| 1 | #include "slalib.h"
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| 2 | #include "slamac.h"
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| 3 | void slaDc62s ( double v[6], double *a, double *b, double *r,
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| 4 | double *ad, double *bd, double *rd )
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| 5 | /*
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| 6 | ** - - - - - - - - -
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| 7 | ** s l a D c 6 2 s
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| 8 | ** - - - - - - - - -
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| 9 | **
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| 10 | ** Conversion of position & velocity in Cartesian coordinates
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| 11 | ** to spherical coordinates.
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| 12 | **
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| 13 | ** (double precision)
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| 14 | **
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| 15 | ** Given:
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| 16 | ** v double[6] Cartesian position & velocity vector
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| 17 | **
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| 18 | ** Returned:
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| 19 | ** *a double longitude (radians)
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| 20 | ** *b double latitude (radians)
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| 21 | ** *r double radial coordinate
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| 22 | ** *ad double longitude derivative (radians per unit time)
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| 23 | ** *bd double latitude derivative (radians per unit time)
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| 24 | ** *rd double radial derivative
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| 25 | **
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| 26 | ** Last revision: 11 June 1998
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| 27 | **
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| 28 | ** Copyright P.T.Wallace. All rights reserved.
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| 29 | */
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| 30 | {
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| 31 | double x, y, z, xd, yd, zd, rxy2, rxy, r2, xyp;
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| 32 |
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| 33 |
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| 34 | /* Components of position/velocity vector. */
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| 35 | x = v[0];
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| 36 | y = v[1];
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| 37 | z = v[2];
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| 38 | xd = v[3];
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| 39 | yd = v[4];
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| 40 | zd = v[5];
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| 41 |
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| 42 | /* Component of R in XY plane squared. */
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| 43 | rxy2 = x * x + y * y;
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| 44 |
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| 45 | /* Modulus squared, with protection against null vector. */
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| 46 | if ( ( r2 = rxy2 + z * z ) == 0.0 ) {
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| 47 | x = xd;
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| 48 | y = yd;
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| 49 | z = zd;
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| 50 | rxy2 = x * x + y * y;
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| 51 | r2 = rxy2 + z * z;
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| 52 | }
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| 53 |
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| 54 | /* Position and velocity in spherical coordinates. */
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| 55 | rxy = sqrt ( rxy2 );
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| 56 | xyp = x * xd + y * yd;
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| 57 | if ( rxy2 != 0.0 ) {
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| 58 | *a = atan2 ( y, x );
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| 59 | *b = atan2 ( z, rxy );
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| 60 | *ad = ( x * yd - y * xd ) / rxy2;
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| 61 | *bd = ( zd * rxy2 - z * xyp ) / ( r2 * rxy );
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| 62 | } else {
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| 63 | *a = 0.0;
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| 64 | *b = ( z != 0.0 ) ? atan2 ( z, rxy ) : 0.0;
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| 65 | *ad = 0.0;
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| 66 | *bd = 0.0;
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| 67 | }
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| 68 | *rd = ( ( *r = sqrt ( r2 ) ) != 0.0 ) ? ( xyp + z * zd ) / ( *r ) : 0.0;
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| 69 | }
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