fabsf
float fabsf(float);
if (fabsf(x) > 1.0) {
} else if (x >= FLT_EPSILON * fabsf(y - 1)) {
} else if (x >= FLT_EPSILON * fabsf(y - 1)) {
ax = fabsf(x);
ay = fabsf(y);
ax = fabsf(x);
ay = fabsf(y);
rx = fabsf(cimagf(w));
return (CMPLXF(fabsf(ry), rx));
return (CMPLXF(fabsf(ry), copysignf(rx, cimagf(z))));
ax = fabsf(x);
ay = fabsf(y);
ax = fabsf(x);
ay = fabsf(y);
#define isinf(x) (fabsf(x) == INFINITY)
} while (fabsf(t/d) > MACHEPF);
if (fabsf(x) <= 0.5f) {
x = fabsf(2.0f * crealf(z));
y = fabsf(2.0f * cimagf(z));
if ((fabsf(x) > 4.0f) || (fabsf(y) > 4.0f)) {
r = scale * fabsf((0.5f * y) / t);
t = scale * fabsf((0.5f * y) / r);
if (fabsf(d) < 0.25f)
w = one-fabsf(x);
else z=atanf(fabsf(y/x)); /* safe to do y/x */
t = expm1f(fabsf(x));
t = __ieee754_expf(fabsf(x));
if (ix < 0x42b17180) return half*__ieee754_expf(fabsf(x));
w = __ieee754_expf(half*fabsf(x));
x = fabsf(x);
y = fabsf(x);
tmp = tmp*__ieee754_logf(fabsf(v*tmp));
if (fabsf(z) >= fabsf(w))
x = fabsf(x);
nadj = __ieee754_logf(pi/fabsf(t*x));
ax = fabsf(x);
t = fabsf(x);
x = fabsf(x);
p = fabsf(p);
t = expm1f(fabsf(x));
if (ix < 0x42b17180) return h*__ieee754_expf(fabsf(x));
w = __ieee754_expf((float)0.5*fabsf(x));
if((ix|(iy+1))==0) return one/fabsf(x);
w = __ieee754_logf(fabsf(x))+ln2;
t = fabsf(x);
w =log1pf(fabsf(x)+t/(one+__ieee754_sqrtf(one+t)));
x = fabsf(x);
s = fabsf(x)-one;
x = fabsf(x);
s = fabsf(x)-one;
x = fabsf(x);
if(ix==0) return (float)-1.0/fabsf(x);
y = fabsf(y);
t = expm1f(two*fabsf(x));
t = expm1f(-two*fabsf(x));
if(fabsf(x)>(float)1.0) {
if(fabsf(x)>(float)1.0) {
y = fabsf(x);
if(fabsf(x)>(float)8.9415985107e+01) {
if(fabsf(x)>(float)X_TLOSS) {
if(fabsf(x)>(float)X_TLOSS) {
if(fabsf(x)>(float)X_TLOSS) {
if (!(fabsf((asinf(x) - y)/y) <= eps)) {
x, asinf(x), y, fabsf(((asinf(x) - y)/y)/eps));
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
ok = (fabsf((x_cbrt - x_pow13)/x_cbrt) <= eps);
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
ATF_CHECK(fabsf(ceilf(x) - 1) < SMALL_NUM);
ATF_CHECK(fabsf(ceilf(y) - 1) < SMALL_NUM);
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (!(fabsf((result - cos_theta)/cos_theta) <= eps)) {
if (!(fabsf((coshf(x) - cosh_x)/cosh_x) <= eps)) {
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
if (!(fabsf((expf(x) - e_x)/e_x) <= eps)) {
if (fabsf(expf(x) - 1.0f) > 0.0)
if (fabsf(expf(x) - 1.0f) > 0.0)
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
ATF_CHECK(fabsf(fmodf(1.0, 0.1) - 0.1f) <= 55 * FLT_EPSILON);
if (!(fabsf((y - (x * exp2f(n[i])))/y) <= eps)) {
ATF_CHECK_MSG((fabsf((log10f(e) - (float)log10e)/(float)log10e) <
ATF_CHECK_MSG((fabsf((log10f(e2) - (float)log10e2)/(float)log10e2) <
ATF_CHECK_MSG(fabsf((log1pf(em1) - 1)/1) < 2*FLT_EPSILON,
ATF_CHECK_MSG(fabsf((log1pf(e2m1) - 2)/2) < 2*FLT_EPSILON,
ATF_CHECK_MSG((fabsf((log2f(e) - (float)log2e)/(float)log2e) <
ATF_CHECK_MSG((fabsf((log2f(e2) - (float)log2e2)/(float)log2e2) <
ATF_CHECK_MSG(fabsf((logf(2) - log_2)/log_2) < 2*FLT_EPSILON,
ATF_CHECK_MSG(fabsf((logf(e) - 1)/1) < 2*FLT_EPSILON,
ATF_CHECK_MSG(fabsf((logf(e2) - 2)/2) < 2*FLT_EPSILON,
ATF_CHECK_MSG(fabsf((logf(10) - log_10)/log_10) < 2*FLT_EPSILON,
ATF_CHECK_MSG(fabsf(z) == 0.0, "x=%a z=%s=%a", x, "powf(x, -3.0)", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "x=%a z=%s=%a", x, "powf(x, -4.0)", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "y=%a z=%s=%a", y, "powf(1.1, y)", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "x=%a z=%s=%a", x, "powf(x, -2.0)", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "y=%a z=%s=%a", y, "powf(0.1, y)", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "z=%a", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "z=%a", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "z=%a", z);
ATF_CHECK_MSG(fabsf(z) == 0.0, "z=%a", z);
ATF_CHECK(fabsf(bf) < SMALL_NUM);
ATF_CHECK(fabsf(cf) < SMALL_NUM);
fabsf((tests[i].result - rv)/tests[i].result));
ok = (fabsf((sinf(theta) - sin_theta)/sin_theta)
if (!(fabsf((sinhf(x) - sinh_x)/sinh_x) <= eps)) {
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
ok = (fabsf((x_sqrt - x_pow12)/x_sqrt) <= eps);
if (fabsf(y) > 0.0 || signbit(y) == 0)
if (fabsf(y) > 0.0 || signbit(y) != 0)
ok = (fabsf((tanf(theta) - tan_theta)/tan_theta)