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e_atan2.c (3828B)


      1 /* @(#)e_atan2.c 5.1 93/09/24 */
      2 /*
      3  * ====================================================
      4  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
      5  *
      6  * Developed at SunPro, a Sun Microsystems, Inc. business.
      7  * Permission to use, copy, modify, and distribute this
      8  * software is freely granted, provided that this notice
      9  * is preserved.
     10  * ====================================================
     11  */
     12 
     13 #ifndef lint
     14 static char rcsid[] = "$FreeBSD: src/lib/msun/src/e_atan2.c,v 1.9 2003/07/23 04:53:46 peter Exp $";
     15 #endif
     16 
     17 /* __ieee754_atan2(y,x)
     18  * Method :
     19  *	1. Reduce y to positive by atan2(y,x)=-atan2(-y,x).
     20  *	2. Reduce x to positive by (if x and y are unexceptional):
     21  *		ARG (x+iy) = arctan(y/x)   	   ... if x > 0,
     22  *		ARG (x+iy) = pi - arctan[y/(-x)]   ... if x < 0,
     23  *
     24  * Special cases:
     25  *
     26  *	ATAN2((anything), NaN ) is NaN;
     27  *	ATAN2(NAN , (anything) ) is NaN;
     28  *	ATAN2(+-0, +(anything but NaN)) is +-0  ;
     29  *	ATAN2(+-0, -(anything but NaN)) is +-pi ;
     30  *	ATAN2(+-(anything but 0 and NaN), 0) is +-pi/2;
     31  *	ATAN2(+-(anything but INF and NaN), +INF) is +-0 ;
     32  *	ATAN2(+-(anything but INF and NaN), -INF) is +-pi;
     33  *	ATAN2(+-INF,+INF ) is +-pi/4 ;
     34  *	ATAN2(+-INF,-INF ) is +-3pi/4;
     35  *	ATAN2(+-INF, (anything but,0,NaN, and INF)) is +-pi/2;
     36  *
     37  * Constants:
     38  * The hexadecimal values are the intended ones for the following
     39  * constants. The decimal values may be used, provided that the
     40  * compiler will convert from decimal to binary accurately enough
     41  * to produce the hexadecimal values shown.
     42  */
     43 
     44 #include "math.h"
     45 #include "math_private.h"
     46 
     47 static const double
     48 tiny  = 1.0e-300,
     49 zero  = 0.0,
     50 pi_o_4  = 7.8539816339744827900E-01, /* 0x3FE921FB, 0x54442D18 */
     51 pi_o_2  = 1.5707963267948965580E+00, /* 0x3FF921FB, 0x54442D18 */
     52 pi      = 3.1415926535897931160E+00, /* 0x400921FB, 0x54442D18 */
     53 pi_lo   = 1.2246467991473531772E-16; /* 0x3CA1A626, 0x33145C07 */
     54 
     55 double
     56 __ieee754_atan2(double y, double x)
     57 {
     58 	double z;
     59 	int32_t k,m,hx,hy,ix,iy;
     60 	u_int32_t lx,ly;
     61 
     62 	EXTRACT_WORDS(hx,lx,x);
     63 	ix = hx&0x7fffffff;
     64 	EXTRACT_WORDS(hy,ly,y);
     65 	iy = hy&0x7fffffff;
     66 	if(((ix|((lx|-lx)>>31))>0x7ff00000)||
     67 	   ((iy|((ly|-ly)>>31))>0x7ff00000))	/* x or y is NaN */
     68 	   return x+y;
     69 	if(((hx-0x3ff00000)|lx)==0) return atan(y);   /* x=1.0 */
     70 	m = ((hy>>31)&1)|((hx>>30)&2);	/* 2*sign(x)+sign(y) */
     71 
     72     /* when y = 0 */
     73 	if((iy|ly)==0) {
     74 	    switch(m) {
     75 		case 0:
     76 		case 1: return y; 	/* atan(+-0,+anything)=+-0 */
     77 		case 2: return  pi+tiny;/* atan(+0,-anything) = pi */
     78 		case 3: return -pi-tiny;/* atan(-0,-anything) =-pi */
     79 	    }
     80 	}
     81     /* when x = 0 */
     82 	if((ix|lx)==0) return (hy<0)?  -pi_o_2-tiny: pi_o_2+tiny;
     83 
     84     /* when x is INF */
     85 	if(ix==0x7ff00000) {
     86 	    if(iy==0x7ff00000) {
     87 		switch(m) {
     88 		    case 0: return  pi_o_4+tiny;/* atan(+INF,+INF) */
     89 		    case 1: return -pi_o_4-tiny;/* atan(-INF,+INF) */
     90 		    case 2: return  3.0*pi_o_4+tiny;/*atan(+INF,-INF)*/
     91 		    case 3: return -3.0*pi_o_4-tiny;/*atan(-INF,-INF)*/
     92 		}
     93 	    } else {
     94 		switch(m) {
     95 		    case 0: return  zero  ;	/* atan(+...,+INF) */
     96 		    case 1: return -zero  ;	/* atan(-...,+INF) */
     97 		    case 2: return  pi+tiny  ;	/* atan(+...,-INF) */
     98 		    case 3: return -pi-tiny  ;	/* atan(-...,-INF) */
     99 		}
    100 	    }
    101 	}
    102     /* when y is INF */
    103 	if(iy==0x7ff00000) return (hy<0)? -pi_o_2-tiny: pi_o_2+tiny;
    104 
    105     /* compute y/x */
    106 	k = (iy-ix)>>20;
    107 	if(k > 60) z=pi_o_2+0.5*pi_lo; 	/* |y/x| >  2**60 */
    108 	else if(hx<0&&k<-60) z=0.0; 	/* |y|/x < -2**60 */
    109 	else z=atan(fabs(y/x));		/* safe to do y/x */
    110 	switch (m) {
    111 	    case 0: return       z  ;	/* atan(+,+) */
    112 	    case 1: {
    113 	    	      u_int32_t zh;
    114 		      GET_HIGH_WORD(zh,z);
    115 		      SET_HIGH_WORD(z,zh ^ 0x80000000);
    116 		    }
    117 		    return       z  ;	/* atan(-,+) */
    118 	    case 2: return  pi-(z-pi_lo);/* atan(+,-) */
    119 	    default: /* case 3 */
    120 	    	    return  (z-pi_lo)-pi;/* atan(-,-) */
    121 	}
    122 }