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	finish_apeirogon now works with ultra-ideal center
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		| @@ -355,7 +355,19 @@ void geometry_information::finish_apeirogon(hyperpoint center) { | ||||
|   last->she = isize(hpc); | ||||
|   hyperpoint b = hpc.back(); | ||||
|   for(int i=1; i<15; i++) hpcpush(towards_inf(b, center, i)); | ||||
|   hpcpush(normalize(1e-9 * C0 + center)); | ||||
|   hyperpoint h = 1e-9 * C0 + center; | ||||
|   if(material(h) > 0) | ||||
|     hpcpush(normalize(h)); | ||||
|   else { | ||||
|     ld left = -atan2(towards_inf(b, center, 15)); | ||||
|     ld right = -atan2(towards_inf(hpc[last->s], center, 15)); | ||||
|     if(right > left + 180*degree) right -= 360*degree; | ||||
|     if(right < left - 180*degree) right += 360*degree; | ||||
|     hyperpoint l1 = towards_inf(b, center, 15); l1 /= l1[2]; | ||||
|     hyperpoint l2 = xspinpush0(left, 15); l2 /= l2[2]; | ||||
|     /* call hpc.push_back directly to avoid adding points */ | ||||
|     for(int i=0; i<=10; i++) hpc.push_back(xspinpush0(lerp(left, right, i/10.), 15)); | ||||
|     } | ||||
|   for(int i=15; i>=1; i--) hpcpush(towards_inf(hpc[last->s], center, i)); | ||||
|   hpcpush(hpc[last->s]); | ||||
|   } | ||||
|   | ||||
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