| 1 |
|
#ifndef lint |
| 2 |
< |
static const char RCSid[] = "$Id$"; |
| 2 |
> |
static const char RCSid[] = "$Id$"; |
| 3 |
|
#endif |
| 4 |
|
/* |
| 5 |
|
* gensurf.c - program to generate functional surfaces |
| 32 |
|
char texname[] = "Phong"; |
| 33 |
|
|
| 34 |
|
int smooth = 0; /* apply smoothing? */ |
| 35 |
+ |
int objout = 0; /* output .OBJ format? */ |
| 36 |
|
|
| 37 |
|
char *modname, *surfname; |
| 38 |
|
|
| 50 |
|
extern double funvalue(), argument(); |
| 51 |
|
|
| 52 |
|
typedef struct { |
| 53 |
< |
int valid; /* point is valid */ |
| 53 |
> |
int valid; /* point is valid (vertex number) */ |
| 54 |
|
FVECT p; /* vertex position */ |
| 55 |
|
FVECT n; /* average normal */ |
| 56 |
+ |
FLOAT uv[2]; /* (u,v) position */ |
| 57 |
|
} POINT; |
| 58 |
|
|
| 59 |
|
|
| 81 |
|
fcompile(argv[++i]); |
| 82 |
|
else if (!strcmp(argv[i], "-s")) |
| 83 |
|
smooth++; |
| 84 |
+ |
else if (!strcmp(argv[i], "-o")) |
| 85 |
+ |
objout++; |
| 86 |
|
else |
| 87 |
|
goto userror; |
| 88 |
|
|
| 129 |
|
comprow(0.0, row1, n); |
| 130 |
|
comprow(1.0/m, row2, n); |
| 131 |
|
compnorms(row0, row1, row2, n); |
| 132 |
+ |
if (objout) |
| 133 |
+ |
putobjrow(row1, n); |
| 134 |
|
/* for each row */ |
| 135 |
|
for (i = 0; i < m; i++) { |
| 136 |
|
/* compute next row */ |
| 140 |
|
row2 = rp; |
| 141 |
|
comprow((double)(i+2)/m, row2, n); |
| 142 |
|
compnorms(row0, row1, row2, n); |
| 143 |
+ |
if (objout) |
| 144 |
+ |
putobjrow(row1, n); |
| 145 |
|
|
| 146 |
|
for (j = 0; j < n; j++) { |
| 147 |
|
int orient = (j & 1); |
| 148 |
|
/* put polygons */ |
| 149 |
< |
if (!(row0[j].valid & row1[j+1].valid)) |
| 149 |
> |
if (!(row0[j].valid && row1[j+1].valid)) |
| 150 |
|
orient = 1; |
| 151 |
< |
else if (!(row1[j].valid & row0[j+1].valid)) |
| 151 |
> |
else if (!(row1[j].valid && row0[j+1].valid)) |
| 152 |
|
orient = 0; |
| 153 |
|
if (orient) |
| 154 |
|
putsquare(&row0[j], &row1[j], |
| 268 |
|
} |
| 269 |
|
|
| 270 |
|
|
| 271 |
+ |
putobjrow(rp, n) /* output vertex row to .OBJ */ |
| 272 |
+ |
register POINT *rp; |
| 273 |
+ |
int n; |
| 274 |
+ |
{ |
| 275 |
+ |
static int nverts = 0; |
| 276 |
+ |
|
| 277 |
+ |
for ( ; n-- >= 0; rp++) { |
| 278 |
+ |
if (!rp->valid) |
| 279 |
+ |
continue; |
| 280 |
+ |
fputs("v ", stdout); |
| 281 |
+ |
printf(vformat, rp->p[0], rp->p[1], rp->p[2]); |
| 282 |
+ |
if (smooth) |
| 283 |
+ |
printf("\tvn %.9g %.9g %.9g\n", |
| 284 |
+ |
rp->n[0], rp->n[1], rp->n[2]); |
| 285 |
+ |
printf("\tvt %.9g %.9g\n", rp->uv[0], rp->uv[1]); |
| 286 |
+ |
rp->valid = ++nverts; |
| 287 |
+ |
} |
| 288 |
+ |
} |
| 289 |
+ |
|
| 290 |
+ |
|
| 291 |
|
putsquare(p0, p1, p2, p3) /* put out a square */ |
| 292 |
|
POINT *p0, *p1, *p2, *p3; |
| 293 |
|
{ |
| 297 |
|
FVECT v1, v2, vc1, vc2; |
| 298 |
|
int ok1, ok2; |
| 299 |
|
/* compute exact normals */ |
| 300 |
< |
ok1 = (p0->valid & p1->valid & p2->valid); |
| 300 |
> |
ok1 = (p0->valid && p1->valid && p2->valid); |
| 301 |
|
if (ok1) { |
| 302 |
|
fvsum(v1, p1->p, p0->p, -1.0); |
| 303 |
|
fvsum(v2, p2->p, p0->p, -1.0); |
| 304 |
|
fcross(vc1, v1, v2); |
| 305 |
|
ok1 = (normalize(vc1) != 0.0); |
| 306 |
|
} |
| 307 |
< |
ok2 = (p1->valid & p2->valid & p3->valid); |
| 307 |
> |
ok2 = (p1->valid && p2->valid && p3->valid); |
| 308 |
|
if (ok2) { |
| 309 |
|
fvsum(v1, p2->p, p3->p, -1.0); |
| 310 |
|
fvsum(v2, p1->p, p3->p, -1.0); |
| 313 |
|
} |
| 314 |
|
if (!(ok1 | ok2)) |
| 315 |
|
return; |
| 316 |
+ |
if (objout) { /* output .OBJ faces */ |
| 317 |
+ |
int p0n=0, p1n=0, p2n=0, p3n=0; |
| 318 |
+ |
if (smooth) { |
| 319 |
+ |
p0n = p0->valid; |
| 320 |
+ |
p1n = p1->valid; |
| 321 |
+ |
p2n = p2->valid; |
| 322 |
+ |
p3n = p3->valid; |
| 323 |
+ |
} |
| 324 |
+ |
if (ok1 & ok2 && fdot(vc1,vc2) >= 1.0-FTINY*FTINY) { |
| 325 |
+ |
printf("f %d/%d/%d %d/%d/%d %d/%d/%d %d/%d/%d\n", |
| 326 |
+ |
p0->valid, p0n, p0->valid, |
| 327 |
+ |
p1->valid, p1n, p1->valid, |
| 328 |
+ |
p3->valid, p3n, p3->valid, |
| 329 |
+ |
p2->valid, p2n, p2->valid); |
| 330 |
+ |
return; |
| 331 |
+ |
} |
| 332 |
+ |
if (ok1) |
| 333 |
+ |
printf("f %d/%d/%d %d/%d/%d %d/%d/%d\n", |
| 334 |
+ |
p0->valid, p0n, p0->valid, |
| 335 |
+ |
p1->valid, p1n, p1->valid, |
| 336 |
+ |
p2->valid, p2n, p2->valid); |
| 337 |
+ |
if (ok2) |
| 338 |
+ |
printf("f %d/%d/%d %d/%d/%d %d/%d/%d\n", |
| 339 |
+ |
p2->valid, p2n, p2->valid, |
| 340 |
+ |
p1->valid, p1n, p1->valid, |
| 341 |
+ |
p3->valid, p3n, p3->valid); |
| 342 |
+ |
return; |
| 343 |
+ |
} |
| 344 |
|
/* compute normal interpolation */ |
| 345 |
|
axis = norminterp(norm, p0, p1, p2, p3); |
| 346 |
|
|
| 435 |
|
if (checkvalid && funvalue(VNAME, 2, st) <= 0.0) { |
| 436 |
|
row[i].valid = 0; |
| 437 |
|
row[i].p[0] = row[i].p[1] = row[i].p[2] = 0.0; |
| 438 |
+ |
row[i].uv[0] = row[i].uv[1] = 0.0; |
| 439 |
|
} else { |
| 440 |
|
row[i].valid = 1; |
| 441 |
|
row[i].p[0] = funvalue(XNAME, 2, st); |
| 442 |
|
row[i].p[1] = funvalue(YNAME, 2, st); |
| 443 |
|
row[i].p[2] = funvalue(ZNAME, 2, st); |
| 444 |
+ |
row[i].uv[0] = st[0]; |
| 445 |
+ |
row[i].uv[1] = st[1]; |
| 446 |
|
} |
| 447 |
|
i++; |
| 448 |
|
} |