Newer
Older
List_Nbr((yyvsp[(5) - (9)].l)), List_Nbr((yyvsp[(7) - (9)].l)));
List_Delete((yyvsp[(3) - (9)].l));
List_Delete((yyvsp[(5) - (9)].l));
List_Delete((yyvsp[(7) - (9)].l));
;}
break;
yymsg(0, "Surface %d already exists", num);
}
else{
Surface *s = Create_Surface(num, MSH_SURF_DISCRETE);
if(!strcmp((yyvsp[(2) - (3)].c), "Progression") || !strcmp((yyvsp[(2) - (3)].c), "Power"))
(yyval.v)[0] = 1.;
else if(!strcmp((yyvsp[(2) - (3)].c), "Bump"))
(yyval.v)[0] = 2.;
else{
yymsg(0, "Unknown transfinite mesh type");
(yyval.v)[0] = 1.;
(yyval.v)[1] = (yyvsp[(3) - (3)].d);
Free((yyvsp[(2) - (3)].c));
{
if(!strcmp((yyvsp[(1) - (1)].c), "Right"))
(yyval.i) = 1;
else if(!strcmp((yyvsp[(1) - (1)].c), "Left"))
(yyval.i) = -1;
else // alternated
(yyval.i) = 0;
Free((yyvsp[(1) - (1)].c));
;}
break;
{
(yyval.l) = List_Create(1, 1, sizeof(double));
;}
break;
{
(yyval.l) = (yyvsp[(2) - (2)].l);
;}
break;
int type = (int)(yyvsp[(6) - (7)].v)[0];
double coef = fabs((yyvsp[(6) - (7)].v)[1]);
if(!(yyvsp[(3) - (7)].l)){
List_T *tmp = Tree2List(GModel::current()->getGEOInternals()->Curves);
if(List_Nbr(tmp)){
for(int i = 0; i < List_Nbr(tmp); i++){
Curve *c;
List_Read(tmp, i, &c);
c->Method = MESH_TRANSFINITE;
c->nbPointsTransfinite = ((yyvsp[(5) - (7)].d) > 2) ? (int)(yyvsp[(5) - (7)].d) : 2;
c->typeTransfinite = type;
c->coeffTransfinite = coef;
}
}
for(GModel::eiter it = GModel::current()->firstEdge();
it != GModel::current()->lastEdge(); it++){
(*it)->meshAttributes.Method = MESH_TRANSFINITE;
(*it)->meshAttributes.nbPointsTransfinite = ((yyvsp[(5) - (7)].d) > 2) ? (int)(yyvsp[(5) - (7)].d) : 2;
(*it)->meshAttributes.typeTransfinite = type;
(*it)->meshAttributes.coeffTransfinite = coef;
List_Delete(tmp);
}
else{
for(int i = 0; i < List_Nbr((yyvsp[(3) - (7)].l)); i++){
double d;
List_Read((yyvsp[(3) - (7)].l), i, &d);
int j = (int)fabs(d);

Christophe Geuzaine
committed
for(int sign = -1; sign <= 1; sign += 2){
Curve *c = FindCurve(sign * j);
if(c){
c->Method = MESH_TRANSFINITE;
c->nbPointsTransfinite = ((yyvsp[(5) - (7)].d) > 2) ? (int)(yyvsp[(5) - (7)].d) : 2;
c->typeTransfinite = type * sign(d);
c->coeffTransfinite = coef;
}
else{
GEdge *ge = GModel::current()->getEdgeByTag(sign * j);
if(ge){
ge->meshAttributes.Method = MESH_TRANSFINITE;
ge->meshAttributes.nbPointsTransfinite = ((yyvsp[(5) - (7)].d) > 2) ? (int)(yyvsp[(5) - (7)].d) : 2;
ge->meshAttributes.typeTransfinite = type * sign(d);
ge->meshAttributes.coeffTransfinite = coef;
}
else if(sign > 0)

Christophe Geuzaine
committed
yymsg(0, "Unknown line %d", j);
}
}
}
List_Delete((yyvsp[(3) - (7)].l));
int k = List_Nbr((yyvsp[(4) - (6)].l));
if(k != 0 && k != 3 && k != 4){
yymsg(0, "Wrong definition of Transfinite Surface: 0, 3 or 4 points needed");
if(!(yyvsp[(3) - (6)].l)){
List_T *tmp = Tree2List(GModel::current()->getGEOInternals()->Surfaces);
if(List_Nbr(tmp)){
for(int i = 0; i < List_Nbr(tmp); i++){
Surface *s;
List_Read(tmp, i, &s);
s->Method = MESH_TRANSFINITE;
s->Recombine_Dir = (yyvsp[(5) - (6)].i);
List_Reset(s->TrsfPoints);
for(GModel::fiter it = GModel::current()->firstFace();
it != GModel::current()->lastFace(); it++){
(*it)->meshAttributes.Method = MESH_TRANSFINITE;
(*it)->meshAttributes.transfiniteArrangement = (yyvsp[(5) - (6)].i);
}
}
List_Delete(tmp);
}
else{
for(int i = 0; i < List_Nbr((yyvsp[(3) - (6)].l)); i++){
double d;
List_Read((yyvsp[(3) - (6)].l), i, &d);
Surface *s = FindSurface((int)d);
if(s){
s->Method = MESH_TRANSFINITE;
s->Recombine_Dir = (yyvsp[(5) - (6)].i);
List_Reset(s->TrsfPoints);
for(int j = 0; j < k; j++){
double p;
List_Read((yyvsp[(4) - (6)].l), j, &p);
Vertex *v = FindPoint((int)fabs(p));
if(v)
List_Add(s->TrsfPoints, &v);
else
yymsg(0, "Unknown point %d", (int)fabs(p));
}
}
else{
GFace *gf = GModel::current()->getFaceByTag((int)d);
if(gf){
gf->meshAttributes.Method = MESH_TRANSFINITE;
gf->meshAttributes.transfiniteArrangement = (yyvsp[(5) - (6)].i);
for(int j = 0; j < k; j++){
double p;
List_Read((yyvsp[(4) - (6)].l), j, &p);
GVertex *gv = GModel::current()->getVertexByTag((int)fabs(p));
if(gv)
gf->meshAttributes.corners.push_back(gv);
else
yymsg(0, "Unknown point %d", (int)fabs(p));
}
}
else
yymsg(0, "Unknown surface %d", (int)d);
}
List_Delete((yyvsp[(3) - (6)].l));
List_Delete((yyvsp[(4) - (6)].l));
yymsg(1, "Elliptic Surface is deprecated: use Transfinite instead (with smoothing)");
int k = List_Nbr((yyvsp[(4) - (5)].l));
if(k != 0 && k != 6 && k != 8){
yymsg(0, "Wrong definition of Transfinite Volume: "
"%d points instead of 6 or 8", k);
if(!(yyvsp[(3) - (5)].l)){
List_T *tmp = Tree2List(GModel::current()->getGEOInternals()->Volumes);
if(List_Nbr(tmp)){
for(int i = 0; i < List_Nbr(tmp); i++){
Volume *v;
List_Read(tmp, i, &v);
v->Method = MESH_TRANSFINITE;
List_Reset(v->TrsfPoints);
}
}
else{
for(GModel::riter it = GModel::current()->firstRegion();
it != GModel::current()->lastRegion(); it++){
(*it)->meshAttributes.Method = MESH_TRANSFINITE;
}
}
List_Delete(tmp);
}
7276
7277
7278
7279
7280
7281
7282
7283
7284
7285
7286
7287
7288
7289
7290
7291
7292
7293
7294
7295
7296
7297
7298
7299
7300
7301
7302
7303
7304
7305
7306
for(int i = 0; i < List_Nbr((yyvsp[(3) - (5)].l)); i++){
double d;
List_Read((yyvsp[(3) - (5)].l), i, &d);
Volume *v = FindVolume((int)d);
if(v){
v->Method = MESH_TRANSFINITE;
List_Reset(v->TrsfPoints);
for(int i = 0; i < k; i++){
double p;
List_Read((yyvsp[(4) - (5)].l), i, &p);
Vertex *vert = FindPoint((int)fabs(p));
if(vert)
List_Add(v->TrsfPoints, &vert);
else
yymsg(0, "Unknown point %d", (int)fabs(p));
}
}
else{
GRegion *gr = GModel::current()->getRegionByTag((int)d);
if(gr){
gr->meshAttributes.Method = MESH_TRANSFINITE;
for(int i = 0; i < k; i++){
double p;
List_Read((yyvsp[(4) - (5)].l), i, &p);
GVertex *gv = GModel::current()->getVertexByTag((int)fabs(p));
if(gv)
gr->meshAttributes.corners.push_back(gv);
else
yymsg(0, "Unknown point %d", (int)fabs(p));
}
}
yymsg(0, "Unknown volume %d", (int)d);
List_Delete((yyvsp[(3) - (5)].l));
List_Delete((yyvsp[(4) - (5)].l));
if(!(yyvsp[(3) - (5)].l)){
List_T *tmp = Tree2List(GModel::current()->getGEOInternals()->Surfaces);
if(List_Nbr(tmp)){
for(int i = 0; i < List_Nbr(tmp); i++){
Surface *s;
List_Read(tmp, i, &s);
s->Recombine = 1;
s->RecombineAngle = (yyvsp[(4) - (5)].i);
}
7332
7333
7334
7335
7336
7337
7338
7339
7340
7341
7342
7343
7344
7345
7346
7347
7348
7349
7350
7351
7352
7353
7354
7355
7356
for(GModel::fiter it = GModel::current()->firstFace();
it != GModel::current()->lastFace(); it++){
(*it)->meshAttributes.recombine = 1;
(*it)->meshAttributes.recombineAngle = (yyvsp[(4) - (5)].i);
}
}
List_Delete(tmp);
}
else{
for(int i = 0; i < List_Nbr((yyvsp[(3) - (5)].l)); i++){
double d;
List_Read((yyvsp[(3) - (5)].l), i, &d);
Surface *s = FindSurface((int)d);
if(s){
s->Recombine = 1;
s->RecombineAngle = (yyvsp[(4) - (5)].i);
}
else{
GFace *gf = GModel::current()->getFaceByTag((int)d);
if(gf){
gf->meshAttributes.recombine = 1;
gf->meshAttributes.recombineAngle = (yyvsp[(4) - (5)].i);
}
else
yymsg(1, "Unknown surface %d", (int)d);
List_Delete((yyvsp[(3) - (5)].l));
{
for(int i = 0; i < List_Nbr((yyvsp[(3) - (6)].l)); i++){
double d;
List_Read((yyvsp[(3) - (6)].l), i, &d);
int j = (int)d;
Surface *s = FindSurface(j);
if(s){
s->TransfiniteSmoothing = (int)(yyvsp[(5) - (6)].d);
}
else{
GFace *gf = GModel::current()->getFaceByTag(j);
if(gf)
gf->meshAttributes.transfiniteSmoothing = (int)(yyvsp[(5) - (6)].d);
else
yymsg(1, "Unknown surface %d", (int)(yyvsp[(5) - (6)].d));
}
}
List_Delete((yyvsp[(3) - (6)].l));
;}
break;
}
else{
GFace *gf = GModel::current()->getFaceByTag((int)(yyvsp[(8) - (10)].d));
if(gf){
for(int i = 0; i < List_Nbr((yyvsp[(3) - (10)].l)); i++){
int iPoint;
List_Read((yyvsp[(3) - (10)].l), i, &iPoint);
GVertex *gv = GModel::current()->getVertexByTag(iPoint);
if(gv)
gf->addEmbeddedVertex(gv);
else
yymsg(0, "Unknown point %d", iPoint);
}
}
else
yymsg(0, "Unknown surface %d", (int)(yyvsp[(8) - (10)].d));
}
}
else{
GFace *gf = GModel::current()->getFaceByTag((int)(yyvsp[(8) - (10)].d));
if(gf){
for(int i = 0; i < List_Nbr((yyvsp[(3) - (10)].l)); i++){
int iCurve;
List_Read((yyvsp[(3) - (10)].l), i, &iCurve);
GEdge *ge = GModel::current()->getEdgeByTag(iCurve);
if(ge)
gf->addEmbeddedEdge(ge);
else
yymsg(0, "Unknown line %d", iCurve);
}
}
else
yymsg(0, "Unknown surface %d", (int)(yyvsp[(8) - (10)].d));
}
ReplaceAllDuplicates();
{
if(!strcmp((yyvsp[(2) - (3)].c), "Geometry"))
ReplaceAllDuplicates();
else if(!strcmp((yyvsp[(2) - (3)].c), "Mesh"))
GModel::current()->removeDuplicateMeshVertices(CTX::instance()->geom.tolerance);
else
yymsg(0, "Unknown coherence command");
Free((yyvsp[(2) - (3)].c));
;}
{ (yyval.d) = (yyvsp[(1) - (3)].d) * (yyvsp[(3) - (3)].d); ;}
break;
yymsg(0, "Division by zero in '%g / %g'", (yyvsp[(1) - (3)].d), (yyvsp[(3) - (3)].d));
(yyval.d) = (yyvsp[(1) - (3)].d) / (yyvsp[(3) - (3)].d);
;}
break;
{ (yyval.d) = (int)(yyvsp[(1) - (3)].d) % (int)(yyvsp[(3) - (3)].d); ;}
{ (yyval.d) = pow((yyvsp[(1) - (3)].d), (yyvsp[(3) - (3)].d)); ;}
{ (yyval.d) = (yyvsp[(1) - (5)].d) ? (yyvsp[(3) - (5)].d) : (yyvsp[(5) - (5)].d); ;}

Christophe Geuzaine
committed
{ (yyval.d) = atan2((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d));;}
{ (yyval.d) = fmod((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = fmod((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = sqrt((yyvsp[(3) - (6)].d) * (yyvsp[(3) - (6)].d) + (yyvsp[(5) - (6)].d) * (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = (yyvsp[(3) - (4)].d) * (double)rand() / (double)RAND_MAX; ;}
{ (yyval.d) = atan2((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d));;}
{ (yyval.d) = fmod((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = fmod((yyvsp[(3) - (6)].d), (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = sqrt((yyvsp[(3) - (6)].d) * (yyvsp[(3) - (6)].d) + (yyvsp[(5) - (6)].d) * (yyvsp[(5) - (6)].d)); ;}
{ (yyval.d) = (yyvsp[(3) - (4)].d) * (double)rand() / (double)RAND_MAX; ;}
if(!gmsh_yysymbols.count((yyvsp[(1) - (1)].c))){
yymsg(0, "Unknown variable '%s'", (yyvsp[(1) - (1)].c));

Christophe Geuzaine
committed
else
(yyval.d) = gmsh_yysymbols[(yyvsp[(1) - (1)].c)][0];
sprintf(tmpstring, "%s_%d", (yyvsp[(1) - (5)].c), (int)(yyvsp[(4) - (5)].d)) ;
if(!gmsh_yysymbols.count(tmpstring)){
yymsg(0, "Unknown variable '%s'", tmpstring);
(yyval.d) = gmsh_yysymbols[tmpstring][0];
int index = (int)(yyvsp[(3) - (4)].d);
if(!gmsh_yysymbols.count((yyvsp[(1) - (4)].c))){
yymsg(0, "Unknown variable '%s'", (yyvsp[(1) - (4)].c));
else if((int)gmsh_yysymbols[(yyvsp[(1) - (4)].c)].size() < index + 1){
yymsg(0, "Uninitialized variable '%s[%d]'", (yyvsp[(1) - (4)].c), index);
(yyval.d) = 0.;
else
(yyval.d) = gmsh_yysymbols[(yyvsp[(1) - (4)].c)][index];
if(!gmsh_yysymbols.count((yyvsp[(2) - (4)].c))){
yymsg(0, "Unknown variable '%s'", (yyvsp[(2) - (4)].c));
(yyval.d) = gmsh_yysymbols[(yyvsp[(2) - (4)].c)].size();
if(!gmsh_yysymbols.count((yyvsp[(1) - (2)].c))){
yymsg(0, "Unknown variable '%s'", (yyvsp[(1) - (2)].c));

Christophe Geuzaine
committed
else
(yyval.d) = (gmsh_yysymbols[(yyvsp[(1) - (2)].c)][0] += (yyvsp[(2) - (2)].i));
int index = (int)(yyvsp[(3) - (5)].d);
if(!gmsh_yysymbols.count((yyvsp[(1) - (5)].c))){
yymsg(0, "Unknown variable '%s'", (yyvsp[(1) - (5)].c));
else if((int)gmsh_yysymbols[(yyvsp[(1) - (5)].c)].size() < index + 1){
yymsg(0, "Uninitialized variable '%s[%d]'", (yyvsp[(1) - (5)].c), index);
(yyval.d) = 0.;
else
(yyval.d) = (gmsh_yysymbols[(yyvsp[(1) - (5)].c)][index] += (yyvsp[(5) - (5)].i));
NumberOption(GMSH_GET, (yyvsp[(1) - (3)].c), 0, (yyvsp[(3) - (3)].c), (yyval.d));
Free((yyvsp[(1) - (3)].c)); Free((yyvsp[(3) - (3)].c));
;}
break;
NumberOption(GMSH_GET, (yyvsp[(1) - (6)].c), (int)(yyvsp[(3) - (6)].d), (yyvsp[(6) - (6)].c), (yyval.d));
Free((yyvsp[(1) - (6)].c)); Free((yyvsp[(6) - (6)].c));
;}
break;
double d = 0.;
if(NumberOption(GMSH_GET, (yyvsp[(1) - (4)].c), 0, (yyvsp[(3) - (4)].c), d)){
d += (yyvsp[(4) - (4)].i);
NumberOption(GMSH_SET|GMSH_GUI, (yyvsp[(1) - (4)].c), 0, (yyvsp[(3) - (4)].c), d);
(yyval.d) = d;
Free((yyvsp[(1) - (4)].c)); Free((yyvsp[(3) - (4)].c));
;}
break;
double d = 0.;
if(NumberOption(GMSH_GET, (yyvsp[(1) - (7)].c), (int)(yyvsp[(3) - (7)].d), (yyvsp[(6) - (7)].c), d)){
d += (yyvsp[(7) - (7)].i);
NumberOption(GMSH_SET|GMSH_GUI, (yyvsp[(1) - (7)].c), (int)(yyvsp[(3) - (7)].d), (yyvsp[(6) - (7)].c), d);
(yyval.d) = d;
Free((yyvsp[(1) - (7)].c)); Free((yyvsp[(6) - (7)].c));
;}
break;
(yyval.d) = Msg::GetValue((yyvsp[(3) - (6)].c), (yyvsp[(5) - (6)].d));
{
memcpy((yyval.v), (yyvsp[(1) - (1)].v), 5*sizeof(double));
;}
break;
{
for(int i = 0; i < 5; i++) (yyval.v)[i] = -(yyvsp[(2) - (2)].v)[i];
;}
break;
{
for(int i = 0; i < 5; i++) (yyval.v)[i] = (yyvsp[(2) - (2)].v)[i];
;}
break;
{
for(int i = 0; i < 5; i++) (yyval.v)[i] = (yyvsp[(1) - (3)].v)[i] - (yyvsp[(3) - (3)].v)[i];
;}
break;
{
for(int i = 0; i < 5; i++) (yyval.v)[i] = (yyvsp[(1) - (3)].v)[i] + (yyvsp[(3) - (3)].v)[i];
;}
break;
{
(yyval.v)[0] = (yyvsp[(2) - (11)].d); (yyval.v)[1] = (yyvsp[(4) - (11)].d); (yyval.v)[2] = (yyvsp[(6) - (11)].d); (yyval.v)[3] = (yyvsp[(8) - (11)].d); (yyval.v)[4] = (yyvsp[(10) - (11)].d);
;}