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/*****************************************************************
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m3d_d_tetra.cpp Type:Func
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Destruction d'un tetraedre
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Date de creation : 24-8-1999 12 :5 :59
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Derniere version : 24-8-1999 12 :5 :59
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Vincent FRANCOIS
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*****************************************************************/
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/**************************/
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/* include */
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#include <stdio.h>
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#include <string.h>
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#include <stdlib.h>
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#include <math.h>
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#include "const.h"
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#include "memoire.h"
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#include "struct.h"
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#include "struct3d.h"
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#include "prototype.h"
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/**************************/
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/* variables globales */
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extern struct environnment env;
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extern struct s_mesh *mesh;
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extern int test_front(void);
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/**************************/
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/* programme principal */
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int m3d_d_tetra(struct s_front3d *ft,struct s_tetra *tetra)
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{
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struct s_tetra *tet;
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struct s_triangle *tri;
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struct s_front3d *ftn1,*tab_ft[20],*tab_ft2[20];
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struct s_noeud *no;
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int test;
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int i,nb_tab,nb_tab2;
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if (tetra==NULL)
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{
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if (ft->tri->type==FACE) return(NONVALIDE);
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tet=ft->tri->tetra[0];
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}
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else tet=tetra;
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if (tet->etat==INACTIF) return(VALIDE);
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tet->etat=INACTIF;
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nb_tab=0;
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nb_tab2=0;
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for (i=0;i<4;i++)
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{
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tri=tet->triangle[i];
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if (tri->front==1)
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{
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ftn1=tri->ft;
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tab_ft[nb_tab++]=ftn1->voisin[0].ft;
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tab_ft[nb_tab++]=ftn1->voisin[1].ft;
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tab_ft[nb_tab++]=ftn1->voisin[2].ft;
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m3d_ac_front(&ftn1,DETRUIT);
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tri->front=tri->front-2;
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}
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if (tri->front==2)
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{
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tri->front=tri->front-1;
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m3d_ac_front(&ftn1,NEW);
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ftn1->tri=tri;
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ftn1->tri->front=1;
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ftn1->tri->ft=ftn1;
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if (i==0)
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{
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ftn1->n1=tet->n1;
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ftn1->n2=tet->n2;
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ftn1->n3=tet->n3;
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}
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if (i==1)
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{
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ftn1->n1=tet->n1;
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ftn1->n2=tet->n4;
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ftn1->n3=tet->n2;
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}
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if (i==2)
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{
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ftn1->n1=tet->n2;
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ftn1->n2=tet->n4;
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ftn1->n3=tet->n3;
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}
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if (i==3)
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{
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ftn1->n1=tet->n1;
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ftn1->n2=tet->n3;
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ftn1->n3=tet->n4;
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}
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m3d_ord_front(ftn1,PRIORITAIRE);
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ftn1->etat=2;
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if (ftn1->tri->tetra[0]==tet)
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ftn1->tri->tetra[0]=ftn1->tri->tetra[1];
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ftn1->tri->tetra[1]=NULL;
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oc_ins_obj(FRONT3D,ftn1->num,mesh->first);
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//m3d_update_front(&ftn1,NULL,tri,NEW);
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tab_ft2[nb_tab2++]=ftn1;
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}
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}
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for (i=0;i<nb_tab;i++)
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if (tab_ft[i]->tri!=NULL) m3d_update_front(&(tab_ft[i]),NULL,NULL,LIAISON);
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for (i=0;i<nb_tab2;i++)
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{
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m3d_update_front(&(tab_ft2[i]),NULL,NULL,LIAISON);
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m3d_update_front(&(tab_ft2[i]->voisin[0].ft),NULL,NULL,LIAISON);
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m3d_update_front(&(tab_ft2[i]->voisin[1].ft),NULL,NULL,LIAISON);
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m3d_update_front(&(tab_ft2[i]->voisin[2].ft),NULL,NULL,LIAISON);
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}
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no=ADRESSE(tet->n1,noeud,mesh->);
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test=False;
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for (i=0;i<no->nb_tetra;i++)
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if (no->tetra[i]->etat==ACTIF) test=True;
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if (no->type!=BODY) test=True;
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if (test==False)
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no->etat=INACTIF;
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no=ADRESSE(tet->n2,noeud,mesh->);
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test=False;
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for (i=0;i<no->nb_tetra;i++)
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if (no->tetra[i]->etat==ACTIF) test=True;
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if (no->type!=BODY) test=True;
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if (test==False)
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no->etat=INACTIF;
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no=ADRESSE(tet->n3,noeud,mesh->);
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test=False;
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for (i=0;i<no->nb_tetra;i++)
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if (no->tetra[i]->etat==ACTIF) test=True;
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if (no->type!=BODY) test=True;
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if (test==False)
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no->etat=INACTIF;
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no=ADRESSE(tet->n4,noeud,mesh->);
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test=False;
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for (i=0;i<no->nb_tetra;i++)
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if (no->tetra[i]->etat==ACTIF) test=True;
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if (no->type!=BODY) test=True;
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if (test==False)
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no->etat=INACTIF;
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return(VALIDE);
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}
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