sqrtf
float sqrtf(float);
DEF_STD(sqrtf);
DEF_STD(sqrtf);
PROTO_NORMAL(sqrtf);
s = sqrtf(z);
s = sqrtf(z);
return logf((float)2.0*x-one/(x+sqrtf(t-one)));
return log1pf(t+sqrtf((float)2.0*t+t*t));
s = sqrtf(t);
w = sqrtf(t1*t1-(b*(-b)-t2*(a+t1)));
w = sqrtf(t1*yy1-(w*(-w)-(t1*y2+t2*b)));
if(ix>0x80000000U) z = (invsqrtpi*ss)/sqrtf(x);
z = invsqrtpi*(u*ss+v*cc)/sqrtf(x);
if(ix>0x80000000U) z = (invsqrtpi*cc)/sqrtf(x);
z = invsqrtpi*(u*cc-v*ss)/sqrtf(x);
if(ix>0x48000000) z = (invsqrtpi*ss)/sqrtf(x);
z = invsqrtpi*(u*ss+v*cc)/sqrtf(x);
if(ix>0x80000000U) z = (invsqrtpi*cc)/sqrtf(y);
z = invsqrtpi*(u*cc-v*ss)/sqrtf(y);
return sqrtf(x);
DEF_STD(sqrtf);
w = logf((float)2.0*t+one/(sqrtf(x*x+one)+t));
w =log1pf(fabsf(x)+t/(one+sqrtf(one+t)));
t = sqrtf( 0.5f * r + 0.5f * x );
r = sqrtf(0.5f * r - 0.5f * x);
w = 0.0f + copysign(sqrtf(-x), y) * I;
w = sqrtf(x) + y * I;
r = sqrtf(0.5f*r);