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1404 serge 1
/**************************************************************************
2
 *
3
 * Copyright (c) 2006-2009 VMware, Inc., Palo Alto, CA., USA
4
 * All Rights Reserved.
5
 *
6
 * Permission is hereby granted, free of charge, to any person obtaining a
7
 * copy of this software and associated documentation files (the
8
 * "Software"), to deal in the Software without restriction, including
9
 * without limitation the rights to use, copy, modify, merge, publish,
10
 * distribute, sub license, and/or sell copies of the Software, and to
11
 * permit persons to whom the Software is furnished to do so, subject to
12
 * the following conditions:
13
 *
14
 * The above copyright notice and this permission notice (including the
15
 * next paragraph) shall be included in all copies or substantial portions
16
 * of the Software.
17
 *
18
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20
 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
21
 * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
22
 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
23
 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
24
 * USE OR OTHER DEALINGS IN THE SOFTWARE.
25
 *
26
 **************************************************************************/
27
/*
28
 * Authors: Thomas Hellstrom 
29
 */
4075 Serge 30
 
31
#define pr_fmt(fmt) "[TTM] " fmt
32
 
33
#include 
34
#include 
35
#include 
36
#include 
37
#include 
38
#include 
39
#include 
5271 serge 40
#include 
4075 Serge 41
#include 
5271 serge 42
#include 
43
#include 
4075 Serge 44
 
4112 Serge 45
#define TTM_ASSERT_LOCKED(param)
46
#define TTM_DEBUG(fmt, arg...)
47
#define TTM_BO_HASH_ORDER 13
48
 
4075 Serge 49
 
5078 serge 50
 
5271 serge 51
static inline int ttm_mem_type_from_place(const struct ttm_place *place,
52
					  uint32_t *mem_type)
4075 Serge 53
{
5078 serge 54
	int i;
4075 Serge 55
 
5078 serge 56
	for (i = 0; i <= TTM_PL_PRIV5; i++)
5271 serge 57
		if (place->flags & (1 << i)) {
5078 serge 58
			*mem_type = i;
5271 serge 59
			return 0;
5078 serge 60
		}
61
	return -EINVAL;
4075 Serge 62
}
63
 
64
 
65
 
66
 
67
 
68
 
69
 
70
 
71
 
72
static inline uint32_t ttm_bo_type_flags(unsigned type)
73
{
74
	return 1 << (type);
75
}
76
 
77
static void ttm_bo_release_list(struct kref *list_kref)
78
{
79
	struct ttm_buffer_object *bo =
80
	    container_of(list_kref, struct ttm_buffer_object, list_kref);
81
	struct ttm_bo_device *bdev = bo->bdev;
82
	size_t acc_size = bo->acc_size;
83
 
84
	BUG_ON(atomic_read(&bo->list_kref.refcount));
85
	BUG_ON(atomic_read(&bo->kref.refcount));
86
	BUG_ON(atomic_read(&bo->cpu_writers));
87
	BUG_ON(bo->mem.mm_node != NULL);
88
	BUG_ON(!list_empty(&bo->lru));
89
	BUG_ON(!list_empty(&bo->ddestroy));
90
 
91
	if (bo->ttm)
92
		ttm_tt_destroy(bo->ttm);
93
	atomic_dec(&bo->glob->bo_count);
5078 serge 94
	if (bo->resv == &bo->ttm_resv)
95
		reservation_object_fini(&bo->ttm_resv);
96
	mutex_destroy(&bo->wu_mutex);
4075 Serge 97
	if (bo->destroy)
98
		bo->destroy(bo);
99
	else {
100
		kfree(bo);
101
	}
102
}
103
 
104
void ttm_bo_add_to_lru(struct ttm_buffer_object *bo)
105
{
106
	struct ttm_bo_device *bdev = bo->bdev;
107
	struct ttm_mem_type_manager *man;
108
 
5078 serge 109
	lockdep_assert_held(&bo->resv->lock.base);
4075 Serge 110
 
111
	if (!(bo->mem.placement & TTM_PL_FLAG_NO_EVICT)) {
112
 
113
		BUG_ON(!list_empty(&bo->lru));
114
 
115
		man = &bdev->man[bo->mem.mem_type];
116
		list_add_tail(&bo->lru, &man->lru);
117
		kref_get(&bo->list_kref);
118
 
6938 serge 119
		if (bo->ttm && !(bo->ttm->page_flags & TTM_PAGE_FLAG_SG)) {
4075 Serge 120
			list_add_tail(&bo->swap, &bo->glob->swap_lru);
121
			kref_get(&bo->list_kref);
122
		}
123
	}
124
}
125
EXPORT_SYMBOL(ttm_bo_add_to_lru);
126
 
127
int ttm_bo_del_from_lru(struct ttm_buffer_object *bo)
128
{
129
	int put_count = 0;
130
 
131
	if (!list_empty(&bo->swap)) {
132
		list_del_init(&bo->swap);
133
		++put_count;
134
	}
135
	if (!list_empty(&bo->lru)) {
136
		list_del_init(&bo->lru);
137
		++put_count;
138
	}
139
 
140
	/*
141
	 * TODO: Add a driver hook to delete from
142
	 * driver-specific LRU's here.
143
	 */
144
 
145
	return put_count;
146
}
147
 
148
static void ttm_bo_ref_bug(struct kref *list_kref)
149
{
150
	BUG();
151
}
152
 
153
void ttm_bo_list_ref_sub(struct ttm_buffer_object *bo, int count,
154
			 bool never_free)
155
{
6296 serge 156
	kref_sub(&bo->list_kref, count,
157
		 (never_free) ? ttm_bo_ref_bug : ttm_bo_release_list);
4075 Serge 158
}
159
 
160
void ttm_bo_del_sub_from_lru(struct ttm_buffer_object *bo)
161
{
162
	int put_count;
163
 
164
	spin_lock(&bo->glob->lru_lock);
165
	put_count = ttm_bo_del_from_lru(bo);
166
	spin_unlock(&bo->glob->lru_lock);
167
	ttm_bo_list_ref_sub(bo, put_count, true);
168
}
169
EXPORT_SYMBOL(ttm_bo_del_sub_from_lru);
170
 
171
/*
172
 * Call bo->mutex locked.
173
 */
174
static int ttm_bo_add_ttm(struct ttm_buffer_object *bo, bool zero_alloc)
175
{
176
	struct ttm_bo_device *bdev = bo->bdev;
177
	struct ttm_bo_global *glob = bo->glob;
178
	int ret = 0;
179
	uint32_t page_flags = 0;
180
 
4112 Serge 181
	TTM_ASSERT_LOCKED(&bo->mutex);
4075 Serge 182
	bo->ttm = NULL;
183
 
184
	if (bdev->need_dma32)
185
		page_flags |= TTM_PAGE_FLAG_DMA32;
186
 
187
	switch (bo->type) {
188
	case ttm_bo_type_device:
189
		if (zero_alloc)
190
			page_flags |= TTM_PAGE_FLAG_ZERO_ALLOC;
191
	case ttm_bo_type_kernel:
192
		bo->ttm = bdev->driver->ttm_tt_create(bdev, bo->num_pages << PAGE_SHIFT,
193
						      page_flags, glob->dummy_read_page);
194
		if (unlikely(bo->ttm == NULL))
195
			ret = -ENOMEM;
196
		break;
197
	case ttm_bo_type_sg:
198
		bo->ttm = bdev->driver->ttm_tt_create(bdev, bo->num_pages << PAGE_SHIFT,
199
						      page_flags | TTM_PAGE_FLAG_SG,
200
						      glob->dummy_read_page);
201
		if (unlikely(bo->ttm == NULL)) {
202
			ret = -ENOMEM;
203
			break;
204
		}
205
		bo->ttm->sg = bo->sg;
206
		break;
207
	default:
208
		pr_err("Illegal buffer object type\n");
209
		ret = -EINVAL;
210
		break;
211
	}
212
 
213
	return ret;
214
}
215
 
216
static int ttm_bo_handle_move_mem(struct ttm_buffer_object *bo,
217
				  struct ttm_mem_reg *mem,
218
				  bool evict, bool interruptible,
219
				  bool no_wait_gpu)
220
{
221
	struct ttm_bo_device *bdev = bo->bdev;
222
	bool old_is_pci = ttm_mem_reg_is_pci(bdev, &bo->mem);
223
	bool new_is_pci = ttm_mem_reg_is_pci(bdev, mem);
224
	struct ttm_mem_type_manager *old_man = &bdev->man[bo->mem.mem_type];
225
	struct ttm_mem_type_manager *new_man = &bdev->man[mem->mem_type];
226
	int ret = 0;
227
 
228
	if (old_is_pci || new_is_pci ||
229
	    ((mem->placement & bo->mem.placement & TTM_PL_MASK_CACHING) == 0)) {
230
		ret = ttm_mem_io_lock(old_man, true);
231
		if (unlikely(ret != 0))
232
			goto out_err;
233
		ttm_bo_unmap_virtual_locked(bo);
234
		ttm_mem_io_unlock(old_man);
235
	}
236
 
237
	/*
238
	 * Create and bind a ttm if required.
239
	 */
240
 
241
	if (!(new_man->flags & TTM_MEMTYPE_FLAG_FIXED)) {
242
		if (bo->ttm == NULL) {
243
			bool zero = !(old_man->flags & TTM_MEMTYPE_FLAG_FIXED);
244
			ret = ttm_bo_add_ttm(bo, zero);
245
			if (ret)
246
				goto out_err;
247
		}
248
 
249
		ret = ttm_tt_set_placement_caching(bo->ttm, mem->placement);
250
		if (ret)
251
			goto out_err;
252
 
253
		if (mem->mem_type != TTM_PL_SYSTEM) {
254
			ret = ttm_tt_bind(bo->ttm, mem);
255
			if (ret)
256
				goto out_err;
257
		}
258
 
259
		if (bo->mem.mem_type == TTM_PL_SYSTEM) {
260
			if (bdev->driver->move_notify)
261
				bdev->driver->move_notify(bo, mem);
262
			bo->mem = *mem;
263
			mem->mm_node = NULL;
264
			goto moved;
265
		}
266
	}
267
 
268
	if (bdev->driver->move_notify)
269
		bdev->driver->move_notify(bo, mem);
270
 
271
	if (!(old_man->flags & TTM_MEMTYPE_FLAG_FIXED) &&
272
	    !(new_man->flags & TTM_MEMTYPE_FLAG_FIXED))
273
		ret = ttm_bo_move_ttm(bo, evict, no_wait_gpu, mem);
274
	else if (bdev->driver->move)
275
		ret = bdev->driver->move(bo, evict, interruptible,
276
					 no_wait_gpu, mem);
277
	else
278
		ret = ttm_bo_move_memcpy(bo, evict, no_wait_gpu, mem);
279
 
280
	if (ret) {
281
		if (bdev->driver->move_notify) {
282
			struct ttm_mem_reg tmp_mem = *mem;
283
			*mem = bo->mem;
284
			bo->mem = tmp_mem;
285
			bdev->driver->move_notify(bo, mem);
286
			bo->mem = *mem;
287
			*mem = tmp_mem;
288
		}
289
 
290
		goto out_err;
291
	}
292
 
293
moved:
294
	if (bo->evicted) {
5078 serge 295
		if (bdev->driver->invalidate_caches) {
5271 serge 296
			ret = bdev->driver->invalidate_caches(bdev, bo->mem.placement);
297
			if (ret)
298
				pr_err("Can not flush read caches\n");
5078 serge 299
		}
4075 Serge 300
		bo->evicted = false;
301
	}
302
 
303
	if (bo->mem.mm_node) {
304
		bo->offset = (bo->mem.start << PAGE_SHIFT) +
305
		    bdev->man[bo->mem.mem_type].gpu_offset;
306
		bo->cur_placement = bo->mem.placement;
307
	} else
308
		bo->offset = 0;
309
 
310
	return 0;
311
 
312
out_err:
313
	new_man = &bdev->man[bo->mem.mem_type];
314
	if ((new_man->flags & TTM_MEMTYPE_FLAG_FIXED) && bo->ttm) {
315
		ttm_tt_unbind(bo->ttm);
316
		ttm_tt_destroy(bo->ttm);
317
		bo->ttm = NULL;
318
	}
319
 
320
	return ret;
321
}
322
 
323
/**
324
 * Call bo::reserved.
325
 * Will release GPU memory type usage on destruction.
326
 * This is the place to put in driver specific hooks to release
327
 * driver private resources.
328
 * Will release the bo::reserved lock.
329
 */
330
 
331
static void ttm_bo_cleanup_memtype_use(struct ttm_buffer_object *bo)
332
{
333
	if (bo->bdev->driver->move_notify)
334
		bo->bdev->driver->move_notify(bo, NULL);
335
 
336
	if (bo->ttm) {
337
		ttm_tt_unbind(bo->ttm);
338
		ttm_tt_destroy(bo->ttm);
339
		bo->ttm = NULL;
340
	}
341
	ttm_bo_mem_put(bo, &bo->mem);
342
 
343
	ww_mutex_unlock (&bo->resv->lock);
344
}
345
 
5271 serge 346
static void ttm_bo_flush_all_fences(struct ttm_buffer_object *bo)
347
{
348
	struct reservation_object_list *fobj;
349
	struct fence *fence;
350
	int i;
351
 
352
	fobj = reservation_object_get_list(bo->resv);
353
	fence = reservation_object_get_excl(bo->resv);
354
	if (fence && !fence->ops->signaled)
355
		fence_enable_sw_signaling(fence);
356
 
357
	for (i = 0; fobj && i < fobj->shared_count; ++i) {
358
		fence = rcu_dereference_protected(fobj->shared[i],
359
					reservation_object_held(bo->resv));
360
 
361
		if (!fence->ops->signaled)
362
			fence_enable_sw_signaling(fence);
363
	}
364
}
365
 
4075 Serge 366
static void ttm_bo_cleanup_refs_or_queue(struct ttm_buffer_object *bo)
367
{
368
	struct ttm_bo_device *bdev = bo->bdev;
369
	struct ttm_bo_global *glob = bo->glob;
370
	int put_count;
371
	int ret;
372
 
373
	spin_lock(&glob->lru_lock);
5078 serge 374
	ret = __ttm_bo_reserve(bo, false, true, false, NULL);
4075 Serge 375
 
5271 serge 376
	if (!ret) {
377
		if (!ttm_bo_wait(bo, false, false, true)) {
6104 serge 378
			put_count = ttm_bo_del_from_lru(bo);
4075 Serge 379
 
6104 serge 380
			spin_unlock(&glob->lru_lock);
381
			ttm_bo_cleanup_memtype_use(bo);
4075 Serge 382
 
6104 serge 383
			ttm_bo_list_ref_sub(bo, put_count, true);
4075 Serge 384
 
6104 serge 385
			return;
5271 serge 386
		} else
387
			ttm_bo_flush_all_fences(bo);
4075 Serge 388
 
4569 Serge 389
		/*
390
		 * Make NO_EVICT bos immediately available to
391
		 * shrinkers, now that they are queued for
392
		 * destruction.
393
		 */
394
		if (bo->mem.placement & TTM_PL_FLAG_NO_EVICT) {
395
			bo->mem.placement &= ~TTM_PL_FLAG_NO_EVICT;
396
			ttm_bo_add_to_lru(bo);
397
		}
398
 
5078 serge 399
		__ttm_bo_unreserve(bo);
4569 Serge 400
	}
4075 Serge 401
 
402
	kref_get(&bo->list_kref);
403
	list_add_tail(&bo->ddestroy, &bdev->ddestroy);
404
	spin_unlock(&glob->lru_lock);
405
 
5078 serge 406
//	schedule_delayed_work(&bdev->wq,
407
//			      ((HZ / 100) < 1) ? 1 : HZ / 100);
4075 Serge 408
}
409
 
410
/**
411
 * function ttm_bo_cleanup_refs_and_unlock
412
 * If bo idle, remove from delayed- and lru lists, and unref.
413
 * If not idle, do nothing.
1404 serge 414
 *
4075 Serge 415
 * Must be called with lru_lock and reservation held, this function
416
 * will drop both before returning.
417
 *
418
 * @interruptible         Any sleeps should occur interruptibly.
419
 * @no_wait_gpu           Never wait for gpu. Return -EBUSY instead.
1404 serge 420
 */
421
 
4075 Serge 422
static int ttm_bo_cleanup_refs_and_unlock(struct ttm_buffer_object *bo,
423
					  bool interruptible,
424
					  bool no_wait_gpu)
425
{
426
	struct ttm_bo_global *glob = bo->glob;
427
	int put_count;
428
	int ret;
1404 serge 429
 
4075 Serge 430
	ret = ttm_bo_wait(bo, false, false, true);
1404 serge 431
 
4075 Serge 432
	if (ret && !no_wait_gpu) {
5271 serge 433
		long lret;
434
		ww_mutex_unlock(&bo->resv->lock);
4075 Serge 435
		spin_unlock(&glob->lru_lock);
436
 
5271 serge 437
		lret = reservation_object_wait_timeout_rcu(bo->resv,
438
							   true,
439
							   interruptible,
440
							   30 * HZ);
4075 Serge 441
 
5271 serge 442
		if (lret < 0)
443
			return lret;
444
		else if (lret == 0)
445
			return -EBUSY;
4075 Serge 446
 
447
		spin_lock(&glob->lru_lock);
5078 serge 448
		ret = __ttm_bo_reserve(bo, false, true, false, NULL);
4075 Serge 449
 
450
		/*
451
		 * We raced, and lost, someone else holds the reservation now,
452
		 * and is probably busy in ttm_bo_cleanup_memtype_use.
453
		 *
454
		 * Even if it's not the case, because we finished waiting any
455
		 * delayed destruction would succeed, so just return success
456
		 * here.
457
		 */
458
		if (ret) {
459
			spin_unlock(&glob->lru_lock);
460
			return 0;
461
		}
462
 
5271 serge 463
		/*
464
		 * remove sync_obj with ttm_bo_wait, the wait should be
465
		 * finished, and no new wait object should have been added.
466
		 */
467
		ret = ttm_bo_wait(bo, false, false, true);
468
		WARN_ON(ret);
469
	}
470
 
4075 Serge 471
	if (ret || unlikely(list_empty(&bo->ddestroy))) {
5078 serge 472
		__ttm_bo_unreserve(bo);
4075 Serge 473
		spin_unlock(&glob->lru_lock);
474
		return ret;
475
	}
476
 
477
	put_count = ttm_bo_del_from_lru(bo);
478
	list_del_init(&bo->ddestroy);
479
	++put_count;
480
 
481
	spin_unlock(&glob->lru_lock);
482
	ttm_bo_cleanup_memtype_use(bo);
483
 
484
	ttm_bo_list_ref_sub(bo, put_count, true);
485
 
486
	return 0;
487
}
488
 
489
/**
490
 * Traverse the delayed list, and call ttm_bo_cleanup_refs on all
491
 * encountered buffers.
492
 */
493
 
494
static int ttm_bo_delayed_delete(struct ttm_bo_device *bdev, bool remove_all)
495
{
496
	struct ttm_bo_global *glob = bdev->glob;
497
	struct ttm_buffer_object *entry = NULL;
498
	int ret = 0;
499
 
500
	spin_lock(&glob->lru_lock);
501
	if (list_empty(&bdev->ddestroy))
502
		goto out_unlock;
503
 
504
	entry = list_first_entry(&bdev->ddestroy,
505
		struct ttm_buffer_object, ddestroy);
506
	kref_get(&entry->list_kref);
507
 
508
	for (;;) {
509
		struct ttm_buffer_object *nentry = NULL;
510
 
511
		if (entry->ddestroy.next != &bdev->ddestroy) {
512
			nentry = list_first_entry(&entry->ddestroy,
513
				struct ttm_buffer_object, ddestroy);
514
			kref_get(&nentry->list_kref);
515
		}
516
 
5078 serge 517
		ret = __ttm_bo_reserve(entry, false, true, false, NULL);
4075 Serge 518
		if (remove_all && ret) {
519
			spin_unlock(&glob->lru_lock);
5078 serge 520
			ret = __ttm_bo_reserve(entry, false, false,
521
					       false, NULL);
4075 Serge 522
			spin_lock(&glob->lru_lock);
523
		}
524
 
525
		if (!ret)
526
			ret = ttm_bo_cleanup_refs_and_unlock(entry, false,
527
							     !remove_all);
528
		else
529
			spin_unlock(&glob->lru_lock);
530
 
531
		kref_put(&entry->list_kref, ttm_bo_release_list);
532
		entry = nentry;
533
 
534
		if (ret || !entry)
535
			goto out;
536
 
537
		spin_lock(&glob->lru_lock);
538
		if (list_empty(&entry->ddestroy))
539
			break;
540
	}
541
 
542
out_unlock:
543
	spin_unlock(&glob->lru_lock);
544
out:
545
	if (entry)
546
		kref_put(&entry->list_kref, ttm_bo_release_list);
547
	return ret;
548
}
549
 
550
static void ttm_bo_delayed_workqueue(struct work_struct *work)
551
{
552
	struct ttm_bo_device *bdev =
553
	    container_of(work, struct ttm_bo_device, wq.work);
554
 
555
	if (ttm_bo_delayed_delete(bdev, false)) {
556
		schedule_delayed_work(&bdev->wq,
557
				      ((HZ / 100) < 1) ? 1 : HZ / 100);
558
	}
559
}
560
 
561
static void ttm_bo_release(struct kref *kref)
562
{
563
	struct ttm_buffer_object *bo =
564
	    container_of(kref, struct ttm_buffer_object, kref);
565
	struct ttm_bo_device *bdev = bo->bdev;
566
	struct ttm_mem_type_manager *man = &bdev->man[bo->mem.mem_type];
567
 
4112 Serge 568
	drm_vma_offset_remove(&bdev->vma_manager, &bo->vma_node);
4075 Serge 569
	ttm_mem_io_lock(man, false);
5078 serge 570
	ttm_mem_io_free_vm(bo);
4075 Serge 571
	ttm_mem_io_unlock(man);
5078 serge 572
	ttm_bo_cleanup_refs_or_queue(bo);
573
	kref_put(&bo->list_kref, ttm_bo_release_list);
4075 Serge 574
}
575
 
576
void ttm_bo_unref(struct ttm_buffer_object **p_bo)
577
{
578
	struct ttm_buffer_object *bo = *p_bo;
579
 
580
	*p_bo = NULL;
581
	kref_put(&bo->kref, ttm_bo_release);
582
}
583
EXPORT_SYMBOL(ttm_bo_unref);
584
 
585
void ttm_bo_mem_put(struct ttm_buffer_object *bo, struct ttm_mem_reg *mem)
586
{
587
	struct ttm_mem_type_manager *man = &bo->bdev->man[mem->mem_type];
588
 
589
	if (mem->mm_node)
590
		(*man->func->put_node)(man, mem);
591
}
592
EXPORT_SYMBOL(ttm_bo_mem_put);
593
 
594
/**
595
 * Repeatedly evict memory from the LRU for @mem_type until we create enough
596
 * space, or we've evicted everything and there isn't enough space.
597
 */
598
static int ttm_bo_mem_force_space(struct ttm_buffer_object *bo,
599
					uint32_t mem_type,
5271 serge 600
					const struct ttm_place *place,
4075 Serge 601
					struct ttm_mem_reg *mem,
602
					bool interruptible,
603
					bool no_wait_gpu)
604
{
605
	struct ttm_bo_device *bdev = bo->bdev;
606
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];
607
	int ret;
608
 
609
	do {
5271 serge 610
		ret = (*man->func->get_node)(man, bo, place, mem);
4075 Serge 611
		if (unlikely(ret != 0))
612
			return ret;
613
		if (mem->mm_node)
614
			break;
5078 serge 615
//		ret = ttm_mem_evict_first(bdev, mem_type,
616
//					  interruptible, no_wait_gpu);
617
//		if (unlikely(ret != 0))
618
//			return ret;
4075 Serge 619
	} while (1);
620
	if (mem->mm_node == NULL)
621
		return -ENOMEM;
622
	mem->mem_type = mem_type;
623
	return 0;
624
}
625
 
626
static uint32_t ttm_bo_select_caching(struct ttm_mem_type_manager *man,
627
				      uint32_t cur_placement,
628
				      uint32_t proposed_placement)
629
{
630
	uint32_t caching = proposed_placement & TTM_PL_MASK_CACHING;
631
	uint32_t result = proposed_placement & ~TTM_PL_MASK_CACHING;
632
 
633
	/**
634
	 * Keep current caching if possible.
635
	 */
636
 
637
	if ((cur_placement & caching) != 0)
638
		result |= (cur_placement & caching);
639
	else if ((man->default_caching & caching) != 0)
640
		result |= man->default_caching;
641
	else if ((TTM_PL_FLAG_CACHED & caching) != 0)
642
		result |= TTM_PL_FLAG_CACHED;
643
	else if ((TTM_PL_FLAG_WC & caching) != 0)
644
		result |= TTM_PL_FLAG_WC;
645
	else if ((TTM_PL_FLAG_UNCACHED & caching) != 0)
646
		result |= TTM_PL_FLAG_UNCACHED;
647
 
648
	return result;
649
}
650
 
651
static bool ttm_bo_mt_compatible(struct ttm_mem_type_manager *man,
652
				 uint32_t mem_type,
5271 serge 653
				 const struct ttm_place *place,
4075 Serge 654
				 uint32_t *masked_placement)
655
{
656
	uint32_t cur_flags = ttm_bo_type_flags(mem_type);
657
 
5271 serge 658
	if ((cur_flags & place->flags & TTM_PL_MASK_MEM) == 0)
4075 Serge 659
		return false;
660
 
5271 serge 661
	if ((place->flags & man->available_caching) == 0)
4075 Serge 662
		return false;
663
 
5271 serge 664
	cur_flags |= (place->flags & man->available_caching);
4075 Serge 665
 
666
	*masked_placement = cur_flags;
667
	return true;
668
}
669
 
670
/**
671
 * Creates space for memory region @mem according to its type.
672
 *
673
 * This function first searches for free space in compatible memory types in
674
 * the priority order defined by the driver.  If free space isn't found, then
675
 * ttm_bo_mem_force_space is attempted in priority order to evict and find
676
 * space.
677
 */
678
int ttm_bo_mem_space(struct ttm_buffer_object *bo,
679
			struct ttm_placement *placement,
680
			struct ttm_mem_reg *mem,
681
			bool interruptible,
682
			bool no_wait_gpu)
683
{
684
	struct ttm_bo_device *bdev = bo->bdev;
685
	struct ttm_mem_type_manager *man;
686
	uint32_t mem_type = TTM_PL_SYSTEM;
687
	uint32_t cur_flags = 0;
688
	bool type_found = false;
689
	bool type_ok = false;
690
	bool has_erestartsys = false;
691
	int i, ret;
692
 
693
	mem->mm_node = NULL;
694
	for (i = 0; i < placement->num_placement; ++i) {
5271 serge 695
		const struct ttm_place *place = &placement->placement[i];
696
 
697
		ret = ttm_mem_type_from_place(place, &mem_type);
4075 Serge 698
		if (ret)
699
			return ret;
700
		man = &bdev->man[mem_type];
6296 serge 701
		if (!man->has_type || !man->use_type)
702
			continue;
4075 Serge 703
 
5271 serge 704
		type_ok = ttm_bo_mt_compatible(man, mem_type, place,
4075 Serge 705
						&cur_flags);
706
 
707
		if (!type_ok)
708
			continue;
709
 
6296 serge 710
		type_found = true;
4075 Serge 711
		cur_flags = ttm_bo_select_caching(man, bo->mem.placement,
712
						  cur_flags);
713
		/*
714
		 * Use the access and other non-mapping-related flag bits from
715
		 * the memory placement flags to the current flags
716
		 */
5271 serge 717
		ttm_flag_masked(&cur_flags, place->flags,
4075 Serge 718
				~TTM_PL_MASK_MEMTYPE);
719
 
720
		if (mem_type == TTM_PL_SYSTEM)
721
			break;
722
 
5271 serge 723
			ret = (*man->func->get_node)(man, bo, place, mem);
4075 Serge 724
			if (unlikely(ret))
725
				return ret;
6296 serge 726
 
4075 Serge 727
		if (mem->mm_node)
728
			break;
729
	}
730
 
731
	if ((type_ok && (mem_type == TTM_PL_SYSTEM)) || mem->mm_node) {
732
		mem->mem_type = mem_type;
733
		mem->placement = cur_flags;
734
		return 0;
735
	}
736
 
737
	for (i = 0; i < placement->num_busy_placement; ++i) {
5271 serge 738
		const struct ttm_place *place = &placement->busy_placement[i];
739
 
740
		ret = ttm_mem_type_from_place(place, &mem_type);
4075 Serge 741
		if (ret)
742
			return ret;
743
		man = &bdev->man[mem_type];
6296 serge 744
		if (!man->has_type || !man->use_type)
4075 Serge 745
			continue;
5271 serge 746
		if (!ttm_bo_mt_compatible(man, mem_type, place, &cur_flags))
4075 Serge 747
			continue;
748
 
6296 serge 749
		type_found = true;
4075 Serge 750
		cur_flags = ttm_bo_select_caching(man, bo->mem.placement,
751
						  cur_flags);
752
		/*
753
		 * Use the access and other non-mapping-related flag bits from
754
		 * the memory placement flags to the current flags
755
		 */
5271 serge 756
		ttm_flag_masked(&cur_flags, place->flags,
4075 Serge 757
				~TTM_PL_MASK_MEMTYPE);
758
 
759
		if (mem_type == TTM_PL_SYSTEM) {
760
			mem->mem_type = mem_type;
761
			mem->placement = cur_flags;
762
			mem->mm_node = NULL;
763
			return 0;
764
		}
765
 
5271 serge 766
		ret = ttm_bo_mem_force_space(bo, mem_type, place, mem,
4075 Serge 767
						interruptible, no_wait_gpu);
768
		if (ret == 0 && mem->mm_node) {
769
			mem->placement = cur_flags;
770
			return 0;
771
		}
772
		if (ret == -ERESTARTSYS)
773
			has_erestartsys = true;
774
	}
6296 serge 775
 
776
	if (!type_found) {
777
		printk(KERN_ERR TTM_PFX "No compatible memory type found.\n");
778
		return -EINVAL;
779
	}
780
 
781
	return (has_erestartsys) ? -ERESTARTSYS : -ENOMEM;
4075 Serge 782
}
783
EXPORT_SYMBOL(ttm_bo_mem_space);
784
 
4569 Serge 785
static int ttm_bo_move_buffer(struct ttm_buffer_object *bo,
4075 Serge 786
			struct ttm_placement *placement,
787
			bool interruptible,
788
			bool no_wait_gpu)
789
{
790
	int ret = 0;
791
	struct ttm_mem_reg mem;
792
 
5078 serge 793
	lockdep_assert_held(&bo->resv->lock.base);
4075 Serge 794
 
795
	/*
796
	 * FIXME: It's possible to pipeline buffer moves.
797
	 * Have the driver move function wait for idle when necessary,
798
	 * instead of doing it here.
799
	 */
800
	ret = ttm_bo_wait(bo, false, interruptible, no_wait_gpu);
801
	if (ret)
802
		return ret;
803
	mem.num_pages = bo->num_pages;
804
	mem.size = mem.num_pages << PAGE_SHIFT;
805
	mem.page_alignment = bo->mem.page_alignment;
806
	mem.bus.io_reserved_vm = false;
807
	mem.bus.io_reserved_count = 0;
808
	/*
809
	 * Determine where to move the buffer.
810
	 */
811
	ret = ttm_bo_mem_space(bo, placement, &mem,
812
			       interruptible, no_wait_gpu);
813
	if (ret)
814
		goto out_unlock;
815
	ret = ttm_bo_handle_move_mem(bo, &mem, false,
816
				     interruptible, no_wait_gpu);
817
out_unlock:
818
	if (ret && mem.mm_node)
819
		ttm_bo_mem_put(bo, &mem);
820
	return ret;
821
}
822
 
6661 serge 823
bool ttm_bo_mem_compat(struct ttm_placement *placement,
4569 Serge 824
			      struct ttm_mem_reg *mem,
825
			      uint32_t *new_flags)
4075 Serge 826
{
827
	int i;
828
 
5271 serge 829
	for (i = 0; i < placement->num_placement; i++) {
830
		const struct ttm_place *heap = &placement->placement[i];
831
		if (mem->mm_node &&
832
		    (mem->start < heap->fpfn ||
833
		     (heap->lpfn != 0 && (mem->start + mem->num_pages) > heap->lpfn)))
834
			continue;
4075 Serge 835
 
5271 serge 836
		*new_flags = heap->flags;
4569 Serge 837
		if ((*new_flags & mem->placement & TTM_PL_MASK_CACHING) &&
838
		    (*new_flags & mem->placement & TTM_PL_MASK_MEM))
839
			return true;
4075 Serge 840
	}
4569 Serge 841
 
842
	for (i = 0; i < placement->num_busy_placement; i++) {
5271 serge 843
		const struct ttm_place *heap = &placement->busy_placement[i];
844
		if (mem->mm_node &&
845
		    (mem->start < heap->fpfn ||
846
		     (heap->lpfn != 0 && (mem->start + mem->num_pages) > heap->lpfn)))
847
			continue;
848
 
849
		*new_flags = heap->flags;
4569 Serge 850
		if ((*new_flags & mem->placement & TTM_PL_MASK_CACHING) &&
851
		    (*new_flags & mem->placement & TTM_PL_MASK_MEM))
852
			return true;
853
	}
854
 
855
	return false;
4075 Serge 856
}
857
 
858
int ttm_bo_validate(struct ttm_buffer_object *bo,
859
			struct ttm_placement *placement,
860
			bool interruptible,
861
			bool no_wait_gpu)
862
{
863
	int ret;
4569 Serge 864
	uint32_t new_flags;
4075 Serge 865
 
5078 serge 866
	lockdep_assert_held(&bo->resv->lock.base);
4075 Serge 867
	/*
868
	 * Check whether we need to move buffer.
869
	 */
4569 Serge 870
	if (!ttm_bo_mem_compat(placement, &bo->mem, &new_flags)) {
5078 serge 871
		ret = ttm_bo_move_buffer(bo, placement, interruptible,
872
					 no_wait_gpu);
4075 Serge 873
		if (ret)
874
			return ret;
875
	} else {
876
		/*
877
		 * Use the access and other non-mapping-related flag bits from
878
		 * the compatible memory placement flags to the active flags
879
		 */
4569 Serge 880
		ttm_flag_masked(&bo->mem.placement, new_flags,
4075 Serge 881
				~TTM_PL_MASK_MEMTYPE);
882
	}
883
	/*
884
	 * We might need to add a TTM.
885
	 */
886
	if (bo->mem.mem_type == TTM_PL_SYSTEM && bo->ttm == NULL) {
887
		ret = ttm_bo_add_ttm(bo, true);
888
		if (ret)
889
			return ret;
890
	}
891
	return 0;
892
}
893
EXPORT_SYMBOL(ttm_bo_validate);
894
 
895
int ttm_bo_init(struct ttm_bo_device *bdev,
5271 serge 896
        struct ttm_buffer_object *bo,
897
        unsigned long size,
898
        enum ttm_bo_type type,
899
        struct ttm_placement *placement,
900
        uint32_t page_alignment,
901
        bool interruptible,
902
        struct file *persistent_swap_storage,
903
        size_t acc_size,
904
        struct sg_table *sg,
905
		struct reservation_object *resv,
906
        void (*destroy) (struct ttm_buffer_object *))
4075 Serge 907
{
5271 serge 908
    int ret = 0;
909
    unsigned long num_pages;
910
    bool locked;
4075 Serge 911
 
5271 serge 912
    num_pages = (size + PAGE_SIZE - 1) >> PAGE_SHIFT;
913
    if (num_pages == 0) {
914
        pr_err("Illegal buffer object size\n");
915
        if (destroy)
916
            (*destroy)(bo);
917
        else
918
            kfree(bo);
919
        return -EINVAL;
920
    }
921
    bo->destroy = destroy;
4075 Serge 922
 
5271 serge 923
    kref_init(&bo->kref);
924
    kref_init(&bo->list_kref);
4075 Serge 925
	atomic_set(&bo->cpu_writers, 0);
5271 serge 926
    INIT_LIST_HEAD(&bo->lru);
927
    INIT_LIST_HEAD(&bo->ddestroy);
928
    INIT_LIST_HEAD(&bo->swap);
929
    INIT_LIST_HEAD(&bo->io_reserve_lru);
930
    mutex_init(&bo->wu_mutex);
931
    bo->bdev = bdev;
932
    bo->glob = bdev->glob;
933
    bo->type = type;
934
    bo->num_pages = num_pages;
935
    bo->mem.size = num_pages << PAGE_SHIFT;
936
    bo->mem.mem_type = TTM_PL_SYSTEM;
937
    bo->mem.num_pages = bo->num_pages;
938
    bo->mem.mm_node = NULL;
939
    bo->mem.page_alignment = page_alignment;
940
    bo->mem.bus.io_reserved_vm = false;
941
    bo->mem.bus.io_reserved_count = 0;
942
    bo->priv_flags = 0;
943
    bo->mem.placement = (TTM_PL_FLAG_SYSTEM | TTM_PL_FLAG_CACHED);
944
    bo->persistent_swap_storage = persistent_swap_storage;
945
    bo->acc_size = acc_size;
946
    bo->sg = sg;
947
	if (resv) {
948
		bo->resv = resv;
949
		lockdep_assert_held(&bo->resv->lock.base);
950
	} else {
951
		bo->resv = &bo->ttm_resv;
952
		reservation_object_init(&bo->ttm_resv);
953
	}
4075 Serge 954
	atomic_inc(&bo->glob->bo_count);
5271 serge 955
    drm_vma_node_reset(&bo->vma_node);
4075 Serge 956
 
5271 serge 957
    /*
958
     * For ttm_bo_type_device buffers, allocate
959
     * address space from the device.
960
     */
961
	if (bo->type == ttm_bo_type_device ||
962
	    bo->type == ttm_bo_type_sg)
5078 serge 963
		ret = drm_vma_offset_add(&bdev->vma_manager, &bo->vma_node,
964
					 bo->mem.num_pages);
4075 Serge 965
 
5271 serge 966
	/* passed reservation objects should already be locked,
967
	 * since otherwise lockdep will be angered in radeon.
968
	 */
969
	if (!resv) {
970
		locked = ww_mutex_trylock(&bo->resv->lock);
971
		WARN_ON(!locked);
972
	}
4075 Serge 973
 
5078 serge 974
	if (likely(!ret))
975
		ret = ttm_bo_validate(bo, placement, interruptible, false);
4075 Serge 976
 
5271 serge 977
	if (!resv)
978
		ttm_bo_unreserve(bo);
4075 Serge 979
 
5078 serge 980
	if (unlikely(ret))
981
		ttm_bo_unref(&bo);
982
 
5271 serge 983
    return ret;
4075 Serge 984
}
985
EXPORT_SYMBOL(ttm_bo_init);
986
 
987
size_t ttm_bo_acc_size(struct ttm_bo_device *bdev,
988
		       unsigned long bo_size,
989
		       unsigned struct_size)
990
{
991
	unsigned npages = (PAGE_ALIGN(bo_size)) >> PAGE_SHIFT;
992
	size_t size = 0;
993
 
994
	size += ttm_round_pot(struct_size);
995
	size += PAGE_ALIGN(npages * sizeof(void *));
996
	size += ttm_round_pot(sizeof(struct ttm_tt));
997
	return size;
998
}
999
EXPORT_SYMBOL(ttm_bo_acc_size);
1000
 
1001
size_t ttm_bo_dma_acc_size(struct ttm_bo_device *bdev,
1002
			   unsigned long bo_size,
1003
			   unsigned struct_size)
1004
{
1005
	unsigned npages = (PAGE_ALIGN(bo_size)) >> PAGE_SHIFT;
1006
	size_t size = 0;
1007
 
1008
	size += ttm_round_pot(struct_size);
1009
	size += PAGE_ALIGN(npages * sizeof(void *));
1010
	size += PAGE_ALIGN(npages * sizeof(dma_addr_t));
1011
	size += ttm_round_pot(sizeof(struct ttm_dma_tt));
1012
	return size;
1013
}
1014
EXPORT_SYMBOL(ttm_bo_dma_acc_size);
1015
 
6296 serge 1016
int ttm_bo_create(struct ttm_bo_device *bdev,
1017
			unsigned long size,
1018
			enum ttm_bo_type type,
1019
			struct ttm_placement *placement,
1020
			uint32_t page_alignment,
1021
			bool interruptible,
1022
			struct file *persistent_swap_storage,
1023
			struct ttm_buffer_object **p_bo)
1024
{
1025
	struct ttm_buffer_object *bo;
1026
	size_t acc_size;
1027
	int ret;
1028
 
1029
	bo = kzalloc(sizeof(*bo), GFP_KERNEL);
1030
	if (unlikely(bo == NULL))
1031
		return -ENOMEM;
1032
 
1033
	acc_size = ttm_bo_acc_size(bdev, size, sizeof(struct ttm_buffer_object));
1034
	ret = ttm_bo_init(bdev, bo, size, type, placement, page_alignment,
1035
			  interruptible, persistent_swap_storage, acc_size,
1036
			  NULL, NULL, NULL);
1037
	if (likely(ret == 0))
1038
		*p_bo = bo;
1039
 
1040
	return ret;
1041
}
1042
EXPORT_SYMBOL(ttm_bo_create);
1043
 
1044
static int ttm_bo_force_list_clean(struct ttm_bo_device *bdev,
1045
					unsigned mem_type, bool allow_errors)
1046
{
1047
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];
1048
	struct ttm_bo_global *glob = bdev->glob;
1049
	int ret;
1050
 
1051
	/*
1052
	 * Can't use standard list traversal since we're unlocking.
1053
	 */
1054
 
1055
	spin_lock(&glob->lru_lock);
1056
	while (!list_empty(&man->lru)) {
1057
		spin_unlock(&glob->lru_lock);
1058
		ret = ttm_mem_evict_first(bdev, mem_type, NULL, false, false);
1059
		if (ret) {
1060
			if (allow_errors) {
1061
				return ret;
1062
			} else {
1063
				pr_err("Cleanup eviction failed\n");
1064
			}
1065
		}
1066
		spin_lock(&glob->lru_lock);
1067
	}
1068
	spin_unlock(&glob->lru_lock);
1069
	return 0;
1070
}
1404 serge 1071
int ttm_bo_init_mm(struct ttm_bo_device *bdev, unsigned type,
4075 Serge 1072
			unsigned long p_size)
1404 serge 1073
{
5271 serge 1074
	int ret = -EINVAL;
1075
	struct ttm_mem_type_manager *man;
1404 serge 1076
 
4075 Serge 1077
	BUG_ON(type >= TTM_NUM_MEM_TYPES);
5271 serge 1078
	man = &bdev->man[type];
4075 Serge 1079
	BUG_ON(man->has_type);
1080
	man->io_reserve_fastpath = true;
1081
	man->use_io_reserve_lru = false;
1082
	mutex_init(&man->io_reserve_mutex);
1083
	INIT_LIST_HEAD(&man->io_reserve_lru);
1404 serge 1084
 
5271 serge 1085
	ret = bdev->driver->init_mem_type(bdev, type, man);
1086
	if (ret)
1087
		return ret;
4075 Serge 1088
	man->bdev = bdev;
1404 serge 1089
 
5271 serge 1090
	ret = 0;
1091
	if (type != TTM_PL_SYSTEM) {
4075 Serge 1092
		ret = (*man->func->init)(man, p_size);
5271 serge 1093
		if (ret)
1094
			return ret;
1095
	}
1096
	man->has_type = true;
1097
	man->use_type = true;
1098
	man->size = p_size;
1404 serge 1099
 
5271 serge 1100
	INIT_LIST_HEAD(&man->lru);
1404 serge 1101
 
5271 serge 1102
	return 0;
1404 serge 1103
}
5078 serge 1104
EXPORT_SYMBOL(ttm_bo_init_mm);
4075 Serge 1105
void ttm_bo_global_release(struct drm_global_reference *ref)
1404 serge 1106
{
4075 Serge 1107
	struct ttm_bo_global *glob = ref->object;
1108
 
1109
}
1110
EXPORT_SYMBOL(ttm_bo_global_release);
1111
 
1112
int ttm_bo_global_init(struct drm_global_reference *ref)
1113
{
1404 serge 1114
    struct ttm_bo_global_ref *bo_ref =
1115
        container_of(ref, struct ttm_bo_global_ref, ref);
1116
    struct ttm_bo_global *glob = ref->object;
1117
    int ret;
1118
 
5271 serge 1119
    mutex_init(&glob->device_list_mutex);
1120
    spin_lock_init(&glob->lru_lock);
1404 serge 1121
    glob->mem_glob = bo_ref->mem_glob;
5078 serge 1122
	glob->dummy_read_page = alloc_page(__GFP_ZERO | GFP_DMA32);
1404 serge 1123
 
1124
    if (unlikely(glob->dummy_read_page == NULL)) {
1125
        ret = -ENOMEM;
1126
        goto out_no_drp;
1127
    }
1128
 
1129
    INIT_LIST_HEAD(&glob->swap_lru);
1130
    INIT_LIST_HEAD(&glob->device_list);
1131
 
4075 Serge 1132
    atomic_set(&glob->bo_count, 0);
1404 serge 1133
 
4075 Serge 1134
    return 0;
1404 serge 1135
 
1136
out_no_drp:
1137
    kfree(glob);
1138
    return ret;
1139
}
4112 Serge 1140
EXPORT_SYMBOL(ttm_bo_global_init);
1404 serge 1141
 
4075 Serge 1142
int ttm_bo_device_init(struct ttm_bo_device *bdev,
1143
		       struct ttm_bo_global *glob,
1144
		       struct ttm_bo_driver *driver,
5078 serge 1145
		       struct address_space *mapping,
4075 Serge 1146
		       uint64_t file_page_offset,
1147
		       bool need_dma32)
1148
{
1149
	int ret = -EINVAL;
1150
 
1151
	bdev->driver = driver;
1152
 
1153
	memset(bdev->man, 0, sizeof(bdev->man));
1154
 
1155
	/*
1156
	 * Initialize the system memory buffer type.
1157
	 * Other types need to be driver / IOCTL initialized.
1158
	 */
1159
	ret = ttm_bo_init_mm(bdev, TTM_PL_SYSTEM, 0);
1160
	if (unlikely(ret != 0))
1161
		goto out_no_sys;
1162
 
4112 Serge 1163
	drm_vma_offset_manager_init(&bdev->vma_manager, file_page_offset,
1164
				    0x10000000);
5078 serge 1165
	INIT_DELAYED_WORK(&bdev->wq, ttm_bo_delayed_workqueue);
4075 Serge 1166
	INIT_LIST_HEAD(&bdev->ddestroy);
5078 serge 1167
	bdev->dev_mapping = mapping;
4075 Serge 1168
	bdev->glob = glob;
1169
	bdev->need_dma32 = need_dma32;
1170
	bdev->val_seq = 0;
1171
	mutex_lock(&glob->device_list_mutex);
1172
	list_add_tail(&bdev->device_list, &glob->device_list);
1173
	mutex_unlock(&glob->device_list_mutex);
1174
 
1175
	return 0;
1176
out_no_sys:
1177
	return ret;
1178
}
1179
EXPORT_SYMBOL(ttm_bo_device_init);
1180
 
1181
/*
1182
 * buffer object vm functions.
1183
 */
1184
 
1185
bool ttm_mem_reg_is_pci(struct ttm_bo_device *bdev, struct ttm_mem_reg *mem)
1186
{
1187
	struct ttm_mem_type_manager *man = &bdev->man[mem->mem_type];
1188
 
1189
	if (!(man->flags & TTM_MEMTYPE_FLAG_FIXED)) {
1190
		if (mem->mem_type == TTM_PL_SYSTEM)
1191
			return false;
1192
 
1193
		if (man->flags & TTM_MEMTYPE_FLAG_CMA)
1194
			return false;
1195
 
1196
		if (mem->placement & TTM_PL_FLAG_CACHED)
1197
			return false;
1198
	}
1199
	return true;
1200
}
1201
 
5078 serge 1202
void ttm_bo_unmap_virtual_locked(struct ttm_buffer_object *bo)
1203
{
1204
	struct ttm_bo_device *bdev = bo->bdev;
1205
 
1206
	drm_vma_node_unmap(&bo->vma_node, bdev->dev_mapping);
1207
	ttm_mem_io_free_vm(bo);
1208
}
1209
 
1210
void ttm_bo_unmap_virtual(struct ttm_buffer_object *bo)
1211
{
1212
	struct ttm_bo_device *bdev = bo->bdev;
1213
	struct ttm_mem_type_manager *man = &bdev->man[bo->mem.mem_type];
1214
 
1215
	ttm_mem_io_lock(man, false);
1216
	ttm_bo_unmap_virtual_locked(bo);
1217
	ttm_mem_io_unlock(man);
1218
}
1219
 
1220
 
1221
EXPORT_SYMBOL(ttm_bo_unmap_virtual);
1222
 
4569 Serge 1223
int ttm_bo_wait(struct ttm_buffer_object *bo,
1224
		bool lazy, bool interruptible, bool no_wait)
1225
{
5271 serge 1226
	struct reservation_object_list *fobj;
1227
	struct reservation_object *resv;
1228
	struct fence *excl;
1229
	long timeout = 15 * HZ;
1230
	int i;
4569 Serge 1231
 
5271 serge 1232
	resv = bo->resv;
1233
	fobj = reservation_object_get_list(resv);
1234
	excl = reservation_object_get_excl(resv);
1235
	if (excl) {
1236
		if (!fence_is_signaled(excl)) {
1237
			if (no_wait)
1238
				return -EBUSY;
4569 Serge 1239
 
5271 serge 1240
			timeout = fence_wait_timeout(excl,
1241
						     interruptible, timeout);
1242
		}
1243
	}
4569 Serge 1244
 
5271 serge 1245
	for (i = 0; fobj && timeout > 0 && i < fobj->shared_count; ++i) {
1246
		struct fence *fence;
1247
		fence = rcu_dereference_protected(fobj->shared[i],
1248
						reservation_object_held(resv));
1249
 
1250
		if (!fence_is_signaled(fence)) {
1251
			if (no_wait)
1252
				return -EBUSY;
1253
 
1254
			timeout = fence_wait_timeout(fence,
1255
						     interruptible, timeout);
5078 serge 1256
		}
5271 serge 1257
		}
4569 Serge 1258
 
5271 serge 1259
	if (timeout < 0)
1260
		return timeout;
1261
 
1262
	if (timeout == 0)
5078 serge 1263
			return -EBUSY;
4569 Serge 1264
 
5271 serge 1265
	reservation_object_add_excl_fence(resv, NULL);
1266
	clear_bit(TTM_BO_PRIV_FLAG_MOVING, &bo->priv_flags);
5078 serge 1267
	return 0;
4569 Serge 1268
}
5078 serge 1269
EXPORT_SYMBOL(ttm_bo_wait);
4569 Serge 1270
 
6296 serge 1271
int ttm_bo_synccpu_write_grab(struct ttm_buffer_object *bo, bool no_wait)
1272
{
1273
	int ret = 0;
5271 serge 1274
 
6296 serge 1275
	/*
1276
	 * Using ttm_bo_reserve makes sure the lru lists are updated.
1277
	 */
1278
 
1279
	ret = ttm_bo_reserve(bo, true, no_wait, false, NULL);
1280
	if (unlikely(ret != 0))
1281
		return ret;
1282
	ret = ttm_bo_wait(bo, false, true, no_wait);
1283
	if (likely(ret == 0))
1284
		atomic_inc(&bo->cpu_writers);
1285
	ttm_bo_unreserve(bo);
1286
	return ret;
1287
}
1288
EXPORT_SYMBOL(ttm_bo_synccpu_write_grab);
1289
 
1290
void ttm_bo_synccpu_write_release(struct ttm_buffer_object *bo)
1291
{
1292
	atomic_dec(&bo->cpu_writers);
1293
}
1294
int ttm_bo_wait_unreserved(struct ttm_buffer_object *bo)
1295
{
1296
	int ret;
1297
 
1298
	/*
1299
	 * In the absense of a wait_unlocked API,
1300
	 * Use the bo::wu_mutex to avoid triggering livelocks due to
1301
	 * concurrent use of this function. Note that this use of
1302
	 * bo::wu_mutex can go away if we change locking order to
1303
	 * mmap_sem -> bo::reserve.
1304
	 */
1305
	ret = mutex_lock_interruptible(&bo->wu_mutex);
1306
	if (unlikely(ret != 0))
1307
		return -ERESTARTSYS;
1308
	if (!ww_mutex_is_locked(&bo->resv->lock))
1309
		goto out_unlock;
1310
	ret = __ttm_bo_reserve(bo, true, false, false, NULL);
1311
	if (unlikely(ret != 0))
1312
		goto out_unlock;
1313
	__ttm_bo_unreserve(bo);
1314
 
1315
out_unlock:
1316
	mutex_unlock(&bo->wu_mutex);
1317
	return ret;
1318
}