File: //usr/local/cuda-12.8/include/curand_normal_static.h
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#ifndef CURAND_NORMAL_STATIC_H
#define CURAND_NORMAL_STATIC_H
#define QUALIFIERS_STATIC __host__ __device__ __forceinline__
#include <nv/target>
#if defined(HOST_HAVE_ERFCINVF)
#define IF_DEVICE_OR_HAVE_ERFCINVF(t, f) _NV_BLOCK_EXPAND(t)
#else
#define IF_DEVICE_OR_HAVE_ERFCINVF(t, f) NV_IF_ELSE_TARGET(NV_IS_DEVICE, t, f)
#endif
QUALIFIERS_STATIC float _curand_normal_icdf(unsigned int x)
{
IF_DEVICE_OR_HAVE_ERFCINVF(
float s = CURAND_SQRT2;
// Mirror to avoid loss of precision
if(x > 0x80000000UL) {
x = 0xffffffffUL - x;
s = -s;
}
float p = x * CURAND_2POW32_INV + (CURAND_2POW32_INV/2.0f);
// p is in (0, 0.5], 2p is in (0, 1]
return s * erfcinvf(2.0f * p);
,
x++; //suppress warnings
return 0.0f;
)
}
QUALIFIERS_STATIC float _curand_normal_icdf(unsigned long long x)
{
IF_DEVICE_OR_HAVE_ERFCINVF(
unsigned int t = (unsigned int)(x >> 32);
float s = CURAND_SQRT2;
// Mirror to avoid loss of precision
if(t > 0x80000000UL) {
t = 0xffffffffUL - t;
s = -s;
}
float p = t * CURAND_2POW32_INV + (CURAND_2POW32_INV/2.0f);
// p is in (0 - 0.5] 2p is in (0 - 1]
return s * erfcinvf(2.0f * p);
,
x++;
return 0.0f;
)
}
QUALIFIERS_STATIC double _curand_normal_icdf_double(unsigned int x)
{
IF_DEVICE_OR_HAVE_ERFCINVF(
double s = CURAND_SQRT2_DOUBLE;
// Mirror to avoid loss of precision
if(x > 0x80000000UL) {
x = 0xffffffffUL - x;
s = -s;
}
double p = x * CURAND_2POW32_INV_DOUBLE + (CURAND_2POW32_INV_DOUBLE/2.0);
// p is in (0 - 0.5] 2p is in (0 - 1]
return s * erfcinv(2.0 * p);
,
x++;
return 0.0;
)
}
QUALIFIERS_STATIC double _curand_normal_icdf_double(unsigned long long x)
{
IF_DEVICE_OR_HAVE_ERFCINVF(
double s = CURAND_SQRT2_DOUBLE;
x >>= 11;
// Mirror to avoid loss of precision
if(x > 0x10000000000000UL) {
x = 0x1fffffffffffffUL - x;
s = -s;
}
double p = x * CURAND_2POW53_INV_DOUBLE + (CURAND_2POW53_INV_DOUBLE/2.0);
// p is in (0 - 0.5] 2p is in (0 - 1]
return s * erfcinv(2.0 * p);
,
x++;
return 0.0;
)
}
#undef QUALIFIERS_STATIC
#endif