1 /* 2 * Copyright 2019 Advanced Micro Devices, Inc. 3 * 4 * Permission is hereby granted, free of charge, to any person obtaining a 5 * copy of this software and associated documentation files (the "Software"), 6 * to deal in the Software without restriction, including without limitation 7 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 8 * and/or sell copies of the Software, and to permit persons to whom the 9 * Software is furnished to do so, subject to the following conditions: 10 * 11 * The above copyright notice and this permission notice shall be included in 12 * all copies or substantial portions of the Software. 13 * 14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 20 * OTHER DEALINGS IN THE SOFTWARE. 21 * 22 * based on nouveau_prime.c 23 * 24 * Authors: Alex Deucher 25 */ 26 27 /** 28 * DOC: PRIME Buffer Sharing 29 * 30 * The following callback implementations are used for :ref:`sharing GEM buffer 31 * objects between different devices via PRIME <prime_buffer_sharing>`. 32 */ 33 34 #include "amdgpu.h" 35 #include "amdgpu_display.h" 36 #include "amdgpu_gem.h" 37 #include "amdgpu_dma_buf.h" 38 #include "amdgpu_xgmi.h" 39 #include <drm/amdgpu_drm.h> 40 #include <linux/dma-buf.h> 41 #include <linux/dma-fence-array.h> 42 #include <linux/pci-p2pdma.h> 43 44 /** 45 * amdgpu_gem_prime_vmap - &dma_buf_ops.vmap implementation 46 * @obj: GEM BO 47 * 48 * Sets up an in-kernel virtual mapping of the BO's memory. 49 * 50 * Returns: 51 * The virtual address of the mapping or an error pointer. 52 */ 53 void *amdgpu_gem_prime_vmap(struct drm_gem_object *obj) 54 { 55 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 56 int ret; 57 58 ret = ttm_bo_kmap(&bo->tbo, 0, bo->tbo.num_pages, 59 &bo->dma_buf_vmap); 60 if (ret) 61 return ERR_PTR(ret); 62 63 return bo->dma_buf_vmap.virtual; 64 } 65 66 /** 67 * amdgpu_gem_prime_vunmap - &dma_buf_ops.vunmap implementation 68 * @obj: GEM BO 69 * @vaddr: Virtual address (unused) 70 * 71 * Tears down the in-kernel virtual mapping of the BO's memory. 72 */ 73 void amdgpu_gem_prime_vunmap(struct drm_gem_object *obj, void *vaddr) 74 { 75 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 76 77 ttm_bo_kunmap(&bo->dma_buf_vmap); 78 } 79 80 /** 81 * amdgpu_gem_prime_mmap - &drm_driver.gem_prime_mmap implementation 82 * @obj: GEM BO 83 * @vma: Virtual memory area 84 * 85 * Sets up a userspace mapping of the BO's memory in the given 86 * virtual memory area. 87 * 88 * Returns: 89 * 0 on success or a negative error code on failure. 90 */ 91 int amdgpu_gem_prime_mmap(struct drm_gem_object *obj, 92 struct vm_area_struct *vma) 93 { 94 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 95 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 96 unsigned asize = amdgpu_bo_size(bo); 97 int ret; 98 99 if (!vma->vm_file) 100 return -ENODEV; 101 102 if (adev == NULL) 103 return -ENODEV; 104 105 /* Check for valid size. */ 106 if (asize < vma->vm_end - vma->vm_start) 107 return -EINVAL; 108 109 if (amdgpu_ttm_tt_get_usermm(bo->tbo.ttm) || 110 (bo->flags & AMDGPU_GEM_CREATE_NO_CPU_ACCESS)) { 111 return -EPERM; 112 } 113 vma->vm_pgoff += amdgpu_bo_mmap_offset(bo) >> PAGE_SHIFT; 114 115 /* prime mmap does not need to check access, so allow here */ 116 ret = drm_vma_node_allow(&obj->vma_node, vma->vm_file->private_data); 117 if (ret) 118 return ret; 119 120 ret = ttm_bo_mmap(vma->vm_file, vma, &adev->mman.bdev); 121 drm_vma_node_revoke(&obj->vma_node, vma->vm_file->private_data); 122 123 return ret; 124 } 125 126 static int 127 __dma_resv_make_exclusive(struct dma_resv *obj) 128 { 129 struct dma_fence **fences; 130 unsigned int count; 131 int r; 132 133 if (!dma_resv_get_list(obj)) /* no shared fences to convert */ 134 return 0; 135 136 r = dma_resv_get_fences_rcu(obj, NULL, &count, &fences); 137 if (r) 138 return r; 139 140 if (count == 0) { 141 /* Now that was unexpected. */ 142 } else if (count == 1) { 143 dma_resv_add_excl_fence(obj, fences[0]); 144 dma_fence_put(fences[0]); 145 kfree(fences); 146 } else { 147 struct dma_fence_array *array; 148 149 array = dma_fence_array_create(count, fences, 150 dma_fence_context_alloc(1), 0, 151 false); 152 if (!array) 153 goto err_fences_put; 154 155 dma_resv_add_excl_fence(obj, &array->base); 156 dma_fence_put(&array->base); 157 } 158 159 return 0; 160 161 err_fences_put: 162 while (count--) 163 dma_fence_put(fences[count]); 164 kfree(fences); 165 return -ENOMEM; 166 } 167 168 /** 169 * amdgpu_dma_buf_attach - &dma_buf_ops.attach implementation 170 * 171 * @dmabuf: DMA-buf where we attach to 172 * @attach: attachment to add 173 * 174 * Add the attachment as user to the exported DMA-buf. 175 */ 176 static int amdgpu_dma_buf_attach(struct dma_buf *dmabuf, 177 struct dma_buf_attachment *attach) 178 { 179 struct drm_gem_object *obj = dmabuf->priv; 180 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 181 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 182 int r; 183 184 if (pci_p2pdma_distance_many(adev->pdev, &attach->dev, 1, true) < 0) 185 attach->peer2peer = false; 186 187 if (attach->dev->driver == adev->dev->driver) 188 return 0; 189 190 r = amdgpu_bo_reserve(bo, false); 191 if (unlikely(r != 0)) 192 return r; 193 194 /* 195 * We only create shared fences for internal use, but importers 196 * of the dmabuf rely on exclusive fences for implicitly 197 * tracking write hazards. As any of the current fences may 198 * correspond to a write, we need to convert all existing 199 * fences on the reservation object into a single exclusive 200 * fence. 201 */ 202 r = __dma_resv_make_exclusive(bo->tbo.base.resv); 203 if (r) 204 return r; 205 206 bo->prime_shared_count++; 207 amdgpu_bo_unreserve(bo); 208 return 0; 209 } 210 211 /** 212 * amdgpu_dma_buf_detach - &dma_buf_ops.detach implementation 213 * 214 * @dmabuf: DMA-buf where we remove the attachment from 215 * @attach: the attachment to remove 216 * 217 * Called when an attachment is removed from the DMA-buf. 218 */ 219 static void amdgpu_dma_buf_detach(struct dma_buf *dmabuf, 220 struct dma_buf_attachment *attach) 221 { 222 struct drm_gem_object *obj = dmabuf->priv; 223 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 224 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 225 226 if (attach->dev->driver != adev->dev->driver && bo->prime_shared_count) 227 bo->prime_shared_count--; 228 } 229 230 /** 231 * amdgpu_dma_buf_pin - &dma_buf_ops.pin implementation 232 * 233 * @attach: attachment to pin down 234 * 235 * Pin the BO which is backing the DMA-buf so that it can't move any more. 236 */ 237 static int amdgpu_dma_buf_pin(struct dma_buf_attachment *attach) 238 { 239 struct drm_gem_object *obj = attach->dmabuf->priv; 240 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 241 242 /* pin buffer into GTT */ 243 return amdgpu_bo_pin(bo, AMDGPU_GEM_DOMAIN_GTT); 244 } 245 246 /** 247 * amdgpu_dma_buf_unpin - &dma_buf_ops.unpin implementation 248 * 249 * @attach: attachment to unpin 250 * 251 * Unpin a previously pinned BO to make it movable again. 252 */ 253 static void amdgpu_dma_buf_unpin(struct dma_buf_attachment *attach) 254 { 255 struct drm_gem_object *obj = attach->dmabuf->priv; 256 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 257 258 amdgpu_bo_unpin(bo); 259 } 260 261 /** 262 * amdgpu_dma_buf_map - &dma_buf_ops.map_dma_buf implementation 263 * @attach: DMA-buf attachment 264 * @dir: DMA direction 265 * 266 * Makes sure that the shared DMA buffer can be accessed by the target device. 267 * For now, simply pins it to the GTT domain, where it should be accessible by 268 * all DMA devices. 269 * 270 * Returns: 271 * sg_table filled with the DMA addresses to use or ERR_PRT with negative error 272 * code. 273 */ 274 static struct sg_table *amdgpu_dma_buf_map(struct dma_buf_attachment *attach, 275 enum dma_data_direction dir) 276 { 277 struct dma_buf *dma_buf = attach->dmabuf; 278 struct drm_gem_object *obj = dma_buf->priv; 279 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 280 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 281 struct sg_table *sgt; 282 long r; 283 284 if (!bo->pin_count) { 285 /* move buffer into GTT or VRAM */ 286 struct ttm_operation_ctx ctx = { false, false }; 287 unsigned domains = AMDGPU_GEM_DOMAIN_GTT; 288 289 if (bo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM && 290 attach->peer2peer) { 291 bo->flags |= AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED; 292 domains |= AMDGPU_GEM_DOMAIN_VRAM; 293 } 294 amdgpu_bo_placement_from_domain(bo, domains); 295 r = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx); 296 if (r) 297 return ERR_PTR(r); 298 299 } else if (!(amdgpu_mem_type_to_domain(bo->tbo.mem.mem_type) & 300 AMDGPU_GEM_DOMAIN_GTT)) { 301 return ERR_PTR(-EBUSY); 302 } 303 304 switch (bo->tbo.mem.mem_type) { 305 case TTM_PL_TT: 306 sgt = drm_prime_pages_to_sg(obj->dev, 307 bo->tbo.ttm->pages, 308 bo->tbo.num_pages); 309 if (IS_ERR(sgt)) 310 return sgt; 311 312 if (dma_map_sgtable(attach->dev, sgt, dir, 313 DMA_ATTR_SKIP_CPU_SYNC)) 314 goto error_free; 315 break; 316 317 case TTM_PL_VRAM: 318 r = amdgpu_vram_mgr_alloc_sgt(adev, &bo->tbo.mem, attach->dev, 319 dir, &sgt); 320 if (r) 321 return ERR_PTR(r); 322 break; 323 default: 324 return ERR_PTR(-EINVAL); 325 } 326 327 return sgt; 328 329 error_free: 330 sg_free_table(sgt); 331 kfree(sgt); 332 return ERR_PTR(-EBUSY); 333 } 334 335 /** 336 * amdgpu_dma_buf_unmap - &dma_buf_ops.unmap_dma_buf implementation 337 * @attach: DMA-buf attachment 338 * @sgt: sg_table to unmap 339 * @dir: DMA direction 340 * 341 * This is called when a shared DMA buffer no longer needs to be accessible by 342 * another device. For now, simply unpins the buffer from GTT. 343 */ 344 static void amdgpu_dma_buf_unmap(struct dma_buf_attachment *attach, 345 struct sg_table *sgt, 346 enum dma_data_direction dir) 347 { 348 struct dma_buf *dma_buf = attach->dmabuf; 349 struct drm_gem_object *obj = dma_buf->priv; 350 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 351 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 352 353 if (sgt->sgl->page_link) { 354 dma_unmap_sgtable(attach->dev, sgt, dir, 0); 355 sg_free_table(sgt); 356 kfree(sgt); 357 } else { 358 amdgpu_vram_mgr_free_sgt(adev, attach->dev, dir, sgt); 359 } 360 } 361 362 /** 363 * amdgpu_dma_buf_begin_cpu_access - &dma_buf_ops.begin_cpu_access implementation 364 * @dma_buf: Shared DMA buffer 365 * @direction: Direction of DMA transfer 366 * 367 * This is called before CPU access to the shared DMA buffer's memory. If it's 368 * a read access, the buffer is moved to the GTT domain if possible, for optimal 369 * CPU read performance. 370 * 371 * Returns: 372 * 0 on success or a negative error code on failure. 373 */ 374 static int amdgpu_dma_buf_begin_cpu_access(struct dma_buf *dma_buf, 375 enum dma_data_direction direction) 376 { 377 struct amdgpu_bo *bo = gem_to_amdgpu_bo(dma_buf->priv); 378 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 379 struct ttm_operation_ctx ctx = { true, false }; 380 u32 domain = amdgpu_display_supported_domains(adev, bo->flags); 381 int ret; 382 bool reads = (direction == DMA_BIDIRECTIONAL || 383 direction == DMA_FROM_DEVICE); 384 385 if (!reads || !(domain & AMDGPU_GEM_DOMAIN_GTT)) 386 return 0; 387 388 /* move to gtt */ 389 ret = amdgpu_bo_reserve(bo, false); 390 if (unlikely(ret != 0)) 391 return ret; 392 393 if (!bo->pin_count && (bo->allowed_domains & AMDGPU_GEM_DOMAIN_GTT)) { 394 amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_GTT); 395 ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx); 396 } 397 398 amdgpu_bo_unreserve(bo); 399 return ret; 400 } 401 402 const struct dma_buf_ops amdgpu_dmabuf_ops = { 403 .attach = amdgpu_dma_buf_attach, 404 .detach = amdgpu_dma_buf_detach, 405 .pin = amdgpu_dma_buf_pin, 406 .unpin = amdgpu_dma_buf_unpin, 407 .map_dma_buf = amdgpu_dma_buf_map, 408 .unmap_dma_buf = amdgpu_dma_buf_unmap, 409 .release = drm_gem_dmabuf_release, 410 .begin_cpu_access = amdgpu_dma_buf_begin_cpu_access, 411 .mmap = drm_gem_dmabuf_mmap, 412 .vmap = drm_gem_dmabuf_vmap, 413 .vunmap = drm_gem_dmabuf_vunmap, 414 }; 415 416 /** 417 * amdgpu_gem_prime_export - &drm_driver.gem_prime_export implementation 418 * @gobj: GEM BO 419 * @flags: Flags such as DRM_CLOEXEC and DRM_RDWR. 420 * 421 * The main work is done by the &drm_gem_prime_export helper. 422 * 423 * Returns: 424 * Shared DMA buffer representing the GEM BO from the given device. 425 */ 426 struct dma_buf *amdgpu_gem_prime_export(struct drm_gem_object *gobj, 427 int flags) 428 { 429 struct amdgpu_bo *bo = gem_to_amdgpu_bo(gobj); 430 struct dma_buf *buf; 431 432 if (amdgpu_ttm_tt_get_usermm(bo->tbo.ttm) || 433 bo->flags & AMDGPU_GEM_CREATE_VM_ALWAYS_VALID) 434 return ERR_PTR(-EPERM); 435 436 buf = drm_gem_prime_export(gobj, flags); 437 if (!IS_ERR(buf)) 438 buf->ops = &amdgpu_dmabuf_ops; 439 440 return buf; 441 } 442 443 /** 444 * amdgpu_dma_buf_create_obj - create BO for DMA-buf import 445 * 446 * @dev: DRM device 447 * @dma_buf: DMA-buf 448 * 449 * Creates an empty SG BO for DMA-buf import. 450 * 451 * Returns: 452 * A new GEM BO of the given DRM device, representing the memory 453 * described by the given DMA-buf attachment and scatter/gather table. 454 */ 455 static struct drm_gem_object * 456 amdgpu_dma_buf_create_obj(struct drm_device *dev, struct dma_buf *dma_buf) 457 { 458 struct dma_resv *resv = dma_buf->resv; 459 struct amdgpu_device *adev = drm_to_adev(dev); 460 struct amdgpu_bo *bo; 461 struct amdgpu_bo_param bp; 462 int ret; 463 464 memset(&bp, 0, sizeof(bp)); 465 bp.size = dma_buf->size; 466 bp.byte_align = PAGE_SIZE; 467 bp.domain = AMDGPU_GEM_DOMAIN_CPU; 468 bp.flags = 0; 469 bp.type = ttm_bo_type_sg; 470 bp.resv = resv; 471 dma_resv_lock(resv, NULL); 472 ret = amdgpu_bo_create(adev, &bp, &bo); 473 if (ret) 474 goto error; 475 476 bo->allowed_domains = AMDGPU_GEM_DOMAIN_GTT; 477 bo->preferred_domains = AMDGPU_GEM_DOMAIN_GTT; 478 if (dma_buf->ops != &amdgpu_dmabuf_ops) 479 bo->prime_shared_count = 1; 480 481 dma_resv_unlock(resv); 482 return &bo->tbo.base; 483 484 error: 485 dma_resv_unlock(resv); 486 return ERR_PTR(ret); 487 } 488 489 /** 490 * amdgpu_dma_buf_move_notify - &attach.move_notify implementation 491 * 492 * @attach: the DMA-buf attachment 493 * 494 * Invalidate the DMA-buf attachment, making sure that the we re-create the 495 * mapping before the next use. 496 */ 497 static void 498 amdgpu_dma_buf_move_notify(struct dma_buf_attachment *attach) 499 { 500 struct drm_gem_object *obj = attach->importer_priv; 501 struct ww_acquire_ctx *ticket = dma_resv_locking_ctx(obj->resv); 502 struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); 503 struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev); 504 struct ttm_operation_ctx ctx = { false, false }; 505 struct ttm_placement placement = {}; 506 struct amdgpu_vm_bo_base *bo_base; 507 int r; 508 509 if (bo->tbo.mem.mem_type == TTM_PL_SYSTEM) 510 return; 511 512 r = ttm_bo_validate(&bo->tbo, &placement, &ctx); 513 if (r) { 514 DRM_ERROR("Failed to invalidate DMA-buf import (%d))\n", r); 515 return; 516 } 517 518 for (bo_base = bo->vm_bo; bo_base; bo_base = bo_base->next) { 519 struct amdgpu_vm *vm = bo_base->vm; 520 struct dma_resv *resv = vm->root.base.bo->tbo.base.resv; 521 522 if (ticket) { 523 /* When we get an error here it means that somebody 524 * else is holding the VM lock and updating page tables 525 * So we can just continue here. 526 */ 527 r = dma_resv_lock(resv, ticket); 528 if (r) 529 continue; 530 531 } else { 532 /* TODO: This is more problematic and we actually need 533 * to allow page tables updates without holding the 534 * lock. 535 */ 536 if (!dma_resv_trylock(resv)) 537 continue; 538 } 539 540 r = amdgpu_vm_clear_freed(adev, vm, NULL); 541 if (!r) 542 r = amdgpu_vm_handle_moved(adev, vm); 543 544 if (r && r != -EBUSY) 545 DRM_ERROR("Failed to invalidate VM page tables (%d))\n", 546 r); 547 548 dma_resv_unlock(resv); 549 } 550 } 551 552 static const struct dma_buf_attach_ops amdgpu_dma_buf_attach_ops = { 553 .allow_peer2peer = true, 554 .move_notify = amdgpu_dma_buf_move_notify 555 }; 556 557 /** 558 * amdgpu_gem_prime_import - &drm_driver.gem_prime_import implementation 559 * @dev: DRM device 560 * @dma_buf: Shared DMA buffer 561 * 562 * Import a dma_buf into a the driver and potentially create a new GEM object. 563 * 564 * Returns: 565 * GEM BO representing the shared DMA buffer for the given device. 566 */ 567 struct drm_gem_object *amdgpu_gem_prime_import(struct drm_device *dev, 568 struct dma_buf *dma_buf) 569 { 570 struct dma_buf_attachment *attach; 571 struct drm_gem_object *obj; 572 573 if (dma_buf->ops == &amdgpu_dmabuf_ops) { 574 obj = dma_buf->priv; 575 if (obj->dev == dev) { 576 /* 577 * Importing dmabuf exported from out own gem increases 578 * refcount on gem itself instead of f_count of dmabuf. 579 */ 580 drm_gem_object_get(obj); 581 return obj; 582 } 583 } 584 585 obj = amdgpu_dma_buf_create_obj(dev, dma_buf); 586 if (IS_ERR(obj)) 587 return obj; 588 589 attach = dma_buf_dynamic_attach(dma_buf, dev->dev, 590 &amdgpu_dma_buf_attach_ops, obj); 591 if (IS_ERR(attach)) { 592 drm_gem_object_put(obj); 593 return ERR_CAST(attach); 594 } 595 596 get_dma_buf(dma_buf); 597 obj->import_attach = attach; 598 return obj; 599 } 600 601 /** 602 * amdgpu_dmabuf_is_xgmi_accessible - Check if xgmi available for P2P transfer 603 * 604 * @adev: amdgpu_device pointer of the importer 605 * @bo: amdgpu buffer object 606 * 607 * Returns: 608 * True if dmabuf accessible over xgmi, false otherwise. 609 */ 610 bool amdgpu_dmabuf_is_xgmi_accessible(struct amdgpu_device *adev, 611 struct amdgpu_bo *bo) 612 { 613 struct drm_gem_object *obj = &bo->tbo.base; 614 struct drm_gem_object *gobj; 615 616 if (obj->import_attach) { 617 struct dma_buf *dma_buf = obj->import_attach->dmabuf; 618 619 if (dma_buf->ops != &amdgpu_dmabuf_ops) 620 /* No XGMI with non AMD GPUs */ 621 return false; 622 623 gobj = dma_buf->priv; 624 bo = gem_to_amdgpu_bo(gobj); 625 } 626 627 if (amdgpu_xgmi_same_hive(adev, amdgpu_ttm_adev(bo->tbo.bdev)) && 628 (bo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM)) 629 return true; 630 631 return false; 632 } 633