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#if !defined(CU_COMPLEX_H_)
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#define CU_COMPLEX_H_
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#if !defined(__CUDACC_RTC__)
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#if defined(__GNUC__)
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#if defined(__clang__) || (!defined(__PGIC__) && (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 2)))
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#pragma GCC diagnostic ignored "-Wunused-function"
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#endif
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#endif
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#endif
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#if !defined(__CUDACC__)
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#include <math.h>
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#endif
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#if defined(__cplusplus)
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extern "C" {
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#endif
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#include "vector_types.h"
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typedef float2 cuFloatComplex;
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__host__ __device__ static __inline__ float cuCrealf (cuFloatComplex x)
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{
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return x.x;
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}
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__host__ __device__ static __inline__ float cuCimagf (cuFloatComplex x)
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{
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return x.y;
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}
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__host__ __device__ static __inline__ cuFloatComplex make_cuFloatComplex
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(float r, float i)
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{
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cuFloatComplex res;
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res.x = r;
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res.y = i;
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return res;
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}
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__host__ __device__ static __inline__ cuFloatComplex cuConjf (cuFloatComplex x)
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{
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return make_cuFloatComplex (cuCrealf(x), -cuCimagf(x));
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}
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__host__ __device__ static __inline__ cuFloatComplex cuCaddf (cuFloatComplex x,
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cuFloatComplex y)
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{
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return make_cuFloatComplex (cuCrealf(x) + cuCrealf(y),
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cuCimagf(x) + cuCimagf(y));
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}
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__host__ __device__ static __inline__ cuFloatComplex cuCsubf (cuFloatComplex x,
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cuFloatComplex y)
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{
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return make_cuFloatComplex (cuCrealf(x) - cuCrealf(y),
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cuCimagf(x) - cuCimagf(y));
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}
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__host__ __device__ static __inline__ cuFloatComplex cuCmulf (cuFloatComplex x,
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cuFloatComplex y)
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{
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|
cuFloatComplex prod;
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prod = make_cuFloatComplex ((cuCrealf(x) * cuCrealf(y)) -
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(cuCimagf(x) * cuCimagf(y)),
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(cuCrealf(x) * cuCimagf(y)) +
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|
(cuCimagf(x) * cuCrealf(y)));
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|
return prod;
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}
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__host__ __device__ static __inline__ cuFloatComplex cuCdivf (cuFloatComplex x,
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|
cuFloatComplex y)
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|
{
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|
cuFloatComplex quot;
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float s = fabsf(cuCrealf(y)) + fabsf(cuCimagf(y));
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float oos = 1.0f / s;
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|
float ars = cuCrealf(x) * oos;
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|
float ais = cuCimagf(x) * oos;
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|
float brs = cuCrealf(y) * oos;
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|
float bis = cuCimagf(y) * oos;
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|
s = (brs * brs) + (bis * bis);
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|
oos = 1.0f / s;
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|
quot = make_cuFloatComplex (((ars * brs) + (ais * bis)) * oos,
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|
((ais * brs) - (ars * bis)) * oos);
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|
|
return quot;
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|
|
}
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__host__ __device__ static __inline__ float cuCabsf (cuFloatComplex x)
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|
|
{
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|
|
float a = cuCrealf(x);
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|
|
float b = cuCimagf(x);
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|
|
float v, w, t;
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|
|
a = fabsf(a);
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|
|
b = fabsf(b);
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|
|
if (a > b) {
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|
|
v = a;
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|
|
w = b;
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|
|
} else {
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|
|
v = b;
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|
|
w = a;
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|
|
}
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|
|
t = w / v;
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|
|
t = 1.0f + t * t;
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|
|
t = v * sqrtf(t);
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|
|
if ((v == 0.0f) || (v > 3.402823466e38f) || (w > 3.402823466e38f)) {
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|
|
t = v + w;
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|
|
}
|
|
|
return t;
|
|
|
}
|
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|
|
typedef double2 cuDoubleComplex;
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|
|
__host__ __device__ static __inline__ double cuCreal (cuDoubleComplex x)
|
|
|
{
|
|
|
return x.x;
|
|
|
}
|
|
|
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|
|
__host__ __device__ static __inline__ double cuCimag (cuDoubleComplex x)
|
|
|
{
|
|
|
return x.y;
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex make_cuDoubleComplex
|
|
|
(double r, double i)
|
|
|
{
|
|
|
cuDoubleComplex res;
|
|
|
res.x = r;
|
|
|
res.y = i;
|
|
|
return res;
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuConj(cuDoubleComplex x)
|
|
|
{
|
|
|
return make_cuDoubleComplex (cuCreal(x), -cuCimag(x));
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuCadd(cuDoubleComplex x,
|
|
|
cuDoubleComplex y)
|
|
|
{
|
|
|
return make_cuDoubleComplex (cuCreal(x) + cuCreal(y),
|
|
|
cuCimag(x) + cuCimag(y));
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuCsub(cuDoubleComplex x,
|
|
|
cuDoubleComplex y)
|
|
|
{
|
|
|
return make_cuDoubleComplex (cuCreal(x) - cuCreal(y),
|
|
|
cuCimag(x) - cuCimag(y));
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuCmul(cuDoubleComplex x,
|
|
|
cuDoubleComplex y)
|
|
|
{
|
|
|
cuDoubleComplex prod;
|
|
|
prod = make_cuDoubleComplex ((cuCreal(x) * cuCreal(y)) -
|
|
|
(cuCimag(x) * cuCimag(y)),
|
|
|
(cuCreal(x) * cuCimag(y)) +
|
|
|
(cuCimag(x) * cuCreal(y)));
|
|
|
return prod;
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuCdiv(cuDoubleComplex x,
|
|
|
cuDoubleComplex y)
|
|
|
{
|
|
|
cuDoubleComplex quot;
|
|
|
double s = (fabs(cuCreal(y))) + (fabs(cuCimag(y)));
|
|
|
double oos = 1.0 / s;
|
|
|
double ars = cuCreal(x) * oos;
|
|
|
double ais = cuCimag(x) * oos;
|
|
|
double brs = cuCreal(y) * oos;
|
|
|
double bis = cuCimag(y) * oos;
|
|
|
s = (brs * brs) + (bis * bis);
|
|
|
oos = 1.0 / s;
|
|
|
quot = make_cuDoubleComplex (((ars * brs) + (ais * bis)) * oos,
|
|
|
((ais * brs) - (ars * bis)) * oos);
|
|
|
return quot;
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
__host__ __device__ static __inline__ double cuCabs (cuDoubleComplex x)
|
|
|
{
|
|
|
double a = cuCreal(x);
|
|
|
double b = cuCimag(x);
|
|
|
double v, w, t;
|
|
|
a = fabs(a);
|
|
|
b = fabs(b);
|
|
|
if (a > b) {
|
|
|
v = a;
|
|
|
w = b;
|
|
|
} else {
|
|
|
v = b;
|
|
|
w = a;
|
|
|
}
|
|
|
t = w / v;
|
|
|
t = 1.0 + t * t;
|
|
|
t = v * sqrt(t);
|
|
|
if ((v == 0.0) ||
|
|
|
(v > 1.79769313486231570e+308) || (w > 1.79769313486231570e+308)) {
|
|
|
t = v + w;
|
|
|
}
|
|
|
return t;
|
|
|
}
|
|
|
|
|
|
#if defined(__cplusplus)
|
|
|
}
|
|
|
#endif
|
|
|
|
|
|
|
|
|
typedef cuFloatComplex cuComplex;
|
|
|
__host__ __device__ static __inline__ cuComplex make_cuComplex (float x,
|
|
|
float y)
|
|
|
{
|
|
|
return make_cuFloatComplex (x, y);
|
|
|
}
|
|
|
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuComplexFloatToDouble
|
|
|
(cuFloatComplex c)
|
|
|
{
|
|
|
return make_cuDoubleComplex ((double)cuCrealf(c), (double)cuCimagf(c));
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuFloatComplex cuComplexDoubleToFloat
|
|
|
(cuDoubleComplex c)
|
|
|
{
|
|
|
return make_cuFloatComplex ((float)cuCreal(c), (float)cuCimag(c));
|
|
|
}
|
|
|
|
|
|
|
|
|
__host__ __device__ static __inline__ cuComplex cuCfmaf( cuComplex x, cuComplex y, cuComplex d)
|
|
|
{
|
|
|
float real_res;
|
|
|
float imag_res;
|
|
|
|
|
|
real_res = (cuCrealf(x) * cuCrealf(y)) + cuCrealf(d);
|
|
|
imag_res = (cuCrealf(x) * cuCimagf(y)) + cuCimagf(d);
|
|
|
|
|
|
real_res = -(cuCimagf(x) * cuCimagf(y)) + real_res;
|
|
|
imag_res = (cuCimagf(x) * cuCrealf(y)) + imag_res;
|
|
|
|
|
|
return make_cuComplex(real_res, imag_res);
|
|
|
}
|
|
|
|
|
|
__host__ __device__ static __inline__ cuDoubleComplex cuCfma( cuDoubleComplex x, cuDoubleComplex y, cuDoubleComplex d)
|
|
|
{
|
|
|
double real_res;
|
|
|
double imag_res;
|
|
|
|
|
|
real_res = (cuCreal(x) * cuCreal(y)) + cuCreal(d);
|
|
|
imag_res = (cuCreal(x) * cuCimag(y)) + cuCimag(d);
|
|
|
|
|
|
real_res = -(cuCimag(x) * cuCimag(y)) + real_res;
|
|
|
imag_res = (cuCimag(x) * cuCreal(y)) + imag_res;
|
|
|
|
|
|
return make_cuDoubleComplex(real_res, imag_res);
|
|
|
}
|
|
|
|
|
|
#endif
|
|
|
|