drm_gem.c revision 1.4 1 1.1 riastrad /*
2 1.1 riastrad * Copyright 2008 Intel Corporation
3 1.1 riastrad *
4 1.1 riastrad * Permission is hereby granted, free of charge, to any person obtaining a
5 1.1 riastrad * copy of this software and associated documentation files (the "Software"),
6 1.1 riastrad * to deal in the Software without restriction, including without limitation
7 1.1 riastrad * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 1.1 riastrad * and/or sell copies of the Software, and to permit persons to whom the
9 1.1 riastrad * Software is furnished to do so, subject to the following conditions:
10 1.1 riastrad *
11 1.1 riastrad * The above copyright notice and this permission notice (including the next
12 1.1 riastrad * paragraph) shall be included in all copies or substantial portions of the
13 1.1 riastrad * Software.
14 1.1 riastrad *
15 1.1 riastrad * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 1.1 riastrad * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 1.1 riastrad * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 1.1 riastrad * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 1.1 riastrad * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 1.1 riastrad * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21 1.1 riastrad * IN THE SOFTWARE.
22 1.1 riastrad *
23 1.1 riastrad * Authors:
24 1.1 riastrad * Eric Anholt <eric (at) anholt.net>
25 1.1 riastrad *
26 1.1 riastrad */
27 1.1 riastrad
28 1.1 riastrad #include <linux/types.h>
29 1.1 riastrad #include <linux/slab.h>
30 1.1 riastrad #include <linux/mm.h>
31 1.1 riastrad #include <linux/uaccess.h>
32 1.1 riastrad #include <linux/fs.h>
33 1.1 riastrad #include <linux/file.h>
34 1.1 riastrad #include <linux/module.h>
35 1.1 riastrad #include <linux/mman.h>
36 1.1 riastrad #include <linux/pagemap.h>
37 1.1 riastrad #include <linux/shmem_fs.h>
38 1.1 riastrad #include <linux/dma-buf.h>
39 1.2 riastrad #include <linux/err.h>
40 1.2 riastrad #include <linux/export.h>
41 1.2 riastrad #include <asm/bug.h>
42 1.1 riastrad #include <drm/drmP.h>
43 1.3 riastrad #include <drm/drm_vma_manager.h>
44 1.1 riastrad
45 1.4 riastrad #ifdef __NetBSD__
46 1.4 riastrad #include <uvm/uvm_extern.h>
47 1.4 riastrad #endif
48 1.4 riastrad
49 1.1 riastrad /** @file drm_gem.c
50 1.1 riastrad *
51 1.1 riastrad * This file provides some of the base ioctls and library routines for
52 1.1 riastrad * the graphics memory manager implemented by each device driver.
53 1.1 riastrad *
54 1.1 riastrad * Because various devices have different requirements in terms of
55 1.1 riastrad * synchronization and migration strategies, implementing that is left up to
56 1.1 riastrad * the driver, and all that the general API provides should be generic --
57 1.1 riastrad * allocating objects, reading/writing data with the cpu, freeing objects.
58 1.1 riastrad * Even there, platform-dependent optimizations for reading/writing data with
59 1.1 riastrad * the CPU mean we'll likely hook those out to driver-specific calls. However,
60 1.1 riastrad * the DRI2 implementation wants to have at least allocate/mmap be generic.
61 1.1 riastrad *
62 1.1 riastrad * The goal was to have swap-backed object allocation managed through
63 1.1 riastrad * struct file. However, file descriptors as handles to a struct file have
64 1.1 riastrad * two major failings:
65 1.1 riastrad * - Process limits prevent more than 1024 or so being used at a time by
66 1.1 riastrad * default.
67 1.1 riastrad * - Inability to allocate high fds will aggravate the X Server's select()
68 1.1 riastrad * handling, and likely that of many GL client applications as well.
69 1.1 riastrad *
70 1.1 riastrad * This led to a plan of using our own integer IDs (called handles, following
71 1.1 riastrad * DRM terminology) to mimic fds, and implement the fd syscalls we need as
72 1.1 riastrad * ioctls. The objects themselves will still include the struct file so
73 1.1 riastrad * that we can transition to fds if the required kernel infrastructure shows
74 1.1 riastrad * up at a later date, and as our interface with shmfs for memory allocation.
75 1.1 riastrad */
76 1.1 riastrad
77 1.1 riastrad /*
78 1.1 riastrad * We make up offsets for buffer objects so we can recognize them at
79 1.1 riastrad * mmap time.
80 1.1 riastrad */
81 1.1 riastrad
82 1.1 riastrad /* pgoff in mmap is an unsigned long, so we need to make sure that
83 1.1 riastrad * the faked up offset will fit
84 1.1 riastrad */
85 1.1 riastrad
86 1.1 riastrad #if BITS_PER_LONG == 64
87 1.1 riastrad #define DRM_FILE_PAGE_OFFSET_START ((0xFFFFFFFFUL >> PAGE_SHIFT) + 1)
88 1.1 riastrad #define DRM_FILE_PAGE_OFFSET_SIZE ((0xFFFFFFFFUL >> PAGE_SHIFT) * 16)
89 1.1 riastrad #else
90 1.1 riastrad #define DRM_FILE_PAGE_OFFSET_START ((0xFFFFFFFUL >> PAGE_SHIFT) + 1)
91 1.1 riastrad #define DRM_FILE_PAGE_OFFSET_SIZE ((0xFFFFFFFUL >> PAGE_SHIFT) * 16)
92 1.1 riastrad #endif
93 1.1 riastrad
94 1.1 riastrad /**
95 1.3 riastrad * drm_gem_init - Initialize the GEM device fields
96 1.3 riastrad * @dev: drm_devic structure to initialize
97 1.1 riastrad */
98 1.1 riastrad int
99 1.1 riastrad drm_gem_init(struct drm_device *dev)
100 1.1 riastrad {
101 1.3 riastrad struct drm_vma_offset_manager *vma_offset_manager;
102 1.1 riastrad
103 1.4 riastrad #ifdef __NetBSD__
104 1.4 riastrad linux_mutex_init(&dev->object_name_lock);
105 1.4 riastrad #else
106 1.3 riastrad mutex_init(&dev->object_name_lock);
107 1.4 riastrad #endif
108 1.1 riastrad idr_init(&dev->object_name_idr);
109 1.1 riastrad
110 1.3 riastrad vma_offset_manager = kzalloc(sizeof(*vma_offset_manager), GFP_KERNEL);
111 1.3 riastrad if (!vma_offset_manager) {
112 1.1 riastrad DRM_ERROR("out of memory\n");
113 1.1 riastrad return -ENOMEM;
114 1.1 riastrad }
115 1.1 riastrad
116 1.3 riastrad dev->vma_offset_manager = vma_offset_manager;
117 1.3 riastrad drm_vma_offset_manager_init(vma_offset_manager,
118 1.3 riastrad DRM_FILE_PAGE_OFFSET_START,
119 1.3 riastrad DRM_FILE_PAGE_OFFSET_SIZE);
120 1.1 riastrad
121 1.1 riastrad return 0;
122 1.1 riastrad }
123 1.1 riastrad
124 1.1 riastrad void
125 1.1 riastrad drm_gem_destroy(struct drm_device *dev)
126 1.1 riastrad {
127 1.1 riastrad
128 1.3 riastrad drm_vma_offset_manager_destroy(dev->vma_offset_manager);
129 1.3 riastrad kfree(dev->vma_offset_manager);
130 1.3 riastrad dev->vma_offset_manager = NULL;
131 1.2 riastrad
132 1.2 riastrad idr_destroy(&dev->object_name_idr);
133 1.2 riastrad #ifdef __NetBSD__
134 1.4 riastrad linux_mutex_destroy(&dev->object_name_lock);
135 1.2 riastrad #endif
136 1.1 riastrad }
137 1.1 riastrad
138 1.1 riastrad /**
139 1.3 riastrad * drm_gem_object_init - initialize an allocated shmem-backed GEM object
140 1.3 riastrad * @dev: drm_device the object should be initialized for
141 1.3 riastrad * @obj: drm_gem_object to initialize
142 1.3 riastrad * @size: object size
143 1.3 riastrad *
144 1.1 riastrad * Initialize an already allocated GEM object of the specified size with
145 1.1 riastrad * shmfs backing store.
146 1.1 riastrad */
147 1.1 riastrad int drm_gem_object_init(struct drm_device *dev,
148 1.1 riastrad struct drm_gem_object *obj, size_t size)
149 1.1 riastrad {
150 1.4 riastrad #ifndef __NetBSD__
151 1.3 riastrad struct file *filp;
152 1.4 riastrad #endif
153 1.3 riastrad
154 1.3 riastrad drm_gem_private_object_init(dev, obj, size);
155 1.1 riastrad
156 1.2 riastrad #ifdef __NetBSD__
157 1.2 riastrad obj->gemo_shm_uao = uao_create(size, 0);
158 1.2 riastrad #else
159 1.3 riastrad filp = shmem_file_setup("drm mm object", size, VM_NORESERVE);
160 1.3 riastrad if (IS_ERR(filp))
161 1.3 riastrad return PTR_ERR(filp);
162 1.3 riastrad
163 1.3 riastrad obj->filp = filp;
164 1.2 riastrad #endif
165 1.1 riastrad
166 1.1 riastrad return 0;
167 1.1 riastrad }
168 1.1 riastrad EXPORT_SYMBOL(drm_gem_object_init);
169 1.1 riastrad
170 1.1 riastrad /**
171 1.3 riastrad * drm_gem_object_init - initialize an allocated private GEM object
172 1.3 riastrad * @dev: drm_device the object should be initialized for
173 1.3 riastrad * @obj: drm_gem_object to initialize
174 1.3 riastrad * @size: object size
175 1.3 riastrad *
176 1.1 riastrad * Initialize an already allocated GEM object of the specified size with
177 1.1 riastrad * no GEM provided backing store. Instead the caller is responsible for
178 1.1 riastrad * backing the object and handling it.
179 1.1 riastrad */
180 1.3 riastrad void drm_gem_private_object_init(struct drm_device *dev,
181 1.3 riastrad struct drm_gem_object *obj, size_t size)
182 1.1 riastrad {
183 1.1 riastrad BUG_ON((size & (PAGE_SIZE - 1)) != 0);
184 1.1 riastrad
185 1.1 riastrad obj->dev = dev;
186 1.2 riastrad #ifdef __NetBSD__
187 1.2 riastrad obj->gemo_shm_uao = NULL;
188 1.2 riastrad KASSERT(drm_core_check_feature(dev, DRIVER_GEM));
189 1.2 riastrad KASSERT(dev->driver->gem_uvm_ops != NULL);
190 1.2 riastrad uvm_obj_init(&obj->gemo_uvmobj, dev->driver->gem_uvm_ops, true, 1);
191 1.2 riastrad #else
192 1.1 riastrad obj->filp = NULL;
193 1.2 riastrad #endif
194 1.1 riastrad
195 1.1 riastrad kref_init(&obj->refcount);
196 1.3 riastrad obj->handle_count = 0;
197 1.1 riastrad obj->size = size;
198 1.4 riastrad #ifdef __NetBSD__
199 1.4 riastrad drm_vma_node_init(&obj->vma_node);
200 1.4 riastrad #else
201 1.3 riastrad drm_vma_node_reset(&obj->vma_node);
202 1.4 riastrad #endif
203 1.3 riastrad }
204 1.3 riastrad EXPORT_SYMBOL(drm_gem_private_object_init);
205 1.1 riastrad
206 1.3 riastrad static void
207 1.3 riastrad drm_gem_remove_prime_handles(struct drm_gem_object *obj, struct drm_file *filp)
208 1.3 riastrad {
209 1.4 riastrad #ifndef __NetBSD__ /* XXX drm prime */
210 1.3 riastrad /*
211 1.3 riastrad * Note: obj->dma_buf can't disappear as long as we still hold a
212 1.3 riastrad * handle reference in obj->handle_count.
213 1.3 riastrad */
214 1.3 riastrad mutex_lock(&filp->prime.lock);
215 1.3 riastrad if (obj->dma_buf) {
216 1.3 riastrad drm_prime_remove_buf_handle_locked(&filp->prime,
217 1.3 riastrad obj->dma_buf);
218 1.3 riastrad }
219 1.3 riastrad mutex_unlock(&filp->prime.lock);
220 1.4 riastrad #endif
221 1.1 riastrad }
222 1.1 riastrad
223 1.1 riastrad /**
224 1.3 riastrad * drm_gem_object_free - release resources bound to userspace handles
225 1.3 riastrad * @obj: GEM object to clean up.
226 1.3 riastrad *
227 1.3 riastrad * Called after the last handle to the object has been closed
228 1.3 riastrad *
229 1.3 riastrad * Removes any name for the object. Note that this must be
230 1.3 riastrad * called before drm_gem_object_free or we'll be touching
231 1.3 riastrad * freed memory
232 1.1 riastrad */
233 1.3 riastrad static void drm_gem_object_handle_free(struct drm_gem_object *obj)
234 1.1 riastrad {
235 1.3 riastrad struct drm_device *dev = obj->dev;
236 1.3 riastrad
237 1.3 riastrad /* Remove any name for this object */
238 1.3 riastrad if (obj->name) {
239 1.3 riastrad idr_remove(&dev->object_name_idr, obj->name);
240 1.3 riastrad obj->name = 0;
241 1.3 riastrad }
242 1.3 riastrad }
243 1.1 riastrad
244 1.3 riastrad static void drm_gem_object_exported_dma_buf_free(struct drm_gem_object *obj)
245 1.3 riastrad {
246 1.4 riastrad #ifndef __NetBSD__
247 1.3 riastrad /* Unbreak the reference cycle if we have an exported dma_buf. */
248 1.3 riastrad if (obj->dma_buf) {
249 1.3 riastrad dma_buf_put(obj->dma_buf);
250 1.3 riastrad obj->dma_buf = NULL;
251 1.1 riastrad }
252 1.4 riastrad #endif
253 1.1 riastrad }
254 1.1 riastrad
255 1.1 riastrad static void
256 1.3 riastrad drm_gem_object_handle_unreference_unlocked(struct drm_gem_object *obj)
257 1.1 riastrad {
258 1.3 riastrad if (WARN_ON(obj->handle_count == 0))
259 1.3 riastrad return;
260 1.3 riastrad
261 1.3 riastrad /*
262 1.3 riastrad * Must bump handle count first as this may be the last
263 1.3 riastrad * ref, in which case the object would disappear before we
264 1.3 riastrad * checked for a name
265 1.3 riastrad */
266 1.3 riastrad
267 1.3 riastrad mutex_lock(&obj->dev->object_name_lock);
268 1.3 riastrad if (--obj->handle_count == 0) {
269 1.3 riastrad drm_gem_object_handle_free(obj);
270 1.3 riastrad drm_gem_object_exported_dma_buf_free(obj);
271 1.1 riastrad }
272 1.3 riastrad mutex_unlock(&obj->dev->object_name_lock);
273 1.3 riastrad
274 1.3 riastrad drm_gem_object_unreference_unlocked(obj);
275 1.1 riastrad }
276 1.1 riastrad
277 1.1 riastrad /**
278 1.3 riastrad * drm_gem_handle_delete - deletes the given file-private handle
279 1.3 riastrad * @filp: drm file-private structure to use for the handle look up
280 1.3 riastrad * @handle: userspace handle to delete
281 1.3 riastrad *
282 1.3 riastrad * Removes the GEM handle from the @filp lookup table and if this is the last
283 1.3 riastrad * handle also cleans up linked resources like GEM names.
284 1.1 riastrad */
285 1.1 riastrad int
286 1.1 riastrad drm_gem_handle_delete(struct drm_file *filp, u32 handle)
287 1.1 riastrad {
288 1.1 riastrad struct drm_device *dev;
289 1.1 riastrad struct drm_gem_object *obj;
290 1.1 riastrad
291 1.1 riastrad /* This is gross. The idr system doesn't let us try a delete and
292 1.1 riastrad * return an error code. It just spews if you fail at deleting.
293 1.1 riastrad * So, we have to grab a lock around finding the object and then
294 1.1 riastrad * doing the delete on it and dropping the refcount, or the user
295 1.1 riastrad * could race us to double-decrement the refcount and cause a
296 1.1 riastrad * use-after-free later. Given the frequency of our handle lookups,
297 1.1 riastrad * we may want to use ida for number allocation and a hash table
298 1.1 riastrad * for the pointers, anyway.
299 1.1 riastrad */
300 1.1 riastrad spin_lock(&filp->table_lock);
301 1.1 riastrad
302 1.1 riastrad /* Check if we currently have a reference on the object */
303 1.1 riastrad obj = idr_find(&filp->object_idr, handle);
304 1.1 riastrad if (obj == NULL) {
305 1.1 riastrad spin_unlock(&filp->table_lock);
306 1.1 riastrad return -EINVAL;
307 1.1 riastrad }
308 1.1 riastrad dev = obj->dev;
309 1.1 riastrad
310 1.1 riastrad /* Release reference and decrement refcount. */
311 1.1 riastrad idr_remove(&filp->object_idr, handle);
312 1.1 riastrad spin_unlock(&filp->table_lock);
313 1.1 riastrad
314 1.3 riastrad if (drm_core_check_feature(dev, DRIVER_PRIME))
315 1.3 riastrad drm_gem_remove_prime_handles(obj, filp);
316 1.3 riastrad drm_vma_node_revoke(&obj->vma_node, filp->filp);
317 1.1 riastrad
318 1.1 riastrad if (dev->driver->gem_close_object)
319 1.1 riastrad dev->driver->gem_close_object(obj, filp);
320 1.1 riastrad drm_gem_object_handle_unreference_unlocked(obj);
321 1.1 riastrad
322 1.1 riastrad return 0;
323 1.1 riastrad }
324 1.1 riastrad EXPORT_SYMBOL(drm_gem_handle_delete);
325 1.1 riastrad
326 1.1 riastrad /**
327 1.3 riastrad * drm_gem_dumb_destroy - dumb fb callback helper for gem based drivers
328 1.3 riastrad * @file: drm file-private structure to remove the dumb handle from
329 1.3 riastrad * @dev: corresponding drm_device
330 1.3 riastrad * @handle: the dumb handle to remove
331 1.3 riastrad *
332 1.3 riastrad * This implements the ->dumb_destroy kms driver callback for drivers which use
333 1.3 riastrad * gem to manage their backing storage.
334 1.3 riastrad */
335 1.3 riastrad int drm_gem_dumb_destroy(struct drm_file *file,
336 1.3 riastrad struct drm_device *dev,
337 1.3 riastrad uint32_t handle)
338 1.3 riastrad {
339 1.3 riastrad return drm_gem_handle_delete(file, handle);
340 1.3 riastrad }
341 1.3 riastrad EXPORT_SYMBOL(drm_gem_dumb_destroy);
342 1.3 riastrad
343 1.3 riastrad /**
344 1.3 riastrad * drm_gem_handle_create_tail - internal functions to create a handle
345 1.3 riastrad * @file_priv: drm file-private structure to register the handle for
346 1.3 riastrad * @obj: object to register
347 1.3 riastrad * @handlep: pionter to return the created handle to the caller
348 1.3 riastrad *
349 1.3 riastrad * This expects the dev->object_name_lock to be held already and will drop it
350 1.3 riastrad * before returning. Used to avoid races in establishing new handles when
351 1.3 riastrad * importing an object from either an flink name or a dma-buf.
352 1.1 riastrad */
353 1.1 riastrad int
354 1.3 riastrad drm_gem_handle_create_tail(struct drm_file *file_priv,
355 1.3 riastrad struct drm_gem_object *obj,
356 1.3 riastrad u32 *handlep)
357 1.1 riastrad {
358 1.1 riastrad struct drm_device *dev = obj->dev;
359 1.1 riastrad int ret;
360 1.1 riastrad
361 1.3 riastrad WARN_ON(!mutex_is_locked(&dev->object_name_lock));
362 1.3 riastrad
363 1.1 riastrad /*
364 1.3 riastrad * Get the user-visible handle using idr. Preload and perform
365 1.3 riastrad * allocation under our spinlock.
366 1.1 riastrad */
367 1.3 riastrad idr_preload(GFP_KERNEL);
368 1.3 riastrad spin_lock(&file_priv->table_lock);
369 1.1 riastrad
370 1.3 riastrad ret = idr_alloc(&file_priv->object_idr, obj, 1, 0, GFP_NOWAIT);
371 1.3 riastrad drm_gem_object_reference(obj);
372 1.3 riastrad obj->handle_count++;
373 1.1 riastrad spin_unlock(&file_priv->table_lock);
374 1.3 riastrad idr_preload_end();
375 1.3 riastrad mutex_unlock(&dev->object_name_lock);
376 1.3 riastrad if (ret < 0) {
377 1.3 riastrad drm_gem_object_handle_unreference_unlocked(obj);
378 1.1 riastrad return ret;
379 1.3 riastrad }
380 1.3 riastrad *handlep = ret;
381 1.1 riastrad
382 1.3 riastrad ret = drm_vma_node_allow(&obj->vma_node, file_priv->filp);
383 1.3 riastrad if (ret) {
384 1.3 riastrad drm_gem_handle_delete(file_priv, *handlep);
385 1.3 riastrad return ret;
386 1.3 riastrad }
387 1.1 riastrad
388 1.1 riastrad if (dev->driver->gem_open_object) {
389 1.1 riastrad ret = dev->driver->gem_open_object(obj, file_priv);
390 1.1 riastrad if (ret) {
391 1.1 riastrad drm_gem_handle_delete(file_priv, *handlep);
392 1.1 riastrad return ret;
393 1.1 riastrad }
394 1.1 riastrad }
395 1.1 riastrad
396 1.1 riastrad return 0;
397 1.1 riastrad }
398 1.3 riastrad
399 1.3 riastrad /**
400 1.3 riastrad * gem_handle_create - create a gem handle for an object
401 1.3 riastrad * @file_priv: drm file-private structure to register the handle for
402 1.3 riastrad * @obj: object to register
403 1.3 riastrad * @handlep: pionter to return the created handle to the caller
404 1.3 riastrad *
405 1.3 riastrad * Create a handle for this object. This adds a handle reference
406 1.3 riastrad * to the object, which includes a regular reference count. Callers
407 1.3 riastrad * will likely want to dereference the object afterwards.
408 1.3 riastrad */
409 1.3 riastrad int
410 1.3 riastrad drm_gem_handle_create(struct drm_file *file_priv,
411 1.3 riastrad struct drm_gem_object *obj,
412 1.3 riastrad u32 *handlep)
413 1.3 riastrad {
414 1.3 riastrad mutex_lock(&obj->dev->object_name_lock);
415 1.3 riastrad
416 1.3 riastrad return drm_gem_handle_create_tail(file_priv, obj, handlep);
417 1.3 riastrad }
418 1.1 riastrad EXPORT_SYMBOL(drm_gem_handle_create);
419 1.1 riastrad
420 1.1 riastrad
421 1.1 riastrad /**
422 1.1 riastrad * drm_gem_free_mmap_offset - release a fake mmap offset for an object
423 1.1 riastrad * @obj: obj in question
424 1.1 riastrad *
425 1.1 riastrad * This routine frees fake offsets allocated by drm_gem_create_mmap_offset().
426 1.1 riastrad */
427 1.1 riastrad void
428 1.1 riastrad drm_gem_free_mmap_offset(struct drm_gem_object *obj)
429 1.1 riastrad {
430 1.1 riastrad struct drm_device *dev = obj->dev;
431 1.1 riastrad
432 1.3 riastrad drm_vma_offset_remove(dev->vma_offset_manager, &obj->vma_node);
433 1.1 riastrad }
434 1.1 riastrad EXPORT_SYMBOL(drm_gem_free_mmap_offset);
435 1.1 riastrad
436 1.1 riastrad /**
437 1.3 riastrad * drm_gem_create_mmap_offset_size - create a fake mmap offset for an object
438 1.3 riastrad * @obj: obj in question
439 1.3 riastrad * @size: the virtual size
440 1.3 riastrad *
441 1.3 riastrad * GEM memory mapping works by handing back to userspace a fake mmap offset
442 1.3 riastrad * it can use in a subsequent mmap(2) call. The DRM core code then looks
443 1.3 riastrad * up the object based on the offset and sets up the various memory mapping
444 1.3 riastrad * structures.
445 1.3 riastrad *
446 1.3 riastrad * This routine allocates and attaches a fake offset for @obj, in cases where
447 1.3 riastrad * the virtual size differs from the physical size (ie. obj->size). Otherwise
448 1.3 riastrad * just use drm_gem_create_mmap_offset().
449 1.3 riastrad */
450 1.3 riastrad int
451 1.3 riastrad drm_gem_create_mmap_offset_size(struct drm_gem_object *obj, size_t size)
452 1.3 riastrad {
453 1.3 riastrad struct drm_device *dev = obj->dev;
454 1.3 riastrad
455 1.3 riastrad return drm_vma_offset_add(dev->vma_offset_manager, &obj->vma_node,
456 1.3 riastrad size / PAGE_SIZE);
457 1.3 riastrad }
458 1.3 riastrad EXPORT_SYMBOL(drm_gem_create_mmap_offset_size);
459 1.3 riastrad
460 1.3 riastrad /**
461 1.1 riastrad * drm_gem_create_mmap_offset - create a fake mmap offset for an object
462 1.1 riastrad * @obj: obj in question
463 1.1 riastrad *
464 1.1 riastrad * GEM memory mapping works by handing back to userspace a fake mmap offset
465 1.1 riastrad * it can use in a subsequent mmap(2) call. The DRM core code then looks
466 1.1 riastrad * up the object based on the offset and sets up the various memory mapping
467 1.1 riastrad * structures.
468 1.1 riastrad *
469 1.1 riastrad * This routine allocates and attaches a fake offset for @obj.
470 1.1 riastrad */
471 1.3 riastrad int drm_gem_create_mmap_offset(struct drm_gem_object *obj)
472 1.3 riastrad {
473 1.3 riastrad return drm_gem_create_mmap_offset_size(obj, obj->size);
474 1.3 riastrad }
475 1.3 riastrad EXPORT_SYMBOL(drm_gem_create_mmap_offset);
476 1.3 riastrad
477 1.3 riastrad /**
478 1.3 riastrad * drm_gem_get_pages - helper to allocate backing pages for a GEM object
479 1.3 riastrad * from shmem
480 1.3 riastrad * @obj: obj in question
481 1.3 riastrad * @gfpmask: gfp mask of requested pages
482 1.3 riastrad */
483 1.4 riastrad #ifdef __NetBSD__
484 1.4 riastrad struct page **
485 1.4 riastrad drm_gem_get_pages(struct drm_gem_object *obj, gfp_t gfpmask)
486 1.4 riastrad {
487 1.4 riastrad struct pglist pglist;
488 1.4 riastrad struct vm_page *vm_page;
489 1.4 riastrad struct page **pages;
490 1.4 riastrad unsigned i;
491 1.4 riastrad int ret;
492 1.4 riastrad
493 1.4 riastrad KASSERT((obj->size & (PAGE_SIZE - 1)) != 0);
494 1.4 riastrad
495 1.4 riastrad pages = drm_malloc_ab(obj->size >> PAGE_SHIFT, sizeof(*pages));
496 1.4 riastrad if (pages == NULL) {
497 1.4 riastrad ret = -ENOMEM;
498 1.4 riastrad goto fail0;
499 1.4 riastrad }
500 1.4 riastrad
501 1.4 riastrad TAILQ_INIT(&pglist);
502 1.4 riastrad /* XXX errno NetBSD->Linux */
503 1.4 riastrad ret = -uvm_obj_wirepages(obj->gemo_shm_uao, 0, obj->size, &pglist);
504 1.4 riastrad if (ret)
505 1.4 riastrad goto fail1;
506 1.4 riastrad
507 1.4 riastrad i = 0;
508 1.4 riastrad TAILQ_FOREACH(vm_page, &pglist, pageq.queue)
509 1.4 riastrad pages[i++] = container_of(vm_page, struct page, p_vmp);
510 1.4 riastrad
511 1.4 riastrad return pages;
512 1.4 riastrad
513 1.4 riastrad fail1: drm_free_large(pages);
514 1.4 riastrad fail0: return ERR_PTR(ret);
515 1.4 riastrad }
516 1.4 riastrad #else
517 1.3 riastrad struct page **drm_gem_get_pages(struct drm_gem_object *obj, gfp_t gfpmask)
518 1.1 riastrad {
519 1.3 riastrad struct inode *inode;
520 1.3 riastrad struct address_space *mapping;
521 1.3 riastrad struct page *p, **pages;
522 1.3 riastrad int i, npages;
523 1.3 riastrad
524 1.3 riastrad /* This is the shared memory object that backs the GEM resource */
525 1.3 riastrad inode = file_inode(obj->filp);
526 1.3 riastrad mapping = inode->i_mapping;
527 1.3 riastrad
528 1.3 riastrad /* We already BUG_ON() for non-page-aligned sizes in
529 1.3 riastrad * drm_gem_object_init(), so we should never hit this unless
530 1.3 riastrad * driver author is doing something really wrong:
531 1.3 riastrad */
532 1.3 riastrad WARN_ON((obj->size & (PAGE_SIZE - 1)) != 0);
533 1.1 riastrad
534 1.3 riastrad npages = obj->size >> PAGE_SHIFT;
535 1.1 riastrad
536 1.3 riastrad pages = drm_malloc_ab(npages, sizeof(struct page *));
537 1.3 riastrad if (pages == NULL)
538 1.3 riastrad return ERR_PTR(-ENOMEM);
539 1.3 riastrad
540 1.3 riastrad gfpmask |= mapping_gfp_mask(mapping);
541 1.3 riastrad
542 1.3 riastrad for (i = 0; i < npages; i++) {
543 1.3 riastrad p = shmem_read_mapping_page_gfp(mapping, i, gfpmask);
544 1.3 riastrad if (IS_ERR(p))
545 1.3 riastrad goto fail;
546 1.3 riastrad pages[i] = p;
547 1.3 riastrad
548 1.3 riastrad /* There is a hypothetical issue w/ drivers that require
549 1.3 riastrad * buffer memory in the low 4GB.. if the pages are un-
550 1.3 riastrad * pinned, and swapped out, they can end up swapped back
551 1.3 riastrad * in above 4GB. If pages are already in memory, then
552 1.3 riastrad * shmem_read_mapping_page_gfp will ignore the gfpmask,
553 1.3 riastrad * even if the already in-memory page disobeys the mask.
554 1.3 riastrad *
555 1.3 riastrad * It is only a theoretical issue today, because none of
556 1.3 riastrad * the devices with this limitation can be populated with
557 1.3 riastrad * enough memory to trigger the issue. But this BUG_ON()
558 1.3 riastrad * is here as a reminder in case the problem with
559 1.3 riastrad * shmem_read_mapping_page_gfp() isn't solved by the time
560 1.3 riastrad * it does become a real issue.
561 1.3 riastrad *
562 1.3 riastrad * See this thread: http://lkml.org/lkml/2011/7/11/238
563 1.3 riastrad */
564 1.3 riastrad BUG_ON((gfpmask & __GFP_DMA32) &&
565 1.3 riastrad (page_to_pfn(p) >= 0x00100000UL));
566 1.1 riastrad }
567 1.1 riastrad
568 1.3 riastrad return pages;
569 1.3 riastrad
570 1.3 riastrad fail:
571 1.3 riastrad while (i--)
572 1.3 riastrad page_cache_release(pages[i]);
573 1.3 riastrad
574 1.3 riastrad drm_free_large(pages);
575 1.3 riastrad return ERR_CAST(p);
576 1.3 riastrad }
577 1.4 riastrad #endif
578 1.3 riastrad EXPORT_SYMBOL(drm_gem_get_pages);
579 1.3 riastrad
580 1.3 riastrad /**
581 1.3 riastrad * drm_gem_put_pages - helper to free backing pages for a GEM object
582 1.3 riastrad * @obj: obj in question
583 1.3 riastrad * @pages: pages to free
584 1.3 riastrad * @dirty: if true, pages will be marked as dirty
585 1.3 riastrad * @accessed: if true, the pages will be marked as accessed
586 1.3 riastrad */
587 1.4 riastrad #ifdef __NetBSD__
588 1.4 riastrad void
589 1.4 riastrad drm_gem_put_pages(struct drm_gem_object *obj, struct page **pages, bool dirty,
590 1.4 riastrad bool accessed __unused /* XXX */)
591 1.4 riastrad {
592 1.4 riastrad unsigned i;
593 1.4 riastrad
594 1.4 riastrad for (i = 0; i < (obj->size >> PAGE_SHIFT); i++) {
595 1.4 riastrad if (dirty)
596 1.4 riastrad pages[i]->p_vmp.flags &= ~PG_CLEAN;
597 1.4 riastrad }
598 1.4 riastrad
599 1.4 riastrad uvm_obj_unwirepages(obj->gemo_shm_uao, 0, obj->size);
600 1.4 riastrad }
601 1.4 riastrad #else
602 1.3 riastrad void drm_gem_put_pages(struct drm_gem_object *obj, struct page **pages,
603 1.3 riastrad bool dirty, bool accessed)
604 1.3 riastrad {
605 1.3 riastrad int i, npages;
606 1.3 riastrad
607 1.3 riastrad /* We already BUG_ON() for non-page-aligned sizes in
608 1.3 riastrad * drm_gem_object_init(), so we should never hit this unless
609 1.3 riastrad * driver author is doing something really wrong:
610 1.3 riastrad */
611 1.3 riastrad WARN_ON((obj->size & (PAGE_SIZE - 1)) != 0);
612 1.3 riastrad
613 1.3 riastrad npages = obj->size >> PAGE_SHIFT;
614 1.1 riastrad
615 1.3 riastrad for (i = 0; i < npages; i++) {
616 1.3 riastrad if (dirty)
617 1.3 riastrad set_page_dirty(pages[i]);
618 1.1 riastrad
619 1.3 riastrad if (accessed)
620 1.3 riastrad mark_page_accessed(pages[i]);
621 1.1 riastrad
622 1.3 riastrad /* Undo the reference we took when populating the table */
623 1.3 riastrad page_cache_release(pages[i]);
624 1.3 riastrad }
625 1.3 riastrad
626 1.3 riastrad drm_free_large(pages);
627 1.1 riastrad }
628 1.4 riastrad #endif
629 1.3 riastrad EXPORT_SYMBOL(drm_gem_put_pages);
630 1.1 riastrad
631 1.1 riastrad /** Returns a reference to the object named by the handle. */
632 1.1 riastrad struct drm_gem_object *
633 1.1 riastrad drm_gem_object_lookup(struct drm_device *dev, struct drm_file *filp,
634 1.1 riastrad u32 handle)
635 1.1 riastrad {
636 1.1 riastrad struct drm_gem_object *obj;
637 1.1 riastrad
638 1.1 riastrad spin_lock(&filp->table_lock);
639 1.1 riastrad
640 1.1 riastrad /* Check if we currently have a reference on the object */
641 1.1 riastrad obj = idr_find(&filp->object_idr, handle);
642 1.1 riastrad if (obj == NULL) {
643 1.1 riastrad spin_unlock(&filp->table_lock);
644 1.1 riastrad return NULL;
645 1.1 riastrad }
646 1.1 riastrad
647 1.1 riastrad drm_gem_object_reference(obj);
648 1.1 riastrad
649 1.1 riastrad spin_unlock(&filp->table_lock);
650 1.1 riastrad
651 1.1 riastrad return obj;
652 1.1 riastrad }
653 1.1 riastrad EXPORT_SYMBOL(drm_gem_object_lookup);
654 1.1 riastrad
655 1.1 riastrad /**
656 1.3 riastrad * drm_gem_close_ioctl - implementation of the GEM_CLOSE ioctl
657 1.3 riastrad * @dev: drm_device
658 1.3 riastrad * @data: ioctl data
659 1.3 riastrad * @file_priv: drm file-private structure
660 1.3 riastrad *
661 1.1 riastrad * Releases the handle to an mm object.
662 1.1 riastrad */
663 1.1 riastrad int
664 1.1 riastrad drm_gem_close_ioctl(struct drm_device *dev, void *data,
665 1.1 riastrad struct drm_file *file_priv)
666 1.1 riastrad {
667 1.1 riastrad struct drm_gem_close *args = data;
668 1.1 riastrad int ret;
669 1.1 riastrad
670 1.1 riastrad if (!(dev->driver->driver_features & DRIVER_GEM))
671 1.1 riastrad return -ENODEV;
672 1.1 riastrad
673 1.1 riastrad ret = drm_gem_handle_delete(file_priv, args->handle);
674 1.1 riastrad
675 1.1 riastrad return ret;
676 1.1 riastrad }
677 1.1 riastrad
678 1.1 riastrad /**
679 1.3 riastrad * drm_gem_flink_ioctl - implementation of the GEM_FLINK ioctl
680 1.3 riastrad * @dev: drm_device
681 1.3 riastrad * @data: ioctl data
682 1.3 riastrad * @file_priv: drm file-private structure
683 1.3 riastrad *
684 1.1 riastrad * Create a global name for an object, returning the name.
685 1.1 riastrad *
686 1.1 riastrad * Note that the name does not hold a reference; when the object
687 1.1 riastrad * is freed, the name goes away.
688 1.1 riastrad */
689 1.1 riastrad int
690 1.1 riastrad drm_gem_flink_ioctl(struct drm_device *dev, void *data,
691 1.1 riastrad struct drm_file *file_priv)
692 1.1 riastrad {
693 1.1 riastrad struct drm_gem_flink *args = data;
694 1.1 riastrad struct drm_gem_object *obj;
695 1.1 riastrad int ret;
696 1.1 riastrad
697 1.1 riastrad if (!(dev->driver->driver_features & DRIVER_GEM))
698 1.1 riastrad return -ENODEV;
699 1.1 riastrad
700 1.1 riastrad obj = drm_gem_object_lookup(dev, file_priv, args->handle);
701 1.1 riastrad if (obj == NULL)
702 1.1 riastrad return -ENOENT;
703 1.1 riastrad
704 1.3 riastrad mutex_lock(&dev->object_name_lock);
705 1.3 riastrad idr_preload(GFP_KERNEL);
706 1.3 riastrad /* prevent races with concurrent gem_close. */
707 1.3 riastrad if (obj->handle_count == 0) {
708 1.3 riastrad ret = -ENOENT;
709 1.1 riastrad goto err;
710 1.1 riastrad }
711 1.1 riastrad
712 1.1 riastrad if (!obj->name) {
713 1.3 riastrad ret = idr_alloc(&dev->object_name_idr, obj, 1, 0, GFP_NOWAIT);
714 1.3 riastrad if (ret < 0)
715 1.1 riastrad goto err;
716 1.1 riastrad
717 1.3 riastrad obj->name = ret;
718 1.1 riastrad }
719 1.1 riastrad
720 1.3 riastrad args->name = (uint64_t) obj->name;
721 1.3 riastrad ret = 0;
722 1.3 riastrad
723 1.1 riastrad err:
724 1.3 riastrad idr_preload_end();
725 1.3 riastrad mutex_unlock(&dev->object_name_lock);
726 1.1 riastrad drm_gem_object_unreference_unlocked(obj);
727 1.1 riastrad return ret;
728 1.1 riastrad }
729 1.1 riastrad
730 1.1 riastrad /**
731 1.3 riastrad * drm_gem_open - implementation of the GEM_OPEN ioctl
732 1.3 riastrad * @dev: drm_device
733 1.3 riastrad * @data: ioctl data
734 1.3 riastrad * @file_priv: drm file-private structure
735 1.3 riastrad *
736 1.1 riastrad * Open an object using the global name, returning a handle and the size.
737 1.1 riastrad *
738 1.1 riastrad * This handle (of course) holds a reference to the object, so the object
739 1.1 riastrad * will not go away until the handle is deleted.
740 1.1 riastrad */
741 1.1 riastrad int
742 1.1 riastrad drm_gem_open_ioctl(struct drm_device *dev, void *data,
743 1.1 riastrad struct drm_file *file_priv)
744 1.1 riastrad {
745 1.1 riastrad struct drm_gem_open *args = data;
746 1.1 riastrad struct drm_gem_object *obj;
747 1.1 riastrad int ret;
748 1.1 riastrad u32 handle;
749 1.1 riastrad
750 1.1 riastrad if (!(dev->driver->driver_features & DRIVER_GEM))
751 1.1 riastrad return -ENODEV;
752 1.1 riastrad
753 1.3 riastrad mutex_lock(&dev->object_name_lock);
754 1.1 riastrad obj = idr_find(&dev->object_name_idr, (int) args->name);
755 1.3 riastrad if (obj) {
756 1.1 riastrad drm_gem_object_reference(obj);
757 1.3 riastrad } else {
758 1.3 riastrad mutex_unlock(&dev->object_name_lock);
759 1.1 riastrad return -ENOENT;
760 1.3 riastrad }
761 1.1 riastrad
762 1.3 riastrad /* drm_gem_handle_create_tail unlocks dev->object_name_lock. */
763 1.3 riastrad ret = drm_gem_handle_create_tail(file_priv, obj, &handle);
764 1.1 riastrad drm_gem_object_unreference_unlocked(obj);
765 1.1 riastrad if (ret)
766 1.1 riastrad return ret;
767 1.1 riastrad
768 1.1 riastrad args->handle = handle;
769 1.1 riastrad args->size = obj->size;
770 1.1 riastrad
771 1.1 riastrad return 0;
772 1.1 riastrad }
773 1.1 riastrad
774 1.1 riastrad /**
775 1.3 riastrad * gem_gem_open - initalizes GEM file-private structures at devnode open time
776 1.3 riastrad * @dev: drm_device which is being opened by userspace
777 1.3 riastrad * @file_private: drm file-private structure to set up
778 1.3 riastrad *
779 1.1 riastrad * Called at device open time, sets up the structure for handling refcounting
780 1.1 riastrad * of mm objects.
781 1.1 riastrad */
782 1.1 riastrad void
783 1.1 riastrad drm_gem_open(struct drm_device *dev, struct drm_file *file_private)
784 1.1 riastrad {
785 1.1 riastrad idr_init(&file_private->object_idr);
786 1.1 riastrad spin_lock_init(&file_private->table_lock);
787 1.1 riastrad }
788 1.1 riastrad
789 1.3 riastrad /*
790 1.1 riastrad * Called at device close to release the file's
791 1.1 riastrad * handle references on objects.
792 1.1 riastrad */
793 1.1 riastrad static int
794 1.1 riastrad drm_gem_object_release_handle(int id, void *ptr, void *data)
795 1.1 riastrad {
796 1.1 riastrad struct drm_file *file_priv = data;
797 1.1 riastrad struct drm_gem_object *obj = ptr;
798 1.1 riastrad struct drm_device *dev = obj->dev;
799 1.1 riastrad
800 1.2 riastrad #ifndef __NetBSD__ /* XXX drm prime */
801 1.3 riastrad if (drm_core_check_feature(dev, DRIVER_PRIME))
802 1.3 riastrad drm_gem_remove_prime_handles(obj, file_priv);
803 1.2 riastrad #endif
804 1.3 riastrad drm_vma_node_revoke(&obj->vma_node, file_priv->filp);
805 1.1 riastrad
806 1.1 riastrad if (dev->driver->gem_close_object)
807 1.1 riastrad dev->driver->gem_close_object(obj, file_priv);
808 1.1 riastrad
809 1.1 riastrad drm_gem_object_handle_unreference_unlocked(obj);
810 1.1 riastrad
811 1.1 riastrad return 0;
812 1.1 riastrad }
813 1.1 riastrad
814 1.1 riastrad /**
815 1.3 riastrad * drm_gem_release - release file-private GEM resources
816 1.3 riastrad * @dev: drm_device which is being closed by userspace
817 1.3 riastrad * @file_private: drm file-private structure to clean up
818 1.3 riastrad *
819 1.1 riastrad * Called at close time when the filp is going away.
820 1.1 riastrad *
821 1.1 riastrad * Releases any remaining references on objects by this filp.
822 1.1 riastrad */
823 1.1 riastrad void
824 1.1 riastrad drm_gem_release(struct drm_device *dev, struct drm_file *file_private)
825 1.1 riastrad {
826 1.1 riastrad idr_for_each(&file_private->object_idr,
827 1.1 riastrad &drm_gem_object_release_handle, file_private);
828 1.1 riastrad idr_destroy(&file_private->object_idr);
829 1.2 riastrad #ifdef __NetBSD__
830 1.2 riastrad spin_lock_destroy(&file_private->table_lock);
831 1.2 riastrad #endif
832 1.1 riastrad }
833 1.1 riastrad
834 1.1 riastrad void
835 1.1 riastrad drm_gem_object_release(struct drm_gem_object *obj)
836 1.1 riastrad {
837 1.4 riastrad #ifndef __NetBSD__
838 1.3 riastrad WARN_ON(obj->dma_buf);
839 1.4 riastrad #endif
840 1.3 riastrad
841 1.2 riastrad #ifdef __NetBSD__
842 1.4 riastrad drm_vma_node_destroy(&obj->vma_node);
843 1.2 riastrad if (obj->gemo_shm_uao)
844 1.2 riastrad uao_detach(obj->gemo_shm_uao);
845 1.2 riastrad uvm_obj_destroy(&obj->gemo_uvmobj, true);
846 1.2 riastrad #else
847 1.1 riastrad if (obj->filp)
848 1.3 riastrad fput(obj->filp);
849 1.2 riastrad #endif
850 1.3 riastrad
851 1.3 riastrad drm_gem_free_mmap_offset(obj);
852 1.1 riastrad }
853 1.1 riastrad EXPORT_SYMBOL(drm_gem_object_release);
854 1.1 riastrad
855 1.1 riastrad /**
856 1.3 riastrad * drm_gem_object_free - free a GEM object
857 1.3 riastrad * @kref: kref of the object to free
858 1.3 riastrad *
859 1.1 riastrad * Called after the last reference to the object has been lost.
860 1.1 riastrad * Must be called holding struct_ mutex
861 1.1 riastrad *
862 1.1 riastrad * Frees the object
863 1.1 riastrad */
864 1.1 riastrad void
865 1.1 riastrad drm_gem_object_free(struct kref *kref)
866 1.1 riastrad {
867 1.1 riastrad struct drm_gem_object *obj = (struct drm_gem_object *) kref;
868 1.1 riastrad struct drm_device *dev = obj->dev;
869 1.1 riastrad
870 1.1 riastrad BUG_ON(!mutex_is_locked(&dev->struct_mutex));
871 1.1 riastrad
872 1.1 riastrad if (dev->driver->gem_free_object != NULL)
873 1.1 riastrad dev->driver->gem_free_object(obj);
874 1.1 riastrad }
875 1.1 riastrad EXPORT_SYMBOL(drm_gem_object_free);
876 1.1 riastrad
877 1.2 riastrad #ifndef __NetBSD__
878 1.2 riastrad
879 1.1 riastrad void drm_gem_vm_open(struct vm_area_struct *vma)
880 1.1 riastrad {
881 1.1 riastrad struct drm_gem_object *obj = vma->vm_private_data;
882 1.1 riastrad
883 1.1 riastrad drm_gem_object_reference(obj);
884 1.1 riastrad
885 1.1 riastrad mutex_lock(&obj->dev->struct_mutex);
886 1.1 riastrad drm_vm_open_locked(obj->dev, vma);
887 1.1 riastrad mutex_unlock(&obj->dev->struct_mutex);
888 1.1 riastrad }
889 1.1 riastrad EXPORT_SYMBOL(drm_gem_vm_open);
890 1.1 riastrad
891 1.1 riastrad void drm_gem_vm_close(struct vm_area_struct *vma)
892 1.1 riastrad {
893 1.1 riastrad struct drm_gem_object *obj = vma->vm_private_data;
894 1.1 riastrad struct drm_device *dev = obj->dev;
895 1.1 riastrad
896 1.1 riastrad mutex_lock(&dev->struct_mutex);
897 1.1 riastrad drm_vm_close_locked(obj->dev, vma);
898 1.1 riastrad drm_gem_object_unreference(obj);
899 1.1 riastrad mutex_unlock(&dev->struct_mutex);
900 1.1 riastrad }
901 1.1 riastrad EXPORT_SYMBOL(drm_gem_vm_close);
902 1.1 riastrad
903 1.3 riastrad /**
904 1.3 riastrad * drm_gem_mmap_obj - memory map a GEM object
905 1.3 riastrad * @obj: the GEM object to map
906 1.3 riastrad * @obj_size: the object size to be mapped, in bytes
907 1.3 riastrad * @vma: VMA for the area to be mapped
908 1.3 riastrad *
909 1.3 riastrad * Set up the VMA to prepare mapping of the GEM object using the gem_vm_ops
910 1.3 riastrad * provided by the driver. Depending on their requirements, drivers can either
911 1.3 riastrad * provide a fault handler in their gem_vm_ops (in which case any accesses to
912 1.3 riastrad * the object will be trapped, to perform migration, GTT binding, surface
913 1.3 riastrad * register allocation, or performance monitoring), or mmap the buffer memory
914 1.3 riastrad * synchronously after calling drm_gem_mmap_obj.
915 1.3 riastrad *
916 1.3 riastrad * This function is mainly intended to implement the DMABUF mmap operation, when
917 1.3 riastrad * the GEM object is not looked up based on its fake offset. To implement the
918 1.3 riastrad * DRM mmap operation, drivers should use the drm_gem_mmap() function.
919 1.3 riastrad *
920 1.3 riastrad * drm_gem_mmap_obj() assumes the user is granted access to the buffer while
921 1.3 riastrad * drm_gem_mmap() prevents unprivileged users from mapping random objects. So
922 1.3 riastrad * callers must verify access restrictions before calling this helper.
923 1.3 riastrad *
924 1.3 riastrad * NOTE: This function has to be protected with dev->struct_mutex
925 1.3 riastrad *
926 1.3 riastrad * Return 0 or success or -EINVAL if the object size is smaller than the VMA
927 1.3 riastrad * size, or if no gem_vm_ops are provided.
928 1.3 riastrad */
929 1.3 riastrad int drm_gem_mmap_obj(struct drm_gem_object *obj, unsigned long obj_size,
930 1.3 riastrad struct vm_area_struct *vma)
931 1.3 riastrad {
932 1.3 riastrad struct drm_device *dev = obj->dev;
933 1.3 riastrad
934 1.3 riastrad lockdep_assert_held(&dev->struct_mutex);
935 1.3 riastrad
936 1.3 riastrad /* Check for valid size. */
937 1.3 riastrad if (obj_size < vma->vm_end - vma->vm_start)
938 1.3 riastrad return -EINVAL;
939 1.3 riastrad
940 1.3 riastrad if (!dev->driver->gem_vm_ops)
941 1.3 riastrad return -EINVAL;
942 1.3 riastrad
943 1.3 riastrad vma->vm_flags |= VM_IO | VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
944 1.3 riastrad vma->vm_ops = dev->driver->gem_vm_ops;
945 1.3 riastrad vma->vm_private_data = obj;
946 1.3 riastrad vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
947 1.3 riastrad
948 1.3 riastrad /* Take a ref for this mapping of the object, so that the fault
949 1.3 riastrad * handler can dereference the mmap offset's pointer to the object.
950 1.3 riastrad * This reference is cleaned up by the corresponding vm_close
951 1.3 riastrad * (which should happen whether the vma was created by this call, or
952 1.3 riastrad * by a vm_open due to mremap or partial unmap or whatever).
953 1.3 riastrad */
954 1.3 riastrad drm_gem_object_reference(obj);
955 1.3 riastrad
956 1.3 riastrad drm_vm_open_locked(dev, vma);
957 1.3 riastrad return 0;
958 1.3 riastrad }
959 1.3 riastrad EXPORT_SYMBOL(drm_gem_mmap_obj);
960 1.1 riastrad
961 1.1 riastrad /**
962 1.1 riastrad * drm_gem_mmap - memory map routine for GEM objects
963 1.1 riastrad * @filp: DRM file pointer
964 1.1 riastrad * @vma: VMA for the area to be mapped
965 1.1 riastrad *
966 1.1 riastrad * If a driver supports GEM object mapping, mmap calls on the DRM file
967 1.1 riastrad * descriptor will end up here.
968 1.1 riastrad *
969 1.3 riastrad * Look up the GEM object based on the offset passed in (vma->vm_pgoff will
970 1.1 riastrad * contain the fake offset we created when the GTT map ioctl was called on
971 1.3 riastrad * the object) and map it with a call to drm_gem_mmap_obj().
972 1.3 riastrad *
973 1.3 riastrad * If the caller is not granted access to the buffer object, the mmap will fail
974 1.3 riastrad * with EACCES. Please see the vma manager for more information.
975 1.1 riastrad */
976 1.1 riastrad int drm_gem_mmap(struct file *filp, struct vm_area_struct *vma)
977 1.1 riastrad {
978 1.1 riastrad struct drm_file *priv = filp->private_data;
979 1.1 riastrad struct drm_device *dev = priv->minor->dev;
980 1.1 riastrad struct drm_gem_object *obj;
981 1.3 riastrad struct drm_vma_offset_node *node;
982 1.3 riastrad int ret;
983 1.1 riastrad
984 1.1 riastrad if (drm_device_is_unplugged(dev))
985 1.1 riastrad return -ENODEV;
986 1.1 riastrad
987 1.1 riastrad mutex_lock(&dev->struct_mutex);
988 1.1 riastrad
989 1.3 riastrad node = drm_vma_offset_exact_lookup(dev->vma_offset_manager,
990 1.3 riastrad vma->vm_pgoff,
991 1.3 riastrad vma_pages(vma));
992 1.3 riastrad if (!node) {
993 1.1 riastrad mutex_unlock(&dev->struct_mutex);
994 1.1 riastrad return drm_mmap(filp, vma);
995 1.3 riastrad } else if (!drm_vma_node_is_allowed(node, filp)) {
996 1.3 riastrad mutex_unlock(&dev->struct_mutex);
997 1.3 riastrad return -EACCES;
998 1.1 riastrad }
999 1.1 riastrad
1000 1.3 riastrad obj = container_of(node, struct drm_gem_object, vma_node);
1001 1.3 riastrad ret = drm_gem_mmap_obj(obj, drm_vma_node_size(node) << PAGE_SHIFT, vma);
1002 1.1 riastrad
1003 1.1 riastrad mutex_unlock(&dev->struct_mutex);
1004 1.1 riastrad
1005 1.1 riastrad return ret;
1006 1.1 riastrad }
1007 1.1 riastrad EXPORT_SYMBOL(drm_gem_mmap);
1008 1.2 riastrad
1009 1.2 riastrad #endif /* defined(__NetBSD__) */
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