#include "math.h"
#include "math_private.h"
static const volatile float tiny = 1e-30;
static const float
half= 0.5,
one = 1,
two = 2,
erx = 8.42697144e-01,
efx = 1.28379166e-01,
efx8= 1.02703333e+00,
pp0 = 1.28379166e-01,
pp1 = -3.36030394e-01,
pp2 = -1.86261395e-03,
qq1 = 3.12324315e-01,
qq2 = 2.16070414e-02,
qq3 = -1.98859372e-03,
pa0 = 3.65041046e-06,
pa1 = 4.15109307e-01,
pa2 = -2.09395722e-01,
pa3 = 8.67677554e-02,
qa1 = 4.95560974e-01,
qa2 = 3.71248513e-01,
qa3 = 3.92478965e-02,
ra0 = -9.88156721e-03,
ra1 = -5.43658376e-01,
ra2 = -1.66828310e+00,
ra3 = -6.91554189e-01,
sa1 = 4.48581553e+00,
sa2 = 4.10799170e+00,
sa3 = 5.53855181e-01,
rb0 = -9.86496918e-03,
rb1 = -5.48049808e-01,
rb2 = -1.84115684e+00,
sb1 = 4.87132740e+00,
sb2 = 3.04982710e+00,
sb3 = -7.61900663e-01;
float
erff(float x)
{
int32_t hx,ix,i;
float R,S,P,Q,s,y,z,r;
GET_FLOAT_WORD(hx,x);
ix = hx&0x7fffffff;
if(ix>=0x7f800000) {
i = ((u_int32_t)hx>>31)<<1;
return (float)(1-i)+one/x;
}
if(ix < 0x3f580000) {
if(ix < 0x38800000) {
if (ix < 0x04000000)
return (8*x+efx8*x)/8;
return x + efx*x;
}
z = x*x;
r = pp0+z*(pp1+z*pp2);
s = one+z*(qq1+z*(qq2+z*qq3));
y = r/s;
return x + x*y;
}
if(ix < 0x3fa00000) {
s = fabsf(x)-one;
P = pa0+s*(pa1+s*(pa2+s*pa3));
Q = one+s*(qa1+s*(qa2+s*qa3));
if(hx>=0) return erx + P/Q; else return -erx - P/Q;
}
if (ix >= 0x40800000) {
if(hx>=0) return one-tiny; else return tiny-one;
}
x = fabsf(x);
s = one/(x*x);
if(ix< 0x4036db8c) {
R=ra0+s*(ra1+s*(ra2+s*ra3));
S=one+s*(sa1+s*(sa2+s*sa3));
} else {
R=rb0+s*(rb1+s*rb2);
S=one+s*(sb1+s*(sb2+s*sb3));
}
SET_FLOAT_WORD(z,hx&0xffffe000);
r = expf(-z*z-0.5625F)*expf((z-x)*(z+x)+R/S);
if(hx>=0) return one-r/x; else return r/x-one;
}
float
erfcf(float x)
{
int32_t hx,ix;
float R,S,P,Q,s,y,z,r;
GET_FLOAT_WORD(hx,x);
ix = hx&0x7fffffff;
if(ix>=0x7f800000) {
return (float)(((u_int32_t)hx>>31)<<1)+one/x;
}
if(ix < 0x3f580000) {
if(ix < 0x33800000)
return one-x;
z = x*x;
r = pp0+z*(pp1+z*pp2);
s = one+z*(qq1+z*(qq2+z*qq3));
y = r/s;
if(hx < 0x3e800000) {
return one-(x+x*y);
} else {
r = x*y;
r += (x-half);
return half - r ;
}
}
if(ix < 0x3fa00000) {
s = fabsf(x)-one;
P = pa0+s*(pa1+s*(pa2+s*pa3));
Q = one+s*(qa1+s*(qa2+s*qa3));
if(hx>=0) {
z = one-erx; return z - P/Q;
} else {
z = erx+P/Q; return one+z;
}
}
if (ix < 0x41300000) {
x = fabsf(x);
s = one/(x*x);
if(ix< 0x4036db8c) {
R=ra0+s*(ra1+s*(ra2+s*ra3));
S=one+s*(sa1+s*(sa2+s*sa3));
} else {
if(hx<0&&ix>=0x40a00000) return two-tiny;
R=rb0+s*(rb1+s*rb2);
S=one+s*(sb1+s*(sb2+s*sb3));
}
SET_FLOAT_WORD(z,hx&0xffffe000);
r = expf(-z*z-0.5625F)*expf((z-x)*(z+x)+R/S);
if(hx>0) return r/x; else return two-r/x;
} else {
if(hx>0) return tiny*tiny; else return two-tiny;
}
}