also did Sierpinski sponge
git-svn-id: https://svn.code.sf.net/p/freeglut/code/trunk@1144 7f0cb862-5218-0410-a997-914c9d46530a
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@ -94,7 +94,10 @@ static void fghDrawGeometry(GLenum vertexMode, double* vertices, double* normals
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/* -- INTERNAL SETUP OF GEOMETRY --------------------------------------- */
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/* -- first the cachable ones -- */
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static unsigned int ipow (int x, unsigned int y)
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{
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return y==0? 1: y==1? x: (y%2? x: 1) * ipow(x*x, y/2);
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}
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/* Magic Numbers: r0 = ( 1, 0, 0 )
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* r1 = ( -1/3, 2 sqrt(2) / 3, 0 )
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@ -106,9 +109,11 @@ static void fghDrawGeometry(GLenum vertexMode, double* vertices, double* normals
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* Normals: The unit normals are simply the negative of the coordinates of the point not on the surface.
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*/
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/* -- TetraHedron -- */
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/* -- Tetrahedron -- */
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#define TETR_NUM_FACES 4
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#define TETR_NUM_VERT_PER_FACE 3
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#define TETR_VERT_PER_TETR TETR_NUM_FACES*TETR_NUM_VERT_PER_FACE
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#define TETR_VERT_ELEM_PER_TETR TETR_VERT_PER_TETR*3
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/* Vertex Coordinates */
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static GLdouble tet_r[TETR_NUM_FACES][TETR_NUM_VERT_PER_FACE] =
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@ -132,30 +137,66 @@ static GLubyte tet_n[TETR_NUM_FACES] =
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/* Cache of input to glDrawArrays */
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static GLboolean tetrCached = FALSE;
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static double tetr_verts[TETR_NUM_FACES * TETR_NUM_VERT_PER_FACE * 3];
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static double tetr_norms[TETR_NUM_FACES * TETR_NUM_VERT_PER_FACE * 3];
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static double tetr_verts[TETR_VERT_ELEM_PER_TETR];
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static double tetr_norms[TETR_VERT_ELEM_PER_TETR];
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static void fghTetrahedronCache()
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static void fghTetrahedronGenerate()
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{
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int p,q;
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int i,j;
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/*
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* Build array with vertices from vertex coordinates and vertex indices
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* Do same for normals.
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* Need to do this because of different normals at shared vertices
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* (and because normals' coordinates need to be negated).
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*/
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for (p=0; p<TETR_NUM_FACES; p++)
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for (i=0; i<TETR_NUM_FACES; i++)
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{
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for (q=0; q<TETR_NUM_VERT_PER_FACE; q++)
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for (j=0; j<TETR_NUM_VERT_PER_FACE; j++)
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{
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int idx = p*TETR_NUM_VERT_PER_FACE*3+q*3;
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tetr_verts[idx ] = tet_r[tet_i[p][q]][0];
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tetr_verts[idx+1] = tet_r[tet_i[p][q]][1];
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tetr_verts[idx+2] = tet_r[tet_i[p][q]][2];
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int idx = i*TETR_NUM_VERT_PER_FACE*3+j*3;
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tetr_verts[idx ] = tet_r[tet_i[i][j]][0];
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tetr_verts[idx+1] = tet_r[tet_i[i][j]][1];
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tetr_verts[idx+2] = tet_r[tet_i[i][j]][2];
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tetr_norms[idx ] = -tet_r[tet_n[p]][0];
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tetr_norms[idx+1] = -tet_r[tet_n[p]][1];
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tetr_norms[idx+2] = -tet_r[tet_n[p]][2];
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tetr_norms[idx ] = -tet_r[tet_n[i]][0];
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tetr_norms[idx+1] = -tet_r[tet_n[i]][1];
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tetr_norms[idx+2] = -tet_r[tet_n[i]][2];
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}
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}
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}
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/* -- Sierpinski Sponge -- */
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static void fghSierpinskiSpongeGenerate ( int numLevels, GLdouble offset[3], GLdouble scale, double* vertices, double* normals )
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{
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int i, j;
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if ( numLevels == 0 )
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{
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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for ( j = 0; j < TETR_NUM_VERT_PER_FACE; j++ )
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{
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int idx = i*TETR_NUM_VERT_PER_FACE*3+j*3;
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vertices[idx ] = offset[0] + scale * tet_r[tet_i[i][j]][0];
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vertices[idx+1] = offset[1] + scale * tet_r[tet_i[i][j]][1];
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vertices[idx+2] = offset[2] + scale * tet_r[tet_i[i][j]][2];
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normals[idx ] = -tet_r[tet_n[i]][0];
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normals[idx+1] = -tet_r[tet_n[i]][1];
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normals[idx+2] = -tet_r[tet_n[i]][2];
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}
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}
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}
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else if ( numLevels > 0 )
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{
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GLdouble local_offset[3] ; /* Use a local variable to avoid buildup of roundoff errors */
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unsigned int stride = ipow(4,--numLevels)*TETR_VERT_ELEM_PER_TETR;
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scale /= 2.0 ;
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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local_offset[0] = offset[0] + scale * tet_r[i][0];
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local_offset[1] = offset[1] + scale * tet_r[i][1];
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local_offset[2] = offset[2] + scale * tet_r[i][2];
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fghSierpinskiSpongeGenerate ( numLevels, local_offset, scale, vertices+i*stride, normals+i*stride );
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}
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}
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}
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@ -219,9 +260,32 @@ static void fghCircleTable(double **sint,double **cost,const int n)
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static void fghTetrahedron( GLboolean useWireMode )
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{
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if (!tetrCached)
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fghTetrahedronCache();
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fghTetrahedronGenerate();
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fghDrawGeometry(GL_TRIANGLES,tetr_verts,tetr_norms,TETR_NUM_FACES*TETR_NUM_VERT_PER_FACE,useWireMode);
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fghDrawGeometry(GL_TRIANGLES,tetr_verts,tetr_norms,TETR_VERT_PER_TETR,useWireMode);
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}
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static void fghSierpinskiSponge ( int numLevels, GLdouble offset[3], GLdouble scale, GLboolean useWireMode )
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{
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double *vertices;
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double * normals;
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unsigned int numTetr = numLevels<0? 0 : ipow(4,numLevels); /* No sponge for numLevels below 0 */
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unsigned int numVert = numTetr*TETR_VERT_PER_TETR;
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if (numTetr)
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{
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/* Allocate memory */
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vertices = malloc(numVert*3 * sizeof(double));
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normals = malloc(numVert*3 * sizeof(double));
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/* Generate elements */
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fghSierpinskiSpongeGenerate ( numLevels, offset, scale, vertices, normals );
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/* Draw and cleanup */
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fghDrawGeometry(GL_TRIANGLES,vertices,normals,numVert,useWireMode);
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free(vertices);
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free(normals );
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}
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}
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@ -1196,84 +1260,6 @@ void FGAPIENTRY glutSolidRhombicDodecahedron( void )
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glEnd () ;
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}
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void FGAPIENTRY glutWireSierpinskiSponge ( int num_levels, GLdouble offset[3], GLdouble scale )
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{
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int i, j ;
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutWireSierpinskiSponge" );
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if ( num_levels == 0 )
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{
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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glBegin ( GL_LINE_LOOP ) ;
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glNormal3d ( -tet_r[i][0], -tet_r[i][1], -tet_r[i][2] ) ;
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for ( j = 0; j < 3; j++ )
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{
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double x = offset[0] + scale * tet_r[tet_i[i][j]][0] ;
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double y = offset[1] + scale * tet_r[tet_i[i][j]][1] ;
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double z = offset[2] + scale * tet_r[tet_i[i][j]][2] ;
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glVertex3d ( x, y, z ) ;
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}
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glEnd () ;
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}
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}
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else if ( num_levels > 0 )
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{
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GLdouble local_offset[3] ; /* Use a local variable to avoid buildup of roundoff errors */
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num_levels -- ;
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scale /= 2.0 ;
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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local_offset[0] = offset[0] + scale * tet_r[i][0] ;
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local_offset[1] = offset[1] + scale * tet_r[i][1] ;
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local_offset[2] = offset[2] + scale * tet_r[i][2] ;
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glutWireSierpinskiSponge ( num_levels, local_offset, scale ) ;
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}
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}
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}
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void FGAPIENTRY glutSolidSierpinskiSponge ( int num_levels, GLdouble offset[3], GLdouble scale )
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{
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int i, j ;
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutSolidSierpinskiSponge" );
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if ( num_levels == 0 )
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{
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glBegin ( GL_TRIANGLES ) ;
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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glNormal3d ( -tet_r[i][0], -tet_r[i][1], -tet_r[i][2] ) ;
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for ( j = 0; j < 3; j++ )
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{
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double x = offset[0] + scale * tet_r[tet_i[i][j]][0] ;
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double y = offset[1] + scale * tet_r[tet_i[i][j]][1] ;
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double z = offset[2] + scale * tet_r[tet_i[i][j]][2] ;
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glVertex3d ( x, y, z ) ;
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}
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}
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glEnd () ;
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}
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else if ( num_levels > 0 )
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{
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GLdouble local_offset[3] ; /* Use a local variable to avoid buildup of roundoff errors */
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num_levels -- ;
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scale /= 2.0 ;
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for ( i = 0 ; i < TETR_NUM_FACES ; i++ )
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{
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local_offset[0] = offset[0] + scale * tet_r[i][0] ;
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local_offset[1] = offset[1] + scale * tet_r[i][1] ;
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local_offset[2] = offset[2] + scale * tet_r[i][2] ;
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glutSolidSierpinskiSponge ( num_levels, local_offset, scale ) ;
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}
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}
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}
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/* -- INTERFACE FUNCTIONS -------------------------------------------------- */
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@ -1282,15 +1268,24 @@ void FGAPIENTRY glutSolidSierpinskiSponge ( int num_levels, GLdouble offset[3],
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void FGAPIENTRY glutWireTetrahedron( void )
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{
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutWireTetrahedron" );
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fghTetrahedron( TRUE );
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}
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void FGAPIENTRY glutSolidTetrahedron( void )
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{
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutSolidTetrahedron" );
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fghTetrahedron( FALSE );
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}
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void FGAPIENTRY glutWireSierpinskiSponge ( int num_levels, GLdouble offset[3], GLdouble scale )
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{
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutWireSierpinskiSponge" );
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fghSierpinskiSponge ( num_levels, offset, scale, TRUE );
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}
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void FGAPIENTRY glutSolidSierpinskiSponge ( int num_levels, GLdouble offset[3], GLdouble scale )
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{
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FREEGLUT_EXIT_IF_NOT_INITIALISED ( "glutSolidSierpinskiSponge" );
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fghSierpinskiSponge ( num_levels, offset, scale, FALSE );
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}
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/*** END OF FILE ***/
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