#include "quad.h"
#ifdef __sparcv9
#define _Q_cmpe _Qp_cmpe
#endif
enum fcc_type
_Q_cmpe(const union longdouble *x, const union longdouble *y)
{
unsigned int xm, ym, fsr;
if (QUAD_ISNAN(*x) || QUAD_ISNAN(*y)) {
__quad_getfsrp(&fsr);
if (fsr & FSR_NVM) {
__quad_fcmpeq(x, y, &fsr);
return ((fsr >> 10) & 3);
} else {
fsr = (fsr & ~FSR_CEXC) | FSR_NVA | FSR_NVC;
__quad_setfsrp(&fsr);
}
return (fcc_unordered);
}
xm = x->l.msw;
if (QUAD_ISZERO(*x))
xm &= 0x7fffffff;
ym = y->l.msw;
if (QUAD_ISZERO(*y))
ym &= 0x7fffffff;
if ((xm ^ ym) & 0x80000000)
return ((ym & 0x80000000)? fcc_greater : fcc_less);
if (xm & 0x80000000) {
if (xm > ym)
return (fcc_less);
if (xm < ym)
return (fcc_greater);
if (x->l.frac2 > y->l.frac2)
return (fcc_less);
if (x->l.frac2 < y->l.frac2)
return (fcc_greater);
if (x->l.frac3 > y->l.frac3)
return (fcc_less);
if (x->l.frac3 < y->l.frac3)
return (fcc_greater);
if (x->l.frac4 > y->l.frac4)
return (fcc_less);
if (x->l.frac4 < y->l.frac4)
return (fcc_greater);
return (fcc_equal);
}
if (xm < ym)
return (fcc_less);
if (xm > ym)
return (fcc_greater);
if (x->l.frac2 < y->l.frac2)
return (fcc_less);
if (x->l.frac2 > y->l.frac2)
return (fcc_greater);
if (x->l.frac3 < y->l.frac3)
return (fcc_less);
if (x->l.frac3 > y->l.frac3)
return (fcc_greater);
if (x->l.frac4 < y->l.frac4)
return (fcc_less);
if (x->l.frac4 > y->l.frac4)
return (fcc_greater);
return (fcc_equal);
}