* sources.am, Makefile.in: Rebuilt.
[official-gcc.git] / libgcc-math / flt-32 / k_tanf.c
blob10af8188e4f90d75926bcc598a747cbf812898d6
1 /* k_tanf.c -- float version of k_tan.c
2 * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
3 */
5 /*
6 * ====================================================
7 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
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 * ====================================================
16 #if defined(LIBM_SCCS) && !defined(lint)
17 static char rcsid[] = "$NetBSD: k_tanf.c,v 1.4 1995/05/10 20:46:39 jtc Exp $";
18 #endif
20 #include "math_private.h"
21 #ifdef __STDC__
22 static const float
23 #else
24 static float
25 #endif
26 one = 1.0000000000e+00, /* 0x3f800000 */
27 pio4 = 7.8539812565e-01, /* 0x3f490fda */
28 pio4lo= 3.7748947079e-08, /* 0x33222168 */
29 T[] = {
30 3.3333334327e-01, /* 0x3eaaaaab */
31 1.3333334029e-01, /* 0x3e088889 */
32 5.3968254477e-02, /* 0x3d5d0dd1 */
33 2.1869488060e-02, /* 0x3cb327a4 */
34 8.8632395491e-03, /* 0x3c11371f */
35 3.5920790397e-03, /* 0x3b6b6916 */
36 1.4562094584e-03, /* 0x3abede48 */
37 5.8804126456e-04, /* 0x3a1a26c8 */
38 2.4646313977e-04, /* 0x398137b9 */
39 7.8179444245e-05, /* 0x38a3f445 */
40 7.1407252108e-05, /* 0x3895c07a */
41 -1.8558637748e-05, /* 0xb79bae5f */
42 2.5907305826e-05, /* 0x37d95384 */
45 #ifdef __STDC__
46 float __kernel_tanf(float x, float y, int iy)
47 #else
48 float __kernel_tanf(x, y, iy)
49 float x,y; int iy;
50 #endif
52 float z,r,v,w,s;
53 int32_t ix,hx;
54 GET_FLOAT_WORD(hx,x);
55 ix = hx&0x7fffffff; /* high word of |x| */
56 if(ix<0x31800000) /* x < 2**-28 */
57 {if((int)x==0) { /* generate inexact */
58 if((ix|(iy+1))==0) return one/fabsf(x);
59 else return (iy==1)? x: -one/x;
62 if(ix>=0x3f2ca140) { /* |x|>=0.6744 */
63 if(hx<0) {x = -x; y = -y;}
64 z = pio4-x;
65 w = pio4lo-y;
66 x = z+w; y = 0.0;
68 z = x*x;
69 w = z*z;
70 /* Break x^5*(T[1]+x^2*T[2]+...) into
71 * x^5(T[1]+x^4*T[3]+...+x^20*T[11]) +
72 * x^5(x^2*(T[2]+x^4*T[4]+...+x^22*[T12]))
74 r = T[1]+w*(T[3]+w*(T[5]+w*(T[7]+w*(T[9]+w*T[11]))));
75 v = z*(T[2]+w*(T[4]+w*(T[6]+w*(T[8]+w*(T[10]+w*T[12])))));
76 s = z*x;
77 r = y + z*(s*(r+v)+y);
78 r += T[0]*s;
79 w = x+r;
80 if(ix>=0x3f2ca140) {
81 v = (float)iy;
82 return (float)(1-((hx>>30)&2))*(v-(float)2.0*(x-(w*w/(w+v)-r)));
84 if(iy==1) return w;
85 else { /* if allow error up to 2 ulp,
86 simply return -1.0/(x+r) here */
87 /* compute -1.0/(x+r) accurately */
88 float a,t;
89 int32_t i;
90 z = w;
91 GET_FLOAT_WORD(i,z);
92 SET_FLOAT_WORD(z,i&0xfffff000);
93 v = r-(z - x); /* z+v = r+x */
94 t = a = -(float)1.0/w; /* a = -1.0/w */
95 GET_FLOAT_WORD(i,t);
96 SET_FLOAT_WORD(t,i&0xfffff000);
97 s = (float)1.0+t*z;
98 return t+a*(s+t*v);