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#include <string.h> |
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#include "standard.h" |
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#include "rtio.h" |
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#include "rtmath.h" |
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#include "rterror.h" |
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#include "paths.h" |
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#include "octree.h" |
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#include "object.h" |
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#include "otypes.h" |
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static MESH *mlist = NULL; /* list of loaded meshes */ |
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static lut_keycmpf_t cvcmp; |
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static lut_hashf_t cvhash; |
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static unsigned long |
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cvhash(cvp) /* hash an encoded vertex */ |
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MCVERT *cvp; |
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cvhash(p) /* hash an encoded vertex */ |
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//MCVERT *cvp; |
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const void *p; |
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{ |
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const MCVERT *cvp = (const MCVERT *)p; |
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unsigned long hval; |
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if (!(cvp->fl & MT_V)) |
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static int |
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cvcmp(v1, v2) /* compare encoded vertices */ |
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register MCVERT *v1, *v2; |
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cvcmp(vv1, vv2) /* compare encoded vertices */ |
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//register MCVERT *v1, *v2; |
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const void *vv1, *vv2; |
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{ |
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const MCVERT *v1 = vv1, *v2 = vv2; |
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if (v1->fl != v2->fl) |
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return(1); |
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if (v1->xyz[0] != v2->xyz[0]) |
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MESH * |
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getmesh(mname, flags) /* get mesh data */ |
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getmesh(mname, flags) /* get new mesh data reference */ |
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char *mname; |
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int flags; |
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{ |
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flags &= IO_LEGAL; |
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for (ms = mlist; ms != NULL; ms = ms->next) |
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if (!strcmp(mname, ms->name)) { |
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if ((ms->ldflags & flags) == flags) { |
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ms->nref++; |
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return(ms); /* loaded */ |
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} |
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break; /* load the rest */ |
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ms->nref++; /* increase reference count */ |
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break; |
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} |
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if (ms == NULL) { |
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if (ms == NULL) { /* load first time */ |
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ms = (MESH *)calloc(1, sizeof(MESH)); |
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if (ms == NULL) |
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error(SYSTEM, "out of memory in getmesh"); |
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ins->msh = NULL; |
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o->os = (char *)ins; |
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} |
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if (ins->msh == NULL || (ins->msh->ldflags & flags) != flags) |
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if (ins->msh == NULL) |
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ins->msh = getmesh(o->oargs.sarg[0], flags); |
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else if ((flags &= ~ins->msh->ldflags)) |
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readmesh(ins->msh, |
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getpath(o->oargs.sarg[0], getrlibpath(), R_OK), |
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flags); |
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return(ins); |
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} |
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(vp->v[i] - mp->mcube.cuorg[i]) / |
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mp->mcube.cusize); |
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} |
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if (vp->fl & MT_N) |
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if (vp->fl & MT_N) /* assumes normalized! */ |
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cv.norm = encodedir(vp->n); |
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if (vp->fl & MT_UV) |
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for (i = 0; i < 2; i++) { |
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pn[i] = vid[i] >> 8; |
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} |
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/* normalize material index */ |
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if (mo != OVOID) |
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if (mo != OVOID) { |
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if ((mo -= mp->mat0) >= mp->nmats) |
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mp->nmats = mo+1; |
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else if (mo < 0) |
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error(INTERNAL, "modifier range error in addmeshtri"); |
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} |
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/* assign triangle */ |
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if (pn[0] == pn[1] && pn[1] == pn[2]) { /* local case */ |
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pp = &mp->patch[pn[0]]; |
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if (nouvbounds && pp->uv != NULL) |
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return("unreferenced uv coordinates"); |
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} |
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if (pp->ntris + pp->nj1tris + pp->nj2tris <= 0) |
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error(WARNING, "no triangles in patch"); |
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if (pp->ntris > 0 && pp->tri == NULL) |
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return("missing patch triangle list"); |
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if (pp->nj1tris > 0 && pp->j1tri == NULL) |
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t2cnt += pp->nj2tris; |
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} |
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fprintf(fp, "Mesh statistics:\n"); |
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fprintf(fp, "\t%d materials\n", ms->nmats); |
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fprintf(fp, "\t%ld materials\n", ms->nmats); |
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fprintf(fp, "\t%d patches (%.2f MBytes)\n", ms->npatches, |
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(ms->npatches*sizeof(MESHPATCH) + |
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vcnt*3*sizeof(uint32) + |