Beispiel #1
0
COMPILER_RT_ABI Lcomplex
__divxc3(long double __a, long double __b, long double __c, long double __d)
{
    int __ilogbw = 0;
    long double __logbw = crt_logbl(crt_fmaxl(crt_fabsl(__c), crt_fabsl(__d)));
    if (crt_isfinite(__logbw))
    {
        __ilogbw = (int)__logbw;
        __c = crt_scalbnl(__c, -__ilogbw);
        __d = crt_scalbnl(__d, -__ilogbw);
    }
    long double __denom = __c * __c + __d * __d;
    Lcomplex z;
    COMPLEX_REAL(z) = crt_scalbnl((__a * __c + __b * __d) / __denom, -__ilogbw);
    COMPLEX_IMAGINARY(z) = crt_scalbnl((__b * __c - __a * __d) / __denom, -__ilogbw);
    if (crt_isnan(COMPLEX_REAL(z)) && crt_isnan(COMPLEX_IMAGINARY(z)))
    {
        if ((__denom == 0) && (!crt_isnan(__a) || !crt_isnan(__b)))
        {
            COMPLEX_REAL(z) = crt_copysignl(CRT_INFINITY, __c) * __a;
            COMPLEX_IMAGINARY(z) = crt_copysignl(CRT_INFINITY, __c) * __b;
        }
        else if ((crt_isinf(__a) || crt_isinf(__b)) &&
                 crt_isfinite(__c) && crt_isfinite(__d))
        {
            __a = crt_copysignl(crt_isinf(__a) ? 1 : 0, __a);
            __b = crt_copysignl(crt_isinf(__b) ? 1 : 0, __b);
            COMPLEX_REAL(z) = CRT_INFINITY * (__a * __c + __b * __d);
            COMPLEX_IMAGINARY(z) = CRT_INFINITY * (__b * __c - __a * __d);
        }
        else if (crt_isinf(__logbw) && __logbw > 0 &&
                 crt_isfinite(__a) && crt_isfinite(__b))
        {
            __c = crt_copysignl(crt_isinf(__c) ? 1 : 0, __c);
            __d = crt_copysignl(crt_isinf(__d) ? 1 : 0, __d);
            COMPLEX_REAL(z) = 0 * (__a * __c + __b * __d);
            COMPLEX_IMAGINARY(z) = 0 * (__b * __c - __a * __d);
        }
    }
    return z;
}
Beispiel #2
0
COMPILER_RT_ABI long double _Complex
__multc3(long double a, long double b, long double c, long double d)
{
    long double ac = a * c;
    long double bd = b * d;
    long double ad = a * d;
    long double bc = b * c;
    long double _Complex z;
    __real__ z = ac - bd;
    __imag__ z = ad + bc;
    if (crt_isnan(__real__ z) && crt_isnan(__imag__ z)) {
        int recalc = 0;
        if (crt_isinf(a) || crt_isinf(b)) {
            a = crt_copysignl(crt_isinf(a) ? 1 : 0, a);
            b = crt_copysignl(crt_isinf(b) ? 1 : 0, b);
            if (crt_isnan(c))
                c = crt_copysignl(0, c);
            if (crt_isnan(d))
                d = crt_copysignl(0, d);
            recalc = 1;
        }
        if (crt_isinf(c) || crt_isinf(d)) {
            c = crt_copysignl(crt_isinf(c) ? 1 : 0, c);
            d = crt_copysignl(crt_isinf(d) ? 1 : 0, d);
            if (crt_isnan(a))
                a = crt_copysignl(0, a);
            if (crt_isnan(b))
                b = crt_copysignl(0, b);
            recalc = 1;
        }
        if (!recalc && (crt_isinf(ac) || crt_isinf(bd) ||
                          crt_isinf(ad) || crt_isinf(bc))) {
            if (crt_isnan(a))
                a = crt_copysignl(0, a);
            if (crt_isnan(b))
                b = crt_copysignl(0, b);
            if (crt_isnan(c))
                c = crt_copysignl(0, c);
            if (crt_isnan(d))
                d = crt_copysignl(0, d);
            recalc = 1;
        }
        if (recalc) {
            __real__ z = CRT_INFINITY * (a * c - b * d);
            __imag__ z = CRT_INFINITY * (a * d + b * c);
        }
    }
    return z;
}