15aed82e4SJeremy L Thompson // Copyright (c) 2017-2024, 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. 3241a4b83SYohann // 43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 5241a4b83SYohann // 63d8e8822SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 7241a4b83SYohann 849aac155SJeremy L Thompson #include <ceed.h> 9ec3da8bcSJed Brown #include <ceed/backend.h> 1049aac155SJeremy L Thompson #include <ceed/jit-source/cuda/cuda-types.h> 118b97b69aSJeremy L Thompson #include <cuda.h> 128b97b69aSJeremy L Thompson #include <cuda_runtime.h> 133d576824SJeremy L Thompson #include <stddef.h> 14dc007f05SJeremy L Thompson #include <string.h> 152b730f8bSJeremy L Thompson 1649aac155SJeremy L Thompson #include "../cuda/ceed-cuda-common.h" 176d69246aSJeremy L Thompson #include "../cuda/ceed-cuda-compile.h" 182b730f8bSJeremy L Thompson #include "ceed-cuda-gen-operator-build.h" 192b730f8bSJeremy L Thompson #include "ceed-cuda-gen.h" 20241a4b83SYohann 21ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 22ab213215SJeremy L Thompson // Destroy operator 23ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 24241a4b83SYohann static int CeedOperatorDestroy_Cuda_gen(CeedOperator op) { 258b97b69aSJeremy L Thompson Ceed ceed; 26241a4b83SYohann CeedOperator_Cuda_gen *impl; 27ca735530SJeremy L Thompson 288b97b69aSJeremy L Thompson CeedCallBackend(CeedOperatorGetCeed(op, &ceed)); 292b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorGetData(op, &impl)); 308b97b69aSJeremy L Thompson if (impl->points.num_per_elem) CeedCallCuda(ceed, cudaFree((void **)impl->points.num_per_elem)); 312b730f8bSJeremy L Thompson CeedCallBackend(CeedFree(&impl)); 328b97b69aSJeremy L Thompson CeedCallBackend(CeedDestroy(&ceed)); 33e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 34241a4b83SYohann } 35241a4b83SYohann 362b730f8bSJeremy L Thompson static int Waste(int threads_per_sm, int warp_size, int threads_per_elem, int elems_per_block) { 3739532cebSJed Brown int useful_threads_per_block = threads_per_elem * elems_per_block; 3839532cebSJed Brown // round up to nearest multiple of warp_size 39b2165e7aSSebastian Grimberg int block_size = CeedDivUpInt(useful_threads_per_block, warp_size) * warp_size; 4039532cebSJed Brown int blocks_per_sm = threads_per_sm / block_size; 4139532cebSJed Brown return threads_per_sm - useful_threads_per_block * blocks_per_sm; 4239532cebSJed Brown } 4339532cebSJed Brown 44ea61e9acSJeremy L Thompson // Choose the least wasteful block size constrained by blocks_per_sm of max_threads_per_block. 4539532cebSJed Brown // 46ea61e9acSJeremy L Thompson // The x and y part of block[] contains per-element sizes (specified on input) while the z part is number of elements. 4739532cebSJed Brown // 48ea61e9acSJeremy L Thompson // Problem setting: we'd like to make occupancy high with relatively few inactive threads. CUDA (cuOccupancyMaxPotentialBlockSize) can tell us how 4939532cebSJed Brown // many threads can run. 5039532cebSJed Brown // 51ea61e9acSJeremy L Thompson // Note that full occupancy sometimes can't be achieved by one thread block. 52ea61e9acSJeremy L Thompson // For example, an SM might support 1536 threads in total, but only 1024 within a single thread block. 53ea61e9acSJeremy L Thompson // So cuOccupancyMaxPotentialBlockSize may suggest a block size of 768 so that two blocks can run, versus one block of 1024 will prevent a second 54ea61e9acSJeremy L Thompson // block from running. The cuda-gen kernels are pretty heavy with lots of instruction-level parallelism (ILP) so we'll generally be okay with 55ea61e9acSJeremy L Thompson // relatively low occupancy and smaller thread blocks, but we solve a reasonably general problem here. Empirically, we find that blocks bigger than 56ea61e9acSJeremy L Thompson // about 256 have higher latency and worse load balancing when the number of elements is modest. 5739532cebSJed Brown // 58ea61e9acSJeremy L Thompson // cuda-gen can't choose block sizes arbitrarily; they need to be a multiple of the number of quadrature points (or number of basis functions). 59ea61e9acSJeremy L Thompson // They also have a lot of __syncthreads(), which is another point against excessively large thread blocks. 60ea61e9acSJeremy L Thompson // Suppose I have elements with 7x7x7 quadrature points. 61ea61e9acSJeremy L Thompson // This will loop over the last dimension, so we have 7*7=49 threads per element. 62ea61e9acSJeremy L Thompson // Suppose we have two elements = 2*49=98 useful threads. 63ea61e9acSJeremy L Thompson // CUDA schedules in units of full warps (32 threads), so 128 CUDA hardware threads are effectively committed to that block. 64ea61e9acSJeremy L Thompson // Now suppose cuOccupancyMaxPotentialBlockSize returned 352. 65ea61e9acSJeremy L Thompson // We can schedule 2 blocks of size 98 (196 useful threads using 256 hardware threads), but not a third block (which would need a total of 384 66ea61e9acSJeremy L Thompson // hardware threads). 6739532cebSJed Brown // 68ea61e9acSJeremy L Thompson // If instead, we had packed 3 elements, we'd have 3*49=147 useful threads occupying 160 slots, and could schedule two blocks. 69ea61e9acSJeremy L Thompson // Alternatively, we could pack a single block of 7 elements (2*49=343 useful threads) into the 354 slots. 70ea61e9acSJeremy L Thompson // The latter has the least "waste", but __syncthreads() over-synchronizes and it might not pay off relative to smaller blocks. 712b730f8bSJeremy L Thompson static int BlockGridCalculate(CeedInt num_elem, int blocks_per_sm, int max_threads_per_block, int max_threads_z, int warp_size, int block[3], 722b730f8bSJeremy L Thompson int *grid) { 7339532cebSJed Brown const int threads_per_sm = blocks_per_sm * max_threads_per_block; 7439532cebSJed Brown const int threads_per_elem = block[0] * block[1]; 7539532cebSJed Brown int elems_per_block = 1; 7639532cebSJed Brown int waste = Waste(threads_per_sm, warp_size, threads_per_elem, 1); 77ca735530SJeremy L Thompson 782b730f8bSJeremy L Thompson for (int i = 2; i <= CeedIntMin(max_threads_per_block / threads_per_elem, num_elem); i++) { 7939532cebSJed Brown int i_waste = Waste(threads_per_sm, warp_size, threads_per_elem, i); 80ca735530SJeremy L Thompson 81ea61e9acSJeremy L Thompson // We want to minimize waste, but smaller kernels have lower latency and less __syncthreads() overhead so when a larger block size has the same 8239532cebSJed Brown // waste as a smaller one, go ahead and prefer the smaller block. 8339532cebSJed Brown if (i_waste < waste || (i_waste == waste && threads_per_elem * i <= 128)) { 8439532cebSJed Brown elems_per_block = i; 8539532cebSJed Brown waste = i_waste; 8639532cebSJed Brown } 8739532cebSJed Brown } 88ea61e9acSJeremy L Thompson // In low-order elements, threads_per_elem may be sufficiently low to give an elems_per_block greater than allowable for the device, so we must 89ea61e9acSJeremy L Thompson // check before setting the z-dimension size of the block. 9013516544Snbeams block[2] = CeedIntMin(elems_per_block, max_threads_z); 91b2165e7aSSebastian Grimberg *grid = CeedDivUpInt(num_elem, elems_per_block); 9239532cebSJed Brown return CEED_ERROR_SUCCESS; 9339532cebSJed Brown } 9439532cebSJed Brown 95ea61e9acSJeremy L Thompson // callback for cuOccupancyMaxPotentialBlockSize, providing the amount of dynamic shared memory required for a thread block of size threads. 9639532cebSJed Brown static size_t dynamicSMemSize(int threads) { return threads * sizeof(CeedScalar); } 9739532cebSJed Brown 98ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 99ab213215SJeremy L Thompson // Apply and add to output 100ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 1012b730f8bSJeremy L Thompson static int CeedOperatorApplyAdd_Cuda_gen(CeedOperator op, CeedVector input_vec, CeedVector output_vec, CeedRequest *request) { 102*ddae5012SJeremy L Thompson bool is_at_points, is_tensor, is_good_run = true; 103241a4b83SYohann Ceed ceed; 10439532cebSJed Brown Ceed_Cuda *cuda_data; 105ca735530SJeremy L Thompson CeedInt num_elem, num_input_fields, num_output_fields; 106ca735530SJeremy L Thompson CeedEvalMode eval_mode; 107ca735530SJeremy L Thompson CeedVector output_vecs[CEED_FIELD_MAX] = {NULL}; 108ca735530SJeremy L Thompson CeedQFunctionField *qf_input_fields, *qf_output_fields; 109241a4b83SYohann CeedQFunction_Cuda_gen *qf_data; 110ca735530SJeremy L Thompson CeedQFunction qf; 111ca735530SJeremy L Thompson CeedOperatorField *op_input_fields, *op_output_fields; 112ca735530SJeremy L Thompson CeedOperator_Cuda_gen *data; 113ca735530SJeremy L Thompson 114*ddae5012SJeremy L Thompson // Creation of the operator 115f6eafd79SJeremy L Thompson { 116*ddae5012SJeremy L Thompson bool is_good_build = false; 117f6eafd79SJeremy L Thompson 118*ddae5012SJeremy L Thompson CeedCallBackend(CeedOperatorBuildKernel_Cuda_gen(op, &is_good_build)); 119*ddae5012SJeremy L Thompson if (!is_good_build) { 120f6eafd79SJeremy L Thompson CeedOperator op_fallback; 121f6eafd79SJeremy L Thompson 122*ddae5012SJeremy L Thompson CeedDebug256(CeedOperatorReturnCeed(op), CEED_DEBUG_COLOR_SUCCESS, "Falling back to /gpu/cuda/ref CeedOperator due to code generation issue"); 123f6eafd79SJeremy L Thompson CeedCallBackend(CeedOperatorGetFallback(op, &op_fallback)); 124f6eafd79SJeremy L Thompson CeedCallBackend(CeedOperatorApplyAdd(op_fallback, input_vec, output_vec, request)); 125f6eafd79SJeremy L Thompson return CEED_ERROR_SUCCESS; 126f6eafd79SJeremy L Thompson } 127f6eafd79SJeremy L Thompson } 128f6eafd79SJeremy L Thompson 129c11e12f4SJeremy L Thompson CeedCallBackend(CeedOperatorGetCeed(op, &ceed)); 130c11e12f4SJeremy L Thompson CeedCallBackend(CeedGetData(ceed, &cuda_data)); 131c11e12f4SJeremy L Thompson CeedCallBackend(CeedOperatorGetData(op, &data)); 132c11e12f4SJeremy L Thompson CeedCallBackend(CeedOperatorGetQFunction(op, &qf)); 133c11e12f4SJeremy L Thompson CeedCallBackend(CeedQFunctionGetData(qf, &qf_data)); 134c11e12f4SJeremy L Thompson CeedCallBackend(CeedOperatorGetNumElements(op, &num_elem)); 135*ddae5012SJeremy L Thompson CeedCallBackend(CeedOperatorGetFields(op, &num_input_fields, &op_input_fields, &num_output_fields, &op_output_fields)); 136c11e12f4SJeremy L Thompson CeedCallBackend(CeedQFunctionGetFields(qf, NULL, &qf_input_fields, NULL, &qf_output_fields)); 137c11e12f4SJeremy L Thompson 138241a4b83SYohann // Input vectors 1399e201c85SYohann for (CeedInt i = 0; i < num_input_fields; i++) { 1402b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionFieldGetEvalMode(qf_input_fields[i], &eval_mode)); 1419e201c85SYohann if (eval_mode == CEED_EVAL_WEIGHT) { // Skip 1429e201c85SYohann data->fields.inputs[i] = NULL; 143241a4b83SYohann } else { 144681d0ea7SJeremy L Thompson bool is_active; 145681d0ea7SJeremy L Thompson CeedVector vec; 146681d0ea7SJeremy L Thompson 147241a4b83SYohann // Get input vector 1482b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorFieldGetVector(op_input_fields[i], &vec)); 149681d0ea7SJeremy L Thompson is_active = vec == CEED_VECTOR_ACTIVE; 150681d0ea7SJeremy L Thompson if (is_active) vec = input_vec; 1512b730f8bSJeremy L Thompson CeedCallBackend(CeedVectorGetArrayRead(vec, CEED_MEM_DEVICE, &data->fields.inputs[i])); 152681d0ea7SJeremy L Thompson if (!is_active) CeedCallBackend(CeedVectorDestroy(&vec)); 153241a4b83SYohann } 154241a4b83SYohann } 155241a4b83SYohann 156241a4b83SYohann // Output vectors 1579e201c85SYohann for (CeedInt i = 0; i < num_output_fields; i++) { 1582b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionFieldGetEvalMode(qf_output_fields[i], &eval_mode)); 1599e201c85SYohann if (eval_mode == CEED_EVAL_WEIGHT) { // Skip 1609e201c85SYohann data->fields.outputs[i] = NULL; 161241a4b83SYohann } else { 162681d0ea7SJeremy L Thompson bool is_active; 163681d0ea7SJeremy L Thompson CeedVector vec; 164681d0ea7SJeremy L Thompson 165241a4b83SYohann // Get output vector 1662b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorFieldGetVector(op_output_fields[i], &vec)); 167681d0ea7SJeremy L Thompson is_active = vec == CEED_VECTOR_ACTIVE; 168681d0ea7SJeremy L Thompson if (is_active) vec = output_vec; 1699e201c85SYohann output_vecs[i] = vec; 1703b2939feSjeremylt // Check for multiple output modes 1713b2939feSjeremylt CeedInt index = -1; 172ca735530SJeremy L Thompson 1733b2939feSjeremylt for (CeedInt j = 0; j < i; j++) { 1749e201c85SYohann if (vec == output_vecs[j]) { 1753b2939feSjeremylt index = j; 1763b2939feSjeremylt break; 1773b2939feSjeremylt } 1783b2939feSjeremylt } 1793b2939feSjeremylt if (index == -1) { 1802b730f8bSJeremy L Thompson CeedCallBackend(CeedVectorGetArray(vec, CEED_MEM_DEVICE, &data->fields.outputs[i])); 1813b2939feSjeremylt } else { 1829e201c85SYohann data->fields.outputs[i] = data->fields.outputs[index]; 1833b2939feSjeremylt } 184681d0ea7SJeremy L Thompson if (!is_active) CeedCallBackend(CeedVectorDestroy(&vec)); 185241a4b83SYohann } 186241a4b83SYohann } 187241a4b83SYohann 1888b97b69aSJeremy L Thompson // Point coordinates, if needed 1898b97b69aSJeremy L Thompson CeedCallBackend(CeedOperatorIsAtPoints(op, &is_at_points)); 1908b97b69aSJeremy L Thompson if (is_at_points) { 1918b97b69aSJeremy L Thompson // Coords 1928b97b69aSJeremy L Thompson CeedVector vec; 1938b97b69aSJeremy L Thompson 1948b97b69aSJeremy L Thompson CeedCallBackend(CeedOperatorAtPointsGetPoints(op, NULL, &vec)); 1958b97b69aSJeremy L Thompson CeedCallBackend(CeedVectorGetArrayRead(vec, CEED_MEM_DEVICE, &data->points.coords)); 1968b97b69aSJeremy L Thompson CeedCallBackend(CeedVectorDestroy(&vec)); 1978b97b69aSJeremy L Thompson 1988b97b69aSJeremy L Thompson // Points per elem 1998b97b69aSJeremy L Thompson if (num_elem != data->points.num_elem) { 2008b97b69aSJeremy L Thompson CeedInt *points_per_elem; 2018b97b69aSJeremy L Thompson const CeedInt num_bytes = num_elem * sizeof(CeedInt); 2028b97b69aSJeremy L Thompson CeedElemRestriction rstr_points = NULL; 2038b97b69aSJeremy L Thompson 2048b97b69aSJeremy L Thompson data->points.num_elem = num_elem; 2058b97b69aSJeremy L Thompson CeedCallBackend(CeedOperatorAtPointsGetPoints(op, &rstr_points, NULL)); 2068b97b69aSJeremy L Thompson CeedCallBackend(CeedCalloc(num_elem, &points_per_elem)); 2078b97b69aSJeremy L Thompson for (CeedInt e = 0; e < num_elem; e++) { 2088b97b69aSJeremy L Thompson CeedInt num_points_elem; 2098b97b69aSJeremy L Thompson 2108b97b69aSJeremy L Thompson CeedCallBackend(CeedElemRestrictionGetNumPointsInElement(rstr_points, e, &num_points_elem)); 2118b97b69aSJeremy L Thompson points_per_elem[e] = num_points_elem; 2128b97b69aSJeremy L Thompson } 2138b97b69aSJeremy L Thompson if (data->points.num_per_elem) CeedCallCuda(ceed, cudaFree((void **)data->points.num_per_elem)); 2148b97b69aSJeremy L Thompson CeedCallCuda(ceed, cudaMalloc((void **)&data->points.num_per_elem, num_bytes)); 2158b97b69aSJeremy L Thompson CeedCallCuda(ceed, cudaMemcpy((void *)data->points.num_per_elem, points_per_elem, num_bytes, cudaMemcpyHostToDevice)); 2168b97b69aSJeremy L Thompson CeedCallBackend(CeedElemRestrictionDestroy(&rstr_points)); 2178b97b69aSJeremy L Thompson CeedCallBackend(CeedFree(&points_per_elem)); 2188b97b69aSJeremy L Thompson } 2198b97b69aSJeremy L Thompson } 2208b97b69aSJeremy L Thompson 221777ff853SJeremy L Thompson // Get context data 2222b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionGetInnerContextData(qf, CEED_MEM_DEVICE, &qf_data->d_c)); 223241a4b83SYohann 224241a4b83SYohann // Apply operator 2258b97b69aSJeremy L Thompson void *opargs[] = {(void *)&num_elem, &qf_data->d_c, &data->indices, &data->fields, &data->B, &data->G, &data->W, &data->points}; 226241a4b83SYohann const CeedInt dim = data->dim; 2279e201c85SYohann const CeedInt Q_1d = data->Q_1d; 2289e201c85SYohann const CeedInt P_1d = data->max_P_1d; 2299e201c85SYohann const CeedInt thread_1d = CeedIntMax(Q_1d, P_1d); 2308b97b69aSJeremy L Thompson int max_threads_per_block, min_grid_size, grid; 231ca735530SJeremy L Thompson 232dc007f05SJeremy L Thompson CeedCallBackend(CeedOperatorHasTensorBases(op, &is_tensor)); 2332b730f8bSJeremy L Thompson CeedCallCuda(ceed, cuOccupancyMaxPotentialBlockSize(&min_grid_size, &max_threads_per_block, data->op, dynamicSMemSize, 0, 0x10000)); 234dc007f05SJeremy L Thompson int block[3] = {thread_1d, ((!is_tensor || dim == 1) ? 1 : thread_1d), -1}; 235ca735530SJeremy L Thompson 236f82027a4SJeremy L Thompson if (is_tensor) { 23793f4dbf1SSebastian Grimberg CeedCallBackend(BlockGridCalculate(num_elem, min_grid_size / cuda_data->device_prop.multiProcessorCount, max_threads_per_block, 2382b730f8bSJeremy L Thompson cuda_data->device_prop.maxThreadsDim[2], cuda_data->device_prop.warpSize, block, &grid)); 239f82027a4SJeremy L Thompson } else { 240f82027a4SJeremy L Thompson CeedInt elems_per_block = CeedIntMin(cuda_data->device_prop.maxThreadsDim[2], CeedIntMax(512 / thread_1d, 1)); 241f82027a4SJeremy L Thompson 242f82027a4SJeremy L Thompson grid = num_elem / elems_per_block + (num_elem % elems_per_block > 0); 243f82027a4SJeremy L Thompson block[2] = elems_per_block; 244f82027a4SJeremy L Thompson } 24539532cebSJed Brown CeedInt shared_mem = block[0] * block[1] * block[2] * sizeof(CeedScalar); 246ca735530SJeremy L Thompson 247*ddae5012SJeremy L Thompson CeedCallBackend(CeedTryRunKernelDimShared_Cuda(ceed, data->op, grid, block[0], block[1], block[2], shared_mem, &is_good_run, opargs)); 248241a4b83SYohann 249241a4b83SYohann // Restore input arrays 2509e201c85SYohann for (CeedInt i = 0; i < num_input_fields; i++) { 2512b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionFieldGetEvalMode(qf_input_fields[i], &eval_mode)); 2529e201c85SYohann if (eval_mode == CEED_EVAL_WEIGHT) { // Skip 253241a4b83SYohann } else { 254681d0ea7SJeremy L Thompson bool is_active; 255681d0ea7SJeremy L Thompson CeedVector vec; 256681d0ea7SJeremy L Thompson 2572b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorFieldGetVector(op_input_fields[i], &vec)); 258681d0ea7SJeremy L Thompson is_active = vec == CEED_VECTOR_ACTIVE; 259681d0ea7SJeremy L Thompson if (is_active) vec = input_vec; 2602b730f8bSJeremy L Thompson CeedCallBackend(CeedVectorRestoreArrayRead(vec, &data->fields.inputs[i])); 261681d0ea7SJeremy L Thompson if (!is_active) CeedCallBackend(CeedVectorDestroy(&vec)); 262241a4b83SYohann } 263241a4b83SYohann } 264241a4b83SYohann 265241a4b83SYohann // Restore output arrays 2669e201c85SYohann for (CeedInt i = 0; i < num_output_fields; i++) { 2672b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionFieldGetEvalMode(qf_output_fields[i], &eval_mode)); 2689e201c85SYohann if (eval_mode == CEED_EVAL_WEIGHT) { // Skip 269241a4b83SYohann } else { 270681d0ea7SJeremy L Thompson bool is_active; 271681d0ea7SJeremy L Thompson CeedVector vec; 272681d0ea7SJeremy L Thompson 2732b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorFieldGetVector(op_output_fields[i], &vec)); 274681d0ea7SJeremy L Thompson is_active = vec == CEED_VECTOR_ACTIVE; 275681d0ea7SJeremy L Thompson if (is_active) vec = output_vec; 2763b2939feSjeremylt // Check for multiple output modes 2773b2939feSjeremylt CeedInt index = -1; 2788b97b69aSJeremy L Thompson 2793b2939feSjeremylt for (CeedInt j = 0; j < i; j++) { 2809e201c85SYohann if (vec == output_vecs[j]) { 2813b2939feSjeremylt index = j; 2823b2939feSjeremylt break; 2833b2939feSjeremylt } 2843b2939feSjeremylt } 2853b2939feSjeremylt if (index == -1) { 2862b730f8bSJeremy L Thompson CeedCallBackend(CeedVectorRestoreArray(vec, &data->fields.outputs[i])); 287241a4b83SYohann } 288681d0ea7SJeremy L Thompson if (!is_active) CeedCallBackend(CeedVectorDestroy(&vec)); 289241a4b83SYohann } 2903b2939feSjeremylt } 291777ff853SJeremy L Thompson 2928b97b69aSJeremy L Thompson // Restore point coordinates, if needed 2938b97b69aSJeremy L Thompson if (is_at_points) { 2948b97b69aSJeremy L Thompson CeedVector vec; 2958b97b69aSJeremy L Thompson 2968b97b69aSJeremy L Thompson CeedCallBackend(CeedOperatorAtPointsGetPoints(op, NULL, &vec)); 2978b97b69aSJeremy L Thompson CeedCallBackend(CeedVectorRestoreArrayRead(vec, &data->points.coords)); 2988b97b69aSJeremy L Thompson CeedCallBackend(CeedVectorDestroy(&vec)); 2998b97b69aSJeremy L Thompson } 3008b97b69aSJeremy L Thompson 301777ff853SJeremy L Thompson // Restore context data 3022b730f8bSJeremy L Thompson CeedCallBackend(CeedQFunctionRestoreInnerContextData(qf, &qf_data->d_c)); 303*ddae5012SJeremy L Thompson 304*ddae5012SJeremy L Thompson // Cleanup 3059bc66399SJeremy L Thompson CeedCallBackend(CeedDestroy(&ceed)); 306c11e12f4SJeremy L Thompson CeedCallBackend(CeedQFunctionDestroy(&qf)); 307*ddae5012SJeremy L Thompson 308*ddae5012SJeremy L Thompson // Fallback if run was bad (out of resources) 309*ddae5012SJeremy L Thompson if (!is_good_run) { 310*ddae5012SJeremy L Thompson CeedOperator op_fallback; 311*ddae5012SJeremy L Thompson 312*ddae5012SJeremy L Thompson data->use_fallback = true; 313*ddae5012SJeremy L Thompson CeedDebug256(CeedOperatorReturnCeed(op), CEED_DEBUG_COLOR_SUCCESS, "Falling back to /gpu/cuda/ref CeedOperator due to kernel execution issue"); 314*ddae5012SJeremy L Thompson CeedCallBackend(CeedOperatorGetFallback(op, &op_fallback)); 315*ddae5012SJeremy L Thompson CeedCallBackend(CeedOperatorApplyAdd(op_fallback, input_vec, output_vec, request)); 316*ddae5012SJeremy L Thompson return CEED_ERROR_SUCCESS; 317*ddae5012SJeremy L Thompson } 318e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 319241a4b83SYohann } 320241a4b83SYohann 321ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 322ab213215SJeremy L Thompson // Create operator 323ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 324241a4b83SYohann int CeedOperatorCreate_Cuda_gen(CeedOperator op) { 325241a4b83SYohann Ceed ceed; 326241a4b83SYohann CeedOperator_Cuda_gen *impl; 327241a4b83SYohann 328ca735530SJeremy L Thompson CeedCallBackend(CeedOperatorGetCeed(op, &ceed)); 3292b730f8bSJeremy L Thompson CeedCallBackend(CeedCalloc(1, &impl)); 3302b730f8bSJeremy L Thompson CeedCallBackend(CeedOperatorSetData(op, impl)); 3312b730f8bSJeremy L Thompson CeedCallBackend(CeedSetBackendFunction(ceed, "Operator", op, "ApplyAdd", CeedOperatorApplyAdd_Cuda_gen)); 3322b730f8bSJeremy L Thompson CeedCallBackend(CeedSetBackendFunction(ceed, "Operator", op, "Destroy", CeedOperatorDestroy_Cuda_gen)); 3339bc66399SJeremy L Thompson CeedCallBackend(CeedDestroy(&ceed)); 334e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 335241a4b83SYohann } 3366aa95790SJeremy L Thompson 337ab213215SJeremy L Thompson //------------------------------------------------------------------------------ 338