| 1 | /* | 
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| 2 | *+ | 
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| 3 | *  Name: | 
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| 4 | *     palAltaz | 
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| 5 |  | 
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| 6 | *  Purpose: | 
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| 7 | *     Positions, velocities and accelerations for an altazimuth telescope mount | 
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| 8 |  | 
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| 9 | *  Language: | 
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| 10 | *     Starlink ANSI C | 
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| 11 |  | 
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| 12 | *  Type of Module: | 
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| 13 | *     Library routine | 
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| 14 |  | 
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| 15 | *  Invocation: | 
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| 16 | *     palAltaz ( double ha, double dec, double phi, | 
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| 17 | *                double *az, double *azd, double *azdd, | 
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| 18 | *                double *el, double *eld, double *eldd, | 
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| 19 | *                double *pa, double *pad, double *padd ); | 
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| 20 |  | 
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| 21 | *  Arguments: | 
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| 22 | *     ha = double (Given) | 
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| 23 | *        Hour angle (radians) | 
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| 24 | *     dec = double (Given) | 
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| 25 | *        Declination (radians) | 
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| 26 | *     phi = double (Given) | 
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| 27 | *        Observatory latitude (radians) | 
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| 28 | *     az = double * (Returned) | 
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| 29 | *        Azimuth (radians) | 
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| 30 | *     azd = double * (Returned) | 
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| 31 | *        Azimuth velocity (radians per radian of HA) | 
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| 32 | *     azdd = double * (Returned) | 
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| 33 | *        Azimuth acceleration (radians per radian of HA squared) | 
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| 34 | *     el = double * (Returned) | 
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| 35 | *        Elevation (radians) | 
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| 36 | *     eld = double * (Returned) | 
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| 37 | *        Elevation velocity (radians per radian of HA) | 
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| 38 | *     eldd = double * (Returned) | 
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| 39 | *        Elevation acceleration (radians per radian of HA squared) | 
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| 40 | *     pa = double * (Returned) | 
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| 41 | *        Parallactic angle (radians) | 
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| 42 | *     pad = double * (Returned) | 
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| 43 | *        Parallactic angle velocity (radians per radian of HA) | 
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| 44 | *     padd = double * (Returned) | 
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| 45 | *        Parallactic angle acceleration (radians per radian of HA squared) | 
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| 46 |  | 
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| 47 |  | 
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| 48 | *  Description: | 
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| 49 | *     Positions, velocities and accelerations for an altazimuth | 
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| 50 | *     telescope mount. | 
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| 51 |  | 
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| 52 | *  Authors: | 
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| 53 | *     PTW: P. T. Wallace | 
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| 54 | *     TIMJ: Tim Jenness (Cornell) | 
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| 55 | *     {enter_new_authors_here} | 
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| 56 |  | 
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| 57 | *  Notes: | 
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| 58 | *     - Natural units are used throughout.  HA, DEC, PHI, AZ, EL | 
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| 59 | *       and ZD are in radians.  The velocities and accelerations | 
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| 60 | *       assume constant declination and constant rate of change of | 
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| 61 | *       hour angle (as for tracking a star);  the units of AZD, ELD | 
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| 62 | *       and PAD are radians per radian of HA, while the units of AZDD, | 
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| 63 | *       ELDD and PADD are radians per radian of HA squared.  To | 
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| 64 | *       convert into practical degree- and second-based units: | 
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| 65 | * | 
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| 66 | *         angles * 360/2pi -> degrees | 
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| 67 | *         velocities * (2pi/86400)*(360/2pi) -> degree/sec | 
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| 68 | *         accelerations * ((2pi/86400)**2)*(360/2pi) -> degree/sec/sec | 
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| 69 | * | 
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| 70 | *       Note that the seconds here are sidereal rather than SI.  One | 
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| 71 | *       sidereal second is about 0.99727 SI seconds. | 
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| 72 | * | 
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| 73 | *       The velocity and acceleration factors assume the sidereal | 
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| 74 | *       tracking case.  Their respective numerical values are (exactly) | 
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| 75 | *       1/240 and (approximately) 1/3300236.9. | 
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| 76 | * | 
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| 77 | *     - Azimuth is returned in the range 0-2pi;  north is zero, | 
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| 78 | *       and east is +pi/2.  Elevation and parallactic angle are | 
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| 79 | *       returned in the range +/-pi.  Parallactic angle is +ve for | 
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| 80 | *       a star west of the meridian and is the angle NP-star-zenith. | 
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| 81 | * | 
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| 82 | *     - The latitude is geodetic as opposed to geocentric.  The | 
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| 83 | *       hour angle and declination are topocentric.  Refraction and | 
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| 84 | *       deficiencies in the telescope mounting are ignored.  The | 
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| 85 | *       purpose of the routine is to give the general form of the | 
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| 86 | *       quantities.  The details of a real telescope could profoundly | 
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| 87 | *       change the results, especially close to the zenith. | 
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| 88 | * | 
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| 89 | *     - No range checking of arguments is carried out. | 
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| 90 | * | 
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| 91 | *     - In applications which involve many such calculations, rather | 
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| 92 | *       than calling the present routine it will be more efficient to | 
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| 93 | *       use inline code, having previously computed fixed terms such | 
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| 94 | *       as sine and cosine of latitude, and (for tracking a star) | 
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| 95 | *       sine and cosine of declination. | 
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| 96 |  | 
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| 97 | *  History: | 
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| 98 | *     2014-09-30 (TIMJ): | 
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| 99 | *        Initial version. Ported from Fortran SLA | 
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| 100 | *     {enter_further_changes_here} | 
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| 101 |  | 
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| 102 | *  Copyright: | 
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| 103 | *     Copyright (C) 2004 P.T. Wallace | 
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| 104 | *     Copyright (C) 2014 Cornell University | 
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| 105 | *     All Rights Reserved. | 
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| 106 |  | 
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| 107 | *  Licence: | 
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| 108 | *     This program is free software; you can redistribute it and/or | 
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| 109 | *     modify it under the terms of the GNU General Public License as | 
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| 110 | *     published by the Free Software Foundation; either version 3 of | 
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| 111 | *     the License, or (at your option) any later version. | 
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| 112 | * | 
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| 113 | *     This program is distributed in the hope that it will be | 
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| 114 | *     useful, but WITHOUT ANY WARRANTY; without even the implied | 
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| 115 | *     warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR | 
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| 116 | *     PURPOSE. See the GNU General Public License for more details. | 
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| 117 | * | 
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| 118 | *     You should have received a copy of the GNU General Public License | 
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| 119 | *     along with this program.  If not, see <http://www.gnu.org/licenses/>. | 
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| 120 |  | 
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| 121 | *  Bugs: | 
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| 122 | *     {note_any_bugs_here} | 
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| 123 | *- | 
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| 124 | */ | 
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| 125 |  | 
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| 126 | #include <math.h> | 
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| 127 |  | 
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| 128 | #include "pal.h" | 
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| 129 | #include "palmac.h" | 
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| 130 |  | 
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| 131 | void | 
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| 132 | palAltaz ( double ha, double dec, double phi, | 
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| 133 | double *az, double *azd, double *azdd, | 
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| 134 | double *el, double *eld, double *eldd, | 
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| 135 | double *pa, double *pad, double *padd ) { | 
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| 136 |  | 
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| 137 | const double TINY = 1E-30; | 
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| 138 |  | 
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| 139 | double sh,ch,sd,cd,sp,cp,chcd,sdcp,x,y,z,rsq,r,a,e,c,s, | 
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| 140 | q,qd,ad,ed,edr,add,edd,qdd; | 
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| 141 |  | 
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| 142 |  | 
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| 143 | /*  Useful functions */ | 
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| 144 | sh=sin(ha); | 
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| 145 | ch=cos(ha); | 
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| 146 | sd=sin(dec); | 
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| 147 | cd=cos(dec); | 
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| 148 | sp=sin(phi); | 
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| 149 | cp=cos(phi); | 
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| 150 | chcd=ch*cd; | 
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| 151 | sdcp=sd*cp; | 
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| 152 | x=-chcd*sp+sdcp; | 
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| 153 | y=-sh*cd; | 
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| 154 | z=chcd*cp+sd*sp; | 
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| 155 | rsq=x*x+y*y; | 
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| 156 | r=sqrt(rsq); | 
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| 157 |  | 
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| 158 | /*  Azimuth and elevation */ | 
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| 159 | if (rsq == 0.0) { | 
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| 160 | a=0.0; | 
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| 161 | } else { | 
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| 162 | a=atan2(y,x); | 
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| 163 | } | 
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| 164 | if (a < 0.0) a += PAL__D2PI; | 
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| 165 | e=atan2(z,r); | 
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| 166 |  | 
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| 167 | /*  Parallactic angle */ | 
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| 168 | c=cd*sp-ch*sdcp; | 
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| 169 | s=sh*cp; | 
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| 170 | if (c*c+s*s > 0) { | 
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| 171 | q=atan2(s,c); | 
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| 172 | } else { | 
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| 173 | q= PAL__DPI - ha; | 
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| 174 | } | 
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| 175 |  | 
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| 176 | /*  Velocities and accelerations (clamped at zenith/nadir) */ | 
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| 177 | if (rsq < TINY) { | 
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| 178 | rsq=TINY; | 
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| 179 | r=sqrt(rsq); | 
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| 180 | } | 
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| 181 | qd=-x*cp/rsq; | 
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| 182 | ad=sp+z*qd; | 
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| 183 | ed=cp*y/r; | 
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| 184 | edr=ed/r; | 
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| 185 | add=edr*(z*sp+(2.0-rsq)*qd); | 
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| 186 | edd=-r*qd*ad; | 
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| 187 | qdd=edr*(sp+2.0*z*qd); | 
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| 188 |  | 
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| 189 | /*  Results */ | 
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| 190 | *az=a; | 
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| 191 | *azd=ad; | 
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| 192 | *azdd=add; | 
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| 193 | *el=e; | 
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| 194 | *eld=ed; | 
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| 195 | *eldd=edd; | 
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| 196 | *pa=q; | 
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| 197 | *pad=qd; | 
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| 198 | *padd=qdd; | 
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| 199 |  | 
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| 200 | } | 
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