xref: /libCEED/rust/libceed-sys/c-src/backends/sycl-ref/ceed-sycl-restriction.sycl.cpp (revision 7c1dbaff56f8afaddfc574209b09713e25514e81)
1bd882c8aSJames Wright // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other
2bd882c8aSJames Wright // CEED contributors. All Rights Reserved. See the top-level LICENSE and NOTICE
3bd882c8aSJames Wright // files for details.
4bd882c8aSJames Wright //
5bd882c8aSJames Wright // SPDX-License-Identifier: BSD-2-Clause
6bd882c8aSJames Wright //
7bd882c8aSJames Wright // This file is part of CEED:  http://github.com/ceed
8bd882c8aSJames Wright 
9bd882c8aSJames Wright #include <ceed/backend.h>
10bd882c8aSJames Wright #include <ceed/ceed.h>
11bd882c8aSJames Wright #include <ceed/jit-tools.h>
12bd882c8aSJames Wright 
13bd882c8aSJames Wright #include <string>
14bd882c8aSJames Wright #include <sycl/sycl.hpp>
15bd882c8aSJames Wright 
16bd882c8aSJames Wright #include "../sycl/ceed-sycl-compile.hpp"
17bd882c8aSJames Wright #include "ceed-sycl-ref.hpp"
18bd882c8aSJames Wright 
19bd882c8aSJames Wright class CeedElemRestrSyclStridedNT;
20bd882c8aSJames Wright class CeedElemRestrSyclOffsetNT;
21bd882c8aSJames Wright class CeedElemRestrSyclStridedT;
22bd882c8aSJames Wright class CeedElemRestrSyclOffsetT;
23bd882c8aSJames Wright 
24bd882c8aSJames Wright //------------------------------------------------------------------------------
25bd882c8aSJames Wright // Restriction Kernel : L-vector -> E-vector, strided
26bd882c8aSJames Wright //------------------------------------------------------------------------------
27bd882c8aSJames Wright static int CeedElemRestrictionStridedNoTranspose_Sycl(sycl::queue &sycl_queue, const CeedElemRestriction_Sycl *impl, const CeedScalar *u,
28bd882c8aSJames Wright                                                       CeedScalar *v) {
29bd882c8aSJames Wright   const CeedInt  elem_size    = impl->elem_size;
30bd882c8aSJames Wright   const CeedInt  num_elem     = impl->num_elem;
31bd882c8aSJames Wright   const CeedInt  num_comp     = impl->num_comp;
32bd882c8aSJames Wright   const CeedInt  stride_nodes = impl->strides[0];
33bd882c8aSJames Wright   const CeedInt  stride_comp  = impl->strides[1];
34bd882c8aSJames Wright   const CeedInt  stride_elem  = impl->strides[2];
35bd882c8aSJames Wright   sycl::range<1> kernel_range(num_elem * elem_size);
36bd882c8aSJames Wright 
37bd882c8aSJames Wright   // Order queue
38bd882c8aSJames Wright   sycl::event e = sycl_queue.ext_oneapi_submit_barrier();
39bd882c8aSJames Wright   sycl_queue.parallel_for<CeedElemRestrSyclStridedNT>(kernel_range, {e}, [=](sycl::id<1> node) {
40bd882c8aSJames Wright     const CeedInt loc_node = node % elem_size;
41bd882c8aSJames Wright     const CeedInt elem     = node / elem_size;
42bd882c8aSJames Wright 
43bd882c8aSJames Wright     for (CeedInt comp = 0; comp < num_comp; comp++) {
44bd882c8aSJames Wright       v[loc_node + comp * elem_size * num_elem + elem * elem_size] = u[loc_node * stride_nodes + comp * stride_comp + elem * stride_elem];
45bd882c8aSJames Wright     }
46bd882c8aSJames Wright   });
47bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
48bd882c8aSJames Wright }
49bd882c8aSJames Wright 
50bd882c8aSJames Wright //------------------------------------------------------------------------------
51bd882c8aSJames Wright // Restriction Kernel : L-vector -> E-vector, offsets provided
52bd882c8aSJames Wright //------------------------------------------------------------------------------
53bd882c8aSJames Wright static int CeedElemRestrictionOffsetNoTranspose_Sycl(sycl::queue &sycl_queue, const CeedElemRestriction_Sycl *impl, const CeedScalar *u,
54bd882c8aSJames Wright                                                      CeedScalar *v) {
55bd882c8aSJames Wright   const CeedInt elem_size   = impl->elem_size;
56bd882c8aSJames Wright   const CeedInt num_elem    = impl->num_elem;
57bd882c8aSJames Wright   const CeedInt num_comp    = impl->num_comp;
58bd882c8aSJames Wright   const CeedInt comp_stride = impl->comp_stride;
59bd882c8aSJames Wright 
60bd882c8aSJames Wright   const CeedInt *indices = impl->d_ind;
61bd882c8aSJames Wright 
62bd882c8aSJames Wright   sycl::range<1> kernel_range(num_elem * elem_size);
63bd882c8aSJames Wright 
64bd882c8aSJames Wright   // Order queue
65bd882c8aSJames Wright   sycl::event e = sycl_queue.ext_oneapi_submit_barrier();
66bd882c8aSJames Wright   sycl_queue.parallel_for<CeedElemRestrSyclOffsetNT>(kernel_range, {e}, [=](sycl::id<1> node) {
67bd882c8aSJames Wright     const CeedInt ind      = indices[node];
68bd882c8aSJames Wright     const CeedInt loc_node = node % elem_size;
69bd882c8aSJames Wright     const CeedInt elem     = node / elem_size;
70bd882c8aSJames Wright 
71bd882c8aSJames Wright     for (CeedInt comp = 0; comp < num_comp; comp++) {
72bd882c8aSJames Wright       v[loc_node + comp * elem_size * num_elem + elem * elem_size] = u[ind + comp * comp_stride];
73bd882c8aSJames Wright     }
74bd882c8aSJames Wright   });
75bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
76bd882c8aSJames Wright }
77bd882c8aSJames Wright 
78bd882c8aSJames Wright //------------------------------------------------------------------------------
79bd882c8aSJames Wright // Kernel: E-vector -> L-vector, strided
80bd882c8aSJames Wright //------------------------------------------------------------------------------
81bd882c8aSJames Wright static int CeedElemRestrictionStridedTranspose_Sycl(sycl::queue &sycl_queue, const CeedElemRestriction_Sycl *impl, const CeedScalar *u,
82bd882c8aSJames Wright                                                     CeedScalar *v) {
83bd882c8aSJames Wright   const CeedInt elem_size    = impl->elem_size;
84bd882c8aSJames Wright   const CeedInt num_elem     = impl->num_elem;
85bd882c8aSJames Wright   const CeedInt num_comp     = impl->num_comp;
86bd882c8aSJames Wright   const CeedInt stride_nodes = impl->strides[0];
87bd882c8aSJames Wright   const CeedInt stride_comp  = impl->strides[1];
88bd882c8aSJames Wright   const CeedInt stride_elem  = impl->strides[2];
89bd882c8aSJames Wright 
90bd882c8aSJames Wright   sycl::range<1> kernel_range(num_elem * elem_size);
91bd882c8aSJames Wright 
92bd882c8aSJames Wright   // Order queue
93bd882c8aSJames Wright   sycl::event e = sycl_queue.ext_oneapi_submit_barrier();
94bd882c8aSJames Wright   sycl_queue.parallel_for<CeedElemRestrSyclStridedT>(kernel_range, {e}, [=](sycl::id<1> node) {
95bd882c8aSJames Wright     const CeedInt loc_node = node % elem_size;
96bd882c8aSJames Wright     const CeedInt elem     = node / elem_size;
97bd882c8aSJames Wright 
98bd882c8aSJames Wright     for (CeedInt comp = 0; comp < num_comp; comp++) {
99bd882c8aSJames Wright       v[loc_node * stride_nodes + comp * stride_comp + elem * stride_elem] += u[loc_node + comp * elem_size * num_elem + elem * elem_size];
100bd882c8aSJames Wright     }
101bd882c8aSJames Wright   });
102bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
103bd882c8aSJames Wright }
104bd882c8aSJames Wright 
105bd882c8aSJames Wright //------------------------------------------------------------------------------
106bd882c8aSJames Wright // Kernel: E-vector -> L-vector, offsets provided
107bd882c8aSJames Wright //------------------------------------------------------------------------------
108bd882c8aSJames Wright static int CeedElemRestrictionOffsetTranspose_Sycl(sycl::queue &sycl_queue, const CeedElemRestriction_Sycl *impl, const CeedScalar *u,
109bd882c8aSJames Wright                                                    CeedScalar *v) {
110bd882c8aSJames Wright   const CeedInt num_nodes   = impl->num_nodes;
111bd882c8aSJames Wright   const CeedInt elem_size   = impl->elem_size;
112bd882c8aSJames Wright   const CeedInt num_elem    = impl->num_elem;
113bd882c8aSJames Wright   const CeedInt num_comp    = impl->num_comp;
114bd882c8aSJames Wright   const CeedInt comp_stride = impl->comp_stride;
115bd882c8aSJames Wright 
116bd882c8aSJames Wright   const CeedInt *l_vec_indices = impl->d_l_vec_indices;
117bd882c8aSJames Wright   const CeedInt *t_offsets     = impl->d_t_offsets;
118bd882c8aSJames Wright   const CeedInt *t_indices     = impl->d_t_indices;
119bd882c8aSJames Wright 
120bd882c8aSJames Wright   sycl::range<1> kernel_range(num_nodes * num_comp);
121bd882c8aSJames Wright 
122bd882c8aSJames Wright   // Order queue
123bd882c8aSJames Wright   sycl::event e = sycl_queue.ext_oneapi_submit_barrier();
124bd882c8aSJames Wright   sycl_queue.parallel_for<CeedElemRestrSyclOffsetT>(kernel_range, {e}, [=](sycl::id<1> id) {
125bd882c8aSJames Wright     const CeedInt node    = id % num_nodes;
126bd882c8aSJames Wright     const CeedInt comp    = id / num_nodes;
127bd882c8aSJames Wright     const CeedInt ind     = l_vec_indices[node];
128bd882c8aSJames Wright     const CeedInt range_1 = t_offsets[node];
129bd882c8aSJames Wright     const CeedInt range_N = t_offsets[node + 1];
130bd882c8aSJames Wright 
131bd882c8aSJames Wright     CeedScalar value = 0.0;
132bd882c8aSJames Wright 
133bd882c8aSJames Wright     for (CeedInt j = range_1; j < range_N; j++) {
134bd882c8aSJames Wright       const CeedInt t_ind    = t_indices[j];
135bd882c8aSJames Wright       CeedInt       loc_node = t_ind % elem_size;
136bd882c8aSJames Wright       CeedInt       elem     = t_ind / elem_size;
137bd882c8aSJames Wright 
138bd882c8aSJames Wright       value += u[loc_node + comp * elem_size * num_elem + elem * elem_size];
139bd882c8aSJames Wright     }
140bd882c8aSJames Wright     v[ind + comp * comp_stride] += value;
141bd882c8aSJames Wright   });
142bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
143bd882c8aSJames Wright }
144bd882c8aSJames Wright 
145bd882c8aSJames Wright //------------------------------------------------------------------------------
146bd882c8aSJames Wright // Apply restriction
147bd882c8aSJames Wright //------------------------------------------------------------------------------
148bd882c8aSJames Wright static int CeedElemRestrictionApply_Sycl(CeedElemRestriction r, CeedTransposeMode t_mode, CeedVector u, CeedVector v, CeedRequest *request) {
149bd882c8aSJames Wright   Ceed ceed;
150bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetCeed(r, &ceed));
151bd882c8aSJames Wright   CeedElemRestriction_Sycl *impl;
152bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetData(r, &impl));
153bd882c8aSJames Wright   Ceed_Sycl *data;
154bd882c8aSJames Wright   CeedCallBackend(CeedGetData(ceed, &data));
155bd882c8aSJames Wright 
156bd882c8aSJames Wright   // Get vectors
157bd882c8aSJames Wright   const CeedScalar *d_u;
158bd882c8aSJames Wright   CeedScalar       *d_v;
159bd882c8aSJames Wright   CeedCallBackend(CeedVectorGetArrayRead(u, CEED_MEM_DEVICE, &d_u));
160bd882c8aSJames Wright   if (t_mode == CEED_TRANSPOSE) {
161bd882c8aSJames Wright     // Sum into for transpose mode, e-vec to l-vec
162bd882c8aSJames Wright     CeedCallBackend(CeedVectorGetArray(v, CEED_MEM_DEVICE, &d_v));
163bd882c8aSJames Wright   } else {
164bd882c8aSJames Wright     // Overwrite for notranspose mode, l-vec to e-vec
165bd882c8aSJames Wright     CeedCallBackend(CeedVectorGetArrayWrite(v, CEED_MEM_DEVICE, &d_v));
166bd882c8aSJames Wright   }
167bd882c8aSJames Wright 
168bd882c8aSJames Wright   // Restrict
169bd882c8aSJames Wright   if (t_mode == CEED_NOTRANSPOSE) {
170bd882c8aSJames Wright     // L-vector -> E-vector
171bd882c8aSJames Wright     if (impl->d_ind) {
172bd882c8aSJames Wright       // -- Offsets provided
173bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionOffsetNoTranspose_Sycl(data->sycl_queue, impl, d_u, d_v));
174bd882c8aSJames Wright     } else {
175bd882c8aSJames Wright       // -- Strided restriction
176bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionStridedNoTranspose_Sycl(data->sycl_queue, impl, d_u, d_v));
177bd882c8aSJames Wright     }
178bd882c8aSJames Wright   } else {
179bd882c8aSJames Wright     // E-vector -> L-vector
180bd882c8aSJames Wright     if (impl->d_ind) {
181bd882c8aSJames Wright       // -- Offsets provided
182bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionOffsetTranspose_Sycl(data->sycl_queue, impl, d_u, d_v));
183bd882c8aSJames Wright     } else {
184bd882c8aSJames Wright       // -- Strided restriction
185bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionStridedTranspose_Sycl(data->sycl_queue, impl, d_u, d_v));
186bd882c8aSJames Wright     }
187bd882c8aSJames Wright   }
188bd882c8aSJames Wright   // Wait for queues to be completed. NOTE: This may not be necessary
189bd882c8aSJames Wright   CeedCallSycl(ceed, data->sycl_queue.wait_and_throw());
190bd882c8aSJames Wright 
191bd882c8aSJames Wright   if (request != CEED_REQUEST_IMMEDIATE && request != CEED_REQUEST_ORDERED) *request = NULL;
192bd882c8aSJames Wright 
193bd882c8aSJames Wright   // Restore arrays
194bd882c8aSJames Wright   CeedCallBackend(CeedVectorRestoreArrayRead(u, &d_u));
195bd882c8aSJames Wright   CeedCallBackend(CeedVectorRestoreArray(v, &d_v));
196bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
197bd882c8aSJames Wright }
198bd882c8aSJames Wright 
199bd882c8aSJames Wright //------------------------------------------------------------------------------
200bd882c8aSJames Wright // Get offsets
201bd882c8aSJames Wright //------------------------------------------------------------------------------
202bd882c8aSJames Wright static int CeedElemRestrictionGetOffsets_Sycl(CeedElemRestriction r, CeedMemType m_type, const CeedInt **offsets) {
203bd882c8aSJames Wright   Ceed ceed;
204bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetCeed(r, &ceed));
205bd882c8aSJames Wright   CeedElemRestriction_Sycl *impl;
206bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetData(r, &impl));
207bd882c8aSJames Wright 
208bd882c8aSJames Wright   switch (m_type) {
209bd882c8aSJames Wright     case CEED_MEM_HOST:
210bd882c8aSJames Wright       *offsets = impl->h_ind;
211bd882c8aSJames Wright       break;
212bd882c8aSJames Wright     case CEED_MEM_DEVICE:
213bd882c8aSJames Wright       *offsets = impl->d_ind;
214bd882c8aSJames Wright       break;
215bd882c8aSJames Wright   }
216bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
217bd882c8aSJames Wright }
218bd882c8aSJames Wright 
219bd882c8aSJames Wright //------------------------------------------------------------------------------
220bd882c8aSJames Wright // Destroy restriction
221bd882c8aSJames Wright //------------------------------------------------------------------------------
222bd882c8aSJames Wright static int CeedElemRestrictionDestroy_Sycl(CeedElemRestriction r) {
223bd882c8aSJames Wright   Ceed ceed;
224bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetCeed(r, &ceed));
225bd882c8aSJames Wright   CeedElemRestriction_Sycl *impl;
226bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetData(r, &impl));
227bd882c8aSJames Wright   Ceed_Sycl *data;
228bd882c8aSJames Wright   CeedCallBackend(CeedGetData(ceed, &data));
229bd882c8aSJames Wright 
230bd882c8aSJames Wright   // Wait for all work to finish before freeing memory
231bd882c8aSJames Wright   CeedCallSycl(ceed, data->sycl_queue.wait_and_throw());
232bd882c8aSJames Wright 
233bd882c8aSJames Wright   CeedCallBackend(CeedFree(&impl->h_ind_allocated));
234bd882c8aSJames Wright   CeedCallSycl(ceed, sycl::free(impl->d_ind_allocated, data->sycl_context));
235bd882c8aSJames Wright   CeedCallSycl(ceed, sycl::free(impl->d_t_offsets, data->sycl_context));
236bd882c8aSJames Wright   CeedCallSycl(ceed, sycl::free(impl->d_t_indices, data->sycl_context));
237bd882c8aSJames Wright   CeedCallSycl(ceed, sycl::free(impl->d_l_vec_indices, data->sycl_context));
238bd882c8aSJames Wright   CeedCallBackend(CeedFree(&impl));
239bd882c8aSJames Wright 
240bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
241bd882c8aSJames Wright }
242bd882c8aSJames Wright 
243bd882c8aSJames Wright //------------------------------------------------------------------------------
244bd882c8aSJames Wright // Create transpose offsets and indices
245bd882c8aSJames Wright //------------------------------------------------------------------------------
246bd882c8aSJames Wright static int CeedElemRestrictionOffset_Sycl(const CeedElemRestriction r, const CeedInt *indices) {
247bd882c8aSJames Wright   Ceed ceed;
248bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetCeed(r, &ceed));
249bd882c8aSJames Wright   CeedElemRestriction_Sycl *impl;
250bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetData(r, &impl));
251bd882c8aSJames Wright   CeedSize l_size;
252bd882c8aSJames Wright   CeedInt  num_elem, elem_size, num_comp;
253bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetNumElements(r, &num_elem));
254bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetElementSize(r, &elem_size));
255bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetLVectorSize(r, &l_size));
256bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetNumComponents(r, &num_comp));
257bd882c8aSJames Wright 
258bd882c8aSJames Wright   // Count num_nodes
259bd882c8aSJames Wright   bool *is_node;
260bd882c8aSJames Wright   CeedCallBackend(CeedCalloc(l_size, &is_node));
261bd882c8aSJames Wright   const CeedInt size_indices = num_elem * elem_size;
262bd882c8aSJames Wright   for (CeedInt i = 0; i < size_indices; i++) is_node[indices[i]] = 1;
263bd882c8aSJames Wright   CeedInt num_nodes = 0;
264bd882c8aSJames Wright   for (CeedInt i = 0; i < l_size; i++) num_nodes += is_node[i];
265bd882c8aSJames Wright   impl->num_nodes = num_nodes;
266bd882c8aSJames Wright 
267bd882c8aSJames Wright   // L-vector offsets array
268bd882c8aSJames Wright   CeedInt *ind_to_offset, *l_vec_indices;
269bd882c8aSJames Wright   CeedCallBackend(CeedCalloc(l_size, &ind_to_offset));
270bd882c8aSJames Wright   CeedCallBackend(CeedCalloc(num_nodes, &l_vec_indices));
271bd882c8aSJames Wright   CeedInt j = 0;
272bd882c8aSJames Wright   for (CeedInt i = 0; i < l_size; i++) {
273bd882c8aSJames Wright     if (is_node[i]) {
274bd882c8aSJames Wright       l_vec_indices[j] = i;
275bd882c8aSJames Wright       ind_to_offset[i] = j++;
276bd882c8aSJames Wright     }
277bd882c8aSJames Wright   }
278bd882c8aSJames Wright   CeedCallBackend(CeedFree(&is_node));
279bd882c8aSJames Wright 
280bd882c8aSJames Wright   // Compute transpose offsets and indices
281bd882c8aSJames Wright   const CeedInt size_offsets = num_nodes + 1;
282bd882c8aSJames Wright   CeedInt      *t_offsets;
283bd882c8aSJames Wright   CeedCallBackend(CeedCalloc(size_offsets, &t_offsets));
284bd882c8aSJames Wright   CeedInt *t_indices;
285bd882c8aSJames Wright   CeedCallBackend(CeedMalloc(size_indices, &t_indices));
286bd882c8aSJames Wright   // Count node multiplicity
287bd882c8aSJames Wright   for (CeedInt e = 0; e < num_elem; ++e) {
288bd882c8aSJames Wright     for (CeedInt i = 0; i < elem_size; ++i) ++t_offsets[ind_to_offset[indices[elem_size * e + i]] + 1];
289bd882c8aSJames Wright   }
290bd882c8aSJames Wright   // Convert to running sum
291bd882c8aSJames Wright   for (CeedInt i = 1; i < size_offsets; ++i) t_offsets[i] += t_offsets[i - 1];
292bd882c8aSJames Wright   // List all E-vec indices associated with L-vec node
293bd882c8aSJames Wright   for (CeedInt e = 0; e < num_elem; ++e) {
294bd882c8aSJames Wright     for (CeedInt i = 0; i < elem_size; ++i) {
295bd882c8aSJames Wright       const CeedInt lid                          = elem_size * e + i;
296bd882c8aSJames Wright       const CeedInt gid                          = indices[lid];
297bd882c8aSJames Wright       t_indices[t_offsets[ind_to_offset[gid]]++] = lid;
298bd882c8aSJames Wright     }
299bd882c8aSJames Wright   }
300bd882c8aSJames Wright   // Reset running sum
301bd882c8aSJames Wright   for (int i = size_offsets - 1; i > 0; --i) t_offsets[i] = t_offsets[i - 1];
302bd882c8aSJames Wright   t_offsets[0] = 0;
303bd882c8aSJames Wright 
304bd882c8aSJames Wright   // Copy data to device
305bd882c8aSJames Wright   Ceed_Sycl *data;
306bd882c8aSJames Wright   CeedCallBackend(CeedGetData(ceed, &data));
307bd882c8aSJames Wright 
308bd882c8aSJames Wright   // Order queue
309bd882c8aSJames Wright   sycl::event e = data->sycl_queue.ext_oneapi_submit_barrier();
310bd882c8aSJames Wright 
311bd882c8aSJames Wright   // -- L-vector indices
312bd882c8aSJames Wright   CeedCallSycl(ceed, impl->d_l_vec_indices = sycl::malloc_device<CeedInt>(num_nodes, data->sycl_device, data->sycl_context));
313bd882c8aSJames Wright   sycl::event copy_lvec = data->sycl_queue.copy<CeedInt>(l_vec_indices, impl->d_l_vec_indices, num_nodes, {e});
314bd882c8aSJames Wright   // -- Transpose offsets
315bd882c8aSJames Wright   CeedCallSycl(ceed, impl->d_t_offsets = sycl::malloc_device<CeedInt>(size_offsets, data->sycl_device, data->sycl_context));
316bd882c8aSJames Wright   sycl::event copy_offsets = data->sycl_queue.copy<CeedInt>(t_offsets, impl->d_t_offsets, size_offsets, {e});
317bd882c8aSJames Wright   // -- Transpose indices
318bd882c8aSJames Wright   CeedCallSycl(ceed, impl->d_t_indices = sycl::malloc_device<CeedInt>(size_indices, data->sycl_device, data->sycl_context));
319bd882c8aSJames Wright   sycl::event copy_indices = data->sycl_queue.copy<CeedInt>(t_indices, impl->d_t_indices, size_indices, {e});
320bd882c8aSJames Wright 
321bd882c8aSJames Wright   // Wait for all copies to complete and handle exceptions
322bd882c8aSJames Wright   CeedCallSycl(ceed, sycl::event::wait_and_throw({copy_lvec, copy_offsets, copy_indices}));
323bd882c8aSJames Wright 
324bd882c8aSJames Wright   // Cleanup
325bd882c8aSJames Wright   CeedCallBackend(CeedFree(&ind_to_offset));
326bd882c8aSJames Wright   CeedCallBackend(CeedFree(&l_vec_indices));
327bd882c8aSJames Wright   CeedCallBackend(CeedFree(&t_offsets));
328bd882c8aSJames Wright   CeedCallBackend(CeedFree(&t_indices));
329bd882c8aSJames Wright 
330bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
331bd882c8aSJames Wright }
332bd882c8aSJames Wright 
333bd882c8aSJames Wright //------------------------------------------------------------------------------
334bd882c8aSJames Wright // Create restriction
335bd882c8aSJames Wright //------------------------------------------------------------------------------
336bd882c8aSJames Wright int CeedElemRestrictionCreate_Sycl(CeedMemType m_type, CeedCopyMode copy_mode, const CeedInt *indices, CeedElemRestriction r) {
337bd882c8aSJames Wright   Ceed ceed;
338bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetCeed(r, &ceed));
339bd882c8aSJames Wright   Ceed_Sycl *data;
340bd882c8aSJames Wright   CeedCallBackend(CeedGetData(ceed, &data));
341bd882c8aSJames Wright   CeedElemRestriction_Sycl *impl;
342bd882c8aSJames Wright   CeedCallBackend(CeedCalloc(1, &impl));
343bd882c8aSJames Wright   CeedInt num_elem, num_comp, elem_size;
344bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetNumElements(r, &num_elem));
345bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetNumComponents(r, &num_comp));
346bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionGetElementSize(r, &elem_size));
347bd882c8aSJames Wright   CeedInt size        = num_elem * elem_size;
348bd882c8aSJames Wright   CeedInt strides[3]  = {1, size, elem_size};
349bd882c8aSJames Wright   CeedInt comp_stride = 1;
350bd882c8aSJames Wright 
351bd882c8aSJames Wright   // Stride data
352bd882c8aSJames Wright   bool is_strided;
353bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionIsStrided(r, &is_strided));
354bd882c8aSJames Wright   if (is_strided) {
355bd882c8aSJames Wright     bool has_backend_strides;
356bd882c8aSJames Wright     CeedCallBackend(CeedElemRestrictionHasBackendStrides(r, &has_backend_strides));
357bd882c8aSJames Wright     if (!has_backend_strides) {
358bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionGetStrides(r, &strides));
359bd882c8aSJames Wright     }
360bd882c8aSJames Wright   } else {
361bd882c8aSJames Wright     CeedCallBackend(CeedElemRestrictionGetCompStride(r, &comp_stride));
362bd882c8aSJames Wright   }
363bd882c8aSJames Wright 
364bd882c8aSJames Wright   impl->h_ind           = NULL;
365bd882c8aSJames Wright   impl->h_ind_allocated = NULL;
366bd882c8aSJames Wright   impl->d_ind           = NULL;
367bd882c8aSJames Wright   impl->d_ind_allocated = NULL;
368bd882c8aSJames Wright   impl->d_t_indices     = NULL;
369bd882c8aSJames Wright   impl->d_t_offsets     = NULL;
370bd882c8aSJames Wright   impl->num_nodes       = size;
371bd882c8aSJames Wright   impl->num_elem        = num_elem;
372bd882c8aSJames Wright   impl->num_comp        = num_comp;
373bd882c8aSJames Wright   impl->elem_size       = elem_size;
374bd882c8aSJames Wright   impl->comp_stride     = comp_stride;
375bd882c8aSJames Wright   impl->strides[0]      = strides[0];
376bd882c8aSJames Wright   impl->strides[1]      = strides[1];
377bd882c8aSJames Wright   impl->strides[2]      = strides[2];
378bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionSetData(r, impl));
379bd882c8aSJames Wright   CeedInt layout[3] = {1, elem_size * num_elem, elem_size};
380bd882c8aSJames Wright   CeedCallBackend(CeedElemRestrictionSetELayout(r, layout));
381bd882c8aSJames Wright 
382bd882c8aSJames Wright   // Set up device indices/offset arrays
383bd882c8aSJames Wright   if (m_type == CEED_MEM_HOST) {
384bd882c8aSJames Wright     switch (copy_mode) {
385bd882c8aSJames Wright       case CEED_OWN_POINTER:
386bd882c8aSJames Wright         impl->h_ind_allocated = (CeedInt *)indices;
387bd882c8aSJames Wright         impl->h_ind           = (CeedInt *)indices;
388bd882c8aSJames Wright         break;
389bd882c8aSJames Wright       case CEED_USE_POINTER:
390bd882c8aSJames Wright         impl->h_ind = (CeedInt *)indices;
391bd882c8aSJames Wright         break;
392bd882c8aSJames Wright       case CEED_COPY_VALUES:
393bd882c8aSJames Wright         if (indices != NULL) {
394bd882c8aSJames Wright           CeedCallBackend(CeedMalloc(elem_size * num_elem, &impl->h_ind_allocated));
395bd882c8aSJames Wright           memcpy(impl->h_ind_allocated, indices, elem_size * num_elem * sizeof(CeedInt));
396bd882c8aSJames Wright           impl->h_ind = impl->h_ind_allocated;
397bd882c8aSJames Wright         }
398bd882c8aSJames Wright         break;
399bd882c8aSJames Wright     }
400bd882c8aSJames Wright     if (indices != NULL) {
401bd882c8aSJames Wright       CeedCallSycl(ceed, impl->d_ind = sycl::malloc_device<CeedInt>(size, data->sycl_device, data->sycl_context));
402bd882c8aSJames Wright       impl->d_ind_allocated = impl->d_ind;  // We own the device memory
403bd882c8aSJames Wright       // Order queue
404bd882c8aSJames Wright       sycl::event e = data->sycl_queue.ext_oneapi_submit_barrier();
405bd882c8aSJames Wright       // Copy from host to device
406bd882c8aSJames Wright       sycl::event copy_event = data->sycl_queue.copy<CeedInt>(indices, impl->d_ind, size, {e});
407bd882c8aSJames Wright       // Wait for copy to finish and handle exceptions
408bd882c8aSJames Wright       CeedCallSycl(ceed, copy_event.wait_and_throw());
409bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionOffset_Sycl(r, indices));
410bd882c8aSJames Wright     }
411bd882c8aSJames Wright   } else if (m_type == CEED_MEM_DEVICE) {
412bd882c8aSJames Wright     switch (copy_mode) {
413bd882c8aSJames Wright       case CEED_COPY_VALUES:
414bd882c8aSJames Wright         if (indices != NULL) {
415bd882c8aSJames Wright           CeedCallSycl(ceed, impl->d_ind = sycl::malloc_device<CeedInt>(size, data->sycl_device, data->sycl_context));
416bd882c8aSJames Wright           impl->d_ind_allocated = impl->d_ind;  // We own the device memory
417bd882c8aSJames Wright                                                 // Copy from device to device
418bd882c8aSJames Wright           // Order queue
419bd882c8aSJames Wright           sycl::event e          = data->sycl_queue.ext_oneapi_submit_barrier();
420bd882c8aSJames Wright           sycl::event copy_event = data->sycl_queue.copy<CeedInt>(indices, impl->d_ind, size, {e});
421bd882c8aSJames Wright           // Wait for copy to finish and handle exceptions
422bd882c8aSJames Wright           CeedCallSycl(ceed, copy_event.wait_and_throw());
423bd882c8aSJames Wright         }
424bd882c8aSJames Wright         break;
425bd882c8aSJames Wright       case CEED_OWN_POINTER:
426bd882c8aSJames Wright         impl->d_ind           = (CeedInt *)indices;
427bd882c8aSJames Wright         impl->d_ind_allocated = impl->d_ind;
428bd882c8aSJames Wright         break;
429bd882c8aSJames Wright       case CEED_USE_POINTER:
430bd882c8aSJames Wright         impl->d_ind = (CeedInt *)indices;
431bd882c8aSJames Wright     }
432bd882c8aSJames Wright     if (indices != NULL) {
433bd882c8aSJames Wright       CeedCallBackend(CeedMalloc(elem_size * num_elem, &impl->h_ind_allocated));
434bd882c8aSJames Wright       // Order queue
435bd882c8aSJames Wright       sycl::event e = data->sycl_queue.ext_oneapi_submit_barrier();
436bd882c8aSJames Wright       // Copy from device to host
437bd882c8aSJames Wright       sycl::event copy_event = data->sycl_queue.copy<CeedInt>(impl->d_ind, impl->h_ind_allocated, elem_size * num_elem, {e});
438bd882c8aSJames Wright       CeedCallSycl(ceed, copy_event.wait_and_throw());
439bd882c8aSJames Wright       impl->h_ind = impl->h_ind_allocated;
440bd882c8aSJames Wright       CeedCallBackend(CeedElemRestrictionOffset_Sycl(r, indices));
441bd882c8aSJames Wright     }
442bd882c8aSJames Wright   } else {
443bd882c8aSJames Wright     // LCOV_EXCL_START
444bd882c8aSJames Wright     return CeedError(ceed, CEED_ERROR_BACKEND, "Only MemType = HOST or DEVICE supported");
445bd882c8aSJames Wright     // LCOV_EXCL_STOP
446bd882c8aSJames Wright   }
447bd882c8aSJames Wright 
448bd882c8aSJames Wright   // Register backend functions
449bd882c8aSJames Wright   CeedCallBackend(CeedSetBackendFunctionCpp(ceed, "ElemRestriction", r, "Apply", CeedElemRestrictionApply_Sycl));
450bd882c8aSJames Wright   CeedCallBackend(CeedSetBackendFunctionCpp(ceed, "ElemRestriction", r, "ApplyUnsigned", CeedElemRestrictionApply_Sycl));
451*7c1dbaffSSebastian Grimberg   CeedCallBackend(CeedSetBackendFunctionCpp(ceed, "ElemRestriction", r, "ApplyUnoriented", CeedElemRestrictionApply_Sycl));
452bd882c8aSJames Wright   CeedCallBackend(CeedSetBackendFunctionCpp(ceed, "ElemRestriction", r, "GetOffsets", CeedElemRestrictionGetOffsets_Sycl));
453bd882c8aSJames Wright   CeedCallBackend(CeedSetBackendFunctionCpp(ceed, "ElemRestriction", r, "Destroy", CeedElemRestrictionDestroy_Sycl));
454bd882c8aSJames Wright   return CEED_ERROR_SUCCESS;
455bd882c8aSJames Wright }
456