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1 /* e_logf.c -- float version of e_log.c.
2 * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
3 * adapted for log2 by Ulrich Drepper <drepper@cygnus.com>
4 */
5
6 /*
7 * ====================================================
8 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
9 *
10 * Developed at SunPro, a Sun Microsystems, Inc. business.
11 * Permission to use, copy, modify, and distribute this
12 * software is freely granted, provided that this notice
13 * is preserved.
14 * ====================================================
15 */
16
17
18 #include "math.h"
19 #include "math_private.h"
20
21 static const float
22 ln2 = 0.69314718055994530942,
23 two25 = 3.355443200e+07, /* 0x4c000000 */
24 Lg1 = 6.6666668653e-01, /* 3F2AAAAB */
25 Lg2 = 4.0000000596e-01, /* 3ECCCCCD */
26 Lg3 = 2.8571429849e-01, /* 3E924925 */
27 Lg4 = 2.2222198546e-01, /* 3E638E29 */
28 Lg5 = 1.8183572590e-01, /* 3E3A3325 */
29 Lg6 = 1.5313838422e-01, /* 3E1CD04F */
30 Lg7 = 1.4798198640e-01; /* 3E178897 */
31
32 static const float zero = 0.0;
33
34 float
35 __ieee754_log2f(float x)
36 {
37 float hfsq,f,s,z,R,w,t1,t2,dk;
38 int32_t k,ix,i,j;
39
40 GET_FLOAT_WORD(ix,x);
41
42 k=0;
43 if (ix < 0x00800000) { /* x < 2**-126 */
44 if (__builtin_expect((ix&0x7fffffff)==0, 0))
45 return -two25/(x-x); /* log(+-0)=-inf */
46 if (__builtin_expect(ix<0, 0))
47 return (x-x)/(x-x); /* log(-#) = NaN */
48 k -= 25; x *= two25; /* subnormal number, scale up x */
49 GET_FLOAT_WORD(ix,x);
50 }
51 if (__builtin_expect(ix >= 0x7f800000, 0)) return x+x;
52 k += (ix>>23)-127;
53 ix &= 0x007fffff;
54 i = (ix+(0x95f64<<3))&0x800000;
55 SET_FLOAT_WORD(x,ix|(i^0x3f800000)); /* normalize x or x/2 */
56 k += (i>>23);
57 dk = (float)k;
58 f = x-(float)1.0;
59 if((0x007fffff&(15+ix))<16) { /* |f| < 2**-20 */
60 if(f==zero) return dk;
61 R = f*f*((float)0.5-(float)0.33333333333333333*f);
62 return dk-(R-f)/ln2;
63 }
64 s = f/((float)2.0+f);
65 z = s*s;
66 i = ix-(0x6147a<<3);
67 w = z*z;
68 j = (0x6b851<<3)-ix;
69 t1= w*(Lg2+w*(Lg4+w*Lg6));
70 t2= z*(Lg1+w*(Lg3+w*(Lg5+w*Lg7)));
71 i |= j;
72 R = t2+t1;
73 if(i>0) {
74 hfsq=(float)0.5*f*f;
75 return dk-((hfsq-(s*(hfsq+R)))-f)/ln2;
76 } else {
77 return dk-((s*(f-R))-f)/ln2;
78 }
79 }
80 strong_alias (__ieee754_log2f, __log2f_finite)