drm/i915: Use drm_atomic_helper_update_legacy_modeset_state, v2.
[deliverable/linux.git] / drivers / gpu / drm / drm_drv.c
CommitLineData
1da177e4
LT
1/*
2 * Created: Fri Jan 19 10:48:35 2001 by faith@acm.org
3 *
4 * Copyright 2001 VA Linux Systems, Inc., Sunnyvale, California.
5 * All Rights Reserved.
6 *
c6a1af8a
TR
7 * Author Rickard E. (Rik) Faith <faith@valinux.com>
8 *
1da177e4
LT
9 * Permission is hereby granted, free of charge, to any person obtaining a
10 * copy of this software and associated documentation files (the "Software"),
11 * to deal in the Software without restriction, including without limitation
12 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
13 * and/or sell copies of the Software, and to permit persons to whom the
14 * Software is furnished to do so, subject to the following conditions:
15 *
16 * The above copyright notice and this permission notice (including the next
17 * paragraph) shall be included in all copies or substantial portions of the
18 * Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
24 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
25 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
26 * DEALINGS IN THE SOFTWARE.
27 */
28
1b7199fe 29#include <linux/debugfs.h>
31bbe16f 30#include <linux/fs.h>
1da177e4
LT
31#include <linux/module.h>
32#include <linux/moduleparam.h>
31bbe16f 33#include <linux/mount.h>
5a0e3ad6 34#include <linux/slab.h>
760285e7
DH
35#include <drm/drmP.h>
36#include <drm/drm_core.h>
e7b96070 37#include "drm_legacy.h"
67d0ec4e 38#include "drm_internal.h"
1da177e4 39
b5e89ed5 40unsigned int drm_debug = 0; /* 1 to enable debug output */
1da177e4
LT
41EXPORT_SYMBOL(drm_debug);
42
88a48e29
RC
43bool drm_atomic = 0;
44
b5e89ed5
DA
45MODULE_AUTHOR(CORE_AUTHOR);
46MODULE_DESCRIPTION(CORE_DESC);
1da177e4 47MODULE_LICENSE("GPL and additional rights");
1da177e4 48MODULE_PARM_DESC(debug, "Enable debug output");
88a48e29 49MODULE_PARM_DESC(atomic, "Enable experimental atomic KMS API");
4ed0ce3d 50MODULE_PARM_DESC(vblankoffdelay, "Delay until vblank irq auto-disable [msecs] (0: never disable, <0: disable immediately)");
27641c3f 51MODULE_PARM_DESC(timestamp_precision_usec, "Max. error on timestamps [usecs]");
c61eef72 52MODULE_PARM_DESC(timestamp_monotonic, "Use monotonic timestamps");
1da177e4 53
c0758146 54module_param_named(debug, drm_debug, int, 0600);
88a48e29 55module_param_named_unsafe(atomic, drm_atomic, bool, 0600);
1da177e4 56
0d639883 57static DEFINE_SPINLOCK(drm_minor_lock);
1b7199fe 58static struct idr drm_minors_idr;
2c14f28b 59
0650fd58 60struct class *drm_class;
1b7199fe 61static struct dentry *drm_debugfs_root;
5ad3d883 62
a1f1a79c 63void drm_err(const char *format, ...)
5ad3d883
JP
64{
65 struct va_format vaf;
66 va_list args;
5ad3d883
JP
67
68 va_start(args, format);
69
70 vaf.fmt = format;
71 vaf.va = &args;
72
2ee762b3 73 printk(KERN_ERR "[" DRM_NAME ":%ps] *ERROR* %pV",
a1f1a79c 74 __builtin_return_address(0), &vaf);
5ad3d883
JP
75
76 va_end(args);
5ad3d883
JP
77}
78EXPORT_SYMBOL(drm_err);
79
1287aa90 80void drm_ut_debug_printk(const char *function_name, const char *format, ...)
4fefcb27 81{
fffb9065 82 struct va_format vaf;
4fefcb27 83 va_list args;
1da177e4 84
a73d4e91
LD
85 va_start(args, format);
86 vaf.fmt = format;
87 vaf.va = &args;
88
0ed02983 89 printk(KERN_DEBUG "[" DRM_NAME ":%s] %pV", function_name, &vaf);
a73d4e91
LD
90
91 va_end(args);
4fefcb27 92}
93EXPORT_SYMBOL(drm_ut_debug_printk);
5ad3d883 94
7c1c2871
DA
95struct drm_master *drm_master_create(struct drm_minor *minor)
96{
97 struct drm_master *master;
98
9a298b2a 99 master = kzalloc(sizeof(*master), GFP_KERNEL);
7c1c2871
DA
100 if (!master)
101 return NULL;
102
103 kref_init(&master->refcount);
104 spin_lock_init(&master->lock.spinlock);
105 init_waitqueue_head(&master->lock.lock_queue);
32e7b94a 106 idr_init(&master->magic_map);
7c1c2871
DA
107 master->minor = minor;
108
7c1c2871
DA
109 return master;
110}
111
112struct drm_master *drm_master_get(struct drm_master *master)
113{
114 kref_get(&master->refcount);
115 return master;
116}
85bb0c37 117EXPORT_SYMBOL(drm_master_get);
7c1c2871
DA
118
119static void drm_master_destroy(struct kref *kref)
120{
121 struct drm_master *master = container_of(kref, struct drm_master, refcount);
7c1c2871 122 struct drm_device *dev = master->minor->dev;
c1ff85d9 123 struct drm_map_list *r_list, *list_temp;
7c1c2871 124
c996fd0b 125 mutex_lock(&dev->struct_mutex);
7c1c2871
DA
126 if (dev->driver->master_destroy)
127 dev->driver->master_destroy(dev, master);
128
c1ff85d9
DA
129 list_for_each_entry_safe(r_list, list_temp, &dev->maplist, head) {
130 if (r_list->master == master) {
9fc5cde7 131 drm_legacy_rmmap_locked(dev, r_list->map);
c1ff85d9
DA
132 r_list = NULL;
133 }
134 }
c996fd0b 135 mutex_unlock(&dev->struct_mutex);
32e7b94a
DH
136
137 idr_destroy(&master->magic_map);
4a324d33 138 kfree(master->unique);
9a298b2a 139 kfree(master);
7c1c2871
DA
140}
141
142void drm_master_put(struct drm_master **master)
143{
144 kref_put(&(*master)->refcount, drm_master_destroy);
145 *master = NULL;
146}
85bb0c37 147EXPORT_SYMBOL(drm_master_put);
7c1c2871
DA
148
149int drm_setmaster_ioctl(struct drm_device *dev, void *data,
150 struct drm_file *file_priv)
151{
53ef1600 152 int ret = 0;
862302ff 153
c996fd0b 154 mutex_lock(&dev->master_mutex);
7963e9db 155 if (file_priv->is_master)
c996fd0b 156 goto out_unlock;
7c1c2871 157
c996fd0b
TH
158 if (file_priv->minor->master) {
159 ret = -EINVAL;
160 goto out_unlock;
161 }
7c1c2871 162
c996fd0b
TH
163 if (!file_priv->master) {
164 ret = -EINVAL;
165 goto out_unlock;
166 }
08bec5b4 167
08bec5b4 168 file_priv->minor->master = drm_master_get(file_priv->master);
7963e9db 169 file_priv->is_master = 1;
08bec5b4
DH
170 if (dev->driver->master_set) {
171 ret = dev->driver->master_set(dev, file_priv, false);
7963e9db
DA
172 if (unlikely(ret != 0)) {
173 file_priv->is_master = 0;
08bec5b4 174 drm_master_put(&file_priv->minor->master);
7963e9db 175 }
7c1c2871
DA
176 }
177
c996fd0b
TH
178out_unlock:
179 mutex_unlock(&dev->master_mutex);
53ef1600 180 return ret;
7c1c2871
DA
181}
182
183int drm_dropmaster_ioctl(struct drm_device *dev, void *data,
184 struct drm_file *file_priv)
185{
c996fd0b
TH
186 int ret = -EINVAL;
187
188 mutex_lock(&dev->master_mutex);
7963e9db 189 if (!file_priv->is_master)
c996fd0b 190 goto out_unlock;
6b008426 191
07f1c7a7 192 if (!file_priv->minor->master)
c996fd0b 193 goto out_unlock;
07f1c7a7 194
c996fd0b 195 ret = 0;
862302ff
TH
196 if (dev->driver->master_drop)
197 dev->driver->master_drop(dev, file_priv, false);
7c1c2871 198 drm_master_put(&file_priv->minor->master);
7963e9db 199 file_priv->is_master = 0;
c996fd0b
TH
200
201out_unlock:
202 mutex_unlock(&dev->master_mutex);
203 return ret;
7c1c2871
DA
204}
205
0d639883
DH
206/*
207 * DRM Minors
208 * A DRM device can provide several char-dev interfaces on the DRM-Major. Each
209 * of them is represented by a drm_minor object. Depending on the capabilities
210 * of the device-driver, different interfaces are registered.
1da177e4 211 *
0d639883
DH
212 * Minors can be accessed via dev->$minor_name. This pointer is either
213 * NULL or a valid drm_minor pointer and stays valid as long as the device is
214 * valid. This means, DRM minors have the same life-time as the underlying
215 * device. However, this doesn't mean that the minor is active. Minors are
216 * registered and unregistered dynamically according to device-state.
1da177e4 217 */
0d639883 218
05b701f6
DH
219static struct drm_minor **drm_minor_get_slot(struct drm_device *dev,
220 unsigned int type)
221{
222 switch (type) {
223 case DRM_MINOR_LEGACY:
224 return &dev->primary;
225 case DRM_MINOR_RENDER:
226 return &dev->render;
227 case DRM_MINOR_CONTROL:
228 return &dev->control;
229 default:
230 return NULL;
231 }
232}
233
234static int drm_minor_alloc(struct drm_device *dev, unsigned int type)
235{
236 struct drm_minor *minor;
f1b85962
DH
237 unsigned long flags;
238 int r;
05b701f6
DH
239
240 minor = kzalloc(sizeof(*minor), GFP_KERNEL);
241 if (!minor)
242 return -ENOMEM;
243
244 minor->type = type;
245 minor->dev = dev;
05b701f6 246
f1b85962
DH
247 idr_preload(GFP_KERNEL);
248 spin_lock_irqsave(&drm_minor_lock, flags);
249 r = idr_alloc(&drm_minors_idr,
250 NULL,
251 64 * type,
252 64 * (type + 1),
253 GFP_NOWAIT);
254 spin_unlock_irqrestore(&drm_minor_lock, flags);
255 idr_preload_end();
256
257 if (r < 0)
258 goto err_free;
259
260 minor->index = r;
261
e1728075
DH
262 minor->kdev = drm_sysfs_minor_alloc(minor);
263 if (IS_ERR(minor->kdev)) {
264 r = PTR_ERR(minor->kdev);
265 goto err_index;
266 }
267
05b701f6
DH
268 *drm_minor_get_slot(dev, type) = minor;
269 return 0;
f1b85962 270
e1728075
DH
271err_index:
272 spin_lock_irqsave(&drm_minor_lock, flags);
273 idr_remove(&drm_minors_idr, minor->index);
274 spin_unlock_irqrestore(&drm_minor_lock, flags);
f1b85962
DH
275err_free:
276 kfree(minor);
277 return r;
05b701f6
DH
278}
279
bd9dfa98
DH
280static void drm_minor_free(struct drm_device *dev, unsigned int type)
281{
f1b85962
DH
282 struct drm_minor **slot, *minor;
283 unsigned long flags;
bd9dfa98
DH
284
285 slot = drm_minor_get_slot(dev, type);
f1b85962
DH
286 minor = *slot;
287 if (!minor)
288 return;
289
290 drm_mode_group_destroy(&minor->mode_group);
e1728075 291 put_device(minor->kdev);
f1b85962
DH
292
293 spin_lock_irqsave(&drm_minor_lock, flags);
294 idr_remove(&drm_minors_idr, minor->index);
295 spin_unlock_irqrestore(&drm_minor_lock, flags);
296
297 kfree(minor);
298 *slot = NULL;
bd9dfa98
DH
299}
300
afcdbc86 301static int drm_minor_register(struct drm_device *dev, unsigned int type)
1da177e4 302{
f1b85962 303 struct drm_minor *minor;
0d639883 304 unsigned long flags;
1da177e4 305 int ret;
1da177e4
LT
306
307 DRM_DEBUG("\n");
308
f1b85962
DH
309 minor = *drm_minor_get_slot(dev, type);
310 if (!minor)
05b701f6
DH
311 return 0;
312
f1b85962 313 ret = drm_debugfs_init(minor, minor->index, drm_debugfs_root);
955b12de 314 if (ret) {
156f5a78 315 DRM_ERROR("DRM: Failed to initialize /sys/kernel/debug/dri.\n");
f1b85962 316 return ret;
955b12de 317 }
2c14f28b 318
e1728075
DH
319 ret = device_add(minor->kdev);
320 if (ret)
cb6458f9 321 goto err_debugfs;
2c14f28b 322
0d639883
DH
323 /* replace NULL with @minor so lookups will succeed from now on */
324 spin_lock_irqsave(&drm_minor_lock, flags);
f1b85962 325 idr_replace(&drm_minors_idr, minor, minor->index);
0d639883 326 spin_unlock_irqrestore(&drm_minor_lock, flags);
2c14f28b 327
f1b85962 328 DRM_DEBUG("new minor registered %d\n", minor->index);
2c14f28b
DA
329 return 0;
330
cb6458f9 331err_debugfs:
f1b85962 332 drm_debugfs_cleanup(minor);
1da177e4
LT
333 return ret;
334}
b5e89ed5 335
afcdbc86 336static void drm_minor_unregister(struct drm_device *dev, unsigned int type)
f73aca50 337{
afcdbc86 338 struct drm_minor *minor;
0d639883 339 unsigned long flags;
afcdbc86
DH
340
341 minor = *drm_minor_get_slot(dev, type);
e1728075 342 if (!minor || !device_is_registered(minor->kdev))
f73aca50
DH
343 return;
344
f1b85962 345 /* replace @minor with NULL so lookups will fail from now on */
0d639883 346 spin_lock_irqsave(&drm_minor_lock, flags);
f1b85962 347 idr_replace(&drm_minors_idr, NULL, minor->index);
0d639883 348 spin_unlock_irqrestore(&drm_minor_lock, flags);
865fb47f 349
e1728075
DH
350 device_del(minor->kdev);
351 dev_set_drvdata(minor->kdev, NULL); /* safety belt */
865fb47f 352 drm_debugfs_cleanup(minor);
f73aca50
DH
353}
354
355/**
1616c525
DH
356 * drm_minor_acquire - Acquire a DRM minor
357 * @minor_id: Minor ID of the DRM-minor
358 *
359 * Looks up the given minor-ID and returns the respective DRM-minor object. The
360 * refence-count of the underlying device is increased so you must release this
361 * object with drm_minor_release().
362 *
363 * As long as you hold this minor, it is guaranteed that the object and the
364 * minor->dev pointer will stay valid! However, the device may get unplugged and
365 * unregistered while you hold the minor.
f73aca50 366 *
1616c525
DH
367 * Returns:
368 * Pointer to minor-object with increased device-refcount, or PTR_ERR on
369 * failure.
1da177e4 370 */
1616c525 371struct drm_minor *drm_minor_acquire(unsigned int minor_id)
1da177e4 372{
1616c525 373 struct drm_minor *minor;
0d639883 374 unsigned long flags;
1616c525 375
0d639883 376 spin_lock_irqsave(&drm_minor_lock, flags);
1616c525 377 minor = idr_find(&drm_minors_idr, minor_id);
0d639883
DH
378 if (minor)
379 drm_dev_ref(minor->dev);
380 spin_unlock_irqrestore(&drm_minor_lock, flags);
381
382 if (!minor) {
383 return ERR_PTR(-ENODEV);
384 } else if (drm_device_is_unplugged(minor->dev)) {
385 drm_dev_unref(minor->dev);
1616c525 386 return ERR_PTR(-ENODEV);
0d639883 387 }
673a394b 388
1616c525
DH
389 return minor;
390}
b5e89ed5 391
1616c525
DH
392/**
393 * drm_minor_release - Release DRM minor
394 * @minor: Pointer to DRM minor object
395 *
396 * Release a minor that was previously acquired via drm_minor_acquire().
397 */
398void drm_minor_release(struct drm_minor *minor)
399{
400 drm_dev_unref(minor->dev);
1da177e4 401}
112b715e
KH
402
403/**
c6a1af8a
TR
404 * drm_put_dev - Unregister and release a DRM device
405 * @dev: DRM device
112b715e 406 *
c6a1af8a 407 * Called at module unload time or when a PCI device is unplugged.
112b715e 408 *
c6a1af8a
TR
409 * Use of this function is discouraged. It will eventually go away completely.
410 * Please use drm_dev_unregister() and drm_dev_unref() explicitly instead.
411 *
412 * Cleans up all DRM device, calling drm_lastclose().
112b715e
KH
413 */
414void drm_put_dev(struct drm_device *dev)
415{
112b715e
KH
416 DRM_DEBUG("\n");
417
418 if (!dev) {
419 DRM_ERROR("cleanup called no dev\n");
420 return;
421 }
422
c3a49737 423 drm_dev_unregister(dev);
099d1c29 424 drm_dev_unref(dev);
112b715e
KH
425}
426EXPORT_SYMBOL(drm_put_dev);
2c07a21d
DA
427
428void drm_unplug_dev(struct drm_device *dev)
429{
430 /* for a USB device */
afcdbc86
DH
431 drm_minor_unregister(dev, DRM_MINOR_LEGACY);
432 drm_minor_unregister(dev, DRM_MINOR_RENDER);
433 drm_minor_unregister(dev, DRM_MINOR_CONTROL);
2c07a21d
DA
434
435 mutex_lock(&drm_global_mutex);
436
437 drm_device_set_unplugged(dev);
438
439 if (dev->open_count == 0) {
440 drm_put_dev(dev);
441 }
442 mutex_unlock(&drm_global_mutex);
443}
444EXPORT_SYMBOL(drm_unplug_dev);
1bb72532 445
31bbe16f
DH
446/*
447 * DRM internal mount
448 * We want to be able to allocate our own "struct address_space" to control
449 * memory-mappings in VRAM (or stolen RAM, ...). However, core MM does not allow
450 * stand-alone address_space objects, so we need an underlying inode. As there
451 * is no way to allocate an independent inode easily, we need a fake internal
452 * VFS mount-point.
453 *
454 * The drm_fs_inode_new() function allocates a new inode, drm_fs_inode_free()
455 * frees it again. You are allowed to use iget() and iput() to get references to
456 * the inode. But each drm_fs_inode_new() call must be paired with exactly one
457 * drm_fs_inode_free() call (which does not have to be the last iput()).
458 * We use drm_fs_inode_*() to manage our internal VFS mount-point and share it
459 * between multiple inode-users. You could, technically, call
460 * iget() + drm_fs_inode_free() directly after alloc and sometime later do an
461 * iput(), but this way you'd end up with a new vfsmount for each inode.
462 */
463
464static int drm_fs_cnt;
465static struct vfsmount *drm_fs_mnt;
466
467static const struct dentry_operations drm_fs_dops = {
468 .d_dname = simple_dname,
469};
470
471static const struct super_operations drm_fs_sops = {
472 .statfs = simple_statfs,
473};
474
475static struct dentry *drm_fs_mount(struct file_system_type *fs_type, int flags,
476 const char *dev_name, void *data)
477{
478 return mount_pseudo(fs_type,
479 "drm:",
480 &drm_fs_sops,
481 &drm_fs_dops,
482 0x010203ff);
483}
484
485static struct file_system_type drm_fs_type = {
486 .name = "drm",
487 .owner = THIS_MODULE,
488 .mount = drm_fs_mount,
489 .kill_sb = kill_anon_super,
490};
491
492static struct inode *drm_fs_inode_new(void)
493{
494 struct inode *inode;
495 int r;
496
497 r = simple_pin_fs(&drm_fs_type, &drm_fs_mnt, &drm_fs_cnt);
498 if (r < 0) {
499 DRM_ERROR("Cannot mount pseudo fs: %d\n", r);
500 return ERR_PTR(r);
501 }
502
503 inode = alloc_anon_inode(drm_fs_mnt->mnt_sb);
504 if (IS_ERR(inode))
505 simple_release_fs(&drm_fs_mnt, &drm_fs_cnt);
506
507 return inode;
508}
509
510static void drm_fs_inode_free(struct inode *inode)
511{
512 if (inode) {
513 iput(inode);
514 simple_release_fs(&drm_fs_mnt, &drm_fs_cnt);
515 }
516}
517
1bb72532 518/**
c6a1af8a 519 * drm_dev_alloc - Allocate new DRM device
1bb72532
DH
520 * @driver: DRM driver to allocate device for
521 * @parent: Parent device object
522 *
523 * Allocate and initialize a new DRM device. No device registration is done.
c22f0ace
DH
524 * Call drm_dev_register() to advertice the device to user space and register it
525 * with other core subsystems.
1bb72532 526 *
099d1c29
DH
527 * The initial ref-count of the object is 1. Use drm_dev_ref() and
528 * drm_dev_unref() to take and drop further ref-counts.
529 *
b0ff4b93
DV
530 * Note that for purely virtual devices @parent can be NULL.
531 *
1bb72532
DH
532 * RETURNS:
533 * Pointer to new DRM device, or NULL if out of memory.
534 */
535struct drm_device *drm_dev_alloc(struct drm_driver *driver,
536 struct device *parent)
537{
538 struct drm_device *dev;
539 int ret;
540
541 dev = kzalloc(sizeof(*dev), GFP_KERNEL);
542 if (!dev)
543 return NULL;
544
099d1c29 545 kref_init(&dev->ref);
1bb72532
DH
546 dev->dev = parent;
547 dev->driver = driver;
548
549 INIT_LIST_HEAD(&dev->filelist);
550 INIT_LIST_HEAD(&dev->ctxlist);
551 INIT_LIST_HEAD(&dev->vmalist);
552 INIT_LIST_HEAD(&dev->maplist);
553 INIT_LIST_HEAD(&dev->vblank_event_list);
554
2177a218 555 spin_lock_init(&dev->buf_lock);
1bb72532
DH
556 spin_lock_init(&dev->event_lock);
557 mutex_init(&dev->struct_mutex);
558 mutex_init(&dev->ctxlist_mutex);
c996fd0b 559 mutex_init(&dev->master_mutex);
1bb72532 560
6796cb16
DH
561 dev->anon_inode = drm_fs_inode_new();
562 if (IS_ERR(dev->anon_inode)) {
563 ret = PTR_ERR(dev->anon_inode);
564 DRM_ERROR("Cannot allocate anonymous inode: %d\n", ret);
1bb72532 565 goto err_free;
6796cb16
DH
566 }
567
05b701f6
DH
568 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
569 ret = drm_minor_alloc(dev, DRM_MINOR_CONTROL);
570 if (ret)
571 goto err_minors;
572 }
573
6d6dfcfb 574 if (drm_core_check_feature(dev, DRIVER_RENDER)) {
05b701f6
DH
575 ret = drm_minor_alloc(dev, DRM_MINOR_RENDER);
576 if (ret)
577 goto err_minors;
578 }
579
580 ret = drm_minor_alloc(dev, DRM_MINOR_LEGACY);
581 if (ret)
582 goto err_minors;
583
6796cb16 584 if (drm_ht_create(&dev->map_hash, 12))
05b701f6 585 goto err_minors;
1bb72532 586
e7b96070 587 ret = drm_legacy_ctxbitmap_init(dev);
1bb72532
DH
588 if (ret) {
589 DRM_ERROR("Cannot allocate memory for context bitmap.\n");
590 goto err_ht;
591 }
592
1bcecfac 593 if (drm_core_check_feature(dev, DRIVER_GEM)) {
1bb72532
DH
594 ret = drm_gem_init(dev);
595 if (ret) {
596 DRM_ERROR("Cannot initialize graphics execution manager (GEM)\n");
597 goto err_ctxbitmap;
598 }
599 }
600
601 return dev;
602
603err_ctxbitmap:
e7b96070 604 drm_legacy_ctxbitmap_cleanup(dev);
1bb72532
DH
605err_ht:
606 drm_ht_remove(&dev->map_hash);
05b701f6 607err_minors:
bd9dfa98
DH
608 drm_minor_free(dev, DRM_MINOR_LEGACY);
609 drm_minor_free(dev, DRM_MINOR_RENDER);
610 drm_minor_free(dev, DRM_MINOR_CONTROL);
6796cb16 611 drm_fs_inode_free(dev->anon_inode);
1bb72532 612err_free:
c996fd0b 613 mutex_destroy(&dev->master_mutex);
1bb72532
DH
614 kfree(dev);
615 return NULL;
616}
617EXPORT_SYMBOL(drm_dev_alloc);
c22f0ace 618
099d1c29 619static void drm_dev_release(struct kref *ref)
0dc8fe59 620{
099d1c29 621 struct drm_device *dev = container_of(ref, struct drm_device, ref);
8f6599da 622
1bcecfac 623 if (drm_core_check_feature(dev, DRIVER_GEM))
0dc8fe59
DH
624 drm_gem_destroy(dev);
625
e7b96070 626 drm_legacy_ctxbitmap_cleanup(dev);
0dc8fe59 627 drm_ht_remove(&dev->map_hash);
6796cb16 628 drm_fs_inode_free(dev->anon_inode);
0dc8fe59 629
bd9dfa98
DH
630 drm_minor_free(dev, DRM_MINOR_LEGACY);
631 drm_minor_free(dev, DRM_MINOR_RENDER);
632 drm_minor_free(dev, DRM_MINOR_CONTROL);
633
c996fd0b 634 mutex_destroy(&dev->master_mutex);
ca8e2ad7 635 kfree(dev->unique);
0dc8fe59
DH
636 kfree(dev);
637}
099d1c29
DH
638
639/**
640 * drm_dev_ref - Take reference of a DRM device
641 * @dev: device to take reference of or NULL
642 *
643 * This increases the ref-count of @dev by one. You *must* already own a
644 * reference when calling this. Use drm_dev_unref() to drop this reference
645 * again.
646 *
647 * This function never fails. However, this function does not provide *any*
648 * guarantee whether the device is alive or running. It only provides a
649 * reference to the object and the memory associated with it.
650 */
651void drm_dev_ref(struct drm_device *dev)
652{
653 if (dev)
654 kref_get(&dev->ref);
655}
656EXPORT_SYMBOL(drm_dev_ref);
657
658/**
659 * drm_dev_unref - Drop reference of a DRM device
660 * @dev: device to drop reference of or NULL
661 *
662 * This decreases the ref-count of @dev by one. The device is destroyed if the
663 * ref-count drops to zero.
664 */
665void drm_dev_unref(struct drm_device *dev)
666{
667 if (dev)
668 kref_put(&dev->ref, drm_dev_release);
669}
670EXPORT_SYMBOL(drm_dev_unref);
0dc8fe59 671
c22f0ace
DH
672/**
673 * drm_dev_register - Register DRM device
674 * @dev: Device to register
c6a1af8a 675 * @flags: Flags passed to the driver's .load() function
c22f0ace
DH
676 *
677 * Register the DRM device @dev with the system, advertise device to user-space
678 * and start normal device operation. @dev must be allocated via drm_dev_alloc()
679 * previously.
680 *
681 * Never call this twice on any device!
682 *
683 * RETURNS:
684 * 0 on success, negative error code on failure.
685 */
686int drm_dev_register(struct drm_device *dev, unsigned long flags)
687{
688 int ret;
689
690 mutex_lock(&drm_global_mutex);
691
afcdbc86 692 ret = drm_minor_register(dev, DRM_MINOR_CONTROL);
05b701f6
DH
693 if (ret)
694 goto err_minors;
c22f0ace 695
afcdbc86 696 ret = drm_minor_register(dev, DRM_MINOR_RENDER);
05b701f6
DH
697 if (ret)
698 goto err_minors;
c22f0ace 699
afcdbc86 700 ret = drm_minor_register(dev, DRM_MINOR_LEGACY);
c22f0ace 701 if (ret)
05b701f6 702 goto err_minors;
c22f0ace
DH
703
704 if (dev->driver->load) {
705 ret = dev->driver->load(dev, flags);
706 if (ret)
05b701f6 707 goto err_minors;
c22f0ace
DH
708 }
709
710 /* setup grouping for legacy outputs */
711 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
712 ret = drm_mode_group_init_legacy_group(dev,
713 &dev->primary->mode_group);
714 if (ret)
715 goto err_unload;
716 }
717
c22f0ace
DH
718 ret = 0;
719 goto out_unlock;
720
721err_unload:
722 if (dev->driver->unload)
723 dev->driver->unload(dev);
05b701f6 724err_minors:
afcdbc86
DH
725 drm_minor_unregister(dev, DRM_MINOR_LEGACY);
726 drm_minor_unregister(dev, DRM_MINOR_RENDER);
727 drm_minor_unregister(dev, DRM_MINOR_CONTROL);
c22f0ace
DH
728out_unlock:
729 mutex_unlock(&drm_global_mutex);
730 return ret;
731}
732EXPORT_SYMBOL(drm_dev_register);
c3a49737
DH
733
734/**
735 * drm_dev_unregister - Unregister DRM device
736 * @dev: Device to unregister
737 *
738 * Unregister the DRM device from the system. This does the reverse of
739 * drm_dev_register() but does not deallocate the device. The caller must call
099d1c29 740 * drm_dev_unref() to drop their final reference.
c3a49737
DH
741 */
742void drm_dev_unregister(struct drm_device *dev)
743{
744 struct drm_map_list *r_list, *list_temp;
745
746 drm_lastclose(dev);
747
748 if (dev->driver->unload)
749 dev->driver->unload(dev);
750
4efafebe
DV
751 if (dev->agp)
752 drm_pci_agp_destroy(dev);
c3a49737
DH
753
754 drm_vblank_cleanup(dev);
755
756 list_for_each_entry_safe(r_list, list_temp, &dev->maplist, head)
9fc5cde7 757 drm_legacy_rmmap(dev, r_list->map);
c3a49737 758
afcdbc86
DH
759 drm_minor_unregister(dev, DRM_MINOR_LEGACY);
760 drm_minor_unregister(dev, DRM_MINOR_RENDER);
761 drm_minor_unregister(dev, DRM_MINOR_CONTROL);
c3a49737
DH
762}
763EXPORT_SYMBOL(drm_dev_unregister);
ca8e2ad7
TR
764
765/**
766 * drm_dev_set_unique - Set the unique name of a DRM device
767 * @dev: device of which to set the unique name
768 * @fmt: format string for unique name
769 *
770 * Sets the unique name of a DRM device using the specified format string and
771 * a variable list of arguments. Drivers can use this at driver probe time if
772 * the unique name of the devices they drive is static.
773 *
774 * Return: 0 on success or a negative error code on failure.
775 */
776int drm_dev_set_unique(struct drm_device *dev, const char *fmt, ...)
777{
778 va_list ap;
779
780 kfree(dev->unique);
781
782 va_start(ap, fmt);
783 dev->unique = kvasprintf(GFP_KERNEL, fmt, ap);
784 va_end(ap);
785
786 return dev->unique ? 0 : -ENOMEM;
787}
788EXPORT_SYMBOL(drm_dev_set_unique);
1b7199fe
DH
789
790/*
791 * DRM Core
792 * The DRM core module initializes all global DRM objects and makes them
793 * available to drivers. Once setup, drivers can probe their respective
794 * devices.
795 * Currently, core management includes:
796 * - The "DRM-Global" key/value database
797 * - Global ID management for connectors
798 * - DRM major number allocation
799 * - DRM minor management
800 * - DRM sysfs class
801 * - DRM debugfs root
802 *
803 * Furthermore, the DRM core provides dynamic char-dev lookups. For each
804 * interface registered on a DRM device, you can request minor numbers from DRM
805 * core. DRM core takes care of major-number management and char-dev
806 * registration. A stub ->open() callback forwards any open() requests to the
807 * registered minor.
808 */
809
810static int drm_stub_open(struct inode *inode, struct file *filp)
811{
812 const struct file_operations *new_fops;
813 struct drm_minor *minor;
814 int err;
815
816 DRM_DEBUG("\n");
817
818 mutex_lock(&drm_global_mutex);
819 minor = drm_minor_acquire(iminor(inode));
820 if (IS_ERR(minor)) {
821 err = PTR_ERR(minor);
822 goto out_unlock;
823 }
824
825 new_fops = fops_get(minor->dev->driver->fops);
826 if (!new_fops) {
827 err = -ENODEV;
828 goto out_release;
829 }
830
831 replace_fops(filp, new_fops);
832 if (filp->f_op->open)
833 err = filp->f_op->open(inode, filp);
834 else
835 err = 0;
836
837out_release:
838 drm_minor_release(minor);
839out_unlock:
840 mutex_unlock(&drm_global_mutex);
841 return err;
842}
843
844static const struct file_operations drm_stub_fops = {
845 .owner = THIS_MODULE,
846 .open = drm_stub_open,
847 .llseek = noop_llseek,
848};
849
850static int __init drm_core_init(void)
851{
852 int ret = -ENOMEM;
853
854 drm_global_init();
855 drm_connector_ida_init();
856 idr_init(&drm_minors_idr);
857
858 if (register_chrdev(DRM_MAJOR, "drm", &drm_stub_fops))
859 goto err_p1;
860
861 drm_class = drm_sysfs_create(THIS_MODULE, "drm");
862 if (IS_ERR(drm_class)) {
863 printk(KERN_ERR "DRM: Error creating drm class.\n");
864 ret = PTR_ERR(drm_class);
865 goto err_p2;
866 }
867
868 drm_debugfs_root = debugfs_create_dir("dri", NULL);
869 if (!drm_debugfs_root) {
870 DRM_ERROR("Cannot create /sys/kernel/debug/dri\n");
871 ret = -1;
872 goto err_p3;
873 }
874
875 DRM_INFO("Initialized %s %d.%d.%d %s\n",
876 CORE_NAME, CORE_MAJOR, CORE_MINOR, CORE_PATCHLEVEL, CORE_DATE);
877 return 0;
878err_p3:
879 drm_sysfs_destroy();
880err_p2:
881 unregister_chrdev(DRM_MAJOR, "drm");
882
883 idr_destroy(&drm_minors_idr);
884err_p1:
885 return ret;
886}
887
888static void __exit drm_core_exit(void)
889{
890 debugfs_remove(drm_debugfs_root);
891 drm_sysfs_destroy();
892
893 unregister_chrdev(DRM_MAJOR, "drm");
894
895 drm_connector_ida_destroy();
896 idr_destroy(&drm_minors_idr);
897}
898
899module_init(drm_core_init);
900module_exit(drm_core_exit);
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