1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright © 2015 Broadcom
4 */
5
6 /**
7 * DOC: VC4 GEM BO management support
8 *
9 * The VC4 GPU architecture (both scanout and rendering) has direct
10 * access to system memory with no MMU in between. To support it, we
11 * use the GEM DMA helper functions to allocate contiguous ranges of
12 * physical memory for our BOs.
13 *
14 * Since the DMA allocator is very slow, we keep a cache of recently
15 * freed BOs around so that the kernel's allocation of objects for 3D
16 * rendering can return quickly.
17 */
18
19 #include <linux/dma-buf.h>
20
21 #include <drm/drm_fourcc.h>
22 #include <drm/drm_print.h>
23
24 #include "vc4_drv.h"
25
26 static const struct drm_gem_object_funcs vc4_gem_object_funcs;
27
28 static const char * const bo_type_names[] = {
29 "kernel",
30 "V3D",
31 "V3D shader",
32 "dumb",
33 "binner",
34 "RCL",
35 "BCL",
36 "kernel BO cache",
37 };
38
is_user_label(int label)39 static bool is_user_label(int label)
40 {
41 return label >= VC4_BO_TYPE_COUNT;
42 }
43
vc4_bo_stats_print(struct drm_printer * p,struct vc4_dev * vc4)44 static void vc4_bo_stats_print(struct drm_printer *p, struct vc4_dev *vc4)
45 {
46 int i;
47
48 for (i = 0; i < vc4->num_labels; i++) {
49 if (!vc4->bo_labels[i].num_allocated)
50 continue;
51
52 drm_printf(p, "%30s: %6dkb BOs (%d)\n",
53 vc4->bo_labels[i].name,
54 vc4->bo_labels[i].size_allocated / 1024,
55 vc4->bo_labels[i].num_allocated);
56 }
57
58 mutex_lock(&vc4->purgeable.lock);
59 if (vc4->purgeable.num)
60 drm_printf(p, "%30s: %6zdkb BOs (%d)\n", "userspace BO cache",
61 vc4->purgeable.size / 1024, vc4->purgeable.num);
62
63 if (vc4->purgeable.purged_num)
64 drm_printf(p, "%30s: %6zdkb BOs (%d)\n", "total purged BO",
65 vc4->purgeable.purged_size / 1024,
66 vc4->purgeable.purged_num);
67 mutex_unlock(&vc4->purgeable.lock);
68 }
69
vc4_bo_stats_debugfs(struct seq_file * m,void * unused)70 static int vc4_bo_stats_debugfs(struct seq_file *m, void *unused)
71 {
72 struct drm_debugfs_entry *entry = m->private;
73 struct drm_device *dev = entry->dev;
74 struct vc4_dev *vc4 = to_vc4_dev(dev);
75 struct drm_printer p = drm_seq_file_printer(m);
76
77 vc4_bo_stats_print(&p, vc4);
78
79 return 0;
80 }
81
82 /* Takes ownership of *name and returns the appropriate slot for it in
83 * the bo_labels[] array, extending it as necessary.
84 *
85 * This is inefficient and could use a hash table instead of walking
86 * an array and strcmp()ing. However, the assumption is that user
87 * labeling will be infrequent (scanout buffers and other long-lived
88 * objects, or debug driver builds), so we can live with it for now.
89 */
vc4_get_user_label(struct vc4_dev * vc4,const char * name)90 static int vc4_get_user_label(struct vc4_dev *vc4, const char *name)
91 {
92 int i;
93 int free_slot = -1;
94
95 for (i = 0; i < vc4->num_labels; i++) {
96 if (!vc4->bo_labels[i].name) {
97 free_slot = i;
98 } else if (strcmp(vc4->bo_labels[i].name, name) == 0) {
99 kfree(name);
100 return i;
101 }
102 }
103
104 if (free_slot != -1) {
105 WARN_ON(vc4->bo_labels[free_slot].num_allocated != 0);
106 vc4->bo_labels[free_slot].name = name;
107 return free_slot;
108 } else {
109 u32 new_label_count = vc4->num_labels + 1;
110 struct vc4_label *new_labels =
111 krealloc(vc4->bo_labels,
112 new_label_count * sizeof(*new_labels),
113 GFP_KERNEL);
114
115 if (!new_labels) {
116 kfree(name);
117 return -1;
118 }
119
120 free_slot = vc4->num_labels;
121 vc4->bo_labels = new_labels;
122 vc4->num_labels = new_label_count;
123
124 vc4->bo_labels[free_slot].name = name;
125 vc4->bo_labels[free_slot].num_allocated = 0;
126 vc4->bo_labels[free_slot].size_allocated = 0;
127
128 return free_slot;
129 }
130 }
131
vc4_bo_set_label(struct drm_gem_object * gem_obj,int label)132 static void vc4_bo_set_label(struct drm_gem_object *gem_obj, int label)
133 {
134 struct vc4_bo *bo = to_vc4_bo(gem_obj);
135 struct vc4_dev *vc4 = to_vc4_dev(gem_obj->dev);
136
137 lockdep_assert_held(&vc4->bo_lock);
138
139 if (label != -1) {
140 vc4->bo_labels[label].num_allocated++;
141 vc4->bo_labels[label].size_allocated += gem_obj->size;
142 }
143
144 vc4->bo_labels[bo->label].num_allocated--;
145 vc4->bo_labels[bo->label].size_allocated -= gem_obj->size;
146
147 if (vc4->bo_labels[bo->label].num_allocated == 0 &&
148 is_user_label(bo->label)) {
149 /* Free user BO label slots on last unreference.
150 * Slots are just where we track the stats for a given
151 * name, and once a name is unused we can reuse that
152 * slot.
153 */
154 kfree(vc4->bo_labels[bo->label].name);
155 vc4->bo_labels[bo->label].name = NULL;
156 }
157
158 bo->label = label;
159 }
160
bo_page_index(size_t size)161 static uint32_t bo_page_index(size_t size)
162 {
163 return (size / PAGE_SIZE) - 1;
164 }
165
vc4_bo_destroy(struct vc4_bo * bo)166 static void vc4_bo_destroy(struct vc4_bo *bo)
167 {
168 struct drm_gem_object *obj = &bo->base.base;
169 struct vc4_dev *vc4 = to_vc4_dev(obj->dev);
170
171 lockdep_assert_held(&vc4->bo_lock);
172
173 vc4_bo_set_label(obj, -1);
174
175 if (bo->validated_shader) {
176 kfree(bo->validated_shader->uniform_addr_offsets);
177 kfree(bo->validated_shader->texture_samples);
178 kfree(bo->validated_shader);
179 bo->validated_shader = NULL;
180 }
181
182 mutex_destroy(&bo->madv_lock);
183 drm_gem_dma_free(&bo->base);
184 }
185
vc4_bo_remove_from_cache(struct vc4_bo * bo)186 static void vc4_bo_remove_from_cache(struct vc4_bo *bo)
187 {
188 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
189
190 lockdep_assert_held(&vc4->bo_lock);
191 list_del(&bo->unref_head);
192 list_del(&bo->size_head);
193 }
194
vc4_get_cache_list_for_size(struct drm_device * dev,size_t size)195 static struct list_head *vc4_get_cache_list_for_size(struct drm_device *dev,
196 size_t size)
197 {
198 struct vc4_dev *vc4 = to_vc4_dev(dev);
199 uint32_t page_index = bo_page_index(size);
200
201 if (vc4->bo_cache.size_list_size <= page_index) {
202 uint32_t new_size = max(vc4->bo_cache.size_list_size * 2,
203 page_index + 1);
204 struct list_head *new_list;
205 uint32_t i;
206
207 new_list = kmalloc_objs(struct list_head, new_size);
208 if (!new_list)
209 return NULL;
210
211 /* Rebase the old cached BO lists to their new list
212 * head locations.
213 */
214 for (i = 0; i < vc4->bo_cache.size_list_size; i++) {
215 struct list_head *old_list =
216 &vc4->bo_cache.size_list[i];
217
218 if (list_empty(old_list))
219 INIT_LIST_HEAD(&new_list[i]);
220 else
221 list_replace(old_list, &new_list[i]);
222 }
223 /* And initialize the brand new BO list heads. */
224 for (i = vc4->bo_cache.size_list_size; i < new_size; i++)
225 INIT_LIST_HEAD(&new_list[i]);
226
227 kfree(vc4->bo_cache.size_list);
228 vc4->bo_cache.size_list = new_list;
229 vc4->bo_cache.size_list_size = new_size;
230 }
231
232 return &vc4->bo_cache.size_list[page_index];
233 }
234
vc4_bo_cache_purge(struct drm_device * dev)235 static void vc4_bo_cache_purge(struct drm_device *dev)
236 {
237 struct vc4_dev *vc4 = to_vc4_dev(dev);
238
239 mutex_lock(&vc4->bo_lock);
240 while (!list_empty(&vc4->bo_cache.time_list)) {
241 struct vc4_bo *bo = list_last_entry(&vc4->bo_cache.time_list,
242 struct vc4_bo, unref_head);
243 vc4_bo_remove_from_cache(bo);
244 vc4_bo_destroy(bo);
245 }
246 mutex_unlock(&vc4->bo_lock);
247 }
248
vc4_bo_add_to_purgeable_pool(struct vc4_bo * bo)249 void vc4_bo_add_to_purgeable_pool(struct vc4_bo *bo)
250 {
251 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
252
253 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
254 return;
255
256 mutex_lock(&vc4->purgeable.lock);
257 list_add_tail(&bo->size_head, &vc4->purgeable.list);
258 vc4->purgeable.num++;
259 vc4->purgeable.size += bo->base.base.size;
260 mutex_unlock(&vc4->purgeable.lock);
261 }
262
vc4_bo_remove_from_purgeable_pool_locked(struct vc4_bo * bo)263 static void vc4_bo_remove_from_purgeable_pool_locked(struct vc4_bo *bo)
264 {
265 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
266
267 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
268 return;
269
270 /* list_del_init() is used here because the caller might release
271 * the purgeable lock in order to acquire the madv one and update the
272 * madv status.
273 * During this short period of time a user might decide to mark
274 * the BO as unpurgeable, and if bo->madv is set to
275 * VC4_MADV_DONTNEED it will try to remove the BO from the
276 * purgeable list which will fail if the ->next/prev fields
277 * are set to LIST_POISON1/LIST_POISON2 (which is what
278 * list_del() does).
279 * Re-initializing the list element guarantees that list_del()
280 * will work correctly even if it's a NOP.
281 */
282 list_del_init(&bo->size_head);
283 vc4->purgeable.num--;
284 vc4->purgeable.size -= bo->base.base.size;
285 }
286
vc4_bo_remove_from_purgeable_pool(struct vc4_bo * bo)287 void vc4_bo_remove_from_purgeable_pool(struct vc4_bo *bo)
288 {
289 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
290
291 mutex_lock(&vc4->purgeable.lock);
292 vc4_bo_remove_from_purgeable_pool_locked(bo);
293 mutex_unlock(&vc4->purgeable.lock);
294 }
295
vc4_bo_purge(struct drm_gem_object * obj)296 static void vc4_bo_purge(struct drm_gem_object *obj)
297 {
298 struct vc4_bo *bo = to_vc4_bo(obj);
299 struct drm_device *dev = obj->dev;
300
301 WARN_ON(!mutex_is_locked(&bo->madv_lock));
302 WARN_ON(bo->madv != VC4_MADV_DONTNEED);
303
304 drm_vma_node_unmap(&obj->vma_node, dev->anon_inode->i_mapping);
305
306 dma_free_wc(dev->dev, obj->size, bo->base.vaddr, bo->base.dma_addr);
307 bo->base.vaddr = NULL;
308 bo->madv = __VC4_MADV_PURGED;
309 }
310
vc4_bo_userspace_cache_purge(struct drm_device * dev)311 static void vc4_bo_userspace_cache_purge(struct drm_device *dev)
312 {
313 struct vc4_dev *vc4 = to_vc4_dev(dev);
314
315 mutex_lock(&vc4->purgeable.lock);
316 while (!list_empty(&vc4->purgeable.list)) {
317 struct vc4_bo *bo = list_first_entry(&vc4->purgeable.list,
318 struct vc4_bo, size_head);
319 struct drm_gem_object *obj = &bo->base.base;
320 size_t purged_size = 0;
321
322 vc4_bo_remove_from_purgeable_pool_locked(bo);
323
324 /* Release the purgeable lock while we're purging the BO so
325 * that other people can continue inserting things in the
326 * purgeable pool without having to wait for all BOs to be
327 * purged.
328 */
329 mutex_unlock(&vc4->purgeable.lock);
330 mutex_lock(&bo->madv_lock);
331
332 /* Since we released the purgeable pool lock before acquiring
333 * the BO madv one, the user may have marked the BO as WILLNEED
334 * and re-used it in the meantime.
335 * Before purging the BO we need to make sure
336 * - it is still marked as DONTNEED
337 * - it has not been re-inserted in the purgeable list
338 * - it is not used by HW blocks
339 * If one of these conditions is not met, just skip the entry.
340 */
341 if (bo->madv == VC4_MADV_DONTNEED &&
342 list_empty(&bo->size_head) &&
343 !refcount_read(&bo->usecnt)) {
344 purged_size = bo->base.base.size;
345 vc4_bo_purge(obj);
346 }
347 mutex_unlock(&bo->madv_lock);
348 mutex_lock(&vc4->purgeable.lock);
349
350 if (purged_size) {
351 vc4->purgeable.purged_size += purged_size;
352 vc4->purgeable.purged_num++;
353 }
354 }
355 mutex_unlock(&vc4->purgeable.lock);
356 }
357
vc4_bo_get_from_cache(struct drm_device * dev,uint32_t size,enum vc4_kernel_bo_type type)358 static struct vc4_bo *vc4_bo_get_from_cache(struct drm_device *dev,
359 uint32_t size,
360 enum vc4_kernel_bo_type type)
361 {
362 struct vc4_dev *vc4 = to_vc4_dev(dev);
363 uint32_t page_index = bo_page_index(size);
364 struct vc4_bo *bo = NULL;
365
366 mutex_lock(&vc4->bo_lock);
367 if (page_index >= vc4->bo_cache.size_list_size)
368 goto out;
369
370 if (list_empty(&vc4->bo_cache.size_list[page_index]))
371 goto out;
372
373 bo = list_first_entry(&vc4->bo_cache.size_list[page_index],
374 struct vc4_bo, size_head);
375 vc4_bo_remove_from_cache(bo);
376 kref_init(&bo->base.base.refcount);
377
378 out:
379 if (bo)
380 vc4_bo_set_label(&bo->base.base, type);
381 mutex_unlock(&vc4->bo_lock);
382 return bo;
383 }
384
385 /**
386 * vc4_create_object - Implementation of driver->gem_create_object.
387 * @dev: DRM device
388 * @size: Size in bytes of the memory the object will reference
389 *
390 * This lets the DMA helpers allocate object structs for us, and keep
391 * our BO stats correct.
392 */
vc4_create_object(struct drm_device * dev,size_t size)393 struct drm_gem_object *vc4_create_object(struct drm_device *dev, size_t size)
394 {
395 struct vc4_dev *vc4 = to_vc4_dev(dev);
396 struct vc4_bo *bo;
397
398 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
399 return ERR_PTR(-ENODEV);
400
401 bo = kzalloc_obj(*bo);
402 if (!bo)
403 return ERR_PTR(-ENOMEM);
404
405 bo->madv = VC4_MADV_WILLNEED;
406 refcount_set(&bo->usecnt, 0);
407
408 mutex_init(&bo->madv_lock);
409
410 mutex_lock(&vc4->bo_lock);
411 bo->label = VC4_BO_TYPE_KERNEL;
412 vc4->bo_labels[VC4_BO_TYPE_KERNEL].num_allocated++;
413 vc4->bo_labels[VC4_BO_TYPE_KERNEL].size_allocated += size;
414 mutex_unlock(&vc4->bo_lock);
415
416 bo->base.base.funcs = &vc4_gem_object_funcs;
417
418 return &bo->base.base;
419 }
420
vc4_bo_create(struct drm_device * dev,size_t unaligned_size,bool allow_unzeroed,enum vc4_kernel_bo_type type)421 struct vc4_bo *vc4_bo_create(struct drm_device *dev, size_t unaligned_size,
422 bool allow_unzeroed, enum vc4_kernel_bo_type type)
423 {
424 size_t size = roundup(unaligned_size, PAGE_SIZE);
425 struct vc4_dev *vc4 = to_vc4_dev(dev);
426 struct drm_gem_dma_object *dma_obj;
427 struct vc4_bo *bo;
428
429 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
430 return ERR_PTR(-ENODEV);
431
432 if (size == 0)
433 return ERR_PTR(-EINVAL);
434
435 /* First, try to get a vc4_bo from the kernel BO cache. */
436 bo = vc4_bo_get_from_cache(dev, size, type);
437 if (bo) {
438 if (!allow_unzeroed)
439 memset(bo->base.vaddr, 0, bo->base.base.size);
440 return bo;
441 }
442
443 dma_obj = drm_gem_dma_create(dev, size);
444 if (IS_ERR(dma_obj)) {
445 /*
446 * If we've run out of DMA memory, kill the cache of
447 * DMA allocations we've got laying around and try again.
448 */
449 vc4_bo_cache_purge(dev);
450 dma_obj = drm_gem_dma_create(dev, size);
451 }
452
453 if (IS_ERR(dma_obj)) {
454 /*
455 * Still not enough DMA memory, purge the userspace BO
456 * cache and retry.
457 * This is sub-optimal since we purge the whole userspace
458 * BO cache which forces user that want to re-use the BO to
459 * restore its initial content.
460 * Ideally, we should purge entries one by one and retry
461 * after each to see if DMA allocation succeeds. Or even
462 * better, try to find an entry with at least the same
463 * size.
464 */
465 vc4_bo_userspace_cache_purge(dev);
466 dma_obj = drm_gem_dma_create(dev, size);
467 }
468
469 if (IS_ERR(dma_obj)) {
470 struct drm_printer p = drm_info_printer(vc4->base.dev);
471 drm_err(dev, "Failed to allocate from GEM DMA helper:\n");
472 vc4_bo_stats_print(&p, vc4);
473 return ERR_PTR(-ENOMEM);
474 }
475 bo = to_vc4_bo(&dma_obj->base);
476
477 /* By default, BOs do not support the MADV ioctl. This will be enabled
478 * only on BOs that are exposed to userspace (V3D, V3D_SHADER and DUMB
479 * BOs).
480 */
481 bo->madv = __VC4_MADV_NOTSUPP;
482
483 mutex_lock(&vc4->bo_lock);
484 vc4_bo_set_label(&dma_obj->base, type);
485 mutex_unlock(&vc4->bo_lock);
486
487 return bo;
488 }
489
vc4_bo_dumb_create(struct drm_file * file_priv,struct drm_device * dev,struct drm_mode_create_dumb * args)490 int vc4_bo_dumb_create(struct drm_file *file_priv,
491 struct drm_device *dev,
492 struct drm_mode_create_dumb *args)
493 {
494 struct vc4_dev *vc4 = to_vc4_dev(dev);
495 struct vc4_bo *bo = NULL;
496 int ret;
497
498 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
499 return -ENODEV;
500
501 ret = vc4_dumb_fixup_args(args);
502 if (ret)
503 return ret;
504
505 bo = vc4_bo_create(dev, args->size, false, VC4_BO_TYPE_DUMB);
506 if (IS_ERR(bo))
507 return PTR_ERR(bo);
508
509 bo->madv = VC4_MADV_WILLNEED;
510
511 ret = drm_gem_handle_create(file_priv, &bo->base.base, &args->handle);
512 drm_gem_object_put(&bo->base.base);
513
514 return ret;
515 }
516
vc4_bo_cache_free_old(struct drm_device * dev)517 static void vc4_bo_cache_free_old(struct drm_device *dev)
518 {
519 struct vc4_dev *vc4 = to_vc4_dev(dev);
520 unsigned long expire_time = jiffies - msecs_to_jiffies(1000);
521
522 lockdep_assert_held(&vc4->bo_lock);
523
524 while (!list_empty(&vc4->bo_cache.time_list)) {
525 struct vc4_bo *bo = list_last_entry(&vc4->bo_cache.time_list,
526 struct vc4_bo, unref_head);
527 if (time_before(expire_time, bo->free_time)) {
528 mod_timer(&vc4->bo_cache.time_timer,
529 round_jiffies_up(jiffies +
530 msecs_to_jiffies(1000)));
531 return;
532 }
533
534 vc4_bo_remove_from_cache(bo);
535 vc4_bo_destroy(bo);
536 }
537 }
538
539 /* Called on the last userspace/kernel unreference of the BO. Returns
540 * it to the BO cache if possible, otherwise frees it.
541 */
vc4_free_object(struct drm_gem_object * gem_bo)542 static void vc4_free_object(struct drm_gem_object *gem_bo)
543 {
544 struct drm_device *dev = gem_bo->dev;
545 struct vc4_dev *vc4 = to_vc4_dev(dev);
546 struct vc4_bo *bo = to_vc4_bo(gem_bo);
547 struct list_head *cache_list;
548
549 /* Remove the BO from the purgeable list. */
550 mutex_lock(&bo->madv_lock);
551 if (bo->madv == VC4_MADV_DONTNEED && !refcount_read(&bo->usecnt))
552 vc4_bo_remove_from_purgeable_pool(bo);
553 mutex_unlock(&bo->madv_lock);
554
555 mutex_lock(&vc4->bo_lock);
556 /* If the object references someone else's memory, we can't cache it.
557 */
558 if (drm_gem_is_imported(gem_bo)) {
559 vc4_bo_destroy(bo);
560 goto out;
561 }
562
563 /* Don't cache if it was publicly named. */
564 if (gem_bo->name) {
565 vc4_bo_destroy(bo);
566 goto out;
567 }
568
569 /* If this object was partially constructed but DMA allocation
570 * had failed, just free it. Can also happen when the BO has been
571 * purged.
572 */
573 if (!bo->base.vaddr) {
574 vc4_bo_destroy(bo);
575 goto out;
576 }
577
578 cache_list = vc4_get_cache_list_for_size(dev, gem_bo->size);
579 if (!cache_list) {
580 vc4_bo_destroy(bo);
581 goto out;
582 }
583
584 if (bo->validated_shader) {
585 kfree(bo->validated_shader->uniform_addr_offsets);
586 kfree(bo->validated_shader->texture_samples);
587 kfree(bo->validated_shader);
588 bo->validated_shader = NULL;
589 }
590
591 /* Reset madv and usecnt before adding the BO to the cache. */
592 bo->madv = __VC4_MADV_NOTSUPP;
593 refcount_set(&bo->usecnt, 0);
594
595 bo->t_format = false;
596 bo->free_time = jiffies;
597 list_add(&bo->size_head, cache_list);
598 list_add(&bo->unref_head, &vc4->bo_cache.time_list);
599
600 vc4_bo_set_label(&bo->base.base, VC4_BO_TYPE_KERNEL_CACHE);
601
602 vc4_bo_cache_free_old(dev);
603
604 out:
605 mutex_unlock(&vc4->bo_lock);
606 }
607
vc4_bo_cache_time_work(struct work_struct * work)608 static void vc4_bo_cache_time_work(struct work_struct *work)
609 {
610 struct vc4_dev *vc4 =
611 container_of(work, struct vc4_dev, bo_cache.time_work);
612 struct drm_device *dev = &vc4->base;
613
614 mutex_lock(&vc4->bo_lock);
615 vc4_bo_cache_free_old(dev);
616 mutex_unlock(&vc4->bo_lock);
617 }
618
vc4_bo_inc_usecnt(struct vc4_bo * bo)619 int vc4_bo_inc_usecnt(struct vc4_bo *bo)
620 {
621 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
622 int ret;
623
624 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
625 return -ENODEV;
626
627 /* Fast path: if the BO is already retained by someone, no need to
628 * check the madv status.
629 */
630 if (refcount_inc_not_zero(&bo->usecnt))
631 return 0;
632
633 mutex_lock(&bo->madv_lock);
634 switch (bo->madv) {
635 case VC4_MADV_WILLNEED:
636 if (!refcount_inc_not_zero(&bo->usecnt))
637 refcount_set(&bo->usecnt, 1);
638 ret = 0;
639 break;
640 case VC4_MADV_DONTNEED:
641 /* We shouldn't use a BO marked as purgeable if at least
642 * someone else retained its content by incrementing usecnt.
643 * Luckily the BO hasn't been purged yet, but something wrong
644 * is happening here. Just throw an error instead of
645 * authorizing this use case.
646 */
647 case __VC4_MADV_PURGED:
648 /* We can't use a purged BO. */
649 default:
650 /* Invalid madv value. */
651 ret = -EINVAL;
652 break;
653 }
654 mutex_unlock(&bo->madv_lock);
655
656 return ret;
657 }
658
vc4_bo_dec_usecnt(struct vc4_bo * bo)659 void vc4_bo_dec_usecnt(struct vc4_bo *bo)
660 {
661 struct vc4_dev *vc4 = to_vc4_dev(bo->base.base.dev);
662
663 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
664 return;
665
666 /* Fast path: if the BO is still retained by someone, no need to test
667 * the madv value.
668 */
669 if (refcount_dec_not_one(&bo->usecnt))
670 return;
671
672 mutex_lock(&bo->madv_lock);
673 if (refcount_dec_and_test(&bo->usecnt) &&
674 bo->madv == VC4_MADV_DONTNEED)
675 vc4_bo_add_to_purgeable_pool(bo);
676 mutex_unlock(&bo->madv_lock);
677 }
678
vc4_bo_cache_time_timer(struct timer_list * t)679 static void vc4_bo_cache_time_timer(struct timer_list *t)
680 {
681 struct vc4_dev *vc4 = timer_container_of(vc4, t, bo_cache.time_timer);
682
683 schedule_work(&vc4->bo_cache.time_work);
684 }
685
vc4_prime_export(struct drm_gem_object * obj,int flags)686 static struct dma_buf *vc4_prime_export(struct drm_gem_object *obj, int flags)
687 {
688 struct vc4_bo *bo = to_vc4_bo(obj);
689 struct dma_buf *dmabuf;
690 int ret;
691
692 if (bo->validated_shader) {
693 DRM_DEBUG("Attempting to export shader BO\n");
694 return ERR_PTR(-EINVAL);
695 }
696
697 /* Note: as soon as the BO is exported it becomes unpurgeable, because
698 * noone ever decrements the usecnt even if the reference held by the
699 * exported BO is released. This shouldn't be a problem since we don't
700 * expect exported BOs to be marked as purgeable.
701 */
702 ret = vc4_bo_inc_usecnt(bo);
703 if (ret) {
704 drm_err(obj->dev, "Failed to increment BO usecnt\n");
705 return ERR_PTR(ret);
706 }
707
708 dmabuf = drm_gem_prime_export(obj, flags);
709 if (IS_ERR(dmabuf))
710 vc4_bo_dec_usecnt(bo);
711
712 return dmabuf;
713 }
714
vc4_fault(struct vm_fault * vmf)715 static vm_fault_t vc4_fault(struct vm_fault *vmf)
716 {
717 struct vm_area_struct *vma = vmf->vma;
718 struct drm_gem_object *obj = vma->vm_private_data;
719 struct vc4_bo *bo = to_vc4_bo(obj);
720
721 /* The only reason we would end up here is when user-space accesses
722 * BO's memory after it's been purged.
723 */
724 mutex_lock(&bo->madv_lock);
725 WARN_ON(bo->madv != __VC4_MADV_PURGED);
726 mutex_unlock(&bo->madv_lock);
727
728 return VM_FAULT_SIGBUS;
729 }
730
vc4_gem_object_mmap(struct drm_gem_object * obj,struct vm_area_struct * vma)731 static int vc4_gem_object_mmap(struct drm_gem_object *obj, struct vm_area_struct *vma)
732 {
733 struct vc4_bo *bo = to_vc4_bo(obj);
734
735 if (bo->validated_shader) {
736 if (vma->vm_flags & VM_WRITE) {
737 DRM_DEBUG("mmapping of shader BOs for writing not allowed.\n");
738 return -EINVAL;
739 }
740
741 vm_flags_clear(vma, VM_MAYWRITE);
742 }
743
744 mutex_lock(&bo->madv_lock);
745 if (bo->madv != VC4_MADV_WILLNEED) {
746 DRM_DEBUG("mmapping of %s BO not allowed\n",
747 bo->madv == VC4_MADV_DONTNEED ?
748 "purgeable" : "purged");
749 mutex_unlock(&bo->madv_lock);
750 return -EINVAL;
751 }
752 mutex_unlock(&bo->madv_lock);
753
754 return drm_gem_dma_mmap(&bo->base, vma);
755 }
756
757 static const struct vm_operations_struct vc4_vm_ops = {
758 .fault = vc4_fault,
759 .open = drm_gem_vm_open,
760 .close = drm_gem_vm_close,
761 };
762
763 static const struct drm_gem_object_funcs vc4_gem_object_funcs = {
764 .free = vc4_free_object,
765 .export = vc4_prime_export,
766 .get_sg_table = drm_gem_dma_object_get_sg_table,
767 .vmap = drm_gem_dma_object_vmap,
768 .mmap = vc4_gem_object_mmap,
769 .vm_ops = &vc4_vm_ops,
770 };
771
vc4_grab_bin_bo(struct vc4_dev * vc4,struct vc4_file * vc4file)772 static int vc4_grab_bin_bo(struct vc4_dev *vc4, struct vc4_file *vc4file)
773 {
774 if (!vc4->v3d)
775 return -ENODEV;
776
777 if (vc4file->bin_bo_used)
778 return 0;
779
780 return vc4_v3d_bin_bo_get(vc4, &vc4file->bin_bo_used);
781 }
782
vc4_create_bo_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)783 int vc4_create_bo_ioctl(struct drm_device *dev, void *data,
784 struct drm_file *file_priv)
785 {
786 struct drm_vc4_create_bo *args = data;
787 struct vc4_file *vc4file = file_priv->driver_priv;
788 struct vc4_dev *vc4 = to_vc4_dev(dev);
789 struct vc4_bo *bo = NULL;
790 int ret;
791
792 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
793 return -ENODEV;
794
795 ret = vc4_grab_bin_bo(vc4, vc4file);
796 if (ret)
797 return ret;
798
799 /*
800 * We can't allocate from the BO cache, because the BOs don't
801 * get zeroed, and that might leak data between users.
802 */
803 bo = vc4_bo_create(dev, args->size, false, VC4_BO_TYPE_V3D);
804 if (IS_ERR(bo))
805 return PTR_ERR(bo);
806
807 bo->madv = VC4_MADV_WILLNEED;
808
809 ret = drm_gem_handle_create(file_priv, &bo->base.base, &args->handle);
810 drm_gem_object_put(&bo->base.base);
811
812 return ret;
813 }
814
vc4_mmap_bo_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)815 int vc4_mmap_bo_ioctl(struct drm_device *dev, void *data,
816 struct drm_file *file_priv)
817 {
818 struct vc4_dev *vc4 = to_vc4_dev(dev);
819 struct drm_vc4_mmap_bo *args = data;
820 struct drm_gem_object *gem_obj;
821
822 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
823 return -ENODEV;
824
825 gem_obj = drm_gem_object_lookup(file_priv, args->handle);
826 if (!gem_obj) {
827 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle);
828 return -EINVAL;
829 }
830
831 /* The mmap offset was set up at BO allocation time. */
832 args->offset = drm_vma_node_offset_addr(&gem_obj->vma_node);
833
834 drm_gem_object_put(gem_obj);
835 return 0;
836 }
837
838 int
vc4_create_shader_bo_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)839 vc4_create_shader_bo_ioctl(struct drm_device *dev, void *data,
840 struct drm_file *file_priv)
841 {
842 struct drm_vc4_create_shader_bo *args = data;
843 struct vc4_file *vc4file = file_priv->driver_priv;
844 struct vc4_dev *vc4 = to_vc4_dev(dev);
845 struct vc4_bo *bo = NULL;
846 int ret;
847
848 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
849 return -ENODEV;
850
851 if (args->size == 0)
852 return -EINVAL;
853
854 if (args->size % sizeof(u64) != 0)
855 return -EINVAL;
856
857 if (args->flags != 0) {
858 DRM_INFO("Unknown flags set: 0x%08x\n", args->flags);
859 return -EINVAL;
860 }
861
862 if (args->pad != 0) {
863 DRM_INFO("Pad set: 0x%08x\n", args->pad);
864 return -EINVAL;
865 }
866
867 ret = vc4_grab_bin_bo(vc4, vc4file);
868 if (ret)
869 return ret;
870
871 bo = vc4_bo_create(dev, args->size, true, VC4_BO_TYPE_V3D_SHADER);
872 if (IS_ERR(bo))
873 return PTR_ERR(bo);
874
875 bo->madv = VC4_MADV_WILLNEED;
876
877 if (copy_from_user(bo->base.vaddr,
878 (void __user *)(uintptr_t)args->data,
879 args->size)) {
880 ret = -EFAULT;
881 goto fail;
882 }
883 /* Clear the rest of the memory from allocating from the BO
884 * cache.
885 */
886 memset(bo->base.vaddr + args->size, 0,
887 bo->base.base.size - args->size);
888
889 bo->validated_shader = vc4_validate_shader(&bo->base);
890 if (!bo->validated_shader) {
891 ret = -EINVAL;
892 goto fail;
893 }
894
895 /* We have to create the handle after validation, to avoid
896 * races for users to do doing things like mmap the shader BO.
897 */
898 ret = drm_gem_handle_create(file_priv, &bo->base.base, &args->handle);
899
900 fail:
901 drm_gem_object_put(&bo->base.base);
902
903 return ret;
904 }
905
906 /**
907 * vc4_set_tiling_ioctl() - Sets the tiling modifier for a BO.
908 * @dev: DRM device
909 * @data: ioctl argument
910 * @file_priv: DRM file for this fd
911 *
912 * The tiling state of the BO decides the default modifier of an fb if
913 * no specific modifier was set by userspace, and the return value of
914 * vc4_get_tiling_ioctl() (so that userspace can treat a BO it
915 * received from dmabuf as the same tiling format as the producer
916 * used).
917 */
vc4_set_tiling_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)918 int vc4_set_tiling_ioctl(struct drm_device *dev, void *data,
919 struct drm_file *file_priv)
920 {
921 struct vc4_dev *vc4 = to_vc4_dev(dev);
922 struct drm_vc4_set_tiling *args = data;
923 struct drm_gem_object *gem_obj;
924 struct vc4_bo *bo;
925 bool t_format;
926
927 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
928 return -ENODEV;
929
930 if (args->flags != 0)
931 return -EINVAL;
932
933 switch (args->modifier) {
934 case DRM_FORMAT_MOD_NONE:
935 t_format = false;
936 break;
937 case DRM_FORMAT_MOD_BROADCOM_VC4_T_TILED:
938 t_format = true;
939 break;
940 default:
941 return -EINVAL;
942 }
943
944 gem_obj = drm_gem_object_lookup(file_priv, args->handle);
945 if (!gem_obj) {
946 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle);
947 return -ENOENT;
948 }
949 bo = to_vc4_bo(gem_obj);
950 bo->t_format = t_format;
951
952 drm_gem_object_put(gem_obj);
953
954 return 0;
955 }
956
957 /**
958 * vc4_get_tiling_ioctl() - Gets the tiling modifier for a BO.
959 * @dev: DRM device
960 * @data: ioctl argument
961 * @file_priv: DRM file for this fd
962 *
963 * Returns the tiling modifier for a BO as set by vc4_set_tiling_ioctl().
964 */
vc4_get_tiling_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)965 int vc4_get_tiling_ioctl(struct drm_device *dev, void *data,
966 struct drm_file *file_priv)
967 {
968 struct vc4_dev *vc4 = to_vc4_dev(dev);
969 struct drm_vc4_get_tiling *args = data;
970 struct drm_gem_object *gem_obj;
971 struct vc4_bo *bo;
972
973 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
974 return -ENODEV;
975
976 if (args->flags != 0 || args->modifier != 0)
977 return -EINVAL;
978
979 gem_obj = drm_gem_object_lookup(file_priv, args->handle);
980 if (!gem_obj) {
981 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle);
982 return -ENOENT;
983 }
984 bo = to_vc4_bo(gem_obj);
985
986 if (bo->t_format)
987 args->modifier = DRM_FORMAT_MOD_BROADCOM_VC4_T_TILED;
988 else
989 args->modifier = DRM_FORMAT_MOD_NONE;
990
991 drm_gem_object_put(gem_obj);
992
993 return 0;
994 }
995
vc4_bo_debugfs_init(struct drm_minor * minor)996 int vc4_bo_debugfs_init(struct drm_minor *minor)
997 {
998 struct drm_device *drm = minor->dev;
999 struct vc4_dev *vc4 = to_vc4_dev(drm);
1000
1001 if (!vc4->v3d)
1002 return -ENODEV;
1003
1004 drm_debugfs_add_file(drm, "bo_stats", vc4_bo_stats_debugfs, NULL);
1005
1006 return 0;
1007 }
1008
1009 static void vc4_bo_cache_destroy(struct drm_device *dev, void *unused);
vc4_bo_cache_init(struct drm_device * dev)1010 int vc4_bo_cache_init(struct drm_device *dev)
1011 {
1012 struct vc4_dev *vc4 = to_vc4_dev(dev);
1013 int ret;
1014 int i;
1015
1016 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
1017 return -ENODEV;
1018
1019 /* Create the initial set of BO labels that the kernel will
1020 * use. This lets us avoid a bunch of string reallocation in
1021 * the kernel's draw and BO allocation paths.
1022 */
1023 vc4->bo_labels = kzalloc_objs(*vc4->bo_labels, VC4_BO_TYPE_COUNT);
1024 if (!vc4->bo_labels)
1025 return -ENOMEM;
1026 vc4->num_labels = VC4_BO_TYPE_COUNT;
1027
1028 BUILD_BUG_ON(ARRAY_SIZE(bo_type_names) != VC4_BO_TYPE_COUNT);
1029 for (i = 0; i < VC4_BO_TYPE_COUNT; i++)
1030 vc4->bo_labels[i].name = bo_type_names[i];
1031
1032 ret = drmm_mutex_init(dev, &vc4->bo_lock);
1033 if (ret) {
1034 kfree(vc4->bo_labels);
1035 return ret;
1036 }
1037
1038 INIT_LIST_HEAD(&vc4->bo_cache.time_list);
1039
1040 INIT_WORK(&vc4->bo_cache.time_work, vc4_bo_cache_time_work);
1041 timer_setup(&vc4->bo_cache.time_timer, vc4_bo_cache_time_timer, 0);
1042
1043 return drmm_add_action_or_reset(dev, vc4_bo_cache_destroy, NULL);
1044 }
1045
vc4_bo_cache_destroy(struct drm_device * dev,void * unused)1046 static void vc4_bo_cache_destroy(struct drm_device *dev, void *unused)
1047 {
1048 struct vc4_dev *vc4 = to_vc4_dev(dev);
1049 int i;
1050
1051 timer_shutdown_sync(&vc4->bo_cache.time_timer);
1052 cancel_work_sync(&vc4->bo_cache.time_work);
1053
1054 vc4_bo_cache_purge(dev);
1055
1056 for (i = 0; i < vc4->num_labels; i++) {
1057 if (vc4->bo_labels[i].num_allocated) {
1058 drm_err(dev, "Destroying BO cache with %d %s "
1059 "BOs still allocated\n",
1060 vc4->bo_labels[i].num_allocated,
1061 vc4->bo_labels[i].name);
1062 }
1063
1064 if (is_user_label(i))
1065 kfree(vc4->bo_labels[i].name);
1066 }
1067 kfree(vc4->bo_labels);
1068 }
1069
vc4_label_bo_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1070 int vc4_label_bo_ioctl(struct drm_device *dev, void *data,
1071 struct drm_file *file_priv)
1072 {
1073 struct vc4_dev *vc4 = to_vc4_dev(dev);
1074 struct drm_vc4_label_bo *args = data;
1075 char *name;
1076 struct drm_gem_object *gem_obj;
1077 int ret = 0, label;
1078
1079 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4))
1080 return -ENODEV;
1081
1082 if (!args->len)
1083 return -EINVAL;
1084
1085 name = strndup_user(u64_to_user_ptr(args->name), args->len + 1);
1086 if (IS_ERR(name))
1087 return PTR_ERR(name);
1088
1089 gem_obj = drm_gem_object_lookup(file_priv, args->handle);
1090 if (!gem_obj) {
1091 drm_err(dev, "Failed to look up GEM BO %d\n", args->handle);
1092 kfree(name);
1093 return -ENOENT;
1094 }
1095
1096 mutex_lock(&vc4->bo_lock);
1097 label = vc4_get_user_label(vc4, name);
1098 if (label != -1)
1099 vc4_bo_set_label(gem_obj, label);
1100 else
1101 ret = -ENOMEM;
1102 mutex_unlock(&vc4->bo_lock);
1103
1104 drm_gem_object_put(gem_obj);
1105
1106 return ret;
1107 }
1108