xref: /dflybsd-src/contrib/openbsd_libm/src/e_atan2.c (revision 4382f29d99a100bd77a81697c2f699c11f6a472a)
1*05a0b428SJohn Marino /* @(#)e_atan2.c 5.1 93/09/24 */
2*05a0b428SJohn Marino /*
3*05a0b428SJohn Marino  * ====================================================
4*05a0b428SJohn Marino  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
5*05a0b428SJohn Marino  *
6*05a0b428SJohn Marino  * Developed at SunPro, a Sun Microsystems, Inc. business.
7*05a0b428SJohn Marino  * Permission to use, copy, modify, and distribute this
8*05a0b428SJohn Marino  * software is freely granted, provided that this notice
9*05a0b428SJohn Marino  * is preserved.
10*05a0b428SJohn Marino  * ====================================================
11*05a0b428SJohn Marino  */
12*05a0b428SJohn Marino 
13*05a0b428SJohn Marino /* atan2(y,x)
14*05a0b428SJohn Marino  * Method :
15*05a0b428SJohn Marino  *	1. Reduce y to positive by atan2(y,x)=-atan2(-y,x).
16*05a0b428SJohn Marino  *	2. Reduce x to positive by (if x and y are unexceptional):
17*05a0b428SJohn Marino  *		ARG (x+iy) = arctan(y/x)   	   ... if x > 0,
18*05a0b428SJohn Marino  *		ARG (x+iy) = pi - arctan[y/(-x)]   ... if x < 0,
19*05a0b428SJohn Marino  *
20*05a0b428SJohn Marino  * Special cases:
21*05a0b428SJohn Marino  *
22*05a0b428SJohn Marino  *	ATAN2((anything), NaN ) is NaN;
23*05a0b428SJohn Marino  *	ATAN2(NAN , (anything) ) is NaN;
24*05a0b428SJohn Marino  *	ATAN2(+-0, +(anything but NaN)) is +-0  ;
25*05a0b428SJohn Marino  *	ATAN2(+-0, -(anything but NaN)) is +-pi ;
26*05a0b428SJohn Marino  *	ATAN2(+-(anything but 0 and NaN), 0) is +-pi/2;
27*05a0b428SJohn Marino  *	ATAN2(+-(anything but INF and NaN), +INF) is +-0 ;
28*05a0b428SJohn Marino  *	ATAN2(+-(anything but INF and NaN), -INF) is +-pi;
29*05a0b428SJohn Marino  *	ATAN2(+-INF,+INF ) is +-pi/4 ;
30*05a0b428SJohn Marino  *	ATAN2(+-INF,-INF ) is +-3pi/4;
31*05a0b428SJohn Marino  *	ATAN2(+-INF, (anything but,0,NaN, and INF)) is +-pi/2;
32*05a0b428SJohn Marino  *
33*05a0b428SJohn Marino  * Constants:
34*05a0b428SJohn Marino  * The hexadecimal values are the intended ones for the following
35*05a0b428SJohn Marino  * constants. The decimal values may be used, provided that the
36*05a0b428SJohn Marino  * compiler will convert from decimal to binary accurately enough
37*05a0b428SJohn Marino  * to produce the hexadecimal values shown.
38*05a0b428SJohn Marino  */
39*05a0b428SJohn Marino 
40*05a0b428SJohn Marino #include <float.h>
41*05a0b428SJohn Marino #include <math.h>
42*05a0b428SJohn Marino 
43*05a0b428SJohn Marino #include "math_private.h"
44*05a0b428SJohn Marino 
45*05a0b428SJohn Marino static const double
46*05a0b428SJohn Marino tiny  = 1.0e-300,
47*05a0b428SJohn Marino zero  = 0.0,
48*05a0b428SJohn Marino pi_o_4  = 7.8539816339744827900E-01, /* 0x3FE921FB, 0x54442D18 */
49*05a0b428SJohn Marino pi_o_2  = 1.5707963267948965580E+00, /* 0x3FF921FB, 0x54442D18 */
50*05a0b428SJohn Marino pi      = 3.1415926535897931160E+00, /* 0x400921FB, 0x54442D18 */
51*05a0b428SJohn Marino pi_lo   = 1.2246467991473531772E-16; /* 0x3CA1A626, 0x33145C07 */
52*05a0b428SJohn Marino 
53*05a0b428SJohn Marino double
atan2(double y,double x)54*05a0b428SJohn Marino atan2(double y, double x)
55*05a0b428SJohn Marino {
56*05a0b428SJohn Marino 	double z;
57*05a0b428SJohn Marino 	int32_t k,m,hx,hy,ix,iy;
58*05a0b428SJohn Marino 	u_int32_t lx,ly;
59*05a0b428SJohn Marino 
60*05a0b428SJohn Marino 	EXTRACT_WORDS(hx,lx,x);
61*05a0b428SJohn Marino 	ix = hx&0x7fffffff;
62*05a0b428SJohn Marino 	EXTRACT_WORDS(hy,ly,y);
63*05a0b428SJohn Marino 	iy = hy&0x7fffffff;
64*05a0b428SJohn Marino 	if(((ix|((lx|-lx)>>31))>0x7ff00000)||
65*05a0b428SJohn Marino 	   ((iy|((ly|-ly)>>31))>0x7ff00000))	/* x or y is NaN */
66*05a0b428SJohn Marino 	   return x+y;
67*05a0b428SJohn Marino 	if(((hx-0x3ff00000)|lx)==0) return atan(y);   /* x=1.0 */
68*05a0b428SJohn Marino 	m = ((hy>>31)&1)|((hx>>30)&2);	/* 2*sign(x)+sign(y) */
69*05a0b428SJohn Marino 
70*05a0b428SJohn Marino     /* when y = 0 */
71*05a0b428SJohn Marino 	if((iy|ly)==0) {
72*05a0b428SJohn Marino 	    switch(m) {
73*05a0b428SJohn Marino 		case 0:
74*05a0b428SJohn Marino 		case 1: return y; 	/* atan(+-0,+anything)=+-0 */
75*05a0b428SJohn Marino 		case 2: return  pi+tiny;/* atan(+0,-anything) = pi */
76*05a0b428SJohn Marino 		case 3: return -pi-tiny;/* atan(-0,-anything) =-pi */
77*05a0b428SJohn Marino 	    }
78*05a0b428SJohn Marino 	}
79*05a0b428SJohn Marino     /* when x = 0 */
80*05a0b428SJohn Marino 	if((ix|lx)==0) return (hy<0)?  -pi_o_2-tiny: pi_o_2+tiny;
81*05a0b428SJohn Marino 
82*05a0b428SJohn Marino     /* when x is INF */
83*05a0b428SJohn Marino 	if(ix==0x7ff00000) {
84*05a0b428SJohn Marino 	    if(iy==0x7ff00000) {
85*05a0b428SJohn Marino 		switch(m) {
86*05a0b428SJohn Marino 		    case 0: return  pi_o_4+tiny;/* atan(+INF,+INF) */
87*05a0b428SJohn Marino 		    case 1: return -pi_o_4-tiny;/* atan(-INF,+INF) */
88*05a0b428SJohn Marino 		    case 2: return  3.0*pi_o_4+tiny;/*atan(+INF,-INF)*/
89*05a0b428SJohn Marino 		    case 3: return -3.0*pi_o_4-tiny;/*atan(-INF,-INF)*/
90*05a0b428SJohn Marino 		}
91*05a0b428SJohn Marino 	    } else {
92*05a0b428SJohn Marino 		switch(m) {
93*05a0b428SJohn Marino 		    case 0: return  zero  ;	/* atan(+...,+INF) */
94*05a0b428SJohn Marino 		    case 1: return -zero  ;	/* atan(-...,+INF) */
95*05a0b428SJohn Marino 		    case 2: return  pi+tiny  ;	/* atan(+...,-INF) */
96*05a0b428SJohn Marino 		    case 3: return -pi-tiny  ;	/* atan(-...,-INF) */
97*05a0b428SJohn Marino 		}
98*05a0b428SJohn Marino 	    }
99*05a0b428SJohn Marino 	}
100*05a0b428SJohn Marino     /* when y is INF */
101*05a0b428SJohn Marino 	if(iy==0x7ff00000) return (hy<0)? -pi_o_2-tiny: pi_o_2+tiny;
102*05a0b428SJohn Marino 
103*05a0b428SJohn Marino     /* compute y/x */
104*05a0b428SJohn Marino 	k = (iy-ix)>>20;
105*05a0b428SJohn Marino 	if(k > 60) z=pi_o_2+0.5*pi_lo; 	/* |y/x| >  2**60 */
106*05a0b428SJohn Marino 	else if(hx<0&&k<-60) z=0.0; 	/* |y|/x < -2**60 */
107*05a0b428SJohn Marino 	else z=atan(fabs(y/x));		/* safe to do y/x */
108*05a0b428SJohn Marino 	switch (m) {
109*05a0b428SJohn Marino 	    case 0: return       z  ;	/* atan(+,+) */
110*05a0b428SJohn Marino 	    case 1: {
111*05a0b428SJohn Marino 	    	      u_int32_t zh;
112*05a0b428SJohn Marino 		      GET_HIGH_WORD(zh,z);
113*05a0b428SJohn Marino 		      SET_HIGH_WORD(z,zh ^ 0x80000000);
114*05a0b428SJohn Marino 		    }
115*05a0b428SJohn Marino 		    return       z  ;	/* atan(-,+) */
116*05a0b428SJohn Marino 	    case 2: return  pi-(z-pi_lo);/* atan(+,-) */
117*05a0b428SJohn Marino 	    default: /* case 3 */
118*05a0b428SJohn Marino 	    	    return  (z-pi_lo)-pi;/* atan(-,-) */
119*05a0b428SJohn Marino 	}
120*05a0b428SJohn Marino }
121*05a0b428SJohn Marino 
122*05a0b428SJohn Marino #if	LDBL_MANT_DIG == DBL_MANT_DIG
123*05a0b428SJohn Marino __strong_alias(atan2l, atan2);
124*05a0b428SJohn Marino #endif	/* LDBL_MANT_DIG == DBL_MANT_DIG */
125