| 1 | #include "slalib.h" | 
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| 2 | #include "slamac.h" | 
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| 3 | void slaClyd ( int iy, int im, int id, int *ny, int *nd, int *jstat ) | 
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| 4 | /* | 
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| 5 | **  - - - - - - - - | 
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| 6 | **   s l a C l y d | 
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| 7 | **  - - - - - - - - | 
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| 8 | ** | 
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| 9 | **  Gregorian calendar to year and day in year (in a Julian calendar | 
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| 10 | **  aligned to the 20th/21st century Gregorian calendar). | 
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| 11 | ** | 
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| 12 | **  Given: | 
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| 13 | **     iy,im,id     int    year, month, day in Gregorian calendar | 
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| 14 | ** | 
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| 15 | **  Returned: | 
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| 16 | **     ny          int    year (re-aligned Julian calendar) | 
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| 17 | **     nd          int    day in year (1 = January 1st) | 
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| 18 | **     jstat       int    status: | 
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| 19 | **                          0 = OK | 
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| 20 | **                          1 = bad year (before -4711) | 
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| 21 | **                          2 = bad month | 
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| 22 | **                          3 = bad day (but conversion performed) | 
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| 23 | ** | 
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| 24 | **  Notes: | 
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| 25 | ** | 
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| 26 | **  1  This routine exists to support the low-precision routines | 
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| 27 | **     slaEarth, slaMoon and slaEcor. | 
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| 28 | ** | 
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| 29 | **  2  Between 1900 March 1 and 2100 February 28 it returns answers | 
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| 30 | **     which are consistent with the ordinary Gregorian calendar. | 
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| 31 | **     Outside this range there will be a discrepancy which increases | 
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| 32 | **     by one day for every non-leap century year. | 
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| 33 | ** | 
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| 34 | **  3  The essence of the algorithm is first to express the Gregorian | 
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| 35 | **     date as a Julian Day Number and then to convert this back to | 
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| 36 | **     a Julian calendar date, with day-in-year instead of month and | 
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| 37 | **     day.  See 12.92-1 and 12.95-1 in the reference. | 
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| 38 | ** | 
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| 39 | **  Reference:  Explanatory Supplement to the Astronomical Almanac, | 
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| 40 | **              ed P.K.Seidelmann, University Science Books (1992), | 
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| 41 | **              p604-606. | 
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| 42 | ** | 
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| 43 | **  Last revision:   26 November 1994 | 
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| 44 | ** | 
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| 45 | **  Copyright P.T.Wallace.  All rights reserved. | 
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| 46 | */ | 
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| 47 | { | 
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| 48 | long i, j, k, l, n, iyL, imL; | 
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| 49 |  | 
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| 50 | /* Month lengths in days */ | 
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| 51 | static int mtab[12] = { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }; | 
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| 52 |  | 
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| 53 |  | 
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| 54 |  | 
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| 55 | /* Validate year */ | 
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| 56 | if ( iy < -4711 ) { *jstat = 1; return; } | 
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| 57 |  | 
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| 58 | /* Validate month */ | 
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| 59 | if ( ( im < 1 ) || ( im > 12 ) ) { *jstat = 2; return; } | 
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| 60 |  | 
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| 61 | /* Allow for (Gregorian) leap year */ | 
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| 62 | mtab[1] = ( ( ( iy % 4 ) == 0 ) && | 
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| 63 | ( ( ( iy % 100 ) != 0 ) || ( ( iy % 400 ) == 0 ) ) ) ? | 
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| 64 | 29 : 28; | 
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| 65 |  | 
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| 66 | /* Validate day */ | 
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| 67 | *jstat = ( id < 1 || id > mtab[im-1] ) ? 3 : 0; | 
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| 68 |  | 
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| 69 | /* Perform the conversion */ | 
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| 70 | iyL = (long) iy; | 
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| 71 | imL = (long) im; | 
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| 72 | i = ( 14 - imL ) /12L; | 
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| 73 | k = iyL - i; | 
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| 74 | j = ( 1461L * ( k + 4800L ) ) / 4L | 
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| 75 | + ( 367L * ( imL - 2L + 12L * i ) ) / 12L | 
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| 76 | - ( 3L * ( ( k + 4900L ) / 100L ) ) / 4L + (long) id - 30660L; | 
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| 77 | k = ( j - 1L ) / 1461L; | 
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| 78 | l = j - 1461L * k; | 
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| 79 | n = ( l - 1L ) / 365L - l / 1461L; | 
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| 80 | j = ( ( 80L * ( l - 365L * n + 30L ) ) / 2447L ) / 11L; | 
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| 81 | i = n + j; | 
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| 82 | *nd = 59 + (int) ( l -365L * i + ( ( 4L - n ) / 4L ) * ( 1L - j ) ); | 
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| 83 | *ny = (int) ( 4L * k + i ) - 4716; | 
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| 84 | } | 
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