source: trunk/libs/newlib/src/newlib/libm/math/s_atan.c @ 543

Last change on this file since 543 was 444, checked in by satin@…, 6 years ago

add newlib,libalmos-mkh, restructure shared_syscalls.h and mini-libc

File size: 4.8 KB
Line 
1
2/* @(#)s_atan.c 5.1 93/09/24 */
3/*
4 * ====================================================
5 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
6 *
7 * Developed at SunPro, 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/*
16FUNCTION
17        <<atan>>, <<atanf>>---arc tangent
18
19INDEX
20   atan
21INDEX
22   atanf
23
24SYNOPSIS
25        #include <math.h>
26        double atan(double <[x]>);
27        float atanf(float <[x]>);
28
29DESCRIPTION
30
31<<atan>> computes the inverse tangent (arc tangent) of the input value.
32
33<<atanf>> is identical to <<atan>>, save that it operates on <<floats>>.
34
35RETURNS
36@ifnottex
37<<atan>> returns a value in radians, in the range of -pi/2 to pi/2.
38@end ifnottex
39@tex
40<<atan>> returns a value in radians, in the range of $-\pi/2$ to $\pi/2$.
41@end tex
42
43PORTABILITY
44<<atan>> is ANSI C.  <<atanf>> is an extension.
45
46*/
47
48/* atan(x)
49 * Method
50 *   1. Reduce x to positive by atan(x) = -atan(-x).
51 *   2. According to the integer k=4t+0.25 chopped, t=x, the argument
52 *      is further reduced to one of the following intervals and the
53 *      arctangent of t is evaluated by the corresponding formula:
54 *
55 *      [0,7/16]      atan(x) = t-t^3*(a1+t^2*(a2+...(a10+t^2*a11)...)
56 *      [7/16,11/16]  atan(x) = atan(1/2) + atan( (t-0.5)/(1+t/2) )
57 *      [11/16.19/16] atan(x) = atan( 1 ) + atan( (t-1)/(1+t) )
58 *      [19/16,39/16] atan(x) = atan(3/2) + atan( (t-1.5)/(1+1.5t) )
59 *      [39/16,INF]   atan(x) = atan(INF) + atan( -1/t )
60 *
61 * Constants:
62 * The hexadecimal values are the intended ones for the following
63 * constants. The decimal values may be used, provided that the
64 * compiler will convert from decimal to binary accurately enough
65 * to produce the hexadecimal values shown.
66 */
67
68#include "fdlibm.h"
69
70#ifndef _DOUBLE_IS_32BITS
71
72#ifdef __STDC__
73static const double atanhi[] = {
74#else
75static double atanhi[] = {
76#endif
77  4.63647609000806093515e-01, /* atan(0.5)hi 0x3FDDAC67, 0x0561BB4F */
78  7.85398163397448278999e-01, /* atan(1.0)hi 0x3FE921FB, 0x54442D18 */
79  9.82793723247329054082e-01, /* atan(1.5)hi 0x3FEF730B, 0xD281F69B */
80  1.57079632679489655800e+00, /* atan(inf)hi 0x3FF921FB, 0x54442D18 */
81};
82
83#ifdef __STDC__
84static const double atanlo[] = {
85#else
86static double atanlo[] = {
87#endif
88  2.26987774529616870924e-17, /* atan(0.5)lo 0x3C7A2B7F, 0x222F65E2 */
89  3.06161699786838301793e-17, /* atan(1.0)lo 0x3C81A626, 0x33145C07 */
90  1.39033110312309984516e-17, /* atan(1.5)lo 0x3C700788, 0x7AF0CBBD */
91  6.12323399573676603587e-17, /* atan(inf)lo 0x3C91A626, 0x33145C07 */
92};
93
94#ifdef __STDC__
95static const double aT[] = {
96#else
97static double aT[] = {
98#endif
99  3.33333333333329318027e-01, /* 0x3FD55555, 0x5555550D */
100 -1.99999999998764832476e-01, /* 0xBFC99999, 0x9998EBC4 */
101  1.42857142725034663711e-01, /* 0x3FC24924, 0x920083FF */
102 -1.11111104054623557880e-01, /* 0xBFBC71C6, 0xFE231671 */
103  9.09088713343650656196e-02, /* 0x3FB745CD, 0xC54C206E */
104 -7.69187620504482999495e-02, /* 0xBFB3B0F2, 0xAF749A6D */
105  6.66107313738753120669e-02, /* 0x3FB10D66, 0xA0D03D51 */
106 -5.83357013379057348645e-02, /* 0xBFADDE2D, 0x52DEFD9A */
107  4.97687799461593236017e-02, /* 0x3FA97B4B, 0x24760DEB */
108 -3.65315727442169155270e-02, /* 0xBFA2B444, 0x2C6A6C2F */
109  1.62858201153657823623e-02, /* 0x3F90AD3A, 0xE322DA11 */
110};
111
112#ifdef __STDC__
113        static const double 
114#else
115        static double 
116#endif
117one   = 1.0,
118huge   = 1.0e300;
119
120#ifdef __STDC__
121        double atan(double x)
122#else
123        double atan(x)
124        double x;
125#endif
126{
127        double w,s1,s2,z;
128        __int32_t ix,hx,id;
129
130        GET_HIGH_WORD(hx,x);
131        ix = hx&0x7fffffff;
132        if(ix>=0x44100000) {    /* if |x| >= 2^66 */
133            __uint32_t low;
134            GET_LOW_WORD(low,x);
135            if(ix>0x7ff00000||
136                (ix==0x7ff00000&&(low!=0)))
137                return x+x;             /* NaN */
138            if(hx>0) return  atanhi[3]+atanlo[3];
139            else     return -atanhi[3]-atanlo[3];
140        } if (ix < 0x3fdc0000) {        /* |x| < 0.4375 */
141            if (ix < 0x3e200000) {      /* |x| < 2^-29 */
142                if(huge+x>one) return x;        /* raise inexact */
143            }
144            id = -1;
145        } else {
146        x = fabs(x);
147        if (ix < 0x3ff30000) {          /* |x| < 1.1875 */
148            if (ix < 0x3fe60000) {      /* 7/16 <=|x|<11/16 */
149                id = 0; x = (2.0*x-one)/(2.0+x); 
150            } else {                    /* 11/16<=|x|< 19/16 */
151                id = 1; x  = (x-one)/(x+one); 
152            }
153        } else {
154            if (ix < 0x40038000) {      /* |x| < 2.4375 */
155                id = 2; x  = (x-1.5)/(one+1.5*x);
156            } else {                    /* 2.4375 <= |x| < 2^66 */
157                id = 3; x  = -1.0/x;
158            }
159        }}
160    /* end of argument reduction */
161        z = x*x;
162        w = z*z;
163    /* break sum from i=0 to 10 aT[i]z**(i+1) into odd and even poly */
164        s1 = z*(aT[0]+w*(aT[2]+w*(aT[4]+w*(aT[6]+w*(aT[8]+w*aT[10])))));
165        s2 = w*(aT[1]+w*(aT[3]+w*(aT[5]+w*(aT[7]+w*aT[9]))));
166        if (id<0) return x - x*(s1+s2);
167        else {
168            z = atanhi[id] - ((x*(s1+s2) - atanlo[id]) - x);
169            return (hx<0)? -z:z;
170        }
171}
172
173#endif /* _DOUBLE_IS_32BITS */
Note: See TracBrowser for help on using the repository browser.