fabsl
long double fabsl(long double);
__strong_alias(fabsl, fabs)
__strong_alias(fabsl, fabs)
__strong_alias(fabsl, fabs)
if (fabsl(x) > 1.0L) {
} else if (x >= LDBL_EPSILON * fabsl(y-1)) {
} else if (x >= LDBL_EPSILON * fabsl(y-1)) {
ax = fabsl(x);
ay = fabsl(y);
ax = fabsl(x);
ay = fabsl(y);
rx = fabsl(cimagl(w));
return (CMPLXL(fabsl(ry), rx));
return (CMPLXL(fabsl(ry), copysignl(rx, cimagl(z))));
ax = fabsl(x);
ay = fabsl(y);
ax = fabsl(x);
ay = fabsl(y);
#define isinf(x) (fabsl(x) == INFINITY)
} while (fabsl(t/d) > MACHEPL);
if (fabsl(x) <= 0.5L) {
x = fabsl(2.0L * creall(z));
y = fabsl(2.0L * cimagl(z));
result = cpackl(fabsl(b) / (2.0L * t), copysignl(t, b));
return (cpackl(fabsl(b - b), copysignl(a, b)));
if (fabsl(a) >= THRESH || fabsl(b) >= THRESH) {
if (fabsl(d) < 0.25L)
return -logl(fabsl(x));
nadj = logl(pi/fabsl(t*x));
ax = fabsl (x);
if (fabsl(x) >= 0.67434) {
ax = fabsl(x);
ax = fabsl(x);
ax = fabsl(x);
(0x1p200 * x + fabsl(x)) * 0x1p-200);
ax = fabsl(x);
ax = fabsl(x);
RETURNI(-logl(fabsl(x)));
nadj = logl(pi/fabsl(t*x));
ya = fabsl(y);
yb = 0.5L * fabsl(w);
if( (w == x) && (fabsl(y) < 32768.0) )
x = fabsl(x);
if (fabsl(x) >= 0.67434) {
ax = fabsl(x);
ax = fabsl(x);
(0x1p100 * x + fabsl(x)) * 0x1p-100);
w = one-fabsl(x);
else z=atanl(fabsl(y/x)); /* safe to do y/x */
RETURNI(fabsl(x) == 1 ? x / zero : (x - x) / (x - x));
k_hexpl(fabsl(x), &hi, &lo);
if (fabsl(x) <= o_threshold)
RETURNI(hexpl(fabsl(x)));
a = fabsl(a);
b = fabsl(b);
w = fabsl(x+0.0L)-fabsl(y+0);
k_hexpl(fabsl(x), &hi, &lo);
if (fabsl(x) <= o_threshold)
RETURNI(s*hexpl(fabsl(x)));
assert(__ia == 0 || fabsl(__ia) >= fabsl(__ib)); \
w = logl(fabsl(x))+ln2;
t = fabsl(x);
w =log1pl(fabsl(x)+t/(one+sqrtl(one+t)));
x = fabsl(x);
ax = fabsl(x);
ay = fabsl(y);
__strong_alias(fabsl, fabs)
return -1.0L / fabsl(x); /* -HUGE_VALL + exception */
return fabsl(x); /* NaN or +Inf */
y = fabsl(y);
if (ix < 0x4004 || fabsl(x) < 40) { /* |x|<40 */
k_hexpl(2*fabsl(x), &hi, &lo);
if (ix<0x4001 && fabsl(x) < 1.5) /* |x|<1.5 */
ok = (fabsl((x_cbrt - x_pow13)/x_cbrt) <= eps);
if (fabsl(y) > 0.0 || signbit(y) == 0)
if (fabsl(y) > 0.0 || signbit(y) != 0)
ATF_CHECK(fabsl(ceill(x) - 1) < SMALL_NUM);
ATF_CHECK(fabsl(ceill(y) - 1) < SMALL_NUM);
if (fabsl(y) > 0.0 || signbit(y) == 0)
if (fabsl(y) > 0.0 || signbit(y) != 0)
if (fabsl(y) > 0.0 || signbit(y) == 0)
if (fabsl(y) > 0.0 || signbit(y) != 0)
if (fabsl(y) > 0.0 || signbit(y) == 0)
if (fabsl(y) > 0.0 || signbit(y) != 0)
if (!(fabsl((cosl(theta) - cos_theta)/cos_theta) <= eps)) {
ATF_CHECK(fabsl(fmodl(1.0, 0.1L) - 0.1L) <= 55 * LDBL_EPSILON);
long double e = fabsl((r - expect)/expect); \
ATF_CHECK_MSG((fabsl((log10l(e) - log10e)/log10e) < 2*LDBL_EPSILON),
ATF_CHECK_MSG((fabsl((log10l(e2) - log10e2)/log10e2) < 2*LDBL_EPSILON),
ATF_CHECK_MSG(fabsl((log1pl(em1) - 1)/1) < 2*LDBL_EPSILON,
ATF_CHECK_MSG(fabsl((log1pl(e2m1) - 2)/2) < 2*LDBL_EPSILON,
ATF_CHECK_MSG((fabsl((log2l(e) - log2e)/log2e) < 2*LDBL_EPSILON),
ATF_CHECK_MSG((fabsl((log2l(e2) - log2e2)/log2e2) < 2*LDBL_EPSILON),
ATF_CHECK_MSG(fabsl((logl(2) - log_2)/log_2) < 2*LDBL_EPSILON,
ATF_CHECK_MSG(fabsl((logl(e) - 1)/1) < 2*LDBL_EPSILON,
ATF_CHECK_MSG(fabsl((logl(e2) - 2)/2) < 2*LDBL_EPSILON,
ATF_CHECK_MSG(fabsl((logl(10) - log_10)/log_10) < 2*LDBL_EPSILON,
ATF_CHECK(fabsl(bl) < SMALL_NUM);
ATF_CHECK(fabsl(cl) < SMALL_NUM);
fabsl(((long double)tests[i].result - rv)/tests[i].result));
if (fabsl((s - sin_theta)/sin_theta) > eps) {
if (fabsl((c - cos_theta)/cos_theta) > eps) {
ok = (fabsl((x_sqrt - x_pow12)/x_sqrt) <= eps);
if (fabsl(y) > 0.0 || signbit(y) == 0)
if (fabsl(y) > 0.0 || signbit(y) != 0)