A rint() implementation.
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4 changed files with 16 additions and 15 deletions
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@ -30,6 +30,7 @@ _PROTOTYPE( double log, (double _x) );
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_PROTOTYPE( double log10, (double _x) );
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_PROTOTYPE( double modf, (double _x, double *_iptr) );
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_PROTOTYPE( double pow, (double _x, double _y) );
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_PROTOTYPE( double rint, (double _x) );
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_PROTOTYPE( double sin, (double _x) );
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_PROTOTYPE( double sinh, (double _x) );
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_PROTOTYPE( double sqrt, (double _x) );
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@ -17,6 +17,7 @@ libc_FILES=" \
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log.c \
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log10.c \
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pow.c \
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s_rint.c \
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sin.c \
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sinh.c \
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sqrt.c \
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@ -18,7 +18,7 @@
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#define _MATH_PRIVATE_H_
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#include <sys/types.h>
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#include <machine/endian.h>
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#include <net/hton.h>
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/*
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* The original fdlibm code used statements like:
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@ -38,29 +38,29 @@
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* ints.
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*/
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#if BYTE_ORDER == BIG_ENDIAN
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#if BIG_ENDIAN
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typedef union
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{
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double value;
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struct
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{
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u_int32_t msw;
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u_int32_t lsw;
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u32_t msw;
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u32_t lsw;
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} parts;
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} ieee_double_shape_type;
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#endif
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#if BYTE_ORDER == LITTLE_ENDIAN
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#if LITTLE_ENDIAN
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typedef union
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{
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double value;
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struct
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{
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u_int32_t lsw;
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u_int32_t msw;
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u32_t lsw;
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u32_t msw;
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} parts;
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} ieee_double_shape_type;
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@ -154,6 +154,8 @@ do { \
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(d) = sf_u.value; \
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} while (0)
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#if 0
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#ifdef _COMPLEX_H
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/*
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* Inline functions that can be used to construct complex values.
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@ -269,4 +271,6 @@ float __kernel_cosdf(double);
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float __kernel_tandf(double,int);
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int __kernel_rem_pio2f(float*,float*,int,int,int,const int*);
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#endif
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#endif /* !_MATH_PRIVATE_H_ */
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@ -10,10 +10,6 @@
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* ====================================================
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*/
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#ifndef lint
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static char rcsid[] = "$FreeBSD: src/lib/msun/src/s_rint.c,v 1.11.2.1 2007/06/14 05:16:44 bde Exp $";
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#endif
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/*
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* rint(x)
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* Return x rounded to integral value according to the prevailing
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@ -24,7 +20,6 @@ static char rcsid[] = "$FreeBSD: src/lib/msun/src/s_rint.c,v 1.11.2.1 2007/06/14
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* Inexact flag raised if x not equal to rint(x).
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*/
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#include "math.h"
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#include "math_private.h"
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static const double
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@ -36,8 +31,8 @@ TWO52[2]={
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double
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rint(double x)
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{
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int32_t i0,j0,sx;
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u_int32_t i,i1;
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i32_t i0,j0,sx;
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u32_t i,i1;
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double w,t;
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EXTRACT_WORDS(i0,i1,x);
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sx = (i0>>31)&1;
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@ -76,7 +71,7 @@ rint(double x)
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if(j0==0x400) return x+x; /* inf or NaN */
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else return x; /* x is integral */
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} else {
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i = ((u_int32_t)(0xffffffff))>>(j0-20);
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i = ((u32_t)(0xffffffff))>>(j0-20);
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if((i1&i)==0) return x; /* x is integral */
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i>>=1;
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if((i1&i)!=0) i1 = (i1&(~i))|((0x40000000)>>(j0-20));
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