63 |
|
return(ill_horiz); |
64 |
|
if (v->vert >= 180.0-FTINY) |
65 |
|
return(ill_vert); |
66 |
< |
v->hn2 = 2.0 * tan(v->horiz*(PI/180.0/2.0)); |
67 |
< |
v->vn2 = 2.0 * tan(v->vert*(PI/180.0/2.0)); |
66 |
> |
v->hn2 = 2.0 * tan(v->horiz*(PI/360.)); |
67 |
> |
v->vn2 = 2.0 * tan(v->vert*(PI/360.)); |
68 |
|
break; |
69 |
|
case VT_CYL: /* cylindrical panorama */ |
70 |
|
if (v->horiz > 360.0+FTINY) |
72 |
|
if (v->vert >= 180.0-FTINY) |
73 |
|
return(ill_vert); |
74 |
|
v->hn2 = v->horiz * (PI/180.0); |
75 |
< |
v->vn2 = 2.0 * tan(v->vert*(PI/180.0/2.0)); |
75 |
> |
v->vn2 = 2.0 * tan(v->vert*(PI/360.)); |
76 |
|
break; |
77 |
|
case VT_ANG: /* angular fisheye */ |
78 |
|
if (v->horiz > 360.0+FTINY) |
87 |
|
return(ill_horiz); |
88 |
|
if (v->vert > 180.0+FTINY) |
89 |
|
return(ill_vert); |
90 |
< |
v->hn2 = 2.0 * sin(v->horiz*(PI/180.0/2.0)); |
91 |
< |
v->vn2 = 2.0 * sin(v->vert*(PI/180.0/2.0)); |
90 |
> |
v->hn2 = 2.0 * sin(v->horiz*(PI/360.)); |
91 |
> |
v->vn2 = 2.0 * sin(v->vert*(PI/360.)); |
92 |
|
break; |
93 |
|
case VT_PLS: /* planispheric fisheye */ |
94 |
|
if (v->horiz >= 360.0-FTINY) |
95 |
|
return(ill_horiz); |
96 |
|
if (v->vert >= 360.0-FTINY) |
97 |
|
return(ill_vert); |
98 |
< |
v->hn2 = 2.*sin(v->horiz*(PI/180.0/2.0)) / |
99 |
< |
(1.0 + cos(v->horiz*(PI/180.0/2.0))); |
100 |
< |
v->vn2 = 2.*sin(v->vert*(PI/180.0/2.0)) / |
101 |
< |
(1.0 + cos(v->vert*(PI/180.0/2.0))); |
98 |
> |
v->hn2 = 2.*sin(v->horiz*(PI/360.)) / |
99 |
> |
(1.0 + cos(v->horiz*(PI/360.))); |
100 |
> |
v->vn2 = 2.*sin(v->vert*(PI/360.)) / |
101 |
> |
(1.0 + cos(v->vert*(PI/360.))); |
102 |
|
break; |
103 |
|
default: |
104 |
|
return("unknown view type"); |
117 |
|
v->vn2 *= v->vn2; |
118 |
|
|
119 |
|
return(NULL); |
120 |
+ |
} |
121 |
+ |
|
122 |
+ |
|
123 |
+ |
char * |
124 |
+ |
cropview( /* crop a view to the indicated bounds */ |
125 |
+ |
VIEW *v, |
126 |
+ |
double x0, |
127 |
+ |
double y0, |
128 |
+ |
double x1, |
129 |
+ |
double y1 |
130 |
+ |
) |
131 |
+ |
{ |
132 |
+ |
static char ill_hemi[] = "illegal crop for hemispherical view"; |
133 |
+ |
double d; |
134 |
+ |
/* order crop extrema */ |
135 |
+ |
if (x0 > x1) { d=x0; x0=x1; x1=d; } |
136 |
+ |
if (y0 > y1) { d=y0; y0=y1; y1=d; } |
137 |
+ |
|
138 |
+ |
if ((x1-x0 <= FTINY) | (y1-y0 <= FTINY)) |
139 |
+ |
return("zero crop area"); |
140 |
+ |
|
141 |
+ |
d = x1 - x0; /* adjust horizontal size? */ |
142 |
+ |
if (!FABSEQ(d, 1.)) |
143 |
+ |
switch (v->type) { |
144 |
+ |
case VT_PER: |
145 |
+ |
v->horiz = 360./PI*atan( d*tan(PI/360.*v->horiz) ); |
146 |
+ |
break; |
147 |
+ |
case VT_PAR: |
148 |
+ |
case VT_ANG: |
149 |
+ |
case VT_CYL: |
150 |
+ |
v->horiz *= d; |
151 |
+ |
break; |
152 |
+ |
case VT_HEM: |
153 |
+ |
d *= sin(PI/360.*v->horiz); |
154 |
+ |
if (d > 1.) |
155 |
+ |
return(ill_hemi); |
156 |
+ |
v->horiz = 360./PI*asin( d ); |
157 |
+ |
break; |
158 |
+ |
case VT_PLS: |
159 |
+ |
d *= sin(PI/360.*v->horiz) / |
160 |
+ |
(1. + cos(PI/360.*v->horiz)); |
161 |
+ |
v->horiz = 360./PI*acos( (1. - d*d) / (1. + d*d) ); |
162 |
+ |
break; |
163 |
+ |
} |
164 |
+ |
|
165 |
+ |
d = y1 - y0; /* adjust vertical size? */ |
166 |
+ |
if (!FABSEQ(d, 1.)) |
167 |
+ |
switch (v->type) { |
168 |
+ |
case VT_PER: |
169 |
+ |
case VT_CYL: |
170 |
+ |
v->vert = 360./PI*atan( d*tan(PI/360.*v->vert) ); |
171 |
+ |
break; |
172 |
+ |
case VT_PAR: |
173 |
+ |
case VT_ANG: |
174 |
+ |
v->vert *= d; |
175 |
+ |
break; |
176 |
+ |
case VT_HEM: |
177 |
+ |
d *= sin(PI/360.*v->vert); |
178 |
+ |
if (d > 1.) |
179 |
+ |
return(ill_hemi); |
180 |
+ |
v->vert = 360./PI*asin( d ); |
181 |
+ |
break; |
182 |
+ |
case VT_PLS: |
183 |
+ |
d *= sin(PI/360.*v->vert) / |
184 |
+ |
(1. + cos(PI/360.*v->vert)); |
185 |
+ |
v->vert = 360./PI*acos( (1. - d*d) / (1. + d*d) ); |
186 |
+ |
break; |
187 |
+ |
} |
188 |
+ |
/* adjust offsets */ |
189 |
+ |
v->hoff = ((x0 + x1)*.5 - .5 + v->hoff) / (x1 - x0); |
190 |
+ |
v->voff = ((y0 + y1)*.5 - .5 + v->voff) / (y1 - y0); |
191 |
+ |
|
192 |
+ |
return(setview(v)); /* final error checks & set-up */ |
193 |
|
} |
194 |
|
|
195 |
|
|