace;
|
439 |
idRefFace=cid(param[4].argument[0].c_str());
|
440 |
printf("%d ; ", idRefFace);
|
441 |
|
442 |
MG_FACE * refFace = mggeo->get_mg_faceid(idRefFace);
|
443 |
CAD4FE::PolySurface tmpSF(refFace);
|
444 |
polysurface->Merge(tmpSF);
|
445 |
}
|
446 |
|
447 |
printf("\n");
|
448 |
}
|
449 |
if (entite=="CAD4FE_MCEDGE")
|
450 |
{
|
451 |
parse.decode(data.c_str(),"@,@,@,@,@,@,(&)",param+2);
|
452 |
|
453 |
std::string idOriginal = param[2].argument[0];
|
454 |
long idPolyCurve=cid(param[3].argument[0]);
|
455 |
CAD4FE::PolyCurve * polycurve = (CAD4FE::PolyCurve *) mggeo->get_mg_courbeid(idPolyCurve);
|
456 |
|
457 |
// sense is not used because a MCEdge always has
|
458 |
// a sense = 1 !
|
459 |
// (because polycurve domain is equal to mcEdge domain)
|
460 |
CAD4FE::MCEdge * mcEdge = new CAD4FE::MCEdge(idOriginal, polycurve);
|
461 |
mcEdge->change_id(id);
|
462 |
mggeo->ajouter_mg_arete(mcEdge);
|
463 |
|
464 |
int nb=atoi(param[7].argument[0].c_str());
|
465 |
if (nb!=0)
|
466 |
{
|
467 |
for (int i=0;i<nb;i++)
|
468 |
{
|
469 |
parse.decode(param[8].argument[i].c_str(),"(@,@)",param+9);
|
470 |
char nom[3];
|
471 |
double val;
|
472 |
strcpy(nom,param[9].argument[0].c_str());
|
473 |
val=atof(param[10].argument[0].c_str());
|
474 |
mcEdge->ajouter_ccf(nom,val);
|
475 |
}
|
476 |
}
|
477 |
}
|
478 |
if (entite=="CAD4FE_MCFACE")
|
479 |
{
|
480 |
parse.decode(data.c_str(),"@,@,@,@,@,(&)",param+2);
|
481 |
|
482 |
std::string idOriginal = param[2].argument[0];
|
483 |
long idPolySurface=cid(param[3].argument[0]);
|
484 |
CAD4FE::PolySurface * polysurface = (CAD4FE::PolySurface *) mggeo->get_mg_surfaceid(idPolySurface);
|
485 |
|
486 |
CAD4FE::MCFace * mcFace = new CAD4FE::MCFace(idOriginal, polysurface);
|
487 |
mcFace->change_id(id);
|
488 |
mggeo->ajouter_mg_face(mcFace);
|
489 |
|
490 |
int nb=atoi(param[6].argument[0].c_str());
|
491 |
if (nb!=0)
|
492 |
{
|
493 |
for (int i=0;i<nb;i++)
|
494 |
{
|
495 |
parse.decode(param[7].argument[i].c_str(),"(@,@)",param+8);
|
496 |
char nom[3];
|
497 |
double val;
|
498 |
strcpy(nom,param[8].argument[0].c_str());
|
499 |
val=atof(param[9].argument[0].c_str());
|
500 |
mcFace->ajouter_ccf(nom,val);
|
501 |
}
|
502 |
}
|
503 |
}
|
504 |
if (entite=="CAD4FE_MCVERTEX")
|
505 |
{
|
506 |
parse.decode(data.c_str(),"@,@,@,(&),@,(&)",param+2);
|
507 |
std::string idOriginal = param[2].argument[0];
|
508 |
long idsom=cid(param[3].argument[0]);
|
509 |
MG_SOMMET * mgsom = mggeo->get_mg_sommetid(idsom);
|
510 |
CAD4FE::MCVertex * mcVertex = new CAD4FE::MCVertex(mgsom);
|
511 |
mcVertex->change_id(id);
|
512 |
mggeo->ajouter_mg_sommet(mcVertex);
|
513 |
int nb_ref_vertex=atoi(param[4].argument[0].c_str());
|
514 |
if (nb_ref_vertex!=0)
|
515 |
{
|
516 |
for (int i=0;i<nb_ref_vertex;i++)
|
517 |
{
|
518 |
unsigned long idRefVertex=cid(param[5].argument[i]);
|
519 |
mcVertex->GetMergedRefVertices()[idRefVertex] = NULL;
|
520 |
mapMergedRefVertices.insert(std::make_pair(mcVertex,idRefVertex));
|
521 |
}
|
522 |
}
|
523 |
int nb_ccf=atoi(param[4+2].argument[0].c_str());
|
524 |
if (nb_ccf!=0)
|
525 |
{
|
526 |
for (int i=0;i<nb_ccf;i++)
|
527 |
{
|
528 |
parse.decode(param[5+2].argument[i].c_str(),"(@,@)",param+6+2);
|
529 |
char nom_ccf[3];
|
530 |
double val_ccf;
|
531 |
strcpy(nom_ccf,param[6+2].argument[0].c_str());
|
532 |
val_ccf=atof(param[7+2].argument[0].c_str());
|
533 |
mgsom->ajouter_ccf(nom_ccf,val_ccf);
|
534 |
}
|
535 |
}
|
536 |
}
|
537 |
#endif
|
538 |
if (entite=="FACE")
|
539 |
{
|
540 |
parse.decode(data.c_str(),"@,@,(@),@,@,(&)",param+2);
|
541 |
long idsurf=cid(param[3].argument[0]);
|
542 |
int sens=atoi(param[5].argument[0].c_str());
|
543 |
MG_SURFACE* mgsurf=mggeo->get_mg_surfaceid(idsurf);
|
544 |
MG_FACE* mgface=new MG_FACE(param[2].argument[0],id,mgsurf,sens);
|
545 |
mggeo->ajouter_mg_face(mgface);
|
546 |
int nb=atoi(param[6].argument[0].c_str());
|
547 |
if (nb!=0)
|
548 |
{
|
549 |
for (int i=0;i<nb;i++)
|
550 |
{
|
551 |
parse.decode(param[7].argument[i].c_str(),"(@,@)",param+8);
|
552 |
char nom[3];
|
553 |
double val;
|
554 |
strcpy(nom,param[8].argument[0].c_str());
|
555 |
val=atof(param[9].argument[0].c_str());
|
556 |
mgface->ajouter_ccf(nom,val);
|
557 |
}
|
558 |
}
|
559 |
}
|
560 |
if (entite=="COFACE")
|
561 |
{
|
562 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
563 |
long idface=cid(param[2].argument[0]);
|
564 |
long idcoq=cid(param[3].argument[0]);
|
565 |
int sens=atoi(param[4].argument[0].c_str());
|
566 |
MG_FACE* mgface=mggeo->get_mg_faceid(idface);
|
567 |
MG_COQUILLE* mgcoq=mggeo->get_mg_coquilleid(idcoq);
|
568 |
MG_COFACE* mgcoface=mggeo->ajouter_mg_coface(id,mgface,mgcoq,sens);
|
569 |
mgcoq->ajouter_mg_coface(mgcoface);
|
570 |
}
|
571 |
if (entite=="BOUCLE")
|
572 |
{
|
573 |
parse.decode(data.c_str(),"@,(@)",param+2);
|
574 |
long ident=cid(param[2].argument[0]);
|
575 |
MG_FACE* mgface=mggeo->get_mg_faceid(ident);
|
576 |
MG_POUTRE* mgpoutre=mggeo->get_mg_poutreid(ident);
|
577 |
if (mgface!=NULL)
|
578 |
{
|
579 |
MG_BOUCLE* mgbou=new MG_BOUCLE(id,mgface);
|
580 |
mggeo->ajouter_mg_boucle(mgbou,mgface);
|
581 |
}
|
582 |
if (mgpoutre!=NULL)
|
583 |
{
|
584 |
MG_BOUCLE* mgbou=new MG_BOUCLE(id,mgpoutre);
|
585 |
mggeo->ajouter_mg_boucle(mgbou,mgpoutre);
|
586 |
}
|
587 |
}
|
588 |
if (entite=="POINT")
|
589 |
{
|
590 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
591 |
double xyz[3];
|
592 |
xyz[0]=atof(param[2].argument[0].c_str());
|
593 |
xyz[1]=atof(param[3].argument[0].c_str());
|
594 |
xyz[2]=atof(param[4].argument[0].c_str());
|
595 |
LC_POINT* point=new LC_POINT(id,xyz);
|
596 |
mggeo->ajouter_mg_point(point);
|
597 |
}
|
598 |
if (entite=="SOMMET")
|
599 |
{
|
600 |
parse.decode(data.c_str(),"@,@,@,(&)",param+2);
|
601 |
long idpoint=cid(param[3].argument[0]);
|
602 |
MG_POINT* mgpt=mggeo->get_mg_pointid(idpoint);
|
603 |
MG_SOMMET* mgsom=new MG_SOMMET(param[2].argument[0],id,mgpt);
|
604 |
mggeo->ajouter_mg_sommet(mgsom);
|
605 |
int nb=atoi(param[4].argument[0].c_str());
|
606 |
if (nb!=0)
|
607 |
{
|
608 |
for (int i=0;i<nb;i++)
|
609 |
{
|
610 |
parse.decode(param[5].argument[i].c_str(),"(@,@)",param+6);
|
611 |
char nom[3];
|
612 |
double val;
|
613 |
strcpy(nom,param[6].argument[0].c_str());
|
614 |
val=atof(param[7].argument[0].c_str());
|
615 |
mgsom->ajouter_ccf(nom,val);
|
616 |
}
|
617 |
}
|
618 |
}
|
619 |
if (entite=="ARETE")
|
620 |
{
|
621 |
parse.decode(data.c_str(),"@,@,@,@,@,@,(&)",param+2);
|
622 |
long idcur=cid(param[3].argument[0]);
|
623 |
int sens=atoi(param[6].argument[0].c_str());
|
624 |
MG_COURBE* mgcur=mggeo->get_mg_courbeid(idcur);
|
625 |
MG_ARETE* mgarete=new MG_ARETE(param[2].argument[0],id,mgcur,sens);
|
626 |
mggeo->ajouter_mg_arete(mgarete);
|
627 |
int nb=atoi(param[7].argument[0].c_str());
|
628 |
if (nb!=0)
|
629 |
{
|
630 |
for (int i=0;i<nb;i++)
|
631 |
{
|
632 |
parse.decode(param[8].argument[i].c_str(),"(@,@)",param+9);
|
633 |
char nom[3];
|
634 |
double val;
|
635 |
strcpy(nom,param[9].argument[0].c_str());
|
636 |
val=atof(param[10].argument[0].c_str());
|
637 |
mgarete->ajouter_ccf(nom,val);
|
638 |
}
|
639 |
}
|
640 |
}
|
641 |
if (entite=="COSOMMET")
|
642 |
{
|
643 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
644 |
long idsom=cid(param[2].argument[0]);
|
645 |
long idarete=cid(param[3].argument[0]);
|
646 |
int num=atoi(param[4].argument[0].c_str());
|
647 |
MG_SOMMET* mgsom=mggeo->get_mg_sommetid(idsom);
|
648 |
MG_ARETE* mgarete=mggeo->get_mg_areteid(idarete);
|
649 |
MG_COSOMMET* mgcosom=mggeo->ajouter_mg_cosommet(id,mgarete,mgsom);
|
650 |
if (num==1) mgarete->changer_cosommet1(mgcosom);
|
651 |
if (num==2) mgarete->changer_cosommet2(mgcosom);
|
652 |
}
|
653 |
if (entite=="COARETE")
|
654 |
{
|
655 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
656 |
long idarete=cid(param[2].argument[0]);
|
657 |
long idboucle=cid(param[3].argument[0]);
|
658 |
int sens=atoi(param[4].argument[0].c_str());
|
659 |
MG_ARETE* mgarete=mggeo->get_mg_areteid(idarete);
|
660 |
MG_BOUCLE* mgboucle=mggeo->get_mg_boucleid(idboucle);
|
661 |
MG_COARETE* mgcoarete=mggeo->ajouter_mg_coarete(id,mgarete,mgboucle,sens);
|
662 |
mgboucle->ajouter_mg_coarete(mgcoarete);
|
663 |
}
|
664 |
if (entite=="VISU_COURBE")
|
665 |
{
|
666 |
parse.decode(data.c_str(),"@,@,@,@,@,@",param+2);
|
667 |
double xyz1[3];
|
668 |
double xyz2[3];
|
669 |
xyz1[0]=atof(param[2].argument[0].c_str());
|
670 |
xyz1[1]=atof(param[3].argument[0].c_str());
|
671 |
xyz1[2]=atof(param[4].argument[0].c_str());
|
672 |
xyz2[0]=atof(param[5].argument[0].c_str());
|
673 |
xyz2[1]=atof(param[6].argument[0].c_str());
|
674 |
xyz2[2]=atof(param[7].argument[0].c_str());
|
675 |
MG_VISU_COURBE* mgcrb=new MG_VISU_COURBE(id,xyz1,xyz2);
|
676 |
mggeo->ajouter_mg_visu_courbe(mgcrb);
|
677 |
}
|
678 |
if (entite=="MAILLAGE")
|
679 |
{
|
680 |
parse.decode(data.c_str(),"@",param+2);
|
681 |
long idgeo=cid(param[2].argument[0]);
|
682 |
MG_GEOMETRIE* mggeo=get_mg_geometrieid(idgeo);
|
683 |
mgmai=new MG_MAILLAGE(id,mggeo);
|
684 |
ajouter_mg_maillage(mgmai);
|
685 |
}
|
686 |
if (entite=="FEM_MAILLAGE")
|
687 |
{
|
688 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
689 |
int degre=atoi(param[2].argument[0].c_str());
|
690 |
long idmai=cid(param[3].argument[0]);
|
691 |
long idgeo=cid(param[4].argument[0]);
|
692 |
MG_GEOMETRIE* mggeo=get_mg_geometrieid(idgeo);
|
693 |
MG_MAILLAGE* mgmai=get_mg_maillageid(idmai);
|
694 |
femmai=new FEM_MAILLAGE(id,mggeo,mgmai,degre);
|
695 |
ajouter_fem_maillage(femmai);
|
696 |
}
|
697 |
if (entite=="NOEUD")
|
698 |
{
|
699 |
parse.decode(data.c_str(),"@,@,@,@,@",param+2);
|
700 |
long idtopo=cid(param[2].argument[0]);
|
701 |
double x=atof(param[3].argument[0].c_str());
|
702 |
double y=atof(param[4].argument[0].c_str());
|
703 |
double z=atof(param[5].argument[0].c_str());
|
704 |
int ori=atoi(param[6].argument[0].c_str());
|
705 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
706 |
if (idtopo>-1)
|
707 |
{
|
708 |
topo=mggeo->get_mg_sommetid(idtopo);
|
709 |
if (topo==NULL) topo=mggeo->get_mg_areteid(idtopo);
|
710 |
if (topo==NULL) topo=mggeo->get_mg_faceid(idtopo);
|
711 |
if (topo==NULL) topo=mggeo->get_mg_volumeid(idtopo);
|
712 |
}
|
713 |
else topo=NULL;
|
714 |
MG_NOEUD* noeud=new MG_NOEUD(id,topo,x,y,z,ori);
|
715 |
mgmai->ajouter_mg_noeud(noeud);
|
716 |
}
|
717 |
if (entite=="FEM_NOEUD")
|
718 |
{
|
719 |
parse.decode(data.c_str(),"@,@,@,@,@,@,@",param+2);
|
720 |
long idtopo=cid(param[2].argument[0]);
|
721 |
long idmai=cid(param[3].argument[0]);
|
722 |
double x=atof(param[4].argument[0].c_str());
|
723 |
double y=atof(param[5].argument[0].c_str());
|
724 |
double z=atof(param[6].argument[0].c_str());
|
725 |
int num=atoi(param[7].argument[0].c_str());
|
726 |
int numopt=atoi(param[8].argument[0].c_str());
|
727 |
MG_ELEMENT_MAILLAGE* elmai;
|
728 |
if (idmai>-1)
|
729 |
{
|
730 |
elmai=mgmai->get_mg_noeudid(idmai);
|
731 |
if (elmai==NULL) elmai=mgmai->get_mg_segmentid(idmai);
|
732 |
if (elmai==NULL) elmai=mgmai->get_mg_triangleid(idmai);
|
733 |
if (elmai==NULL) elmai=mgmai->get_mg_tetraid(idmai);
|
734 |
}
|
735 |
else elmai=NULL;
|
736 |
FEM_NOEUD* noeud;
|
737 |
if (elmai!=NULL) noeud=new FEM_NOEUD(id,elmai,x,y,z);
|
738 |
else
|
739 |
{
|
740 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
741 |
if (idtopo>-1)
|
742 |
{
|
743 |
topo=mggeo->get_mg_sommetid(idtopo);
|
744 |
if (topo==NULL) topo=mggeo->get_mg_areteid(idtopo);
|
745 |
if (topo==NULL) topo=mggeo->get_mg_faceid(idtopo);
|
746 |
if (topo==NULL) topo=mggeo->get_mg_volumeid(idtopo);
|
747 |
}
|
748 |
else topo=NULL;
|
749 |
noeud=new FEM_NOEUD(id,topo,x,y,z);
|
750 |
}
|
751 |
noeud->change_numero(num);
|
752 |
noeud->change_numero_opt(numopt);
|
753 |
femmai->ajouter_fem_noeud(noeud);
|
754 |
}
|
755 |
if (entite=="SEGMENT")
|
756 |
{
|
757 |
parse.decode(data.c_str(),"@,@,@,@",param+2);
|
758 |
long idtopo=cid(param[2].argument[0]);
|
759 |
long idn1=cid(param[3].argument[0]);
|
760 |
long idn2=cid(param[4].argument[0]);
|
761 |
int ori=atoi(param[5].argument[0].c_str());
|
762 |
MG_NOEUD* noeud1=mgmai->get_mg_noeudid(idn1);
|
763 |
MG_NOEUD* noeud2=mgmai->get_mg_noeudid(idn2);
|
764 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
765 |
if (idtopo>-1)
|
766 |
{
|
767 |
topo=mggeo->get_mg_areteid(idtopo);
|
768 |
if (topo==NULL) topo=mggeo->get_mg_faceid(idtopo);
|
769 |
if (topo==NULL) topo=mggeo->get_mg_volumeid(idtopo);
|
770 |
}
|
771 |
else topo=NULL;
|
772 |
MG_SEGMENT* seg=new MG_SEGMENT(id,topo,noeud1,noeud2,ori);
|
773 |
mgmai->ajouter_mg_segment(seg);
|
774 |
}
|
775 |
if (entite=="FEM_SEGMENT2")
|
776 |
{
|
777 |
parse.decode(data.c_str(),"@,@,@,@",param+2);
|
778 |
long idmai=cid(param[3].argument[0]);
|
779 |
long idn1=cid(param[4].argument[0]);
|
780 |
long idn2=cid(param[5].argument[0]);
|
781 |
FEM_NOEUD* tab[2];
|
782 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
783 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
784 |
MG_ELEMENT_MAILLAGE* elmai;
|
785 |
if (idmai>-1)
|
786 |
elmai=mgmai->get_mg_segmentid(idmai);
|
787 |
else elmai=NULL;
|
788 |
FEM_SEGMENT2* seg=new FEM_SEGMENT2(id,elmai,tab);
|
789 |
femmai->ajouter_fem_segment(seg);
|
790 |
}
|
791 |
if (entite=="FEM_SEGMENT3")
|
792 |
{
|
793 |
parse.decode(data.c_str(),"@,@,@,@,@",param+2);
|
794 |
long idmai=cid(param[3].argument[0]);
|
795 |
long idn1=cid(param[4].argument[0]);
|
796 |
long idn2=cid(param[5].argument[0]);
|
797 |
long idn3=cid(param[6].argument[0]);
|
798 |
FEM_NOEUD* tab[3];
|
799 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
800 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
801 |
tab[2]=femmai->get_fem_noeudid(idn3);
|
802 |
MG_ELEMENT_MAILLAGE* elmai;
|
803 |
if (idmai>-1)
|
804 |
elmai=mgmai->get_mg_segmentid(idmai);
|
805 |
else elmai=NULL;
|
806 |
FEM_SEGMENT3* seg=new FEM_SEGMENT3(id,elmai,tab);
|
807 |
femmai->ajouter_fem_segment(seg);
|
808 |
}
|
809 |
if (entite=="TRIANGLE")
|
810 |
{
|
811 |
parse.decode(data.c_str(),"@,@,@,@,@",param+2);
|
812 |
long idtopo=cid(param[2].argument[0]);
|
813 |
long idn1=cid(param[3].argument[0]);
|
814 |
long idn2=cid(param[4].argument[0]);
|
815 |
long idn3=cid(param[5].argument[0]);
|
816 |
int ori=atoi(param[6].argument[0].c_str());
|
817 |
MG_NOEUD* noeud1=mgmai->get_mg_noeudid(idn1);
|
818 |
MG_NOEUD* noeud2=mgmai->get_mg_noeudid(idn2);
|
819 |
MG_NOEUD* noeud3=mgmai->get_mg_noeudid(idn3);
|
820 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
821 |
if (idtopo>-1)
|
822 |
{
|
823 |
topo=mggeo->get_mg_faceid(idtopo);
|
824 |
if (topo==NULL) topo=mggeo->get_mg_volumeid(idtopo);
|
825 |
}
|
826 |
else topo=NULL;
|
827 |
mgmai->ajouter_mg_triangle(topo,noeud1,noeud2,noeud3,ori,id);
|
828 |
}
|
829 |
if (entite=="FEM_TRIANGLE3")
|
830 |
{
|
831 |
parse.decode(data.c_str(),"@,@,@,@,@",param+2);
|
832 |
long idmai=cid(param[3].argument[0]);
|
833 |
long idn1=cid(param[4].argument[0]);
|
834 |
long idn2=cid(param[5].argument[0]);
|
835 |
long idn3=cid(param[6].argument[0]);
|
836 |
FEM_NOEUD* tab[3];
|
837 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
838 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
839 |
tab[2]=femmai->get_fem_noeudid(idn3);
|
840 |
MG_ELEMENT_MAILLAGE* elmai;
|
841 |
if (idmai>-1)
|
842 |
elmai=mgmai->get_mg_triangleid(idmai);
|
843 |
else elmai=NULL;
|
844 |
FEM_TRIANGLE3* tri=new FEM_TRIANGLE3(id,elmai,tab);
|
845 |
femmai->ajouter_fem_triangle(tri);
|
846 |
}
|
847 |
if (entite=="FEM_TRIANGLE6")
|
848 |
{
|
849 |
parse.decode(data.c_str(),"@,@,@,@,@,@,@,@",param+2);
|
850 |
long idmai=cid(param[3].argument[0]);
|
851 |
long idn1=cid(param[4].argument[0]);
|
852 |
long idn2=cid(param[5].argument[0]);
|
853 |
long idn3=cid(param[6].argument[0]);
|
854 |
long idn4=cid(param[7].argument[0]);
|
855 |
long idn5=cid(param[8].argument[0]);
|
856 |
long idn6=cid(param[9].argument[0]);
|
857 |
FEM_NOEUD* tab[6];
|
858 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
859 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
860 |
tab[2]=femmai->get_fem_noeudid(idn3);
|
861 |
tab[3]=femmai->get_fem_noeudid(idn4);
|
862 |
tab[4]=femmai->get_fem_noeudid(idn5);
|
863 |
tab[5]=femmai->get_fem_noeudid(idn6);
|
864 |
MG_ELEMENT_MAILLAGE* elmai;
|
865 |
if (idmai>-1)
|
866 |
elmai=mgmai->get_mg_triangleid(idmai);
|
867 |
else elmai=NULL;
|
868 |
FEM_TRIANGLE6* tri=new FEM_TRIANGLE6(id,elmai,tab);
|
869 |
femmai->ajouter_fem_triangle(tri);
|
870 |
}
|
871 |
if (entite=="TETRAEDRE")
|
872 |
{
|
873 |
parse.decode(data.c_str(),"@,@,@,@,@,@",param+2);
|
874 |
long idtopo=cid(param[2].argument[0]);
|
875 |
long idn1=cid(param[3].argument[0]);
|
876 |
long idn2=cid(param[4].argument[0]);
|
877 |
long idn3=cid(param[5].argument[0]);
|
878 |
long idn4=cid(param[6].argument[0]);
|
879 |
int ori=atoi(param[7].argument[0].c_str());
|
880 |
MG_NOEUD* noeud1=mgmai->get_mg_noeudid(idn1);
|
881 |
MG_NOEUD* noeud2=mgmai->get_mg_noeudid(idn2);
|
882 |
MG_NOEUD* noeud3=mgmai->get_mg_noeudid(idn3);
|
883 |
MG_NOEUD* noeud4=mgmai->get_mg_noeudid(idn4);
|
884 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
885 |
if (idtopo>-1) topo=mggeo->get_mg_volumeid(idtopo);
|
886 |
else topo=NULL;
|
887 |
if (noeud1&&noeud2&&noeud3&&noeud4) mgmai->ajouter_mg_tetra(topo,noeud1,noeud2,noeud3,noeud4,ori,id);
|
888 |
}
|
889 |
if (entite=="FEM_TETRA4")
|
890 |
{
|
891 |
parse.decode(data.c_str(),"@,@,@,@,@,@",param+2);
|
892 |
long idmai=cid(param[3].argument[0]);
|
893 |
long idn1=cid(param[4].argument[0]);
|
894 |
long idn2=cid(param[5].argument[0]);
|
895 |
long idn3=cid(param[6].argument[0]);
|
896 |
long idn4=cid(param[7].argument[0]);
|
897 |
FEM_NOEUD* tab[4];
|
898 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
899 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
900 |
tab[2]=femmai->get_fem_noeudid(idn3);
|
901 |
tab[3]=femmai->get_fem_noeudid(idn4);
|
902 |
MG_ELEMENT_MAILLAGE* elmai;
|
903 |
if (idmai>-1)
|
904 |
elmai=mgmai->get_mg_tetraid(idmai);
|
905 |
else elmai=NULL;
|
906 |
FEM_TETRA4* tet=new FEM_TETRA4(id,elmai,tab);
|
907 |
femmai->ajouter_fem_tetra(tet);
|
908 |
}
|
909 |
if (entite=="FEM_TETRA10")
|
910 |
{
|
911 |
parse.decode(data.c_str(),"@,@,@,@,@,@,@,@,@,@,@,@",param+2);
|
912 |
long idmai=cid(param[3].argument[0]);
|
913 |
long idn1=cid(param[4].argument[0]);
|
914 |
long idn2=cid(param[5].argument[0]);
|
915 |
long idn3=cid(param[6].argument[0]);
|
916 |
long idn4=cid(param[7].argument[0]);
|
917 |
long idn5=cid(param[8].argument[0]);
|
918 |
long idn6=cid(param[9].argument[0]);
|
919 |
long idn7=cid(param[10].argument[0]);
|
920 |
long idn8=cid(param[11].argument[0]);
|
921 |
long idn9=cid(param[12].argument[0]);
|
922 |
long idn10=cid(param[13].argument[0]);
|
923 |
FEM_NOEUD* tab[10];
|
924 |
tab[0]=femmai->get_fem_noeudid(idn1);
|
925 |
tab[1]=femmai->get_fem_noeudid(idn2);
|
926 |
tab[2]=femmai->get_fem_noeudid(idn3);
|
927 |
tab[3]=femmai->get_fem_noeudid(idn4);
|
928 |
tab[4]=femmai->get_fem_noeudid(idn5);
|
929 |
tab[5]=femmai->get_fem_noeudid(idn6);
|
930 |
tab[6]=femmai->get_fem_noeudid(idn7);
|
931 |
tab[7]=femmai->get_fem_noeudid(idn8);
|
932 |
tab[8]=femmai->get_fem_noeudid(idn9);
|
933 |
tab[9]=femmai->get_fem_noeudid(idn10);
|
934 |
MG_ELEMENT_MAILLAGE* elmai;
|
935 |
if (idmai>-1)
|
936 |
elmai=mgmai->get_mg_tetraid(idmai);
|
937 |
else elmai=NULL;
|
938 |
FEM_TETRA10* tet=new FEM_TETRA10(id,elmai,tab);
|
939 |
femmai->ajouter_fem_tetra(tet);
|
940 |
}
|
941 |
if (entite=="SOLUTION")
|
942 |
{
|
943 |
parse.decode(data.c_str(),"@,@,@,@,(&)",param+2);
|
944 |
std::string nomsol=param[2].argument[0];
|
945 |
long idmai=cid(param[3].argument[0]);
|
946 |
int nb=atoi(param[4].argument[0].c_str());
|
947 |
std::string chemin=param[5].argument[0];
|
948 |
MG_MAILLAGE* mai=get_mg_maillageid(idmai);
|
949 |
MG_SOLUTION* sol=new MG_SOLUTION(id,mai,nb,(char*)chemin.c_str(),SOL_EXISTANTE,nomsol);
|
950 |
ajouter_mg_solution(sol);
|
951 |
for (int i=0;i<nb;i++)
|
952 |
sol->change_legende(i,param[6].argument[i]);
|
953 |
}
|
954 |
if (entite=="FEM_SOLUTION")
|
955 |
{
|
956 |
parse.decode(data.c_str(),"@,@,@,@,(&)",param+2);
|
957 |
std::string nomsol=param[2].argument[0];
|
958 |
long idmai=cid(param[3].argument[0]);
|
959 |
int nb=atoi(param[4].argument[0].c_str());
|
960 |
std::string chemin=param[5].argument[0];
|
961 |
FEM_MAILLAGE* mai=get_fem_maillageid(idmai);
|
962 |
FEM_SOLUTION* sol=new FEM_SOLUTION(id,mai,nb,(char*)chemin.c_str(),SOL_EXISTANTE,nomsol);
|
963 |
ajouter_fem_solution(sol);
|
964 |
for (int i=0;i<nb;i++)
|
965 |
sol->change_legende(i,param[6].argument[i]);
|
966 |
}
|
967 |
#ifdef WINDOWS_VERSION |
968 |
if (entite=="CAD4FE_MCSEGMENT")
|
969 |
{
|
970 |
parse.decode(data.c_str(),"@,@,@",param+2);
|
971 |
long idtopo=cid(param[2].argument[0]);
|
972 |
long idn1=cid(param[3].argument[0]);
|
973 |
long idn2=cid(param[4].argument[0]);
|
974 |
CAD4FE::MCNode* noeud1=(CAD4FE::MCNode*)mgmai->get_mg_noeudid(idn1);
|
975 |
CAD4FE::MCNode* noeud2=(CAD4FE::MCNode*)mgmai->get_mg_noeudid(idn2);
|
976 |
MG_ELEMENT_TOPOLOGIQUE* topo;
|
977 |
if (idtopo>-1)
|
978 |
{
|
979 |
topo=mggeo->get_mg_areteid(idtopo);
|
980 |
if (topo==NULL) topo=mggeo->get_mg_faceid(idtopo);
|
981 |
if (topo==NULL) topo=mggeo->get_mg_volumeid(idtopo);
|
982 |
}
|
983 |
else topo=NULL;
|
984 |
CAD4FE::MCSegment * seg = new CAD4FE::MCSegment(id,topo,noeud1,noeud2);
|
985 |
mgmai->ajouter_mg_segment(seg);
|
986 |
}
|
987 |
if (entite=="CAD4FE_MCNODE")
|
988 |
{
|
989 |
parse.decode(data.c_str(),"@,@,@,@,@",param+2);
|
990 |
long idRefTopo=cid(param[2].argument[0]);
|
991 |
long idMCTopo=cid(param[3].argument[0]);
|
992 |
double x=atof(param[4].argument[0].c_str());
|
993 |
double y=atof(param[5].argument[0].c_str());
|
994 |
double z=atof(param[6].argument[0].c_str());
|
995 |
MG_ELEMENT_TOPOLOGIQUE* refTopo=NULL;
|
996 |
if (refTopo==NULL) refTopo=mggeo->get_mg_sommetid(idRefTopo);
|
997 |
if (refTopo==NULL) refTopo=mggeo->get_mg_areteid(idRefTopo);
|
998 |
if (refTopo==NULL) refTopo=mggeo->get_mg_faceid(idRefTopo);
|
999 |
if (refTopo==NULL) refTopo=mggeo->get_mg_volumeid(idRefTopo);
|
1000 |
MG_ELEMENT_TOPOLOGIQUE* mcTopo=NULL;
|
1001 |
if (mcTopo==NULL) mcTopo=mggeo->get_mg_sommetid(idMCTopo);
|
1002 |
if (mcTopo==NULL) mcTopo=mggeo->get_mg_areteid(idMCTopo);
|
1003 |
if (mcTopo==NULL) mcTopo=mggeo->get_mg_faceid(idMCTopo);
|
1004 |
if (mcTopo==NULL) mcTopo=mggeo->get_mg_volumeid(idMCTopo);
|
1005 |
|
1006 |
if (mcTopo->get_dimension()==0)
|
1007 |
{
|
1008 |
if (updatedMergedRefVertices == false)
|
1009 |
{
|
1010 |
for (std::multimap<CAD4FE::MCVertex * , unsigned long>::iterator itMergedRefVertices = mapMergedRefVertices.begin();
|
1011 |
itMergedRefVertices != mapMergedRefVertices.end();
|
1012 |
itMergedRefVertices++)
|
1013 |
{
|
1014 |
CAD4FE::MCVertex * v = itMergedRefVertices->first;
|
1015 |
MG_SOMMET * refV = NULL;
|
1016 |
unsigned long id = itMergedRefVertices->second;
|
1017 |
refV = (MG_SOMMET *) mggeo->get_mg_sommetid(id);
|
1018 |
v->MergeRefVertex(refV);
|
1019 |
}
|
1020 |
|
1021 |
updatedMergedRefVertices = true;
|
1022 |
}
|
1023 |
}
|
1024 |
|
1025 |
CAD4FE::MCNode* noeud=new CAD4FE::MCNode(id,mcTopo,refTopo,x,y,z);
|
1026 |
mgmai->ajouter_mg_noeud(noeud);
|
1027 |
}
|
1028 |
if (entite=="CAD4FE_MCTRIANGLE")
|
1029 |
{
|
1030 |
parse.decode(data.c_str(),"@,@,@,@",param+2);
|
1031 |
long idtopo=cid(param[2].argument[0]);
|
1032 |
long idn1=cid(param[3].argument[0]);
|
1033 |
long idn2=cid(param[4].argument[0]);
|
1034 |
long idn3=cid(param[5].argument[0]);
|
1035 |
CAD4FE::MCNode* noeud1=(CAD4FE::MCNode*)mgmai->get_mg_noeudid(idn1);
|
1036 |
CAD4FE::MCNode* noeud2=(CAD4FE::MCNode*)mgmai->get_mg_noeudid(idn2);
|
1037 |
CAD4FE::MCNode* noeud3=(CAD4FE::MCNode*)mgmai->get_mg_noeudid(idn3);
|
1038 |
CAD4FE::MCSegment* mgsegment[3]; |
1039 |
CAD4FE::MCNode *mgnoeud[3]={noeud1,noeud2,noeud3}; |
1040 |
// la topo. d'un MCTriangle est obligatoirement une MCFace |
1041 |
CAD4FE::MCFace* mcFace=(CAD4FE::MCFace*)mggeo->get_mg_faceid(idtopo);
|
1042 |
for (int i=0;i<3;i++)
|
1043 |
{ |
1044 |
mgsegment[i]=(CAD4FE::MCSegment*)mgmai->get_mg_segment(mgnoeud[i]->get_id(),mgnoeud[(i+1)%3]->get_id()); |
1045 |
if (mgsegment[i]==NULL) |
1046 |
{ |
1047 |
mgsegment[i]=new CAD4FE::MCSegment(mcFace,mgnoeud[i],mgnoeud[(i+1)%3]); |
1048 |
mgmai->ajouter_mg_segment(mgsegment[i]); |
1049 |
} |
1050 |
} |
1051 |
CAD4FE::M3D_MCTriangle *triangle = new CAD4FE::M3D_MCTriangle(id,mcFace,noeud1,noeud2,noeud3,mgsegment[0],mgsegment[1],mgsegment[2]);
|
1052 |
mgmai->ajouter_mg_triangle(triangle);
|
1053 |
} |
1054 |
#endif
|
1055 |
}
|
1056 |
}
|
1057 |
while (param[0].argument[0]!="FIN");
|
1058 |
#ifdef WINDOWS_VERSION
|
1059 |
if (updatedMergedRefVertices == false)
|
1060 |
{
|
1061 |
for (std::multimap<CAD4FE::MCVertex * , unsigned long>::iterator itMergedRefVertices = mapMergedRefVertices.begin();
|
1062 |
itMergedRefVertices != mapMergedRefVertices.end();
|
1063 |
itMergedRefVertices++)
|
1064 |
{
|
1065 |
CAD4FE::MCVertex * v = itMergedRefVertices->first;
|
1066 |
MG_SOMMET * refV = NULL;
|
1067 |
unsigned long id = itMergedRefVertices->second;
|
1068 |
refV = (MG_SOMMET *) mggeo->get_mg_sommetid(id);
|
1069 |
v->MergeRefVertex(refV);
|
1070 |
}
|
1071 |
|
1072 |
updatedMergedRefVertices = true;
|
1073 |
}
|
1074 |
|
1075 |
#endif
|
1076 |
fclose(in);
|
1077 |
#ifdef BREP_SLD
|
1078 |
fonction->Fermer();
|
1079 |
#endif
|
1080 |
return 1;
|
1081 |
}
|
1082 |
|
1083 |
|
1084 |
|
1085 |
|