Retro68/gcc/newlib/libm/machine/spu/headers/log2f4.h
Wolfgang Thaller d464252791 re-add newlib
2017-04-11 23:13:36 +02:00

125 lines
5.0 KiB
C

/* -------------------------------------------------------------- */
/* (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 _LOG2F4_H_
#define _LOG2F4_H_ 1
#include <spu_intrinsics.h>
/*
* FUNCTION
* vector float _log2f4(vector float x)
*
* DESCRIPTION
* The _log2f4 function computes log (base 2) on a vector if inputs
* values x. The _log2f4 function is approximated as a polynomial of
* order 8 (C. Hastings, Jr, 1955).
*
* __8__
* \
* \
* log2f(1+x) = / Ci*x^i
* /____
* i=1
*
* for x in the range 0.0 to 1.0
*
* C1 = 1.4426898816672
* C2 = -0.72116591947498
* C3 = 0.47868480909345
* C4 = -0.34730547155299
* C5 = 0.24187369696082
* C6 = -0.13753123777116
* C7 = 0.052064690894143
* C8 = -0.0093104962134977
*
* This function assumes that x is a non-zero positive value.
*
*/
static __inline vector float _log2f4(vector float x)
{
vector signed int exponent;
vector float result;
vector float x2, x4;
vector float hi, lo;
/* Extract the exponent from the input X.
*/
exponent = (vector signed int)spu_and(spu_rlmask((vector unsigned int)(x), -23), 0xFF);
exponent = spu_add(exponent, -127);
/* Compute the remainder after removing the exponent.
*/
x = (vector float)spu_sub((vector signed int)(x), spu_sl(exponent, 23));
/* Calculate the log2 of the remainder using the polynomial
* approximation.
*/
x = spu_sub(x, spu_splats(1.0f));
/* Instruction counts can be reduced if the polynomial was
* computed entirely from nested (dependent) fma's. However,
* to reduce the number of pipeline stalls, the polygon is evaluated
* in two halves (hi amd lo).
*/
x2 = spu_mul(x, x);
x4 = spu_mul(x2, x2);
hi = spu_madd(x, spu_splats(-0.0093104962134977f), spu_splats(0.052064690894143f));
hi = spu_madd(x, hi, spu_splats(-0.13753123777116f));
hi = spu_madd(x, hi, spu_splats( 0.24187369696082f));
hi = spu_madd(x, hi, spu_splats(-0.34730547155299f));
lo = spu_madd(x, spu_splats(0.47868480909345f), spu_splats(-0.72116591947498f));
lo = spu_madd(x, lo, spu_splats(1.4426898816672f));
lo = spu_mul(x, lo);
result = spu_madd(x4, hi, lo);
/* Add the exponent back into the result.
*/
result = spu_add(result, spu_convtf(exponent, 0));
return (result);
}
#endif /* _LOG2F4_H_ */
#endif /* __SPU__ */