| 78 |
|
{ |
| 79 |
|
register NORMDAT *np = nnp; |
| 80 |
|
double ldot; |
| 81 |
< |
double ldiff; |
| 81 |
> |
double lrdiff, ltdiff; |
| 82 |
|
double dtmp, d2; |
| 83 |
|
FVECT vtmp; |
| 84 |
|
COLOR ctmp; |
| 91 |
|
return; /* wrong side */ |
| 92 |
|
|
| 93 |
|
/* Fresnel estimate */ |
| 94 |
< |
ldiff = np->rdiff; |
| 95 |
< |
if (np->specfl & SP_PURE && (np->rspec > FTINY) & (ldiff > FTINY)) |
| 96 |
< |
ldiff *= 1. - FRESNE(fabs(ldot)); |
| 94 |
> |
lrdiff = np->rdiff; |
| 95 |
> |
ltdiff = np->tdiff; |
| 96 |
> |
if (np->specfl & SP_PURE && np->rspec > FTINY && |
| 97 |
> |
(lrdiff > FTINY) | (ltdiff > FTINY)) { |
| 98 |
> |
dtmp = 1. - FRESNE(fabs(ldot)); |
| 99 |
> |
lrdiff *= dtmp; |
| 100 |
> |
ltdiff *= dtmp; |
| 101 |
> |
} |
| 102 |
|
|
| 103 |
< |
if (ldot > FTINY && ldiff > FTINY) { |
| 103 |
> |
if (ldot > FTINY && lrdiff > FTINY) { |
| 104 |
|
/* |
| 105 |
|
* Compute and add diffuse reflected component to returned |
| 106 |
|
* color. The diffuse reflected component will always be |
| 107 |
|
* modified by the color of the material. |
| 108 |
|
*/ |
| 109 |
|
copycolor(ctmp, np->mcolor); |
| 110 |
< |
dtmp = ldot * omega * ldiff * (1.0/PI); |
| 110 |
> |
dtmp = ldot * omega * lrdiff * (1.0/PI); |
| 111 |
|
scalecolor(ctmp, dtmp); |
| 112 |
|
addcolor(cval, ctmp); |
| 113 |
|
} |
| 138 |
|
addcolor(cval, ctmp); |
| 139 |
|
} |
| 140 |
|
} |
| 141 |
< |
if (ldot < -FTINY && np->tdiff > FTINY) { |
| 141 |
> |
if (ldot < -FTINY && ltdiff > FTINY) { |
| 142 |
|
/* |
| 143 |
|
* Compute diffuse transmission. |
| 144 |
|
*/ |
| 145 |
|
copycolor(ctmp, np->mcolor); |
| 146 |
< |
dtmp = -ldot * omega * np->tdiff * (1.0/PI); |
| 146 |
> |
dtmp = -ldot * omega * ltdiff * (1.0/PI); |
| 147 |
|
scalecolor(ctmp, dtmp); |
| 148 |
|
addcolor(cval, ctmp); |
| 149 |
|
} |