1 // SPDX-License-Identifier: GPL-2.0
3 * Componentized device handling.
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
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>
22 * The component helper allows drivers to collect a pile of sub-devices,
23 * including their bound drivers, into an aggregate driver. Various subsystems
24 * already provide functions to get hold of such components, e.g.
25 * of_clk_get_by_name(). The component helper can be used when such a
26 * subsystem-specific way to find a device is not available: The component
27 * helper fills the niche of aggregate drivers for specific hardware, where
28 * further standardization into a subsystem would not be practical. The common
29 * example is when a logical device (e.g. a DRM display driver) is spread around
30 * the SoC on various components (scanout engines, blending blocks, transcoders
31 * for various outputs and so on).
33 * The component helper also doesn't solve runtime dependencies, e.g. for system
34 * suspend and resume operations. See also :ref:`device links<device_link>`.
36 * Components are registered using component_add() and unregistered with
37 * component_del(), usually from the driver's probe and disconnect functions.
39 * Aggregate drivers first assemble a component match list of what they need
40 * using component_match_add(). This is then registered as an aggregate driver
41 * using component_master_add_with_match(), and unregistered using
42 * component_master_del().
47 struct component_match_array
{
49 int (*compare
)(struct device
*, void *);
50 int (*compare_typed
)(struct device
*, int, void *);
51 void (*release
)(struct device
*, void *);
52 struct component
*component
;
56 struct component_match
{
59 struct component_match_array
*compare
;
63 struct list_head node
;
66 const struct component_master_ops
*ops
;
68 struct component_match
*match
;
69 struct dentry
*dentry
;
73 struct list_head node
;
74 struct master
*master
;
77 const struct component_ops
*ops
;
82 static DEFINE_MUTEX(component_mutex
);
83 static LIST_HEAD(component_list
);
84 static LIST_HEAD(masters
);
86 #ifdef CONFIG_DEBUG_FS
88 static struct dentry
*component_debugfs_dir
;
90 static int component_devices_show(struct seq_file
*s
, void *data
)
92 struct master
*m
= s
->private;
93 struct component_match
*match
= m
->match
;
96 mutex_lock(&component_mutex
);
97 seq_printf(s
, "%-40s %20s\n", "master name", "status");
98 seq_puts(s
, "-------------------------------------------------------------\n");
99 seq_printf(s
, "%-40s %20s\n\n",
100 dev_name(m
->dev
), m
->bound
? "bound" : "not bound");
102 seq_printf(s
, "%-40s %20s\n", "device name", "status");
103 seq_puts(s
, "-------------------------------------------------------------\n");
104 for (i
= 0; i
< match
->num
; i
++) {
105 struct device
*d
= (struct device
*)match
->compare
[i
].data
;
107 seq_printf(s
, "%-40s %20s\n", dev_name(d
),
108 match
->compare
[i
].component
?
109 "registered" : "not registered");
111 mutex_unlock(&component_mutex
);
116 DEFINE_SHOW_ATTRIBUTE(component_devices
);
118 static int __init
component_debug_init(void)
120 component_debugfs_dir
= debugfs_create_dir("device_component", NULL
);
125 core_initcall(component_debug_init
);
127 static void component_master_debugfs_add(struct master
*m
)
129 m
->dentry
= debugfs_create_file(dev_name(m
->dev
), 0444,
130 component_debugfs_dir
,
131 m
, &component_devices_fops
);
134 static void component_master_debugfs_del(struct master
*m
)
136 debugfs_remove(m
->dentry
);
142 static void component_master_debugfs_add(struct master
*m
)
145 static void component_master_debugfs_del(struct master
*m
)
150 static struct master
*__master_find(struct device
*dev
,
151 const struct component_master_ops
*ops
)
155 list_for_each_entry(m
, &masters
, node
)
156 if (m
->dev
== dev
&& (!ops
|| m
->ops
== ops
))
162 static struct component
*find_component(struct master
*master
,
163 struct component_match_array
*mc
)
167 list_for_each_entry(c
, &component_list
, node
) {
168 if (c
->master
&& c
->master
!= master
)
171 if (mc
->compare
&& mc
->compare(c
->dev
, mc
->data
))
174 if (mc
->compare_typed
&&
175 mc
->compare_typed(c
->dev
, c
->subcomponent
, mc
->data
))
182 static int find_components(struct master
*master
)
184 struct component_match
*match
= master
->match
;
189 * Scan the array of match functions and attach
190 * any components which are found to this master.
192 for (i
= 0; i
< match
->num
; i
++) {
193 struct component_match_array
*mc
= &match
->compare
[i
];
196 dev_dbg(master
->dev
, "Looking for component %zu\n", i
);
198 if (match
->compare
[i
].component
)
201 c
= find_component(master
, mc
);
207 dev_dbg(master
->dev
, "found component %s, duplicate %u\n", dev_name(c
->dev
), !!c
->master
);
209 /* Attach this component to the master */
210 match
->compare
[i
].duplicate
= !!c
->master
;
211 match
->compare
[i
].component
= c
;
217 /* Detach component from associated master */
218 static void remove_component(struct master
*master
, struct component
*c
)
222 /* Detach the component from this master. */
223 for (i
= 0; i
< master
->match
->num
; i
++)
224 if (master
->match
->compare
[i
].component
== c
)
225 master
->match
->compare
[i
].component
= NULL
;
229 * Try to bring up a master. If component is NULL, we're interested in
230 * this master, otherwise it's a component which must be present to try
231 * and bring up the master.
233 * Returns 1 for successful bringup, 0 if not ready, or -ve errno.
235 static int try_to_bring_up_master(struct master
*master
,
236 struct component
*component
)
240 dev_dbg(master
->dev
, "trying to bring up master\n");
242 if (find_components(master
)) {
243 dev_dbg(master
->dev
, "master has incomplete components\n");
247 if (component
&& component
->master
!= master
) {
248 dev_dbg(master
->dev
, "master is not for this component (%s)\n",
249 dev_name(component
->dev
));
253 if (!devres_open_group(master
->dev
, NULL
, GFP_KERNEL
))
256 /* Found all components */
257 ret
= master
->ops
->bind(master
->dev
);
259 devres_release_group(master
->dev
, NULL
);
260 dev_info(master
->dev
, "master bind failed: %d\n", ret
);
264 master
->bound
= true;
268 static int try_to_bring_up_masters(struct component
*component
)
273 list_for_each_entry(m
, &masters
, node
) {
275 ret
= try_to_bring_up_master(m
, component
);
284 static void take_down_master(struct master
*master
)
287 master
->ops
->unbind(master
->dev
);
288 devres_release_group(master
->dev
, NULL
);
289 master
->bound
= false;
293 static void component_match_release(struct device
*master
,
294 struct component_match
*match
)
298 for (i
= 0; i
< match
->num
; i
++) {
299 struct component_match_array
*mc
= &match
->compare
[i
];
302 mc
->release(master
, mc
->data
);
305 kfree(match
->compare
);
308 static void devm_component_match_release(struct device
*dev
, void *res
)
310 component_match_release(dev
, res
);
313 static int component_match_realloc(struct device
*dev
,
314 struct component_match
*match
, size_t num
)
316 struct component_match_array
*new;
318 if (match
->alloc
== num
)
321 new = kmalloc_array(num
, sizeof(*new), GFP_KERNEL
);
325 if (match
->compare
) {
326 memcpy(new, match
->compare
, sizeof(*new) *
327 min(match
->num
, num
));
328 kfree(match
->compare
);
330 match
->compare
= new;
336 static void __component_match_add(struct device
*master
,
337 struct component_match
**matchptr
,
338 void (*release
)(struct device
*, void *),
339 int (*compare
)(struct device
*, void *),
340 int (*compare_typed
)(struct device
*, int, void *),
343 struct component_match
*match
= *matchptr
;
349 match
= devres_alloc(devm_component_match_release
,
350 sizeof(*match
), GFP_KERNEL
);
352 *matchptr
= ERR_PTR(-ENOMEM
);
356 devres_add(master
, match
);
361 if (match
->num
== match
->alloc
) {
362 size_t new_size
= match
->alloc
+ 16;
365 ret
= component_match_realloc(master
, match
, new_size
);
367 *matchptr
= ERR_PTR(ret
);
372 match
->compare
[match
->num
].compare
= compare
;
373 match
->compare
[match
->num
].compare_typed
= compare_typed
;
374 match
->compare
[match
->num
].release
= release
;
375 match
->compare
[match
->num
].data
= compare_data
;
376 match
->compare
[match
->num
].component
= NULL
;
381 * component_match_add_release - add a component match entry with release callback
382 * @master: device with the aggregate driver
383 * @matchptr: pointer to the list of component matches
384 * @release: release function for @compare_data
385 * @compare: compare function to match against all components
386 * @compare_data: opaque pointer passed to the @compare function
388 * Adds a new component match to the list stored in @matchptr, which the @master
389 * aggregate driver needs to function. The list of component matches pointed to
390 * by @matchptr must be initialized to NULL before adding the first match. This
391 * only matches against components added with component_add().
393 * The allocated match list in @matchptr is automatically released using devm
394 * actions, where upon @release will be called to free any references held by
395 * @compare_data, e.g. when @compare_data is a &device_node that must be
396 * released with of_node_put().
398 * See also component_match_add() and component_match_add_typed().
400 void component_match_add_release(struct device
*master
,
401 struct component_match
**matchptr
,
402 void (*release
)(struct device
*, void *),
403 int (*compare
)(struct device
*, void *), void *compare_data
)
405 __component_match_add(master
, matchptr
, release
, compare
, NULL
,
408 EXPORT_SYMBOL(component_match_add_release
);
411 * component_match_add_typed - add a component match entry for a typed component
412 * @master: device with the aggregate driver
413 * @matchptr: pointer to the list of component matches
414 * @compare_typed: compare function to match against all typed components
415 * @compare_data: opaque pointer passed to the @compare function
417 * Adds a new component match to the list stored in @matchptr, which the @master
418 * aggregate driver needs to function. The list of component matches pointed to
419 * by @matchptr must be initialized to NULL before adding the first match. This
420 * only matches against components added with component_add_typed().
422 * The allocated match list in @matchptr is automatically released using devm
425 * See also component_match_add_release() and component_match_add_typed().
427 void component_match_add_typed(struct device
*master
,
428 struct component_match
**matchptr
,
429 int (*compare_typed
)(struct device
*, int, void *), void *compare_data
)
431 __component_match_add(master
, matchptr
, NULL
, NULL
, compare_typed
,
434 EXPORT_SYMBOL(component_match_add_typed
);
436 static void free_master(struct master
*master
)
438 struct component_match
*match
= master
->match
;
441 component_master_debugfs_del(master
);
442 list_del(&master
->node
);
445 for (i
= 0; i
< match
->num
; i
++) {
446 struct component
*c
= match
->compare
[i
].component
;
456 * component_master_add_with_match - register an aggregate driver
457 * @dev: device with the aggregate driver
458 * @ops: callbacks for the aggregate driver
459 * @match: component match list for the aggregate driver
461 * Registers a new aggregate driver consisting of the components added to @match
462 * by calling one of the component_match_add() functions. Once all components in
463 * @match are available, it will be assembled by calling
464 * &component_master_ops.bind from @ops. Must be unregistered by calling
465 * component_master_del().
467 int component_master_add_with_match(struct device
*dev
,
468 const struct component_master_ops
*ops
,
469 struct component_match
*match
)
471 struct master
*master
;
474 /* Reallocate the match array for its true size */
475 ret
= component_match_realloc(dev
, match
, match
->num
);
479 master
= kzalloc(sizeof(*master
), GFP_KERNEL
);
485 master
->match
= match
;
487 component_master_debugfs_add(master
);
488 /* Add to the list of available masters. */
489 mutex_lock(&component_mutex
);
490 list_add(&master
->node
, &masters
);
492 ret
= try_to_bring_up_master(master
, NULL
);
497 mutex_unlock(&component_mutex
);
499 return ret
< 0 ? ret
: 0;
501 EXPORT_SYMBOL_GPL(component_master_add_with_match
);
504 * component_master_del - unregister an aggregate driver
505 * @dev: device with the aggregate driver
506 * @ops: callbacks for the aggregate driver
508 * Unregisters an aggregate driver registered with
509 * component_master_add_with_match(). If necessary the aggregate driver is first
510 * disassembled by calling &component_master_ops.unbind from @ops.
512 void component_master_del(struct device
*dev
,
513 const struct component_master_ops
*ops
)
515 struct master
*master
;
517 mutex_lock(&component_mutex
);
518 master
= __master_find(dev
, ops
);
520 take_down_master(master
);
523 mutex_unlock(&component_mutex
);
525 EXPORT_SYMBOL_GPL(component_master_del
);
527 static void component_unbind(struct component
*component
,
528 struct master
*master
, void *data
)
530 WARN_ON(!component
->bound
);
532 component
->ops
->unbind(component
->dev
, master
->dev
, data
);
533 component
->bound
= false;
535 /* Release all resources claimed in the binding of this component */
536 devres_release_group(component
->dev
, component
);
540 * component_unbind_all - unbind all components of an aggregate driver
541 * @master_dev: device with the aggregate driver
542 * @data: opaque pointer, passed to all components
544 * Unbinds all components of the aggregate @dev by passing @data to their
545 * &component_ops.unbind functions. Should be called from
546 * &component_master_ops.unbind.
548 void component_unbind_all(struct device
*master_dev
, void *data
)
550 struct master
*master
;
554 WARN_ON(!mutex_is_locked(&component_mutex
));
556 master
= __master_find(master_dev
, NULL
);
560 /* Unbind components in reverse order */
561 for (i
= master
->match
->num
; i
--; )
562 if (!master
->match
->compare
[i
].duplicate
) {
563 c
= master
->match
->compare
[i
].component
;
564 component_unbind(c
, master
, data
);
567 EXPORT_SYMBOL_GPL(component_unbind_all
);
569 static int component_bind(struct component
*component
, struct master
*master
,
575 * Each component initialises inside its own devres group.
576 * This allows us to roll-back a failed component without
577 * affecting anything else.
579 if (!devres_open_group(master
->dev
, NULL
, GFP_KERNEL
))
583 * Also open a group for the device itself: this allows us
584 * to release the resources claimed against the sub-device
585 * at the appropriate moment.
587 if (!devres_open_group(component
->dev
, component
, GFP_KERNEL
)) {
588 devres_release_group(master
->dev
, NULL
);
592 dev_dbg(master
->dev
, "binding %s (ops %ps)\n",
593 dev_name(component
->dev
), component
->ops
);
595 ret
= component
->ops
->bind(component
->dev
, master
->dev
, data
);
597 component
->bound
= true;
600 * Close the component device's group so that resources
601 * allocated in the binding are encapsulated for removal
602 * at unbind. Remove the group on the DRM device as we
603 * can clean those resources up independently.
605 devres_close_group(component
->dev
, NULL
);
606 devres_remove_group(master
->dev
, NULL
);
608 dev_info(master
->dev
, "bound %s (ops %ps)\n",
609 dev_name(component
->dev
), component
->ops
);
611 devres_release_group(component
->dev
, NULL
);
612 devres_release_group(master
->dev
, NULL
);
614 dev_err(master
->dev
, "failed to bind %s (ops %ps): %d\n",
615 dev_name(component
->dev
), component
->ops
, ret
);
622 * component_bind_all - bind all components of an aggregate driver
623 * @master_dev: device with the aggregate driver
624 * @data: opaque pointer, passed to all components
626 * Binds all components of the aggregate @dev by passing @data to their
627 * &component_ops.bind functions. Should be called from
628 * &component_master_ops.bind.
630 int component_bind_all(struct device
*master_dev
, void *data
)
632 struct master
*master
;
637 WARN_ON(!mutex_is_locked(&component_mutex
));
639 master
= __master_find(master_dev
, NULL
);
643 /* Bind components in match order */
644 for (i
= 0; i
< master
->match
->num
; i
++)
645 if (!master
->match
->compare
[i
].duplicate
) {
646 c
= master
->match
->compare
[i
].component
;
647 ret
= component_bind(c
, master
, data
);
654 if (!master
->match
->compare
[i
- 1].duplicate
) {
655 c
= master
->match
->compare
[i
- 1].component
;
656 component_unbind(c
, master
, data
);
662 EXPORT_SYMBOL_GPL(component_bind_all
);
664 static int __component_add(struct device
*dev
, const struct component_ops
*ops
,
667 struct component
*component
;
670 component
= kzalloc(sizeof(*component
), GFP_KERNEL
);
674 component
->ops
= ops
;
675 component
->dev
= dev
;
676 component
->subcomponent
= subcomponent
;
678 dev_dbg(dev
, "adding component (ops %ps)\n", ops
);
680 mutex_lock(&component_mutex
);
681 list_add_tail(&component
->node
, &component_list
);
683 ret
= try_to_bring_up_masters(component
);
685 if (component
->master
)
686 remove_component(component
->master
, component
);
687 list_del(&component
->node
);
691 mutex_unlock(&component_mutex
);
693 return ret
< 0 ? ret
: 0;
697 * component_add_typed - register a component
698 * @dev: component device
699 * @ops: component callbacks
700 * @subcomponent: nonzero identifier for subcomponents
702 * Register a new component for @dev. Functions in @ops will be call when the
703 * aggregate driver is ready to bind the overall driver by calling
704 * component_bind_all(). See also &struct component_ops.
706 * @subcomponent must be nonzero and is used to differentiate between multiple
707 * components registerd on the same device @dev. These components are match
708 * using component_match_add_typed().
710 * The component needs to be unregistered at driver unload/disconnect by
711 * calling component_del().
713 * See also component_add().
715 int component_add_typed(struct device
*dev
, const struct component_ops
*ops
,
718 if (WARN_ON(subcomponent
== 0))
721 return __component_add(dev
, ops
, subcomponent
);
723 EXPORT_SYMBOL_GPL(component_add_typed
);
726 * component_add - register a component
727 * @dev: component device
728 * @ops: component callbacks
730 * Register a new component for @dev. Functions in @ops will be called when the
731 * aggregate driver is ready to bind the overall driver by calling
732 * component_bind_all(). See also &struct component_ops.
734 * The component needs to be unregistered at driver unload/disconnect by
735 * calling component_del().
737 * See also component_add_typed() for a variant that allows multipled different
738 * components on the same device.
740 int component_add(struct device
*dev
, const struct component_ops
*ops
)
742 return __component_add(dev
, ops
, 0);
744 EXPORT_SYMBOL_GPL(component_add
);
747 * component_del - unregister a component
748 * @dev: component device
749 * @ops: component callbacks
751 * Unregister a component added with component_add(). If the component is bound
752 * into an aggregate driver, this will force the entire aggregate driver, including
753 * all its components, to be unbound.
755 void component_del(struct device
*dev
, const struct component_ops
*ops
)
757 struct component
*c
, *component
= NULL
;
759 mutex_lock(&component_mutex
);
760 list_for_each_entry(c
, &component_list
, node
)
761 if (c
->dev
== dev
&& c
->ops
== ops
) {
767 if (component
&& component
->master
) {
768 take_down_master(component
->master
);
769 remove_component(component
->master
, component
);
772 mutex_unlock(&component_mutex
);
777 EXPORT_SYMBOL_GPL(component_del
);
779 MODULE_LICENSE("GPL v2");