mirror of
https://github.com/paboyle/Grid.git
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621 lines
15 KiB
C++
621 lines
15 KiB
C++
/*******************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./lib/simd/Grid_qpx.h
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Copyright (C) 2016
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Copyright (C) 2017
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Author: Antonin Portelli <antonin.portelli@me.com>
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Andrew Lawson <andrew.lawson1991@gmail.com>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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See the full license in the file "LICENSE" in the top level distribution directory
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******************************************************************************/
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#ifndef GEN_SIMD_WIDTH
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#define GEN_SIMD_WIDTH 32u
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#endif
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#include "Grid_generic_types.h" // Definitions for simulated integer SIMD.
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NAMESPACE_BEGIN(Grid);
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#ifdef QPX
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#include <spi/include/kernel/location.h>
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#include <spi/include/l1p/types.h>
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#include <hwi/include/bqc/l1p_mmio.h>
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#include <hwi/include/bqc/A2_inlines.h>
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#endif
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NAMESPACE_BEGIN(Optimization);
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typedef struct
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{
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float v0,v1,v2,v3;
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} vector4float;
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inline std::ostream & operator<<(std::ostream& stream, const vector4double a)
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{
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stream << "{"<<vec_extract(a,0)<<","<<vec_extract(a,1)<<","<<vec_extract(a,2)<<","<<vec_extract(a,3)<<"}";
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return stream;
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};
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inline std::ostream & operator<<(std::ostream& stream, const vector4float a)
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{
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stream << "{"<< a.v0 <<","<< a.v1 <<","<< a.v2 <<","<< a.v3 <<"}";
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return stream;
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};
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struct Vsplat{
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//Complex float
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inline vector4float operator()(float a, float b){
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return (vector4float){a, b, a, b};
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}
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// Real float
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inline vector4float operator()(float a){
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return (vector4float){a, a, a, a};
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}
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//Complex double
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inline vector4double operator()(double a, double b){
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return (vector4double){a, b, a, b};
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}
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//Real double
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inline vector4double operator()(double a){
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return (vector4double){a, a, a, a};
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}
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//Integer
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inline veci operator()(Integer a){
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veci out;
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VECTOR_FOR(i, W<Integer>::r, 1)
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{
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out.v[i] = a;
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}
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return out;
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}
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};
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struct Vstore{
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//Float
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inline void operator()(vector4double a, float *f){
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vec_st(a, 0, f);
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}
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inline void operator()(vector4double a, vector4float &f){
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vec_st(a, 0, (float *)(&f));
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}
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inline void operator()(vector4float a, float *f){
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f[0] = a.v0;
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f[1] = a.v1;
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f[2] = a.v2;
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f[3] = a.v3;
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}
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//Double
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inline void operator()(vector4double a, double *d){
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vec_st(a, 0, d);
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}
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//Integer
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inline void operator()(veci a, Integer *i){
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*((veci *)i) = a;
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}
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};
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struct Vstream{
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//Float
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inline void operator()(float *f, vector4double a){
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vec_st(a, 0, f);
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}
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inline void operator()(vector4float f, vector4double a){
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vec_st(a, 0, (float *)(&f));
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}
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inline void operator()(float *f, vector4float a){
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f[0] = a.v0;
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f[1] = a.v1;
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f[2] = a.v2;
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f[3] = a.v3;
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}
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//Double
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inline void operator()(double *d, vector4double a){
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vec_st(a, 0, d);
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}
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};
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struct Vset{
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// Complex float
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inline vector4float operator()(Grid::ComplexF *a){
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return (vector4float){a[0].real(), a[0].imag(), a[1].real(), a[1].imag()};
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}
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// Complex double
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inline vector4double operator()(Grid::ComplexD *a){
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return vec_ld(0, (double *)a);
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}
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// Real float
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inline vector4float operator()(float *a){
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return (vector4float){a[0], a[1], a[2], a[3]};
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}
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inline vector4double operator()(vector4float a){
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return vec_ld(0, (float *)(&a));
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}
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// Real double
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inline vector4double operator()(double *a){
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return vec_ld(0, a);
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}
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// Integer
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inline veci operator()(Integer *a){
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veci out;
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out = *((veci *)a);
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return out;
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}
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};
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template <typename Out_type, typename In_type>
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struct Reduce{
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//Need templated class to overload output type
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//General form must generate error if compiled
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inline Out_type operator()(In_type in){
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printf("Error, using wrong Reduce function\n");
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exit(1);
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return 0;
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}
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};
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/////////////////////////////////////////////////////
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// Arithmetic operations
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/////////////////////////////////////////////////////
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#define FLOAT_WRAP_3(fn, pref) \
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pref vector4float fn(vector4float a, vector4float b, vector4float c) \
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{ \
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vector4double ad, bd, rd, cd; \
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vector4float r; \
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\
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ad = Vset()(a); \
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bd = Vset()(b); \
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cd = Vset()(c); \
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rd = fn(ad, bd, cd); \
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Vstore()(rd, r); \
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\
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return r; \
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}
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#define FLOAT_WRAP_2(fn, pref) \
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pref vector4float fn(vector4float a, vector4float b) \
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{ \
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vector4double ad, bd, rd; \
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vector4float r; \
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\
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ad = Vset()(a); \
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bd = Vset()(b); \
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rd = fn(ad, bd); \
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Vstore()(rd, r); \
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\
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return r; \
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}
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#define FLOAT_WRAP_1(fn, pref) \
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pref vector4float fn(vector4float a) \
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{ \
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vector4double ad, rd; \
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vector4float r; \
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\
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ad = Vset()(a); \
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rd = fn(ad); \
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Vstore()(rd, r); \
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\
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return r; \
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}
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struct Sum{
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//Complex/Real double
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inline vector4double operator()(vector4double a, vector4double b){
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return vec_add(a, b);
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}
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//Complex/Real float
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FLOAT_WRAP_2(operator(), inline)
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//Integer
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inline veci operator()(veci a, veci b){
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veci out;
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VECTOR_FOR(i, W<Integer>::r, 1)
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{
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out.v[i] = a.v[i] + b.v[i];
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}
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return out;
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}
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};
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struct Sub{
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//Complex/Real double
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inline vector4double operator()(vector4double a, vector4double b){
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return vec_sub(a, b);
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}
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//Complex/Real float
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FLOAT_WRAP_2(operator(), inline)
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//Integer
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inline veci operator()(veci a, veci b){
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veci out;
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VECTOR_FOR(i, W<Integer>::r, 1)
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{
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out.v[i] = a.v[i] - b.v[i];
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}
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return out;
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}
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};
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struct MultRealPart{
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// Complex double
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inline vector4double operator()(vector4double a, vector4double b){
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// return vec_xmul(b, a);
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return vec_xmul(a, b);
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}
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FLOAT_WRAP_2(operator(), inline)
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};
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struct MaddRealPart{
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// Complex double
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inline vector4double operator()(vector4double a, vector4double b,vector4double c){
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return vec_xmadd(a, b, c);
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}
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FLOAT_WRAP_3(operator(), inline)
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};
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struct MultComplex{
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// Complex double
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inline vector4double operator()(vector4double a, vector4double b){
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return vec_xxnpmadd(a, b, vec_xmul(b, a));
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}
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// Complex float
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FLOAT_WRAP_2(operator(), inline)
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};
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struct Mult{
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// Real double
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inline vector4double operator()(vector4double a, vector4double b){
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return vec_mul(a, b);
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}
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// Real float
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FLOAT_WRAP_2(operator(), inline)
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// Integer
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inline veci operator()(veci a, veci b){
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veci out;
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VECTOR_FOR(i, W<Integer>::r, 1)
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{
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out.v[i] = a.v[i]*b.v[i];
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}
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return out;
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}
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};
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struct Div{
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// Real double
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inline vector4double operator()(vector4double a, vector4double b){
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return vec_swdiv(a, b);
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}
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// Real float
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FLOAT_WRAP_2(operator(), inline)
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// Integer
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inline veci operator()(veci a, veci b){
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veci out;
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VECTOR_FOR(i, W<Integer>::r, 1)
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{
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out.v[i] = a.v[i]/b.v[i];
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}
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return out;
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}
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};
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struct Conj{
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// Complex double
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inline vector4double operator()(vector4double v){
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return vec_mul(v, (vector4double){1., -1., 1., -1.});
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}
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// Complex float
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FLOAT_WRAP_1(operator(), inline)
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};
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struct TimesMinusI{
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//Complex double
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inline vector4double operator()(vector4double v, vector4double ret){
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return vec_xxcpnmadd(v, (vector4double){1., 1., 1., 1.},
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(vector4double){0., 0., 0., 0.});
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}
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// Complex float
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FLOAT_WRAP_2(operator(), inline)
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};
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struct TimesI{
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//Complex double
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inline vector4double operator()(vector4double v, vector4double ret){
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return vec_xxcpnmadd(v, (vector4double){-1., -1., -1., -1.},
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(vector4double){0., 0., 0., 0.});
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}
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// Complex float
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FLOAT_WRAP_2(operator(), inline)
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};
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#define USE_FP16
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struct PrecisionChange {
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static inline vech StoH (const vector4float &a, const vector4float &b) {
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vech ret;
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std::cout << GridLogError << "QPX single to half precision conversion not yet supported." << std::endl;
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assert(0);
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return ret;
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}
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static inline void HtoS (vech h, vector4float &sa, vector4float &sb) {
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std::cout << GridLogError << "QPX half to single precision conversion not yet supported." << std::endl;
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assert(0);
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}
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static inline vector4float DtoS (vector4double a, vector4double b) {
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vector4float ret;
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std::cout << GridLogError << "QPX double to single precision conversion not yet supported." << std::endl;
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assert(0);
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return ret;
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}
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static inline void StoD (vector4float s, vector4double &a, vector4double &b) {
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std::cout << GridLogError << "QPX single to double precision conversion not yet supported." << std::endl;
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assert(0);
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}
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static inline vech DtoH (vector4double a, vector4double b,
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vector4double c, vector4double d) {
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vech ret;
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std::cout << GridLogError << "QPX double to half precision conversion not yet supported." << std::endl;
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assert(0);
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return ret;
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}
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static inline void HtoD (vech h, vector4double &a, vector4double &b,
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vector4double &c, vector4double &d) {
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std::cout << GridLogError << "QPX half to double precision conversion not yet supported." << std::endl;
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assert(0);
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}
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};
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//////////////////////////////////////////////
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// Exchange support
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#define FLOAT_WRAP_EXCHANGE(fn) \
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static inline void fn(vector4float &out1, vector4float &out2, \
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vector4float in1, vector4float in2) \
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{ \
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vector4double out1d, out2d, in1d, in2d; \
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in1d = Vset()(in1); \
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in2d = Vset()(in2); \
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fn(out1d, out2d, in1d, in2d); \
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Vstore()(out1d, out1); \
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Vstore()(out2d, out2); \
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}
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struct Exchange{
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// double precision
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static inline void Exchange0(vector4double &out1, vector4double &out2,
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vector4double in1, vector4double in2) {
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out1 = vec_perm(in1, in2, vec_gpci(0145));
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out2 = vec_perm(in1, in2, vec_gpci(02367));
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}
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static inline void Exchange1(vector4double &out1, vector4double &out2,
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vector4double in1, vector4double in2) {
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out1 = vec_perm(in1, in2, vec_gpci(0426));
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out2 = vec_perm(in1, in2, vec_gpci(01537));
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}
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static inline void Exchange2(vector4double &out1, vector4double &out2,
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vector4double in1, vector4double in2) {
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assert(0);
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}
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static inline void Exchange3(vector4double &out1, vector4double &out2,
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vector4double in1, vector4double in2) {
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assert(0);
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}
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// single precision
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FLOAT_WRAP_EXCHANGE(Exchange0);
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FLOAT_WRAP_EXCHANGE(Exchange1);
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FLOAT_WRAP_EXCHANGE(Exchange2);
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FLOAT_WRAP_EXCHANGE(Exchange3);
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};
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struct Permute{
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//Complex double
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static inline vector4double Permute0(vector4double v){ //0123 -> 2301
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return vec_perm(v, v, vec_gpci(02301));
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};
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static inline vector4double Permute1(vector4double v){ //0123 -> 1032
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return vec_perm(v, v, vec_gpci(01032));
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};
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static inline vector4double Permute2(vector4double v){
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return v;
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};
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static inline vector4double Permute3(vector4double v){
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return v;
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};
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// Complex float
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FLOAT_WRAP_1(Permute0, static inline)
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FLOAT_WRAP_1(Permute1, static inline)
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FLOAT_WRAP_1(Permute2, static inline)
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FLOAT_WRAP_1(Permute3, static inline)
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};
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struct Rotate{
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template<int n> static inline vector4double tRotate(vector4double v){
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if ( n==1 ) return vec_perm(v, v, vec_gpci(01230));
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if ( n==2 ) return vec_perm(v, v, vec_gpci(02301));
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if ( n==3 ) return vec_perm(v, v, vec_gpci(03012));
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return v;
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};
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template<int n> static inline vector4float tRotate(vector4float a)
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{
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vector4double ad, rd;
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vector4float r;
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ad = Vset()(a);
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rd = tRotate<n>(ad);
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Vstore()(rd, r);
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return r;
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};
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static inline vector4double rotate(vector4double v, int n){
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switch(n){
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case 0:
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return v;
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break;
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case 1:
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return tRotate<1>(v);
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break;
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case 2:
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return tRotate<2>(v);
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break;
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case 3:
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return tRotate<3>(v);
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break;
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default: assert(0);
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}
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}
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static inline vector4float rotate(vector4float v, int n){
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vector4double vd, rd;
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vector4float r;
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vd = Vset()(v);
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rd = rotate(vd, n);
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Vstore()(rd, r);
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return r;
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}
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};
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//Complex float Reduce
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template<>
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inline Grid::ComplexF
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Reduce<Grid::ComplexF, vector4float>::operator()(vector4float v) { //2 complex
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vector4float v1,v2;
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v1 = Optimization::Permute::Permute0(v);
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v1 = Optimization::Sum()(v1, v);
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return Grid::ComplexF(v1.v0, v1.v1);
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}
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//Real float Reduce
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template<>
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inline Grid::RealF
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Reduce<Grid::RealF, vector4float>::operator()(vector4float v){ //4 floats
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vector4float v1,v2;
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v1 = Optimization::Permute::Permute0(v);
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v1 = Optimization::Sum()(v1, v);
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v2 = Optimization::Permute::Permute1(v1);
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v1 = Optimization::Sum()(v1, v2);
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return v1.v0;
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}
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//Complex double Reduce
|
|
template<>
|
|
inline Grid::ComplexD
|
|
Reduce<Grid::ComplexD, vector4double>::operator()(vector4double v){ //2 complex
|
|
vector4double v1;
|
|
|
|
v1 = Optimization::Permute::Permute0(v);
|
|
v1 = vec_add(v1, v);
|
|
|
|
return Grid::ComplexD(vec_extract(v1, 0), vec_extract(v1, 1));
|
|
}
|
|
|
|
//Real double Reduce
|
|
template<>
|
|
inline Grid::RealD
|
|
Reduce<Grid::RealD, vector4double>::operator()(vector4double v){ //4 doubles
|
|
vector4double v1,v2;
|
|
|
|
v1 = Optimization::Permute::Permute0(v);
|
|
v1 = vec_add(v1, v);
|
|
v2 = Optimization::Permute::Permute1(v1);
|
|
v1 = vec_add(v1, v2);
|
|
|
|
return vec_extract(v1, 0);
|
|
}
|
|
|
|
//Integer Reduce
|
|
template<>
|
|
inline Integer Reduce<Integer, veci>::operator()(veci in){
|
|
Integer a = 0;
|
|
for (unsigned int i = 0; i < W<Integer>::r; ++i)
|
|
{
|
|
a += in.v[i];
|
|
}
|
|
return a;
|
|
}
|
|
|
|
NAMESPACE_END(Optimization);
|
|
|
|
////////////////////////////////////////////////////////////////////////////////
|
|
// Here assign types
|
|
typedef Optimization::vech SIMD_Htype; // Half precision type
|
|
typedef Optimization::vector4float SIMD_Ftype; // Single precision type
|
|
typedef vector4double SIMD_Dtype; // Double precision type
|
|
typedef Optimization::veci SIMD_Itype; // Integer type
|
|
|
|
// prefetch utilities
|
|
inline void v_prefetch0(int size, const char *ptr){};
|
|
inline void prefetch_HINT_T0(const char *ptr){};
|
|
|
|
// Function name aliases
|
|
typedef Optimization::Vsplat VsplatSIMD;
|
|
typedef Optimization::Vstore VstoreSIMD;
|
|
typedef Optimization::Vset VsetSIMD;
|
|
typedef Optimization::Vstream VstreamSIMD;
|
|
template <typename S, typename T> using ReduceSIMD = Optimization::Reduce<S,T>;
|
|
|
|
// Arithmetic operations
|
|
typedef Optimization::Sum SumSIMD;
|
|
typedef Optimization::Sub SubSIMD;
|
|
typedef Optimization::Mult MultSIMD;
|
|
typedef Optimization::Div DivSIMD;
|
|
typedef Optimization::MultComplex MultComplexSIMD;
|
|
typedef Optimization::MultRealPart MultRealPartSIMD;
|
|
typedef Optimization::MaddRealPart MaddRealPartSIMD;
|
|
typedef Optimization::Conj ConjSIMD;
|
|
typedef Optimization::TimesMinusI TimesMinusISIMD;
|
|
typedef Optimization::TimesI TimesISIMD;
|
|
|
|
NAMESPACE_END(Grid)
|