| 1 |
greg |
1.1 |
#ifndef lint
|
| 2 |
schorsch |
2.9 |
static const char RCSid[] = "$Id: srcsamp.c,v 2.8 2003/02/25 02:47:23 greg Exp $";
|
| 3 |
greg |
1.1 |
#endif
|
| 4 |
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/*
|
| 5 |
|
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* Source sampling routines
|
| 6 |
greg |
2.7 |
*
|
| 7 |
|
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* External symbols declared in source.h
|
| 8 |
|
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*/
|
| 9 |
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|
| 10 |
greg |
2.8 |
#include "copyright.h"
|
| 11 |
greg |
1.1 |
|
| 12 |
greg |
1.4 |
#include "ray.h"
|
| 13 |
greg |
1.1 |
|
| 14 |
|
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#include "source.h"
|
| 15 |
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|
| 16 |
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#include "random.h"
|
| 17 |
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|
| 18 |
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|
| 19 |
greg |
2.5 |
static int cyl_partit(), flt_partit();
|
| 20 |
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|
| 21 |
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|
| 22 |
greg |
1.1 |
double
|
| 23 |
greg |
1.4 |
nextssamp(r, si) /* compute sample for source, rtn. distance */
|
| 24 |
|
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register RAY *r; /* origin is read, direction is set */
|
| 25 |
greg |
1.1 |
register SRCINDEX *si; /* source index (modified to current) */
|
| 26 |
|
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{
|
| 27 |
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int cent[3], size[3], parr[2];
|
| 28 |
|
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FVECT vpos;
|
| 29 |
|
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double d;
|
| 30 |
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register int i;
|
| 31 |
greg |
2.2 |
nextsample:
|
| 32 |
greg |
1.1 |
while (++si->sp >= si->np) { /* get next sample */
|
| 33 |
|
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if (++si->sn >= nsources)
|
| 34 |
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return(0.0); /* no more */
|
| 35 |
greg |
1.7 |
if (source[si->sn].sflags & SSKIP)
|
| 36 |
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si->np = 0;
|
| 37 |
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else if (srcsizerat <= FTINY)
|
| 38 |
greg |
1.4 |
nopart(si, r);
|
| 39 |
greg |
1.1 |
else {
|
| 40 |
|
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for (i = si->sn; source[i].sflags & SVIRTUAL;
|
| 41 |
|
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i = source[i].sa.sv.sn)
|
| 42 |
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; /* partition source */
|
| 43 |
greg |
1.4 |
(*sfun[source[i].so->otype].of->partit)(si, r);
|
| 44 |
greg |
1.1 |
}
|
| 45 |
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si->sp = -1;
|
| 46 |
|
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}
|
| 47 |
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/* get partition */
|
| 48 |
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cent[0] = cent[1] = cent[2] = 0;
|
| 49 |
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size[0] = size[1] = size[2] = MAXSPART;
|
| 50 |
|
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parr[0] = 0; parr[1] = si->sp;
|
| 51 |
|
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if (!skipparts(cent, size, parr, si->spt))
|
| 52 |
|
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error(CONSISTENCY, "bad source partition in nextssamp");
|
| 53 |
|
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/* compute sample */
|
| 54 |
|
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if (dstrsrc > FTINY) { /* jitter sample */
|
| 55 |
|
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dimlist[ndims] = si->sn + 8831;
|
| 56 |
|
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dimlist[ndims+1] = si->sp + 3109;
|
| 57 |
|
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d = urand(ilhash(dimlist,ndims+2)+samplendx);
|
| 58 |
|
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if (source[si->sn].sflags & SFLAT) {
|
| 59 |
|
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multisamp(vpos, 2, d);
|
| 60 |
|
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vpos[2] = 0.5;
|
| 61 |
|
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} else
|
| 62 |
|
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multisamp(vpos, 3, d);
|
| 63 |
|
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for (i = 0; i < 3; i++)
|
| 64 |
|
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vpos[i] = dstrsrc * (1. - 2.*vpos[i]) *
|
| 65 |
|
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(double)size[i]/MAXSPART;
|
| 66 |
|
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} else
|
| 67 |
|
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vpos[0] = vpos[1] = vpos[2] = 0.0;
|
| 68 |
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|
|
| 69 |
|
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for (i = 0; i < 3; i++)
|
| 70 |
|
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vpos[i] += (double)cent[i]/MAXSPART;
|
| 71 |
|
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/* compute direction */
|
| 72 |
|
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for (i = 0; i < 3; i++)
|
| 73 |
greg |
1.4 |
r->rdir[i] = source[si->sn].sloc[i] +
|
| 74 |
greg |
1.1 |
vpos[SU]*source[si->sn].ss[SU][i] +
|
| 75 |
|
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vpos[SV]*source[si->sn].ss[SV][i] +
|
| 76 |
|
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vpos[SW]*source[si->sn].ss[SW][i];
|
| 77 |
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|
| 78 |
|
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if (!(source[si->sn].sflags & SDISTANT))
|
| 79 |
|
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for (i = 0; i < 3; i++)
|
| 80 |
greg |
1.4 |
r->rdir[i] -= r->rorg[i];
|
| 81 |
greg |
1.1 |
/* compute distance */
|
| 82 |
greg |
1.4 |
if ((d = normalize(r->rdir)) == 0.0)
|
| 83 |
greg |
2.2 |
goto nextsample; /* at source! */
|
| 84 |
greg |
1.1 |
|
| 85 |
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/* compute sample size */
|
| 86 |
|
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if (source[si->sn].sflags & SFLAT) {
|
| 87 |
greg |
2.6 |
si->dom = sflatform(si->sn, r->rdir);
|
| 88 |
greg |
2.4 |
si->dom *= size[SU]*size[SV]/(MAXSPART*(double)MAXSPART);
|
| 89 |
greg |
1.1 |
} else if (source[si->sn].sflags & SCYL) {
|
| 90 |
greg |
2.6 |
si->dom = scylform(si->sn, r->rdir);
|
| 91 |
greg |
2.4 |
si->dom *= size[SU]/(double)MAXSPART;
|
| 92 |
greg |
1.1 |
} else {
|
| 93 |
greg |
2.6 |
si->dom = size[SU]*size[SV]*(double)size[SW] /
|
| 94 |
greg |
2.4 |
(MAXSPART*MAXSPART*(double)MAXSPART) ;
|
| 95 |
greg |
1.1 |
}
|
| 96 |
greg |
2.6 |
if (source[si->sn].sflags & SDISTANT) {
|
| 97 |
|
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si->dom *= source[si->sn].ss2;
|
| 98 |
greg |
1.1 |
return(FHUGE);
|
| 99 |
greg |
2.6 |
}
|
| 100 |
greg |
2.3 |
if (si->dom <= 1e-4)
|
| 101 |
greg |
2.2 |
goto nextsample; /* behind source? */
|
| 102 |
greg |
2.6 |
si->dom *= source[si->sn].ss2/(d*d);
|
| 103 |
greg |
1.1 |
return(d); /* sample OK, return distance */
|
| 104 |
|
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}
|
| 105 |
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|
| 106 |
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|
| 107 |
greg |
2.7 |
int
|
| 108 |
greg |
1.1 |
skipparts(ct, sz, pp, pt) /* skip to requested partition */
|
| 109 |
|
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int ct[3], sz[3]; /* center and size of partition (returned) */
|
| 110 |
|
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register int pp[2]; /* current index, number to skip (modified) */
|
| 111 |
|
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unsigned char *pt; /* partition array */
|
| 112 |
|
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{
|
| 113 |
|
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register int p;
|
| 114 |
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/* check this partition */
|
| 115 |
|
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p = spart(pt, pp[0]);
|
| 116 |
|
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pp[0]++;
|
| 117 |
|
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if (p == S0) /* leaf partition */
|
| 118 |
|
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if (pp[1]) {
|
| 119 |
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pp[1]--;
|
| 120 |
|
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return(0); /* not there yet */
|
| 121 |
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} else
|
| 122 |
|
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return(1); /* we've arrived */
|
| 123 |
|
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/* else check lower */
|
| 124 |
|
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sz[p] >>= 1;
|
| 125 |
|
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ct[p] -= sz[p];
|
| 126 |
|
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if (skipparts(ct, sz, pp, pt))
|
| 127 |
|
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return(1); /* return hit */
|
| 128 |
|
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/* else check upper */
|
| 129 |
|
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ct[p] += sz[p] << 1;
|
| 130 |
|
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if (skipparts(ct, sz, pp, pt))
|
| 131 |
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return(1); /* return hit */
|
| 132 |
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/* else return to starting position */
|
| 133 |
|
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ct[p] -= sz[p];
|
| 134 |
|
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sz[p] <<= 1;
|
| 135 |
|
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return(0); /* return miss */
|
| 136 |
|
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}
|
| 137 |
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|
| 138 |
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|
| 139 |
greg |
2.7 |
void
|
| 140 |
greg |
1.4 |
nopart(si, r) /* single source partition */
|
| 141 |
greg |
1.1 |
register SRCINDEX *si;
|
| 142 |
greg |
1.4 |
RAY *r;
|
| 143 |
greg |
1.1 |
{
|
| 144 |
|
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clrpart(si->spt);
|
| 145 |
|
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setpart(si->spt, 0, S0);
|
| 146 |
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si->np = 1;
|
| 147 |
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}
|
| 148 |
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|
| 149 |
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|
| 150 |
greg |
2.7 |
void
|
| 151 |
greg |
1.4 |
cylpart(si, r) /* partition a cylinder */
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| 152 |
greg |
1.1 |
SRCINDEX *si;
|
| 153 |
greg |
1.4 |
register RAY *r;
|
| 154 |
greg |
1.1 |
{
|
| 155 |
|
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double dist2, safedist2, dist2cent, rad2;
|
| 156 |
|
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FVECT v;
|
| 157 |
|
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register SRCREC *sp;
|
| 158 |
|
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int pi;
|
| 159 |
|
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/* first check point location */
|
| 160 |
|
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clrpart(si->spt);
|
| 161 |
greg |
1.4 |
sp = source + si->sn;
|
| 162 |
greg |
1.3 |
rad2 = 1.365 * DOT(sp->ss[SV],sp->ss[SV]);
|
| 163 |
greg |
1.4 |
v[0] = r->rorg[0] - sp->sloc[0];
|
| 164 |
|
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v[1] = r->rorg[1] - sp->sloc[1];
|
| 165 |
|
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v[2] = r->rorg[2] - sp->sloc[2];
|
| 166 |
greg |
1.1 |
dist2 = DOT(v,sp->ss[SU]);
|
| 167 |
|
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safedist2 = DOT(sp->ss[SU],sp->ss[SU]);
|
| 168 |
|
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dist2 *= dist2 / safedist2;
|
| 169 |
|
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dist2cent = DOT(v,v);
|
| 170 |
|
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dist2 = dist2cent - dist2;
|
| 171 |
|
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if (dist2 <= rad2) { /* point inside extended cylinder */
|
| 172 |
|
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si->np = 0;
|
| 173 |
|
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return;
|
| 174 |
|
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}
|
| 175 |
greg |
1.4 |
safedist2 *= 4.*r->rweight*r->rweight/(srcsizerat*srcsizerat);
|
| 176 |
greg |
1.5 |
if (dist2 <= 4.*rad2 || /* point too close to subdivide */
|
| 177 |
|
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dist2cent >= safedist2) { /* or too far */
|
| 178 |
greg |
1.1 |
setpart(si->spt, 0, S0);
|
| 179 |
|
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si->np = 1;
|
| 180 |
|
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return;
|
| 181 |
|
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}
|
| 182 |
|
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pi = 0;
|
| 183 |
greg |
1.4 |
si->np = cyl_partit(r->rorg, si->spt, &pi, MAXSPART,
|
| 184 |
greg |
1.1 |
sp->sloc, sp->ss[SU], safedist2);
|
| 185 |
|
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}
|
| 186 |
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|
| 187 |
|
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|
| 188 |
|
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static int
|
| 189 |
|
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cyl_partit(ro, pt, pi, mp, cent, axis, d2) /* slice a cylinder */
|
| 190 |
|
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FVECT ro;
|
| 191 |
|
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unsigned char *pt;
|
| 192 |
|
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register int *pi;
|
| 193 |
|
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int mp;
|
| 194 |
|
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FVECT cent, axis;
|
| 195 |
|
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double d2;
|
| 196 |
|
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{
|
| 197 |
|
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FVECT newct, newax;
|
| 198 |
|
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int npl, npu;
|
| 199 |
|
|
|
| 200 |
|
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if (mp < 2 || dist2(ro, cent) >= d2) { /* hit limit? */
|
| 201 |
|
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setpart(pt, *pi, S0);
|
| 202 |
|
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(*pi)++;
|
| 203 |
|
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return(1);
|
| 204 |
|
|
}
|
| 205 |
|
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/* subdivide */
|
| 206 |
|
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setpart(pt, *pi, SU);
|
| 207 |
|
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(*pi)++;
|
| 208 |
|
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newax[0] = .5*axis[0];
|
| 209 |
|
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newax[1] = .5*axis[1];
|
| 210 |
|
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newax[2] = .5*axis[2];
|
| 211 |
|
|
d2 *= 0.25;
|
| 212 |
|
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/* lower half */
|
| 213 |
|
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newct[0] = cent[0] - newax[0];
|
| 214 |
|
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newct[1] = cent[1] - newax[1];
|
| 215 |
|
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newct[2] = cent[2] - newax[2];
|
| 216 |
greg |
1.2 |
npl = cyl_partit(ro, pt, pi, mp/2, newct, newax, d2);
|
| 217 |
greg |
1.1 |
/* upper half */
|
| 218 |
|
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newct[0] = cent[0] + newax[0];
|
| 219 |
|
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newct[1] = cent[1] + newax[1];
|
| 220 |
|
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newct[2] = cent[2] + newax[2];
|
| 221 |
greg |
1.2 |
npu = cyl_partit(ro, pt, pi, mp/2, newct, newax, d2);
|
| 222 |
greg |
1.1 |
/* return total */
|
| 223 |
|
|
return(npl + npu);
|
| 224 |
|
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}
|
| 225 |
|
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|
| 226 |
|
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|
| 227 |
greg |
2.7 |
void
|
| 228 |
greg |
1.4 |
flatpart(si, r) /* partition a flat source */
|
| 229 |
greg |
1.1 |
register SRCINDEX *si;
|
| 230 |
greg |
1.5 |
register RAY *r;
|
| 231 |
greg |
1.1 |
{
|
| 232 |
schorsch |
2.9 |
register RREAL *vp;
|
| 233 |
greg |
1.5 |
FVECT v;
|
| 234 |
greg |
1.1 |
double du2, dv2;
|
| 235 |
|
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int pi;
|
| 236 |
|
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|
| 237 |
greg |
1.5 |
clrpart(si->spt);
|
| 238 |
|
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vp = source[si->sn].sloc;
|
| 239 |
|
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v[0] = r->rorg[0] - vp[0];
|
| 240 |
|
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v[1] = r->rorg[1] - vp[1];
|
| 241 |
|
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v[2] = r->rorg[2] - vp[2];
|
| 242 |
|
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vp = source[si->sn].snorm;
|
| 243 |
|
|
if (DOT(v,vp) <= FTINY) { /* behind source */
|
| 244 |
|
|
si->np = 0;
|
| 245 |
|
|
return;
|
| 246 |
|
|
}
|
| 247 |
greg |
1.4 |
dv2 = 2.*r->rweight/srcsizerat;
|
| 248 |
|
|
dv2 *= dv2;
|
| 249 |
greg |
1.1 |
vp = source[si->sn].ss[SU];
|
| 250 |
greg |
1.4 |
du2 = dv2 * DOT(vp,vp);
|
| 251 |
greg |
1.1 |
vp = source[si->sn].ss[SV];
|
| 252 |
greg |
1.4 |
dv2 *= DOT(vp,vp);
|
| 253 |
greg |
1.1 |
pi = 0;
|
| 254 |
greg |
1.4 |
si->np = flt_partit(r->rorg, si->spt, &pi, MAXSPART,
|
| 255 |
|
|
source[si->sn].sloc,
|
| 256 |
greg |
1.1 |
source[si->sn].ss[SU], source[si->sn].ss[SV], du2, dv2);
|
| 257 |
|
|
}
|
| 258 |
|
|
|
| 259 |
|
|
|
| 260 |
|
|
static int
|
| 261 |
|
|
flt_partit(ro, pt, pi, mp, cent, u, v, du2, dv2) /* partition flatty */
|
| 262 |
|
|
FVECT ro;
|
| 263 |
|
|
unsigned char *pt;
|
| 264 |
|
|
register int *pi;
|
| 265 |
|
|
int mp;
|
| 266 |
|
|
FVECT cent, u, v;
|
| 267 |
|
|
double du2, dv2;
|
| 268 |
|
|
{
|
| 269 |
|
|
double d2;
|
| 270 |
|
|
FVECT newct, newax;
|
| 271 |
|
|
int npl, npu;
|
| 272 |
|
|
|
| 273 |
|
|
if (mp < 2 || ((d2 = dist2(ro, cent)) >= du2
|
| 274 |
|
|
&& d2 >= dv2)) { /* hit limit? */
|
| 275 |
|
|
setpart(pt, *pi, S0);
|
| 276 |
|
|
(*pi)++;
|
| 277 |
|
|
return(1);
|
| 278 |
|
|
}
|
| 279 |
|
|
if (du2 > dv2) { /* subdivide in U */
|
| 280 |
|
|
setpart(pt, *pi, SU);
|
| 281 |
|
|
(*pi)++;
|
| 282 |
|
|
newax[0] = .5*u[0];
|
| 283 |
|
|
newax[1] = .5*u[1];
|
| 284 |
|
|
newax[2] = .5*u[2];
|
| 285 |
|
|
u = newax;
|
| 286 |
|
|
du2 *= 0.25;
|
| 287 |
|
|
} else { /* subdivide in V */
|
| 288 |
|
|
setpart(pt, *pi, SV);
|
| 289 |
|
|
(*pi)++;
|
| 290 |
|
|
newax[0] = .5*v[0];
|
| 291 |
|
|
newax[1] = .5*v[1];
|
| 292 |
|
|
newax[2] = .5*v[2];
|
| 293 |
|
|
v = newax;
|
| 294 |
|
|
dv2 *= 0.25;
|
| 295 |
|
|
}
|
| 296 |
|
|
/* lower half */
|
| 297 |
|
|
newct[0] = cent[0] - newax[0];
|
| 298 |
|
|
newct[1] = cent[1] - newax[1];
|
| 299 |
|
|
newct[2] = cent[2] - newax[2];
|
| 300 |
greg |
1.2 |
npl = flt_partit(ro, pt, pi, mp/2, newct, u, v, du2, dv2);
|
| 301 |
greg |
1.1 |
/* upper half */
|
| 302 |
|
|
newct[0] = cent[0] + newax[0];
|
| 303 |
|
|
newct[1] = cent[1] + newax[1];
|
| 304 |
|
|
newct[2] = cent[2] + newax[2];
|
| 305 |
greg |
1.2 |
npu = flt_partit(ro, pt, pi, mp/2, newct, u, v, du2, dv2);
|
| 306 |
greg |
1.1 |
/* return total */
|
| 307 |
|
|
return(npl + npu);
|
| 308 |
|
|
}
|
| 309 |
|
|
|
| 310 |
|
|
|
| 311 |
|
|
double
|
| 312 |
|
|
scylform(sn, dir) /* compute cosine for cylinder's projection */
|
| 313 |
|
|
int sn;
|
| 314 |
|
|
register FVECT dir; /* assume normalized */
|
| 315 |
|
|
{
|
| 316 |
schorsch |
2.9 |
register RREAL *dv;
|
| 317 |
greg |
1.1 |
double d;
|
| 318 |
|
|
|
| 319 |
|
|
dv = source[sn].ss[SU];
|
| 320 |
|
|
d = DOT(dir, dv);
|
| 321 |
|
|
d *= d / DOT(dv,dv);
|
| 322 |
|
|
return(sqrt(1. - d));
|
| 323 |
|
|
}
|