157 lines
5.6 KiB
C
157 lines
5.6 KiB
C
/***************************************************************************
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Copyright (c) 2022, 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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#if !defined(DOUBLE)
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#define VSETVL(n) __riscv_vsetvl_e32m4(n)
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#define FLOAT_V_T vfloat32m4_t
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#define VLSEG_FLOAT __riscv_vlseg2e32_v_f32m4
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#define VLSSEG_FLOAT __riscv_vlsseg2e32_v_f32m4
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#define VSSEG_FLOAT __riscv_vsseg2e32_v_f32m4
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#define VSSSEG_FLOAT __riscv_vssseg2e32_v_f32m4
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#else
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#define VSETVL(n) __riscv_vsetvl_e64m4(n)
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#define FLOAT_V_T vfloat64m4_t
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#define VLSEG_FLOAT __riscv_vlseg2e64_v_f64m4
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#define VLSSEG_FLOAT __riscv_vlsseg2e64_v_f64m4
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#define VSSEG_FLOAT __riscv_vsseg2e64_v_f64m4
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#define VSSSEG_FLOAT __riscv_vssseg2e64_v_f64m4
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#endif
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int CNAME(BLASLONG n, BLASLONG dummy0, BLASLONG dummy1, FLOAT dummy3, FLOAT dummy4, FLOAT *x, BLASLONG inc_x, FLOAT *y, BLASLONG inc_y, FLOAT *dummy, BLASLONG dummy2)
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{
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if (n <= 0) return(0);
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FLOAT_V_T vx0, vx1, vy0, vy1;
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if (inc_x == 0 && inc_y == 0) {
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if (n & 1) {
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FLOAT temp[2];
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temp[0] = x[0];
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temp[1] = x[1];
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x[0] = y[0];
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x[1] = y[1];
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y[0] = temp[0];
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y[1] = temp[1];
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}
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else {
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return 0;
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}
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}
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else if(inc_x == 0) {
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FLOAT temp[2];
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temp[0] = x[0];
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temp[1] = x[1];
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x[0] = y[(n - 1) * inc_y * 2];
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x[0] = y[(n - 1) * inc_y * 2 + 1];
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FLOAT* ptr = y + (n - 1) * inc_y * 2; // start from the last one
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BLASLONG stride_y = (0 - inc_y) * sizeof(FLOAT) * 2; // reverse
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BLASLONG m = n - 1;
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for (size_t vl; m > 0; m -= vl * 2, ptr -= vl*inc_y * 2) {
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vl = VSETVL(m);
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VLSSEG_FLOAT(&vy0, &vy1, ptr - 2, stride_y, vl);
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VSSSEG_FLOAT(ptr, stride_y, vy0, vy1, vl);
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}
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y[0] = temp[0];
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y[1] = temp[1];
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}
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else if(inc_y == 0) {
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FLOAT temp[2];
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temp[0] = y[0];
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temp[1] = y[1];
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y[0] = x[(n - 1) * inc_x * 2];
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y[0] = x[(n - 1) * inc_x * 2 + 1];
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FLOAT* ptr = x + (n - 1) * inc_x * 2; // start from the last one
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BLASLONG stride_x = (0 - inc_x) * sizeof(FLOAT) * 2; // reverse
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BLASLONG m = n - 1;
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for (size_t vl; m > 0; m -= vl * 2, ptr -= vl*inc_x * 2) {
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vl = VSETVL(m);
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VLSSEG_FLOAT(&vx0, &vx1, ptr - 2, stride_x, vl);
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VSSSEG_FLOAT(ptr, stride_x, vx0, vx1, vl);
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}
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x[0] = temp[0];
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x[1] = temp[1];
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}
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else if(inc_x == 1 && inc_y == 1) {
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for (size_t vl; n > 0; n -= vl, x += vl*2, y += vl*2) {
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vl = VSETVL(n);
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VLSEG_FLOAT(&vx0, &vx1, x, vl);
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VLSEG_FLOAT(&vy0, &vy1, y, vl);
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VSSEG_FLOAT(y, vx0, vx1, vl);
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VSSEG_FLOAT(x, vy0, vy1, vl);
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}
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} else if (inc_x == 1){
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BLASLONG stride_y = inc_y * 2 * sizeof(FLOAT);
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for (size_t vl; n > 0; n -= vl, x += vl*2, y += vl*inc_y*2) {
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vl = VSETVL(n);
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VLSEG_FLOAT(&vx0, &vx1, x, vl);
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VLSSEG_FLOAT(&vy0, &vy1, y, stride_y, vl);
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VSSSEG_FLOAT(y, stride_y, vx0, vx1, vl);
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VSSEG_FLOAT(x, vy0, vy1, vl);
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}
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} else if (inc_y == 1){
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BLASLONG stride_x = inc_x * 2 * sizeof(FLOAT);
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for (size_t vl; n > 0; n -= vl, x += vl*inc_x*2, y += vl*2) {
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vl = VSETVL(n);
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VLSSEG_FLOAT(&vx0, &vx1, x, stride_x, vl);
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VLSEG_FLOAT(&vy0, &vy1, y, vl);
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VSSEG_FLOAT(y, vx0, vx1, vl);
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VSSSEG_FLOAT(x, stride_x, vy0, vy1, vl);
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}
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} else {
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BLASLONG stride_x = inc_x * 2 * sizeof(FLOAT);
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BLASLONG stride_y = inc_y * 2 * sizeof(FLOAT);
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for (size_t vl; n > 0; n -= vl, x += vl*inc_x*2, y += vl*inc_y*2) {
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vl = VSETVL(n);
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VLSSEG_FLOAT(&vx0, &vx1, x, stride_x, vl);
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VLSSEG_FLOAT(&vy0, &vy1, y, stride_y, vl);
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VSSSEG_FLOAT(y, stride_y, vx0, vx1, vl);
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VSSSEG_FLOAT(x, stride_x, vy0, vy1, vl);
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}
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}
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return(0);
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}
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