#include <float.h>
#include "math.h"
#define INLINE_KERNEL_COSDF
#define INLINE_KERNEL_SINDF
#define INLINE_REM_PIO2F
#include "math_private.h"
#include "e_rem_pio2f.c"
#include "k_cosf.c"
#include "k_sinf.c"
static const double
s1pio2 = 1*M_PI_2,
s2pio2 = 2*M_PI_2,
s3pio2 = 3*M_PI_2,
s4pio2 = 4*M_PI_2;
float
sinf(float x)
{
double y;
int32_t n, hx, ix;
GET_FLOAT_WORD(hx,x);
ix = hx & 0x7fffffff;
if(ix <= 0x3f490fda) {
if(ix<0x39800000)
if(((int)x)==0) return x;
return __kernel_sindf(x);
}
if(ix<=0x407b53d1) {
if(ix<=0x4016cbe3) {
if(hx>0)
return __kernel_cosdf(x - s1pio2);
else
return -__kernel_cosdf(x + s1pio2);
} else
return __kernel_sindf((hx > 0 ? s2pio2 : -s2pio2) - x);
}
if(ix<=0x40e231d5) {
if(ix<=0x40afeddf) {
if(hx>0)
return -__kernel_cosdf(x - s3pio2);
else
return __kernel_cosdf(x + s3pio2);
} else
return __kernel_sindf(x + (hx > 0 ? -s4pio2 : s4pio2));
}
else if (ix>=0x7f800000) return x-x;
else {
n = __ieee754_rem_pio2f(x,&y);
switch(n&3) {
case 0: return __kernel_sindf(y);
case 1: return __kernel_cosdf(y);
case 2: return __kernel_sindf(-y);
default:
return -__kernel_cosdf(y);
}
}
}