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 39 static bool is_user_label(int label) 40 { 41 return label >= VC4_BO_TYPE_COUNT; 42 } 43 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 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 */ 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 } 131 132 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 } 160 161 static uint32_t bo_page_index(size_t size) 162 { 163 return (size / PAGE_SIZE) - 1; 164 } 165 166 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 } 185 186 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 } 194 195 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 } 234 235 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 } 248 249 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 } 262 263 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 } 286 287 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 } 295 296 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 } 310 311 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 } 357 358 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 */ 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 } 420 421 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 } 489 490 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 } 516 517 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 */ 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 } 607 608 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 } 618 619 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 } 658 659 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 } 678 679 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 } 685 686 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 } 714 715 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 } 730 731 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 && (vma->vm_flags & VM_WRITE)) { 736 DRM_DEBUG("mmapping of shader BOs for writing not allowed.\n"); 737 return -EINVAL; 738 } 739 740 mutex_lock(&bo->madv_lock); 741 if (bo->madv != VC4_MADV_WILLNEED) { 742 DRM_DEBUG("mmapping of %s BO not allowed\n", 743 bo->madv == VC4_MADV_DONTNEED ? 744 "purgeable" : "purged"); 745 mutex_unlock(&bo->madv_lock); 746 return -EINVAL; 747 } 748 mutex_unlock(&bo->madv_lock); 749 750 return drm_gem_dma_mmap(&bo->base, vma); 751 } 752 753 static const struct vm_operations_struct vc4_vm_ops = { 754 .fault = vc4_fault, 755 .open = drm_gem_vm_open, 756 .close = drm_gem_vm_close, 757 }; 758 759 static const struct drm_gem_object_funcs vc4_gem_object_funcs = { 760 .free = vc4_free_object, 761 .export = vc4_prime_export, 762 .get_sg_table = drm_gem_dma_object_get_sg_table, 763 .vmap = drm_gem_dma_object_vmap, 764 .mmap = vc4_gem_object_mmap, 765 .vm_ops = &vc4_vm_ops, 766 }; 767 768 static int vc4_grab_bin_bo(struct vc4_dev *vc4, struct vc4_file *vc4file) 769 { 770 if (!vc4->v3d) 771 return -ENODEV; 772 773 if (vc4file->bin_bo_used) 774 return 0; 775 776 return vc4_v3d_bin_bo_get(vc4, &vc4file->bin_bo_used); 777 } 778 779 int vc4_create_bo_ioctl(struct drm_device *dev, void *data, 780 struct drm_file *file_priv) 781 { 782 struct drm_vc4_create_bo *args = data; 783 struct vc4_file *vc4file = file_priv->driver_priv; 784 struct vc4_dev *vc4 = to_vc4_dev(dev); 785 struct vc4_bo *bo = NULL; 786 int ret; 787 788 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 789 return -ENODEV; 790 791 ret = vc4_grab_bin_bo(vc4, vc4file); 792 if (ret) 793 return ret; 794 795 /* 796 * We can't allocate from the BO cache, because the BOs don't 797 * get zeroed, and that might leak data between users. 798 */ 799 bo = vc4_bo_create(dev, args->size, false, VC4_BO_TYPE_V3D); 800 if (IS_ERR(bo)) 801 return PTR_ERR(bo); 802 803 bo->madv = VC4_MADV_WILLNEED; 804 805 ret = drm_gem_handle_create(file_priv, &bo->base.base, &args->handle); 806 drm_gem_object_put(&bo->base.base); 807 808 return ret; 809 } 810 811 int vc4_mmap_bo_ioctl(struct drm_device *dev, void *data, 812 struct drm_file *file_priv) 813 { 814 struct vc4_dev *vc4 = to_vc4_dev(dev); 815 struct drm_vc4_mmap_bo *args = data; 816 struct drm_gem_object *gem_obj; 817 818 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 819 return -ENODEV; 820 821 gem_obj = drm_gem_object_lookup(file_priv, args->handle); 822 if (!gem_obj) { 823 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle); 824 return -EINVAL; 825 } 826 827 /* The mmap offset was set up at BO allocation time. */ 828 args->offset = drm_vma_node_offset_addr(&gem_obj->vma_node); 829 830 drm_gem_object_put(gem_obj); 831 return 0; 832 } 833 834 int 835 vc4_create_shader_bo_ioctl(struct drm_device *dev, void *data, 836 struct drm_file *file_priv) 837 { 838 struct drm_vc4_create_shader_bo *args = data; 839 struct vc4_file *vc4file = file_priv->driver_priv; 840 struct vc4_dev *vc4 = to_vc4_dev(dev); 841 struct vc4_bo *bo = NULL; 842 int ret; 843 844 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 845 return -ENODEV; 846 847 if (args->size == 0) 848 return -EINVAL; 849 850 if (args->size % sizeof(u64) != 0) 851 return -EINVAL; 852 853 if (args->flags != 0) { 854 DRM_INFO("Unknown flags set: 0x%08x\n", args->flags); 855 return -EINVAL; 856 } 857 858 if (args->pad != 0) { 859 DRM_INFO("Pad set: 0x%08x\n", args->pad); 860 return -EINVAL; 861 } 862 863 ret = vc4_grab_bin_bo(vc4, vc4file); 864 if (ret) 865 return ret; 866 867 bo = vc4_bo_create(dev, args->size, true, VC4_BO_TYPE_V3D_SHADER); 868 if (IS_ERR(bo)) 869 return PTR_ERR(bo); 870 871 bo->madv = VC4_MADV_WILLNEED; 872 873 if (copy_from_user(bo->base.vaddr, 874 (void __user *)(uintptr_t)args->data, 875 args->size)) { 876 ret = -EFAULT; 877 goto fail; 878 } 879 /* Clear the rest of the memory from allocating from the BO 880 * cache. 881 */ 882 memset(bo->base.vaddr + args->size, 0, 883 bo->base.base.size - args->size); 884 885 bo->validated_shader = vc4_validate_shader(&bo->base); 886 if (!bo->validated_shader) { 887 ret = -EINVAL; 888 goto fail; 889 } 890 891 /* We have to create the handle after validation, to avoid 892 * races for users to do doing things like mmap the shader BO. 893 */ 894 ret = drm_gem_handle_create(file_priv, &bo->base.base, &args->handle); 895 896 fail: 897 drm_gem_object_put(&bo->base.base); 898 899 return ret; 900 } 901 902 /** 903 * vc4_set_tiling_ioctl() - Sets the tiling modifier for a BO. 904 * @dev: DRM device 905 * @data: ioctl argument 906 * @file_priv: DRM file for this fd 907 * 908 * The tiling state of the BO decides the default modifier of an fb if 909 * no specific modifier was set by userspace, and the return value of 910 * vc4_get_tiling_ioctl() (so that userspace can treat a BO it 911 * received from dmabuf as the same tiling format as the producer 912 * used). 913 */ 914 int vc4_set_tiling_ioctl(struct drm_device *dev, void *data, 915 struct drm_file *file_priv) 916 { 917 struct vc4_dev *vc4 = to_vc4_dev(dev); 918 struct drm_vc4_set_tiling *args = data; 919 struct drm_gem_object *gem_obj; 920 struct vc4_bo *bo; 921 bool t_format; 922 923 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 924 return -ENODEV; 925 926 if (args->flags != 0) 927 return -EINVAL; 928 929 switch (args->modifier) { 930 case DRM_FORMAT_MOD_NONE: 931 t_format = false; 932 break; 933 case DRM_FORMAT_MOD_BROADCOM_VC4_T_TILED: 934 t_format = true; 935 break; 936 default: 937 return -EINVAL; 938 } 939 940 gem_obj = drm_gem_object_lookup(file_priv, args->handle); 941 if (!gem_obj) { 942 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle); 943 return -ENOENT; 944 } 945 bo = to_vc4_bo(gem_obj); 946 bo->t_format = t_format; 947 948 drm_gem_object_put(gem_obj); 949 950 return 0; 951 } 952 953 /** 954 * vc4_get_tiling_ioctl() - Gets the tiling modifier for a BO. 955 * @dev: DRM device 956 * @data: ioctl argument 957 * @file_priv: DRM file for this fd 958 * 959 * Returns the tiling modifier for a BO as set by vc4_set_tiling_ioctl(). 960 */ 961 int vc4_get_tiling_ioctl(struct drm_device *dev, void *data, 962 struct drm_file *file_priv) 963 { 964 struct vc4_dev *vc4 = to_vc4_dev(dev); 965 struct drm_vc4_get_tiling *args = data; 966 struct drm_gem_object *gem_obj; 967 struct vc4_bo *bo; 968 969 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 970 return -ENODEV; 971 972 if (args->flags != 0 || args->modifier != 0) 973 return -EINVAL; 974 975 gem_obj = drm_gem_object_lookup(file_priv, args->handle); 976 if (!gem_obj) { 977 DRM_DEBUG("Failed to look up GEM BO %d\n", args->handle); 978 return -ENOENT; 979 } 980 bo = to_vc4_bo(gem_obj); 981 982 if (bo->t_format) 983 args->modifier = DRM_FORMAT_MOD_BROADCOM_VC4_T_TILED; 984 else 985 args->modifier = DRM_FORMAT_MOD_NONE; 986 987 drm_gem_object_put(gem_obj); 988 989 return 0; 990 } 991 992 int vc4_bo_debugfs_init(struct drm_minor *minor) 993 { 994 struct drm_device *drm = minor->dev; 995 struct vc4_dev *vc4 = to_vc4_dev(drm); 996 997 if (!vc4->v3d) 998 return -ENODEV; 999 1000 drm_debugfs_add_file(drm, "bo_stats", vc4_bo_stats_debugfs, NULL); 1001 1002 return 0; 1003 } 1004 1005 static void vc4_bo_cache_destroy(struct drm_device *dev, void *unused); 1006 int vc4_bo_cache_init(struct drm_device *dev) 1007 { 1008 struct vc4_dev *vc4 = to_vc4_dev(dev); 1009 int ret; 1010 int i; 1011 1012 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 1013 return -ENODEV; 1014 1015 /* Create the initial set of BO labels that the kernel will 1016 * use. This lets us avoid a bunch of string reallocation in 1017 * the kernel's draw and BO allocation paths. 1018 */ 1019 vc4->bo_labels = kzalloc_objs(*vc4->bo_labels, VC4_BO_TYPE_COUNT); 1020 if (!vc4->bo_labels) 1021 return -ENOMEM; 1022 vc4->num_labels = VC4_BO_TYPE_COUNT; 1023 1024 BUILD_BUG_ON(ARRAY_SIZE(bo_type_names) != VC4_BO_TYPE_COUNT); 1025 for (i = 0; i < VC4_BO_TYPE_COUNT; i++) 1026 vc4->bo_labels[i].name = bo_type_names[i]; 1027 1028 ret = drmm_mutex_init(dev, &vc4->bo_lock); 1029 if (ret) { 1030 kfree(vc4->bo_labels); 1031 return ret; 1032 } 1033 1034 INIT_LIST_HEAD(&vc4->bo_cache.time_list); 1035 1036 INIT_WORK(&vc4->bo_cache.time_work, vc4_bo_cache_time_work); 1037 timer_setup(&vc4->bo_cache.time_timer, vc4_bo_cache_time_timer, 0); 1038 1039 return drmm_add_action_or_reset(dev, vc4_bo_cache_destroy, NULL); 1040 } 1041 1042 static void vc4_bo_cache_destroy(struct drm_device *dev, void *unused) 1043 { 1044 struct vc4_dev *vc4 = to_vc4_dev(dev); 1045 int i; 1046 1047 timer_delete(&vc4->bo_cache.time_timer); 1048 cancel_work_sync(&vc4->bo_cache.time_work); 1049 1050 vc4_bo_cache_purge(dev); 1051 1052 for (i = 0; i < vc4->num_labels; i++) { 1053 if (vc4->bo_labels[i].num_allocated) { 1054 drm_err(dev, "Destroying BO cache with %d %s " 1055 "BOs still allocated\n", 1056 vc4->bo_labels[i].num_allocated, 1057 vc4->bo_labels[i].name); 1058 } 1059 1060 if (is_user_label(i)) 1061 kfree(vc4->bo_labels[i].name); 1062 } 1063 kfree(vc4->bo_labels); 1064 } 1065 1066 int vc4_label_bo_ioctl(struct drm_device *dev, void *data, 1067 struct drm_file *file_priv) 1068 { 1069 struct vc4_dev *vc4 = to_vc4_dev(dev); 1070 struct drm_vc4_label_bo *args = data; 1071 char *name; 1072 struct drm_gem_object *gem_obj; 1073 int ret = 0, label; 1074 1075 if (WARN_ON_ONCE(vc4->gen > VC4_GEN_4)) 1076 return -ENODEV; 1077 1078 if (!args->len) 1079 return -EINVAL; 1080 1081 name = strndup_user(u64_to_user_ptr(args->name), args->len + 1); 1082 if (IS_ERR(name)) 1083 return PTR_ERR(name); 1084 1085 gem_obj = drm_gem_object_lookup(file_priv, args->handle); 1086 if (!gem_obj) { 1087 drm_err(dev, "Failed to look up GEM BO %d\n", args->handle); 1088 kfree(name); 1089 return -ENOENT; 1090 } 1091 1092 mutex_lock(&vc4->bo_lock); 1093 label = vc4_get_user_label(vc4, name); 1094 if (label != -1) 1095 vc4_bo_set_label(gem_obj, label); 1096 else 1097 ret = -ENOMEM; 1098 mutex_unlock(&vc4->bo_lock); 1099 1100 drm_gem_object_put(gem_obj); 1101 1102 return ret; 1103 } 1104