xref: /linux/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c (revision 953c7f82eb890085c60dbe22578e883d6837c674)
1 /*
2  * Copyright 2009 Jerome Glisse.
3  * All Rights Reserved.
4  *
5  * Permission is hereby granted, free of charge, to any person obtaining a
6  * copy of this software and associated documentation files (the
7  * "Software"), to deal in the Software without restriction, including
8  * without limitation the rights to use, copy, modify, merge, publish,
9  * distribute, sub license, and/or sell copies of the Software, and to
10  * permit persons to whom the Software is furnished to do so, subject to
11  * the following conditions:
12  *
13  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
14  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
15  * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
16  * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
17  * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
18  * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
19  * USE OR OTHER DEALINGS IN THE SOFTWARE.
20  *
21  * The above copyright notice and this permission notice (including the
22  * next paragraph) shall be included in all copies or substantial portions
23  * of the Software.
24  *
25  */
26 /*
27  * Authors:
28  *    Jerome Glisse <glisse@freedesktop.org>
29  *    Thomas Hellstrom <thomas-at-tungstengraphics-dot-com>
30  *    Dave Airlie
31  */
32 #include <ttm/ttm_bo_api.h>
33 #include <ttm/ttm_bo_driver.h>
34 #include <ttm/ttm_placement.h>
35 #include <ttm/ttm_module.h>
36 #include <ttm/ttm_page_alloc.h>
37 #include <drm/drmP.h>
38 #include <drm/amdgpu_drm.h>
39 #include <linux/seq_file.h>
40 #include <linux/slab.h>
41 #include <linux/swiotlb.h>
42 #include <linux/swap.h>
43 #include <linux/pagemap.h>
44 #include <linux/debugfs.h>
45 #include "amdgpu.h"
46 #include "bif/bif_4_1_d.h"
47 
48 #define DRM_FILE_PAGE_OFFSET (0x100000000ULL >> PAGE_SHIFT)
49 
50 static int amdgpu_ttm_debugfs_init(struct amdgpu_device *adev);
51 static void amdgpu_ttm_debugfs_fini(struct amdgpu_device *adev);
52 
53 
54 /*
55  * Global memory.
56  */
57 static int amdgpu_ttm_mem_global_init(struct drm_global_reference *ref)
58 {
59 	return ttm_mem_global_init(ref->object);
60 }
61 
62 static void amdgpu_ttm_mem_global_release(struct drm_global_reference *ref)
63 {
64 	ttm_mem_global_release(ref->object);
65 }
66 
67 static int amdgpu_ttm_global_init(struct amdgpu_device *adev)
68 {
69 	struct drm_global_reference *global_ref;
70 	struct amdgpu_ring *ring;
71 	struct amd_sched_rq *rq;
72 	int r;
73 
74 	adev->mman.mem_global_referenced = false;
75 	global_ref = &adev->mman.mem_global_ref;
76 	global_ref->global_type = DRM_GLOBAL_TTM_MEM;
77 	global_ref->size = sizeof(struct ttm_mem_global);
78 	global_ref->init = &amdgpu_ttm_mem_global_init;
79 	global_ref->release = &amdgpu_ttm_mem_global_release;
80 	r = drm_global_item_ref(global_ref);
81 	if (r) {
82 		DRM_ERROR("Failed setting up TTM memory accounting "
83 			  "subsystem.\n");
84 		goto error_mem;
85 	}
86 
87 	adev->mman.bo_global_ref.mem_glob =
88 		adev->mman.mem_global_ref.object;
89 	global_ref = &adev->mman.bo_global_ref.ref;
90 	global_ref->global_type = DRM_GLOBAL_TTM_BO;
91 	global_ref->size = sizeof(struct ttm_bo_global);
92 	global_ref->init = &ttm_bo_global_init;
93 	global_ref->release = &ttm_bo_global_release;
94 	r = drm_global_item_ref(global_ref);
95 	if (r) {
96 		DRM_ERROR("Failed setting up TTM BO subsystem.\n");
97 		goto error_bo;
98 	}
99 
100 	ring = adev->mman.buffer_funcs_ring;
101 	rq = &ring->sched.sched_rq[AMD_SCHED_PRIORITY_KERNEL];
102 	r = amd_sched_entity_init(&ring->sched, &adev->mman.entity,
103 				  rq, amdgpu_sched_jobs);
104 	if (r) {
105 		DRM_ERROR("Failed setting up TTM BO move run queue.\n");
106 		goto error_entity;
107 	}
108 
109 	adev->mman.mem_global_referenced = true;
110 
111 	return 0;
112 
113 error_entity:
114 	drm_global_item_unref(&adev->mman.bo_global_ref.ref);
115 error_bo:
116 	drm_global_item_unref(&adev->mman.mem_global_ref);
117 error_mem:
118 	return r;
119 }
120 
121 static void amdgpu_ttm_global_fini(struct amdgpu_device *adev)
122 {
123 	if (adev->mman.mem_global_referenced) {
124 		amd_sched_entity_fini(adev->mman.entity.sched,
125 				      &adev->mman.entity);
126 		drm_global_item_unref(&adev->mman.bo_global_ref.ref);
127 		drm_global_item_unref(&adev->mman.mem_global_ref);
128 		adev->mman.mem_global_referenced = false;
129 	}
130 }
131 
132 static int amdgpu_invalidate_caches(struct ttm_bo_device *bdev, uint32_t flags)
133 {
134 	return 0;
135 }
136 
137 static int amdgpu_init_mem_type(struct ttm_bo_device *bdev, uint32_t type,
138 				struct ttm_mem_type_manager *man)
139 {
140 	struct amdgpu_device *adev;
141 
142 	adev = amdgpu_ttm_adev(bdev);
143 
144 	switch (type) {
145 	case TTM_PL_SYSTEM:
146 		/* System memory */
147 		man->flags = TTM_MEMTYPE_FLAG_MAPPABLE;
148 		man->available_caching = TTM_PL_MASK_CACHING;
149 		man->default_caching = TTM_PL_FLAG_CACHED;
150 		break;
151 	case TTM_PL_TT:
152 		man->func = &amdgpu_gtt_mgr_func;
153 		man->gpu_offset = adev->mc.gtt_start;
154 		man->available_caching = TTM_PL_MASK_CACHING;
155 		man->default_caching = TTM_PL_FLAG_CACHED;
156 		man->flags = TTM_MEMTYPE_FLAG_MAPPABLE | TTM_MEMTYPE_FLAG_CMA;
157 		break;
158 	case TTM_PL_VRAM:
159 		/* "On-card" video ram */
160 		man->func = &amdgpu_vram_mgr_func;
161 		man->gpu_offset = adev->mc.vram_start;
162 		man->flags = TTM_MEMTYPE_FLAG_FIXED |
163 			     TTM_MEMTYPE_FLAG_MAPPABLE;
164 		man->available_caching = TTM_PL_FLAG_UNCACHED | TTM_PL_FLAG_WC;
165 		man->default_caching = TTM_PL_FLAG_WC;
166 		break;
167 	case AMDGPU_PL_GDS:
168 	case AMDGPU_PL_GWS:
169 	case AMDGPU_PL_OA:
170 		/* On-chip GDS memory*/
171 		man->func = &ttm_bo_manager_func;
172 		man->gpu_offset = 0;
173 		man->flags = TTM_MEMTYPE_FLAG_FIXED | TTM_MEMTYPE_FLAG_CMA;
174 		man->available_caching = TTM_PL_FLAG_UNCACHED;
175 		man->default_caching = TTM_PL_FLAG_UNCACHED;
176 		break;
177 	default:
178 		DRM_ERROR("Unsupported memory type %u\n", (unsigned)type);
179 		return -EINVAL;
180 	}
181 	return 0;
182 }
183 
184 static void amdgpu_evict_flags(struct ttm_buffer_object *bo,
185 				struct ttm_placement *placement)
186 {
187 	struct amdgpu_device *adev = amdgpu_ttm_adev(bo->bdev);
188 	struct amdgpu_bo *abo;
189 	static struct ttm_place placements = {
190 		.fpfn = 0,
191 		.lpfn = 0,
192 		.flags = TTM_PL_MASK_CACHING | TTM_PL_FLAG_SYSTEM
193 	};
194 	unsigned i;
195 
196 	if (!amdgpu_ttm_bo_is_amdgpu_bo(bo)) {
197 		placement->placement = &placements;
198 		placement->busy_placement = &placements;
199 		placement->num_placement = 1;
200 		placement->num_busy_placement = 1;
201 		return;
202 	}
203 	abo = container_of(bo, struct amdgpu_bo, tbo);
204 	switch (bo->mem.mem_type) {
205 	case TTM_PL_VRAM:
206 		if (adev->mman.buffer_funcs_ring->ready == false) {
207 			amdgpu_ttm_placement_from_domain(abo, AMDGPU_GEM_DOMAIN_CPU);
208 		} else {
209 			amdgpu_ttm_placement_from_domain(abo, AMDGPU_GEM_DOMAIN_GTT);
210 			for (i = 0; i < abo->placement.num_placement; ++i) {
211 				if (!(abo->placements[i].flags &
212 				      TTM_PL_FLAG_TT))
213 					continue;
214 
215 				if (abo->placements[i].lpfn)
216 					continue;
217 
218 				/* set an upper limit to force directly
219 				 * allocating address space for the BO.
220 				 */
221 				abo->placements[i].lpfn =
222 					adev->mc.gtt_size >> PAGE_SHIFT;
223 			}
224 		}
225 		break;
226 	case TTM_PL_TT:
227 	default:
228 		amdgpu_ttm_placement_from_domain(abo, AMDGPU_GEM_DOMAIN_CPU);
229 	}
230 	*placement = abo->placement;
231 }
232 
233 static int amdgpu_verify_access(struct ttm_buffer_object *bo, struct file *filp)
234 {
235 	struct amdgpu_bo *abo = container_of(bo, struct amdgpu_bo, tbo);
236 
237 	if (amdgpu_ttm_tt_get_usermm(bo->ttm))
238 		return -EPERM;
239 	return drm_vma_node_verify_access(&abo->gem_base.vma_node,
240 					  filp->private_data);
241 }
242 
243 static void amdgpu_move_null(struct ttm_buffer_object *bo,
244 			     struct ttm_mem_reg *new_mem)
245 {
246 	struct ttm_mem_reg *old_mem = &bo->mem;
247 
248 	BUG_ON(old_mem->mm_node != NULL);
249 	*old_mem = *new_mem;
250 	new_mem->mm_node = NULL;
251 }
252 
253 static int amdgpu_mm_node_addr(struct ttm_buffer_object *bo,
254 			       struct drm_mm_node *mm_node,
255 			       struct ttm_mem_reg *mem,
256 			       uint64_t *addr)
257 {
258 	int r;
259 
260 	switch (mem->mem_type) {
261 	case TTM_PL_TT:
262 		r = amdgpu_ttm_bind(bo, mem);
263 		if (r)
264 			return r;
265 
266 	case TTM_PL_VRAM:
267 		*addr = mm_node->start << PAGE_SHIFT;
268 		*addr += bo->bdev->man[mem->mem_type].gpu_offset;
269 		break;
270 	default:
271 		DRM_ERROR("Unknown placement %d\n", mem->mem_type);
272 		return -EINVAL;
273 	}
274 
275 	return 0;
276 }
277 
278 static int amdgpu_move_blit(struct ttm_buffer_object *bo,
279 			    bool evict, bool no_wait_gpu,
280 			    struct ttm_mem_reg *new_mem,
281 			    struct ttm_mem_reg *old_mem)
282 {
283 	struct amdgpu_device *adev = amdgpu_ttm_adev(bo->bdev);
284 	struct amdgpu_ring *ring = adev->mman.buffer_funcs_ring;
285 
286 	struct drm_mm_node *old_mm, *new_mm;
287 	uint64_t old_start, old_size, new_start, new_size;
288 	unsigned long num_pages;
289 	struct dma_fence *fence = NULL;
290 	int r;
291 
292 	BUILD_BUG_ON((PAGE_SIZE % AMDGPU_GPU_PAGE_SIZE) != 0);
293 
294 	if (!ring->ready) {
295 		DRM_ERROR("Trying to move memory with ring turned off.\n");
296 		return -EINVAL;
297 	}
298 
299 	old_mm = old_mem->mm_node;
300 	r = amdgpu_mm_node_addr(bo, old_mm, old_mem, &old_start);
301 	if (r)
302 		return r;
303 	old_size = old_mm->size;
304 
305 
306 	new_mm = new_mem->mm_node;
307 	r = amdgpu_mm_node_addr(bo, new_mm, new_mem, &new_start);
308 	if (r)
309 		return r;
310 	new_size = new_mm->size;
311 
312 	num_pages = new_mem->num_pages;
313 	while (num_pages) {
314 		unsigned long cur_pages = min(old_size, new_size);
315 		struct dma_fence *next;
316 
317 		r = amdgpu_copy_buffer(ring, old_start, new_start,
318 				       cur_pages * PAGE_SIZE,
319 				       bo->resv, &next, false);
320 		if (r)
321 			goto error;
322 
323 		dma_fence_put(fence);
324 		fence = next;
325 
326 		num_pages -= cur_pages;
327 		if (!num_pages)
328 			break;
329 
330 		old_size -= cur_pages;
331 		if (!old_size) {
332 			r = amdgpu_mm_node_addr(bo, ++old_mm, old_mem,
333 						&old_start);
334 			if (r)
335 				goto error;
336 			old_size = old_mm->size;
337 		} else {
338 			old_start += cur_pages * PAGE_SIZE;
339 		}
340 
341 		new_size -= cur_pages;
342 		if (!new_size) {
343 			r = amdgpu_mm_node_addr(bo, ++new_mm, new_mem,
344 						&new_start);
345 			if (r)
346 				goto error;
347 
348 			new_size = new_mm->size;
349 		} else {
350 			new_start += cur_pages * PAGE_SIZE;
351 		}
352 	}
353 
354 	r = ttm_bo_pipeline_move(bo, fence, evict, new_mem);
355 	dma_fence_put(fence);
356 	return r;
357 
358 error:
359 	if (fence)
360 		dma_fence_wait(fence, false);
361 	dma_fence_put(fence);
362 	return r;
363 }
364 
365 static int amdgpu_move_vram_ram(struct ttm_buffer_object *bo,
366 				bool evict, bool interruptible,
367 				bool no_wait_gpu,
368 				struct ttm_mem_reg *new_mem)
369 {
370 	struct amdgpu_device *adev;
371 	struct ttm_mem_reg *old_mem = &bo->mem;
372 	struct ttm_mem_reg tmp_mem;
373 	struct ttm_place placements;
374 	struct ttm_placement placement;
375 	int r;
376 
377 	adev = amdgpu_ttm_adev(bo->bdev);
378 	tmp_mem = *new_mem;
379 	tmp_mem.mm_node = NULL;
380 	placement.num_placement = 1;
381 	placement.placement = &placements;
382 	placement.num_busy_placement = 1;
383 	placement.busy_placement = &placements;
384 	placements.fpfn = 0;
385 	placements.lpfn = adev->mc.gtt_size >> PAGE_SHIFT;
386 	placements.flags = TTM_PL_MASK_CACHING | TTM_PL_FLAG_TT;
387 	r = ttm_bo_mem_space(bo, &placement, &tmp_mem,
388 			     interruptible, no_wait_gpu);
389 	if (unlikely(r)) {
390 		return r;
391 	}
392 
393 	r = ttm_tt_set_placement_caching(bo->ttm, tmp_mem.placement);
394 	if (unlikely(r)) {
395 		goto out_cleanup;
396 	}
397 
398 	r = ttm_tt_bind(bo->ttm, &tmp_mem);
399 	if (unlikely(r)) {
400 		goto out_cleanup;
401 	}
402 	r = amdgpu_move_blit(bo, true, no_wait_gpu, &tmp_mem, old_mem);
403 	if (unlikely(r)) {
404 		goto out_cleanup;
405 	}
406 	r = ttm_bo_move_ttm(bo, interruptible, no_wait_gpu, new_mem);
407 out_cleanup:
408 	ttm_bo_mem_put(bo, &tmp_mem);
409 	return r;
410 }
411 
412 static int amdgpu_move_ram_vram(struct ttm_buffer_object *bo,
413 				bool evict, bool interruptible,
414 				bool no_wait_gpu,
415 				struct ttm_mem_reg *new_mem)
416 {
417 	struct amdgpu_device *adev;
418 	struct ttm_mem_reg *old_mem = &bo->mem;
419 	struct ttm_mem_reg tmp_mem;
420 	struct ttm_placement placement;
421 	struct ttm_place placements;
422 	int r;
423 
424 	adev = amdgpu_ttm_adev(bo->bdev);
425 	tmp_mem = *new_mem;
426 	tmp_mem.mm_node = NULL;
427 	placement.num_placement = 1;
428 	placement.placement = &placements;
429 	placement.num_busy_placement = 1;
430 	placement.busy_placement = &placements;
431 	placements.fpfn = 0;
432 	placements.lpfn = adev->mc.gtt_size >> PAGE_SHIFT;
433 	placements.flags = TTM_PL_MASK_CACHING | TTM_PL_FLAG_TT;
434 	r = ttm_bo_mem_space(bo, &placement, &tmp_mem,
435 			     interruptible, no_wait_gpu);
436 	if (unlikely(r)) {
437 		return r;
438 	}
439 	r = ttm_bo_move_ttm(bo, interruptible, no_wait_gpu, &tmp_mem);
440 	if (unlikely(r)) {
441 		goto out_cleanup;
442 	}
443 	r = amdgpu_move_blit(bo, true, no_wait_gpu, new_mem, old_mem);
444 	if (unlikely(r)) {
445 		goto out_cleanup;
446 	}
447 out_cleanup:
448 	ttm_bo_mem_put(bo, &tmp_mem);
449 	return r;
450 }
451 
452 static int amdgpu_bo_move(struct ttm_buffer_object *bo,
453 			bool evict, bool interruptible,
454 			bool no_wait_gpu,
455 			struct ttm_mem_reg *new_mem)
456 {
457 	struct amdgpu_device *adev;
458 	struct amdgpu_bo *abo;
459 	struct ttm_mem_reg *old_mem = &bo->mem;
460 	int r;
461 
462 	/* Can't move a pinned BO */
463 	abo = container_of(bo, struct amdgpu_bo, tbo);
464 	if (WARN_ON_ONCE(abo->pin_count > 0))
465 		return -EINVAL;
466 
467 	adev = amdgpu_ttm_adev(bo->bdev);
468 
469 	if (old_mem->mem_type == TTM_PL_SYSTEM && bo->ttm == NULL) {
470 		amdgpu_move_null(bo, new_mem);
471 		return 0;
472 	}
473 	if ((old_mem->mem_type == TTM_PL_TT &&
474 	     new_mem->mem_type == TTM_PL_SYSTEM) ||
475 	    (old_mem->mem_type == TTM_PL_SYSTEM &&
476 	     new_mem->mem_type == TTM_PL_TT)) {
477 		/* bind is enough */
478 		amdgpu_move_null(bo, new_mem);
479 		return 0;
480 	}
481 	if (adev->mman.buffer_funcs == NULL ||
482 	    adev->mman.buffer_funcs_ring == NULL ||
483 	    !adev->mman.buffer_funcs_ring->ready) {
484 		/* use memcpy */
485 		goto memcpy;
486 	}
487 
488 	if (old_mem->mem_type == TTM_PL_VRAM &&
489 	    new_mem->mem_type == TTM_PL_SYSTEM) {
490 		r = amdgpu_move_vram_ram(bo, evict, interruptible,
491 					no_wait_gpu, new_mem);
492 	} else if (old_mem->mem_type == TTM_PL_SYSTEM &&
493 		   new_mem->mem_type == TTM_PL_VRAM) {
494 		r = amdgpu_move_ram_vram(bo, evict, interruptible,
495 					    no_wait_gpu, new_mem);
496 	} else {
497 		r = amdgpu_move_blit(bo, evict, no_wait_gpu, new_mem, old_mem);
498 	}
499 
500 	if (r) {
501 memcpy:
502 		r = ttm_bo_move_memcpy(bo, interruptible, no_wait_gpu, new_mem);
503 		if (r) {
504 			return r;
505 		}
506 	}
507 
508 	/* update statistics */
509 	atomic64_add((u64)bo->num_pages << PAGE_SHIFT, &adev->num_bytes_moved);
510 	return 0;
511 }
512 
513 static int amdgpu_ttm_io_mem_reserve(struct ttm_bo_device *bdev, struct ttm_mem_reg *mem)
514 {
515 	struct ttm_mem_type_manager *man = &bdev->man[mem->mem_type];
516 	struct amdgpu_device *adev = amdgpu_ttm_adev(bdev);
517 
518 	mem->bus.addr = NULL;
519 	mem->bus.offset = 0;
520 	mem->bus.size = mem->num_pages << PAGE_SHIFT;
521 	mem->bus.base = 0;
522 	mem->bus.is_iomem = false;
523 	if (!(man->flags & TTM_MEMTYPE_FLAG_MAPPABLE))
524 		return -EINVAL;
525 	switch (mem->mem_type) {
526 	case TTM_PL_SYSTEM:
527 		/* system memory */
528 		return 0;
529 	case TTM_PL_TT:
530 		break;
531 	case TTM_PL_VRAM:
532 		mem->bus.offset = mem->start << PAGE_SHIFT;
533 		/* check if it's visible */
534 		if ((mem->bus.offset + mem->bus.size) > adev->mc.visible_vram_size)
535 			return -EINVAL;
536 		mem->bus.base = adev->mc.aper_base;
537 		mem->bus.is_iomem = true;
538 #ifdef __alpha__
539 		/*
540 		 * Alpha: use bus.addr to hold the ioremap() return,
541 		 * so we can modify bus.base below.
542 		 */
543 		if (mem->placement & TTM_PL_FLAG_WC)
544 			mem->bus.addr =
545 				ioremap_wc(mem->bus.base + mem->bus.offset,
546 					   mem->bus.size);
547 		else
548 			mem->bus.addr =
549 				ioremap_nocache(mem->bus.base + mem->bus.offset,
550 						mem->bus.size);
551 		if (!mem->bus.addr)
552 			return -ENOMEM;
553 
554 		/*
555 		 * Alpha: Use just the bus offset plus
556 		 * the hose/domain memory base for bus.base.
557 		 * It then can be used to build PTEs for VRAM
558 		 * access, as done in ttm_bo_vm_fault().
559 		 */
560 		mem->bus.base = (mem->bus.base & 0x0ffffffffUL) +
561 			adev->ddev->hose->dense_mem_base;
562 #endif
563 		break;
564 	default:
565 		return -EINVAL;
566 	}
567 	return 0;
568 }
569 
570 static void amdgpu_ttm_io_mem_free(struct ttm_bo_device *bdev, struct ttm_mem_reg *mem)
571 {
572 }
573 
574 /*
575  * TTM backend functions.
576  */
577 struct amdgpu_ttm_gup_task_list {
578 	struct list_head	list;
579 	struct task_struct	*task;
580 };
581 
582 struct amdgpu_ttm_tt {
583 	struct ttm_dma_tt	ttm;
584 	struct amdgpu_device	*adev;
585 	u64			offset;
586 	uint64_t		userptr;
587 	struct mm_struct	*usermm;
588 	uint32_t		userflags;
589 	spinlock_t              guptasklock;
590 	struct list_head        guptasks;
591 	atomic_t		mmu_invalidations;
592 	struct list_head        list;
593 };
594 
595 int amdgpu_ttm_tt_get_user_pages(struct ttm_tt *ttm, struct page **pages)
596 {
597 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
598 	unsigned int flags = 0;
599 	unsigned pinned = 0;
600 	int r;
601 
602 	if (!(gtt->userflags & AMDGPU_GEM_USERPTR_READONLY))
603 		flags |= FOLL_WRITE;
604 
605 	if (gtt->userflags & AMDGPU_GEM_USERPTR_ANONONLY) {
606 		/* check that we only use anonymous memory
607 		   to prevent problems with writeback */
608 		unsigned long end = gtt->userptr + ttm->num_pages * PAGE_SIZE;
609 		struct vm_area_struct *vma;
610 
611 		vma = find_vma(gtt->usermm, gtt->userptr);
612 		if (!vma || vma->vm_file || vma->vm_end < end)
613 			return -EPERM;
614 	}
615 
616 	do {
617 		unsigned num_pages = ttm->num_pages - pinned;
618 		uint64_t userptr = gtt->userptr + pinned * PAGE_SIZE;
619 		struct page **p = pages + pinned;
620 		struct amdgpu_ttm_gup_task_list guptask;
621 
622 		guptask.task = current;
623 		spin_lock(&gtt->guptasklock);
624 		list_add(&guptask.list, &gtt->guptasks);
625 		spin_unlock(&gtt->guptasklock);
626 
627 		r = get_user_pages(userptr, num_pages, flags, p, NULL);
628 
629 		spin_lock(&gtt->guptasklock);
630 		list_del(&guptask.list);
631 		spin_unlock(&gtt->guptasklock);
632 
633 		if (r < 0)
634 			goto release_pages;
635 
636 		pinned += r;
637 
638 	} while (pinned < ttm->num_pages);
639 
640 	return 0;
641 
642 release_pages:
643 	release_pages(pages, pinned, 0);
644 	return r;
645 }
646 
647 /* prepare the sg table with the user pages */
648 static int amdgpu_ttm_tt_pin_userptr(struct ttm_tt *ttm)
649 {
650 	struct amdgpu_device *adev = amdgpu_ttm_adev(ttm->bdev);
651 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
652 	unsigned nents;
653 	int r;
654 
655 	int write = !(gtt->userflags & AMDGPU_GEM_USERPTR_READONLY);
656 	enum dma_data_direction direction = write ?
657 		DMA_BIDIRECTIONAL : DMA_TO_DEVICE;
658 
659 	r = sg_alloc_table_from_pages(ttm->sg, ttm->pages, ttm->num_pages, 0,
660 				      ttm->num_pages << PAGE_SHIFT,
661 				      GFP_KERNEL);
662 	if (r)
663 		goto release_sg;
664 
665 	r = -ENOMEM;
666 	nents = dma_map_sg(adev->dev, ttm->sg->sgl, ttm->sg->nents, direction);
667 	if (nents != ttm->sg->nents)
668 		goto release_sg;
669 
670 	drm_prime_sg_to_page_addr_arrays(ttm->sg, ttm->pages,
671 					 gtt->ttm.dma_address, ttm->num_pages);
672 
673 	return 0;
674 
675 release_sg:
676 	kfree(ttm->sg);
677 	return r;
678 }
679 
680 static void amdgpu_ttm_tt_unpin_userptr(struct ttm_tt *ttm)
681 {
682 	struct amdgpu_device *adev = amdgpu_ttm_adev(ttm->bdev);
683 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
684 	struct sg_page_iter sg_iter;
685 
686 	int write = !(gtt->userflags & AMDGPU_GEM_USERPTR_READONLY);
687 	enum dma_data_direction direction = write ?
688 		DMA_BIDIRECTIONAL : DMA_TO_DEVICE;
689 
690 	/* double check that we don't free the table twice */
691 	if (!ttm->sg->sgl)
692 		return;
693 
694 	/* free the sg table and pages again */
695 	dma_unmap_sg(adev->dev, ttm->sg->sgl, ttm->sg->nents, direction);
696 
697 	for_each_sg_page(ttm->sg->sgl, &sg_iter, ttm->sg->nents, 0) {
698 		struct page *page = sg_page_iter_page(&sg_iter);
699 		if (!(gtt->userflags & AMDGPU_GEM_USERPTR_READONLY))
700 			set_page_dirty(page);
701 
702 		mark_page_accessed(page);
703 		put_page(page);
704 	}
705 
706 	sg_free_table(ttm->sg);
707 }
708 
709 static int amdgpu_ttm_backend_bind(struct ttm_tt *ttm,
710 				   struct ttm_mem_reg *bo_mem)
711 {
712 	struct amdgpu_ttm_tt *gtt = (void*)ttm;
713 	int r;
714 
715 	if (gtt->userptr) {
716 		r = amdgpu_ttm_tt_pin_userptr(ttm);
717 		if (r) {
718 			DRM_ERROR("failed to pin userptr\n");
719 			return r;
720 		}
721 	}
722 	if (!ttm->num_pages) {
723 		WARN(1, "nothing to bind %lu pages for mreg %p back %p!\n",
724 		     ttm->num_pages, bo_mem, ttm);
725 	}
726 
727 	if (bo_mem->mem_type == AMDGPU_PL_GDS ||
728 	    bo_mem->mem_type == AMDGPU_PL_GWS ||
729 	    bo_mem->mem_type == AMDGPU_PL_OA)
730 		return -EINVAL;
731 
732 	return 0;
733 }
734 
735 bool amdgpu_ttm_is_bound(struct ttm_tt *ttm)
736 {
737 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
738 
739 	return gtt && !list_empty(&gtt->list);
740 }
741 
742 int amdgpu_ttm_bind(struct ttm_buffer_object *bo, struct ttm_mem_reg *bo_mem)
743 {
744 	struct ttm_tt *ttm = bo->ttm;
745 	struct amdgpu_ttm_tt *gtt = (void *)bo->ttm;
746 	uint32_t flags;
747 	int r;
748 
749 	if (!ttm || amdgpu_ttm_is_bound(ttm))
750 		return 0;
751 
752 	r = amdgpu_gtt_mgr_alloc(&bo->bdev->man[TTM_PL_TT], bo,
753 				 NULL, bo_mem);
754 	if (r) {
755 		DRM_ERROR("Failed to allocate GTT address space (%d)\n", r);
756 		return r;
757 	}
758 
759 	flags = amdgpu_ttm_tt_pte_flags(gtt->adev, ttm, bo_mem);
760 	gtt->offset = (u64)bo_mem->start << PAGE_SHIFT;
761 	r = amdgpu_gart_bind(gtt->adev, gtt->offset, ttm->num_pages,
762 		ttm->pages, gtt->ttm.dma_address, flags);
763 
764 	if (r) {
765 		DRM_ERROR("failed to bind %lu pages at 0x%08llX\n",
766 			  ttm->num_pages, gtt->offset);
767 		return r;
768 	}
769 	spin_lock(&gtt->adev->gtt_list_lock);
770 	list_add_tail(&gtt->list, &gtt->adev->gtt_list);
771 	spin_unlock(&gtt->adev->gtt_list_lock);
772 	return 0;
773 }
774 
775 int amdgpu_ttm_recover_gart(struct amdgpu_device *adev)
776 {
777 	struct amdgpu_ttm_tt *gtt, *tmp;
778 	struct ttm_mem_reg bo_mem;
779 	uint32_t flags;
780 	int r;
781 
782 	bo_mem.mem_type = TTM_PL_TT;
783 	spin_lock(&adev->gtt_list_lock);
784 	list_for_each_entry_safe(gtt, tmp, &adev->gtt_list, list) {
785 		flags = amdgpu_ttm_tt_pte_flags(gtt->adev, &gtt->ttm.ttm, &bo_mem);
786 		r = amdgpu_gart_bind(adev, gtt->offset, gtt->ttm.ttm.num_pages,
787 				     gtt->ttm.ttm.pages, gtt->ttm.dma_address,
788 				     flags);
789 		if (r) {
790 			spin_unlock(&adev->gtt_list_lock);
791 			DRM_ERROR("failed to bind %lu pages at 0x%08llX\n",
792 				  gtt->ttm.ttm.num_pages, gtt->offset);
793 			return r;
794 		}
795 	}
796 	spin_unlock(&adev->gtt_list_lock);
797 	return 0;
798 }
799 
800 static int amdgpu_ttm_backend_unbind(struct ttm_tt *ttm)
801 {
802 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
803 
804 	if (gtt->userptr)
805 		amdgpu_ttm_tt_unpin_userptr(ttm);
806 
807 	if (!amdgpu_ttm_is_bound(ttm))
808 		return 0;
809 
810 	/* unbind shouldn't be done for GDS/GWS/OA in ttm_bo_clean_mm */
811 	if (gtt->adev->gart.ready)
812 		amdgpu_gart_unbind(gtt->adev, gtt->offset, ttm->num_pages);
813 
814 	spin_lock(&gtt->adev->gtt_list_lock);
815 	list_del_init(&gtt->list);
816 	spin_unlock(&gtt->adev->gtt_list_lock);
817 
818 	return 0;
819 }
820 
821 static void amdgpu_ttm_backend_destroy(struct ttm_tt *ttm)
822 {
823 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
824 
825 	ttm_dma_tt_fini(&gtt->ttm);
826 	kfree(gtt);
827 }
828 
829 static struct ttm_backend_func amdgpu_backend_func = {
830 	.bind = &amdgpu_ttm_backend_bind,
831 	.unbind = &amdgpu_ttm_backend_unbind,
832 	.destroy = &amdgpu_ttm_backend_destroy,
833 };
834 
835 static struct ttm_tt *amdgpu_ttm_tt_create(struct ttm_bo_device *bdev,
836 				    unsigned long size, uint32_t page_flags,
837 				    struct page *dummy_read_page)
838 {
839 	struct amdgpu_device *adev;
840 	struct amdgpu_ttm_tt *gtt;
841 
842 	adev = amdgpu_ttm_adev(bdev);
843 
844 	gtt = kzalloc(sizeof(struct amdgpu_ttm_tt), GFP_KERNEL);
845 	if (gtt == NULL) {
846 		return NULL;
847 	}
848 	gtt->ttm.ttm.func = &amdgpu_backend_func;
849 	gtt->adev = adev;
850 	if (ttm_dma_tt_init(&gtt->ttm, bdev, size, page_flags, dummy_read_page)) {
851 		kfree(gtt);
852 		return NULL;
853 	}
854 	INIT_LIST_HEAD(&gtt->list);
855 	return &gtt->ttm.ttm;
856 }
857 
858 static int amdgpu_ttm_tt_populate(struct ttm_tt *ttm)
859 {
860 	struct amdgpu_device *adev;
861 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
862 	unsigned i;
863 	int r;
864 	bool slave = !!(ttm->page_flags & TTM_PAGE_FLAG_SG);
865 
866 	if (ttm->state != tt_unpopulated)
867 		return 0;
868 
869 	if (gtt && gtt->userptr) {
870 		ttm->sg = kzalloc(sizeof(struct sg_table), GFP_KERNEL);
871 		if (!ttm->sg)
872 			return -ENOMEM;
873 
874 		ttm->page_flags |= TTM_PAGE_FLAG_SG;
875 		ttm->state = tt_unbound;
876 		return 0;
877 	}
878 
879 	if (slave && ttm->sg) {
880 		drm_prime_sg_to_page_addr_arrays(ttm->sg, ttm->pages,
881 						 gtt->ttm.dma_address, ttm->num_pages);
882 		ttm->state = tt_unbound;
883 		return 0;
884 	}
885 
886 	adev = amdgpu_ttm_adev(ttm->bdev);
887 
888 #ifdef CONFIG_SWIOTLB
889 	if (swiotlb_nr_tbl()) {
890 		return ttm_dma_populate(&gtt->ttm, adev->dev);
891 	}
892 #endif
893 
894 	r = ttm_pool_populate(ttm);
895 	if (r) {
896 		return r;
897 	}
898 
899 	for (i = 0; i < ttm->num_pages; i++) {
900 		gtt->ttm.dma_address[i] = pci_map_page(adev->pdev, ttm->pages[i],
901 						       0, PAGE_SIZE,
902 						       PCI_DMA_BIDIRECTIONAL);
903 		if (pci_dma_mapping_error(adev->pdev, gtt->ttm.dma_address[i])) {
904 			while (i--) {
905 				pci_unmap_page(adev->pdev, gtt->ttm.dma_address[i],
906 					       PAGE_SIZE, PCI_DMA_BIDIRECTIONAL);
907 				gtt->ttm.dma_address[i] = 0;
908 			}
909 			ttm_pool_unpopulate(ttm);
910 			return -EFAULT;
911 		}
912 	}
913 	return 0;
914 }
915 
916 static void amdgpu_ttm_tt_unpopulate(struct ttm_tt *ttm)
917 {
918 	struct amdgpu_device *adev;
919 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
920 	unsigned i;
921 	bool slave = !!(ttm->page_flags & TTM_PAGE_FLAG_SG);
922 
923 	if (gtt && gtt->userptr) {
924 		kfree(ttm->sg);
925 		ttm->page_flags &= ~TTM_PAGE_FLAG_SG;
926 		return;
927 	}
928 
929 	if (slave)
930 		return;
931 
932 	adev = amdgpu_ttm_adev(ttm->bdev);
933 
934 #ifdef CONFIG_SWIOTLB
935 	if (swiotlb_nr_tbl()) {
936 		ttm_dma_unpopulate(&gtt->ttm, adev->dev);
937 		return;
938 	}
939 #endif
940 
941 	for (i = 0; i < ttm->num_pages; i++) {
942 		if (gtt->ttm.dma_address[i]) {
943 			pci_unmap_page(adev->pdev, gtt->ttm.dma_address[i],
944 				       PAGE_SIZE, PCI_DMA_BIDIRECTIONAL);
945 		}
946 	}
947 
948 	ttm_pool_unpopulate(ttm);
949 }
950 
951 int amdgpu_ttm_tt_set_userptr(struct ttm_tt *ttm, uint64_t addr,
952 			      uint32_t flags)
953 {
954 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
955 
956 	if (gtt == NULL)
957 		return -EINVAL;
958 
959 	gtt->userptr = addr;
960 	gtt->usermm = current->mm;
961 	gtt->userflags = flags;
962 	spin_lock_init(&gtt->guptasklock);
963 	INIT_LIST_HEAD(&gtt->guptasks);
964 	atomic_set(&gtt->mmu_invalidations, 0);
965 
966 	return 0;
967 }
968 
969 struct mm_struct *amdgpu_ttm_tt_get_usermm(struct ttm_tt *ttm)
970 {
971 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
972 
973 	if (gtt == NULL)
974 		return NULL;
975 
976 	return gtt->usermm;
977 }
978 
979 bool amdgpu_ttm_tt_affect_userptr(struct ttm_tt *ttm, unsigned long start,
980 				  unsigned long end)
981 {
982 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
983 	struct amdgpu_ttm_gup_task_list *entry;
984 	unsigned long size;
985 
986 	if (gtt == NULL || !gtt->userptr)
987 		return false;
988 
989 	size = (unsigned long)gtt->ttm.ttm.num_pages * PAGE_SIZE;
990 	if (gtt->userptr > end || gtt->userptr + size <= start)
991 		return false;
992 
993 	spin_lock(&gtt->guptasklock);
994 	list_for_each_entry(entry, &gtt->guptasks, list) {
995 		if (entry->task == current) {
996 			spin_unlock(&gtt->guptasklock);
997 			return false;
998 		}
999 	}
1000 	spin_unlock(&gtt->guptasklock);
1001 
1002 	atomic_inc(&gtt->mmu_invalidations);
1003 
1004 	return true;
1005 }
1006 
1007 bool amdgpu_ttm_tt_userptr_invalidated(struct ttm_tt *ttm,
1008 				       int *last_invalidated)
1009 {
1010 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
1011 	int prev_invalidated = *last_invalidated;
1012 
1013 	*last_invalidated = atomic_read(&gtt->mmu_invalidations);
1014 	return prev_invalidated != *last_invalidated;
1015 }
1016 
1017 bool amdgpu_ttm_tt_is_readonly(struct ttm_tt *ttm)
1018 {
1019 	struct amdgpu_ttm_tt *gtt = (void *)ttm;
1020 
1021 	if (gtt == NULL)
1022 		return false;
1023 
1024 	return !!(gtt->userflags & AMDGPU_GEM_USERPTR_READONLY);
1025 }
1026 
1027 uint32_t amdgpu_ttm_tt_pte_flags(struct amdgpu_device *adev, struct ttm_tt *ttm,
1028 				 struct ttm_mem_reg *mem)
1029 {
1030 	uint32_t flags = 0;
1031 
1032 	if (mem && mem->mem_type != TTM_PL_SYSTEM)
1033 		flags |= AMDGPU_PTE_VALID;
1034 
1035 	if (mem && mem->mem_type == TTM_PL_TT) {
1036 		flags |= AMDGPU_PTE_SYSTEM;
1037 
1038 		if (ttm->caching_state == tt_cached)
1039 			flags |= AMDGPU_PTE_SNOOPED;
1040 	}
1041 
1042 	if (adev->asic_type >= CHIP_TONGA)
1043 		flags |= AMDGPU_PTE_EXECUTABLE;
1044 
1045 	flags |= AMDGPU_PTE_READABLE;
1046 
1047 	if (!amdgpu_ttm_tt_is_readonly(ttm))
1048 		flags |= AMDGPU_PTE_WRITEABLE;
1049 
1050 	return flags;
1051 }
1052 
1053 static bool amdgpu_ttm_bo_eviction_valuable(struct ttm_buffer_object *bo,
1054 					    const struct ttm_place *place)
1055 {
1056 	if (bo->mem.mem_type == TTM_PL_VRAM &&
1057 	    bo->mem.start == AMDGPU_BO_INVALID_OFFSET) {
1058 		unsigned long num_pages = bo->mem.num_pages;
1059 		struct drm_mm_node *node = bo->mem.mm_node;
1060 
1061 		/* Check each drm MM node individually */
1062 		while (num_pages) {
1063 			if (place->fpfn < (node->start + node->size) &&
1064 			    !(place->lpfn && place->lpfn <= node->start))
1065 				return true;
1066 
1067 			num_pages -= node->size;
1068 			++node;
1069 		}
1070 
1071 		return false;
1072 	}
1073 
1074 	return ttm_bo_eviction_valuable(bo, place);
1075 }
1076 
1077 static struct ttm_bo_driver amdgpu_bo_driver = {
1078 	.ttm_tt_create = &amdgpu_ttm_tt_create,
1079 	.ttm_tt_populate = &amdgpu_ttm_tt_populate,
1080 	.ttm_tt_unpopulate = &amdgpu_ttm_tt_unpopulate,
1081 	.invalidate_caches = &amdgpu_invalidate_caches,
1082 	.init_mem_type = &amdgpu_init_mem_type,
1083 	.eviction_valuable = amdgpu_ttm_bo_eviction_valuable,
1084 	.evict_flags = &amdgpu_evict_flags,
1085 	.move = &amdgpu_bo_move,
1086 	.verify_access = &amdgpu_verify_access,
1087 	.move_notify = &amdgpu_bo_move_notify,
1088 	.fault_reserve_notify = &amdgpu_bo_fault_reserve_notify,
1089 	.io_mem_reserve = &amdgpu_ttm_io_mem_reserve,
1090 	.io_mem_free = &amdgpu_ttm_io_mem_free,
1091 };
1092 
1093 int amdgpu_ttm_init(struct amdgpu_device *adev)
1094 {
1095 	int r;
1096 
1097 	r = amdgpu_ttm_global_init(adev);
1098 	if (r) {
1099 		return r;
1100 	}
1101 	/* No others user of address space so set it to 0 */
1102 	r = ttm_bo_device_init(&adev->mman.bdev,
1103 			       adev->mman.bo_global_ref.ref.object,
1104 			       &amdgpu_bo_driver,
1105 			       adev->ddev->anon_inode->i_mapping,
1106 			       DRM_FILE_PAGE_OFFSET,
1107 			       adev->need_dma32);
1108 	if (r) {
1109 		DRM_ERROR("failed initializing buffer object driver(%d).\n", r);
1110 		return r;
1111 	}
1112 	adev->mman.initialized = true;
1113 	r = ttm_bo_init_mm(&adev->mman.bdev, TTM_PL_VRAM,
1114 				adev->mc.real_vram_size >> PAGE_SHIFT);
1115 	if (r) {
1116 		DRM_ERROR("Failed initializing VRAM heap.\n");
1117 		return r;
1118 	}
1119 	/* Change the size here instead of the init above so only lpfn is affected */
1120 	amdgpu_ttm_set_active_vram_size(adev, adev->mc.visible_vram_size);
1121 
1122 	r = amdgpu_bo_create(adev, 256 * 1024, PAGE_SIZE, true,
1123 			     AMDGPU_GEM_DOMAIN_VRAM,
1124 			     AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED |
1125 			     AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS,
1126 			     NULL, NULL, &adev->stollen_vga_memory);
1127 	if (r) {
1128 		return r;
1129 	}
1130 	r = amdgpu_bo_reserve(adev->stollen_vga_memory, false);
1131 	if (r)
1132 		return r;
1133 	r = amdgpu_bo_pin(adev->stollen_vga_memory, AMDGPU_GEM_DOMAIN_VRAM, NULL);
1134 	amdgpu_bo_unreserve(adev->stollen_vga_memory);
1135 	if (r) {
1136 		amdgpu_bo_unref(&adev->stollen_vga_memory);
1137 		return r;
1138 	}
1139 	DRM_INFO("amdgpu: %uM of VRAM memory ready\n",
1140 		 (unsigned) (adev->mc.real_vram_size / (1024 * 1024)));
1141 	r = ttm_bo_init_mm(&adev->mman.bdev, TTM_PL_TT,
1142 				adev->mc.gtt_size >> PAGE_SHIFT);
1143 	if (r) {
1144 		DRM_ERROR("Failed initializing GTT heap.\n");
1145 		return r;
1146 	}
1147 	DRM_INFO("amdgpu: %uM of GTT memory ready.\n",
1148 		 (unsigned)(adev->mc.gtt_size / (1024 * 1024)));
1149 
1150 	adev->gds.mem.total_size = adev->gds.mem.total_size << AMDGPU_GDS_SHIFT;
1151 	adev->gds.mem.gfx_partition_size = adev->gds.mem.gfx_partition_size << AMDGPU_GDS_SHIFT;
1152 	adev->gds.mem.cs_partition_size = adev->gds.mem.cs_partition_size << AMDGPU_GDS_SHIFT;
1153 	adev->gds.gws.total_size = adev->gds.gws.total_size << AMDGPU_GWS_SHIFT;
1154 	adev->gds.gws.gfx_partition_size = adev->gds.gws.gfx_partition_size << AMDGPU_GWS_SHIFT;
1155 	adev->gds.gws.cs_partition_size = adev->gds.gws.cs_partition_size << AMDGPU_GWS_SHIFT;
1156 	adev->gds.oa.total_size = adev->gds.oa.total_size << AMDGPU_OA_SHIFT;
1157 	adev->gds.oa.gfx_partition_size = adev->gds.oa.gfx_partition_size << AMDGPU_OA_SHIFT;
1158 	adev->gds.oa.cs_partition_size = adev->gds.oa.cs_partition_size << AMDGPU_OA_SHIFT;
1159 	/* GDS Memory */
1160 	r = ttm_bo_init_mm(&adev->mman.bdev, AMDGPU_PL_GDS,
1161 				adev->gds.mem.total_size >> PAGE_SHIFT);
1162 	if (r) {
1163 		DRM_ERROR("Failed initializing GDS heap.\n");
1164 		return r;
1165 	}
1166 
1167 	/* GWS */
1168 	r = ttm_bo_init_mm(&adev->mman.bdev, AMDGPU_PL_GWS,
1169 				adev->gds.gws.total_size >> PAGE_SHIFT);
1170 	if (r) {
1171 		DRM_ERROR("Failed initializing gws heap.\n");
1172 		return r;
1173 	}
1174 
1175 	/* OA */
1176 	r = ttm_bo_init_mm(&adev->mman.bdev, AMDGPU_PL_OA,
1177 				adev->gds.oa.total_size >> PAGE_SHIFT);
1178 	if (r) {
1179 		DRM_ERROR("Failed initializing oa heap.\n");
1180 		return r;
1181 	}
1182 
1183 	r = amdgpu_ttm_debugfs_init(adev);
1184 	if (r) {
1185 		DRM_ERROR("Failed to init debugfs\n");
1186 		return r;
1187 	}
1188 	return 0;
1189 }
1190 
1191 void amdgpu_ttm_fini(struct amdgpu_device *adev)
1192 {
1193 	int r;
1194 
1195 	if (!adev->mman.initialized)
1196 		return;
1197 	amdgpu_ttm_debugfs_fini(adev);
1198 	if (adev->stollen_vga_memory) {
1199 		r = amdgpu_bo_reserve(adev->stollen_vga_memory, false);
1200 		if (r == 0) {
1201 			amdgpu_bo_unpin(adev->stollen_vga_memory);
1202 			amdgpu_bo_unreserve(adev->stollen_vga_memory);
1203 		}
1204 		amdgpu_bo_unref(&adev->stollen_vga_memory);
1205 	}
1206 	ttm_bo_clean_mm(&adev->mman.bdev, TTM_PL_VRAM);
1207 	ttm_bo_clean_mm(&adev->mman.bdev, TTM_PL_TT);
1208 	ttm_bo_clean_mm(&adev->mman.bdev, AMDGPU_PL_GDS);
1209 	ttm_bo_clean_mm(&adev->mman.bdev, AMDGPU_PL_GWS);
1210 	ttm_bo_clean_mm(&adev->mman.bdev, AMDGPU_PL_OA);
1211 	ttm_bo_device_release(&adev->mman.bdev);
1212 	amdgpu_gart_fini(adev);
1213 	amdgpu_ttm_global_fini(adev);
1214 	adev->mman.initialized = false;
1215 	DRM_INFO("amdgpu: ttm finalized\n");
1216 }
1217 
1218 /* this should only be called at bootup or when userspace
1219  * isn't running */
1220 void amdgpu_ttm_set_active_vram_size(struct amdgpu_device *adev, u64 size)
1221 {
1222 	struct ttm_mem_type_manager *man;
1223 
1224 	if (!adev->mman.initialized)
1225 		return;
1226 
1227 	man = &adev->mman.bdev.man[TTM_PL_VRAM];
1228 	/* this just adjusts TTM size idea, which sets lpfn to the correct value */
1229 	man->size = size >> PAGE_SHIFT;
1230 }
1231 
1232 int amdgpu_mmap(struct file *filp, struct vm_area_struct *vma)
1233 {
1234 	struct drm_file *file_priv;
1235 	struct amdgpu_device *adev;
1236 
1237 	if (unlikely(vma->vm_pgoff < DRM_FILE_PAGE_OFFSET))
1238 		return -EINVAL;
1239 
1240 	file_priv = filp->private_data;
1241 	adev = file_priv->minor->dev->dev_private;
1242 	if (adev == NULL)
1243 		return -EINVAL;
1244 
1245 	return ttm_bo_mmap(filp, vma, &adev->mman.bdev);
1246 }
1247 
1248 int amdgpu_copy_buffer(struct amdgpu_ring *ring,
1249 		       uint64_t src_offset,
1250 		       uint64_t dst_offset,
1251 		       uint32_t byte_count,
1252 		       struct reservation_object *resv,
1253 		       struct dma_fence **fence, bool direct_submit)
1254 {
1255 	struct amdgpu_device *adev = ring->adev;
1256 	struct amdgpu_job *job;
1257 
1258 	uint32_t max_bytes;
1259 	unsigned num_loops, num_dw;
1260 	unsigned i;
1261 	int r;
1262 
1263 	max_bytes = adev->mman.buffer_funcs->copy_max_bytes;
1264 	num_loops = DIV_ROUND_UP(byte_count, max_bytes);
1265 	num_dw = num_loops * adev->mman.buffer_funcs->copy_num_dw;
1266 
1267 	/* for IB padding */
1268 	while (num_dw & 0x7)
1269 		num_dw++;
1270 
1271 	r = amdgpu_job_alloc_with_ib(adev, num_dw * 4, &job);
1272 	if (r)
1273 		return r;
1274 
1275 	if (resv) {
1276 		r = amdgpu_sync_resv(adev, &job->sync, resv,
1277 				     AMDGPU_FENCE_OWNER_UNDEFINED);
1278 		if (r) {
1279 			DRM_ERROR("sync failed (%d).\n", r);
1280 			goto error_free;
1281 		}
1282 	}
1283 
1284 	for (i = 0; i < num_loops; i++) {
1285 		uint32_t cur_size_in_bytes = min(byte_count, max_bytes);
1286 
1287 		amdgpu_emit_copy_buffer(adev, &job->ibs[0], src_offset,
1288 					dst_offset, cur_size_in_bytes);
1289 
1290 		src_offset += cur_size_in_bytes;
1291 		dst_offset += cur_size_in_bytes;
1292 		byte_count -= cur_size_in_bytes;
1293 	}
1294 
1295 	amdgpu_ring_pad_ib(ring, &job->ibs[0]);
1296 	WARN_ON(job->ibs[0].length_dw > num_dw);
1297 	if (direct_submit) {
1298 		r = amdgpu_ib_schedule(ring, job->num_ibs, job->ibs,
1299 				       NULL, fence);
1300 		job->fence = dma_fence_get(*fence);
1301 		if (r)
1302 			DRM_ERROR("Error scheduling IBs (%d)\n", r);
1303 		amdgpu_job_free(job);
1304 	} else {
1305 		r = amdgpu_job_submit(job, ring, &adev->mman.entity,
1306 				      AMDGPU_FENCE_OWNER_UNDEFINED, fence);
1307 		if (r)
1308 			goto error_free;
1309 	}
1310 
1311 	return r;
1312 
1313 error_free:
1314 	amdgpu_job_free(job);
1315 	return r;
1316 }
1317 
1318 int amdgpu_fill_buffer(struct amdgpu_bo *bo,
1319 		       uint32_t src_data,
1320 		       struct reservation_object *resv,
1321 		       struct dma_fence **fence)
1322 {
1323 	struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev);
1324 	uint32_t max_bytes = adev->mman.buffer_funcs->fill_max_bytes;
1325 	struct amdgpu_ring *ring = adev->mman.buffer_funcs_ring;
1326 
1327 	struct drm_mm_node *mm_node;
1328 	unsigned long num_pages;
1329 	unsigned int num_loops, num_dw;
1330 
1331 	struct amdgpu_job *job;
1332 	int r;
1333 
1334 	if (!ring->ready) {
1335 		DRM_ERROR("Trying to clear memory with ring turned off.\n");
1336 		return -EINVAL;
1337 	}
1338 
1339 	num_pages = bo->tbo.num_pages;
1340 	mm_node = bo->tbo.mem.mm_node;
1341 	num_loops = 0;
1342 	while (num_pages) {
1343 		uint32_t byte_count = mm_node->size << PAGE_SHIFT;
1344 
1345 		num_loops += DIV_ROUND_UP(byte_count, max_bytes);
1346 		num_pages -= mm_node->size;
1347 		++mm_node;
1348 	}
1349 	num_dw = num_loops * adev->mman.buffer_funcs->fill_num_dw;
1350 
1351 	/* for IB padding */
1352 	num_dw += 64;
1353 
1354 	r = amdgpu_job_alloc_with_ib(adev, num_dw * 4, &job);
1355 	if (r)
1356 		return r;
1357 
1358 	if (resv) {
1359 		r = amdgpu_sync_resv(adev, &job->sync, resv,
1360 				     AMDGPU_FENCE_OWNER_UNDEFINED);
1361 		if (r) {
1362 			DRM_ERROR("sync failed (%d).\n", r);
1363 			goto error_free;
1364 		}
1365 	}
1366 
1367 	num_pages = bo->tbo.num_pages;
1368 	mm_node = bo->tbo.mem.mm_node;
1369 
1370 	while (num_pages) {
1371 		uint32_t byte_count = mm_node->size << PAGE_SHIFT;
1372 		uint64_t dst_addr;
1373 
1374 		r = amdgpu_mm_node_addr(&bo->tbo, mm_node,
1375 					&bo->tbo.mem, &dst_addr);
1376 		if (r)
1377 			return r;
1378 
1379 		while (byte_count) {
1380 			uint32_t cur_size_in_bytes = min(byte_count, max_bytes);
1381 
1382 			amdgpu_emit_fill_buffer(adev, &job->ibs[0], src_data,
1383 						dst_addr, cur_size_in_bytes);
1384 
1385 			dst_addr += cur_size_in_bytes;
1386 			byte_count -= cur_size_in_bytes;
1387 		}
1388 
1389 		num_pages -= mm_node->size;
1390 		++mm_node;
1391 	}
1392 
1393 	amdgpu_ring_pad_ib(ring, &job->ibs[0]);
1394 	WARN_ON(job->ibs[0].length_dw > num_dw);
1395 	r = amdgpu_job_submit(job, ring, &adev->mman.entity,
1396 			      AMDGPU_FENCE_OWNER_UNDEFINED, fence);
1397 	if (r)
1398 		goto error_free;
1399 
1400 	return 0;
1401 
1402 error_free:
1403 	amdgpu_job_free(job);
1404 	return r;
1405 }
1406 
1407 #if defined(CONFIG_DEBUG_FS)
1408 
1409 static int amdgpu_mm_dump_table(struct seq_file *m, void *data)
1410 {
1411 	struct drm_info_node *node = (struct drm_info_node *)m->private;
1412 	unsigned ttm_pl = *(int *)node->info_ent->data;
1413 	struct drm_device *dev = node->minor->dev;
1414 	struct amdgpu_device *adev = dev->dev_private;
1415 	struct drm_mm *mm = (struct drm_mm *)adev->mman.bdev.man[ttm_pl].priv;
1416 	struct ttm_bo_global *glob = adev->mman.bdev.glob;
1417 	struct drm_printer p = drm_seq_file_printer(m);
1418 
1419 	spin_lock(&glob->lru_lock);
1420 	drm_mm_print(mm, &p);
1421 	spin_unlock(&glob->lru_lock);
1422 	if (ttm_pl == TTM_PL_VRAM)
1423 		seq_printf(m, "man size:%llu pages, ram usage:%lluMB, vis usage:%lluMB\n",
1424 			   adev->mman.bdev.man[ttm_pl].size,
1425 			   (u64)atomic64_read(&adev->vram_usage) >> 20,
1426 			   (u64)atomic64_read(&adev->vram_vis_usage) >> 20);
1427 	return 0;
1428 }
1429 
1430 static int ttm_pl_vram = TTM_PL_VRAM;
1431 static int ttm_pl_tt = TTM_PL_TT;
1432 
1433 static const struct drm_info_list amdgpu_ttm_debugfs_list[] = {
1434 	{"amdgpu_vram_mm", amdgpu_mm_dump_table, 0, &ttm_pl_vram},
1435 	{"amdgpu_gtt_mm", amdgpu_mm_dump_table, 0, &ttm_pl_tt},
1436 	{"ttm_page_pool", ttm_page_alloc_debugfs, 0, NULL},
1437 #ifdef CONFIG_SWIOTLB
1438 	{"ttm_dma_page_pool", ttm_dma_page_alloc_debugfs, 0, NULL}
1439 #endif
1440 };
1441 
1442 static ssize_t amdgpu_ttm_vram_read(struct file *f, char __user *buf,
1443 				    size_t size, loff_t *pos)
1444 {
1445 	struct amdgpu_device *adev = file_inode(f)->i_private;
1446 	ssize_t result = 0;
1447 	int r;
1448 
1449 	if (size & 0x3 || *pos & 0x3)
1450 		return -EINVAL;
1451 
1452 	while (size) {
1453 		unsigned long flags;
1454 		uint32_t value;
1455 
1456 		if (*pos >= adev->mc.mc_vram_size)
1457 			return result;
1458 
1459 		spin_lock_irqsave(&adev->mmio_idx_lock, flags);
1460 		WREG32(mmMM_INDEX, ((uint32_t)*pos) | 0x80000000);
1461 		WREG32(mmMM_INDEX_HI, *pos >> 31);
1462 		value = RREG32(mmMM_DATA);
1463 		spin_unlock_irqrestore(&adev->mmio_idx_lock, flags);
1464 
1465 		r = put_user(value, (uint32_t *)buf);
1466 		if (r)
1467 			return r;
1468 
1469 		result += 4;
1470 		buf += 4;
1471 		*pos += 4;
1472 		size -= 4;
1473 	}
1474 
1475 	return result;
1476 }
1477 
1478 static const struct file_operations amdgpu_ttm_vram_fops = {
1479 	.owner = THIS_MODULE,
1480 	.read = amdgpu_ttm_vram_read,
1481 	.llseek = default_llseek
1482 };
1483 
1484 #ifdef CONFIG_DRM_AMDGPU_GART_DEBUGFS
1485 
1486 static ssize_t amdgpu_ttm_gtt_read(struct file *f, char __user *buf,
1487 				   size_t size, loff_t *pos)
1488 {
1489 	struct amdgpu_device *adev = file_inode(f)->i_private;
1490 	ssize_t result = 0;
1491 	int r;
1492 
1493 	while (size) {
1494 		loff_t p = *pos / PAGE_SIZE;
1495 		unsigned off = *pos & ~PAGE_MASK;
1496 		size_t cur_size = min_t(size_t, size, PAGE_SIZE - off);
1497 		struct page *page;
1498 		void *ptr;
1499 
1500 		if (p >= adev->gart.num_cpu_pages)
1501 			return result;
1502 
1503 		page = adev->gart.pages[p];
1504 		if (page) {
1505 			ptr = kmap(page);
1506 			ptr += off;
1507 
1508 			r = copy_to_user(buf, ptr, cur_size);
1509 			kunmap(adev->gart.pages[p]);
1510 		} else
1511 			r = clear_user(buf, cur_size);
1512 
1513 		if (r)
1514 			return -EFAULT;
1515 
1516 		result += cur_size;
1517 		buf += cur_size;
1518 		*pos += cur_size;
1519 		size -= cur_size;
1520 	}
1521 
1522 	return result;
1523 }
1524 
1525 static const struct file_operations amdgpu_ttm_gtt_fops = {
1526 	.owner = THIS_MODULE,
1527 	.read = amdgpu_ttm_gtt_read,
1528 	.llseek = default_llseek
1529 };
1530 
1531 #endif
1532 
1533 #endif
1534 
1535 static int amdgpu_ttm_debugfs_init(struct amdgpu_device *adev)
1536 {
1537 #if defined(CONFIG_DEBUG_FS)
1538 	unsigned count;
1539 
1540 	struct drm_minor *minor = adev->ddev->primary;
1541 	struct dentry *ent, *root = minor->debugfs_root;
1542 
1543 	ent = debugfs_create_file("amdgpu_vram", S_IFREG | S_IRUGO, root,
1544 				  adev, &amdgpu_ttm_vram_fops);
1545 	if (IS_ERR(ent))
1546 		return PTR_ERR(ent);
1547 	i_size_write(ent->d_inode, adev->mc.mc_vram_size);
1548 	adev->mman.vram = ent;
1549 
1550 #ifdef CONFIG_DRM_AMDGPU_GART_DEBUGFS
1551 	ent = debugfs_create_file("amdgpu_gtt", S_IFREG | S_IRUGO, root,
1552 				  adev, &amdgpu_ttm_gtt_fops);
1553 	if (IS_ERR(ent))
1554 		return PTR_ERR(ent);
1555 	i_size_write(ent->d_inode, adev->mc.gtt_size);
1556 	adev->mman.gtt = ent;
1557 
1558 #endif
1559 	count = ARRAY_SIZE(amdgpu_ttm_debugfs_list);
1560 
1561 #ifdef CONFIG_SWIOTLB
1562 	if (!swiotlb_nr_tbl())
1563 		--count;
1564 #endif
1565 
1566 	return amdgpu_debugfs_add_files(adev, amdgpu_ttm_debugfs_list, count);
1567 #else
1568 
1569 	return 0;
1570 #endif
1571 }
1572 
1573 static void amdgpu_ttm_debugfs_fini(struct amdgpu_device *adev)
1574 {
1575 #if defined(CONFIG_DEBUG_FS)
1576 
1577 	debugfs_remove(adev->mman.vram);
1578 	adev->mman.vram = NULL;
1579 
1580 #ifdef CONFIG_DRM_AMDGPU_GART_DEBUGFS
1581 	debugfs_remove(adev->mman.gtt);
1582 	adev->mman.gtt = NULL;
1583 #endif
1584 
1585 #endif
1586 }
1587