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[/] [openrisc/] [trunk/] [gnu-stable/] [newlib-1.18.0/] [newlib/] [libm/] [machine/] [spu/] [headers/] [tanf4.h] - Rev 816

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/* --------------------------------------------------------------  */
/* (C)Copyright 2001,2008,                                         */
/* International Business Machines Corporation,                    */
/* Sony Computer Entertainment, Incorporated,                      */
/* Toshiba Corporation,                                            */
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/* --------------------------------------------------------------  */
/* PROLOG END TAG zYx                                              */
#ifdef __SPU__
#ifndef _TANF4_H_
#define _TANF4_H_	1
 
#include <spu_intrinsics.h>
 
#include "cos_sin.h"
#include "divf4.h"
 
/*
 * FUNCTION
 *	vector float _tanf4(vector float angle)
 *
 * DESCRIPTION
 *	The _tanf4 function computes the tangent of a vector of "angle"s 
 *      (expressed in radians) to an accuracy of single precision floating 
 *      point.
 *
 */
static __inline vector float _tanf4(vector float angle)
{
  vec_int4   octant;
  vec_uint4  select;
  vec_float4 cos, sin;
  vec_float4 num, den;
  vec_float4 toggle_sign, answer;
 
  /* Range reduce the input angle x into the range -PI/4 to PI/4
   * by performing simple modulus.
   */
  MOD_PI_OVER_FOUR_F(angle, octant);
 
  /* Compute the cosine and sine of the range reduced input.
   */
  COMPUTE_COS_SIN_F(angle, cos, sin);
 
  /* For each SIMD element, select the numerator, denominator, and sign
   * correction depending upon the octant of the original angle.
   *
   *   octants      angles     numerator denominator sign toggle 
   *   -------   ------------  --------- ----------- -----------
   *     0          0 to 45      sin        cos          no      
   *    1,2        45 to 135     cos        sin         no,yes
   *    3,4       135 to 225     sin        cos         yes,no
   *    5,6       225 to 315     cos        sin         no,yes
   *     7        315 to 360     sin        cos          yes
   */ 
  toggle_sign = (vec_float4)spu_sl(spu_and(octant, 2), 30);
 
  select = spu_cmpeq(spu_and(octant, 2), 0);
  num = spu_sel(cos, sin, select);
  den = spu_sel(sin, cos, select);
 
  answer = spu_xor(_divf4(num, den), toggle_sign);
 
  return (answer);
}
 
#endif /* _TANF4_H_ */
#endif /* __SPU__ */
 

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