1 // SPDX-License-Identifier: MIT
3 * Copyright © 2019 Intel Corporation
6 #include "intel_memory_region.h"
12 } intel_region_map[] = {
13 [INTEL_REGION_SMEM] = {
14 .class = INTEL_MEMORY_SYSTEM,
17 [INTEL_REGION_LMEM] = {
18 .class = INTEL_MEMORY_LOCAL,
21 [INTEL_REGION_STOLEN_SMEM] = {
22 .class = INTEL_MEMORY_STOLEN_SYSTEM,
27 struct intel_memory_region *
28 intel_memory_region_by_type(struct drm_i915_private *i915,
29 enum intel_memory_type mem_type)
31 struct intel_memory_region *mr;
34 for_each_memory_region(mr, i915, id)
35 if (mr->type == mem_type)
42 intel_memory_region_free_pages(struct intel_memory_region *mem,
43 struct list_head *blocks)
45 struct i915_buddy_block *block, *on;
48 list_for_each_entry_safe(block, on, blocks, link) {
49 size += i915_buddy_block_size(&mem->mm, block);
50 i915_buddy_free(&mem->mm, block);
52 INIT_LIST_HEAD(blocks);
58 __intel_memory_region_put_pages_buddy(struct intel_memory_region *mem,
59 struct list_head *blocks)
61 mutex_lock(&mem->mm_lock);
62 mem->avail += intel_memory_region_free_pages(mem, blocks);
63 mutex_unlock(&mem->mm_lock);
67 __intel_memory_region_put_block_buddy(struct i915_buddy_block *block)
69 struct list_head blocks;
71 INIT_LIST_HEAD(&blocks);
72 list_add(&block->link, &blocks);
73 __intel_memory_region_put_pages_buddy(block->private, &blocks);
77 __intel_memory_region_get_pages_buddy(struct intel_memory_region *mem,
80 struct list_head *blocks)
82 unsigned int min_order = 0;
83 unsigned long n_pages;
85 GEM_BUG_ON(!IS_ALIGNED(size, mem->mm.chunk_size));
86 GEM_BUG_ON(!list_empty(blocks));
88 if (flags & I915_ALLOC_MIN_PAGE_SIZE) {
89 min_order = ilog2(mem->min_page_size) -
90 ilog2(mem->mm.chunk_size);
93 if (flags & I915_ALLOC_CONTIGUOUS) {
94 size = roundup_pow_of_two(size);
95 min_order = ilog2(size) - ilog2(mem->mm.chunk_size);
98 if (size > mem->mm.size)
101 n_pages = size >> ilog2(mem->mm.chunk_size);
103 mutex_lock(&mem->mm_lock);
106 struct i915_buddy_block *block;
109 order = fls(n_pages) - 1;
110 GEM_BUG_ON(order > mem->mm.max_order);
111 GEM_BUG_ON(order < min_order);
114 block = i915_buddy_alloc(&mem->mm, order);
118 if (order-- == min_order)
119 goto err_free_blocks;
122 n_pages -= BIT(order);
124 block->private = mem;
125 list_add_tail(&block->link, blocks);
132 mutex_unlock(&mem->mm_lock);
136 intel_memory_region_free_pages(mem, blocks);
137 mutex_unlock(&mem->mm_lock);
141 struct i915_buddy_block *
142 __intel_memory_region_get_block_buddy(struct intel_memory_region *mem,
143 resource_size_t size,
146 struct i915_buddy_block *block;
150 ret = __intel_memory_region_get_pages_buddy(mem, size, flags, &blocks);
154 block = list_first_entry(&blocks, typeof(*block), link);
155 list_del_init(&block->link);
159 int intel_memory_region_init_buddy(struct intel_memory_region *mem)
161 return i915_buddy_init(&mem->mm, resource_size(&mem->region),
165 void intel_memory_region_release_buddy(struct intel_memory_region *mem)
167 i915_buddy_free_list(&mem->mm, &mem->reserved);
168 i915_buddy_fini(&mem->mm);
171 int intel_memory_region_reserve(struct intel_memory_region *mem,
172 u64 offset, u64 size)
176 mutex_lock(&mem->mm_lock);
177 ret = i915_buddy_alloc_range(&mem->mm, &mem->reserved, offset, size);
178 mutex_unlock(&mem->mm_lock);
183 struct intel_memory_region *
184 intel_memory_region_create(struct drm_i915_private *i915,
185 resource_size_t start,
186 resource_size_t size,
187 resource_size_t min_page_size,
188 resource_size_t io_start,
189 const struct intel_memory_region_ops *ops)
191 struct intel_memory_region *mem;
194 mem = kzalloc(sizeof(*mem), GFP_KERNEL);
196 return ERR_PTR(-ENOMEM);
199 mem->region = (struct resource)DEFINE_RES_MEM(start, size);
200 mem->io_start = io_start;
201 mem->min_page_size = min_page_size;
204 mem->avail = mem->total;
206 mutex_init(&mem->objects.lock);
207 INIT_LIST_HEAD(&mem->objects.list);
208 INIT_LIST_HEAD(&mem->objects.purgeable);
209 INIT_LIST_HEAD(&mem->reserved);
211 mutex_init(&mem->mm_lock);
214 err = ops->init(mem);
219 kref_init(&mem->kref);
227 void intel_memory_region_set_name(struct intel_memory_region *mem,
228 const char *fmt, ...)
233 vsnprintf(mem->name, sizeof(mem->name), fmt, ap);
237 static void __intel_memory_region_destroy(struct kref *kref)
239 struct intel_memory_region *mem =
240 container_of(kref, typeof(*mem), kref);
242 if (mem->ops->release)
243 mem->ops->release(mem);
245 mutex_destroy(&mem->mm_lock);
246 mutex_destroy(&mem->objects.lock);
250 struct intel_memory_region *
251 intel_memory_region_get(struct intel_memory_region *mem)
253 kref_get(&mem->kref);
257 void intel_memory_region_put(struct intel_memory_region *mem)
259 kref_put(&mem->kref, __intel_memory_region_destroy);
262 /* Global memory region registration -- only slight layer inversions! */
264 int intel_memory_regions_hw_probe(struct drm_i915_private *i915)
268 for (i = 0; i < ARRAY_SIZE(i915->mm.regions); i++) {
269 struct intel_memory_region *mem = ERR_PTR(-ENODEV);
272 if (!HAS_REGION(i915, BIT(i)))
275 type = intel_region_map[i].class;
276 instance = intel_region_map[i].instance;
278 case INTEL_MEMORY_SYSTEM:
279 mem = i915_gem_shmem_setup(i915);
281 case INTEL_MEMORY_STOLEN_SYSTEM:
282 mem = i915_gem_stolen_setup(i915);
291 "Failed to setup region(%d) type=%d\n",
298 mem->instance = instance;
300 i915->mm.regions[i] = mem;
306 intel_memory_regions_driver_release(i915);
310 void intel_memory_regions_driver_release(struct drm_i915_private *i915)
314 for (i = 0; i < ARRAY_SIZE(i915->mm.regions); i++) {
315 struct intel_memory_region *region =
316 fetch_and_zero(&i915->mm.regions[i]);
319 intel_memory_region_put(region);
323 #if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
324 #include "selftests/intel_memory_region.c"
325 #include "selftests/mock_region.c"