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root/radiance/ray/src/gen/skybright.cal
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Comparing ray/src/gen/skybright.cal (file contents):
Revision 2.4 by greg, Mon Jun 7 13:08:58 1993 UTC vs.
Revision 2.5 by greg, Fri Nov 5 17:25:37 1993 UTC

# Line 3 | Line 3
3   {
4       Sky brightness function for sunny and cloudy skies.
5  
6        6/6/86
7
6       Additional arguments required for calculation of skybright:
7  
8 <        A1                      - boolean, positive for cloudy sky
9 <                                  (A1>=2 for uniform sky)
8 >        A1                      - 1 for CIE clear, 2 for CIE overcast,
9 >                                  3 for uniform, 4 for CIE intermediate
10          A2                      - zenith brightness
11          A3                      - ground plane brightness
12          A4                      - normalization factor based on sun direction
13          A5,A6,A7                - sun direction
14   }
15  
16 < skybright = wmean((Dz+1.01)^10, if(A1, cloudysky, sunnysky),
16 > skybr = wmean((Dz+1.01)^10,
17 >                select(A1, sunnysky, cloudysky, unifsky, intersky),
18                  (Dz+1.01)^-10, A3);
19  
20   wmean(a, x, b, y) = (a*x + b*y) / (a + b);
21  
22 < cloudysky = A2 * if(A1-1.5, 1, (1 + 2*Dz)/3);
24 <
25 < sunnysky = A2 * (.91 + 10*exp(-3*Acos(cosgamma)) + .45*cosgamma*cosgamma)
22 > sunnysky = A2 * (.91 + 10*exp(-3*gamma) + .45*cosgamma*cosgamma)
23                *  if( Dz - .01, 1.0 - exp(-.32/Dz), 1.0) / A4;
24  
25 + cloudysky = A2 * (1 + 2*Dz)/3;
26 +
27 + unifsky = A2;
28 +
29 + intersky = A2 * ( (1.35*sin(5.631-3.59*eta)+3.12)*sin(4.396-2.6*zt)
30 +                        + 6.37 - eta ) / 2.326 *
31 +                exp(gamma*-.563*((2.629-eta)*(1.562-zt)+.812)) / A4;
32 +
33   cosgamma = Dx*A5 + Dy*A6 + Dz*A7;
34 +
35 + gamma = Acos(cosgamma);         { angle from sun to this point in sky }
36 +
37 + zt = Acos(A7);                  { angle from zenith to sun }
38 +
39 + eta = Acos(Dz);                 { angle from zenith to this point in sky }

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