| 1 |
greg |
2.4 |
/* Copyright (c) 1992 Regents of the University of California */ |
| 2 |
greg |
1.1 |
|
| 3 |
|
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#ifndef lint |
| 4 |
|
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static char SCCSid[] = "$SunId$ LBL"; |
| 5 |
|
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#endif |
| 6 |
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| 7 |
|
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/* |
| 8 |
|
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* source.c - routines dealing with illumination sources. |
| 9 |
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* |
| 10 |
|
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* 8/20/85 |
| 11 |
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*/ |
| 12 |
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| 13 |
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#include "ray.h" |
| 14 |
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| 15 |
greg |
1.4 |
#include "octree.h" |
| 16 |
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| 17 |
greg |
1.1 |
#include "otypes.h" |
| 18 |
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| 19 |
greg |
1.35 |
#include "source.h" |
| 20 |
greg |
1.1 |
|
| 21 |
greg |
1.35 |
/* |
| 22 |
|
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* Structures used by direct() |
| 23 |
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*/ |
| 24 |
greg |
1.1 |
|
| 25 |
greg |
1.35 |
typedef struct { |
| 26 |
greg |
1.45 |
int sno; /* source number */ |
| 27 |
greg |
1.35 |
FVECT dir; /* source direction */ |
| 28 |
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COLOR coef; /* material coefficient */ |
| 29 |
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COLOR val; /* contribution */ |
| 30 |
|
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} CONTRIB; /* direct contribution */ |
| 31 |
greg |
1.1 |
|
| 32 |
greg |
1.35 |
typedef struct { |
| 33 |
greg |
1.45 |
int sndx; /* source index (to CONTRIB array) */ |
| 34 |
greg |
1.35 |
float brt; /* brightness (for comparison) */ |
| 35 |
|
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} CNTPTR; /* contribution pointer */ |
| 36 |
greg |
1.1 |
|
| 37 |
greg |
1.25 |
static CONTRIB *srccnt; /* source contributions in direct() */ |
| 38 |
|
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static CNTPTR *cntord; /* source ordering in direct() */ |
| 39 |
greg |
1.45 |
static int maxcntr = 0; /* size of contribution arrays */ |
| 40 |
greg |
1.1 |
|
| 41 |
greg |
1.25 |
|
| 42 |
greg |
1.1 |
marksources() /* find and mark source objects */ |
| 43 |
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{ |
| 44 |
greg |
2.3 |
int foundsource = 0; |
| 45 |
greg |
1.33 |
int i; |
| 46 |
greg |
1.1 |
register OBJREC *o, *m; |
| 47 |
greg |
1.36 |
register int ns; |
| 48 |
greg |
1.35 |
/* initialize dispatch table */ |
| 49 |
|
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initstypes(); |
| 50 |
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/* find direct sources */ |
| 51 |
greg |
1.1 |
for (i = 0; i < nobjects; i++) { |
| 52 |
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| 53 |
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o = objptr(i); |
| 54 |
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| 55 |
greg |
1.35 |
if (!issurface(o->otype) || o->omod == OVOID) |
| 56 |
greg |
1.1 |
continue; |
| 57 |
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| 58 |
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m = objptr(o->omod); |
| 59 |
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| 60 |
greg |
1.24 |
if (!islight(m->otype)) |
| 61 |
greg |
1.1 |
continue; |
| 62 |
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|
| 63 |
greg |
1.6 |
if (m->oargs.nfargs != (m->otype == MAT_GLOW ? 4 : |
| 64 |
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m->otype == MAT_SPOT ? 7 : 3)) |
| 65 |
greg |
1.1 |
objerror(m, USER, "bad # arguments"); |
| 66 |
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| 67 |
greg |
1.6 |
if (m->otype == MAT_GLOW && |
| 68 |
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o->otype != OBJ_SOURCE && |
| 69 |
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m->oargs.farg[3] <= FTINY) |
| 70 |
greg |
1.1 |
continue; /* don't bother */ |
| 71 |
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| 72 |
greg |
1.35 |
if (sfun[o->otype].of == NULL || |
| 73 |
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sfun[o->otype].of->setsrc == NULL) |
| 74 |
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objerror(o, USER, "illegal material"); |
| 75 |
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| 76 |
greg |
1.36 |
if ((ns = newsource()) < 0) |
| 77 |
greg |
1.25 |
goto memerr; |
| 78 |
greg |
1.1 |
|
| 79 |
greg |
1.37 |
setsource(&source[ns], o); |
| 80 |
greg |
1.1 |
|
| 81 |
greg |
1.6 |
if (m->otype == MAT_GLOW) { |
| 82 |
greg |
1.36 |
source[ns].sflags |= SPROX; |
| 83 |
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source[ns].sl.prox = m->oargs.farg[3]; |
| 84 |
greg |
1.6 |
if (o->otype == OBJ_SOURCE) |
| 85 |
greg |
1.36 |
source[ns].sflags |= SSKIP; |
| 86 |
greg |
1.6 |
} else if (m->otype == MAT_SPOT) { |
| 87 |
greg |
1.36 |
source[ns].sflags |= SSPOT; |
| 88 |
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if ((source[ns].sl.s = makespot(m)) == NULL) |
| 89 |
greg |
1.33 |
goto memerr; |
| 90 |
greg |
1.38 |
if (source[ns].sflags & SFLAT && |
| 91 |
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!checkspot(source[ns].sl.s,source[ns].snorm)) { |
| 92 |
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objerror(o, WARNING, |
| 93 |
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"invalid spotlight direction"); |
| 94 |
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source[ns].sflags |= SSKIP; |
| 95 |
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} |
| 96 |
greg |
1.6 |
} |
| 97 |
greg |
2.3 |
if (!(source[ns].sflags & SSKIP)) |
| 98 |
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foundsource++; |
| 99 |
greg |
1.1 |
} |
| 100 |
greg |
2.3 |
if (!foundsource) { |
| 101 |
greg |
1.25 |
error(WARNING, "no light sources found"); |
| 102 |
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return; |
| 103 |
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} |
| 104 |
greg |
1.33 |
markvirtuals(); /* find and add virtual sources */ |
| 105 |
greg |
1.45 |
/* allocate our contribution arrays */ |
| 106 |
greg |
1.48 |
maxcntr = nsources + MAXSPART; /* start with this many */ |
| 107 |
greg |
1.45 |
srccnt = (CONTRIB *)malloc(maxcntr*sizeof(CONTRIB)); |
| 108 |
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cntord = (CNTPTR *)malloc(maxcntr*sizeof(CNTPTR)); |
| 109 |
greg |
1.48 |
if (srccnt == NULL | cntord == NULL) |
| 110 |
greg |
1.33 |
goto memerr; |
| 111 |
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return; |
| 112 |
greg |
1.25 |
memerr: |
| 113 |
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error(SYSTEM, "out of memory in marksources"); |
| 114 |
greg |
1.1 |
} |
| 115 |
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| 116 |
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| 117 |
greg |
1.45 |
srcray(sr, r, si) /* send a ray to a source, return domega */ |
| 118 |
greg |
1.1 |
register RAY *sr; /* returned source ray */ |
| 119 |
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RAY *r; /* ray which hit object */ |
| 120 |
greg |
1.45 |
SRCINDEX *si; /* source sample index */ |
| 121 |
greg |
1.1 |
{ |
| 122 |
greg |
1.45 |
double d; /* distance to source */ |
| 123 |
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register SRCREC *srcp; |
| 124 |
greg |
1.1 |
|
| 125 |
greg |
1.45 |
rayorigin(sr, r, SHADOW, 1.0); /* ignore limits */ |
| 126 |
greg |
1.1 |
|
| 127 |
greg |
1.47 |
while ((d = nextssamp(sr, si)) != 0.0) { |
| 128 |
greg |
1.45 |
sr->rsrc = si->sn; /* remember source */ |
| 129 |
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srcp = source + si->sn; |
| 130 |
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if (srcp->sflags & SDISTANT) { |
| 131 |
greg |
2.4 |
if (srcp->sflags & SSPOT && spotout(sr, srcp->sl.s, 1)) |
| 132 |
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continue; |
| 133 |
greg |
1.45 |
return(1); /* sample OK */ |
| 134 |
greg |
1.40 |
} |
| 135 |
greg |
1.45 |
/* local source */ |
| 136 |
greg |
1.6 |
/* check proximity */ |
| 137 |
greg |
1.45 |
if (srcp->sflags & SPROX && d > srcp->sl.prox) |
| 138 |
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continue; |
| 139 |
greg |
1.6 |
/* check angle */ |
| 140 |
greg |
1.45 |
if (srcp->sflags & SSPOT) { |
| 141 |
greg |
2.4 |
if (spotout(sr, srcp->sl.s, 0)) |
| 142 |
greg |
1.45 |
continue; |
| 143 |
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/* adjust solid angle */ |
| 144 |
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si->dom *= d*d; |
| 145 |
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d += srcp->sl.s->flen; |
| 146 |
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si->dom /= d*d; |
| 147 |
greg |
1.1 |
} |
| 148 |
greg |
1.45 |
return(1); /* sample OK */ |
| 149 |
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} |
| 150 |
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return(0); /* no more samples */ |
| 151 |
greg |
1.1 |
} |
| 152 |
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| 153 |
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| 154 |
greg |
1.35 |
srcvalue(r) /* punch ray to source and compute value */ |
| 155 |
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RAY *r; |
| 156 |
greg |
1.1 |
{ |
| 157 |
greg |
1.35 |
register SRCREC *sp; |
| 158 |
greg |
1.1 |
|
| 159 |
greg |
1.35 |
sp = &source[r->rsrc]; |
| 160 |
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if (sp->sflags & SVIRTUAL) { /* virtual source */ |
| 161 |
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/* check intersection */ |
| 162 |
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if (!(*ofun[sp->so->otype].funp)(sp->so, r)) |
| 163 |
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return; |
| 164 |
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raycont(r); /* compute contribution */ |
| 165 |
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return; |
| 166 |
greg |
1.1 |
} |
| 167 |
greg |
1.35 |
/* compute intersection */ |
| 168 |
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if (sp->sflags & SDISTANT ? sourcehit(r) : |
| 169 |
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(*ofun[sp->so->otype].funp)(sp->so, r)) { |
| 170 |
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if (sp->sa.success >= 0) |
| 171 |
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sp->sa.success++; |
| 172 |
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raycont(r); /* compute contribution */ |
| 173 |
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return; |
| 174 |
greg |
1.1 |
} |
| 175 |
greg |
1.35 |
if (sp->sa.success < 0) |
| 176 |
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return; /* bitched already */ |
| 177 |
|
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sp->sa.success -= AIMREQT; |
| 178 |
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if (sp->sa.success >= 0) |
| 179 |
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return; /* leniency */ |
| 180 |
|
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sprintf(errmsg, "aiming failure for light source \"%s\"", |
| 181 |
|
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sp->so->oname); |
| 182 |
|
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error(WARNING, errmsg); /* issue warning */ |
| 183 |
greg |
1.1 |
} |
| 184 |
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| 185 |
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| 186 |
greg |
2.5 |
sourcehit(r) /* check to see if ray hit distant source */ |
| 187 |
|
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register RAY *r; |
| 188 |
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{ |
| 189 |
|
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int first, last; |
| 190 |
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register int i; |
| 191 |
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| 192 |
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if (r->rsrc >= 0) { /* check only one if aimed */ |
| 193 |
|
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first = last = r->rsrc; |
| 194 |
|
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} else { /* otherwise check all */ |
| 195 |
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first = 0; last = nsources-1; |
| 196 |
|
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} |
| 197 |
|
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for (i = first; i <= last; i++) |
| 198 |
|
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if ((source[i].sflags & (SDISTANT|SVIRTUAL)) == SDISTANT) |
| 199 |
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/* |
| 200 |
|
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* Check to see if ray is within |
| 201 |
|
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* solid angle of source. |
| 202 |
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*/ |
| 203 |
|
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if (2.0*PI * (1.0 - DOT(source[i].sloc,r->rdir)) |
| 204 |
|
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<= source[i].ss2) { |
| 205 |
|
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r->ro = source[i].so; |
| 206 |
|
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if (!(source[i].sflags & SSKIP)) |
| 207 |
|
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break; |
| 208 |
|
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} |
| 209 |
|
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|
| 210 |
|
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if (r->ro != NULL) { |
| 211 |
|
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for (i = 0; i < 3; i++) |
| 212 |
|
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r->ron[i] = -r->rdir[i]; |
| 213 |
|
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r->rod = 1.0; |
| 214 |
|
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r->rox = NULL; |
| 215 |
|
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return(1); |
| 216 |
|
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} |
| 217 |
|
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return(0); |
| 218 |
|
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} |
| 219 |
|
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|
| 220 |
|
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|
| 221 |
greg |
1.4 |
static int |
| 222 |
|
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cntcmp(sc1, sc2) /* contribution compare (descending) */ |
| 223 |
greg |
1.9 |
register CNTPTR *sc1, *sc2; |
| 224 |
greg |
1.4 |
{ |
| 225 |
|
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if (sc1->brt > sc2->brt) |
| 226 |
|
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return(-1); |
| 227 |
|
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if (sc1->brt < sc2->brt) |
| 228 |
|
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return(1); |
| 229 |
|
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return(0); |
| 230 |
|
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} |
| 231 |
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| 232 |
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| 233 |
|
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direct(r, f, p) /* add direct component */ |
| 234 |
|
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RAY *r; /* ray that hit surface */ |
| 235 |
|
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int (*f)(); /* direct component coefficient function */ |
| 236 |
|
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char *p; /* data for f */ |
| 237 |
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{ |
| 238 |
greg |
1.42 |
extern int (*trace)(); |
| 239 |
greg |
1.4 |
register int sn; |
| 240 |
greg |
2.7 |
register CONTRIB *scp; |
| 241 |
greg |
1.45 |
SRCINDEX si; |
| 242 |
greg |
1.12 |
int nshadcheck, ncnts; |
| 243 |
greg |
1.29 |
int nhits; |
| 244 |
greg |
1.45 |
double prob, ourthresh, hwt; |
| 245 |
greg |
1.4 |
RAY sr; |
| 246 |
greg |
1.25 |
/* NOTE: srccnt and cntord global so no recursion */ |
| 247 |
greg |
1.22 |
if (nsources <= 0) |
| 248 |
greg |
1.25 |
return; /* no sources?! */ |
| 249 |
greg |
1.4 |
/* potential contributions */ |
| 250 |
greg |
1.45 |
initsrcindex(&si); |
| 251 |
|
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for (sn = 0; srcray(&sr, r, &si); sn++) { |
| 252 |
|
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if (sn >= maxcntr) { |
| 253 |
|
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maxcntr = sn + MAXSPART; |
| 254 |
|
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srccnt = (CONTRIB *)realloc((char *)srccnt, |
| 255 |
|
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maxcntr*sizeof(CONTRIB)); |
| 256 |
|
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cntord = (CNTPTR *)realloc((char *)cntord, |
| 257 |
|
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maxcntr*sizeof(CNTPTR)); |
| 258 |
greg |
1.48 |
if (srccnt == NULL | cntord == NULL) |
| 259 |
greg |
1.45 |
error(SYSTEM, "out of memory in direct"); |
| 260 |
|
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} |
| 261 |
|
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cntord[sn].sndx = sn; |
| 262 |
greg |
2.7 |
scp = srccnt + sn; |
| 263 |
|
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scp->sno = sr.rsrc; |
| 264 |
greg |
1.4 |
/* compute coefficient */ |
| 265 |
greg |
2.7 |
(*f)(scp->coef, p, sr.rdir, si.dom); |
| 266 |
|
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cntord[sn].brt = bright(scp->coef); |
| 267 |
greg |
1.15 |
if (cntord[sn].brt <= 0.0) |
| 268 |
greg |
1.4 |
continue; |
| 269 |
greg |
2.7 |
VCOPY(scp->dir, sr.rdir); |
| 270 |
greg |
1.35 |
/* compute potential */ |
| 271 |
|
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sr.revf = srcvalue; |
| 272 |
|
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rayvalue(&sr); |
| 273 |
greg |
2.7 |
copycolor(scp->val, sr.rcol); |
| 274 |
|
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multcolor(scp->val, scp->coef); |
| 275 |
|
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cntord[sn].brt = bright(scp->val); |
| 276 |
greg |
1.4 |
} |
| 277 |
|
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/* sort contributions */ |
| 278 |
greg |
1.45 |
qsort(cntord, sn, sizeof(CNTPTR), cntcmp); |
| 279 |
greg |
1.13 |
{ /* find last */ |
| 280 |
|
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register int l, m; |
| 281 |
|
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|
| 282 |
greg |
1.45 |
ncnts = l = sn; |
| 283 |
|
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sn = 0; |
| 284 |
greg |
1.13 |
while ((m = (sn + ncnts) >> 1) != l) { |
| 285 |
|
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if (cntord[m].brt > 0.0) |
| 286 |
|
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sn = m; |
| 287 |
|
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else |
| 288 |
|
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ncnts = m; |
| 289 |
|
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l = m; |
| 290 |
|
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} |
| 291 |
|
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} |
| 292 |
greg |
2.2 |
if (ncnts == 0) |
| 293 |
|
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return; /* no contributions! */ |
| 294 |
greg |
1.12 |
/* accumulate tail */ |
| 295 |
|
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for (sn = ncnts-1; sn > 0; sn--) |
| 296 |
|
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cntord[sn-1].brt += cntord[sn].brt; |
| 297 |
greg |
1.45 |
/* compute number to check */ |
| 298 |
|
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nshadcheck = pow((double)ncnts, shadcert) + .5; |
| 299 |
|
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/* modify threshold */ |
| 300 |
|
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ourthresh = shadthresh / r->rweight; |
| 301 |
greg |
1.10 |
/* test for shadows */ |
| 302 |
greg |
1.29 |
nhits = 0; |
| 303 |
greg |
1.12 |
for (sn = 0; sn < ncnts; sn++) { |
| 304 |
greg |
1.10 |
/* check threshold */ |
| 305 |
greg |
1.12 |
if ((sn+nshadcheck>=ncnts ? cntord[sn].brt : |
| 306 |
greg |
1.27 |
cntord[sn].brt-cntord[sn+nshadcheck].brt) |
| 307 |
|
|
< ourthresh*bright(r->rcol)) |
| 308 |
greg |
1.4 |
break; |
| 309 |
greg |
2.7 |
scp = srccnt + cntord[sn].sndx; |
| 310 |
greg |
1.4 |
/* test for hit */ |
| 311 |
|
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rayorigin(&sr, r, SHADOW, 1.0); |
| 312 |
greg |
2.7 |
VCOPY(sr.rdir, scp->dir); |
| 313 |
|
|
sr.rsrc = scp->sno; |
| 314 |
|
|
source[scp->sno].ntests++; /* keep statistics */ |
| 315 |
greg |
1.4 |
if (localhit(&sr, &thescene) && |
| 316 |
greg |
2.7 |
( sr.ro != source[scp->sno].so || |
| 317 |
|
|
source[scp->sno].sflags & SFOLLOW )) { |
| 318 |
greg |
1.33 |
/* follow entire path */ |
| 319 |
greg |
1.19 |
raycont(&sr); |
| 320 |
greg |
1.42 |
if (trace != NULL) |
| 321 |
|
|
(*trace)(&sr); /* trace execution */ |
| 322 |
greg |
1.5 |
if (bright(sr.rcol) <= FTINY) |
| 323 |
greg |
1.4 |
continue; /* missed! */ |
| 324 |
greg |
2.7 |
copycolor(scp->val, sr.rcol); |
| 325 |
|
|
multcolor(scp->val, scp->coef); |
| 326 |
greg |
1.4 |
} |
| 327 |
|
|
/* add contribution if hit */ |
| 328 |
greg |
2.7 |
addcolor(r->rcol, scp->val); |
| 329 |
greg |
1.29 |
nhits++; |
| 330 |
greg |
2.7 |
source[scp->sno].nhits++; |
| 331 |
greg |
1.4 |
} |
| 332 |
greg |
1.29 |
/* surface hit rate */ |
| 333 |
|
|
if (sn > 0) |
| 334 |
|
|
hwt = (double)nhits / (double)sn; |
| 335 |
|
|
else |
| 336 |
|
|
hwt = 0.5; |
| 337 |
greg |
1.20 |
#ifdef DEBUG |
| 338 |
greg |
1.12 |
sprintf(errmsg, "%d tested, %d untested, %f hit rate\n", |
| 339 |
|
|
sn, ncnts-sn, hwt); |
| 340 |
|
|
eputs(errmsg); |
| 341 |
greg |
1.4 |
#endif |
| 342 |
|
|
/* add in untested sources */ |
| 343 |
greg |
1.12 |
for ( ; sn < ncnts; sn++) { |
| 344 |
greg |
2.7 |
scp = srccnt + cntord[sn].sndx; |
| 345 |
|
|
prob = hwt * (double)source[scp->sno].nhits / |
| 346 |
|
|
(double)source[scp->sno].ntests; |
| 347 |
|
|
scalecolor(scp->val, prob); |
| 348 |
|
|
addcolor(r->rcol, scp->val); |
| 349 |
greg |
1.1 |
} |
| 350 |
greg |
2.4 |
} |
| 351 |
|
|
|
| 352 |
|
|
|
| 353 |
|
|
/**************************************************************** |
| 354 |
|
|
* The following macros were separated from the m_light() routine |
| 355 |
|
|
* because they are very nasty and difficult to understand. |
| 356 |
|
|
*/ |
| 357 |
|
|
|
| 358 |
|
|
/* wrongillum * |
| 359 |
|
|
* |
| 360 |
|
|
* We cannot allow an illum to pass to another illum, because that |
| 361 |
|
|
* would almost certainly constitute overcounting. |
| 362 |
|
|
* However, we do allow an illum to pass to another illum |
| 363 |
|
|
* that is actually going to relay to a virtual light source. |
| 364 |
|
|
*/ |
| 365 |
|
|
|
| 366 |
|
|
#define wrongillum(m, r) (!(source[r->rsrc].sflags&SVIRTUAL) && \ |
| 367 |
|
|
objptr(source[r->rsrc].so->omod)->otype==MAT_ILLUM) |
| 368 |
|
|
|
| 369 |
|
|
/* wrongsource * |
| 370 |
|
|
* |
| 371 |
|
|
* This source is the wrong source (ie. overcounted) if we are |
| 372 |
|
|
* aimed to a different source than the one we hit and the one |
| 373 |
|
|
* we hit is not an illum which should be passed. |
| 374 |
|
|
*/ |
| 375 |
|
|
|
| 376 |
|
|
#define wrongsource(m, r) (r->rsrc>=0 && source[r->rsrc].so!=r->ro && \ |
| 377 |
|
|
(m->otype!=MAT_ILLUM || wrongillum(m,r))) |
| 378 |
|
|
|
| 379 |
|
|
/* distglow * |
| 380 |
|
|
* |
| 381 |
|
|
* A distant glow is an object that sometimes acts as a light source, |
| 382 |
|
|
* but is too far away from the test point to be one in this case. |
| 383 |
|
|
*/ |
| 384 |
|
|
|
| 385 |
|
|
#define distglow(m, r) (m->otype==MAT_GLOW && \ |
| 386 |
|
|
r->rot > m->oargs.farg[3]) |
| 387 |
|
|
|
| 388 |
|
|
/* badcomponent * |
| 389 |
|
|
* |
| 390 |
|
|
* We must avoid counting light sources in the ambient calculation, |
| 391 |
|
|
* since the direct component is handled separately. Therefore, any |
| 392 |
|
|
* ambient ray which hits an active light source must be discarded. |
| 393 |
|
|
* The same is true for stray specular samples, since the specular |
| 394 |
|
|
* contribution from light sources is calculated separately. |
| 395 |
|
|
*/ |
| 396 |
|
|
|
| 397 |
|
|
#define badcomponent(m, r) (r->crtype&(AMBIENT|SPECULAR) && \ |
| 398 |
|
|
!(r->crtype&SHADOW || r->rod < 0.0 || \ |
| 399 |
|
|
distglow(m, r))) |
| 400 |
|
|
|
| 401 |
|
|
/* overcount * |
| 402 |
|
|
* |
| 403 |
|
|
* All overcounting possibilities are contained here. |
| 404 |
|
|
*/ |
| 405 |
|
|
|
| 406 |
|
|
#define overcount(m, r) (badcomponent(m,r) || wrongsource(m,r)) |
| 407 |
|
|
|
| 408 |
|
|
/* passillum * |
| 409 |
|
|
* |
| 410 |
|
|
* An illum passes to another material type when we didn't hit it |
| 411 |
|
|
* on purpose (as part of a direct calculation), or it is relaying |
| 412 |
|
|
* a virtual light source. |
| 413 |
|
|
*/ |
| 414 |
|
|
|
| 415 |
|
|
#define passillum(m, r) (m->otype==MAT_ILLUM && \ |
| 416 |
|
|
(r->rsrc<0 || source[r->rsrc].so!=r->ro || \ |
| 417 |
|
|
source[r->rsrc].sflags&SVIRTUAL)) |
| 418 |
|
|
|
| 419 |
|
|
/* srcignore * |
| 420 |
|
|
* |
| 421 |
|
|
* The -di flag renders light sources invisible, and here is the test. |
| 422 |
|
|
*/ |
| 423 |
|
|
|
| 424 |
|
|
#define srcignore(m, r) (directinvis && !(r->crtype&SHADOW) && \ |
| 425 |
|
|
!distglow(m, r)) |
| 426 |
|
|
|
| 427 |
|
|
|
| 428 |
|
|
m_light(m, r) /* ray hit a light source */ |
| 429 |
|
|
register OBJREC *m; |
| 430 |
|
|
register RAY *r; |
| 431 |
|
|
{ |
| 432 |
|
|
/* check for over-counting */ |
| 433 |
|
|
if (overcount(m, r)) |
| 434 |
|
|
return; |
| 435 |
|
|
/* check for passed illum */ |
| 436 |
|
|
if (passillum(m, r)) { |
| 437 |
|
|
if (m->oargs.nsargs < 1 || !strcmp(m->oargs.sarg[0], VOIDID)) |
| 438 |
|
|
raytrans(r); |
| 439 |
|
|
else |
| 440 |
|
|
rayshade(r, modifier(m->oargs.sarg[0])); |
| 441 |
|
|
return; |
| 442 |
|
|
} |
| 443 |
|
|
/* otherwise treat as source */ |
| 444 |
|
|
/* check for behind */ |
| 445 |
|
|
if (r->rod < 0.0) |
| 446 |
|
|
return; |
| 447 |
|
|
/* check for invisibility */ |
| 448 |
|
|
if (srcignore(m, r)) |
| 449 |
|
|
return; |
| 450 |
|
|
/* check for outside spot */ |
| 451 |
|
|
if (m->otype==MAT_SPOT && spotout(r, (SPOT *)m->os, r->rot>=FHUGE)) |
| 452 |
|
|
return; |
| 453 |
|
|
/* get distribution pattern */ |
| 454 |
|
|
raytexture(r, m->omod); |
| 455 |
|
|
/* get source color */ |
| 456 |
|
|
setcolor(r->rcol, m->oargs.farg[0], |
| 457 |
|
|
m->oargs.farg[1], |
| 458 |
|
|
m->oargs.farg[2]); |
| 459 |
|
|
/* modify value */ |
| 460 |
|
|
multcolor(r->rcol, r->pcol); |
| 461 |
greg |
1.1 |
} |