POK
/home/jaouen/pok_official/pok/trunk/libpok/libm/e_atanhf.c
00001 /*
00002  *                               POK header
00003  * 
00004  * The following file is a part of the POK project. Any modification should
00005  * made according to the POK licence. You CANNOT use this file or a part of
00006  * this file is this part of a file for your own project
00007  *
00008  * For more information on the POK licence, please see our LICENCE FILE
00009  *
00010  * Please follow the coding guidelines described in doc/CODING_GUIDELINES
00011  *
00012  *                                      Copyright (c) 2007-2009 POK team 
00013  *
00014  * Created by julien on Fri Jan 30 14:41:34 2009 
00015  */
00016 
00017 /* e_atanhf.c -- float version of e_atanh.c.
00018  * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
00019  */
00020 
00021 /*
00022  * ====================================================
00023  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
00024  *
00025  * Developed at SunPro, a Sun Microsystems, Inc. business.
00026  * Permission to use, copy, modify, and distribute this
00027  * software is freely granted, provided that this notice
00028  * is preserved.
00029  * ====================================================
00030  */
00031 
00032 #ifdef POK_NEEDS_LIBMATH
00033 #include <libm.h>
00034 #include "math_private.h"
00035 
00036 static const float one = 1.0, huge = 1e30;
00037 
00038 static const float zero = 0.0;
00039 
00040 float
00041 __ieee754_atanhf(float x)
00042 {
00043         float t;
00044         int32_t hx,ix;
00045         GET_FLOAT_WORD(hx,x);
00046         ix = hx&0x7fffffff;
00047         if (ix>0x3f800000)              /* |x|>1 */
00048             return (x-x)/(x-x);
00049         if(ix==0x3f800000)
00050             return x/zero;
00051         if(ix<0x31800000&&(huge+x)>zero) return x;      /* x<2**-28 */
00052         SET_FLOAT_WORD(x,ix);
00053         if(ix<0x3f000000) {             /* x < 0.5 */
00054             t = x+x;
00055             t = (float)0.5*log1pf(t+t*x/(one-x));
00056         } else
00057             t = (float)0.5*log1pf((x+x)/(one-x));
00058         if(hx>=0) return t; else return -t;
00059 }
00060 #endif