mirror of
https://github.com/9fans/plan9port.git
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247 lines
5.4 KiB
C
247 lines
5.4 KiB
C
#include <u.h>
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#include <libc.h>
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#include <bio.h>
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#include "sky.h"
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void
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amdinv(Header *h, Angle ra, Angle dec, float mag, float col)
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{
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int i, max_iterations;
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float tolerance;
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float object_x, object_y, delta_x, delta_y, f, fx, fy, g, gx, gy;
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float x1, x2, x3, x4;
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float y1, y2, y3, y4;
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/*
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* Initialize
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*/
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max_iterations = 50;
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tolerance = 0.0000005;
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/*
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* Convert RA and Dec to St.coords
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*/
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traneqstd(h, ra, dec);
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/*
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* Set initial value for x,y
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*/
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object_x = h->xi/h->param[Ppltscale];
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object_y = h->eta/h->param[Ppltscale];
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/*
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* Iterate by Newtons method
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*/
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for(i = 0; i < max_iterations; i++) {
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/*
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* X plate model
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*/
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x1 = object_x;
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x2 = x1 * object_x;
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x3 = x1 * object_x;
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x4 = x1 * object_x;
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y1 = object_y;
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y2 = y1 * object_y;
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y3 = y1 * object_y;
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y4 = y1 * object_y;
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f =
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h->param[Pamdx1] * x1 +
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h->param[Pamdx2] * y1 +
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h->param[Pamdx3] +
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h->param[Pamdx4] * x2 +
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h->param[Pamdx5] * x1*y1 +
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h->param[Pamdx6] * y2 +
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h->param[Pamdx7] * (x2+y2) +
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h->param[Pamdx8] * x2*x1 +
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h->param[Pamdx9] * x2*y1 +
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h->param[Pamdx10] * x1*y2 +
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h->param[Pamdx11] * y3 +
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h->param[Pamdx12] * x1* (x2+y2) +
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h->param[Pamdx13] * x1 * (x2+y2) * (x2+y2) +
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h->param[Pamdx14] * mag +
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h->param[Pamdx15] * mag*mag +
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h->param[Pamdx16] * mag*mag*mag +
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h->param[Pamdx17] * mag*x1 +
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h->param[Pamdx18] * mag * (x2+y2) +
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h->param[Pamdx19] * mag*x1 * (x2+y2) +
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h->param[Pamdx20] * col;
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/*
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* Derivative of X model wrt x
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*/
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fx =
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h->param[Pamdx1] +
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h->param[Pamdx4] * 2*x1 +
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h->param[Pamdx5] * y1 +
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h->param[Pamdx7] * 2*x1 +
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h->param[Pamdx8] * 3*x2 +
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h->param[Pamdx9] * 2*x1*y1 +
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h->param[Pamdx10] * y2 +
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h->param[Pamdx12] * (3*x2+y2) +
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h->param[Pamdx13] * (5*x4 + 6*x2*y2 + y4) +
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h->param[Pamdx17] * mag +
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h->param[Pamdx18] * mag*2*x1 +
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h->param[Pamdx19] * mag*(3*x2+y2);
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/*
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* Derivative of X model wrt y
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*/
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fy =
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h->param[Pamdx2] +
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h->param[Pamdx5] * x1 +
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h->param[Pamdx6] * 2*y1 +
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h->param[Pamdx7] * 2*y1 +
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h->param[Pamdx9] * x2 +
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h->param[Pamdx10] * x1*2*y1 +
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h->param[Pamdx11] * 3*y2 +
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h->param[Pamdx12] * 2*x1*y1 +
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h->param[Pamdx13] * 4*x1*y1* (x2+y2) +
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h->param[Pamdx18] * mag*2*y1 +
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h->param[Pamdx19] * mag*2*x1*y1;
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/*
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* Y plate model
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*/
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g =
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h->param[Pamdy1] * y1 +
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h->param[Pamdy2] * x1 +
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h->param[Pamdy3] +
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h->param[Pamdy4] * y2 +
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h->param[Pamdy5] * y1*x1 +
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h->param[Pamdy6] * x2 +
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h->param[Pamdy7] * (x2+y2) +
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h->param[Pamdy8] * y3 +
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h->param[Pamdy9] * y2*x1 +
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h->param[Pamdy10] * y1*x3 +
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h->param[Pamdy11] * x3 +
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h->param[Pamdy12] * y1 * (x2+y2) +
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h->param[Pamdy13] * y1 * (x2+y2) * (x2+y2) +
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h->param[Pamdy14] * mag +
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h->param[Pamdy15] * mag*mag +
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h->param[Pamdy16] * mag*mag*mag +
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h->param[Pamdy17] * mag*y1 +
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h->param[Pamdy18] * mag * (x2+y2) +
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h->param[Pamdy19] * mag*y1 * (x2+y2) +
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h->param[Pamdy20] * col;
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/*
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* Derivative of Y model wrt x
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*/
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gx =
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h->param[Pamdy2] +
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h->param[Pamdy5] * y1 +
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h->param[Pamdy6] * 2*x1 +
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h->param[Pamdy7] * 2*x1 +
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h->param[Pamdy9] * y2 +
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h->param[Pamdy10] * y1*2*x1 +
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h->param[Pamdy11] * 3*x2 +
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h->param[Pamdy12] * 2*x1*y1 +
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h->param[Pamdy13] * 4*x1*y1 * (x2+y2) +
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h->param[Pamdy18] * mag*2*x1 +
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h->param[Pamdy19] * mag*y1*2*x1;
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/*
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* Derivative of Y model wrt y
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*/
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gy =
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h->param[Pamdy1] +
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h->param[Pamdy4] * 2*y1 +
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h->param[Pamdy5] * x1 +
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h->param[Pamdy7] * 2*y1 +
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h->param[Pamdy8] * 3*y2 +
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h->param[Pamdy9] * 2*y1*x1 +
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h->param[Pamdy10] * x2 +
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h->param[Pamdy12] * 3*y2 +
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h->param[Pamdy13] * (5*y4 + 6*x2*y2 + x4) +
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h->param[Pamdy17] * mag +
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h->param[Pamdy18] * mag*2*y1 +
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h->param[Pamdy19] * mag*(x2 + 3*y2);
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f = f - h->xi;
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g = g - h->eta;
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delta_x = (-f*gy+g*fy) / (fx*gy-fy*gx);
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delta_y = (-g*fx+f*gx) / (fx*gy-fy*gx);
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object_x = object_x + delta_x;
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object_y = object_y + delta_y;
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if((fabs(delta_x) < tolerance) && (fabs(delta_y) < tolerance))
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break;
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}
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/*
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* Convert mm from plate center to pixels
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*/
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h->x = (h->param[Pppo3]-object_x*1000.0)/h->param[Pxpixelsz];
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h->y = (h->param[Pppo6]+object_y*1000.0)/h->param[Pypixelsz];
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}
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void
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ppoinv(Header *h, Angle ra, Angle dec)
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{
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/*
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* Convert RA and Dec to standard coords.
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*/
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traneqstd(h, ra, dec);
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/*
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* Convert st.coords from arcsec to radians
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*/
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h->xi /= ARCSECONDS_PER_RADIAN;
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h->eta /= ARCSECONDS_PER_RADIAN;
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/*
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* Compute PDS coordinates from solution
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*/
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h->x =
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h->param[Pppo1]*h->xi +
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h->param[Pppo2]*h->eta +
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h->param[Pppo3];
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h->y =
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h->param[Pppo4]*h->xi +
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h->param[Pppo5]*h->eta +
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h->param[Pppo6];
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/*
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* Convert x,y from microns to pixels
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*/
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h->x /= h->param[Pxpixelsz];
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h->y /= h->param[Pypixelsz];
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}
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void
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traneqstd(Header *h, Angle object_ra, Angle object_dec)
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{
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float div;
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/*
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* Find divisor
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*/
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div =
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(sin(object_dec)*sin(h->param[Ppltdec]) +
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cos(object_dec)*cos(h->param[Ppltdec]) *
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cos(object_ra - h->param[Ppltra]));
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/*
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* Compute standard coords and convert to arcsec
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*/
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h->xi = cos(object_dec) *
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sin(object_ra - h->param[Ppltra]) *
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ARCSECONDS_PER_RADIAN/div;
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h->eta = (sin(object_dec)*cos(h->param[Ppltdec])-
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cos(object_dec)*sin(h->param[Ppltdec])*
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cos(object_ra - h->param[Ppltra]))*
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ARCSECONDS_PER_RADIAN/div;
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}
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void
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xypos(Header *h, Angle ra, Angle dec, float mag, float col)
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{
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if (h->amdflag) {
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amdinv(h, ra, dec, mag, col);
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} else {
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ppoinv(h, ra, dec);
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}
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}
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