1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Componentized device handling.
4 *
5 * This is work in progress. We gather up the component devices into a list,
6 * and bind them when instructed. At the moment, we're specific to the DRM
7 * subsystem, and only handles one master device, but this doesn't have to be
8 * the case.
9 */
10 #include <linux/component.h>
11 #include <linux/device.h>
12 #include <linux/kref.h>
13 #include <linux/list.h>
14 #include <linux/module.h>
15 #include <linux/mutex.h>
16 #include <linux/slab.h>
17 #include <linux/debugfs.h>
18
19 struct component;
20
21 struct component_match_array {
22 void *data;
23 int (*compare)(struct device *, void *);
24 void (*release)(struct device *, void *);
25 struct component *component;
26 bool duplicate;
27 };
28
29 struct component_match {
30 size_t alloc;
31 size_t num;
32 struct component_match_array *compare;
33 };
34
35 struct master {
36 struct list_head node;
37 bool bound;
38
39 const struct component_master_ops *ops;
40 struct device *dev;
41 struct component_match *match;
42 struct dentry *dentry;
43 };
44
45 struct component {
46 struct list_head node;
47 struct master *master;
48 bool bound;
49
50 const struct component_ops *ops;
51 struct device *dev;
52 };
53
54 static DEFINE_MUTEX(component_mutex);
55 static LIST_HEAD(component_list);
56 static LIST_HEAD(masters);
57
58 #ifdef CONFIG_DEBUG_FS
59
60 static struct dentry *component_debugfs_dir;
61
component_devices_show(struct seq_file * s,void * data)62 static int component_devices_show(struct seq_file *s, void *data)
63 {
64 struct master *m = s->private;
65 struct component_match *match = m->match;
66 size_t i;
67
68 mutex_lock(&component_mutex);
69 seq_printf(s, "%-40s %20s\n", "master name", "status");
70 seq_puts(s, "-------------------------------------------------------------\n");
71 seq_printf(s, "%-40s %20s\n\n",
72 dev_name(m->dev), m->bound ? "bound" : "not bound");
73
74 seq_printf(s, "%-40s %20s\n", "device name", "status");
75 seq_puts(s, "-------------------------------------------------------------\n");
76 for (i = 0; i < match->num; i++) {
77 struct component *component = match->compare[i].component;
78
79 seq_printf(s, "%-40s %20s\n",
80 component ? dev_name(component->dev) : "(unknown)",
81 component ? (component->bound ? "bound" : "not bound") : "not registered");
82 }
83 mutex_unlock(&component_mutex);
84
85 return 0;
86 }
87
component_devices_open(struct inode * inode,struct file * file)88 static int component_devices_open(struct inode *inode, struct file *file)
89 {
90 return single_open(file, component_devices_show, inode->i_private);
91 }
92
93 static const struct file_operations component_devices_fops = {
94 .open = component_devices_open,
95 .read = seq_read,
96 .llseek = seq_lseek,
97 .release = single_release,
98 };
99
component_debug_init(void)100 static int __init component_debug_init(void)
101 {
102 component_debugfs_dir = debugfs_create_dir("device_component", NULL);
103
104 return 0;
105 }
106
107 core_initcall(component_debug_init);
108
component_master_debugfs_add(struct master * m)109 static void component_master_debugfs_add(struct master *m)
110 {
111 m->dentry = debugfs_create_file(dev_name(m->dev), 0444,
112 component_debugfs_dir,
113 m, &component_devices_fops);
114 }
115
component_master_debugfs_del(struct master * m)116 static void component_master_debugfs_del(struct master *m)
117 {
118 debugfs_remove(m->dentry);
119 m->dentry = NULL;
120 }
121
122 #else
123
component_master_debugfs_add(struct master * m)124 static void component_master_debugfs_add(struct master *m)
125 { }
126
component_master_debugfs_del(struct master * m)127 static void component_master_debugfs_del(struct master *m)
128 { }
129
130 #endif
131
__master_find(struct device * dev,const struct component_master_ops * ops)132 static struct master *__master_find(struct device *dev,
133 const struct component_master_ops *ops)
134 {
135 struct master *m;
136
137 list_for_each_entry(m, &masters, node)
138 if (m->dev == dev && (!ops || m->ops == ops))
139 return m;
140
141 return NULL;
142 }
143
find_component(struct master * master,int (* compare)(struct device *,void *),void * compare_data)144 static struct component *find_component(struct master *master,
145 int (*compare)(struct device *, void *), void *compare_data)
146 {
147 struct component *c;
148
149 list_for_each_entry(c, &component_list, node) {
150 if (c->master && c->master != master)
151 continue;
152
153 if (compare(c->dev, compare_data))
154 return c;
155 }
156
157 return NULL;
158 }
159
find_components(struct master * master)160 static int find_components(struct master *master)
161 {
162 struct component_match *match = master->match;
163 size_t i;
164 int ret = 0;
165
166 /*
167 * Scan the array of match functions and attach
168 * any components which are found to this master.
169 */
170 for (i = 0; i < match->num; i++) {
171 struct component_match_array *mc = &match->compare[i];
172 struct component *c;
173
174 dev_dbg(master->dev, "Looking for component %zu\n", i);
175
176 if (match->compare[i].component)
177 continue;
178
179 c = find_component(master, mc->compare, mc->data);
180 if (!c) {
181 ret = -ENXIO;
182 break;
183 }
184
185 dev_dbg(master->dev, "found component %s, duplicate %u\n", dev_name(c->dev), !!c->master);
186
187 /* Attach this component to the master */
188 match->compare[i].duplicate = !!c->master;
189 match->compare[i].component = c;
190 c->master = master;
191 }
192 return ret;
193 }
194
195 /* Detach component from associated master */
remove_component(struct master * master,struct component * c)196 static void remove_component(struct master *master, struct component *c)
197 {
198 size_t i;
199
200 /* Detach the component from this master. */
201 for (i = 0; i < master->match->num; i++)
202 if (master->match->compare[i].component == c)
203 master->match->compare[i].component = NULL;
204 }
205
206 /*
207 * Try to bring up a master. If component is NULL, we're interested in
208 * this master, otherwise it's a component which must be present to try
209 * and bring up the master.
210 *
211 * Returns 1 for successful bringup, 0 if not ready, or -ve errno.
212 */
try_to_bring_up_master(struct master * master,struct component * component)213 static int try_to_bring_up_master(struct master *master,
214 struct component *component)
215 {
216 int ret;
217
218 dev_dbg(master->dev, "trying to bring up master\n");
219
220 if (find_components(master)) {
221 dev_dbg(master->dev, "master has incomplete components\n");
222 return 0;
223 }
224
225 if (component && component->master != master) {
226 dev_dbg(master->dev, "master is not for this component (%s)\n",
227 dev_name(component->dev));
228 return 0;
229 }
230
231 if (!devres_open_group(master->dev, NULL, GFP_KERNEL))
232 return -ENOMEM;
233
234 /* Found all components */
235 ret = master->ops->bind(master->dev);
236 if (ret < 0) {
237 devres_release_group(master->dev, NULL);
238 if (ret != -EPROBE_DEFER)
239 dev_info(master->dev, "master bind failed: %d\n", ret);
240 return ret;
241 }
242
243 master->bound = true;
244 return 1;
245 }
246
try_to_bring_up_masters(struct component * component)247 static int try_to_bring_up_masters(struct component *component)
248 {
249 struct master *m;
250 int ret = 0;
251
252 list_for_each_entry(m, &masters, node) {
253 if (!m->bound) {
254 ret = try_to_bring_up_master(m, component);
255 if (ret != 0)
256 break;
257 }
258 }
259
260 return ret;
261 }
262
take_down_master(struct master * master)263 static void take_down_master(struct master *master)
264 {
265 if (master->bound) {
266 master->ops->unbind(master->dev);
267 devres_release_group(master->dev, NULL);
268 master->bound = false;
269 }
270 }
271
component_match_release(struct device * master,struct component_match * match)272 static void component_match_release(struct device *master,
273 struct component_match *match)
274 {
275 unsigned int i;
276
277 for (i = 0; i < match->num; i++) {
278 struct component_match_array *mc = &match->compare[i];
279
280 if (mc->release)
281 mc->release(master, mc->data);
282 }
283
284 kfree(match->compare);
285 }
286
devm_component_match_release(struct device * dev,void * res)287 static void devm_component_match_release(struct device *dev, void *res)
288 {
289 component_match_release(dev, res);
290 }
291
component_match_realloc(struct device * dev,struct component_match * match,size_t num)292 static int component_match_realloc(struct device *dev,
293 struct component_match *match, size_t num)
294 {
295 struct component_match_array *new;
296
297 if (match->alloc == num)
298 return 0;
299
300 new = kmalloc_array(num, sizeof(*new), GFP_KERNEL);
301 if (!new)
302 return -ENOMEM;
303
304 if (match->compare) {
305 memcpy(new, match->compare, sizeof(*new) *
306 min(match->num, num));
307 kfree(match->compare);
308 }
309 match->compare = new;
310 match->alloc = num;
311
312 return 0;
313 }
314
315 /*
316 * Add a component to be matched, with a release function.
317 *
318 * The match array is first created or extended if necessary.
319 */
component_match_add_release(struct device * master,struct component_match ** matchptr,void (* release)(struct device *,void *),int (* compare)(struct device *,void *),void * compare_data)320 void component_match_add_release(struct device *master,
321 struct component_match **matchptr,
322 void (*release)(struct device *, void *),
323 int (*compare)(struct device *, void *), void *compare_data)
324 {
325 struct component_match *match = *matchptr;
326
327 if (IS_ERR(match))
328 return;
329
330 if (!match) {
331 match = devres_alloc(devm_component_match_release,
332 sizeof(*match), GFP_KERNEL);
333 if (!match) {
334 *matchptr = ERR_PTR(-ENOMEM);
335 return;
336 }
337
338 devres_add(master, match);
339
340 *matchptr = match;
341 }
342
343 if (match->num == match->alloc) {
344 size_t new_size = match->alloc + 16;
345 int ret;
346
347 ret = component_match_realloc(master, match, new_size);
348 if (ret) {
349 *matchptr = ERR_PTR(ret);
350 return;
351 }
352 }
353
354 match->compare[match->num].compare = compare;
355 match->compare[match->num].release = release;
356 match->compare[match->num].data = compare_data;
357 match->compare[match->num].component = NULL;
358 match->num++;
359 }
360 EXPORT_SYMBOL(component_match_add_release);
361
free_master(struct master * master)362 static void free_master(struct master *master)
363 {
364 struct component_match *match = master->match;
365 int i;
366
367 component_master_debugfs_del(master);
368 list_del(&master->node);
369
370 if (match) {
371 for (i = 0; i < match->num; i++) {
372 struct component *c = match->compare[i].component;
373 if (c)
374 c->master = NULL;
375 }
376 }
377
378 kfree(master);
379 }
380
component_master_add_with_match(struct device * dev,const struct component_master_ops * ops,struct component_match * match)381 int component_master_add_with_match(struct device *dev,
382 const struct component_master_ops *ops,
383 struct component_match *match)
384 {
385 struct master *master;
386 int ret;
387
388 /* Reallocate the match array for its true size */
389 ret = component_match_realloc(dev, match, match->num);
390 if (ret)
391 return ret;
392
393 master = kzalloc(sizeof(*master), GFP_KERNEL);
394 if (!master)
395 return -ENOMEM;
396
397 master->dev = dev;
398 master->ops = ops;
399 master->match = match;
400
401 component_master_debugfs_add(master);
402 /* Add to the list of available masters. */
403 mutex_lock(&component_mutex);
404 list_add(&master->node, &masters);
405
406 ret = try_to_bring_up_master(master, NULL);
407
408 if (ret < 0)
409 free_master(master);
410
411 mutex_unlock(&component_mutex);
412
413 return ret < 0 ? ret : 0;
414 }
415 EXPORT_SYMBOL_GPL(component_master_add_with_match);
416
component_master_del(struct device * dev,const struct component_master_ops * ops)417 void component_master_del(struct device *dev,
418 const struct component_master_ops *ops)
419 {
420 struct master *master;
421
422 mutex_lock(&component_mutex);
423 master = __master_find(dev, ops);
424 if (master) {
425 take_down_master(master);
426 free_master(master);
427 }
428 mutex_unlock(&component_mutex);
429 }
430 EXPORT_SYMBOL_GPL(component_master_del);
431
component_unbind(struct component * component,struct master * master,void * data)432 static void component_unbind(struct component *component,
433 struct master *master, void *data)
434 {
435 WARN_ON(!component->bound);
436
437 component->ops->unbind(component->dev, master->dev, data);
438 component->bound = false;
439
440 /* Release all resources claimed in the binding of this component */
441 devres_release_group(component->dev, component);
442 }
443
component_unbind_all(struct device * master_dev,void * data)444 void component_unbind_all(struct device *master_dev, void *data)
445 {
446 struct master *master;
447 struct component *c;
448 size_t i;
449
450 WARN_ON(!mutex_is_locked(&component_mutex));
451
452 master = __master_find(master_dev, NULL);
453 if (!master)
454 return;
455
456 /* Unbind components in reverse order */
457 for (i = master->match->num; i--; )
458 if (!master->match->compare[i].duplicate) {
459 c = master->match->compare[i].component;
460 component_unbind(c, master, data);
461 }
462 }
463 EXPORT_SYMBOL_GPL(component_unbind_all);
464
component_bind(struct component * component,struct master * master,void * data)465 static int component_bind(struct component *component, struct master *master,
466 void *data)
467 {
468 int ret;
469
470 /*
471 * Each component initialises inside its own devres group.
472 * This allows us to roll-back a failed component without
473 * affecting anything else.
474 */
475 if (!devres_open_group(master->dev, NULL, GFP_KERNEL))
476 return -ENOMEM;
477
478 /*
479 * Also open a group for the device itself: this allows us
480 * to release the resources claimed against the sub-device
481 * at the appropriate moment.
482 */
483 if (!devres_open_group(component->dev, component, GFP_KERNEL)) {
484 devres_release_group(master->dev, NULL);
485 return -ENOMEM;
486 }
487
488 dev_dbg(master->dev, "binding %s (ops %ps)\n",
489 dev_name(component->dev), component->ops);
490
491 ret = component->ops->bind(component->dev, master->dev, data);
492 if (!ret) {
493 component->bound = true;
494
495 /*
496 * Close the component device's group so that resources
497 * allocated in the binding are encapsulated for removal
498 * at unbind. Remove the group on the DRM device as we
499 * can clean those resources up independently.
500 */
501 devres_close_group(component->dev, NULL);
502 devres_remove_group(master->dev, NULL);
503
504 dev_info(master->dev, "bound %s (ops %ps)\n",
505 dev_name(component->dev), component->ops);
506 } else {
507 devres_release_group(component->dev, NULL);
508 devres_release_group(master->dev, NULL);
509
510 if (ret != -EPROBE_DEFER)
511 dev_err(master->dev, "failed to bind %s (ops %ps): %d\n",
512 dev_name(component->dev), component->ops, ret);
513 }
514
515 return ret;
516 }
517
component_bind_all(struct device * master_dev,void * data)518 int component_bind_all(struct device *master_dev, void *data)
519 {
520 struct master *master;
521 struct component *c;
522 size_t i;
523 int ret = 0;
524
525 WARN_ON(!mutex_is_locked(&component_mutex));
526
527 master = __master_find(master_dev, NULL);
528 if (!master)
529 return -EINVAL;
530
531 /* Bind components in match order */
532 for (i = 0; i < master->match->num; i++)
533 if (!master->match->compare[i].duplicate) {
534 c = master->match->compare[i].component;
535 ret = component_bind(c, master, data);
536 if (ret)
537 break;
538 }
539
540 if (ret != 0) {
541 for (; i > 0; i--)
542 if (!master->match->compare[i - 1].duplicate) {
543 c = master->match->compare[i - 1].component;
544 component_unbind(c, master, data);
545 }
546 }
547
548 return ret;
549 }
550 EXPORT_SYMBOL_GPL(component_bind_all);
551
component_add(struct device * dev,const struct component_ops * ops)552 int component_add(struct device *dev, const struct component_ops *ops)
553 {
554 struct component *component;
555 int ret;
556
557 component = kzalloc(sizeof(*component), GFP_KERNEL);
558 if (!component)
559 return -ENOMEM;
560
561 component->ops = ops;
562 component->dev = dev;
563
564 dev_dbg(dev, "adding component (ops %ps)\n", ops);
565
566 mutex_lock(&component_mutex);
567 list_add_tail(&component->node, &component_list);
568
569 ret = try_to_bring_up_masters(component);
570 if (ret < 0) {
571 if (component->master)
572 remove_component(component->master, component);
573 list_del(&component->node);
574
575 kfree(component);
576 }
577 mutex_unlock(&component_mutex);
578
579 return ret < 0 ? ret : 0;
580 }
581 EXPORT_SYMBOL_GPL(component_add);
582
component_del(struct device * dev,const struct component_ops * ops)583 void component_del(struct device *dev, const struct component_ops *ops)
584 {
585 struct component *c, *component = NULL;
586
587 mutex_lock(&component_mutex);
588 list_for_each_entry(c, &component_list, node)
589 if (c->dev == dev && c->ops == ops) {
590 list_del(&c->node);
591 component = c;
592 break;
593 }
594
595 if (component && component->master) {
596 take_down_master(component->master);
597 remove_component(component->master, component);
598 }
599
600 mutex_unlock(&component_mutex);
601
602 WARN_ON(!component);
603 kfree(component);
604 }
605 EXPORT_SYMBOL_GPL(component_del);
606
607 MODULE_LICENSE("GPL v2");
608