335 lines
10 KiB
C
335 lines
10 KiB
C
/*******************************************************************************
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Copyright (c) 2016, The OpenBLAS Project
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are
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met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in
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the documentation and/or other materials provided with the
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distribution.
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3. Neither the name of the OpenBLAS project nor the names of
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its contributors may be used to endorse or promote products
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derived from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
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USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*******************************************************************************/
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#include "common.h"
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#include "macros_msa.h"
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#if defined(DSDOT)
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double CNAME(BLASLONG n, FLOAT *x, BLASLONG inc_x, FLOAT *y, BLASLONG inc_y)
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#else
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FLOAT CNAME(BLASLONG n, FLOAT *x, BLASLONG inc_x, FLOAT *y, BLASLONG inc_y)
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#endif
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{
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BLASLONG i = 0;
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double dot = 0.0;
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FLOAT x0, x1, x2, x3, y0, y1, y2, y3;
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v4f32 vx0, vx1, vx2, vx3, vx4, vx5, vx6, vx7;
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v4f32 vy0, vy1, vy2, vy3, vy4, vy5, vy6, vy7;
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#if defined(DSDOT)
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v2f64 dvx0, dvx1, dvx2, dvx3, dvx4, dvx5, dvx6, dvx7;
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v2f64 dvy0, dvy1, dvy2, dvy3, dvy4, dvy5, dvy6, dvy7;
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v2f64 dot0 = {0, 0};
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v2f64 dot1 = {0, 0};
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v2f64 dot2 = {0, 0};
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v2f64 dot3 = {0, 0};
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#else
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v4f32 dot0 = {0, 0, 0, 0};
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v4f32 dot1 = {0, 0, 0, 0};
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v4f32 dot2 = {0, 0, 0, 0};
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v4f32 dot3 = {0, 0, 0, 0};
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#endif
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if (n < 1) return (dot);
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if ((1 == inc_x) && (1 == inc_y))
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{
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FLOAT *x_pref, *y_pref;
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BLASLONG pref_offset;
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pref_offset = (BLASLONG)x & (L1_DATA_LINESIZE - 1);
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if (pref_offset > 0)
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{
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pref_offset = L1_DATA_LINESIZE - pref_offset;
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pref_offset = pref_offset / sizeof(FLOAT);
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}
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x_pref = x + pref_offset + 64;
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pref_offset = (BLASLONG)y & (L1_DATA_LINESIZE - 1);
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if (pref_offset > 0)
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{
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pref_offset = L1_DATA_LINESIZE - pref_offset;
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pref_offset = pref_offset / sizeof(FLOAT);
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}
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y_pref = y + pref_offset + 64;
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for (i = (n >> 5); i--;)
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{
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LD_SP8_INC(x, 4, vx0, vx1, vx2, vx3, vx4, vx5, vx6, vx7);
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LD_SP8_INC(y, 4, vy0, vy1, vy2, vy3, vy4, vy5, vy6, vy7);
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PREF_OFFSET(x_pref, 0);
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PREF_OFFSET(x_pref, 32);
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PREF_OFFSET(x_pref, 64);
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PREF_OFFSET(x_pref, 96);
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PREF_OFFSET(y_pref, 0);
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PREF_OFFSET(y_pref, 32);
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PREF_OFFSET(y_pref, 64);
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PREF_OFFSET(y_pref, 96);
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x_pref += 32;
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y_pref += 32;
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#if defined(DSDOT)
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/* Extend single precision to double precision */
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dvy0 = __msa_fexupr_d(vy0);
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dvy1 = __msa_fexupr_d(vy1);
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dvy2 = __msa_fexupr_d(vy2);
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dvy3 = __msa_fexupr_d(vy3);
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dvy4 = __msa_fexupr_d(vy4);
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dvy5 = __msa_fexupr_d(vy5);
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dvy6 = __msa_fexupr_d(vy6);
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dvy7 = __msa_fexupr_d(vy7);
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vy0 = (v4f32)__msa_fexupl_d(vy0);
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vy1 = (v4f32)__msa_fexupl_d(vy1);
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vy2 = (v4f32)__msa_fexupl_d(vy2);
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vy3 = (v4f32)__msa_fexupl_d(vy3);
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vy4 = (v4f32)__msa_fexupl_d(vy4);
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vy5 = (v4f32)__msa_fexupl_d(vy5);
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vy6 = (v4f32)__msa_fexupl_d(vy6);
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vy7 = (v4f32)__msa_fexupl_d(vy7);
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dvx0 = __msa_fexupr_d(vx0);
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dvx1 = __msa_fexupr_d(vx1);
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dvx2 = __msa_fexupr_d(vx2);
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dvx3 = __msa_fexupr_d(vx3);
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dvx4 = __msa_fexupr_d(vx4);
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dvx5 = __msa_fexupr_d(vx5);
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dvx6 = __msa_fexupr_d(vx6);
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dvx7 = __msa_fexupr_d(vx7);
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vx0 = (v4f32)__msa_fexupl_d(vx0);
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vx1 = (v4f32)__msa_fexupl_d(vx1);
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vx2 = (v4f32)__msa_fexupl_d(vx2);
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vx3 = (v4f32)__msa_fexupl_d(vx3);
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vx4 = (v4f32)__msa_fexupl_d(vx4);
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vx5 = (v4f32)__msa_fexupl_d(vx5);
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vx6 = (v4f32)__msa_fexupl_d(vx6);
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vx7 = (v4f32)__msa_fexupl_d(vx7);
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dot0 += (dvy0 * dvx0);
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dot1 += (dvy1 * dvx1);
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dot2 += (dvy2 * dvx2);
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dot3 += (dvy3 * dvx3);
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dot0 += (dvy4 * dvx4);
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dot1 += (dvy5 * dvx5);
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dot2 += (dvy6 * dvx6);
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dot3 += (dvy7 * dvx7);
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dot0 += ((v2f64)vy0 * (v2f64)vx0);
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dot1 += ((v2f64)vy1 * (v2f64)vx1);
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dot2 += ((v2f64)vy2 * (v2f64)vx2);
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dot3 += ((v2f64)vy3 * (v2f64)vx3);
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dot0 += ((v2f64)vy4 * (v2f64)vx4);
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dot1 += ((v2f64)vy5 * (v2f64)vx5);
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dot2 += ((v2f64)vy6 * (v2f64)vx6);
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dot3 += ((v2f64)vy7 * (v2f64)vx7);
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#else
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dot0 += (vy0 * vx0);
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dot1 += (vy1 * vx1);
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dot2 += (vy2 * vx2);
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dot3 += (vy3 * vx3);
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dot0 += (vy4 * vx4);
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dot1 += (vy5 * vx5);
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dot2 += (vy6 * vx6);
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dot3 += (vy7 * vx7);
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#endif
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}
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if (n & 31)
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{
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if (n & 16)
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{
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LD_SP4_INC(x, 4, vx0, vx1, vx2, vx3);
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LD_SP4_INC(y, 4, vy0, vy1, vy2, vy3);
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#if defined(DSDOT)
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dvy0 = __msa_fexupr_d(vy0);
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dvy1 = __msa_fexupr_d(vy1);
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dvy2 = __msa_fexupr_d(vy2);
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dvy3 = __msa_fexupr_d(vy3);
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vy0 = (v4f32)__msa_fexupl_d(vy0);
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vy1 = (v4f32)__msa_fexupl_d(vy1);
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vy2 = (v4f32)__msa_fexupl_d(vy2);
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vy3 = (v4f32)__msa_fexupl_d(vy3);
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dvx0 = __msa_fexupr_d(vx0);
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dvx1 = __msa_fexupr_d(vx1);
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dvx2 = __msa_fexupr_d(vx2);
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dvx3 = __msa_fexupr_d(vx3);
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vx0 = (v4f32)__msa_fexupl_d(vx0);
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vx1 = (v4f32)__msa_fexupl_d(vx1);
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vx2 = (v4f32)__msa_fexupl_d(vx2);
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vx3 = (v4f32)__msa_fexupl_d(vx3);
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dot0 += (dvy0 * dvx0);
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dot1 += (dvy1 * dvx1);
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dot2 += (dvy2 * dvx2);
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dot3 += (dvy3 * dvx3);
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dot0 += ((v2f64)vy0 * (v2f64)vx0);
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dot1 += ((v2f64)vy1 * (v2f64)vx1);
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dot2 += ((v2f64)vy2 * (v2f64)vx2);
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dot3 += ((v2f64)vy3 * (v2f64)vx3);
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#else
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dot0 += (vy0 * vx0);
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dot1 += (vy1 * vx1);
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dot2 += (vy2 * vx2);
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dot3 += (vy3 * vx3);
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#endif
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}
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if (n & 8)
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{
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LD_SP2_INC(x, 4, vx0, vx1);
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LD_SP2_INC(y, 4, vy0, vy1);
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#if defined(DSDOT)
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dvy0 = __msa_fexupr_d(vy0);
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dvy1 = __msa_fexupr_d(vy1);
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vy0 = (v4f32)__msa_fexupl_d(vy0);
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vy1 = (v4f32)__msa_fexupl_d(vy1);
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dvx0 = __msa_fexupr_d(vx0);
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dvx1 = __msa_fexupr_d(vx1);
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vx0 = (v4f32)__msa_fexupl_d(vx0);
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vx1 = (v4f32)__msa_fexupl_d(vx1);
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dot0 += (dvy0 * dvx0);
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dot1 += (dvy1 * dvx1);
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dot0 += ((v2f64)vy0 * (v2f64)vx0);
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dot1 += ((v2f64)vy1 * (v2f64)vx1);
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#else
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dot0 += (vy0 * vx0);
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dot1 += (vy1 * vx1);
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#endif
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}
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if (n & 4)
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{
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vx0 = LD_SP(x); x += 4;
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vy0 = LD_SP(y); y += 4;
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#if defined(DSDOT)
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dvy0 = __msa_fexupr_d(vy0);
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vy0 = (v4f32)__msa_fexupl_d(vy0);
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dvx0 = __msa_fexupr_d(vx0);
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vx0 = (v4f32)__msa_fexupl_d(vx0);
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dot0 += (dvy0 * dvx0);
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dot0 += ((v2f64)vy0 * (v2f64)vx0);
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#else
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dot0 += (vy0 * vx0);
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#endif
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}
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if (n & 2)
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{
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LD_GP2_INC(x, 1, x0, x1);
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LD_GP2_INC(y, 1, y0, y1);
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#if defined(DSDOT)
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dot += ((double)y0 * (double)x0);
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dot += ((double)y1 * (double)x1);
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#else
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dot += (y0 * x0);
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dot += (y1 * x1);
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#endif
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}
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if (n & 1)
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{
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x0 = *x;
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y0 = *y;
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#if defined(DSDOT)
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dot += ((double)y0 * (double)x0);
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#else
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dot += (y0 * x0);
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#endif
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}
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}
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dot0 += dot1 + dot2 + dot3;
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dot += dot0[0];
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dot += dot0[1];
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#if !defined(DSDOT)
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dot += dot0[2];
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dot += dot0[3];
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#endif
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}
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else
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{
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for (i = (n >> 2); i--;)
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{
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LD_GP4_INC(x, inc_x, x0, x1, x2, x3);
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LD_GP4_INC(y, inc_y, y0, y1, y2, y3);
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#if defined(DSDOT)
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dot += ((double)y0 * (double)x0);
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dot += ((double)y1 * (double)x1);
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dot += ((double)y2 * (double)x2);
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dot += ((double)y3 * (double)x3);
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#else
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dot += (y0 * x0);
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dot += (y1 * x1);
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dot += (y2 * x2);
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dot += (y3 * x3);
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#endif
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}
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if (n & 2)
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{
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LD_GP2_INC(x, inc_x, x0, x1);
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LD_GP2_INC(y, inc_y, y0, y1);
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#if defined(DSDOT)
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dot += ((double)y0 * (double)x0);
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dot += ((double)y1 * (double)x1);
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#else
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dot += (y0 * x0);
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dot += (y1 * x1);
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#endif
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}
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if (n & 1)
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{
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x0 = *x;
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y0 = *y;
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#if defined(DSDOT)
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dot += ((double)y0 * (double)x0);
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#else
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dot += (y0 * x0);
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#endif
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}
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}
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return (dot);
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}
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