xref: /linux/drivers/gpu/drm/ttm/ttm_resource.c (revision 6916d5703ddf9a38f1f6c2cc793381a24ee914c6)
1 /*
2  * Copyright 2020 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  * Authors: Christian König
23  */
24 
25 #include <linux/debugfs.h>
26 #include <linux/export.h>
27 #include <linux/io-mapping.h>
28 #include <linux/iosys-map.h>
29 #include <linux/scatterlist.h>
30 #include <linux/cgroup_dmem.h>
31 
32 #include <drm/ttm/ttm_bo.h>
33 #include <drm/ttm/ttm_placement.h>
34 #include <drm/ttm/ttm_resource.h>
35 #include <drm/ttm/ttm_tt.h>
36 
37 #include <drm/drm_print.h>
38 #include <drm/drm_util.h>
39 
40 /* Detach the cursor from the bulk move list */
41 static void
ttm_resource_cursor_clear_bulk(struct ttm_resource_cursor * cursor)42 ttm_resource_cursor_clear_bulk(struct ttm_resource_cursor *cursor)
43 {
44 	lockdep_assert_held(&cursor->man->bdev->lru_lock);
45 
46 	cursor->bulk = NULL;
47 	list_del_init(&cursor->bulk_link);
48 }
49 
50 /* Move the cursor to the end of the bulk move list it's in */
ttm_resource_cursor_move_bulk_tail(struct ttm_lru_bulk_move * bulk,struct ttm_resource_cursor * cursor)51 static void ttm_resource_cursor_move_bulk_tail(struct ttm_lru_bulk_move *bulk,
52 					       struct ttm_resource_cursor *cursor)
53 {
54 	struct ttm_lru_bulk_move_pos *pos;
55 
56 	lockdep_assert_held(&cursor->man->bdev->lru_lock);
57 
58 	if (WARN_ON_ONCE(bulk != cursor->bulk)) {
59 		list_del_init(&cursor->bulk_link);
60 		return;
61 	}
62 
63 	pos = &bulk->pos[cursor->mem_type][cursor->priority];
64 	if (pos->last)
65 		list_move(&cursor->hitch.link, &pos->last->lru.link);
66 	ttm_resource_cursor_clear_bulk(cursor);
67 }
68 
69 /* Move all cursors attached to a bulk move to its end */
ttm_bulk_move_adjust_cursors(struct ttm_lru_bulk_move * bulk)70 static void ttm_bulk_move_adjust_cursors(struct ttm_lru_bulk_move *bulk)
71 {
72 	struct ttm_resource_cursor *cursor, *next;
73 
74 	list_for_each_entry_safe(cursor, next, &bulk->cursor_list, bulk_link)
75 		ttm_resource_cursor_move_bulk_tail(bulk, cursor);
76 }
77 
78 /* Remove a cursor from an empty bulk move list */
ttm_bulk_move_drop_cursors(struct ttm_lru_bulk_move * bulk)79 static void ttm_bulk_move_drop_cursors(struct ttm_lru_bulk_move *bulk)
80 {
81 	struct ttm_resource_cursor *cursor, *next;
82 
83 	list_for_each_entry_safe(cursor, next, &bulk->cursor_list, bulk_link)
84 		ttm_resource_cursor_clear_bulk(cursor);
85 }
86 
87 /**
88  * ttm_resource_cursor_init() - Initialize a struct ttm_resource_cursor
89  * @cursor: The cursor to initialize.
90  * @man: The resource manager.
91  *
92  * Initialize the cursor before using it for iteration.
93  */
ttm_resource_cursor_init(struct ttm_resource_cursor * cursor,struct ttm_resource_manager * man)94 void ttm_resource_cursor_init(struct ttm_resource_cursor *cursor,
95 			      struct ttm_resource_manager *man)
96 {
97 	cursor->priority = 0;
98 	cursor->man = man;
99 	ttm_lru_item_init(&cursor->hitch, TTM_LRU_HITCH);
100 	INIT_LIST_HEAD(&cursor->bulk_link);
101 	INIT_LIST_HEAD(&cursor->hitch.link);
102 }
103 
104 /**
105  * ttm_resource_cursor_fini() - Finalize the LRU list cursor usage
106  * @cursor: The struct ttm_resource_cursor to finalize.
107  *
108  * The function pulls the LRU list cursor off any lists it was previously
109  * attached to. Needs to be called with the LRU lock held. The function
110  * can be called multiple times after each other.
111  */
ttm_resource_cursor_fini(struct ttm_resource_cursor * cursor)112 void ttm_resource_cursor_fini(struct ttm_resource_cursor *cursor)
113 {
114 	lockdep_assert_held(&cursor->man->bdev->lru_lock);
115 	list_del_init(&cursor->hitch.link);
116 	ttm_resource_cursor_clear_bulk(cursor);
117 }
118 
119 /**
120  * ttm_lru_bulk_move_init - initialize a bulk move structure
121  * @bulk: the structure to init
122  *
123  * For now just memset the structure to zero.
124  */
ttm_lru_bulk_move_init(struct ttm_lru_bulk_move * bulk)125 void ttm_lru_bulk_move_init(struct ttm_lru_bulk_move *bulk)
126 {
127 	memset(bulk, 0, sizeof(*bulk));
128 	INIT_LIST_HEAD(&bulk->cursor_list);
129 }
130 EXPORT_SYMBOL(ttm_lru_bulk_move_init);
131 
132 /**
133  * ttm_lru_bulk_move_fini - finalize a bulk move structure
134  * @bdev: The struct ttm_device
135  * @bulk: the structure to finalize
136  *
137  * Sanity checks that bulk moves don't have any
138  * resources left and hence no cursors attached.
139  */
ttm_lru_bulk_move_fini(struct ttm_device * bdev,struct ttm_lru_bulk_move * bulk)140 void ttm_lru_bulk_move_fini(struct ttm_device *bdev,
141 			    struct ttm_lru_bulk_move *bulk)
142 {
143 	spin_lock(&bdev->lru_lock);
144 	ttm_bulk_move_drop_cursors(bulk);
145 	spin_unlock(&bdev->lru_lock);
146 }
147 EXPORT_SYMBOL(ttm_lru_bulk_move_fini);
148 
149 /**
150  * ttm_lru_bulk_move_tail - bulk move range of resources to the LRU tail.
151  *
152  * @bulk: bulk move structure
153  *
154  * Bulk move BOs to the LRU tail, only valid to use when driver makes sure that
155  * resource order never changes. Should be called with &ttm_device.lru_lock held.
156  */
ttm_lru_bulk_move_tail(struct ttm_lru_bulk_move * bulk)157 void ttm_lru_bulk_move_tail(struct ttm_lru_bulk_move *bulk)
158 {
159 	unsigned i, j;
160 
161 	ttm_bulk_move_adjust_cursors(bulk);
162 	for (i = 0; i < TTM_NUM_MEM_TYPES; ++i) {
163 		for (j = 0; j < TTM_MAX_BO_PRIORITY; ++j) {
164 			struct ttm_lru_bulk_move_pos *pos = &bulk->pos[i][j];
165 			struct ttm_resource_manager *man;
166 
167 			if (!pos->first)
168 				continue;
169 
170 			lockdep_assert_held(&pos->first->bo->bdev->lru_lock);
171 			dma_resv_assert_held(pos->first->bo->base.resv);
172 			dma_resv_assert_held(pos->last->bo->base.resv);
173 
174 			man = ttm_manager_type(pos->first->bo->bdev, i);
175 			list_bulk_move_tail(&man->lru[j], &pos->first->lru.link,
176 					    &pos->last->lru.link);
177 		}
178 	}
179 }
180 EXPORT_SYMBOL(ttm_lru_bulk_move_tail);
181 
182 /* Return the bulk move pos object for this resource */
183 static struct ttm_lru_bulk_move_pos *
ttm_lru_bulk_move_pos(struct ttm_lru_bulk_move * bulk,struct ttm_resource * res)184 ttm_lru_bulk_move_pos(struct ttm_lru_bulk_move *bulk, struct ttm_resource *res)
185 {
186 	return &bulk->pos[res->mem_type][res->bo->priority];
187 }
188 
189 /* Return the previous resource on the list (skip over non-resource list items) */
ttm_lru_prev_res(struct ttm_resource * cur)190 static struct ttm_resource *ttm_lru_prev_res(struct ttm_resource *cur)
191 {
192 	struct ttm_lru_item *lru = &cur->lru;
193 
194 	do {
195 		lru = list_prev_entry(lru, link);
196 	} while (!ttm_lru_item_is_res(lru));
197 
198 	return ttm_lru_item_to_res(lru);
199 }
200 
201 /* Return the next resource on the list (skip over non-resource list items) */
ttm_lru_next_res(struct ttm_resource * cur)202 static struct ttm_resource *ttm_lru_next_res(struct ttm_resource *cur)
203 {
204 	struct ttm_lru_item *lru = &cur->lru;
205 
206 	do {
207 		lru = list_next_entry(lru, link);
208 	} while (!ttm_lru_item_is_res(lru));
209 
210 	return ttm_lru_item_to_res(lru);
211 }
212 
213 /* Move the resource to the tail of the bulk move range */
ttm_lru_bulk_move_pos_tail(struct ttm_lru_bulk_move_pos * pos,struct ttm_resource * res)214 static void ttm_lru_bulk_move_pos_tail(struct ttm_lru_bulk_move_pos *pos,
215 				       struct ttm_resource *res)
216 {
217 	if (pos->last != res) {
218 		if (pos->first == res)
219 			pos->first = ttm_lru_next_res(res);
220 		list_move(&res->lru.link, &pos->last->lru.link);
221 		pos->last = res;
222 	}
223 }
224 
225 /* Add the resource to a bulk_move cursor */
ttm_lru_bulk_move_add(struct ttm_lru_bulk_move * bulk,struct ttm_resource * res)226 static void ttm_lru_bulk_move_add(struct ttm_lru_bulk_move *bulk,
227 				  struct ttm_resource *res)
228 {
229 	struct ttm_lru_bulk_move_pos *pos = ttm_lru_bulk_move_pos(bulk, res);
230 
231 	if (!pos->first) {
232 		pos->first = res;
233 		pos->last = res;
234 	} else {
235 		WARN_ON(pos->first->bo->base.resv != res->bo->base.resv);
236 		ttm_lru_bulk_move_pos_tail(pos, res);
237 	}
238 }
239 
240 /* Remove the resource from a bulk_move range */
ttm_lru_bulk_move_del(struct ttm_lru_bulk_move * bulk,struct ttm_resource * res)241 static void ttm_lru_bulk_move_del(struct ttm_lru_bulk_move *bulk,
242 				  struct ttm_resource *res)
243 {
244 	struct ttm_lru_bulk_move_pos *pos = ttm_lru_bulk_move_pos(bulk, res);
245 
246 	if (unlikely(WARN_ON(!pos->first || !pos->last) ||
247 		     (pos->first == res && pos->last == res))) {
248 		pos->first = NULL;
249 		pos->last = NULL;
250 	} else if (pos->first == res) {
251 		pos->first = ttm_lru_next_res(res);
252 	} else if (pos->last == res) {
253 		pos->last = ttm_lru_prev_res(res);
254 	} else {
255 		list_move(&res->lru.link, &pos->last->lru.link);
256 	}
257 }
258 
ttm_resource_is_swapped(struct ttm_resource * res,struct ttm_buffer_object * bo)259 static bool ttm_resource_is_swapped(struct ttm_resource *res, struct ttm_buffer_object *bo)
260 {
261 	/*
262 	 * Take care when creating a new resource for a bo, that it is not considered
263 	 * swapped if it's not the current resource for the bo and is thus logically
264 	 * associated with the ttm_tt. Think a VRAM resource created to move a
265 	 * swapped-out bo to VRAM.
266 	 */
267 	if (bo->resource != res || !bo->ttm)
268 		return false;
269 
270 	dma_resv_assert_held(bo->base.resv);
271 	return ttm_tt_is_swapped(bo->ttm);
272 }
273 
ttm_resource_unevictable(struct ttm_resource * res,struct ttm_buffer_object * bo)274 static bool ttm_resource_unevictable(struct ttm_resource *res, struct ttm_buffer_object *bo)
275 {
276 	return bo->pin_count || ttm_resource_is_swapped(res, bo);
277 }
278 
279 /* Add the resource to a bulk move if the BO is configured for it */
ttm_resource_add_bulk_move(struct ttm_resource * res,struct ttm_buffer_object * bo)280 void ttm_resource_add_bulk_move(struct ttm_resource *res,
281 				struct ttm_buffer_object *bo)
282 {
283 	if (bo->bulk_move && !ttm_resource_unevictable(res, bo))
284 		ttm_lru_bulk_move_add(bo->bulk_move, res);
285 }
286 
287 /* Remove the resource from a bulk move if the BO is configured for it */
ttm_resource_del_bulk_move(struct ttm_resource * res,struct ttm_buffer_object * bo)288 void ttm_resource_del_bulk_move(struct ttm_resource *res,
289 				struct ttm_buffer_object *bo)
290 {
291 	if (bo->bulk_move && !ttm_resource_unevictable(res, bo))
292 		ttm_lru_bulk_move_del(bo->bulk_move, res);
293 }
294 
295 /*
296  * Remove a resource from its bulk_move, bypassing the unevictable check.
297  * Use only when the resource is known to still be tracked in the range despite
298  * the BO having just become unevictable; asserts that this is the case.
299  */
ttm_resource_del_bulk_move_unevictable(struct ttm_resource * res,struct ttm_buffer_object * bo)300 void ttm_resource_del_bulk_move_unevictable(struct ttm_resource *res,
301 					    struct ttm_buffer_object *bo)
302 {
303 	WARN_ON_ONCE(!ttm_resource_unevictable(res, bo));
304 	if (bo->bulk_move)
305 		ttm_lru_bulk_move_del(bo->bulk_move, res);
306 }
307 
308 /* Move a resource to the LRU or bulk tail */
ttm_resource_move_to_lru_tail(struct ttm_resource * res)309 void ttm_resource_move_to_lru_tail(struct ttm_resource *res)
310 {
311 	struct ttm_buffer_object *bo = res->bo;
312 	struct ttm_device *bdev = bo->bdev;
313 
314 	lockdep_assert_held(&bo->bdev->lru_lock);
315 
316 	if (ttm_resource_unevictable(res, bo)) {
317 		list_move_tail(&res->lru.link, &bdev->unevictable);
318 
319 	} else if (bo->bulk_move) {
320 		struct ttm_lru_bulk_move_pos *pos =
321 			ttm_lru_bulk_move_pos(bo->bulk_move, res);
322 
323 		ttm_lru_bulk_move_pos_tail(pos, res);
324 	} else {
325 		struct ttm_resource_manager *man;
326 
327 		man = ttm_manager_type(bdev, res->mem_type);
328 		list_move_tail(&res->lru.link, &man->lru[bo->priority]);
329 	}
330 }
331 
332 /**
333  * ttm_resource_init - resource object constructor
334  * @bo: buffer object this resource is allocated for
335  * @place: placement of the resource
336  * @res: the resource object to initialize
337  *
338  * Initialize a new resource object. Counterpart of ttm_resource_fini().
339  */
ttm_resource_init(struct ttm_buffer_object * bo,const struct ttm_place * place,struct ttm_resource * res)340 void ttm_resource_init(struct ttm_buffer_object *bo,
341                        const struct ttm_place *place,
342                        struct ttm_resource *res)
343 {
344 	struct ttm_resource_manager *man;
345 
346 	res->start = 0;
347 	res->size = bo->base.size;
348 	res->mem_type = place->mem_type;
349 	res->placement = place->flags;
350 	res->bus.addr = NULL;
351 	res->bus.offset = 0;
352 	res->bus.is_iomem = false;
353 	res->bus.caching = ttm_cached;
354 	res->bo = bo;
355 
356 	man = ttm_manager_type(bo->bdev, place->mem_type);
357 	spin_lock(&bo->bdev->lru_lock);
358 	if (ttm_resource_unevictable(res, bo))
359 		list_add_tail(&res->lru.link, &bo->bdev->unevictable);
360 	else
361 		list_add_tail(&res->lru.link, &man->lru[bo->priority]);
362 	man->usage += res->size;
363 	spin_unlock(&bo->bdev->lru_lock);
364 }
365 EXPORT_SYMBOL(ttm_resource_init);
366 
367 /**
368  * ttm_resource_fini - resource destructor
369  * @man: the resource manager this resource belongs to
370  * @res: the resource to clean up
371  *
372  * Should be used by resource manager backends to clean up the TTM resource
373  * objects before freeing the underlying structure. Makes sure the resource is
374  * removed from the LRU before destruction.
375  * Counterpart of ttm_resource_init().
376  */
ttm_resource_fini(struct ttm_resource_manager * man,struct ttm_resource * res)377 void ttm_resource_fini(struct ttm_resource_manager *man,
378 		       struct ttm_resource *res)
379 {
380 	struct ttm_device *bdev = man->bdev;
381 
382 	spin_lock(&bdev->lru_lock);
383 	list_del_init(&res->lru.link);
384 	man->usage -= res->size;
385 	spin_unlock(&bdev->lru_lock);
386 }
387 EXPORT_SYMBOL(ttm_resource_fini);
388 
ttm_resource_alloc(struct ttm_buffer_object * bo,const struct ttm_place * place,struct ttm_resource ** res_ptr,struct dmem_cgroup_pool_state ** ret_limit_pool)389 int ttm_resource_alloc(struct ttm_buffer_object *bo,
390 		       const struct ttm_place *place,
391 		       struct ttm_resource **res_ptr,
392 		       struct dmem_cgroup_pool_state **ret_limit_pool)
393 {
394 	struct ttm_resource_manager *man =
395 		ttm_manager_type(bo->bdev, place->mem_type);
396 	struct dmem_cgroup_pool_state *pool = NULL;
397 	int ret;
398 
399 	if (man->cg) {
400 		ret = dmem_cgroup_try_charge(man->cg, bo->base.size, &pool, ret_limit_pool);
401 		if (ret) {
402 			if (ret == -EAGAIN)
403 				ret = -ENOSPC;
404 			return ret;
405 		}
406 	}
407 
408 	ret = man->func->alloc(man, bo, place, res_ptr);
409 	if (ret) {
410 		if (pool)
411 			dmem_cgroup_uncharge(pool, bo->base.size);
412 		return ret;
413 	}
414 
415 	(*res_ptr)->css = pool;
416 
417 	spin_lock(&bo->bdev->lru_lock);
418 	ttm_resource_add_bulk_move(*res_ptr, bo);
419 	spin_unlock(&bo->bdev->lru_lock);
420 	return 0;
421 }
422 EXPORT_SYMBOL_FOR_TESTS_ONLY(ttm_resource_alloc);
423 
ttm_resource_free(struct ttm_buffer_object * bo,struct ttm_resource ** res)424 void ttm_resource_free(struct ttm_buffer_object *bo, struct ttm_resource **res)
425 {
426 	struct ttm_resource_manager *man;
427 	struct dmem_cgroup_pool_state *pool;
428 
429 	if (!*res)
430 		return;
431 
432 	spin_lock(&bo->bdev->lru_lock);
433 	ttm_resource_del_bulk_move(*res, bo);
434 	spin_unlock(&bo->bdev->lru_lock);
435 
436 	pool = (*res)->css;
437 	man = ttm_manager_type(bo->bdev, (*res)->mem_type);
438 	man->func->free(man, *res);
439 	*res = NULL;
440 	if (man->cg)
441 		dmem_cgroup_uncharge(pool, bo->base.size);
442 }
443 EXPORT_SYMBOL(ttm_resource_free);
444 
445 /**
446  * ttm_resource_intersects - test for intersection
447  *
448  * @bdev: TTM device structure
449  * @res: The resource to test
450  * @place: The placement to test
451  * @size: How many bytes the new allocation needs.
452  *
453  * Test if @res intersects with @place and @size. Used for testing if evictions
454  * are valuable or not.
455  *
456  * Returns true if the res placement intersects with @place and @size.
457  */
ttm_resource_intersects(struct ttm_device * bdev,struct ttm_resource * res,const struct ttm_place * place,size_t size)458 bool ttm_resource_intersects(struct ttm_device *bdev,
459 			     struct ttm_resource *res,
460 			     const struct ttm_place *place,
461 			     size_t size)
462 {
463 	struct ttm_resource_manager *man;
464 
465 	man = ttm_manager_type(bdev, res->mem_type);
466 	if (!place || !man->func->intersects)
467 		return true;
468 
469 	return man->func->intersects(man, res, place, size);
470 }
471 
472 /**
473  * ttm_resource_compatible - check if resource is compatible with placement
474  *
475  * @res: the resource to check
476  * @placement: the placement to check against
477  * @evicting: true if the caller is doing evictions
478  *
479  * Returns true if the placement is compatible.
480  */
ttm_resource_compatible(struct ttm_resource * res,struct ttm_placement * placement,bool evicting)481 bool ttm_resource_compatible(struct ttm_resource *res,
482 			     struct ttm_placement *placement,
483 			     bool evicting)
484 {
485 	struct ttm_buffer_object *bo = res->bo;
486 	struct ttm_device *bdev = bo->bdev;
487 	unsigned i;
488 
489 	if (res->placement & TTM_PL_FLAG_TEMPORARY)
490 		return false;
491 
492 	for (i = 0; i < placement->num_placement; i++) {
493 		const struct ttm_place *place = &placement->placement[i];
494 		struct ttm_resource_manager *man;
495 
496 		if (res->mem_type != place->mem_type)
497 			continue;
498 
499 		if (place->flags & (evicting ? TTM_PL_FLAG_DESIRED :
500 				    TTM_PL_FLAG_FALLBACK))
501 			continue;
502 
503 		if (place->flags & TTM_PL_FLAG_CONTIGUOUS &&
504 		    !(res->placement & TTM_PL_FLAG_CONTIGUOUS))
505 			continue;
506 
507 		man = ttm_manager_type(bdev, res->mem_type);
508 		if (man->func->compatible &&
509 		    !man->func->compatible(man, res, place, bo->base.size))
510 			continue;
511 
512 		return true;
513 	}
514 	return false;
515 }
516 
ttm_resource_set_bo(struct ttm_resource * res,struct ttm_buffer_object * bo)517 void ttm_resource_set_bo(struct ttm_resource *res,
518 			 struct ttm_buffer_object *bo)
519 {
520 	spin_lock(&bo->bdev->lru_lock);
521 	res->bo = bo;
522 	spin_unlock(&bo->bdev->lru_lock);
523 }
524 
525 /**
526  * ttm_resource_manager_init
527  *
528  * @man: memory manager object to init
529  * @bdev: ttm device this manager belongs to
530  * @size: size of managed resources in arbitrary units
531  *
532  * Initialize core parts of a manager object.
533  */
ttm_resource_manager_init(struct ttm_resource_manager * man,struct ttm_device * bdev,uint64_t size)534 void ttm_resource_manager_init(struct ttm_resource_manager *man,
535 			       struct ttm_device *bdev,
536 			       uint64_t size)
537 {
538 	unsigned i;
539 
540 	man->bdev = bdev;
541 	man->size = size;
542 	man->usage = 0;
543 
544 	for (i = 0; i < TTM_MAX_BO_PRIORITY; ++i)
545 		INIT_LIST_HEAD(&man->lru[i]);
546 	spin_lock_init(&man->eviction_lock);
547 	for (i = 0; i < TTM_NUM_MOVE_FENCES; i++)
548 		man->eviction_fences[i] = NULL;
549 }
550 EXPORT_SYMBOL(ttm_resource_manager_init);
551 
552 /*
553  * ttm_resource_manager_evict_all
554  *
555  * @bdev: device to use
556  * @man: manager to use
557  *
558  * Evict all the objects out of a memory manager until it is empty.
559  * Part of memory manager cleanup sequence.
560  */
ttm_resource_manager_evict_all(struct ttm_device * bdev,struct ttm_resource_manager * man)561 int ttm_resource_manager_evict_all(struct ttm_device *bdev,
562 				   struct ttm_resource_manager *man)
563 {
564 	struct ttm_operation_ctx ctx = { };
565 	struct dma_fence *fence;
566 	int ret, i;
567 
568 	do {
569 		ret = ttm_bo_evict_first(bdev, man, &ctx);
570 		cond_resched();
571 	} while (!ret);
572 
573 	if (ret && ret != -ENOENT)
574 		return ret;
575 
576 	ret = 0;
577 
578 	spin_lock(&man->eviction_lock);
579 	for (i = 0; i < TTM_NUM_MOVE_FENCES; i++) {
580 		fence = man->eviction_fences[i];
581 		if (fence && !dma_fence_is_signaled(fence)) {
582 			dma_fence_get(fence);
583 			spin_unlock(&man->eviction_lock);
584 			ret = dma_fence_wait(fence, false);
585 			dma_fence_put(fence);
586 			if (ret)
587 				return ret;
588 			spin_lock(&man->eviction_lock);
589 		}
590 	}
591 	spin_unlock(&man->eviction_lock);
592 
593 	return ret;
594 }
595 EXPORT_SYMBOL(ttm_resource_manager_evict_all);
596 
597 /**
598  * ttm_resource_manager_usage
599  *
600  * @man: A memory manager object.
601  *
602  * Return how many resources are currently used.
603  */
ttm_resource_manager_usage(struct ttm_resource_manager * man)604 uint64_t ttm_resource_manager_usage(struct ttm_resource_manager *man)
605 {
606 	uint64_t usage;
607 
608 	if (WARN_ON_ONCE(!man->bdev))
609 		return 0;
610 
611 	spin_lock(&man->bdev->lru_lock);
612 	usage = man->usage;
613 	spin_unlock(&man->bdev->lru_lock);
614 	return usage;
615 }
616 EXPORT_SYMBOL(ttm_resource_manager_usage);
617 
618 /**
619  * ttm_resource_manager_debug
620  *
621  * @man: manager type to dump.
622  * @p: printer to use for debug.
623  */
ttm_resource_manager_debug(struct ttm_resource_manager * man,struct drm_printer * p)624 void ttm_resource_manager_debug(struct ttm_resource_manager *man,
625 				struct drm_printer *p)
626 {
627 	drm_printf(p, "  use_type: %d\n", man->use_type);
628 	drm_printf(p, "  use_tt: %d\n", man->use_tt);
629 	drm_printf(p, "  size: %llu\n", man->size);
630 	drm_printf(p, "  usage: %llu\n", ttm_resource_manager_usage(man));
631 	if (man->func->debug)
632 		man->func->debug(man, p);
633 }
634 EXPORT_SYMBOL(ttm_resource_manager_debug);
635 
636 static void
ttm_resource_cursor_check_bulk(struct ttm_resource_cursor * cursor,struct ttm_lru_item * next_lru)637 ttm_resource_cursor_check_bulk(struct ttm_resource_cursor *cursor,
638 			       struct ttm_lru_item *next_lru)
639 {
640 	struct ttm_resource *next = ttm_lru_item_to_res(next_lru);
641 	struct ttm_lru_bulk_move *bulk;
642 
643 	lockdep_assert_held(&cursor->man->bdev->lru_lock);
644 
645 	bulk = next->bo->bulk_move;
646 
647 	if (cursor->bulk != bulk) {
648 		if (bulk) {
649 			list_move_tail(&cursor->bulk_link, &bulk->cursor_list);
650 			cursor->mem_type = next->mem_type;
651 		} else {
652 			list_del_init(&cursor->bulk_link);
653 		}
654 		cursor->bulk = bulk;
655 	}
656 }
657 
658 /**
659  * ttm_resource_manager_first() - Start iterating over the resources
660  * of a resource manager
661  * @cursor: cursor to record the position
662  *
663  * Initializes the cursor and starts iterating. When done iterating,
664  * the caller must explicitly call ttm_resource_cursor_fini().
665  *
666  * Return: The first resource from the resource manager.
667  */
668 struct ttm_resource *
ttm_resource_manager_first(struct ttm_resource_cursor * cursor)669 ttm_resource_manager_first(struct ttm_resource_cursor *cursor)
670 {
671 	struct ttm_resource_manager *man = cursor->man;
672 
673 	if (WARN_ON_ONCE(!man))
674 		return NULL;
675 
676 	lockdep_assert_held(&man->bdev->lru_lock);
677 
678 	list_move(&cursor->hitch.link, &man->lru[cursor->priority]);
679 	return ttm_resource_manager_next(cursor);
680 }
681 
682 /**
683  * ttm_resource_manager_next() - Continue iterating over the resource manager
684  * resources
685  * @cursor: cursor to record the position
686  *
687  * Return: the next resource from the resource manager.
688  */
689 struct ttm_resource *
ttm_resource_manager_next(struct ttm_resource_cursor * cursor)690 ttm_resource_manager_next(struct ttm_resource_cursor *cursor)
691 {
692 	struct ttm_resource_manager *man = cursor->man;
693 	struct ttm_lru_item *lru;
694 
695 	lockdep_assert_held(&man->bdev->lru_lock);
696 
697 	for (;;) {
698 		lru = &cursor->hitch;
699 		list_for_each_entry_continue(lru, &man->lru[cursor->priority], link) {
700 			if (ttm_lru_item_is_res(lru)) {
701 				ttm_resource_cursor_check_bulk(cursor, lru);
702 				list_move(&cursor->hitch.link, &lru->link);
703 				return ttm_lru_item_to_res(lru);
704 			}
705 		}
706 
707 		if (++cursor->priority >= TTM_MAX_BO_PRIORITY)
708 			break;
709 
710 		list_move(&cursor->hitch.link, &man->lru[cursor->priority]);
711 		ttm_resource_cursor_clear_bulk(cursor);
712 	}
713 
714 	return NULL;
715 }
716 
717 /**
718  * ttm_lru_first_res_or_null() - Return the first resource on an lru list
719  * @head: The list head of the lru list.
720  *
721  * Return: Pointer to the first resource on the lru list or NULL if
722  * there is none.
723  */
ttm_lru_first_res_or_null(struct list_head * head)724 struct ttm_resource *ttm_lru_first_res_or_null(struct list_head *head)
725 {
726 	struct ttm_lru_item *lru;
727 
728 	list_for_each_entry(lru, head, link) {
729 		if (ttm_lru_item_is_res(lru))
730 			return ttm_lru_item_to_res(lru);
731 	}
732 
733 	return NULL;
734 }
735 
ttm_kmap_iter_iomap_map_local(struct ttm_kmap_iter * iter,struct iosys_map * dmap,pgoff_t i)736 static void ttm_kmap_iter_iomap_map_local(struct ttm_kmap_iter *iter,
737 					  struct iosys_map *dmap,
738 					  pgoff_t i)
739 {
740 	struct ttm_kmap_iter_iomap *iter_io =
741 		container_of(iter, typeof(*iter_io), base);
742 	void __iomem *addr;
743 
744 retry:
745 	while (i >= iter_io->cache.end) {
746 		iter_io->cache.sg = iter_io->cache.sg ?
747 			sg_next(iter_io->cache.sg) : iter_io->st->sgl;
748 		iter_io->cache.i = iter_io->cache.end;
749 		iter_io->cache.end += sg_dma_len(iter_io->cache.sg) >>
750 			PAGE_SHIFT;
751 		iter_io->cache.offs = sg_dma_address(iter_io->cache.sg) -
752 			iter_io->start;
753 	}
754 
755 	if (i < iter_io->cache.i) {
756 		iter_io->cache.end = 0;
757 		iter_io->cache.sg = NULL;
758 		goto retry;
759 	}
760 
761 	addr = io_mapping_map_local_wc(iter_io->iomap, iter_io->cache.offs +
762 				       (((resource_size_t)i - iter_io->cache.i)
763 					<< PAGE_SHIFT));
764 	iosys_map_set_vaddr_iomem(dmap, addr);
765 }
766 
ttm_kmap_iter_iomap_unmap_local(struct ttm_kmap_iter * iter,struct iosys_map * map)767 static void ttm_kmap_iter_iomap_unmap_local(struct ttm_kmap_iter *iter,
768 					    struct iosys_map *map)
769 {
770 	io_mapping_unmap_local(map->vaddr_iomem);
771 }
772 
773 static const struct ttm_kmap_iter_ops ttm_kmap_iter_io_ops = {
774 	.map_local =  ttm_kmap_iter_iomap_map_local,
775 	.unmap_local = ttm_kmap_iter_iomap_unmap_local,
776 	.maps_tt = false,
777 };
778 
779 /**
780  * ttm_kmap_iter_iomap_init - Initialize a struct ttm_kmap_iter_iomap
781  * @iter_io: The struct ttm_kmap_iter_iomap to initialize.
782  * @iomap: The struct io_mapping representing the underlying linear io_memory.
783  * @st: sg_table into @iomap, representing the memory of the struct
784  * ttm_resource.
785  * @start: Offset that needs to be subtracted from @st to make
786  * sg_dma_address(st->sgl) - @start == 0 for @iomap start.
787  *
788  * Return: Pointer to the embedded struct ttm_kmap_iter.
789  */
790 struct ttm_kmap_iter *
ttm_kmap_iter_iomap_init(struct ttm_kmap_iter_iomap * iter_io,struct io_mapping * iomap,struct sg_table * st,resource_size_t start)791 ttm_kmap_iter_iomap_init(struct ttm_kmap_iter_iomap *iter_io,
792 			 struct io_mapping *iomap,
793 			 struct sg_table *st,
794 			 resource_size_t start)
795 {
796 	iter_io->base.ops = &ttm_kmap_iter_io_ops;
797 	iter_io->iomap = iomap;
798 	iter_io->st = st;
799 	iter_io->start = start;
800 	memset(&iter_io->cache, 0, sizeof(iter_io->cache));
801 
802 	return &iter_io->base;
803 }
804 EXPORT_SYMBOL(ttm_kmap_iter_iomap_init);
805 
806 /**
807  * DOC: Linear io iterator
808  *
809  * This code should die in the not too near future. Best would be if we could
810  * make io-mapping use memremap for all io memory, and have memremap
811  * implement a kmap_local functionality. We could then strip a huge amount of
812  * code. These linear io iterators are implemented to mimic old functionality,
813  * and they don't use kmap_local semantics at all internally. Rather ioremap or
814  * friends, and at least on 32-bit they add global TLB flushes and points
815  * of failure.
816  */
817 
ttm_kmap_iter_linear_io_map_local(struct ttm_kmap_iter * iter,struct iosys_map * dmap,pgoff_t i)818 static void ttm_kmap_iter_linear_io_map_local(struct ttm_kmap_iter *iter,
819 					      struct iosys_map *dmap,
820 					      pgoff_t i)
821 {
822 	struct ttm_kmap_iter_linear_io *iter_io =
823 		container_of(iter, typeof(*iter_io), base);
824 
825 	*dmap = iter_io->dmap;
826 	iosys_map_incr(dmap, i * PAGE_SIZE);
827 }
828 
829 static const struct ttm_kmap_iter_ops ttm_kmap_iter_linear_io_ops = {
830 	.map_local =  ttm_kmap_iter_linear_io_map_local,
831 	.maps_tt = false,
832 };
833 
834 /**
835  * ttm_kmap_iter_linear_io_init - Initialize an iterator for linear io memory
836  * @iter_io: The iterator to initialize
837  * @bdev: The TTM device
838  * @mem: The ttm resource representing the iomap.
839  *
840  * This function is for internal TTM use only. It sets up a memcpy kmap iterator
841  * pointing at a linear chunk of io memory.
842  *
843  * Return: A pointer to the embedded struct ttm_kmap_iter or error pointer on
844  * failure.
845  */
846 struct ttm_kmap_iter *
ttm_kmap_iter_linear_io_init(struct ttm_kmap_iter_linear_io * iter_io,struct ttm_device * bdev,struct ttm_resource * mem)847 ttm_kmap_iter_linear_io_init(struct ttm_kmap_iter_linear_io *iter_io,
848 			     struct ttm_device *bdev,
849 			     struct ttm_resource *mem)
850 {
851 	int ret;
852 
853 	ret = ttm_mem_io_reserve(bdev, mem);
854 	if (ret)
855 		goto out_err;
856 	if (!mem->bus.is_iomem) {
857 		ret = -EINVAL;
858 		goto out_io_free;
859 	}
860 
861 	if (mem->bus.addr) {
862 		iosys_map_set_vaddr(&iter_io->dmap, mem->bus.addr);
863 		iter_io->needs_unmap = false;
864 	} else {
865 		iter_io->needs_unmap = true;
866 		memset(&iter_io->dmap, 0, sizeof(iter_io->dmap));
867 		if (mem->bus.caching == ttm_write_combined)
868 			iosys_map_set_vaddr_iomem(&iter_io->dmap,
869 						  ioremap_wc(mem->bus.offset,
870 							     mem->size));
871 		else if (mem->bus.caching == ttm_cached)
872 			iosys_map_set_vaddr(&iter_io->dmap,
873 					    memremap(mem->bus.offset, mem->size,
874 						     MEMREMAP_WB |
875 						     MEMREMAP_WT |
876 						     MEMREMAP_WC));
877 
878 		/* If uncached requested or if mapping cached or wc failed */
879 		if (iosys_map_is_null(&iter_io->dmap))
880 			iosys_map_set_vaddr_iomem(&iter_io->dmap,
881 						  ioremap(mem->bus.offset,
882 							  mem->size));
883 
884 		if (iosys_map_is_null(&iter_io->dmap)) {
885 			ret = -ENOMEM;
886 			goto out_io_free;
887 		}
888 	}
889 
890 	iter_io->base.ops = &ttm_kmap_iter_linear_io_ops;
891 	return &iter_io->base;
892 
893 out_io_free:
894 	ttm_mem_io_free(bdev, mem);
895 out_err:
896 	return ERR_PTR(ret);
897 }
898 
899 /**
900  * ttm_kmap_iter_linear_io_fini - Clean up an iterator for linear io memory
901  * @iter_io: The iterator to finalize
902  * @bdev: The TTM device
903  * @mem: The ttm resource representing the iomap.
904  *
905  * This function is for internal TTM use only. It cleans up a memcpy kmap
906  * iterator initialized by ttm_kmap_iter_linear_io_init.
907  */
908 void
ttm_kmap_iter_linear_io_fini(struct ttm_kmap_iter_linear_io * iter_io,struct ttm_device * bdev,struct ttm_resource * mem)909 ttm_kmap_iter_linear_io_fini(struct ttm_kmap_iter_linear_io *iter_io,
910 			     struct ttm_device *bdev,
911 			     struct ttm_resource *mem)
912 {
913 	if (iter_io->needs_unmap && iosys_map_is_set(&iter_io->dmap)) {
914 		if (iter_io->dmap.is_iomem)
915 			iounmap(iter_io->dmap.vaddr_iomem);
916 		else
917 			memunmap(iter_io->dmap.vaddr);
918 	}
919 
920 	ttm_mem_io_free(bdev, mem);
921 }
922 
923 #if defined(CONFIG_DEBUG_FS)
924 
ttm_resource_manager_show(struct seq_file * m,void * unused)925 static int ttm_resource_manager_show(struct seq_file *m, void *unused)
926 {
927 	struct ttm_resource_manager *man =
928 		(struct ttm_resource_manager *)m->private;
929 	struct drm_printer p = drm_seq_file_printer(m);
930 	ttm_resource_manager_debug(man, &p);
931 	return 0;
932 }
933 DEFINE_SHOW_ATTRIBUTE(ttm_resource_manager);
934 
935 #endif
936 
937 /**
938  * ttm_resource_manager_create_debugfs - Create debugfs entry for specified
939  * resource manager.
940  * @man: The TTM resource manager for which the debugfs stats file to be created
941  * @parent: debugfs directory in which the file will reside
942  * @name: The filename to create.
943  *
944  * This function sets up a debugfs file that can be used to look
945  * at debug statistics of the specified ttm_resource_manager.
946  */
ttm_resource_manager_create_debugfs(struct ttm_resource_manager * man,struct dentry * parent,const char * name)947 void ttm_resource_manager_create_debugfs(struct ttm_resource_manager *man,
948 					 struct dentry *parent,
949 					 const char *name)
950 {
951 #if defined(CONFIG_DEBUG_FS)
952 	debugfs_create_file(name, 0444, parent, man, &ttm_resource_manager_fops);
953 #endif
954 }
955 EXPORT_SYMBOL(ttm_resource_manager_create_debugfs);
956