2 * ====================================================
3 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
5 * Developed at SunPro, a Sun Microsystems, Inc. business.
6 * Permission to use, copy, modify, and distribute this
7 * software is freely granted, provided that this notice
9 * ====================================================
12 /* __ieee754_hypot(x,y)
15 * If (assume round-to-nearest) z=x*x+y*y
16 * has error less than sqrt(2)/2 ulp, than
17 * sqrt(z) has error less than 1 ulp (exercise).
19 * So, compute sqrt(x*x+y*y) with some care as
20 * follows to get the error below 1 ulp:
23 * (if possible, set rounding to round-to-nearest)
25 * x1*x1+(y*y+(x2*(x+x1))) for x*x+y*y
26 * where x1 = x with lower 32 bits cleared, x2 = x-x1; else
28 * t1*y1+((x-y)*(x-y)+(t1*y2+t2*y))
29 * where t1 = 2x with lower 32 bits cleared, t2 = 2x-t1,
30 * y1= y with lower 32 bits chopped, y2 = y-y1.
32 * NOTE: scaling may be necessary if some argument is too
36 * hypot(x,y) is INF if x or y is +INF or -INF; else
37 * hypot(x,y) is NAN if x or y is NAN.
40 * hypot(x,y) returns sqrt(x^2+y^2) with error less
41 * than 1 ulps (units in the last place)
45 #include "math_private.h"
47 double __ieee754_hypot(double x
, double y
)
49 double a
=x
,b
=y
,t1
,t2
,_y1
,y2
,w
;
56 if(hb
> ha
) {a
=y
;b
=x
;j
=ha
; ha
=hb
;hb
=j
;} else {a
=x
;b
=y
;}
57 SET_HIGH_WORD(a
,ha
); /* a <- |a| */
58 SET_HIGH_WORD(b
,hb
); /* b <- |b| */
59 if((ha
-hb
)>0x3c00000) {return a
+b
;} /* x/y > 2**60 */
61 if(ha
> 0x5f300000) { /* a>2**500 */
62 if(ha
>= 0x7ff00000) { /* Inf or NaN */
64 w
= a
+b
; /* for sNaN */
66 if(((ha
&0xfffff)|low
)==0) w
= a
;
68 if(((hb
^0x7ff00000)|low
)==0) w
= b
;
71 /* scale a and b by 2**-600 */
72 ha
-= 0x25800000; hb
-= 0x25800000; k
+= 600;
76 if(hb
< 0x20b00000) { /* b < 2**-500 */
77 if(hb
<= 0x000fffff) { /* subnormal b or 0 */
80 if((hb
|low
)==0) return a
;
82 SET_HIGH_WORD(t1
,0x7fd00000); /* t1=2^1022 */
86 } else { /* scale a and b by 2^600 */
87 ha
+= 0x25800000; /* a *= 2^600 */
88 hb
+= 0x25800000; /* b *= 2^600 */
94 /* medium size a and b */
100 w
= __ieee754_sqrt(t1
*t1
-(b
*(-b
)-t2
*(a
+t1
)));
104 SET_HIGH_WORD(_y1
,hb
);
107 SET_HIGH_WORD(t1
,ha
+0x00100000);
109 w
= __ieee754_sqrt(t1
*_y1
-(w
*(-w
)-(t1
*y2
+t2
*b
)));
114 GET_HIGH_WORD(high
,t1
);
115 SET_HIGH_WORD(t1
,high
+(k
<<20));