xref: /libCEED/backends/hip-ref/kernels/hip-ref-vector.hip.cpp (revision d4cc18453651bd0f94c1a2e078b2646a92dafdcc)
1*9ba83ac0SJeremy L Thompson // Copyright (c) 2017-2026, Lawrence Livermore National Security, LLC and other CEED contributors.
23d8e8822SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
30d0321e0SJeremy L Thompson //
43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause
50d0321e0SJeremy L Thompson //
63d8e8822SJeremy L Thompson // This file is part of CEED:  http://github.com/ceed
70d0321e0SJeremy L Thompson 
849aac155SJeremy L Thompson #include <ceed.h>
90d0321e0SJeremy L Thompson #include <hip/hip_runtime.h>
100d0321e0SJeremy L Thompson 
110d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
123196072fSJeremy L Thompson // Kernel for copy strided on device
133196072fSJeremy L Thompson //------------------------------------------------------------------------------
copyStridedK(CeedScalar * __restrict__ vec,CeedSize start,CeedSize step,CeedSize size,CeedScalar * __restrict__ vec_copy)143196072fSJeremy L Thompson __global__ static void copyStridedK(CeedScalar *__restrict__ vec, CeedSize start, CeedSize step, CeedSize size, CeedScalar *__restrict__ vec_copy) {
15c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
163196072fSJeremy L Thompson 
17c9d5affaSJeremy L Thompson   if (index < size) {
183196072fSJeremy L Thompson     if ((index - start) % step == 0) vec_copy[index] = vec[index];
193196072fSJeremy L Thompson   }
20c9d5affaSJeremy L Thompson }
213196072fSJeremy L Thompson 
223196072fSJeremy L Thompson //------------------------------------------------------------------------------
233196072fSJeremy L Thompson // Copy strided on device memory
243196072fSJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceCopyStrided_Hip(CeedScalar * d_array,CeedSize start,CeedSize step,CeedSize length,CeedScalar * d_copy_array)253196072fSJeremy L Thompson extern "C" int CeedDeviceCopyStrided_Hip(CeedScalar *d_array, CeedSize start, CeedSize step, CeedSize length, CeedScalar *d_copy_array) {
263196072fSJeremy L Thompson   const int      block_size = 512;
273196072fSJeremy L Thompson   const CeedSize vec_size   = length;
283196072fSJeremy L Thompson   int            grid_size  = vec_size / block_size;
293196072fSJeremy L Thompson 
303196072fSJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
313196072fSJeremy L Thompson   hipLaunchKernelGGL(copyStridedK, dim3(grid_size), dim3(block_size), 0, 0, d_array, start, step, length, d_copy_array);
323196072fSJeremy L Thompson   return 0;
333196072fSJeremy L Thompson }
343196072fSJeremy L Thompson 
353196072fSJeremy L Thompson //------------------------------------------------------------------------------
360d0321e0SJeremy L Thompson // Kernel for set value on device
370d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
setValueK(CeedScalar * __restrict__ vec,CeedSize size,CeedScalar val)389330daecSnbeams __global__ static void setValueK(CeedScalar *__restrict__ vec, CeedSize size, CeedScalar val) {
39c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
40b7453713SJeremy L Thompson 
41c9d5affaSJeremy L Thompson   if (index < size) vec[index] = val;
420d0321e0SJeremy L Thompson }
430d0321e0SJeremy L Thompson 
440d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
450d0321e0SJeremy L Thompson // Set value on device memory
460d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceSetValue_Hip(CeedScalar * d_array,CeedSize length,CeedScalar val)479330daecSnbeams extern "C" int CeedDeviceSetValue_Hip(CeedScalar *d_array, CeedSize length, CeedScalar val) {
48b7453713SJeremy L Thompson   const int      block_size = 512;
49b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
50b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
510d0321e0SJeremy L Thompson 
52b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
53b7453713SJeremy L Thompson   hipLaunchKernelGGL(setValueK, dim3(grid_size), dim3(block_size), 0, 0, d_array, length, val);
540d0321e0SJeremy L Thompson   return 0;
550d0321e0SJeremy L Thompson }
560d0321e0SJeremy L Thompson 
570d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
583196072fSJeremy L Thompson // Kernel for set value strided on device
593196072fSJeremy L Thompson //------------------------------------------------------------------------------
setValueStridedK(CeedScalar * __restrict__ vec,CeedSize start,CeedSize stop,CeedSize step,CeedScalar val)602d73a370SJeremy L Thompson __global__ static void setValueStridedK(CeedScalar *__restrict__ vec, CeedSize start, CeedSize stop, CeedSize step, CeedScalar val) {
61c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
623196072fSJeremy L Thompson 
6314c82621SJeremy L Thompson   if (index < stop - start) {
6414c82621SJeremy L Thompson     if (index % step == 0) vec[start + index] = val;
653196072fSJeremy L Thompson   }
66c9d5affaSJeremy L Thompson }
673196072fSJeremy L Thompson 
683196072fSJeremy L Thompson //------------------------------------------------------------------------------
693196072fSJeremy L Thompson // Set value strided on device memory
703196072fSJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceSetValueStrided_Hip(CeedScalar * d_array,CeedSize start,CeedInt stop,CeedSize step,CeedSize length,CeedScalar val)71ff90b007SJeremy L Thompson extern "C" int CeedDeviceSetValueStrided_Hip(CeedScalar *d_array, CeedSize start, CeedInt stop, CeedSize step, CeedSize length, CeedScalar val) {
723196072fSJeremy L Thompson   const int      block_size = 512;
7314c82621SJeremy L Thompson   const CeedSize set_size   = stop - start;
7414c82621SJeremy L Thompson   int            grid_size  = set_size / block_size;
753196072fSJeremy L Thompson 
7614c82621SJeremy L Thompson   if (block_size * grid_size < set_size) grid_size += 1;
772d73a370SJeremy L Thompson   hipLaunchKernelGGL(setValueStridedK, dim3(grid_size), dim3(block_size), 0, 0, d_array, start, stop, step, val);
783196072fSJeremy L Thompson   return 0;
793196072fSJeremy L Thompson }
803196072fSJeremy L Thompson 
813196072fSJeremy L Thompson //------------------------------------------------------------------------------
820d0321e0SJeremy L Thompson // Kernel for taking reciprocal
830d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
rcpValueK(CeedScalar * __restrict__ vec,CeedSize size)849330daecSnbeams __global__ static void rcpValueK(CeedScalar *__restrict__ vec, CeedSize size) {
85c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
86b7453713SJeremy L Thompson 
87c9d5affaSJeremy L Thompson   if (index < size) {
88b7453713SJeremy L Thompson     if (fabs(vec[index]) > 1E-16) vec[index] = 1. / vec[index];
890d0321e0SJeremy L Thompson   }
90c9d5affaSJeremy L Thompson }
910d0321e0SJeremy L Thompson 
920d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
930d0321e0SJeremy L Thompson // Take vector reciprocal in device memory
940d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceReciprocal_Hip(CeedScalar * d_array,CeedSize length)959330daecSnbeams extern "C" int CeedDeviceReciprocal_Hip(CeedScalar *d_array, CeedSize length) {
96b7453713SJeremy L Thompson   const int      block_size = 512;
97b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
98b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
990d0321e0SJeremy L Thompson 
100b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
101b7453713SJeremy L Thompson   hipLaunchKernelGGL(rcpValueK, dim3(grid_size), dim3(block_size), 0, 0, d_array, length);
1020d0321e0SJeremy L Thompson   return 0;
1030d0321e0SJeremy L Thompson }
1040d0321e0SJeremy L Thompson 
1050d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1060d0321e0SJeremy L Thompson // Kernel for scale
1070d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
scaleValueK(CeedScalar * __restrict__ x,CeedScalar alpha,CeedSize size)1089330daecSnbeams __global__ static void scaleValueK(CeedScalar *__restrict__ x, CeedScalar alpha, CeedSize size) {
109c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
110b7453713SJeremy L Thompson 
111c9d5affaSJeremy L Thompson   if (index < size) x[index] *= alpha;
1120d0321e0SJeremy L Thompson }
1130d0321e0SJeremy L Thompson 
1140d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1150d0321e0SJeremy L Thompson // Compute x = alpha x on device
1160d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceScale_Hip(CeedScalar * x_array,CeedScalar alpha,CeedSize length)1179330daecSnbeams extern "C" int CeedDeviceScale_Hip(CeedScalar *x_array, CeedScalar alpha, CeedSize length) {
118b7453713SJeremy L Thompson   const int      block_size = 512;
119b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
120b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
1210d0321e0SJeremy L Thompson 
122b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
123b7453713SJeremy L Thompson   hipLaunchKernelGGL(scaleValueK, dim3(grid_size), dim3(block_size), 0, 0, x_array, alpha, length);
1240d0321e0SJeremy L Thompson   return 0;
1250d0321e0SJeremy L Thompson }
1260d0321e0SJeremy L Thompson 
1270d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1280d0321e0SJeremy L Thompson // Kernel for axpy
1290d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
axpyValueK(CeedScalar * __restrict__ y,CeedScalar alpha,CeedScalar * __restrict__ x,CeedSize size)1309330daecSnbeams __global__ static void axpyValueK(CeedScalar *__restrict__ y, CeedScalar alpha, CeedScalar *__restrict__ x, CeedSize size) {
131c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
132b7453713SJeremy L Thompson 
133c9d5affaSJeremy L Thompson   if (index < size) y[index] += alpha * x[index];
1340d0321e0SJeremy L Thompson }
1350d0321e0SJeremy L Thompson 
1360d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1370d0321e0SJeremy L Thompson // Compute y = alpha x + y on device
1380d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
CeedDeviceAXPY_Hip(CeedScalar * y_array,CeedScalar alpha,CeedScalar * x_array,CeedSize length)1399330daecSnbeams extern "C" int CeedDeviceAXPY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar *x_array, CeedSize length) {
140b7453713SJeremy L Thompson   const int      block_size = 512;
141b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
142b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
1430d0321e0SJeremy L Thompson 
144b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
145b7453713SJeremy L Thompson   hipLaunchKernelGGL(axpyValueK, dim3(grid_size), dim3(block_size), 0, 0, y_array, alpha, x_array, length);
1460d0321e0SJeremy L Thompson   return 0;
1470d0321e0SJeremy L Thompson }
1480d0321e0SJeremy L Thompson 
1490d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1505fb68f37SKaren (Ren) Stengel // Kernel for axpby
1515fb68f37SKaren (Ren) Stengel //------------------------------------------------------------------------------
axpbyValueK(CeedScalar * __restrict__ y,CeedScalar alpha,CeedScalar beta,CeedScalar * __restrict__ x,CeedSize size)1529330daecSnbeams __global__ static void axpbyValueK(CeedScalar *__restrict__ y, CeedScalar alpha, CeedScalar beta, CeedScalar *__restrict__ x, CeedSize size) {
153c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
154b7453713SJeremy L Thompson 
155c9d5affaSJeremy L Thompson   if (index < size) {
156b7453713SJeremy L Thompson     y[index] = beta * y[index];
157b7453713SJeremy L Thompson     y[index] += alpha * x[index];
1585fb68f37SKaren (Ren) Stengel   }
159c9d5affaSJeremy L Thompson }
1605fb68f37SKaren (Ren) Stengel 
1615fb68f37SKaren (Ren) Stengel //------------------------------------------------------------------------------
1625fb68f37SKaren (Ren) Stengel // Compute y = alpha x + beta y on device
1635fb68f37SKaren (Ren) Stengel //------------------------------------------------------------------------------
CeedDeviceAXPBY_Hip(CeedScalar * y_array,CeedScalar alpha,CeedScalar beta,CeedScalar * x_array,CeedSize length)1649330daecSnbeams extern "C" int CeedDeviceAXPBY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar beta, CeedScalar *x_array, CeedSize length) {
165b7453713SJeremy L Thompson   const int      block_size = 512;
166b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
167b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
1685fb68f37SKaren (Ren) Stengel 
169b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
170b7453713SJeremy L Thompson   hipLaunchKernelGGL(axpbyValueK, dim3(grid_size), dim3(block_size), 0, 0, y_array, alpha, beta, x_array, length);
1715fb68f37SKaren (Ren) Stengel   return 0;
1725fb68f37SKaren (Ren) Stengel }
1735fb68f37SKaren (Ren) Stengel 
1745fb68f37SKaren (Ren) Stengel //------------------------------------------------------------------------------
1750d0321e0SJeremy L Thompson // Kernel for pointwise mult
1760d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
pointwiseMultValueK(CeedScalar * __restrict__ w,CeedScalar * x,CeedScalar * __restrict__ y,CeedSize size)1779330daecSnbeams __global__ static void pointwiseMultValueK(CeedScalar *__restrict__ w, CeedScalar *x, CeedScalar *__restrict__ y, CeedSize size) {
178c9d5affaSJeremy L Thompson   const CeedSize index = threadIdx.x + (CeedSize)blockDim.x * blockIdx.x;
179b7453713SJeremy L Thompson 
180c9d5affaSJeremy L Thompson   if (index < size) w[index] = x[index] * y[index];
1810d0321e0SJeremy L Thompson }
1820d0321e0SJeremy L Thompson 
1830d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1840d0321e0SJeremy L Thompson // Compute the pointwise multiplication w = x .* y on device
1850d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
CeedDevicePointwiseMult_Hip(CeedScalar * w_array,CeedScalar * x_array,CeedScalar * y_array,CeedSize length)1869330daecSnbeams extern "C" int CeedDevicePointwiseMult_Hip(CeedScalar *w_array, CeedScalar *x_array, CeedScalar *y_array, CeedSize length) {
187b7453713SJeremy L Thompson   const int      block_size = 512;
188b7453713SJeremy L Thompson   const CeedSize vec_size   = length;
189b7453713SJeremy L Thompson   int            grid_size  = vec_size / block_size;
1900d0321e0SJeremy L Thompson 
191b7453713SJeremy L Thompson   if (block_size * grid_size < vec_size) grid_size += 1;
192b7453713SJeremy L Thompson   hipLaunchKernelGGL(pointwiseMultValueK, dim3(grid_size), dim3(block_size), 0, 0, w_array, x_array, y_array, length);
1930d0321e0SJeremy L Thompson   return 0;
1940d0321e0SJeremy L Thompson }
1952a86cc9dSSebastian Grimberg 
1962a86cc9dSSebastian Grimberg //------------------------------------------------------------------------------
197