- /***************************************************************************
- Copyright (c) 2020, The OpenBLAS Project
- All rights reserved.
- Redistribution and use in source and binary forms, with or without
- modification, are permitted provided that the following conditions are
- met:
- 1. Redistributions of source code must retain the above copyright
- notice, this list of conditions and the following disclaimer.
- 2. Redistributions in binary form must reproduce the above copyright
- notice, this list of conditions and the following disclaimer in
- the documentation and/or other materials provided with the
- distribution.
- 3. Neither the name of the OpenBLAS project nor the names of
- its contributors may be used to endorse or promote products
- derived from this software without specific prior written permission.
- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
- AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
- IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
- ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE
- LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
- DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
- SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
- CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
- OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
- USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
- *****************************************************************************/
-
- #include "common.h"
- #include <math.h>
-
- #ifdef RISCV64_ZVL256B
- # define LMUL m2
- # if defined(DOUBLE)
- # define ELEN 64
- # else
- # define ELEN 32
- # endif
- #else
- # define LMUL m8
- # if defined(DOUBLE)
- # define ELEN 64
- # else
- # define ELEN 32
- # endif
- #endif
-
- #define _
- #define JOIN2_X(x, y) x ## y
- #define JOIN2(x, y) JOIN2_X(x, y)
- #define JOIN(v, w, x, y, z) JOIN2( JOIN2( JOIN2( JOIN2( v, w ), x), y), z)
-
- #define VSETVL JOIN(RISCV_RVV(vsetvl), _e, ELEN, LMUL, _)
- #define FLOAT_V_T JOIN(vfloat, ELEN, LMUL, _t, _)
- #define FLOAT_V_T_M1 JOIN(vfloat, ELEN, m1, _t, _)
- #define VLEV_FLOAT JOIN(RISCV_RVV(vle), ELEN, _v_f, ELEN, LMUL)
- #define VLSEV_FLOAT JOIN(RISCV_RVV(vlse), ELEN, _v_f, ELEN, LMUL)
- #ifdef RISCV_0p10_INTRINSICS
- #define VFREDSUMVS_FLOAT(va, vb, gvl) JOIN(RISCV_RVV(vfredusum_vs_f), ELEN, LMUL, _f, JOIN2( ELEN, m1))(v_res, va, vb, gvl)
- #else
- #define VFREDSUMVS_FLOAT JOIN(RISCV_RVV(vfredusum_vs_f), ELEN, LMUL, _f, JOIN2( ELEN, m1))
- #endif
- #define VFABS_FLOAT JOIN(RISCV_RVV(vfabs), _v_f, ELEN, LMUL, _)
- #define VFMVVF_FLOAT JOIN(RISCV_RVV(vfmv), _v_f_f, ELEN, LMUL, _)
- #define VFMVVF_FLOAT_M1 JOIN(RISCV_RVV(vfmv), _v_f_f, ELEN, m1, _)
- #define VFADDVV_FLOAT JOIN(RISCV_RVV(vfadd), _vv_f, ELEN, LMUL, _)
-
- FLOAT CNAME(BLASLONG n, FLOAT *x, BLASLONG inc_x)
- {
- BLASLONG i=0, j=0;
- FLOAT asumf=0.0;
- if (n <= 0 || inc_x <= 0) return(asumf);
- unsigned int gvl = 0;
- FLOAT_V_T v0, v1, v_sum;
- FLOAT_V_T_M1 v_res;
- v_res = VFMVVF_FLOAT_M1(0, 1);
-
- if(inc_x == 1){
- gvl = VSETVL(n);
- if(gvl <= n/2){
- v_sum = VFMVVF_FLOAT(0, gvl);
- for(i=0,j=0; i<n/(gvl*2); i++){
- v0 = VLEV_FLOAT(&x[j], gvl);
- v0 = VFABS_FLOAT(v0, gvl);
- v_sum = VFADDVV_FLOAT(v_sum, v0, gvl);
-
- v1 = VLEV_FLOAT(&x[j+gvl], gvl);
- v1 = VFABS_FLOAT(v1, gvl);
- v_sum = VFADDVV_FLOAT(v_sum, v1, gvl);
- j += gvl * 2;
- }
- v_res = VFREDSUMVS_FLOAT(v_sum, v_res, gvl);
- }
- for(;j<n;){
- gvl = VSETVL(n-j);
- v0 = VLEV_FLOAT(&x[j], gvl);
- v0 = VFABS_FLOAT(v0, gvl);
- v_res = VFREDSUMVS_FLOAT(v0, v_res, gvl);
- j += gvl;
- }
- }else{
- gvl = VSETVL(n);
- unsigned int stride_x = inc_x * sizeof(FLOAT);
- if(gvl <= n/2){
- v_sum = VFMVVF_FLOAT(0, gvl);
- for(i=0,j=0; i<n/(gvl*2); i++){
- v0 = VLSEV_FLOAT(&x[j*inc_x], stride_x, gvl);
- v0 = VFABS_FLOAT(v0, gvl);
- v_sum = VFADDVV_FLOAT(v_sum, v0, gvl);
-
- v1 = VLSEV_FLOAT(&x[(j+gvl)*inc_x], stride_x, gvl);
- v1 = VFABS_FLOAT(v1, gvl);
- v_sum = VFADDVV_FLOAT(v_sum, v1, gvl);
- j += gvl * 2;
- }
- v_res = VFREDSUMVS_FLOAT(v_sum, v_res, gvl);
- }
- for(;j<n;){
- gvl = VSETVL(n-j);
- v0 = VLSEV_FLOAT(&x[j*inc_x], stride_x, gvl);
- v0 = VFABS_FLOAT(v0, gvl);
- v_res = VFREDSUMVS_FLOAT(v0, v_res, gvl);
- j += gvl;
- }
- }
- asumf = EXTRACT_FLOAT(v_res);
- return(asumf);
- }
-
-
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