1 // Copyright (c) 2017-2025, Lawrence Livermore National Security, LLC and other CEED contributors. 2 // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 3 // 4 // SPDX-License-Identifier: BSD-2-Clause 5 // 6 // This file is part of CEED: http://github.com/ceed 7 8 #include <ceed.h> 9 #include <ceed/backend.h> 10 #include <math.h> 11 #include <stdbool.h> 12 #include <string.h> 13 #include <hip/hip_runtime.h> 14 15 #include "../hip/ceed-hip-common.h" 16 #include "ceed-hip-ref.h" 17 18 //------------------------------------------------------------------------------ 19 // Check if host/device sync is needed 20 //------------------------------------------------------------------------------ 21 static inline int CeedVectorNeedSync_Hip(const CeedVector vec, CeedMemType mem_type, bool *need_sync) { 22 CeedVector_Hip *impl; 23 bool has_valid_array = false; 24 25 CeedCallBackend(CeedVectorGetData(vec, &impl)); 26 CeedCallBackend(CeedVectorHasValidArray(vec, &has_valid_array)); 27 switch (mem_type) { 28 case CEED_MEM_HOST: 29 *need_sync = has_valid_array && !impl->h_array; 30 break; 31 case CEED_MEM_DEVICE: 32 *need_sync = has_valid_array && !impl->d_array; 33 break; 34 } 35 return CEED_ERROR_SUCCESS; 36 } 37 38 //------------------------------------------------------------------------------ 39 // Sync host to device 40 //------------------------------------------------------------------------------ 41 static inline int CeedVectorSyncH2D_Hip(const CeedVector vec) { 42 CeedSize length; 43 size_t bytes; 44 CeedVector_Hip *impl; 45 46 CeedCallBackend(CeedVectorGetData(vec, &impl)); 47 48 CeedCheck(impl->h_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "No valid host data to sync to device"); 49 50 CeedCallBackend(CeedVectorGetLength(vec, &length)); 51 bytes = length * sizeof(CeedScalar); 52 if (impl->d_array_borrowed) { 53 impl->d_array = impl->d_array_borrowed; 54 } else if (impl->d_array_owned) { 55 impl->d_array = impl->d_array_owned; 56 } else { 57 CeedCallHip(CeedVectorReturnCeed(vec), hipMalloc((void **)&impl->d_array_owned, bytes)); 58 impl->d_array = impl->d_array_owned; 59 } 60 CeedCallHip(CeedVectorReturnCeed(vec), hipMemcpy(impl->d_array, impl->h_array, bytes, hipMemcpyHostToDevice)); 61 return CEED_ERROR_SUCCESS; 62 } 63 64 //------------------------------------------------------------------------------ 65 // Sync device to host 66 //------------------------------------------------------------------------------ 67 static inline int CeedVectorSyncD2H_Hip(const CeedVector vec) { 68 CeedSize length; 69 size_t bytes; 70 CeedVector_Hip *impl; 71 72 CeedCallBackend(CeedVectorGetData(vec, &impl)); 73 74 CeedCheck(impl->d_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "No valid device data to sync to host"); 75 76 if (impl->h_array_borrowed) { 77 impl->h_array = impl->h_array_borrowed; 78 } else if (impl->h_array_owned) { 79 impl->h_array = impl->h_array_owned; 80 } else { 81 CeedSize length; 82 83 CeedCallBackend(CeedVectorGetLength(vec, &length)); 84 CeedCallBackend(CeedCalloc(length, &impl->h_array_owned)); 85 impl->h_array = impl->h_array_owned; 86 } 87 88 CeedCallBackend(CeedVectorGetLength(vec, &length)); 89 bytes = length * sizeof(CeedScalar); 90 CeedCallHip(CeedVectorReturnCeed(vec), hipMemcpy(impl->h_array, impl->d_array, bytes, hipMemcpyDeviceToHost)); 91 return CEED_ERROR_SUCCESS; 92 } 93 94 //------------------------------------------------------------------------------ 95 // Sync arrays 96 //------------------------------------------------------------------------------ 97 static int CeedVectorSyncArray_Hip(const CeedVector vec, CeedMemType mem_type) { 98 bool need_sync = false; 99 CeedVector_Hip *impl; 100 101 // Sync for unified memory 102 CeedCallBackend(CeedVectorGetData(vec, &impl)); 103 if (impl->has_unified_addressing && !impl->h_array_borrowed) { 104 CeedCallHip(CeedVectorReturnCeed(vec), hipDeviceSynchronize()); 105 return CEED_ERROR_SUCCESS; 106 } 107 108 // Check whether device/host sync is needed 109 CeedCallBackend(CeedVectorNeedSync_Hip(vec, mem_type, &need_sync)); 110 if (!need_sync) return CEED_ERROR_SUCCESS; 111 112 switch (mem_type) { 113 case CEED_MEM_HOST: 114 return CeedVectorSyncD2H_Hip(vec); 115 case CEED_MEM_DEVICE: 116 return CeedVectorSyncH2D_Hip(vec); 117 } 118 return CEED_ERROR_UNSUPPORTED; 119 } 120 121 //------------------------------------------------------------------------------ 122 // Set all pointers as invalid 123 //------------------------------------------------------------------------------ 124 static inline int CeedVectorSetAllInvalid_Hip(const CeedVector vec) { 125 CeedVector_Hip *impl; 126 127 CeedCallBackend(CeedVectorGetData(vec, &impl)); 128 impl->h_array = NULL; 129 impl->d_array = NULL; 130 return CEED_ERROR_SUCCESS; 131 } 132 133 //------------------------------------------------------------------------------ 134 // Check if CeedVector has any valid pointer 135 //------------------------------------------------------------------------------ 136 static inline int CeedVectorHasValidArray_Hip(const CeedVector vec, bool *has_valid_array) { 137 CeedVector_Hip *impl; 138 139 CeedCallBackend(CeedVectorGetData(vec, &impl)); 140 *has_valid_array = impl->h_array || impl->d_array; 141 return CEED_ERROR_SUCCESS; 142 } 143 144 //------------------------------------------------------------------------------ 145 // Check if has array of given type 146 //------------------------------------------------------------------------------ 147 static inline int CeedVectorHasArrayOfType_Hip(const CeedVector vec, CeedMemType mem_type, bool *has_array_of_type) { 148 CeedVector_Hip *impl; 149 150 CeedCallBackend(CeedVectorGetData(vec, &impl)); 151 switch (mem_type) { 152 case CEED_MEM_HOST: 153 *has_array_of_type = impl->h_array_borrowed || impl->h_array_owned; 154 break; 155 case CEED_MEM_DEVICE: 156 *has_array_of_type = impl->d_array_borrowed || impl->d_array_owned; 157 break; 158 } 159 return CEED_ERROR_SUCCESS; 160 } 161 162 //------------------------------------------------------------------------------ 163 // Check if has borrowed array of given type 164 //------------------------------------------------------------------------------ 165 static inline int CeedVectorHasBorrowedArrayOfType_Hip(const CeedVector vec, CeedMemType mem_type, bool *has_borrowed_array_of_type) { 166 CeedVector_Hip *impl; 167 168 CeedCallBackend(CeedVectorGetData(vec, &impl)); 169 170 // Use device memory for unified memory 171 mem_type = impl->has_unified_addressing && !impl->h_array_borrowed ? CEED_MEM_DEVICE : mem_type; 172 173 switch (mem_type) { 174 case CEED_MEM_HOST: 175 *has_borrowed_array_of_type = impl->h_array_borrowed; 176 break; 177 case CEED_MEM_DEVICE: 178 *has_borrowed_array_of_type = impl->d_array_borrowed; 179 break; 180 } 181 return CEED_ERROR_SUCCESS; 182 } 183 184 //------------------------------------------------------------------------------ 185 // Set array from host 186 //------------------------------------------------------------------------------ 187 static int CeedVectorSetArrayHost_Hip(const CeedVector vec, const CeedCopyMode copy_mode, CeedScalar *array) { 188 CeedSize length; 189 CeedVector_Hip *impl; 190 191 CeedCallBackend(CeedVectorGetData(vec, &impl)); 192 CeedCallBackend(CeedVectorGetLength(vec, &length)); 193 194 CeedCallBackend(CeedSetHostCeedScalarArray(array, copy_mode, length, (const CeedScalar **)&impl->h_array_owned, 195 (const CeedScalar **)&impl->h_array_borrowed, (const CeedScalar **)&impl->h_array)); 196 return CEED_ERROR_SUCCESS; 197 } 198 199 //------------------------------------------------------------------------------ 200 // Set array from device 201 //------------------------------------------------------------------------------ 202 static int CeedVectorSetArrayDevice_Hip(const CeedVector vec, const CeedCopyMode copy_mode, CeedScalar *array) { 203 CeedSize length; 204 Ceed ceed; 205 CeedVector_Hip *impl; 206 207 CeedCallBackend(CeedVectorGetCeed(vec, &ceed)); 208 CeedCallBackend(CeedVectorGetData(vec, &impl)); 209 CeedCallBackend(CeedVectorGetLength(vec, &length)); 210 211 CeedCallBackend(CeedSetDeviceCeedScalarArray_Hip(ceed, array, copy_mode, length, (const CeedScalar **)&impl->d_array_owned, 212 (const CeedScalar **)&impl->d_array_borrowed, (const CeedScalar **)&impl->d_array)); 213 CeedCallBackend(CeedDestroy(&ceed)); 214 return CEED_ERROR_SUCCESS; 215 } 216 217 //------------------------------------------------------------------------------ 218 // Set array with unified memory 219 //------------------------------------------------------------------------------ 220 static int CeedVectorSetArrayUnifiedHostToDevice_Hip(const CeedVector vec, const CeedCopyMode copy_mode, CeedScalar *array) { 221 CeedSize length; 222 Ceed ceed; 223 CeedVector_Hip *impl; 224 225 CeedCallBackend(CeedVectorGetCeed(vec, &ceed)); 226 CeedCallBackend(CeedVectorGetData(vec, &impl)); 227 CeedCallBackend(CeedVectorGetLength(vec, &length)); 228 229 switch (copy_mode) { 230 case CEED_COPY_VALUES: 231 case CEED_OWN_POINTER: 232 if (!impl->d_array) { 233 if (impl->d_array_borrowed) { 234 impl->d_array = impl->d_array_borrowed; 235 } else { 236 if (!impl->d_array_owned) CeedCallHip(ceed, hipMalloc((void **)&impl->d_array_owned, sizeof(CeedScalar) * length)); 237 impl->d_array = impl->d_array_owned; 238 } 239 } 240 if (array) CeedCallHip(ceed, hipMemcpy(impl->d_array, array, sizeof(CeedScalar) * length, hipMemcpyHostToDevice)); 241 if (copy_mode == CEED_OWN_POINTER) CeedCallBackend(CeedFree(&array)); 242 break; 243 case CEED_USE_POINTER: 244 CeedCallHip(ceed, hipFree(impl->d_array_owned)); 245 CeedCallBackend(CeedFree(&impl->h_array_owned)); 246 impl->h_array_owned = NULL; 247 impl->h_array_borrowed = array; 248 impl->d_array = impl->h_array_borrowed; 249 } 250 CeedCallBackend(CeedDestroy(&ceed)); 251 return CEED_ERROR_SUCCESS; 252 } 253 254 //------------------------------------------------------------------------------ 255 // Set the array used by a vector, 256 // freeing any previously allocated array if applicable 257 //------------------------------------------------------------------------------ 258 static int CeedVectorSetArray_Hip(const CeedVector vec, const CeedMemType mem_type, const CeedCopyMode copy_mode, CeedScalar *array) { 259 CeedVector_Hip *impl; 260 261 CeedCallBackend(CeedVectorGetData(vec, &impl)); 262 CeedCallBackend(CeedVectorSetAllInvalid_Hip(vec)); 263 switch (mem_type) { 264 case CEED_MEM_HOST: 265 if (impl->has_unified_addressing) { 266 return CeedVectorSetArrayUnifiedHostToDevice_Hip(vec, copy_mode, array); 267 } else { 268 return CeedVectorSetArrayHost_Hip(vec, copy_mode, array); 269 } 270 case CEED_MEM_DEVICE: 271 return CeedVectorSetArrayDevice_Hip(vec, copy_mode, array); 272 } 273 return CEED_ERROR_UNSUPPORTED; 274 } 275 276 //------------------------------------------------------------------------------ 277 // Copy host array to value strided 278 //------------------------------------------------------------------------------ 279 static int CeedHostCopyStrided_Hip(CeedScalar *h_array, CeedSize start, CeedSize stop, CeedSize step, CeedScalar *h_copy_array) { 280 for (CeedSize i = start; i < stop; i += step) h_copy_array[i] = h_array[i]; 281 return CEED_ERROR_SUCCESS; 282 } 283 284 //------------------------------------------------------------------------------ 285 // Copy device array to value strided (impl in .hip.cpp file) 286 //------------------------------------------------------------------------------ 287 int CeedDeviceCopyStrided_Hip(CeedScalar *d_array, CeedSize start, CeedSize stop, CeedSize step, CeedScalar *d_copy_array); 288 289 //------------------------------------------------------------------------------ 290 // Copy a vector to a value strided 291 //------------------------------------------------------------------------------ 292 static int CeedVectorCopyStrided_Hip(CeedVector vec, CeedSize start, CeedSize stop, CeedSize step, CeedVector vec_copy) { 293 CeedSize length; 294 CeedVector_Hip *impl; 295 296 CeedCallBackend(CeedVectorGetData(vec, &impl)); 297 { 298 CeedSize length_vec, length_copy; 299 300 CeedCallBackend(CeedVectorGetLength(vec, &length_vec)); 301 CeedCallBackend(CeedVectorGetLength(vec_copy, &length_copy)); 302 length = length_vec < length_copy ? length_vec : length_copy; 303 } 304 if (stop == -1) stop = length; 305 // Set value for synced device/host array 306 if (impl->d_array) { 307 CeedScalar *copy_array; 308 309 CeedCallBackend(CeedVectorGetArray(vec_copy, CEED_MEM_DEVICE, ©_array)); 310 #if (HIP_VERSION >= 60000000) 311 hipblasHandle_t handle; 312 hipStream_t stream; 313 Ceed ceed; 314 315 CeedCallBackend(CeedVectorGetCeed(vec, &ceed)); 316 CeedCallBackend(CeedGetHipblasHandle_Hip(ceed, &handle)); 317 CeedCallHipblas(ceed, hipblasGetStream(handle, &stream)); 318 #if defined(CEED_SCALAR_IS_FP32) 319 CeedCallHipblas(ceed, hipblasScopy_64(handle, (int64_t)(stop - start), impl->d_array + start, (int64_t)step, copy_array + start, (int64_t)step)); 320 #else /* CEED_SCALAR */ 321 CeedCallHipblas(ceed, hipblasDcopy_64(handle, (int64_t)(stop - start), impl->d_array + start, (int64_t)step, copy_array + start, (int64_t)step)); 322 #endif /* CEED_SCALAR */ 323 CeedCallHip(ceed, hipStreamSynchronize(stream)); 324 #else /* HIP_VERSION */ 325 CeedCallBackend(CeedDeviceCopyStrided_Hip(impl->d_array, start, stop, step, copy_array)); 326 #endif /* HIP_VERSION */ 327 CeedCallBackend(CeedVectorRestoreArray(vec_copy, ©_array)); 328 impl->h_array = NULL; 329 CeedCallBackend(CeedDestroy(&ceed)); 330 } else if (impl->h_array) { 331 CeedScalar *copy_array; 332 333 CeedCallBackend(CeedVectorGetArray(vec_copy, CEED_MEM_HOST, ©_array)); 334 CeedCallBackend(CeedHostCopyStrided_Hip(impl->h_array, start, stop, step, copy_array)); 335 CeedCallBackend(CeedVectorRestoreArray(vec_copy, ©_array)); 336 impl->d_array = NULL; 337 } else { 338 return CeedError(CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "CeedVector must have valid data set"); 339 } 340 return CEED_ERROR_SUCCESS; 341 } 342 343 //------------------------------------------------------------------------------ 344 // Set host array to value 345 //------------------------------------------------------------------------------ 346 static int CeedHostSetValue_Hip(CeedScalar *h_array, CeedSize length, CeedScalar val) { 347 for (CeedSize i = 0; i < length; i++) h_array[i] = val; 348 return CEED_ERROR_SUCCESS; 349 } 350 351 //------------------------------------------------------------------------------ 352 // Set device array to value (impl in .hip file) 353 //------------------------------------------------------------------------------ 354 int CeedDeviceSetValue_Hip(CeedScalar *d_array, CeedSize length, CeedScalar val); 355 356 //------------------------------------------------------------------------------ 357 // Set a vector to a value 358 //------------------------------------------------------------------------------ 359 static int CeedVectorSetValue_Hip(CeedVector vec, CeedScalar val) { 360 CeedSize length; 361 CeedVector_Hip *impl; 362 Ceed_Hip *hip_data; 363 364 CeedCallBackend(CeedVectorGetData(vec, &impl)); 365 CeedCallBackend(CeedGetData(CeedVectorReturnCeed(vec), &hip_data)); 366 CeedCallBackend(CeedVectorGetLength(vec, &length)); 367 // Set value for synced device/host array 368 if (!impl->d_array && !impl->h_array) { 369 if (impl->d_array_borrowed) { 370 impl->d_array = impl->d_array_borrowed; 371 } else if (impl->h_array_borrowed) { 372 impl->h_array = impl->h_array_borrowed; 373 } else if (impl->d_array_owned) { 374 impl->d_array = impl->d_array_owned; 375 } else if (impl->h_array_owned) { 376 impl->h_array = impl->h_array_owned; 377 } else { 378 CeedCallBackend(CeedVectorSetArray(vec, CEED_MEM_DEVICE, CEED_COPY_VALUES, NULL)); 379 } 380 } 381 if (impl->d_array) { 382 if (val == 0 && !impl->h_array_borrowed) { 383 CeedCallHip(CeedVectorReturnCeed(vec), hipMemset(impl->d_array, 0, length * sizeof(CeedScalar))); 384 } else { 385 CeedCallBackend(CeedDeviceSetValue_Hip(impl->d_array, length, val)); 386 } 387 impl->h_array = NULL; 388 } else if (impl->h_array) { 389 CeedCallBackend(CeedHostSetValue_Hip(impl->h_array, length, val)); 390 impl->d_array = NULL; 391 } 392 return CEED_ERROR_SUCCESS; 393 } 394 395 //------------------------------------------------------------------------------ 396 // Set host array to value strided 397 //------------------------------------------------------------------------------ 398 static int CeedHostSetValueStrided_Hip(CeedScalar *h_array, CeedSize start, CeedSize stop, CeedSize step, CeedScalar val) { 399 for (CeedSize i = start; i < stop; i += step) h_array[i] = val; 400 return CEED_ERROR_SUCCESS; 401 } 402 403 //------------------------------------------------------------------------------ 404 // Set device array to value strided (impl in .hip.cpp file) 405 //------------------------------------------------------------------------------ 406 int CeedDeviceSetValueStrided_Hip(CeedScalar *d_array, CeedSize start, CeedSize stop, CeedSize step, CeedScalar val); 407 408 //------------------------------------------------------------------------------ 409 // Set a vector to a value strided 410 //------------------------------------------------------------------------------ 411 static int CeedVectorSetValueStrided_Hip(CeedVector vec, CeedSize start, CeedSize stop, CeedSize step, CeedScalar val) { 412 CeedSize length; 413 CeedVector_Hip *impl; 414 415 CeedCallBackend(CeedVectorGetData(vec, &impl)); 416 CeedCallBackend(CeedVectorGetLength(vec, &length)); 417 // Set value for synced device/host array 418 if (stop == -1) stop = length; 419 if (impl->d_array) { 420 CeedCallBackend(CeedDeviceSetValueStrided_Hip(impl->d_array, start, stop, step, val)); 421 impl->h_array = NULL; 422 } else if (impl->h_array) { 423 CeedCallBackend(CeedHostSetValueStrided_Hip(impl->h_array, start, stop, step, val)); 424 impl->d_array = NULL; 425 } else { 426 return CeedError(CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "CeedVector must have valid data set"); 427 } 428 return CEED_ERROR_SUCCESS; 429 } 430 431 //------------------------------------------------------------------------------ 432 // Vector Take Array 433 //------------------------------------------------------------------------------ 434 static int CeedVectorTakeArray_Hip(CeedVector vec, CeedMemType mem_type, CeedScalar **array) { 435 CeedVector_Hip *impl; 436 437 CeedCallBackend(CeedVectorGetData(vec, &impl)); 438 439 // Sync array to requested mem_type 440 CeedCallBackend(CeedVectorSyncArray(vec, mem_type)); 441 442 // Update pointer 443 switch (mem_type) { 444 case CEED_MEM_HOST: 445 (*array) = impl->h_array_borrowed; 446 impl->h_array_borrowed = NULL; 447 impl->h_array = NULL; 448 break; 449 case CEED_MEM_DEVICE: 450 (*array) = impl->d_array_borrowed; 451 impl->d_array_borrowed = NULL; 452 impl->d_array = NULL; 453 break; 454 } 455 return CEED_ERROR_SUCCESS; 456 } 457 458 //------------------------------------------------------------------------------ 459 // Core logic for array synchronization for GetArray. 460 // If a different memory type is most up to date, this will perform a copy 461 //------------------------------------------------------------------------------ 462 static int CeedVectorGetArrayCore_Hip(const CeedVector vec, CeedMemType mem_type, CeedScalar **array) { 463 CeedVector_Hip *impl; 464 465 CeedCallBackend(CeedVectorGetData(vec, &impl)); 466 467 // Use device memory for unified memory 468 mem_type = impl->has_unified_addressing && !impl->h_array_borrowed ? CEED_MEM_DEVICE : mem_type; 469 470 // Sync array to requested mem_type 471 CeedCallBackend(CeedVectorSyncArray(vec, mem_type)); 472 473 // Update pointer 474 switch (mem_type) { 475 case CEED_MEM_HOST: 476 *array = impl->h_array; 477 break; 478 case CEED_MEM_DEVICE: 479 *array = impl->d_array; 480 break; 481 } 482 return CEED_ERROR_SUCCESS; 483 } 484 485 //------------------------------------------------------------------------------ 486 // Get read-only access to a vector via the specified mem_type 487 //------------------------------------------------------------------------------ 488 static int CeedVectorGetArrayRead_Hip(const CeedVector vec, const CeedMemType mem_type, const CeedScalar **array) { 489 return CeedVectorGetArrayCore_Hip(vec, mem_type, (CeedScalar **)array); 490 } 491 492 //------------------------------------------------------------------------------ 493 // Get read/write access to a vector via the specified mem_type 494 //------------------------------------------------------------------------------ 495 static int CeedVectorGetArray_Hip(const CeedVector vec, CeedMemType mem_type, CeedScalar **array) { 496 CeedVector_Hip *impl; 497 498 CeedCallBackend(CeedVectorGetData(vec, &impl)); 499 500 // Use device memory for unified memory 501 mem_type = impl->has_unified_addressing && !impl->h_array_borrowed ? CEED_MEM_DEVICE : mem_type; 502 503 // 'Get' array and set only 'get'ed array as valid 504 CeedCallBackend(CeedVectorGetArrayCore_Hip(vec, mem_type, array)); 505 CeedCallBackend(CeedVectorSetAllInvalid_Hip(vec)); 506 switch (mem_type) { 507 case CEED_MEM_HOST: 508 impl->h_array = *array; 509 if (impl->has_unified_addressing) impl->d_array = *array; 510 break; 511 case CEED_MEM_DEVICE: 512 impl->d_array = *array; 513 break; 514 } 515 return CEED_ERROR_SUCCESS; 516 } 517 518 //------------------------------------------------------------------------------ 519 // Get write access to a vector via the specified mem_type 520 //------------------------------------------------------------------------------ 521 static int CeedVectorGetArrayWrite_Hip(const CeedVector vec, CeedMemType mem_type, CeedScalar **array) { 522 bool has_array_of_type = true; 523 CeedVector_Hip *impl; 524 Ceed_Hip *hip_data; 525 526 CeedCallBackend(CeedVectorGetData(vec, &impl)); 527 CeedCallBackend(CeedGetData(CeedVectorReturnCeed(vec), &hip_data)); 528 529 // Use device memory for unified memory 530 mem_type = impl->has_unified_addressing && !impl->h_array_borrowed ? CEED_MEM_DEVICE : mem_type; 531 532 CeedCallBackend(CeedVectorHasArrayOfType_Hip(vec, mem_type, &has_array_of_type)); 533 if (!has_array_of_type) { 534 // Allocate if array is not yet allocated 535 CeedCallBackend(CeedVectorSetArray(vec, mem_type, CEED_COPY_VALUES, NULL)); 536 } else { 537 // Select dirty array 538 switch (mem_type) { 539 case CEED_MEM_HOST: 540 if (impl->h_array_borrowed) impl->h_array = impl->h_array_borrowed; 541 else impl->h_array = impl->h_array_owned; 542 break; 543 case CEED_MEM_DEVICE: 544 if (impl->d_array_borrowed) impl->d_array = impl->d_array_borrowed; 545 else impl->d_array = impl->d_array_owned; 546 } 547 } 548 return CeedVectorGetArray_Hip(vec, mem_type, array); 549 } 550 551 //------------------------------------------------------------------------------ 552 // Get the norm of a CeedVector 553 //------------------------------------------------------------------------------ 554 static int CeedVectorNorm_Hip(CeedVector vec, CeedNormType type, CeedScalar *norm) { 555 Ceed ceed; 556 CeedSize length; 557 #if (HIP_VERSION < 60000000) 558 CeedSize num_calls; 559 #endif /* HIP_VERSION */ 560 const CeedScalar *d_array; 561 CeedVector_Hip *impl; 562 hipblasHandle_t handle; 563 hipStream_t stream; 564 Ceed_Hip *hip_data; 565 566 CeedCallBackend(CeedVectorGetCeed(vec, &ceed)); 567 CeedCallBackend(CeedGetData(ceed, &hip_data)); 568 CeedCallBackend(CeedVectorGetData(vec, &impl)); 569 CeedCallBackend(CeedVectorGetLength(vec, &length)); 570 CeedCallBackend(CeedGetHipblasHandle_Hip(ceed, &handle)); 571 CeedCallHipblas(ceed, hipblasGetStream(handle, &stream)); 572 #if (HIP_VERSION < 60000000) 573 // With ROCm 6, we can use the 64-bit integer interface. Prior to that, 574 // we need to check if the vector is too long to handle with int32, 575 // and if so, divide it into subsections for repeated hipBLAS calls. 576 num_calls = length / INT_MAX; 577 if (length % INT_MAX > 0) num_calls += 1; 578 #endif /* HIP_VERSION */ 579 580 // Compute norm 581 CeedCallBackend(CeedVectorGetArrayRead(vec, CEED_MEM_DEVICE, &d_array)); 582 switch (type) { 583 case CEED_NORM_1: { 584 *norm = 0.0; 585 #if defined(CEED_SCALAR_IS_FP32) 586 #if (HIP_VERSION >= 60000000) // We have ROCm 6, and can use 64-bit integers 587 CeedCallHipblas(ceed, hipblasSasum_64(handle, (int64_t)length, (float *)d_array, 1, (float *)norm)); 588 CeedCallHip(ceed, hipStreamSynchronize(stream)); 589 #else /* HIP_VERSION */ 590 float sub_norm = 0.0; 591 float *d_array_start; 592 593 for (CeedInt i = 0; i < num_calls; i++) { 594 d_array_start = (float *)d_array + (CeedSize)(i)*INT_MAX; 595 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 596 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 597 598 CeedCallHipblas(ceed, hipblasSasum(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &sub_norm)); 599 CeedCallHip(ceed, hipStreamSynchronize(stream)); 600 *norm += sub_norm; 601 } 602 #endif /* HIP_VERSION */ 603 #else /* CEED_SCALAR */ 604 #if (HIP_VERSION >= 60000000) 605 CeedCallHipblas(ceed, hipblasDasum_64(handle, (int64_t)length, (double *)d_array, 1, (double *)norm)); 606 CeedCallHip(ceed, hipStreamSynchronize(stream)); 607 #else /* HIP_VERSION */ 608 double sub_norm = 0.0; 609 double *d_array_start; 610 611 for (CeedInt i = 0; i < num_calls; i++) { 612 d_array_start = (double *)d_array + (CeedSize)(i)*INT_MAX; 613 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 614 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 615 616 CeedCallHipblas(ceed, hipblasDasum(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &sub_norm)); 617 CeedCallHip(ceed, hipStreamSynchronize(stream)); 618 *norm += sub_norm; 619 } 620 #endif /* HIP_VERSION */ 621 #endif /* CEED_SCALAR */ 622 break; 623 } 624 case CEED_NORM_2: { 625 #if defined(CEED_SCALAR_IS_FP32) 626 #if (HIP_VERSION >= 60000000) 627 CeedCallHipblas(ceed, hipblasSnrm2_64(handle, (int64_t)length, (float *)d_array, 1, (float *)norm)); 628 CeedCallHip(ceed, hipStreamSynchronize(stream)); 629 #else /* HIP_VERSION */ 630 float sub_norm = 0.0, norm_sum = 0.0; 631 float *d_array_start; 632 633 for (CeedInt i = 0; i < num_calls; i++) { 634 d_array_start = (float *)d_array + (CeedSize)(i)*INT_MAX; 635 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 636 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 637 638 CeedCallHipblas(ceed, hipblasSnrm2(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &sub_norm)); 639 CeedCallHip(ceed, hipStreamSynchronize(stream)); 640 norm_sum += sub_norm * sub_norm; 641 } 642 *norm = sqrt(norm_sum); 643 #endif /* HIP_VERSION */ 644 #else /* CEED_SCALAR */ 645 #if (HIP_VERSION >= 60000000) 646 CeedCallHipblas(ceed, hipblasDnrm2_64(handle, (int64_t)length, (double *)d_array, 1, (double *)norm)); 647 CeedCallHip(ceed, hipStreamSynchronize(stream)); 648 #else /* HIP_VERSION */ 649 double sub_norm = 0.0, norm_sum = 0.0; 650 double *d_array_start; 651 652 for (CeedInt i = 0; i < num_calls; i++) { 653 d_array_start = (double *)d_array + (CeedSize)(i)*INT_MAX; 654 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 655 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 656 657 CeedCallHipblas(ceed, hipblasDnrm2(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &sub_norm)); 658 CeedCallHip(ceed, hipStreamSynchronize(stream)); 659 norm_sum += sub_norm * sub_norm; 660 } 661 *norm = sqrt(norm_sum); 662 #endif /* HIP_VERSION */ 663 #endif /* CEED_SCALAR */ 664 break; 665 } 666 case CEED_NORM_MAX: { 667 #if defined(CEED_SCALAR_IS_FP32) 668 #if (HIP_VERSION >= 60000000) 669 int64_t index; 670 CeedScalar norm_no_abs; 671 672 CeedCallHipblas(ceed, hipblasIsamax_64(handle, (int64_t)length, (float *)d_array, 1, &index)); 673 CeedCallHip(ceed, hipMemcpyAsync(&norm_no_abs, impl->d_array + index - 1, sizeof(CeedScalar), hipMemcpyDeviceToHost, stream)); 674 CeedCallHip(ceed, hipStreamSynchronize(stream)); 675 *norm = fabs(norm_no_abs); 676 #else /* HIP_VERSION */ 677 CeedInt index; 678 float sub_max = 0.0, current_max = 0.0; 679 float *d_array_start; 680 681 for (CeedInt i = 0; i < num_calls; i++) { 682 d_array_start = (float *)d_array + (CeedSize)(i)*INT_MAX; 683 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 684 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 685 686 CeedCallHipblas(ceed, hipblasIsamax(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &index)); 687 if (hip_data->has_unified_addressing) { 688 CeedCallHip(ceed, hipStreamSynchronize(stream)); 689 sub_max = fabs(d_array[index - 1]); 690 } else { 691 CeedCallHip(ceed, hipMemcpyAsync(&sub_max, d_array_start + index - 1, sizeof(CeedScalar), hipMemcpyDeviceToHost, stream)); 692 CeedCallHip(ceed, hipStreamSynchronize(stream)); 693 } 694 if (fabs(sub_max) > current_max) current_max = fabs(sub_max); 695 } 696 *norm = current_max; 697 #endif /* HIP_VERSION */ 698 #else /* CEED_SCALAR */ 699 #if (HIP_VERSION >= 60000000) 700 int64_t index; 701 CeedScalar norm_no_abs; 702 703 CeedCallHipblas(ceed, hipblasIdamax_64(handle, (int64_t)length, (double *)d_array, 1, &index)); 704 if (hip_data->has_unified_addressing) { 705 CeedCallHip(ceed, hipStreamSynchronize(stream)); 706 norm_no_abs = fabs(d_array[index - 1]); 707 } else { 708 CeedCallHip(ceed, hipMemcpyAsync(&norm_no_abs, impl->d_array + index - 1, sizeof(CeedScalar), hipMemcpyDeviceToHost, stream)); 709 CeedCallHip(ceed, hipStreamSynchronize(stream)); 710 } 711 *norm = fabs(norm_no_abs); 712 #else /* HIP_VERSION */ 713 CeedInt index; 714 double sub_max = 0.0, current_max = 0.0; 715 double *d_array_start; 716 717 for (CeedInt i = 0; i < num_calls; i++) { 718 d_array_start = (double *)d_array + (CeedSize)(i)*INT_MAX; 719 CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX; 720 CeedInt sub_length = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX; 721 722 CeedCallHipblas(ceed, hipblasIdamax(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &index)); 723 if (hip_data->has_unified_addressing) { 724 CeedCallHip(ceed, hipStreamSynchronize(stream)); 725 sub_max = fabs(d_array[index - 1]); 726 } else { 727 CeedCallHip(ceed, hipMemcpyAsync(&sub_max, d_array_start + index - 1, sizeof(CeedScalar), hipMemcpyDeviceToHost, stream)); 728 CeedCallHip(ceed, hipStreamSynchronize(stream)); 729 } 730 if (fabs(sub_max) > current_max) current_max = fabs(sub_max); 731 } 732 *norm = current_max; 733 #endif /* HIP_VERSION */ 734 #endif /* CEED_SCALAR */ 735 break; 736 } 737 } 738 CeedCallBackend(CeedVectorRestoreArrayRead(vec, &d_array)); 739 CeedCallBackend(CeedDestroy(&ceed)); 740 return CEED_ERROR_SUCCESS; 741 } 742 743 //------------------------------------------------------------------------------ 744 // Take reciprocal of a vector on host 745 //------------------------------------------------------------------------------ 746 static int CeedHostReciprocal_Hip(CeedScalar *h_array, CeedSize length) { 747 for (CeedSize i = 0; i < length; i++) { 748 if (fabs(h_array[i]) > CEED_EPSILON) h_array[i] = 1. / h_array[i]; 749 } 750 return CEED_ERROR_SUCCESS; 751 } 752 753 //------------------------------------------------------------------------------ 754 // Take reciprocal of a vector on device (impl in .hip.cpp file) 755 //------------------------------------------------------------------------------ 756 int CeedDeviceReciprocal_Hip(CeedScalar *d_array, CeedSize length); 757 758 //------------------------------------------------------------------------------ 759 // Take reciprocal of a vector 760 //------------------------------------------------------------------------------ 761 static int CeedVectorReciprocal_Hip(CeedVector vec) { 762 CeedSize length; 763 CeedVector_Hip *impl; 764 765 CeedCallBackend(CeedVectorGetData(vec, &impl)); 766 CeedCallBackend(CeedVectorGetLength(vec, &length)); 767 // Set value for synced device/host array 768 if (impl->d_array) CeedCallBackend(CeedDeviceReciprocal_Hip(impl->d_array, length)); 769 if (impl->h_array) CeedCallBackend(CeedHostReciprocal_Hip(impl->h_array, length)); 770 return CEED_ERROR_SUCCESS; 771 } 772 773 //------------------------------------------------------------------------------ 774 // Compute x = alpha x on the host 775 //------------------------------------------------------------------------------ 776 static int CeedHostScale_Hip(CeedScalar *x_array, CeedScalar alpha, CeedSize length) { 777 for (CeedSize i = 0; i < length; i++) x_array[i] *= alpha; 778 return CEED_ERROR_SUCCESS; 779 } 780 781 //------------------------------------------------------------------------------ 782 // Compute x = alpha x on device (impl in .hip.cpp file) 783 //------------------------------------------------------------------------------ 784 int CeedDeviceScale_Hip(CeedScalar *x_array, CeedScalar alpha, CeedSize length); 785 786 //------------------------------------------------------------------------------ 787 // Compute x = alpha x 788 //------------------------------------------------------------------------------ 789 static int CeedVectorScale_Hip(CeedVector x, CeedScalar alpha) { 790 CeedSize length; 791 CeedVector_Hip *impl; 792 793 CeedCallBackend(CeedVectorGetData(x, &impl)); 794 CeedCallBackend(CeedVectorGetLength(x, &length)); 795 // Set value for synced device/host array 796 if (impl->d_array) { 797 #if (HIP_VERSION >= 60000000) 798 hipblasHandle_t handle; 799 hipStream_t stream; 800 801 CeedCallBackend(CeedGetHipblasHandle_Hip(CeedVectorReturnCeed(x), &handle)); 802 CeedCallHipblas(CeedVectorReturnCeed(x), hipblasGetStream(handle, &stream)); 803 #if defined(CEED_SCALAR_IS_FP32) 804 CeedCallHipblas(CeedVectorReturnCeed(x), hipblasSscal_64(handle, (int64_t)length, &alpha, impl->d_array, 1)); 805 #else /* CEED_SCALAR */ 806 CeedCallHipblas(CeedVectorReturnCeed(x), hipblasDscal_64(handle, (int64_t)length, &alpha, impl->d_array, 1)); 807 #endif /* CEED_SCALAR */ 808 CeedCallHip(CeedVectorReturnCeed(x), hipStreamSynchronize(stream)); 809 #else /* HIP_VERSION */ 810 CeedCallBackend(CeedDeviceScale_Hip(impl->d_array, alpha, length)); 811 #endif /* HIP_VERSION */ 812 impl->h_array = NULL; 813 } 814 if (impl->h_array) { 815 CeedCallBackend(CeedHostScale_Hip(impl->h_array, alpha, length)); 816 impl->d_array = NULL; 817 } 818 return CEED_ERROR_SUCCESS; 819 } 820 821 //------------------------------------------------------------------------------ 822 // Compute y = alpha x + y on the host 823 //------------------------------------------------------------------------------ 824 static int CeedHostAXPY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar *x_array, CeedSize length) { 825 for (CeedSize i = 0; i < length; i++) y_array[i] += alpha * x_array[i]; 826 return CEED_ERROR_SUCCESS; 827 } 828 829 //------------------------------------------------------------------------------ 830 // Compute y = alpha x + y on device (impl in .hip.cpp file) 831 //------------------------------------------------------------------------------ 832 int CeedDeviceAXPY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar *x_array, CeedSize length); 833 834 //------------------------------------------------------------------------------ 835 // Compute y = alpha x + y 836 //------------------------------------------------------------------------------ 837 static int CeedVectorAXPY_Hip(CeedVector y, CeedScalar alpha, CeedVector x) { 838 CeedSize length; 839 CeedVector_Hip *y_impl, *x_impl; 840 841 CeedCallBackend(CeedVectorGetData(y, &y_impl)); 842 CeedCallBackend(CeedVectorGetData(x, &x_impl)); 843 CeedCallBackend(CeedVectorGetLength(y, &length)); 844 // Set value for synced device/host array 845 if (y_impl->d_array) { 846 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE)); 847 #if (HIP_VERSION >= 60000000) 848 hipblasHandle_t handle; 849 hipStream_t stream; 850 851 CeedCallBackend(CeedGetHipblasHandle_Hip(CeedVectorReturnCeed(x), &handle)); 852 CeedCallHipblas(CeedVectorReturnCeed(y), hipblasGetStream(handle, &stream)); 853 #if defined(CEED_SCALAR_IS_FP32) 854 CeedCallHipblas(CeedVectorReturnCeed(y), hipblasSaxpy_64(handle, (int64_t)length, &alpha, x_impl->d_array, 1, y_impl->d_array, 1)); 855 #else /* CEED_SCALAR */ 856 CeedCallHipblas(CeedVectorReturnCeed(y), hipblasDaxpy_64(handle, (int64_t)length, &alpha, x_impl->d_array, 1, y_impl->d_array, 1)); 857 #endif /* CEED_SCALAR */ 858 CeedCallHip(CeedVectorReturnCeed(y), hipStreamSynchronize(stream)); 859 #else /* HIP_VERSION */ 860 CeedCallBackend(CeedDeviceAXPY_Hip(y_impl->d_array, alpha, x_impl->d_array, length)); 861 #endif /* HIP_VERSION */ 862 y_impl->h_array = NULL; 863 } else if (y_impl->h_array) { 864 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST)); 865 CeedCallBackend(CeedHostAXPY_Hip(y_impl->h_array, alpha, x_impl->h_array, length)); 866 y_impl->d_array = NULL; 867 } 868 return CEED_ERROR_SUCCESS; 869 } 870 871 //------------------------------------------------------------------------------ 872 // Compute y = alpha x + beta y on the host 873 //------------------------------------------------------------------------------ 874 static int CeedHostAXPBY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar beta, CeedScalar *x_array, CeedSize length) { 875 for (CeedSize i = 0; i < length; i++) y_array[i] = alpha * x_array[i] + beta * y_array[i]; 876 return CEED_ERROR_SUCCESS; 877 } 878 879 //------------------------------------------------------------------------------ 880 // Compute y = alpha x + beta y on device (impl in .hip.cpp file) 881 //------------------------------------------------------------------------------ 882 int CeedDeviceAXPBY_Hip(CeedScalar *y_array, CeedScalar alpha, CeedScalar beta, CeedScalar *x_array, CeedSize length); 883 884 //------------------------------------------------------------------------------ 885 // Compute y = alpha x + beta y 886 //------------------------------------------------------------------------------ 887 static int CeedVectorAXPBY_Hip(CeedVector y, CeedScalar alpha, CeedScalar beta, CeedVector x) { 888 CeedSize length; 889 CeedVector_Hip *y_impl, *x_impl; 890 891 CeedCallBackend(CeedVectorGetData(y, &y_impl)); 892 CeedCallBackend(CeedVectorGetData(x, &x_impl)); 893 CeedCallBackend(CeedVectorGetLength(y, &length)); 894 // Set value for synced device/host array 895 if (y_impl->d_array) { 896 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE)); 897 CeedCallBackend(CeedDeviceAXPBY_Hip(y_impl->d_array, alpha, beta, x_impl->d_array, length)); 898 } 899 if (y_impl->h_array) { 900 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST)); 901 CeedCallBackend(CeedHostAXPBY_Hip(y_impl->h_array, alpha, beta, x_impl->h_array, length)); 902 } 903 return CEED_ERROR_SUCCESS; 904 } 905 906 //------------------------------------------------------------------------------ 907 // Compute the pointwise multiplication w = x .* y on the host 908 //------------------------------------------------------------------------------ 909 static int CeedHostPointwiseMult_Hip(CeedScalar *w_array, CeedScalar *x_array, CeedScalar *y_array, CeedSize length) { 910 for (CeedSize i = 0; i < length; i++) w_array[i] = x_array[i] * y_array[i]; 911 return CEED_ERROR_SUCCESS; 912 } 913 914 //------------------------------------------------------------------------------ 915 // Compute the pointwise multiplication w = x .* y on device (impl in .hip.cpp file) 916 //------------------------------------------------------------------------------ 917 int CeedDevicePointwiseMult_Hip(CeedScalar *w_array, CeedScalar *x_array, CeedScalar *y_array, CeedSize length); 918 919 //------------------------------------------------------------------------------ 920 // Compute the pointwise multiplication w = x .* y 921 //------------------------------------------------------------------------------ 922 static int CeedVectorPointwiseMult_Hip(CeedVector w, CeedVector x, CeedVector y) { 923 CeedSize length; 924 CeedVector_Hip *w_impl, *x_impl, *y_impl; 925 926 CeedCallBackend(CeedVectorGetData(w, &w_impl)); 927 CeedCallBackend(CeedVectorGetData(x, &x_impl)); 928 CeedCallBackend(CeedVectorGetData(y, &y_impl)); 929 CeedCallBackend(CeedVectorGetLength(w, &length)); 930 931 // Set value for synced device/host array 932 if (!w_impl->d_array && !w_impl->h_array) { 933 CeedCallBackend(CeedVectorSetValue(w, 0.0)); 934 } 935 if (w_impl->d_array) { 936 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE)); 937 CeedCallBackend(CeedVectorSyncArray(y, CEED_MEM_DEVICE)); 938 CeedCallBackend(CeedDevicePointwiseMult_Hip(w_impl->d_array, x_impl->d_array, y_impl->d_array, length)); 939 } 940 if (w_impl->h_array) { 941 CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST)); 942 CeedCallBackend(CeedVectorSyncArray(y, CEED_MEM_HOST)); 943 CeedCallBackend(CeedHostPointwiseMult_Hip(w_impl->h_array, x_impl->h_array, y_impl->h_array, length)); 944 } 945 return CEED_ERROR_SUCCESS; 946 } 947 948 //------------------------------------------------------------------------------ 949 // Destroy the vector 950 //------------------------------------------------------------------------------ 951 static int CeedVectorDestroy_Hip(const CeedVector vec) { 952 CeedVector_Hip *impl; 953 954 CeedCallBackend(CeedVectorGetData(vec, &impl)); 955 CeedCallHip(CeedVectorReturnCeed(vec), hipFree(impl->d_array_owned)); 956 CeedCallBackend(CeedFree(&impl->h_array_owned)); 957 CeedCallBackend(CeedFree(&impl)); 958 return CEED_ERROR_SUCCESS; 959 } 960 961 //------------------------------------------------------------------------------ 962 // Create a vector of the specified length (does not allocate memory) 963 //------------------------------------------------------------------------------ 964 int CeedVectorCreate_Hip(CeedSize n, CeedVector vec) { 965 CeedVector_Hip *impl; 966 Ceed_Hip *hip_impl; 967 Ceed ceed; 968 969 CeedCallBackend(CeedVectorGetCeed(vec, &ceed)); 970 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "HasValidArray", CeedVectorHasValidArray_Hip)); 971 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "HasBorrowedArrayOfType", CeedVectorHasBorrowedArrayOfType_Hip)); 972 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetArray", CeedVectorSetArray_Hip)); 973 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "TakeArray", CeedVectorTakeArray_Hip)); 974 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "CopyStrided", CeedVectorCopyStrided_Hip)); 975 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetValue", CeedVectorSetValue_Hip)); 976 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetValueStrided", CeedVectorSetValueStrided_Hip)); 977 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SyncArray", CeedVectorSyncArray_Hip)); 978 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArray", CeedVectorGetArray_Hip)); 979 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArrayRead", CeedVectorGetArrayRead_Hip)); 980 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArrayWrite", CeedVectorGetArrayWrite_Hip)); 981 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Norm", CeedVectorNorm_Hip)); 982 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Reciprocal", CeedVectorReciprocal_Hip)); 983 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Scale", CeedVectorScale_Hip)); 984 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "AXPY", CeedVectorAXPY_Hip)); 985 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "AXPBY", CeedVectorAXPBY_Hip)); 986 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "PointwiseMult", CeedVectorPointwiseMult_Hip)); 987 CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Destroy", CeedVectorDestroy_Hip)); 988 CeedCallBackend(CeedCalloc(1, &impl)); 989 CeedCallBackend(CeedGetData(ceed, &hip_impl)); 990 CeedCallBackend(CeedDestroy(&ceed)); 991 impl->has_unified_addressing = hip_impl->has_unified_addressing; 992 CeedCallBackend(CeedVectorSetData(vec, impl)); 993 return CEED_ERROR_SUCCESS; 994 } 995 996 //------------------------------------------------------------------------------ 997