| 1 | #ifndef lint | 
| 2 | static const char RCSid[] = "$Id: mesh.c,v 2.33 2020/04/04 04:34:08 greg Exp $"; | 
| 3 | #endif | 
| 4 | /* | 
| 5 | * Mesh support routines | 
| 6 | */ | 
| 7 |  | 
| 8 | #include "rtio.h" | 
| 9 | #include "rtmath.h" | 
| 10 | #include "rterror.h" | 
| 11 | #include "paths.h" | 
| 12 | #include "octree.h" | 
| 13 | #include "object.h" | 
| 14 | #include "otypes.h" | 
| 15 | #include "mesh.h" | 
| 16 |  | 
| 17 | /* An encoded mesh vertex */ | 
| 18 | typedef struct { | 
| 19 | int             fl; | 
| 20 | uint32          xyz[3]; | 
| 21 | int32           norm; | 
| 22 | uint32          uv[2]; | 
| 23 | } MCVERT; | 
| 24 |  | 
| 25 | #define  MPATCHBLKSIZ   128             /* patch allocation block size */ | 
| 26 |  | 
| 27 | #define  IO_LEGAL       (IO_BOUNDS|IO_TREE|IO_SCENE) | 
| 28 |  | 
| 29 | static MESH     *mlist = NULL;          /* list of loaded meshes */ | 
| 30 |  | 
| 31 |  | 
| 32 | static unsigned long | 
| 33 | cvhash(const char *p)                   /* hash an encoded vertex */ | 
| 34 | { | 
| 35 | const MCVERT    *cvp = (const MCVERT *)p; | 
| 36 | unsigned long   hval; | 
| 37 |  | 
| 38 | if (!(cvp->fl & MT_V)) | 
| 39 | return(0); | 
| 40 | hval = cvp->xyz[0] ^ cvp->xyz[1] << 11 ^ cvp->xyz[2] << 22; | 
| 41 | if (cvp->fl & MT_N) | 
| 42 | hval ^= cvp->norm; | 
| 43 | if (cvp->fl & MT_UV) | 
| 44 | hval ^= cvp->uv[0] ^ cvp->uv[1] << 16; | 
| 45 | return(hval); | 
| 46 | } | 
| 47 |  | 
| 48 |  | 
| 49 | static int | 
| 50 | cvcmp(const char *vv1, const char *vv2)         /* compare encoded vertices */ | 
| 51 | { | 
| 52 | const MCVERT    *v1 = (const MCVERT *)vv1, *v2 = (const MCVERT *)vv2; | 
| 53 |  | 
| 54 | if (v1->fl != v2->fl) | 
| 55 | return(1); | 
| 56 | if (v1->xyz[0] != v2->xyz[0]) | 
| 57 | return(1); | 
| 58 | if (v1->xyz[1] != v2->xyz[1]) | 
| 59 | return(1); | 
| 60 | if (v1->xyz[2] != v2->xyz[2]) | 
| 61 | return(1); | 
| 62 | if (v1->fl & MT_N && v1->norm != v2->norm) | 
| 63 | return(1); | 
| 64 | if (v1->fl & MT_UV) { | 
| 65 | if (v1->uv[0] != v2->uv[0]) | 
| 66 | return(1); | 
| 67 | if (v1->uv[1] != v2->uv[1]) | 
| 68 | return(1); | 
| 69 | } | 
| 70 | return(0); | 
| 71 | } | 
| 72 |  | 
| 73 |  | 
| 74 | MESH * | 
| 75 | getmesh(                                /* get new mesh data reference */ | 
| 76 | char    *mname, | 
| 77 | int     flags | 
| 78 | ) | 
| 79 | { | 
| 80 | char  *pathname; | 
| 81 | MESH  *ms; | 
| 82 |  | 
| 83 | flags &= IO_LEGAL; | 
| 84 | for (ms = mlist; ms != NULL; ms = ms->next) | 
| 85 | if (!strcmp(mname, ms->name)) { | 
| 86 | ms->nref++;     /* increase reference count */ | 
| 87 | break; | 
| 88 | } | 
| 89 | if (ms == NULL) {               /* load first time */ | 
| 90 | ms = (MESH *)calloc(1, sizeof(MESH)); | 
| 91 | if (ms == NULL) | 
| 92 | error(SYSTEM, "out of memory in getmesh"); | 
| 93 | ms->name = savestr(mname); | 
| 94 | ms->nref = 1; | 
| 95 | ms->mcube.cutree = EMPTY; | 
| 96 | ms->next = mlist; | 
| 97 | mlist = ms; | 
| 98 | } | 
| 99 | if ((pathname = getpath(mname, getrlibpath(), R_OK)) == NULL) { | 
| 100 | sprintf(errmsg, "cannot find mesh file \"%s\"", mname); | 
| 101 | error(SYSTEM, errmsg); | 
| 102 | } | 
| 103 | flags &= ~ms->ldflags; | 
| 104 | if (flags) | 
| 105 | readmesh(ms, pathname, flags); | 
| 106 | return(ms); | 
| 107 | } | 
| 108 |  | 
| 109 |  | 
| 110 | MESHINST * | 
| 111 | getmeshinst(                            /* create mesh instance */ | 
| 112 | OBJREC  *o, | 
| 113 | int     flags | 
| 114 | ) | 
| 115 | { | 
| 116 | MESHINST  *ins; | 
| 117 |  | 
| 118 | flags &= IO_LEGAL; | 
| 119 | if ((ins = (MESHINST *)o->os) == NULL) { | 
| 120 | if ((ins = (MESHINST *)malloc(sizeof(MESHINST))) == NULL) | 
| 121 | error(SYSTEM, "out of memory in getmeshinst"); | 
| 122 | if (o->oargs.nsargs < 1) | 
| 123 | objerror(o, USER, "bad # of arguments"); | 
| 124 | if (fullxf(&ins->x, o->oargs.nsargs-1, | 
| 125 | o->oargs.sarg+1) != o->oargs.nsargs-1) | 
| 126 | objerror(o, USER, "bad transform"); | 
| 127 | if (ins->x.f.sca < 0.0) { | 
| 128 | ins->x.f.sca = -ins->x.f.sca; | 
| 129 | ins->x.b.sca = -ins->x.b.sca; | 
| 130 | } | 
| 131 | ins->msh = NULL; | 
| 132 | o->os = (char *)ins; | 
| 133 | } | 
| 134 | if (ins->msh == NULL) | 
| 135 | ins->msh = getmesh(o->oargs.sarg[0], flags); | 
| 136 | else if ((flags &= ~ins->msh->ldflags)) | 
| 137 | readmesh(ins->msh, | 
| 138 | getpath(o->oargs.sarg[0], getrlibpath(), R_OK), | 
| 139 | flags); | 
| 140 | return(ins); | 
| 141 | } | 
| 142 |  | 
| 143 |  | 
| 144 | int | 
| 145 | nextmeshtri(                            /* get next triangle ID */ | 
| 146 | OBJECT *tip, | 
| 147 | MESH *mp | 
| 148 | ) | 
| 149 | { | 
| 150 | int             pn; | 
| 151 | MESHPATCH       *pp; | 
| 152 |  | 
| 153 | pn = ++(*tip) >> 10;                    /* next triangle (OVOID init) */ | 
| 154 | while (pn < mp->npatches) { | 
| 155 | pp = &mp->patch[pn]; | 
| 156 | if (!(*tip & 0x200)) {          /* local triangle? */ | 
| 157 | if ((*tip & 0x1ff) < pp->ntris) | 
| 158 | return(1); | 
| 159 | *tip &= ~0x1ff;         /* move on to single-joiners */ | 
| 160 | *tip |= 0x200; | 
| 161 | } | 
| 162 | if (!(*tip & 0x100)) {          /* single joiner? */ | 
| 163 | if ((*tip & 0xff) < pp->nj1tris) | 
| 164 | return(1); | 
| 165 | *tip &= ~0xff;          /* move on to double-joiners */ | 
| 166 | *tip |= 0x100; | 
| 167 | } | 
| 168 | if ((*tip & 0xff) < pp->nj2tris) | 
| 169 | return(1); | 
| 170 | *tip = ++pn << 10;              /* first in next patch */ | 
| 171 | } | 
| 172 | return(0);                              /* out of patches */ | 
| 173 | } | 
| 174 |  | 
| 175 | int | 
| 176 | getmeshtrivid(                          /* get triangle vertex ID's */ | 
| 177 | int32   tvid[3], | 
| 178 | OBJECT  *mo, | 
| 179 | MESH    *mp, | 
| 180 | OBJECT  ti | 
| 181 | ) | 
| 182 | { | 
| 183 | int             pn = ti >> 10; | 
| 184 | MESHPATCH       *pp; | 
| 185 |  | 
| 186 | if (pn >= mp->npatches) | 
| 187 | return(0); | 
| 188 | pp = &mp->patch[pn]; | 
| 189 | ti &= 0x3ff; | 
| 190 | if (!(ti & 0x200)) {            /* local triangle */ | 
| 191 | struct PTri     *tp; | 
| 192 | if (ti >= pp->ntris) | 
| 193 | return(0); | 
| 194 | tp = &pp->tri[ti]; | 
| 195 | tvid[0] = tvid[1] = tvid[2] = pn << 8; | 
| 196 | tvid[0] |= tp->v1; | 
| 197 | tvid[1] |= tp->v2; | 
| 198 | tvid[2] |= tp->v3; | 
| 199 | if (pp->trimat != NULL) | 
| 200 | *mo = pp->trimat[ti]; | 
| 201 | else | 
| 202 | *mo = pp->solemat; | 
| 203 | if (*mo != OVOID) | 
| 204 | *mo += mp->mat0; | 
| 205 | return(1); | 
| 206 | } | 
| 207 | ti &= ~0x200; | 
| 208 | if (!(ti & 0x100)) {            /* single link vertex */ | 
| 209 | struct PJoin1   *tp1; | 
| 210 | if (ti >= pp->nj1tris) | 
| 211 | return(0); | 
| 212 | tp1 = &pp->j1tri[ti]; | 
| 213 | tvid[0] = tp1->v1j; | 
| 214 | tvid[1] = tvid[2] = pn << 8; | 
| 215 | tvid[1] |= tp1->v2; | 
| 216 | tvid[2] |= tp1->v3; | 
| 217 | if ((*mo = tp1->mat) != OVOID) | 
| 218 | *mo += mp->mat0; | 
| 219 | return(1); | 
| 220 | } | 
| 221 | ti &= ~0x100; | 
| 222 | {                               /* double link vertex */ | 
| 223 | struct PJoin2   *tp2; | 
| 224 | if (ti >= pp->nj2tris) | 
| 225 | return(0); | 
| 226 | tp2 = &pp->j2tri[ti]; | 
| 227 | tvid[0] = tp2->v1j; | 
| 228 | tvid[1] = tp2->v2j; | 
| 229 | tvid[2] = pn << 8 | tp2->v3; | 
| 230 | if ((*mo = tp2->mat) != OVOID) | 
| 231 | *mo += mp->mat0; | 
| 232 | } | 
| 233 | return(1); | 
| 234 | } | 
| 235 |  | 
| 236 |  | 
| 237 | int | 
| 238 | getmeshvert(                            /* get triangle vertex from ID */ | 
| 239 | MESHVERT        *vp, | 
| 240 | MESH            *mp, | 
| 241 | int32           vid, | 
| 242 | int             what | 
| 243 | ) | 
| 244 | { | 
| 245 | int             pn = vid >> 8; | 
| 246 | MESHPATCH       *pp; | 
| 247 | double          vres; | 
| 248 | int     i; | 
| 249 |  | 
| 250 | vp->fl = 0; | 
| 251 | if (pn >= mp->npatches) | 
| 252 | return(0); | 
| 253 | pp = &mp->patch[pn]; | 
| 254 | vid &= 0xff; | 
| 255 | if (vid >= pp->nverts) | 
| 256 | return(0); | 
| 257 | /* get location */ | 
| 258 | if (what & MT_V) { | 
| 259 | vres = (1./4294967296.)*mp->mcube.cusize; | 
| 260 | for (i = 0; i < 3; i++) | 
| 261 | vp->v[i] = mp->mcube.cuorg[i] + | 
| 262 | (pp->xyz[vid][i] + .5)*vres; | 
| 263 | vp->fl |= MT_V; | 
| 264 | } | 
| 265 | /* get normal */ | 
| 266 | if (what & MT_N && pp->norm != NULL && pp->norm[vid]) { | 
| 267 | decodedir(vp->n, pp->norm[vid]); | 
| 268 | vp->fl |= MT_N; | 
| 269 | } | 
| 270 | /* get (u,v) */ | 
| 271 | if (what & MT_UV && pp->uv != NULL && pp->uv[vid][0]) { | 
| 272 | for (i = 0; i < 2; i++) | 
| 273 | vp->uv[i] = mp->uvlim[0][i] + | 
| 274 | (mp->uvlim[1][i] - mp->uvlim[0][i])* | 
| 275 | (pp->uv[vid][i] + .5)*(1./4294967296.); | 
| 276 | vp->fl |= MT_UV; | 
| 277 | } | 
| 278 | return(vp->fl); | 
| 279 | } | 
| 280 |  | 
| 281 |  | 
| 282 | OBJREC * | 
| 283 | getmeshpseudo(                  /* get mesh pseudo object for material */ | 
| 284 | MESH    *mp, | 
| 285 | OBJECT  mo | 
| 286 | ) | 
| 287 | { | 
| 288 | if ((mo < mp->mat0) | (mo >= mp->mat0 + mp->nmats)) | 
| 289 | error(INTERNAL, "modifier out of range in getmeshpseudo"); | 
| 290 | if (mp->pseudo == NULL) { | 
| 291 | int     i; | 
| 292 | mp->pseudo = (OBJREC *)calloc(mp->nmats, sizeof(OBJREC)); | 
| 293 | if (mp->pseudo == NULL) | 
| 294 | error(SYSTEM, "out of memory in getmeshpseudo"); | 
| 295 | for (i = mp->nmats; i--; ) { | 
| 296 | mp->pseudo[i].omod = mp->mat0 + i; | 
| 297 | mp->pseudo[i].otype = OBJ_FACE; | 
| 298 | mp->pseudo[i].oname = "M-Tri"; | 
| 299 | } | 
| 300 | } | 
| 301 | return(&mp->pseudo[mo - mp->mat0]); | 
| 302 | } | 
| 303 |  | 
| 304 |  | 
| 305 | int | 
| 306 | getmeshtri(                     /* get triangle vertices */ | 
| 307 | MESHVERT        tv[3], | 
| 308 | OBJECT          *mo, | 
| 309 | MESH            *mp, | 
| 310 | OBJECT          ti, | 
| 311 | int             wha | 
| 312 | ) | 
| 313 | { | 
| 314 | int32   tvid[3]; | 
| 315 |  | 
| 316 | if (!getmeshtrivid(tvid, mo, mp, ti)) | 
| 317 | return(0); | 
| 318 |  | 
| 319 | getmeshvert(&tv[0], mp, tvid[0], wha); | 
| 320 | getmeshvert(&tv[1], mp, tvid[1], wha); | 
| 321 | getmeshvert(&tv[2], mp, tvid[2], wha); | 
| 322 |  | 
| 323 | return(tv[0].fl & tv[1].fl & tv[2].fl); | 
| 324 | } | 
| 325 |  | 
| 326 |  | 
| 327 | int32 | 
| 328 | addmeshvert(                    /* find/add a mesh vertex */ | 
| 329 | MESH            *mp, | 
| 330 | MESHVERT        *vp | 
| 331 | ) | 
| 332 | { | 
| 333 | LUENT   *lvp; | 
| 334 | MCVERT  cv; | 
| 335 | int     i; | 
| 336 |  | 
| 337 | if (!(vp->fl & MT_V)) | 
| 338 | return(-1); | 
| 339 | /* encode vertex */ | 
| 340 | for (i = 0; i < 3; i++) { | 
| 341 | if (vp->v[i] < mp->mcube.cuorg[i]) | 
| 342 | return(-1); | 
| 343 | if (vp->v[i] >= mp->mcube.cuorg[i] + mp->mcube.cusize) | 
| 344 | return(-1); | 
| 345 | cv.xyz[i] = (uint32)(4294967296. * | 
| 346 | (vp->v[i] - mp->mcube.cuorg[i]) / | 
| 347 | mp->mcube.cusize); | 
| 348 | } | 
| 349 | if (vp->fl & MT_N)              /* assumes normalized! */ | 
| 350 | cv.norm = encodedir(vp->n); | 
| 351 | if (vp->fl & MT_UV) | 
| 352 | for (i = 0; i < 2; i++) { | 
| 353 | if (vp->uv[i] <= mp->uvlim[0][i]) | 
| 354 | return(-1); | 
| 355 | if (vp->uv[i] >= mp->uvlim[1][i]) | 
| 356 | return(-1); | 
| 357 | cv.uv[i] = (uint32)(4294967296. * | 
| 358 | (vp->uv[i] - mp->uvlim[0][i]) / | 
| 359 | (mp->uvlim[1][i] - mp->uvlim[0][i])); | 
| 360 | } | 
| 361 | cv.fl = vp->fl; | 
| 362 | if (mp->lut.tsiz == 0) { | 
| 363 | mp->lut.hashf = cvhash; | 
| 364 | mp->lut.keycmp = cvcmp; | 
| 365 | mp->lut.freek = free; | 
| 366 | if (!lu_init(&mp->lut, 50000)) | 
| 367 | goto nomem; | 
| 368 | } | 
| 369 | /* find entry */ | 
| 370 | lvp = lu_find(&mp->lut, (char *)&cv); | 
| 371 | if (lvp == NULL) | 
| 372 | goto nomem; | 
| 373 | if (lvp->key == NULL) { | 
| 374 | lvp->key = (char *)malloc(sizeof(MCVERT)+sizeof(int32)); | 
| 375 | memcpy(lvp->key, &cv, sizeof(MCVERT)); | 
| 376 | } | 
| 377 | if (lvp->data == NULL) {        /* new vertex */ | 
| 378 | MESHPATCH       *pp; | 
| 379 | if (mp->npatches <= 0) { | 
| 380 | mp->patch = (MESHPATCH *)calloc(MPATCHBLKSIZ, | 
| 381 | sizeof(MESHPATCH)); | 
| 382 | if (mp->patch == NULL) | 
| 383 | goto nomem; | 
| 384 | mp->npatches = 1; | 
| 385 | } else if (mp->patch[mp->npatches-1].nverts >= 256) { | 
| 386 | if (mp->npatches >= 1L<<22) | 
| 387 | error(INTERNAL, "too many mesh patches"); | 
| 388 | if (mp->npatches % MPATCHBLKSIZ == 0) { | 
| 389 | mp->patch = (MESHPATCH *)realloc(mp->patch, | 
| 390 | (mp->npatches + MPATCHBLKSIZ)* | 
| 391 | sizeof(MESHPATCH)); | 
| 392 | memset((mp->patch + mp->npatches), '\0', | 
| 393 | MPATCHBLKSIZ*sizeof(MESHPATCH)); | 
| 394 | } | 
| 395 | mp->npatches++; | 
| 396 | } | 
| 397 | pp = &mp->patch[mp->npatches-1]; | 
| 398 | if (pp->xyz == NULL) { | 
| 399 | pp->xyz = (uint32 (*)[3])calloc(256, 3*sizeof(int32)); | 
| 400 | if (pp->xyz == NULL) | 
| 401 | goto nomem; | 
| 402 | } | 
| 403 | for (i = 0; i < 3; i++) | 
| 404 | pp->xyz[pp->nverts][i] = cv.xyz[i]; | 
| 405 | if (cv.fl & MT_N) { | 
| 406 | if (pp->norm == NULL) { | 
| 407 | pp->norm = (int32 *)calloc(256, sizeof(int32)); | 
| 408 | if (pp->norm == NULL) | 
| 409 | goto nomem; | 
| 410 | } | 
| 411 | pp->norm[pp->nverts] = cv.norm; | 
| 412 | } | 
| 413 | if (cv.fl & MT_UV) { | 
| 414 | if (pp->uv == NULL) { | 
| 415 | pp->uv = (uint32 (*)[2])calloc(256, | 
| 416 | 2*sizeof(uint32)); | 
| 417 | if (pp->uv == NULL) | 
| 418 | goto nomem; | 
| 419 | } | 
| 420 | for (i = 0; i < 2; i++) | 
| 421 | pp->uv[pp->nverts][i] = cv.uv[i]; | 
| 422 | } | 
| 423 | pp->nverts++; | 
| 424 | lvp->data = lvp->key + sizeof(MCVERT); | 
| 425 | *(int32 *)lvp->data = (mp->npatches-1) << 8 | (pp->nverts-1); | 
| 426 | } | 
| 427 | return(*(int32 *)lvp->data); | 
| 428 | nomem: | 
| 429 | error(SYSTEM, "out of memory in addmeshvert"); | 
| 430 | return(-1); | 
| 431 | } | 
| 432 |  | 
| 433 |  | 
| 434 | OBJECT | 
| 435 | addmeshtri(                     /* add a new mesh triangle */ | 
| 436 | MESH            *mp, | 
| 437 | MESHVERT        tv[3], | 
| 438 | OBJECT          mo | 
| 439 | ) | 
| 440 | { | 
| 441 | int32           vid[3], t; | 
| 442 | int             pn[3], i; | 
| 443 | MESHPATCH       *pp; | 
| 444 |  | 
| 445 | if (!(tv[0].fl & tv[1].fl & tv[2].fl & MT_V)) | 
| 446 | return(OVOID); | 
| 447 | /* find/allocate patch vertices */ | 
| 448 | for (i = 0; i < 3; i++) { | 
| 449 | if ((vid[i] = addmeshvert(mp, &tv[i])) < 0) | 
| 450 | return(OVOID); | 
| 451 | pn[i] = vid[i] >> 8; | 
| 452 | } | 
| 453 | /* normalize material index */ | 
| 454 | if (mo != OVOID) { | 
| 455 | if ((mo -= mp->mat0) >= mp->nmats) | 
| 456 | mp->nmats = mo+1; | 
| 457 | else if (mo < 0) | 
| 458 | error(INTERNAL, "modifier range error in addmeshtri"); | 
| 459 | } | 
| 460 | /* assign triangle */ | 
| 461 | if ((pn[0] == pn[1]) & (pn[1] == pn[2])) {      /* local case */ | 
| 462 | pp = &mp->patch[pn[0]]; | 
| 463 | if (pp->tri == NULL) { | 
| 464 | pp->tri = (struct PTri *)malloc( | 
| 465 | 512*sizeof(struct PTri)); | 
| 466 | if (pp->tri == NULL) | 
| 467 | goto nomem; | 
| 468 | } | 
| 469 | if (pp->ntris < 512) { | 
| 470 | pp->tri[pp->ntris].v1 = vid[0] & 0xff; | 
| 471 | pp->tri[pp->ntris].v2 = vid[1] & 0xff; | 
| 472 | pp->tri[pp->ntris].v3 = vid[2] & 0xff; | 
| 473 | if (pp->ntris == 0) | 
| 474 | pp->solemat = mo; | 
| 475 | else if (pp->trimat == NULL && mo != pp->solemat) { | 
| 476 | pp->trimat = (int16 *)malloc( | 
| 477 | 512*sizeof(int16)); | 
| 478 | if (pp->trimat == NULL) | 
| 479 | goto nomem; | 
| 480 | for (i = pp->ntris; i--; ) | 
| 481 | pp->trimat[i] = pp->solemat; | 
| 482 | } | 
| 483 | if (pp->trimat != NULL) | 
| 484 | pp->trimat[pp->ntris] = mo; | 
| 485 | return(pn[0] << 10 | pp->ntris++); | 
| 486 | } | 
| 487 | } else if (pn[0] == pn[1]) { | 
| 488 | t = vid[2]; vid[2] = vid[1]; vid[1] = vid[0]; vid[0] = t; | 
| 489 | i = pn[2]; pn[2] = pn[1]; pn[1] = pn[0]; pn[0] = i; | 
| 490 | } else if (pn[0] == pn[2]) { | 
| 491 | t = vid[0]; vid[0] = vid[1]; vid[1] = vid[2]; vid[2] = t; | 
| 492 | i = pn[0]; pn[0] = pn[1]; pn[1] = pn[2]; pn[2] = i; | 
| 493 | } | 
| 494 | if (pn[1] == pn[2]) {                   /* single link */ | 
| 495 | pp = &mp->patch[pn[1]]; | 
| 496 | if (pp->j1tri == NULL) { | 
| 497 | pp->j1tri = (struct PJoin1 *)malloc( | 
| 498 | 256*sizeof(struct PJoin1)); | 
| 499 | if (pp->j1tri == NULL) | 
| 500 | goto nomem; | 
| 501 | } | 
| 502 | if (pp->nj1tris < 256) { | 
| 503 | pp->j1tri[pp->nj1tris].v1j = vid[0]; | 
| 504 | pp->j1tri[pp->nj1tris].v2 = vid[1] & 0xff; | 
| 505 | pp->j1tri[pp->nj1tris].v3 = vid[2] & 0xff; | 
| 506 | pp->j1tri[pp->nj1tris].mat = mo; | 
| 507 | return(pn[1] << 10 | 0x200 | pp->nj1tris++); | 
| 508 | } | 
| 509 | } | 
| 510 | /* double link */ | 
| 511 | pp = &mp->patch[pn[i=0]]; | 
| 512 | if (mp->patch[pn[1]].nj2tris < pp->nj2tris) | 
| 513 | pp = &mp->patch[pn[i=1]]; | 
| 514 | if (mp->patch[pn[2]].nj2tris < pp->nj2tris) | 
| 515 | pp = &mp->patch[pn[i=2]]; | 
| 516 | if (pp->nj2tris >= 256) | 
| 517 | error(INTERNAL, "too many patch triangles in addmeshtri"); | 
| 518 | if (pp->j2tri == NULL) { | 
| 519 | pp->j2tri = (struct PJoin2 *)malloc( | 
| 520 | 256*sizeof(struct PJoin2)); | 
| 521 | if (pp->j2tri == NULL) | 
| 522 | goto nomem; | 
| 523 | } | 
| 524 | pp->j2tri[pp->nj2tris].mat = mo; | 
| 525 | switch (i) { | 
| 526 | case 0: | 
| 527 | pp->j2tri[pp->nj2tris].v3 = vid[0] & 0xff; | 
| 528 | pp->j2tri[pp->nj2tris].v1j = vid[1]; | 
| 529 | pp->j2tri[pp->nj2tris].v2j = vid[2]; | 
| 530 | return(pn[0] << 10 | 0x300 | pp->nj2tris++); | 
| 531 | case 1: | 
| 532 | pp->j2tri[pp->nj2tris].v2j = vid[0]; | 
| 533 | pp->j2tri[pp->nj2tris].v3 = vid[1] & 0xff; | 
| 534 | pp->j2tri[pp->nj2tris].v1j = vid[2]; | 
| 535 | return(pn[1] << 10 | 0x300 | pp->nj2tris++); | 
| 536 | case 2: | 
| 537 | pp->j2tri[pp->nj2tris].v1j = vid[0]; | 
| 538 | pp->j2tri[pp->nj2tris].v2j = vid[1]; | 
| 539 | pp->j2tri[pp->nj2tris].v3 = vid[2] & 0xff; | 
| 540 | return(pn[2] << 10 | 0x300 | pp->nj2tris++); | 
| 541 | } | 
| 542 | nomem: | 
| 543 | error(SYSTEM, "out of memory in addmeshtri"); | 
| 544 | return(OVOID); | 
| 545 | } | 
| 546 |  | 
| 547 |  | 
| 548 | char * | 
| 549 | checkmesh(MESH *mp)                     /* validate mesh data */ | 
| 550 | { | 
| 551 | static char     embuf[128]; | 
| 552 | int             nouvbounds = 1; | 
| 553 | int             i; | 
| 554 | /* basic checks */ | 
| 555 | if (mp == NULL) | 
| 556 | return("NULL mesh pointer"); | 
| 557 | if (!mp->ldflags) | 
| 558 | return("unassigned mesh"); | 
| 559 | if (mp->name == NULL) | 
| 560 | return("missing mesh name"); | 
| 561 | if (mp->nref <= 0) | 
| 562 | return("unreferenced mesh"); | 
| 563 | /* check boundaries */ | 
| 564 | if (mp->ldflags & IO_BOUNDS) { | 
| 565 | if (mp->mcube.cusize <= FTINY) | 
| 566 | return("illegal octree bounds in mesh"); | 
| 567 | nouvbounds = (mp->uvlim[1][0] - mp->uvlim[0][0] <= FTINY || | 
| 568 | mp->uvlim[1][1] - mp->uvlim[0][1] <= FTINY); | 
| 569 | } | 
| 570 | /* check octree */ | 
| 571 | if (mp->ldflags & IO_TREE) { | 
| 572 | if (isempty(mp->mcube.cutree)) | 
| 573 | error(WARNING, "empty mesh octree"); | 
| 574 | } | 
| 575 | /* check scene data */ | 
| 576 | if (mp->ldflags & IO_SCENE) { | 
| 577 | if (!(mp->ldflags & IO_BOUNDS)) | 
| 578 | return("unbounded scene in mesh"); | 
| 579 | if (mp->mat0 < 0 || mp->mat0+mp->nmats > nobjects) | 
| 580 | return("bad mesh modifier range"); | 
| 581 | if (mp->nmats > 0)      /* allocate during preload_objs()! */ | 
| 582 | getmeshpseudo(mp, mp->mat0); | 
| 583 | for (i = mp->mat0+mp->nmats; i-- > mp->mat0; ) { | 
| 584 | int     otyp = objptr(i)->otype; | 
| 585 | if (!ismodifier(otyp)) { | 
| 586 | sprintf(embuf, | 
| 587 | "non-modifier in mesh (%s \"%s\")", | 
| 588 | ofun[otyp].funame, objptr(i)->oname); | 
| 589 | return(embuf); | 
| 590 | } | 
| 591 | } | 
| 592 | if (mp->npatches <= 0) | 
| 593 | error(WARNING, "no patches in mesh"); | 
| 594 | for (i = 0; i < mp->npatches; i++) { | 
| 595 | MESHPATCH       *pp = &mp->patch[i]; | 
| 596 | if (pp->nverts <= 0) | 
| 597 | error(WARNING, "no vertices in patch"); | 
| 598 | else { | 
| 599 | if (pp->xyz == NULL) | 
| 600 | return("missing patch vertex list"); | 
| 601 | if (nouvbounds && pp->uv != NULL) | 
| 602 | return("unreferenced uv coordinates"); | 
| 603 | } | 
| 604 | if (pp->ntris > 0 && pp->tri == NULL) | 
| 605 | return("missing patch triangle list"); | 
| 606 | if (pp->nj1tris > 0 && pp->j1tri == NULL) | 
| 607 | return("missing patch joiner triangle list"); | 
| 608 | if (pp->nj2tris > 0 && pp->j2tri == NULL) | 
| 609 | return("missing patch double-joiner list"); | 
| 610 | } | 
| 611 | } | 
| 612 | return(NULL);                   /* seems OK */ | 
| 613 | } | 
| 614 |  | 
| 615 |  | 
| 616 | static void | 
| 617 | tallyoctree(                    /* tally octree size */ | 
| 618 | OCTREE  ot, | 
| 619 | int     *ecp, | 
| 620 | int     *lcp, | 
| 621 | int     *ocp | 
| 622 | ) | 
| 623 | { | 
| 624 | int     i; | 
| 625 |  | 
| 626 | if (isempty(ot)) { | 
| 627 | (*ecp)++; | 
| 628 | return; | 
| 629 | } | 
| 630 | if (isfull(ot)) { | 
| 631 | OBJECT  oset[MAXSET+1]; | 
| 632 | (*lcp)++; | 
| 633 | objset(oset, ot); | 
| 634 | *ocp += oset[0]; | 
| 635 | return; | 
| 636 | } | 
| 637 | for (i = 0; i < 8; i++) | 
| 638 | tallyoctree(octkid(ot, i), ecp, lcp, ocp); | 
| 639 | } | 
| 640 |  | 
| 641 |  | 
| 642 | void | 
| 643 | printmeshstats(                 /* print out mesh statistics */ | 
| 644 | MESH    *ms, | 
| 645 | FILE    *fp | 
| 646 | ) | 
| 647 | { | 
| 648 | int     lfcnt=0, lecnt=0, locnt=0; | 
| 649 | int     vcnt=0, ncnt=0, uvcnt=0; | 
| 650 | int     nscnt=0, uvscnt=0; | 
| 651 | int     tcnt=0, t1cnt=0, t2cnt=0; | 
| 652 | int     i, j; | 
| 653 |  | 
| 654 | tallyoctree(ms->mcube.cutree, &lecnt, &lfcnt, &locnt); | 
| 655 | for (i = 0; i < ms->npatches; i++) { | 
| 656 | MESHPATCH       *pp = &ms->patch[i]; | 
| 657 | vcnt += pp->nverts; | 
| 658 | if (pp->norm != NULL) { | 
| 659 | for (j = pp->nverts; j--; ) | 
| 660 | if (pp->norm[j]) | 
| 661 | ncnt++; | 
| 662 | nscnt += pp->nverts; | 
| 663 | } | 
| 664 | if (pp->uv != NULL) { | 
| 665 | for (j = pp->nverts; j--; ) | 
| 666 | if (pp->uv[j][0]) | 
| 667 | uvcnt++; | 
| 668 | uvscnt += pp->nverts; | 
| 669 | } | 
| 670 | tcnt += pp->ntris; | 
| 671 | t1cnt += pp->nj1tris; | 
| 672 | t2cnt += pp->nj2tris; | 
| 673 | } | 
| 674 | fprintf(fp, "Mesh statistics:\n"); | 
| 675 | fprintf(fp, "\t%ld materials\n", (long)ms->nmats); | 
| 676 | fprintf(fp, "\t%d patches (%.2f MBytes)\n", ms->npatches, | 
| 677 | (ms->npatches*sizeof(MESHPATCH) + | 
| 678 | vcnt*3*sizeof(uint32) + | 
| 679 | nscnt*sizeof(int32) + | 
| 680 | uvscnt*2*sizeof(uint32) + | 
| 681 | tcnt*sizeof(struct PTri) + | 
| 682 | t1cnt*sizeof(struct PJoin1) + | 
| 683 | t2cnt*sizeof(struct PJoin2))/(1024.*1024.)); | 
| 684 | fprintf(fp, "\t%d vertices (%.1f%% w/ normals, %.1f%% w/ uv)\n", | 
| 685 | vcnt, 100.*ncnt/vcnt, 100.*uvcnt/vcnt); | 
| 686 | fprintf(fp, "\t%d triangles (%.1f%% local, %.1f%% joiner)\n", | 
| 687 | tcnt+t1cnt+t2cnt, | 
| 688 | 100.*tcnt/(tcnt+t1cnt+t2cnt), | 
| 689 | 100.*t1cnt/(tcnt+t1cnt+t2cnt)); | 
| 690 | fprintf(fp, | 
| 691 | "\t%d leaves in octree (%.1f%% empty, %.2f avg. set size)\n", | 
| 692 | lfcnt+lecnt, 100.*lecnt/(lfcnt+lecnt), | 
| 693 | (double)locnt/lfcnt); | 
| 694 | } | 
| 695 |  | 
| 696 |  | 
| 697 | void | 
| 698 | freemesh(MESH *ms)              /* free mesh data */ | 
| 699 | { | 
| 700 | MESH    mhead; | 
| 701 | MESH    *msp; | 
| 702 |  | 
| 703 | if (ms == NULL) | 
| 704 | return; | 
| 705 | if (ms->nref <= 0) | 
| 706 | error(CONSISTENCY, "unreferenced mesh in freemesh"); | 
| 707 | ms->nref--; | 
| 708 | if (ms->nref)           /* still in use */ | 
| 709 | return; | 
| 710 | /* else remove from list */ | 
| 711 | mhead.next = mlist; | 
| 712 | for (msp = &mhead; msp->next != NULL; msp = msp->next) | 
| 713 | if (msp->next == ms) { | 
| 714 | msp->next = ms->next; | 
| 715 | ms->next = NULL; | 
| 716 | break; | 
| 717 | } | 
| 718 | if (ms->next != NULL)   /* can't be in list anymore */ | 
| 719 | error(CONSISTENCY, "unlisted mesh in freemesh"); | 
| 720 | mlist = mhead.next; | 
| 721 | /* free mesh data */ | 
| 722 | freestr(ms->name); | 
| 723 | octfree(ms->mcube.cutree); | 
| 724 | lu_done(&ms->lut); | 
| 725 | if (ms->npatches > 0) { | 
| 726 | MESHPATCH       *pp = ms->patch + ms->npatches; | 
| 727 | while (pp-- > ms->patch) { | 
| 728 | if (pp->j2tri != NULL) | 
| 729 | free(pp->j2tri); | 
| 730 | if (pp->j1tri != NULL) | 
| 731 | free(pp->j1tri); | 
| 732 | if (pp->tri != NULL) | 
| 733 | free(pp->tri); | 
| 734 | if (pp->uv != NULL) | 
| 735 | free(pp->uv); | 
| 736 | if (pp->norm != NULL) | 
| 737 | free(pp->norm); | 
| 738 | if (pp->xyz != NULL) | 
| 739 | free(pp->xyz); | 
| 740 | if (pp->trimat != NULL) | 
| 741 | free(pp->trimat); | 
| 742 | } | 
| 743 | free(ms->patch); | 
| 744 | } | 
| 745 | if (ms->pseudo != NULL) | 
| 746 | free(ms->pseudo); | 
| 747 | free(ms); | 
| 748 | } | 
| 749 |  | 
| 750 |  | 
| 751 | void | 
| 752 | freemeshinst(OBJREC *o)         /* free mesh instance */ | 
| 753 | { | 
| 754 | if (o->os == NULL) | 
| 755 | return; | 
| 756 | freemesh((*(MESHINST *)o->os).msh); | 
| 757 | free(o->os); | 
| 758 | o->os = NULL; | 
| 759 | } |