xref: /titanic_44/usr/src/lib/libm/common/C/acosh.c (revision ddc0e0b53c661f6e439e3b7072b3ef353eadb4af)
125c28e83SPiotr Jasiukajtis /*
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2125c28e83SPiotr Jasiukajtis 
2225c28e83SPiotr Jasiukajtis /*
2325c28e83SPiotr Jasiukajtis  * Copyright 2011 Nexenta Systems, Inc.  All rights reserved.
2425c28e83SPiotr Jasiukajtis  */
2525c28e83SPiotr Jasiukajtis /*
2625c28e83SPiotr Jasiukajtis  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
2725c28e83SPiotr Jasiukajtis  * Use is subject to license terms.
2825c28e83SPiotr Jasiukajtis  */
2925c28e83SPiotr Jasiukajtis 
30*ddc0e0b5SRichard Lowe #pragma weak __acosh = acosh
3125c28e83SPiotr Jasiukajtis 
3225c28e83SPiotr Jasiukajtis /* INDENT OFF */
3325c28e83SPiotr Jasiukajtis /*
3425c28e83SPiotr Jasiukajtis  * acosh(x)
3525c28e83SPiotr Jasiukajtis  * Method :
3625c28e83SPiotr Jasiukajtis  *	Based on
3725c28e83SPiotr Jasiukajtis  *		acosh(x) = log [ x + sqrt(x*x-1) ]
3825c28e83SPiotr Jasiukajtis  *	we have
3925c28e83SPiotr Jasiukajtis  *		acosh(x) := log(x)+ln2,	if x is large; else
4025c28e83SPiotr Jasiukajtis  *		acosh(x) := log(2x-1/(sqrt(x*x-1)+x)) if x > 2; else
4125c28e83SPiotr Jasiukajtis  *		acosh(x) := log1p(t+sqrt(2.0*t+t*t)); where t = x-1.
4225c28e83SPiotr Jasiukajtis  *
4325c28e83SPiotr Jasiukajtis  * Special cases:
4425c28e83SPiotr Jasiukajtis  *	acosh(x) is NaN with signal if x < 1.
4525c28e83SPiotr Jasiukajtis  *	acosh(NaN) is NaN without signal.
4625c28e83SPiotr Jasiukajtis  */
4725c28e83SPiotr Jasiukajtis /* INDENT ON */
4825c28e83SPiotr Jasiukajtis 
4925c28e83SPiotr Jasiukajtis #include "libm_protos.h"	/* _SVID_libm_error */
5025c28e83SPiotr Jasiukajtis #include "libm_macros.h"
5125c28e83SPiotr Jasiukajtis #include <math.h>
5225c28e83SPiotr Jasiukajtis 
5325c28e83SPiotr Jasiukajtis static const double
5425c28e83SPiotr Jasiukajtis 	one = 1.0,
5525c28e83SPiotr Jasiukajtis 	ln2 = 6.93147180559945286227e-01;	/* 3FE62E42, FEFA39EF */
5625c28e83SPiotr Jasiukajtis 
5725c28e83SPiotr Jasiukajtis double
acosh(double x)5825c28e83SPiotr Jasiukajtis acosh(double x) {
5925c28e83SPiotr Jasiukajtis 	double t;
6025c28e83SPiotr Jasiukajtis 	int hx;
6125c28e83SPiotr Jasiukajtis 
6225c28e83SPiotr Jasiukajtis 	hx = ((int *) &x)[HIWORD];
6325c28e83SPiotr Jasiukajtis 	if (hx < 0x3ff00000) {	/* x < 1 */
6425c28e83SPiotr Jasiukajtis 		if (isnan(x))
6525c28e83SPiotr Jasiukajtis #if defined(FPADD_TRAPS_INCOMPLETE_ON_NAN)
6625c28e83SPiotr Jasiukajtis 			return (hx >= 0xfff80000 ? x : (x - x) / (x - x));
6725c28e83SPiotr Jasiukajtis 			/* assumes sparc-like QNaN */
6825c28e83SPiotr Jasiukajtis #else
6925c28e83SPiotr Jasiukajtis 			return (x - x) / (x - x);
7025c28e83SPiotr Jasiukajtis #endif
7125c28e83SPiotr Jasiukajtis 		else
7225c28e83SPiotr Jasiukajtis 			return (_SVID_libm_err(x, x, 29));
7325c28e83SPiotr Jasiukajtis 	} else if (hx >= 0x41b00000) {
7425c28e83SPiotr Jasiukajtis 		/* x > 2**28 */
7525c28e83SPiotr Jasiukajtis 		if (hx >= 0x7ff00000) {	/* x is inf of NaN */
7625c28e83SPiotr Jasiukajtis #if defined(FPADD_TRAPS_INCOMPLETE_ON_NAN)
7725c28e83SPiotr Jasiukajtis 			return (hx >= 0x7ff80000 ? x : x + x);
7825c28e83SPiotr Jasiukajtis 			/* assumes sparc-like QNaN */
7925c28e83SPiotr Jasiukajtis #else
8025c28e83SPiotr Jasiukajtis 			return (x + x);
8125c28e83SPiotr Jasiukajtis #endif
8225c28e83SPiotr Jasiukajtis 		} else	/* acosh(huge)=log(2x) */
8325c28e83SPiotr Jasiukajtis 			return (log(x) + ln2);
8425c28e83SPiotr Jasiukajtis 	} else if (((hx - 0x3ff00000) | ((int *) &x)[LOWORD]) == 0) {
8525c28e83SPiotr Jasiukajtis 		return (0.0);	/* acosh(1) = 0 */
8625c28e83SPiotr Jasiukajtis 	} else if (hx > 0x40000000) {
8725c28e83SPiotr Jasiukajtis 		/* 2**28 > x > 2 */
8825c28e83SPiotr Jasiukajtis 		t = x * x;
8925c28e83SPiotr Jasiukajtis 		return (log(2.0 * x - one / (x + sqrt(t - one))));
9025c28e83SPiotr Jasiukajtis 	} else {
9125c28e83SPiotr Jasiukajtis 		/* 1 < x < 2 */
9225c28e83SPiotr Jasiukajtis 		t = x - one;
9325c28e83SPiotr Jasiukajtis 		return (log1p(t + sqrt(2.0 * t + t * t)));
9425c28e83SPiotr Jasiukajtis 	}
9525c28e83SPiotr Jasiukajtis }
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