Retro68/gcc/newlib/libm/machine/spu/headers/atand2.h
Wolfgang Thaller d464252791 re-add newlib
2017-04-11 23:13:36 +02:00

104 lines
4.0 KiB
C

/* -------------------------------------------------------------- */
/* (C)Copyright 2007,2008, */
/* International Business Machines Corporation */
/* All Rights Reserved. */
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/* PROLOG END TAG zYx */
#ifdef __SPU__
#ifndef _ATAND2_H_
#define _ATAND2_H_ 1
#include <spu_intrinsics.h>
#include "simdmath.h"
#include "recipd2.h"
#include "logd2.h"
#include "acosd2.h"
#include "asind2.h"
#include "sqrtd2.h"
/*
* FUNCTION
* vector double _atand2(vector double x)
*
* DESCRIPTION
* The _atand2 function computes the arc tangent of a vector of values x.
*
* The arc tangent function is computed using the following relations:
* [0, 1] : arcsin(x1/sqrt(spu_add(x1squ + 1 )));
* (1, infinity] : PI/2 + atanf(-1/x)
* [-infinity, 0) : -arcsin(|x|)
*
*/
static __inline vector double _atand2(vector double x)
{
vector double signbit = spu_splats(-0.0);
vector double oned = spu_splats(1.0);
vector double pi2 = spu_splats(SM_PI_2);
vector double xabs, x1;
vector double result;
vector unsigned long long gt1;
xabs = spu_andc(x, signbit);
gt1 = spu_cmpgt(xabs, oned);
/*
* For x > 1, use the relation:
* atan(x) = pi/2 - atan(1/x), x>1
*/
x1 = spu_sel(xabs, _recipd2(xabs), gt1);
vector double x1squ = spu_mul(x1, x1);
result = _asind2(_divd2(x1, _sqrtd2(spu_add(x1squ, oned))));
/*
* For x > 1, use the relation: atan(x) = pi/2 - atan(1/x), x>1
*/
result = spu_sel(result, spu_sub(pi2, result), gt1);
/*
* Antisymmetric function - preserve sign of x in result.
*/
result = spu_sel(result, x, (vec_ullong2)signbit);
return (result);
}
#endif /* _ATAND2_H_ */
#endif /* __SPU__ */