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      1 
      2 /* @(#)e_atanh.c 1.3 95/01/18 */
      3 /*
      4  * ====================================================
      5  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
      6  *
      7  * Developed at SunSoft, a Sun Microsystems, Inc. business.
      8  * Permission to use, copy, modify, and distribute this
      9  * software is freely granted, provided that this notice
     10  * is preserved.
     11  * ====================================================
     12  *
     13  */
     14 
     15 /* __ieee754_atanh(x)
     16  * Method :
     17  *    1.Reduced x to positive by atanh(-x) = -atanh(x)
     18  *    2.For x>=0.5
     19  *                  1              2x                          x
     20  *	atanh(x) = --- * ieee_log(1 + -------) = 0.5 * ieee_log1p(2 * --------)
     21  *                  2             1 - x                      1 - x
     22  *
     23  * 	For x<0.5
     24  *	atanh(x) = 0.5*ieee_log1p(2x+2x*x/(1-x))
     25  *
     26  * Special cases:
     27  *	atanh(x) is NaN if |x| > 1 with signal;
     28  *	atanh(NaN) is that NaN with no signal;
     29  *	atanh(+-1) is +-INF with signal.
     30  *
     31  */
     32 
     33 #include "fdlibm.h"
     34 
     35 #ifdef __STDC__
     36 static const double one = 1.0, huge = 1e300;
     37 #else
     38 static double one = 1.0, huge = 1e300;
     39 #endif
     40 
     41 static double zero = 0.0;
     42 
     43 #ifdef __STDC__
     44 	double __ieee754_atanh(double x)
     45 #else
     46 	double __ieee754_atanh(x)
     47 	double x;
     48 #endif
     49 {
     50 	double t;
     51 	int hx,ix;
     52 	unsigned lx;
     53 	hx = __HI(x);		/* high word */
     54 	lx = __LO(x);		/* low word */
     55 	ix = hx&0x7fffffff;
     56 	if ((ix|((lx|(-lx))>>31))>0x3ff00000) /* |x|>1 */
     57 	    return (x-x)/(x-x);
     58 	if(ix==0x3ff00000)
     59 	    return x/zero;
     60 	if(ix<0x3e300000&&(huge+x)>zero) return x;	/* x<2**-28 */
     61 	__HI(x) = ix;		/* x <- |x| */
     62 	if(ix<0x3fe00000) {		/* x < 0.5 */
     63 	    t = x+x;
     64 	    t = 0.5*ieee_log1p(t+t*x/(one-x));
     65 	} else
     66 	    t = 0.5*ieee_log1p((x+x)/(one-x));
     67 	if(hx>=0) return t; else return -t;
     68 }
     69