xref: /dflybsd-src/contrib/mpfr/src/cosh.c (revision 2786097444a0124b5d33763854de247e230c6629)
14a238c70SJohn Marino /* mpfr_cosh -- hyperbolic cosine
24a238c70SJohn Marino 
3*ab6d115fSJohn Marino Copyright 2001, 2002, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012, 2013 Free Software Foundation, Inc.
4*ab6d115fSJohn Marino Contributed by the AriC and Caramel projects, INRIA.
54a238c70SJohn Marino 
64a238c70SJohn Marino This file is part of the GNU MPFR Library.
74a238c70SJohn Marino 
84a238c70SJohn Marino The GNU MPFR Library is free software; you can redistribute it and/or modify
94a238c70SJohn Marino it under the terms of the GNU Lesser General Public License as published by
104a238c70SJohn Marino the Free Software Foundation; either version 3 of the License, or (at your
114a238c70SJohn Marino option) any later version.
124a238c70SJohn Marino 
134a238c70SJohn Marino The GNU MPFR Library is distributed in the hope that it will be useful, but
144a238c70SJohn Marino WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
154a238c70SJohn Marino or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU Lesser General Public
164a238c70SJohn Marino License for more details.
174a238c70SJohn Marino 
184a238c70SJohn Marino You should have received a copy of the GNU Lesser General Public License
194a238c70SJohn Marino along with the GNU MPFR Library; see the file COPYING.LESSER.  If not, see
204a238c70SJohn Marino http://www.gnu.org/licenses/ or write to the Free Software Foundation, Inc.,
214a238c70SJohn Marino 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA. */
224a238c70SJohn Marino 
234a238c70SJohn Marino #define MPFR_NEED_LONGLONG_H
244a238c70SJohn Marino #include "mpfr-impl.h"
254a238c70SJohn Marino 
264a238c70SJohn Marino /* The computation of cosh is done by    *
274a238c70SJohn Marino  *  cosh= 1/2[e^(x)+e^(-x)]              */
284a238c70SJohn Marino 
294a238c70SJohn Marino int
mpfr_cosh(mpfr_ptr y,mpfr_srcptr xt,mpfr_rnd_t rnd_mode)304a238c70SJohn Marino mpfr_cosh (mpfr_ptr y, mpfr_srcptr xt , mpfr_rnd_t rnd_mode)
314a238c70SJohn Marino {
324a238c70SJohn Marino   mpfr_t x;
334a238c70SJohn Marino   int inexact;
344a238c70SJohn Marino   MPFR_SAVE_EXPO_DECL (expo);
354a238c70SJohn Marino 
364a238c70SJohn Marino   MPFR_LOG_FUNC (
374a238c70SJohn Marino     ("x[%Pu]=%*.Rg rnd=%d", mpfr_get_prec (xt), mpfr_log_prec, xt, rnd_mode),
384a238c70SJohn Marino     ("y[%Pu]=%*.Rg inexact=%d", mpfr_get_prec (y), mpfr_log_prec, y,
394a238c70SJohn Marino      inexact));
404a238c70SJohn Marino 
414a238c70SJohn Marino   if (MPFR_UNLIKELY(MPFR_IS_SINGULAR(xt)))
424a238c70SJohn Marino     {
434a238c70SJohn Marino       if (MPFR_IS_NAN(xt))
444a238c70SJohn Marino         {
454a238c70SJohn Marino           MPFR_SET_NAN(y);
464a238c70SJohn Marino           MPFR_RET_NAN;
474a238c70SJohn Marino         }
484a238c70SJohn Marino       else if (MPFR_IS_INF(xt))
494a238c70SJohn Marino         {
504a238c70SJohn Marino           MPFR_SET_INF(y);
514a238c70SJohn Marino           MPFR_SET_POS(y);
524a238c70SJohn Marino           MPFR_RET(0);
534a238c70SJohn Marino         }
544a238c70SJohn Marino       else
554a238c70SJohn Marino         {
564a238c70SJohn Marino           MPFR_ASSERTD(MPFR_IS_ZERO(xt));
574a238c70SJohn Marino           return mpfr_set_ui (y, 1, rnd_mode); /* cosh(0) = 1 */
584a238c70SJohn Marino         }
594a238c70SJohn Marino     }
604a238c70SJohn Marino 
614a238c70SJohn Marino   MPFR_SAVE_EXPO_MARK (expo);
624a238c70SJohn Marino 
634a238c70SJohn Marino   /* cosh(x) = 1+x^2/2 + ... <= 1+x^2 for x <= 2.9828...,
644a238c70SJohn Marino      thus the error < 2^(2*EXP(x)). If x >= 1, then EXP(x) >= 1,
654a238c70SJohn Marino      thus the following will always fail. */
664a238c70SJohn Marino   MPFR_FAST_COMPUTE_IF_SMALL_INPUT (y, __gmpfr_one, -2 * MPFR_GET_EXP (xt), 0,
674a238c70SJohn Marino                                     1, rnd_mode, inexact = _inexact; goto end);
684a238c70SJohn Marino 
694a238c70SJohn Marino   MPFR_TMP_INIT_ABS(x, xt);
704a238c70SJohn Marino   /* General case */
714a238c70SJohn Marino   {
724a238c70SJohn Marino     /* Declaration of the intermediary variable */
734a238c70SJohn Marino     mpfr_t t, te;
744a238c70SJohn Marino     /* Declaration of the size variable */
754a238c70SJohn Marino     mpfr_prec_t Ny = MPFR_PREC(y);   /* Precision of output variable */
764a238c70SJohn Marino     mpfr_prec_t Nt;                  /* Precision of the intermediary variable */
774a238c70SJohn Marino     long int err;                  /* Precision of error */
784a238c70SJohn Marino     MPFR_ZIV_DECL (loop);
794a238c70SJohn Marino     MPFR_GROUP_DECL (group);
804a238c70SJohn Marino 
814a238c70SJohn Marino     /* compute the precision of intermediary variable */
824a238c70SJohn Marino     /* The optimal number of bits : see algorithms.tex */
834a238c70SJohn Marino     Nt = Ny + 3 + MPFR_INT_CEIL_LOG2 (Ny);
844a238c70SJohn Marino 
854a238c70SJohn Marino     /* initialise of intermediary variables */
864a238c70SJohn Marino     MPFR_GROUP_INIT_2 (group, Nt, t, te);
874a238c70SJohn Marino 
884a238c70SJohn Marino     /* First computation of cosh */
894a238c70SJohn Marino     MPFR_ZIV_INIT (loop, Nt);
904a238c70SJohn Marino     for (;;)
914a238c70SJohn Marino       {
924a238c70SJohn Marino         MPFR_BLOCK_DECL (flags);
934a238c70SJohn Marino 
944a238c70SJohn Marino         /* Compute cosh */
954a238c70SJohn Marino         MPFR_BLOCK (flags, mpfr_exp (te, x, MPFR_RNDD));  /* exp(x) */
964a238c70SJohn Marino         /* exp can overflow (but not underflow since x>0) */
974a238c70SJohn Marino         if (MPFR_OVERFLOW (flags))
984a238c70SJohn Marino           /* cosh(x) > exp(x), cosh(x) underflows too */
994a238c70SJohn Marino           {
1004a238c70SJohn Marino             inexact = mpfr_overflow (y, rnd_mode, MPFR_SIGN_POS);
1014a238c70SJohn Marino             MPFR_SAVE_EXPO_UPDATE_FLAGS (expo, MPFR_FLAGS_OVERFLOW);
1024a238c70SJohn Marino             break;
1034a238c70SJohn Marino           }
1044a238c70SJohn Marino         mpfr_ui_div (t, 1, te, MPFR_RNDU);   /* 1/exp(x) */
1054a238c70SJohn Marino         mpfr_add (t, te, t, MPFR_RNDU);      /* exp(x) + 1/exp(x)*/
1064a238c70SJohn Marino         mpfr_div_2ui (t, t, 1, MPFR_RNDN);   /* 1/2(exp(x) + 1/exp(x))*/
1074a238c70SJohn Marino 
1084a238c70SJohn Marino         /* Estimation of the error */
1094a238c70SJohn Marino         err = Nt - 3;
1104a238c70SJohn Marino         /* Check if we can round */
1114a238c70SJohn Marino         if (MPFR_LIKELY (MPFR_CAN_ROUND (t, err, Ny, rnd_mode)))
1124a238c70SJohn Marino           {
1134a238c70SJohn Marino             inexact = mpfr_set (y, t, rnd_mode);
1144a238c70SJohn Marino             break;
1154a238c70SJohn Marino           }
1164a238c70SJohn Marino 
1174a238c70SJohn Marino         /* Actualisation of the precision */
1184a238c70SJohn Marino         MPFR_ZIV_NEXT (loop, Nt);
1194a238c70SJohn Marino         MPFR_GROUP_REPREC_2 (group, Nt, t, te);
1204a238c70SJohn Marino       }
1214a238c70SJohn Marino     MPFR_ZIV_FREE (loop);
1224a238c70SJohn Marino     MPFR_GROUP_CLEAR (group);
1234a238c70SJohn Marino   }
1244a238c70SJohn Marino 
1254a238c70SJohn Marino  end:
1264a238c70SJohn Marino   MPFR_SAVE_EXPO_FREE (expo);
1274a238c70SJohn Marino   return mpfr_check_range (y, inexact, rnd_mode);
1284a238c70SJohn Marino }
129