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greg |
1.1 |
#ifndef lint
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greg |
2.20 |
static const char RCSid[] = "$Id: ambcomp.c,v 2.19 2005/08/22 16:07:26 greg Exp $";
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greg |
1.1 |
#endif
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/*
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* Routines to compute "ambient" values using Monte Carlo
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greg |
2.9 |
*
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* Declarations of external symbols in ambient.h
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*/
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greg |
2.10 |
#include "copyright.h"
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greg |
1.1 |
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#include "ray.h"
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#include "ambient.h"
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#include "random.h"
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greg |
2.15 |
void
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greg |
2.14 |
inithemi( /* initialize sampling hemisphere */
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register AMBHEMI *hp,
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greg |
2.16 |
COLOR ac,
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greg |
2.14 |
RAY *r,
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double wt
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)
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greg |
1.1 |
{
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greg |
2.16 |
double d;
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greg |
2.14 |
register int i;
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/* set number of divisions */
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greg |
2.16 |
if (ambacc <= FTINY &&
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greg |
2.20 |
wt > (d = 0.8*intens(ac)*r->rweight/(ambdiv*minweight)))
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greg |
2.16 |
wt = d; /* avoid ray termination */
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hp->nt = sqrt(ambdiv * wt / PI) + 0.5;
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greg |
2.14 |
i = ambacc > FTINY ? 3 : 1; /* minimum number of samples */
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if (hp->nt < i)
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hp->nt = i;
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hp->np = PI * hp->nt + 0.5;
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/* set number of super-samples */
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greg |
2.15 |
hp->ns = ambssamp * wt + 0.5;
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greg |
2.16 |
/* assign coefficient */
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greg |
2.14 |
copycolor(hp->acoef, ac);
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greg |
2.16 |
d = 1.0/(hp->nt*hp->np);
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scalecolor(hp->acoef, d);
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greg |
2.14 |
/* make axes */
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VCOPY(hp->uz, r->ron);
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hp->uy[0] = hp->uy[1] = hp->uy[2] = 0.0;
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for (i = 0; i < 3; i++)
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if (hp->uz[i] < 0.6 && hp->uz[i] > -0.6)
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break;
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if (i >= 3)
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error(CONSISTENCY, "bad ray direction in inithemi");
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hp->uy[i] = 1.0;
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fcross(hp->ux, hp->uy, hp->uz);
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normalize(hp->ux);
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fcross(hp->uy, hp->uz, hp->ux);
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greg |
1.1 |
}
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greg |
2.9 |
int
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greg |
2.14 |
divsample( /* sample a division */
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register AMBSAMP *dp,
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AMBHEMI *h,
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RAY *r
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)
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greg |
1.1 |
{
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RAY ar;
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greg |
1.11 |
int hlist[3];
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double spt[2];
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greg |
1.1 |
double xd, yd, zd;
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double b2;
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double phi;
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greg |
1.2 |
register int i;
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greg |
2.15 |
/* ambient coefficient for weight */
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greg |
2.16 |
if (ambacc > FTINY)
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setcolor(ar.rcoef, AVGREFL, AVGREFL, AVGREFL);
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else
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copycolor(ar.rcoef, h->acoef);
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greg |
2.14 |
if (rayorigin(&ar, AMBIENT, r, ar.rcoef) < 0)
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greg |
1.4 |
return(-1);
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greg |
2.17 |
if (ambacc > FTINY) {
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multcolor(ar.rcoef, h->acoef);
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scalecolor(ar.rcoef, 1./AVGREFL);
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}
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greg |
1.1 |
hlist[0] = r->rno;
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hlist[1] = dp->t;
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hlist[2] = dp->p;
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greg |
1.13 |
multisamp(spt, 2, urand(ilhash(hlist,3)+dp->n));
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greg |
1.11 |
zd = sqrt((dp->t + spt[0])/h->nt);
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phi = 2.0*PI * (dp->p + spt[1])/h->np;
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gwlarson |
2.8 |
xd = tcos(phi) * zd;
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yd = tsin(phi) * zd;
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greg |
1.1 |
zd = sqrt(1.0 - zd*zd);
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greg |
1.2 |
for (i = 0; i < 3; i++)
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ar.rdir[i] = xd*h->ux[i] +
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yd*h->uy[i] +
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zd*h->uz[i];
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dimlist[ndims++] = dp->t*h->np + dp->p + 90171;
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greg |
1.1 |
rayvalue(&ar);
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ndims--;
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greg |
2.16 |
multcolor(ar.rcol, ar.rcoef); /* apply coefficient */
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greg |
1.1 |
addcolor(dp->v, ar.rcol);
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greg |
2.9 |
/* use rt to improve gradient calc */
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if (ar.rt > FTINY && ar.rt < FHUGE)
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dp->r += 1.0/ar.rt;
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greg |
1.1 |
/* (re)initialize error */
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if (dp->n++) {
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b2 = bright(dp->v)/dp->n - bright(ar.rcol);
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b2 = b2*b2 + dp->k*((dp->n-1)*(dp->n-1));
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dp->k = b2/(dp->n*dp->n);
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} else
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dp->k = 0.0;
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greg |
1.4 |
return(0);
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greg |
1.1 |
}
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greg |
2.14 |
static int
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ambcmp( /* decreasing order */
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| 118 |
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const void *p1,
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const void *p2
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)
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{
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const AMBSAMP *d1 = (const AMBSAMP *)p1;
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const AMBSAMP *d2 = (const AMBSAMP *)p2;
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if (d1->k < d2->k)
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return(1);
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if (d1->k > d2->k)
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| 128 |
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return(-1);
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return(0);
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}
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static int
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ambnorm( /* standard order */
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const void *p1,
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const void *p2
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)
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{
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| 139 |
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const AMBSAMP *d1 = (const AMBSAMP *)p1;
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const AMBSAMP *d2 = (const AMBSAMP *)p2;
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| 141 |
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register int c;
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| 142 |
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| 143 |
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if ( (c = d1->t - d2->t) )
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| 144 |
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return(c);
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return(d1->p - d2->p);
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| 146 |
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}
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| 148 |
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| 149 |
greg |
1.1 |
double
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| 150 |
greg |
2.14 |
doambient( /* compute ambient component */
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| 151 |
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COLOR acol,
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| 152 |
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RAY *r,
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| 153 |
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double wt,
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| 154 |
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FVECT pg,
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| 155 |
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FVECT dg
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| 156 |
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)
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| 157 |
greg |
1.1 |
{
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| 158 |
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double b, d;
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AMBHEMI hemi;
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| 160 |
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AMBSAMP *div;
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AMBSAMP dnew;
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| 162 |
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register AMBSAMP *dp;
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| 163 |
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double arad;
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| 164 |
greg |
2.19 |
int divcnt;
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greg |
1.1 |
register int i, j;
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| 166 |
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/* initialize hemisphere */
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| 167 |
greg |
2.16 |
inithemi(&hemi, acol, r, wt);
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| 168 |
greg |
2.19 |
divcnt = hemi.nt * hemi.np;
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| 169 |
greg |
2.17 |
/* initialize */
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| 170 |
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if (pg != NULL)
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pg[0] = pg[1] = pg[2] = 0.0;
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if (dg != NULL)
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dg[0] = dg[1] = dg[2] = 0.0;
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greg |
2.16 |
setcolor(acol, 0.0, 0.0, 0.0);
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| 175 |
greg |
2.19 |
if (divcnt == 0)
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| 176 |
greg |
1.1 |
return(0.0);
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| 177 |
greg |
2.14 |
/* allocate super-samples */
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| 178 |
greg |
2.15 |
if (hemi.ns > 0 || pg != NULL || dg != NULL) {
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| 179 |
greg |
2.19 |
div = (AMBSAMP *)malloc(divcnt*sizeof(AMBSAMP));
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| 180 |
greg |
1.1 |
if (div == NULL)
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| 181 |
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error(SYSTEM, "out of memory in doambient");
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| 182 |
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} else
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| 183 |
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div = NULL;
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| 184 |
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/* sample the divisions */
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| 185 |
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arad = 0.0;
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| 186 |
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if ((dp = div) == NULL)
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| 187 |
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dp = &dnew;
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| 188 |
greg |
2.19 |
divcnt = 0;
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| 189 |
greg |
1.1 |
for (i = 0; i < hemi.nt; i++)
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| 190 |
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for (j = 0; j < hemi.np; j++) {
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| 191 |
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dp->t = i; dp->p = j;
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| 192 |
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setcolor(dp->v, 0.0, 0.0, 0.0);
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greg |
1.2 |
dp->r = 0.0;
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| 194 |
greg |
1.1 |
dp->n = 0;
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| 195 |
greg |
2.16 |
if (divsample(dp, &hemi, r) < 0) {
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| 196 |
greg |
2.19 |
if (div != NULL)
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| 197 |
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dp++;
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| 198 |
greg |
2.16 |
continue;
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| 199 |
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}
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| 200 |
greg |
2.6 |
arad += dp->r;
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| 201 |
greg |
2.19 |
divcnt++;
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| 202 |
greg |
1.1 |
if (div != NULL)
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| 203 |
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dp++;
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| 204 |
greg |
2.6 |
else
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| 205 |
greg |
1.1 |
addcolor(acol, dp->v);
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| 206 |
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}
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| 207 |
greg |
2.19 |
if (!divcnt)
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| 208 |
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return(0.0); /* no samples taken */
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| 209 |
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if (divcnt < hemi.nt*hemi.np) {
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| 210 |
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pg = dg = NULL; /* incomplete sampling */
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| 211 |
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hemi.ns = 0;
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| 212 |
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} else if (arad > FTINY && divcnt/arad < minarad) {
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| 213 |
greg |
2.15 |
hemi.ns = 0; /* close enough */
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| 214 |
greg |
2.19 |
} else if (hemi.ns > 0) { /* else perform super-sampling? */
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| 215 |
greg |
1.4 |
comperrs(div, &hemi); /* compute errors */
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| 216 |
greg |
2.19 |
qsort(div, divcnt, sizeof(AMBSAMP), ambcmp); /* sort divs */
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| 217 |
greg |
1.1 |
/* super-sample */
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| 218 |
greg |
2.15 |
for (i = hemi.ns; i > 0; i--) {
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| 219 |
schorsch |
2.11 |
dnew = *div;
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| 220 |
greg |
2.16 |
if (divsample(&dnew, &hemi, r) < 0) {
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| 221 |
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dp++;
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| 222 |
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continue;
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| 223 |
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}
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| 224 |
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dp = div; /* reinsert */
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| 225 |
greg |
2.19 |
j = divcnt < i ? divcnt : i;
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| 226 |
greg |
1.1 |
while (--j > 0 && dnew.k < dp[1].k) {
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| 227 |
schorsch |
2.11 |
*dp = *(dp+1);
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| 228 |
greg |
1.1 |
dp++;
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| 229 |
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}
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| 230 |
schorsch |
2.11 |
*dp = dnew;
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| 231 |
greg |
1.1 |
}
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| 232 |
greg |
1.2 |
if (pg != NULL || dg != NULL) /* restore order */
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| 233 |
greg |
2.19 |
qsort(div, divcnt, sizeof(AMBSAMP), ambnorm);
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| 234 |
greg |
1.1 |
}
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| 235 |
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/* compute returned values */
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| 236 |
greg |
1.3 |
if (div != NULL) {
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| 237 |
greg |
2.19 |
arad = 0.0; /* note: divcnt may be < nt*np */
|
| 238 |
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for (i = hemi.nt*hemi.np, dp = div; i-- > 0; dp++) {
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| 239 |
greg |
1.3 |
arad += dp->r;
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| 240 |
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if (dp->n > 1) {
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| 241 |
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b = 1.0/dp->n;
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| 242 |
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scalecolor(dp->v, b);
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| 243 |
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dp->r *= b;
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| 244 |
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dp->n = 1;
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| 245 |
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}
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| 246 |
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addcolor(acol, dp->v);
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| 247 |
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}
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| 248 |
greg |
1.5 |
b = bright(acol);
|
| 249 |
greg |
1.6 |
if (b > FTINY) {
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| 250 |
greg |
2.17 |
b = 1.0/b; /* compute & normalize gradient(s) */
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| 251 |
greg |
1.6 |
if (pg != NULL) {
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| 252 |
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posgradient(pg, div, &hemi);
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| 253 |
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for (i = 0; i < 3; i++)
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| 254 |
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pg[i] *= b;
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| 255 |
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}
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| 256 |
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if (dg != NULL) {
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| 257 |
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dirgradient(dg, div, &hemi);
|
| 258 |
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for (i = 0; i < 3; i++)
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| 259 |
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dg[i] *= b;
|
| 260 |
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}
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| 261 |
greg |
1.5 |
}
|
| 262 |
greg |
2.9 |
free((void *)div);
|
| 263 |
greg |
1.3 |
}
|
| 264 |
greg |
1.1 |
if (arad <= FTINY)
|
| 265 |
greg |
1.16 |
arad = maxarad;
|
| 266 |
greg |
2.3 |
else
|
| 267 |
greg |
2.19 |
arad = (divcnt+hemi.ns)/arad;
|
| 268 |
greg |
1.15 |
if (pg != NULL) { /* reduce radius if gradient large */
|
| 269 |
|
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d = DOT(pg,pg);
|
| 270 |
|
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if (d*arad*arad > 1.0)
|
| 271 |
|
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arad = 1.0/sqrt(d);
|
| 272 |
|
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}
|
| 273 |
greg |
1.16 |
if (arad < minarad) {
|
| 274 |
greg |
1.1 |
arad = minarad;
|
| 275 |
greg |
1.16 |
if (pg != NULL && d*arad*arad > 1.0) { /* cap gradient */
|
| 276 |
|
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d = 1.0/arad/sqrt(d);
|
| 277 |
|
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for (i = 0; i < 3; i++)
|
| 278 |
|
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pg[i] *= d;
|
| 279 |
|
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}
|
| 280 |
|
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}
|
| 281 |
greg |
2.3 |
if ((arad /= sqrt(wt)) > maxarad)
|
| 282 |
|
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arad = maxarad;
|
| 283 |
|
|
return(arad);
|
| 284 |
greg |
1.1 |
}
|
| 285 |
|
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|
| 286 |
|
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|
| 287 |
greg |
2.9 |
void
|
| 288 |
greg |
2.14 |
comperrs( /* compute initial error estimates */
|
| 289 |
|
|
AMBSAMP *da, /* assumes standard ordering */
|
| 290 |
|
|
register AMBHEMI *hp
|
| 291 |
|
|
)
|
| 292 |
greg |
1.1 |
{
|
| 293 |
|
|
double b, b2;
|
| 294 |
|
|
int i, j;
|
| 295 |
|
|
register AMBSAMP *dp;
|
| 296 |
|
|
/* sum differences from neighbors */
|
| 297 |
|
|
dp = da;
|
| 298 |
|
|
for (i = 0; i < hp->nt; i++)
|
| 299 |
|
|
for (j = 0; j < hp->np; j++) {
|
| 300 |
greg |
1.6 |
#ifdef DEBUG
|
| 301 |
|
|
if (dp->t != i || dp->p != j)
|
| 302 |
|
|
error(CONSISTENCY,
|
| 303 |
|
|
"division order in comperrs");
|
| 304 |
|
|
#endif
|
| 305 |
greg |
1.1 |
b = bright(dp[0].v);
|
| 306 |
|
|
if (i > 0) { /* from above */
|
| 307 |
|
|
b2 = bright(dp[-hp->np].v) - b;
|
| 308 |
|
|
b2 *= b2 * 0.25;
|
| 309 |
|
|
dp[0].k += b2;
|
| 310 |
|
|
dp[-hp->np].k += b2;
|
| 311 |
|
|
}
|
| 312 |
|
|
if (j > 0) { /* from behind */
|
| 313 |
|
|
b2 = bright(dp[-1].v) - b;
|
| 314 |
|
|
b2 *= b2 * 0.25;
|
| 315 |
|
|
dp[0].k += b2;
|
| 316 |
|
|
dp[-1].k += b2;
|
| 317 |
greg |
1.4 |
} else { /* around */
|
| 318 |
|
|
b2 = bright(dp[hp->np-1].v) - b;
|
| 319 |
greg |
1.1 |
b2 *= b2 * 0.25;
|
| 320 |
|
|
dp[0].k += b2;
|
| 321 |
greg |
1.4 |
dp[hp->np-1].k += b2;
|
| 322 |
greg |
1.1 |
}
|
| 323 |
|
|
dp++;
|
| 324 |
|
|
}
|
| 325 |
|
|
/* divide by number of neighbors */
|
| 326 |
|
|
dp = da;
|
| 327 |
|
|
for (j = 0; j < hp->np; j++) /* top row */
|
| 328 |
|
|
(dp++)->k *= 1.0/3.0;
|
| 329 |
|
|
if (hp->nt < 2)
|
| 330 |
|
|
return;
|
| 331 |
|
|
for (i = 1; i < hp->nt-1; i++) /* central region */
|
| 332 |
|
|
for (j = 0; j < hp->np; j++)
|
| 333 |
|
|
(dp++)->k *= 0.25;
|
| 334 |
|
|
for (j = 0; j < hp->np; j++) /* bottom row */
|
| 335 |
|
|
(dp++)->k *= 1.0/3.0;
|
| 336 |
|
|
}
|
| 337 |
|
|
|
| 338 |
|
|
|
| 339 |
greg |
2.9 |
void
|
| 340 |
greg |
2.14 |
posgradient( /* compute position gradient */
|
| 341 |
|
|
FVECT gv,
|
| 342 |
|
|
AMBSAMP *da, /* assumes standard ordering */
|
| 343 |
|
|
register AMBHEMI *hp
|
| 344 |
|
|
)
|
| 345 |
greg |
1.1 |
{
|
| 346 |
greg |
1.2 |
register int i, j;
|
| 347 |
greg |
2.2 |
double nextsine, lastsine, b, d;
|
| 348 |
greg |
1.2 |
double mag0, mag1;
|
| 349 |
|
|
double phi, cosp, sinp, xd, yd;
|
| 350 |
|
|
register AMBSAMP *dp;
|
| 351 |
|
|
|
| 352 |
|
|
xd = yd = 0.0;
|
| 353 |
|
|
for (j = 0; j < hp->np; j++) {
|
| 354 |
|
|
dp = da + j;
|
| 355 |
|
|
mag0 = mag1 = 0.0;
|
| 356 |
greg |
2.2 |
lastsine = 0.0;
|
| 357 |
greg |
1.2 |
for (i = 0; i < hp->nt; i++) {
|
| 358 |
|
|
#ifdef DEBUG
|
| 359 |
|
|
if (dp->t != i || dp->p != j)
|
| 360 |
|
|
error(CONSISTENCY,
|
| 361 |
|
|
"division order in posgradient");
|
| 362 |
|
|
#endif
|
| 363 |
|
|
b = bright(dp->v);
|
| 364 |
|
|
if (i > 0) {
|
| 365 |
|
|
d = dp[-hp->np].r;
|
| 366 |
|
|
if (dp[0].r > d) d = dp[0].r;
|
| 367 |
greg |
2.2 |
/* sin(t)*cos(t)^2 */
|
| 368 |
|
|
d *= lastsine * (1.0 - (double)i/hp->nt);
|
| 369 |
greg |
1.2 |
mag0 += d*(b - bright(dp[-hp->np].v));
|
| 370 |
|
|
}
|
| 371 |
greg |
2.2 |
nextsine = sqrt((double)(i+1)/hp->nt);
|
| 372 |
greg |
1.2 |
if (j > 0) {
|
| 373 |
|
|
d = dp[-1].r;
|
| 374 |
|
|
if (dp[0].r > d) d = dp[0].r;
|
| 375 |
greg |
2.2 |
mag1 += d * (nextsine - lastsine) *
|
| 376 |
|
|
(b - bright(dp[-1].v));
|
| 377 |
greg |
1.2 |
} else {
|
| 378 |
|
|
d = dp[hp->np-1].r;
|
| 379 |
|
|
if (dp[0].r > d) d = dp[0].r;
|
| 380 |
greg |
2.2 |
mag1 += d * (nextsine - lastsine) *
|
| 381 |
|
|
(b - bright(dp[hp->np-1].v));
|
| 382 |
greg |
1.2 |
}
|
| 383 |
|
|
dp += hp->np;
|
| 384 |
greg |
2.2 |
lastsine = nextsine;
|
| 385 |
greg |
1.2 |
}
|
| 386 |
greg |
2.2 |
mag0 *= 2.0*PI / hp->np;
|
| 387 |
greg |
1.2 |
phi = 2.0*PI * (double)j/hp->np;
|
| 388 |
gwlarson |
2.8 |
cosp = tcos(phi); sinp = tsin(phi);
|
| 389 |
greg |
1.2 |
xd += mag0*cosp - mag1*sinp;
|
| 390 |
|
|
yd += mag0*sinp + mag1*cosp;
|
| 391 |
|
|
}
|
| 392 |
|
|
for (i = 0; i < 3; i++)
|
| 393 |
greg |
2.16 |
gv[i] = (xd*hp->ux[i] + yd*hp->uy[i])*(hp->nt*hp->np)/PI;
|
| 394 |
greg |
1.1 |
}
|
| 395 |
|
|
|
| 396 |
|
|
|
| 397 |
greg |
2.9 |
void
|
| 398 |
greg |
2.14 |
dirgradient( /* compute direction gradient */
|
| 399 |
|
|
FVECT gv,
|
| 400 |
|
|
AMBSAMP *da, /* assumes standard ordering */
|
| 401 |
|
|
register AMBHEMI *hp
|
| 402 |
|
|
)
|
| 403 |
greg |
1.1 |
{
|
| 404 |
greg |
1.2 |
register int i, j;
|
| 405 |
|
|
double mag;
|
| 406 |
|
|
double phi, xd, yd;
|
| 407 |
|
|
register AMBSAMP *dp;
|
| 408 |
|
|
|
| 409 |
|
|
xd = yd = 0.0;
|
| 410 |
|
|
for (j = 0; j < hp->np; j++) {
|
| 411 |
|
|
dp = da + j;
|
| 412 |
|
|
mag = 0.0;
|
| 413 |
|
|
for (i = 0; i < hp->nt; i++) {
|
| 414 |
|
|
#ifdef DEBUG
|
| 415 |
|
|
if (dp->t != i || dp->p != j)
|
| 416 |
|
|
error(CONSISTENCY,
|
| 417 |
|
|
"division order in dirgradient");
|
| 418 |
|
|
#endif
|
| 419 |
greg |
2.2 |
/* tan(t) */
|
| 420 |
|
|
mag += bright(dp->v)/sqrt(hp->nt/(i+.5) - 1.0);
|
| 421 |
greg |
1.2 |
dp += hp->np;
|
| 422 |
|
|
}
|
| 423 |
|
|
phi = 2.0*PI * (j+.5)/hp->np + PI/2.0;
|
| 424 |
gwlarson |
2.8 |
xd += mag * tcos(phi);
|
| 425 |
|
|
yd += mag * tsin(phi);
|
| 426 |
greg |
1.2 |
}
|
| 427 |
|
|
for (i = 0; i < 3; i++)
|
| 428 |
greg |
2.16 |
gv[i] = xd*hp->ux[i] + yd*hp->uy[i];
|
| 429 |
greg |
1.1 |
}
|