FreeBSD and NetBSD both use derivates of Sun's math library. On FreeBSD,
[dragonfly.git] / lib / libm / src / e_asinf.c
1 /* e_asinf.c -- float version of e_asin.c.
2  * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
3  */
4
5 /*
6  * ====================================================
7  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
8  *
9  * Developed at SunPro, a Sun Microsystems, Inc. business.
10  * Permission to use, copy, modify, and distribute this
11  * software is freely granted, provided that this notice
12  * is preserved.
13  * ====================================================
14  *
15  * $NetBSD: e_asinf.c,v 1.8 2002/05/26 22:01:48 wiz Exp $
16  * $DragonFly: src/lib/libm/src/e_asinf.c,v 1.1 2005/07/26 21:15:20 joerg Exp $
17  */
18
19 #include <math.h>
20 #include "math_private.h"
21
22 static const float
23 one =  1.0000000000e+00, /* 0x3F800000 */
24 huge =  1.000e+30,
25 pio2_hi =  1.5707962513e+00, /* 0x3fc90fda */
26 pio2_lo =  7.5497894159e-08, /* 0x33a22168 */
27 pio4_hi =  7.8539818525e-01, /* 0x3f490fdb */
28         /* coefficient for R(x^2) */
29 pS0 =  1.6666667163e-01, /* 0x3e2aaaab */
30 pS1 = -3.2556581497e-01, /* 0xbea6b090 */
31 pS2 =  2.0121252537e-01, /* 0x3e4e0aa8 */
32 pS3 = -4.0055535734e-02, /* 0xbd241146 */
33 pS4 =  7.9153501429e-04, /* 0x3a4f7f04 */
34 pS5 =  3.4793309169e-05, /* 0x3811ef08 */
35 qS1 = -2.4033949375e+00, /* 0xc019d139 */
36 qS2 =  2.0209457874e+00, /* 0x4001572d */
37 qS3 = -6.8828397989e-01, /* 0xbf303361 */
38 qS4 =  7.7038154006e-02; /* 0x3d9dc62e */
39
40 float
41 asinf(float x)
42 {
43         float t,w,p,q,c,r,s;
44         int32_t hx,ix;
45
46         t = 0;
47         GET_FLOAT_WORD(hx,x);
48         ix = hx&0x7fffffff;
49         if(ix==0x3f800000) {
50                 /* asin(1)=+-pi/2 with inexact */
51             return x*pio2_hi+x*pio2_lo;
52         } else if(ix> 0x3f800000) {     /* |x|>= 1 */
53             return (x-x)/(x-x);         /* asin(|x|>1) is NaN */
54         } else if (ix<0x3f000000) {     /* |x|<0.5 */
55             if(ix<0x32000000) {         /* if |x| < 2**-27 */
56                 if(huge+x>one) return x;/* return x with inexact if x!=0*/
57             } else
58                 t = x*x;
59                 p = t*(pS0+t*(pS1+t*(pS2+t*(pS3+t*(pS4+t*pS5)))));
60                 q = one+t*(qS1+t*(qS2+t*(qS3+t*qS4)));
61                 w = p/q;
62                 return x+x*w;
63         }
64         /* 1> |x|>= 0.5 */
65         w = one-fabsf(x);
66         t = w*(float)0.5;
67         p = t*(pS0+t*(pS1+t*(pS2+t*(pS3+t*(pS4+t*pS5)))));
68         q = one+t*(qS1+t*(qS2+t*(qS3+t*qS4)));
69         s = sqrtf(t);
70         if(ix>=0x3F79999A) {    /* if |x| > 0.975 */
71             w = p/q;
72             t = pio2_hi-((float)2.0*(s+s*w)-pio2_lo);
73         } else {
74             int32_t iw;
75             w  = s;
76             GET_FLOAT_WORD(iw,w);
77             SET_FLOAT_WORD(w,iw&0xfffff000);
78             c  = (t-w*w)/(s+w);
79             r  = p/q;
80             p  = (float)2.0*s*r-(pio2_lo-(float)2.0*c);
81             q  = pio4_hi-(float)2.0*w;
82             t  = pio4_hi-(p-q);
83         }
84         if(hx>0) return t; else return -t;
85 }