xref: /linux/include/linux/device.h (revision 3da8c3c8b8fa99505624b65ef590482f48e766b6)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * device.h - generic, centralized driver model
4  *
5  * Copyright (c) 2001-2003 Patrick Mochel <mochel@osdl.org>
6  * Copyright (c) 2004-2009 Greg Kroah-Hartman <gregkh@suse.de>
7  * Copyright (c) 2008-2009 Novell Inc.
8  *
9  * See Documentation/driver-api/driver-model/ for more information.
10  */
11 
12 #ifndef _DEVICE_H_
13 #define _DEVICE_H_
14 
15 #include <linux/dev_printk.h>
16 #include <linux/energy_model.h>
17 #include <linux/ioport.h>
18 #include <linux/kobject.h>
19 #include <linux/klist.h>
20 #include <linux/list.h>
21 #include <linux/lockdep.h>
22 #include <linux/compiler.h>
23 #include <linux/types.h>
24 #include <linux/mutex.h>
25 #include <linux/pm.h>
26 #include <linux/atomic.h>
27 #include <linux/uidgid.h>
28 #include <linux/gfp.h>
29 #include <linux/device/bus.h>
30 #include <linux/device/class.h>
31 #include <linux/device/devres.h>
32 #include <linux/device/driver.h>
33 #include <linux/cleanup.h>
34 #include <asm/device.h>
35 
36 struct device;
37 struct device_private;
38 struct device_driver;
39 struct driver_private;
40 struct module;
41 struct subsys_private;
42 struct device_node;
43 struct fwnode_handle;
44 struct iommu_group;
45 struct dev_pin_info;
46 struct dev_iommu;
47 struct msi_device_data;
48 
49 /**
50  * struct subsys_interface - interfaces to device functions
51  * @name:       name of the device function
52  * @subsys:     subsystem of the devices to attach to
53  * @node:       the list of functions registered at the subsystem
54  * @add_dev:    device hookup to device function handler
55  * @remove_dev: device hookup to device function handler
56  *
57  * Simple interfaces attached to a subsystem. Multiple interfaces can
58  * attach to a subsystem and its devices. Unlike drivers, they do not
59  * exclusively claim or control devices. Interfaces usually represent
60  * a specific functionality of a subsystem/class of devices.
61  */
62 struct subsys_interface {
63 	const char *name;
64 	const struct bus_type *subsys;
65 	struct list_head node;
66 	int (*add_dev)(struct device *dev, struct subsys_interface *sif);
67 	void (*remove_dev)(struct device *dev, struct subsys_interface *sif);
68 };
69 
70 int subsys_interface_register(struct subsys_interface *sif);
71 void subsys_interface_unregister(struct subsys_interface *sif);
72 
73 int subsys_system_register(const struct bus_type *subsys,
74 			   const struct attribute_group **groups);
75 int subsys_virtual_register(const struct bus_type *subsys,
76 			    const struct attribute_group **groups);
77 
78 /*
79  * The type of device, "struct device" is embedded in. A class
80  * or bus can contain devices of different types
81  * like "partitions" and "disks", "mouse" and "event".
82  * This identifies the device type and carries type-specific
83  * information, equivalent to the kobj_type of a kobject.
84  * If "name" is specified, the uevent will contain it in
85  * the DEVTYPE variable.
86  */
87 struct device_type {
88 	const char *name;
89 	const struct attribute_group **groups;
90 	int (*uevent)(const struct device *dev, struct kobj_uevent_env *env);
91 	char *(*devnode)(const struct device *dev, umode_t *mode,
92 			 kuid_t *uid, kgid_t *gid);
93 	void (*release)(struct device *dev);
94 
95 	const struct dev_pm_ops *pm;
96 };
97 
98 /**
99  * struct device_attribute - Interface for exporting device attributes.
100  * @attr: sysfs attribute definition.
101  * @show: Show handler.
102  * @show_const: Show handler (read-only).
103  * @store: Store handler.
104  * @store_const: Store handler (read-only).
105  */
106 struct device_attribute {
107 	struct attribute	attr;
108 	__SYSFS_FUNCTION_ALTERNATIVE(
109 		ssize_t (*show)(struct device *dev, struct device_attribute *attr,
110 				char *buf);
111 		ssize_t (*show_const)(struct device *dev, const struct device_attribute *attr,
112 				      char *buf);
113 	);
114 	__SYSFS_FUNCTION_ALTERNATIVE(
115 		ssize_t (*store)(struct device *dev, struct device_attribute *attr,
116 				 const char *buf, size_t count);
117 		ssize_t (*store_const)(struct device *dev, const struct device_attribute *attr,
118 				       const char *buf, size_t count);
119 	);
120 };
121 
122 /**
123  * struct dev_ext_attribute - Exported device attribute with extra context.
124  * @attr: Exported device attribute.
125  * @var: Pointer to context.
126  */
127 struct dev_ext_attribute {
128 	struct device_attribute attr;
129 	void *var;
130 };
131 
132 ssize_t device_show_ulong(struct device *dev, struct device_attribute *attr,
133 			  char *buf);
134 ssize_t device_store_ulong(struct device *dev, struct device_attribute *attr,
135 			   const char *buf, size_t count);
136 ssize_t device_show_int(struct device *dev, struct device_attribute *attr,
137 			char *buf);
138 ssize_t device_store_int(struct device *dev, struct device_attribute *attr,
139 			 const char *buf, size_t count);
140 ssize_t device_show_bool(struct device *dev, struct device_attribute *attr,
141 			char *buf);
142 ssize_t device_store_bool(struct device *dev, struct device_attribute *attr,
143 			 const char *buf, size_t count);
144 ssize_t device_show_string(struct device *dev, struct device_attribute *attr,
145 			   char *buf);
146 
147 typedef ssize_t __device_show_handler_const(struct device *dev, const struct device_attribute *attr,
148 					    char *buf);
149 typedef ssize_t __device_store_handler_const(struct device *dev, const struct device_attribute *attr,
150 					     const char *buf, size_t count);
151 
152 #ifdef CONFIG_CFI
153 
154 #define __DEVICE_ATTR_SHOW_STORE(_show, _store)						\
155 	.show		= _Generic(_show,						\
156 			  __device_show_handler_const * : NULL,				\
157 			  default : _show						\
158 	),										\
159 	.show_const	= _Generic(_show,						\
160 			  __device_show_handler_const * : _show,			\
161 			  default : NULL						\
162 	),										\
163 	.store		= _Generic(_store,						\
164 			  __device_store_handler_const * : NULL,			\
165 			  default : _store						\
166 	),										\
167 	.store_const	= _Generic(_store,						\
168 			  __device_store_handler_const * : _store,			\
169 			  default : NULL \
170 	),
171 
172 #else
173 
174 #define __DEVICE_ATTR_SHOW_STORE(_show, _store)						\
175 	.show		= _Generic(_show,						\
176 			  __device_show_handler_const * : (void *)_show,		\
177 			  default : _show						\
178 	),										\
179 	.store		= _Generic(_store,						\
180 			  __device_store_handler_const * : (void *)_store,		\
181 			  default : _store						\
182 	),										\
183 
184 #endif
185 
186 
187 #define __DEVICE_ATTR(_name, _mode, _show, _store) {			\
188 	.attr = {.name = __stringify(_name),				\
189 		 .mode = VERIFY_OCTAL_PERMISSIONS(_mode) },		\
190 	__DEVICE_ATTR_SHOW_STORE(_show, _store)				\
191 }
192 
193 #define __DEVICE_ATTR_RO_MODE(_name, _mode) \
194 	__DEVICE_ATTR(_name, _mode, _name##_show, NULL)
195 
196 #define __DEVICE_ATTR_RO(_name) \
197 	__DEVICE_ATTR_RO_MODE(_name, 0444)
198 
199 #define __DEVICE_ATTR_WO(_name) \
200 	__DEVICE_ATTR(_name, 0200, NULL, _name##_store)
201 
202 #define __DEVICE_ATTR_RW_MODE(_name, _mode) \
203 	__DEVICE_ATTR(_name, _mode, _name##_show, _name##_store)
204 
205 #define __DEVICE_ATTR_RW(_name) \
206 	__DEVICE_ATTR_RW_MODE(_name, 0644)
207 
208 #ifdef CONFIG_DEBUG_LOCK_ALLOC
209 #define __DEVICE_ATTR_IGNORE_LOCKDEP(_name, _mode, _show, _store) {	\
210 	.attr = {.name = __stringify(_name), .mode = _mode,		\
211 			.ignore_lockdep = true },			\
212 	__DEVICE_ATTR_SHOW_STORE(_show, _store)				\
213 }
214 #else
215 #define __DEVICE_ATTR_IGNORE_LOCKDEP	__DEVICE_ATTR
216 #endif
217 
218 /**
219  * DEVICE_ATTR - Define a device attribute.
220  * @_name: Attribute name.
221  * @_mode: File mode.
222  * @_show: Show handler. Optional, but mandatory if attribute is readable.
223  * @_store: Store handler. Optional, but mandatory if attribute is writable.
224  *
225  * Convenience macro for defining a struct device_attribute.
226  *
227  * For example, ``DEVICE_ATTR(foo, 0644, foo_show, foo_store);`` expands to:
228  *
229  * .. code-block:: c
230  *
231  *	struct device_attribute dev_attr_foo = {
232  *		.attr	= { .name = "foo", .mode = 0644 },
233  *		.show	= foo_show,
234  *		.store	= foo_store,
235  *	};
236  */
237 #define DEVICE_ATTR(_name, _mode, _show, _store) \
238 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR(_name, _mode, _show, _store)
239 
240 /**
241  * DEVICE_ATTR_RW - Define a read-write device attribute.
242  * @_name: Attribute name.
243  *
244  * Like DEVICE_ATTR(), but @_mode is 0644, @_show is <_name>_show,
245  * and @_store is <_name>_store.
246  */
247 #define DEVICE_ATTR_RW(_name) \
248 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR_RW(_name)
249 
250 /**
251  * DEVICE_ATTR_ADMIN_RW - Define an admin-only read-write device attribute.
252  * @_name: Attribute name.
253  *
254  * Like DEVICE_ATTR_RW(), but @_mode is 0600.
255  */
256 #define DEVICE_ATTR_ADMIN_RW(_name) \
257 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR_RW_MODE(_name, 0600)
258 
259 /**
260  * DEVICE_ATTR_RW_NAMED - Define a read-write device attribute with a sysfs name
261  * that differs from the function name.
262  * @_name: Attribute function preface
263  * @_attrname: Attribute name as it wil be exposed in the sysfs.
264  *
265  * Like DEVICE_ATTR_RW(), but allows for reusing names under separate paths in
266  * the same driver.
267  */
268 #define DEVICE_ATTR_RW_NAMED(_name, _attrname)                            \
269 	struct device_attribute dev_attr_##_name = {                      \
270 		.attr = { .name = _attrname, .mode = 0644 }, \
271 		__DEVICE_ATTR_SHOW_STORE(_name##_show, _name##_store)     \
272 	}
273 
274 /**
275  * DEVICE_ATTR_RO - Define a readable device attribute.
276  * @_name: Attribute name.
277  *
278  * Like DEVICE_ATTR(), but @_mode is 0444 and @_show is <_name>_show.
279  */
280 #define DEVICE_ATTR_RO(_name) \
281 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR_RO(_name)
282 
283 /**
284  * DEVICE_ATTR_ADMIN_RO - Define an admin-only readable device attribute.
285  * @_name: Attribute name.
286  *
287  * Like DEVICE_ATTR_RO(), but @_mode is 0400.
288  */
289 #define DEVICE_ATTR_ADMIN_RO(_name) \
290 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR_RO_MODE(_name, 0400)
291 
292 /**
293  * DEVICE_ATTR_RO_NAMED - Define a read-only device attribute with a sysfs name
294  * that differs from the function name.
295  * @_name: Attribute function preface
296  * @_attrname: Attribute name as it wil be exposed in the sysfs.
297  *
298  * Like DEVICE_ATTR_RO(), but allows for reusing names under separate paths in
299  * the same driver.
300  */
301 #define DEVICE_ATTR_RO_NAMED(_name, _attrname)                            \
302 	struct device_attribute dev_attr_##_name = {                      \
303 		.attr = { .name = _attrname, .mode = 0444 }, \
304 		__DEVICE_ATTR_SHOW_STORE(_name##_show, NULL)              \
305 	}
306 
307 /**
308  * DEVICE_ATTR_WO - Define an admin-only writable device attribute.
309  * @_name: Attribute name.
310  *
311  * Like DEVICE_ATTR(), but @_mode is 0200 and @_store is <_name>_store.
312  */
313 #define DEVICE_ATTR_WO(_name) \
314 	struct device_attribute dev_attr_##_name = __DEVICE_ATTR_WO(_name)
315 
316 /**
317  * DEVICE_ATTR_WO_NAMED - Define a read-only device attribute with a sysfs name
318  * that differs from the function name.
319  * @_name: Attribute function preface
320  * @_attrname: Attribute name as it wil be exposed in the sysfs.
321  *
322  * Like DEVICE_ATTR_WO(), but allows for reusing names under separate paths in
323  * the same driver.
324  */
325 #define DEVICE_ATTR_WO_NAMED(_name, _attrname)                            \
326 	struct device_attribute dev_attr_##_name = {                      \
327 		.attr = { .name = _attrname, .mode = 0200 }, \
328 		__DEVICE_ATTR_SHOW_STORE(NULL, _name##_store)             \
329 	}
330 
331 /**
332  * DEVICE_ULONG_ATTR - Define a device attribute backed by an unsigned long.
333  * @_name: Attribute name.
334  * @_mode: File mode.
335  * @_var: Identifier of unsigned long.
336  *
337  * Like DEVICE_ATTR(), but @_show and @_store are automatically provided
338  * such that reads and writes to the attribute from userspace affect @_var.
339  */
340 #define DEVICE_ULONG_ATTR(_name, _mode, _var) \
341 	struct dev_ext_attribute dev_attr_##_name = \
342 		{ __DEVICE_ATTR(_name, _mode, device_show_ulong, device_store_ulong), &(_var) }
343 
344 /**
345  * DEVICE_INT_ATTR - Define a device attribute backed by an int.
346  * @_name: Attribute name.
347  * @_mode: File mode.
348  * @_var: Identifier of int.
349  *
350  * Like DEVICE_ULONG_ATTR(), but @_var is an int.
351  */
352 #define DEVICE_INT_ATTR(_name, _mode, _var) \
353 	struct dev_ext_attribute dev_attr_##_name = \
354 		{ __DEVICE_ATTR(_name, _mode, device_show_int, device_store_int), &(_var) }
355 
356 /**
357  * DEVICE_BOOL_ATTR - Define a device attribute backed by a bool.
358  * @_name: Attribute name.
359  * @_mode: File mode.
360  * @_var: Identifier of bool.
361  *
362  * Like DEVICE_ULONG_ATTR(), but @_var is a bool.
363  */
364 #define DEVICE_BOOL_ATTR(_name, _mode, _var) \
365 	struct dev_ext_attribute dev_attr_##_name = \
366 		{ __DEVICE_ATTR(_name, _mode, device_show_bool, device_store_bool), &(_var) }
367 
368 /**
369  * DEVICE_STRING_ATTR_RO - Define a device attribute backed by a r/o string.
370  * @_name: Attribute name.
371  * @_mode: File mode.
372  * @_var: Identifier of string.
373  *
374  * Like DEVICE_ULONG_ATTR(), but @_var is a string. Because the length of the
375  * string allocation is unknown, the attribute must be read-only.
376  */
377 #define DEVICE_STRING_ATTR_RO(_name, _mode, _var) \
378 	struct dev_ext_attribute dev_attr_##_name = \
379 		{ __DEVICE_ATTR(_name, (_mode) & ~0222, device_show_string, NULL), (_var) }
380 
381 #define DEVICE_ATTR_IGNORE_LOCKDEP(_name, _mode, _show, _store) \
382 	struct device_attribute dev_attr_##_name =		\
383 		__DEVICE_ATTR_IGNORE_LOCKDEP(_name, _mode, _show, _store)
384 
385 int device_create_file(struct device *device,
386 		       const struct device_attribute *entry);
387 void device_remove_file(struct device *dev,
388 			const struct device_attribute *attr);
389 bool device_remove_file_self(struct device *dev,
390 			     const struct device_attribute *attr);
391 int __must_check device_create_bin_file(struct device *dev,
392 					const struct bin_attribute *attr);
393 void device_remove_bin_file(struct device *dev,
394 			    const struct bin_attribute *attr);
395 
396 struct device_dma_parameters {
397 	/*
398 	 * a low level driver may set these to teach IOMMU code about
399 	 * sg limitations.
400 	 */
401 	unsigned int max_segment_size;
402 	unsigned int min_align_mask;
403 	unsigned long segment_boundary_mask;
404 };
405 
406 /**
407  * enum device_link_state - Device link states.
408  * @DL_STATE_NONE: The presence of the drivers is not being tracked.
409  * @DL_STATE_DORMANT: None of the supplier/consumer drivers is present.
410  * @DL_STATE_AVAILABLE: The supplier driver is present, but the consumer is not.
411  * @DL_STATE_CONSUMER_PROBE: The consumer is probing (supplier driver present).
412  * @DL_STATE_ACTIVE: Both the supplier and consumer drivers are present.
413  * @DL_STATE_SUPPLIER_UNBIND: The supplier driver is unbinding.
414  */
415 enum device_link_state {
416 	DL_STATE_NONE = -1,
417 	DL_STATE_DORMANT = 0,
418 	DL_STATE_AVAILABLE,
419 	DL_STATE_CONSUMER_PROBE,
420 	DL_STATE_ACTIVE,
421 	DL_STATE_SUPPLIER_UNBIND,
422 };
423 
424 /*
425  * Device link flags.
426  *
427  * STATELESS: The core will not remove this link automatically.
428  * AUTOREMOVE_CONSUMER: Remove the link automatically on consumer driver unbind.
429  * PM_RUNTIME: If set, the runtime PM framework will use this link.
430  * RPM_ACTIVE: Run pm_runtime_get_sync() on the supplier during link creation.
431  * AUTOREMOVE_SUPPLIER: Remove the link automatically on supplier driver unbind.
432  * AUTOPROBE_CONSUMER: Probe consumer driver automatically after supplier binds.
433  * MANAGED: The core tracks presence of supplier/consumer drivers (internal).
434  * SYNC_STATE_ONLY: Link only affects sync_state() behavior.
435  * INFERRED: Inferred from data (eg: firmware) and not from driver actions.
436  */
437 #define DL_FLAG_STATELESS		BIT(0)
438 #define DL_FLAG_AUTOREMOVE_CONSUMER	BIT(1)
439 #define DL_FLAG_PM_RUNTIME		BIT(2)
440 #define DL_FLAG_RPM_ACTIVE		BIT(3)
441 #define DL_FLAG_AUTOREMOVE_SUPPLIER	BIT(4)
442 #define DL_FLAG_AUTOPROBE_CONSUMER	BIT(5)
443 #define DL_FLAG_MANAGED			BIT(6)
444 #define DL_FLAG_SYNC_STATE_ONLY		BIT(7)
445 #define DL_FLAG_INFERRED		BIT(8)
446 #define DL_FLAG_CYCLE			BIT(9)
447 
448 /**
449  * enum dl_dev_state - Device driver presence tracking information.
450  * @DL_DEV_NO_DRIVER: There is no driver attached to the device.
451  * @DL_DEV_PROBING: A driver is probing.
452  * @DL_DEV_DRIVER_BOUND: The driver has been bound to the device.
453  * @DL_DEV_UNBINDING: The driver is unbinding from the device.
454  */
455 enum dl_dev_state {
456 	DL_DEV_NO_DRIVER = 0,
457 	DL_DEV_PROBING,
458 	DL_DEV_DRIVER_BOUND,
459 	DL_DEV_UNBINDING,
460 };
461 
462 /**
463  * enum device_removable - Whether the device is removable. The criteria for a
464  * device to be classified as removable is determined by its subsystem or bus.
465  * @DEVICE_REMOVABLE_NOT_SUPPORTED: This attribute is not supported for this
466  *				    device (default).
467  * @DEVICE_REMOVABLE_UNKNOWN:  Device location is Unknown.
468  * @DEVICE_FIXED: Device is not removable by the user.
469  * @DEVICE_REMOVABLE: Device is removable by the user.
470  */
471 enum device_removable {
472 	DEVICE_REMOVABLE_NOT_SUPPORTED = 0, /* must be 0 */
473 	DEVICE_REMOVABLE_UNKNOWN,
474 	DEVICE_FIXED,
475 	DEVICE_REMOVABLE,
476 };
477 
478 /**
479  * struct dev_links_info - Device data related to device links.
480  * @suppliers: List of links to supplier devices.
481  * @consumers: List of links to consumer devices.
482  * @defer_sync: Hook to global list of devices that have deferred sync_state.
483  * @status: Driver status information.
484  */
485 struct dev_links_info {
486 	struct list_head suppliers;
487 	struct list_head consumers;
488 	struct list_head defer_sync;
489 	enum dl_dev_state status;
490 };
491 
492 /**
493  * struct dev_msi_info - Device data related to MSI
494  * @domain:	The MSI interrupt domain associated to the device
495  * @data:	Pointer to MSI device data
496  */
497 struct dev_msi_info {
498 #ifdef CONFIG_GENERIC_MSI_IRQ
499 	struct irq_domain	*domain;
500 	struct msi_device_data	*data;
501 #endif
502 };
503 
504 /**
505  * enum device_physical_location_panel - Describes which panel surface of the
506  * system's housing the device connection point resides on.
507  * @DEVICE_PANEL_TOP: Device connection point is on the top panel.
508  * @DEVICE_PANEL_BOTTOM: Device connection point is on the bottom panel.
509  * @DEVICE_PANEL_LEFT: Device connection point is on the left panel.
510  * @DEVICE_PANEL_RIGHT: Device connection point is on the right panel.
511  * @DEVICE_PANEL_FRONT: Device connection point is on the front panel.
512  * @DEVICE_PANEL_BACK: Device connection point is on the back panel.
513  * @DEVICE_PANEL_UNKNOWN: The panel with device connection point is unknown.
514  */
515 enum device_physical_location_panel {
516 	DEVICE_PANEL_TOP,
517 	DEVICE_PANEL_BOTTOM,
518 	DEVICE_PANEL_LEFT,
519 	DEVICE_PANEL_RIGHT,
520 	DEVICE_PANEL_FRONT,
521 	DEVICE_PANEL_BACK,
522 	DEVICE_PANEL_UNKNOWN,
523 };
524 
525 /**
526  * enum device_physical_location_vertical_position - Describes vertical
527  * position of the device connection point on the panel surface.
528  * @DEVICE_VERT_POS_UPPER: Device connection point is at upper part of panel.
529  * @DEVICE_VERT_POS_CENTER: Device connection point is at center part of panel.
530  * @DEVICE_VERT_POS_LOWER: Device connection point is at lower part of panel.
531  */
532 enum device_physical_location_vertical_position {
533 	DEVICE_VERT_POS_UPPER,
534 	DEVICE_VERT_POS_CENTER,
535 	DEVICE_VERT_POS_LOWER,
536 };
537 
538 /**
539  * enum device_physical_location_horizontal_position - Describes horizontal
540  * position of the device connection point on the panel surface.
541  * @DEVICE_HORI_POS_LEFT: Device connection point is at left part of panel.
542  * @DEVICE_HORI_POS_CENTER: Device connection point is at center part of panel.
543  * @DEVICE_HORI_POS_RIGHT: Device connection point is at right part of panel.
544  */
545 enum device_physical_location_horizontal_position {
546 	DEVICE_HORI_POS_LEFT,
547 	DEVICE_HORI_POS_CENTER,
548 	DEVICE_HORI_POS_RIGHT,
549 };
550 
551 /**
552  * struct device_physical_location - Device data related to physical location
553  * of the device connection point.
554  * @panel: Panel surface of the system's housing that the device connection
555  *         point resides on.
556  * @vertical_position: Vertical position of the device connection point within
557  *                     the panel.
558  * @horizontal_position: Horizontal position of the device connection point
559  *                       within the panel.
560  * @dock: Set if the device connection point resides in a docking station or
561  *        port replicator.
562  * @lid: Set if this device connection point resides on the lid of laptop
563  *       system.
564  */
565 struct device_physical_location {
566 	enum device_physical_location_panel panel;
567 	enum device_physical_location_vertical_position vertical_position;
568 	enum device_physical_location_horizontal_position horizontal_position;
569 	bool dock;
570 	bool lid;
571 };
572 
573 /**
574  * enum struct_device_flags - Flags in struct device
575  *
576  * Each flag should have a set of accessor functions created via
577  * __create_dev_flag_accessors() for each access.
578  *
579  * @DEV_FLAG_READY_TO_PROBE: If set then device_add() has finished enough
580  *		initialization that probe could be called.
581  * @DEV_FLAG_CAN_MATCH: The device has matched with a driver at least once or it
582  *		is in a bus (like AMBA) which can't check for matching drivers
583  *		until other devices probe successfully.
584  * @DEV_FLAG_DMA_IOMMU: Device is using default IOMMU implementation for DMA and
585  *		doesn't rely on dma_ops structure.
586  * @DEV_FLAG_DMA_SKIP_SYNC: DMA sync operations can be skipped for coherent
587  *		buffers.
588  * @DEV_FLAG_DMA_OPS_BYPASS: If set then the dma_ops are bypassed for the
589  *		streaming DMA operations (->map_* / ->unmap_* / ->sync_*), and
590  *		optional (if the coherent mask is large enough) also for dma
591  *		allocations. This flag is managed by the dma ops instance from
592  *		->dma_supported.
593  * @DEV_FLAG_STATE_SYNCED: The hardware state of this device has been synced to
594  *		match the software state of this device by calling the
595  *		driver/bus sync_state() callback.
596  * @DEV_FLAG_DMA_COHERENT: This particular device is dma coherent, even if the
597  *		architecture supports non-coherent devices.
598  * @DEV_FLAG_OF_NODE_REUSED: Set if the device-tree node is shared with an
599  *		ancestor device.
600  * @DEV_FLAG_OFFLINE_DISABLED: If set, the device is permanently online.
601  * @DEV_FLAG_OFFLINE: Set after successful invocation of bus type's .offline().
602  * @DEV_FLAG_COUNT: Number of defined struct_device_flags.
603  */
604 enum struct_device_flags {
605 	DEV_FLAG_READY_TO_PROBE = 0,
606 	DEV_FLAG_CAN_MATCH = 1,
607 	DEV_FLAG_DMA_IOMMU = 2,
608 	DEV_FLAG_DMA_SKIP_SYNC = 3,
609 	DEV_FLAG_DMA_OPS_BYPASS = 4,
610 	DEV_FLAG_STATE_SYNCED = 5,
611 	DEV_FLAG_DMA_COHERENT = 6,
612 	DEV_FLAG_OF_NODE_REUSED = 7,
613 	DEV_FLAG_OFFLINE_DISABLED = 8,
614 	DEV_FLAG_OFFLINE = 9,
615 
616 	DEV_FLAG_COUNT
617 };
618 
619 /**
620  * struct device - The basic device structure
621  * @parent:	The device's "parent" device, the device to which it is attached.
622  * 		In most cases, a parent device is some sort of bus or host
623  * 		controller. If parent is NULL, the device, is a top-level device,
624  * 		which is not usually what you want.
625  * @p:		Holds the private data of the driver core portions of the device.
626  * 		See the comment of the struct device_private for detail.
627  * @kobj:	A top-level, abstract class from which other classes are derived.
628  * @init_name:	Initial name of the device.
629  * @type:	The type of device.
630  * 		This identifies the device type and carries type-specific
631  * 		information.
632  * @mutex:	Mutex to synchronize calls to its driver.
633  * @bus:	Type of bus device is on.
634  * @driver:	Which driver has allocated this
635  * @platform_data: Platform data specific to the device.
636  * 		Example: For devices on custom boards, as typical of embedded
637  * 		and SOC based hardware, Linux often uses platform_data to point
638  * 		to board-specific structures describing devices and how they
639  * 		are wired.  That can include what ports are available, chip
640  * 		variants, which GPIO pins act in what additional roles, and so
641  * 		on.  This shrinks the "Board Support Packages" (BSPs) and
642  * 		minimizes board-specific #ifdefs in drivers.
643  * @driver_data: Private pointer for driver specific info.
644  * @driver_override: Driver name to force a match.  Do not touch directly; use
645  *		     device_set_driver_override() instead.
646  * @links:	Links to suppliers and consumers of this device.
647  * @power:	For device power management.
648  *		See Documentation/driver-api/pm/devices.rst for details.
649  * @pm_domain:	Provide callbacks that are executed during system suspend,
650  * 		hibernation, system resume and during runtime PM transitions
651  * 		along with subsystem-level and driver-level callbacks.
652  * @em_pd:	device's energy model performance domain
653  * @pins:	For device pin management.
654  *		See Documentation/driver-api/pin-control.rst for details.
655  * @msi:	MSI related data
656  * @numa_node:	NUMA node this device is close to.
657  * @dma_ops:    DMA mapping operations for this device.
658  * @dma_mask:	Dma mask (if dma'ble device).
659  * @coherent_dma_mask: Like dma_mask, but for alloc_coherent mapping as not all
660  * 		hardware supports 64-bit addresses for consistent allocations
661  * 		such descriptors.
662  * @bus_dma_limit: Limit of an upstream bridge or bus which imposes a smaller
663  *		DMA limit than the device itself supports.
664  * @dma_range_map: map for DMA memory ranges relative to that of RAM
665  * @dma_parms:	A low level driver may set these to teach IOMMU code about
666  * 		segment limitations.
667  * @dma_pools:	Dma pools (if dma'ble device).
668  * @dma_mem:	Internal for coherent mem override.
669  * @cma_area:	Contiguous memory area for dma allocations
670  * @dma_io_tlb_mem: Software IO TLB allocator.  Not for driver use.
671  * @dma_io_tlb_pools:	List of transient swiotlb memory pools.
672  * @dma_io_tlb_lock:	Protects changes to the list of active pools.
673  * @dma_uses_io_tlb: %true if device has used the software IO TLB.
674  * @archdata:	For arch-specific additions.
675  * @of_node:	Associated device tree node.
676  * @fwnode:	Associated device node supplied by platform firmware.
677  * @devt:	For creating the sysfs "dev".
678  * @id:		device instance
679  * @devres_lock: Spinlock to protect the resource of the device.
680  * @devres_head: The resources list of the device.
681  * @class:	The class of the device.
682  * @groups:	Optional attribute groups.
683  * @release:	Callback to free the device after all references have
684  * 		gone away. This should be set by the allocator of the
685  * 		device (i.e. the bus driver that discovered the device).
686  * @iommu_group: IOMMU group the device belongs to.
687  * @iommu:	Per device generic IOMMU runtime data
688  * @physical_location: Describes physical location of the device connection
689  *		point in the system housing.
690  * @removable:  Whether the device can be removed from the system. This
691  *              should be set by the subsystem / bus driver that discovered
692  *              the device.
693  * @flags:	DEV_FLAG_XXX flags. Use atomic bitfield operations to modify.
694  *
695  * At the lowest level, every device in a Linux system is represented by an
696  * instance of struct device. The device structure contains the information
697  * that the device model core needs to model the system. Most subsystems,
698  * however, track additional information about the devices they host. As a
699  * result, it is rare for devices to be represented by bare device structures;
700  * instead, that structure, like kobject structures, is usually embedded within
701  * a higher-level representation of the device.
702  */
703 struct device {
704 	struct kobject kobj;
705 	struct device		*parent;
706 
707 	struct device_private	*p;
708 
709 	const char		*init_name; /* initial name of the device */
710 	const struct device_type *type;
711 
712 	const struct bus_type	*bus;	/* type of bus device is on */
713 	struct device_driver *driver;	/* which driver has allocated this
714 					   device */
715 	void		*platform_data;	/* Platform specific data, device
716 					   core doesn't touch it */
717 	void		*driver_data;	/* Driver data, set and get with
718 					   dev_set_drvdata/dev_get_drvdata */
719 	struct {
720 		const char	*name;
721 		spinlock_t	lock;
722 	} driver_override;
723 	struct mutex		mutex;	/* mutex to synchronize calls to
724 					 * its driver.
725 					 */
726 
727 	struct dev_links_info	links;
728 	struct dev_pm_info	power;
729 	struct dev_pm_domain	*pm_domain;
730 
731 #ifdef CONFIG_ENERGY_MODEL
732 	struct em_perf_domain	*em_pd;
733 #endif
734 
735 #ifdef CONFIG_PINCTRL
736 	struct dev_pin_info	*pins;
737 #endif
738 	struct dev_msi_info	msi;
739 #ifdef CONFIG_ARCH_HAS_DMA_OPS
740 	const struct dma_map_ops *dma_ops;
741 #endif
742 	u64		*dma_mask;	/* dma mask (if dma'able device) */
743 	u64		coherent_dma_mask;/* Like dma_mask, but for
744 					     alloc_coherent mappings as
745 					     not all hardware supports
746 					     64 bit addresses for consistent
747 					     allocations such descriptors. */
748 	u64		bus_dma_limit;	/* upstream dma constraint */
749 	const struct bus_dma_region *dma_range_map;
750 
751 	struct device_dma_parameters *dma_parms;
752 
753 	struct list_head	dma_pools;	/* dma pools (if dma'ble) */
754 
755 #ifdef CONFIG_DMA_DECLARE_COHERENT
756 	struct dma_coherent_mem	*dma_mem; /* internal for coherent mem
757 					     override */
758 #endif
759 #ifdef CONFIG_DMA_CMA
760 	struct cma *cma_area;		/* contiguous memory area for dma
761 					   allocations */
762 #endif
763 #ifdef CONFIG_SWIOTLB
764 	struct io_tlb_mem *dma_io_tlb_mem;
765 #endif
766 #ifdef CONFIG_SWIOTLB_DYNAMIC
767 	struct list_head dma_io_tlb_pools;
768 	spinlock_t dma_io_tlb_lock;
769 	bool dma_uses_io_tlb;
770 #endif
771 	/* arch specific additions */
772 	struct dev_archdata	archdata;
773 
774 	struct device_node	*of_node; /* associated device tree node */
775 	struct fwnode_handle	*fwnode; /* firmware device node */
776 
777 #ifdef CONFIG_NUMA
778 	int		numa_node;	/* NUMA node this device is close to */
779 #endif
780 	dev_t			devt;	/* dev_t, creates the sysfs "dev" */
781 	u32			id;	/* device instance */
782 
783 	spinlock_t		devres_lock;
784 	struct list_head	devres_head;
785 
786 	const struct class	*class;
787 	const struct attribute_group **groups;	/* optional groups */
788 
789 	void	(*release)(struct device *dev);
790 	struct iommu_group	*iommu_group;
791 	struct dev_iommu	*iommu;
792 
793 	struct device_physical_location *physical_location;
794 
795 	enum device_removable	removable;
796 
797 	DECLARE_BITMAP(flags, DEV_FLAG_COUNT);
798 };
799 
800 #define __create_dev_flag_accessors(accessor_name, flag_name) \
801 static inline bool dev_##accessor_name(const struct device *dev) \
802 { \
803 	return test_bit(flag_name, dev->flags); \
804 } \
805 static inline void dev_set_##accessor_name(struct device *dev) \
806 { \
807 	set_bit(flag_name, dev->flags); \
808 } \
809 static inline void dev_clear_##accessor_name(struct device *dev) \
810 { \
811 	clear_bit(flag_name, dev->flags); \
812 } \
813 static inline void dev_assign_##accessor_name(struct device *dev, bool value) \
814 { \
815 	assign_bit(flag_name, dev->flags, value); \
816 } \
817 static inline bool dev_test_and_set_##accessor_name(struct device *dev) \
818 { \
819 	return test_and_set_bit(flag_name, dev->flags); \
820 }
821 
822 __create_dev_flag_accessors(ready_to_probe, DEV_FLAG_READY_TO_PROBE);
823 __create_dev_flag_accessors(can_match, DEV_FLAG_CAN_MATCH);
824 __create_dev_flag_accessors(dma_iommu, DEV_FLAG_DMA_IOMMU);
825 __create_dev_flag_accessors(dma_skip_sync, DEV_FLAG_DMA_SKIP_SYNC);
826 __create_dev_flag_accessors(dma_ops_bypass, DEV_FLAG_DMA_OPS_BYPASS);
827 __create_dev_flag_accessors(state_synced, DEV_FLAG_STATE_SYNCED);
828 __create_dev_flag_accessors(dma_coherent, DEV_FLAG_DMA_COHERENT);
829 __create_dev_flag_accessors(of_node_reused, DEV_FLAG_OF_NODE_REUSED);
830 __create_dev_flag_accessors(offline_disabled, DEV_FLAG_OFFLINE_DISABLED);
831 __create_dev_flag_accessors(offline, DEV_FLAG_OFFLINE);
832 
833 #undef __create_dev_flag_accessors
834 
835 /**
836  * struct device_link - Device link representation.
837  * @supplier: The device on the supplier end of the link.
838  * @s_node: Hook to the supplier device's list of links to consumers.
839  * @consumer: The device on the consumer end of the link.
840  * @c_node: Hook to the consumer device's list of links to suppliers.
841  * @link_dev: device used to expose link details in sysfs
842  * @status: The state of the link (with respect to the presence of drivers).
843  * @flags: Link flags.
844  * @rpm_active: Whether or not the consumer device is runtime-PM-active.
845  * @kref: Count repeated addition of the same link.
846  * @rm_work: Work structure used for removing the link.
847  * @supplier_preactivated: Supplier has been made active before consumer probe.
848  */
849 struct device_link {
850 	struct device *supplier;
851 	struct list_head s_node;
852 	struct device *consumer;
853 	struct list_head c_node;
854 	struct device link_dev;
855 	enum device_link_state status;
856 	u32 flags;
857 	refcount_t rpm_active;
858 	struct kref kref;
859 	struct work_struct rm_work;
860 	bool supplier_preactivated; /* Owned by consumer probe. */
861 };
862 
863 #define kobj_to_dev(__kobj)	container_of_const(__kobj, struct device, kobj)
864 
865 int __device_set_driver_override(struct device *dev, const char *s, size_t len);
866 
867 /**
868  * device_set_driver_override() - Helper to set or clear driver override.
869  * @dev: Device to change
870  * @s: NUL-terminated string, new driver name to force a match, pass empty
871  *     string to clear it ("" or "\n", where the latter is only for sysfs
872  *     interface).
873  *
874  * Helper to set or clear driver override of a device.
875  *
876  * Returns: 0 on success or a negative error code on failure.
877  */
device_set_driver_override(struct device * dev,const char * s)878 static inline int device_set_driver_override(struct device *dev, const char *s)
879 {
880 	return __device_set_driver_override(dev, s, s ? strlen(s) : 0);
881 }
882 
883 /**
884  * device_has_driver_override() - Check if a driver override has been set.
885  * @dev: device to check
886  *
887  * Returns true if a driver override has been set for this device.
888  */
device_has_driver_override(struct device * dev)889 static inline bool device_has_driver_override(struct device *dev)
890 {
891 	guard(spinlock)(&dev->driver_override.lock);
892 	return !!dev->driver_override.name;
893 }
894 
895 /**
896  * device_match_driver_override() - Match a driver against the device's driver_override.
897  * @dev: device to check
898  * @drv: driver to match against
899  *
900  * Returns > 0 if a driver override is set and matches the given driver, 0 if a
901  * driver override is set but does not match, or < 0 if a driver override is not
902  * set at all.
903  */
device_match_driver_override(struct device * dev,const struct device_driver * drv)904 static inline int device_match_driver_override(struct device *dev,
905 					       const struct device_driver *drv)
906 {
907 	guard(spinlock)(&dev->driver_override.lock);
908 	if (dev->driver_override.name)
909 		return !strcmp(dev->driver_override.name, drv->name);
910 	return -1;
911 }
912 
913 /**
914  * device_iommu_mapped - Returns true when the device DMA is translated
915  *			 by an IOMMU
916  * @dev: Device to perform the check on
917  */
device_iommu_mapped(struct device * dev)918 static inline bool device_iommu_mapped(struct device *dev)
919 {
920 	return (dev->iommu_group != NULL);
921 }
922 
923 /* Get the wakeup routines, which depend on struct device */
924 #include <linux/pm_wakeup.h>
925 
926 /**
927  * dev_name - Return a device's name.
928  * @dev: Device with name to get.
929  * Return: The kobject name of the device, or its initial name if unavailable.
930  */
dev_name(const struct device * dev)931 static inline const char *dev_name(const struct device *dev)
932 {
933 	/* Use the init name until the kobject becomes available */
934 	if (dev->init_name)
935 		return dev->init_name;
936 
937 	return kobject_name(&dev->kobj);
938 }
939 
940 /**
941  * dev_bus_name - Return a device's bus/class name, if at all possible
942  * @dev: struct device to get the bus/class name of
943  *
944  * Will return the name of the bus/class the device is attached to.  If it is
945  * not attached to a bus/class, an empty string will be returned.
946  */
dev_bus_name(const struct device * dev)947 static inline const char *dev_bus_name(const struct device *dev)
948 {
949 	return dev->bus ? dev->bus->name : (dev->class ? dev->class->name : "");
950 }
951 
952 __printf(2, 3) int dev_set_name(struct device *dev, const char *name, ...);
953 
954 #ifdef CONFIG_NUMA
dev_to_node(struct device * dev)955 static inline int dev_to_node(struct device *dev)
956 {
957 	return dev->numa_node;
958 }
set_dev_node(struct device * dev,int node)959 static inline void set_dev_node(struct device *dev, int node)
960 {
961 	dev->numa_node = node;
962 }
963 #else
dev_to_node(struct device * dev)964 static inline int dev_to_node(struct device *dev)
965 {
966 	return NUMA_NO_NODE;
967 }
set_dev_node(struct device * dev,int node)968 static inline void set_dev_node(struct device *dev, int node)
969 {
970 }
971 #endif
972 
dev_get_msi_domain(const struct device * dev)973 static inline struct irq_domain *dev_get_msi_domain(const struct device *dev)
974 {
975 #ifdef CONFIG_GENERIC_MSI_IRQ
976 	return dev->msi.domain;
977 #else
978 	return NULL;
979 #endif
980 }
981 
dev_set_msi_domain(struct device * dev,struct irq_domain * d)982 static inline void dev_set_msi_domain(struct device *dev, struct irq_domain *d)
983 {
984 #ifdef CONFIG_GENERIC_MSI_IRQ
985 	dev->msi.domain = d;
986 #endif
987 }
988 
dev_get_drvdata(const struct device * dev)989 static inline void *dev_get_drvdata(const struct device *dev)
990 {
991 	return dev->driver_data;
992 }
993 
dev_set_drvdata(struct device * dev,void * data)994 static inline void dev_set_drvdata(struct device *dev, void *data)
995 {
996 	dev->driver_data = data;
997 }
998 
dev_to_psd(struct device * dev)999 static inline struct pm_subsys_data *dev_to_psd(struct device *dev)
1000 {
1001 	return dev ? dev->power.subsys_data : NULL;
1002 }
1003 
dev_get_uevent_suppress(const struct device * dev)1004 static inline unsigned int dev_get_uevent_suppress(const struct device *dev)
1005 {
1006 	return dev->kobj.uevent_suppress;
1007 }
1008 
dev_set_uevent_suppress(struct device * dev,int val)1009 static inline void dev_set_uevent_suppress(struct device *dev, int val)
1010 {
1011 	dev->kobj.uevent_suppress = val;
1012 }
1013 
device_is_registered(struct device * dev)1014 static inline int device_is_registered(struct device *dev)
1015 {
1016 	return dev->kobj.state_in_sysfs;
1017 }
1018 
device_enable_async_suspend(struct device * dev)1019 static inline void device_enable_async_suspend(struct device *dev)
1020 {
1021 	if (!dev->power.is_prepared)
1022 		dev->power.async_suspend = true;
1023 }
1024 
device_disable_async_suspend(struct device * dev)1025 static inline void device_disable_async_suspend(struct device *dev)
1026 {
1027 	if (!dev->power.is_prepared)
1028 		dev->power.async_suspend = false;
1029 }
1030 
device_async_suspend_enabled(struct device * dev)1031 static inline bool device_async_suspend_enabled(struct device *dev)
1032 {
1033 	return !!dev->power.async_suspend;
1034 }
1035 
device_pm_not_required(struct device * dev)1036 static inline bool device_pm_not_required(struct device *dev)
1037 {
1038 	return dev->power.no_pm;
1039 }
1040 
device_set_pm_not_required(struct device * dev)1041 static inline void device_set_pm_not_required(struct device *dev)
1042 {
1043 	dev->power.no_pm = true;
1044 #ifdef CONFIG_PM
1045 	dev->power.no_callbacks = true;
1046 #endif
1047 }
1048 
dev_pm_syscore_device(struct device * dev,bool val)1049 static inline void dev_pm_syscore_device(struct device *dev, bool val)
1050 {
1051 #ifdef CONFIG_PM_SLEEP
1052 	dev->power.syscore = val;
1053 #endif
1054 }
1055 
dev_pm_set_driver_flags(struct device * dev,u32 flags)1056 static inline void dev_pm_set_driver_flags(struct device *dev, u32 flags)
1057 {
1058 	dev->power.driver_flags = flags;
1059 }
1060 
dev_pm_test_driver_flags(struct device * dev,u32 flags)1061 static inline bool dev_pm_test_driver_flags(struct device *dev, u32 flags)
1062 {
1063 	return !!(dev->power.driver_flags & flags);
1064 }
1065 
dev_pm_smart_suspend(struct device * dev)1066 static inline bool dev_pm_smart_suspend(struct device *dev)
1067 {
1068 #ifdef CONFIG_PM_SLEEP
1069 	return dev->power.smart_suspend;
1070 #else
1071 	return false;
1072 #endif
1073 }
1074 
1075 /*
1076  * dev_pm_set_strict_midlayer - Update the device's power.strict_midlayer flag
1077  * @dev: Target device.
1078  * @val: New flag value.
1079  *
1080  * When set, power.strict_midlayer means that the middle layer power management
1081  * code (typically, a bus type or a PM domain) does not expect its runtime PM
1082  * suspend callback to be invoked at all during system-wide PM transitions and
1083  * it does not expect its runtime PM resume callback to be invoked at any point
1084  * when runtime PM is disabled for the device during system-wide PM transitions.
1085  */
dev_pm_set_strict_midlayer(struct device * dev,bool val)1086 static inline void dev_pm_set_strict_midlayer(struct device *dev, bool val)
1087 {
1088 #ifdef CONFIG_PM_SLEEP
1089 	dev->power.strict_midlayer = val;
1090 #endif
1091 }
1092 
dev_pm_strict_midlayer_is_set(struct device * dev)1093 static inline bool dev_pm_strict_midlayer_is_set(struct device *dev)
1094 {
1095 #ifdef CONFIG_PM_SLEEP
1096 	return dev->power.strict_midlayer;
1097 #else
1098 	return false;
1099 #endif
1100 }
1101 
device_lock(struct device * dev)1102 static inline void device_lock(struct device *dev)
1103 {
1104 	mutex_lock(&dev->mutex);
1105 }
1106 
device_lock_interruptible(struct device * dev)1107 static inline int device_lock_interruptible(struct device *dev)
1108 {
1109 	return mutex_lock_interruptible(&dev->mutex);
1110 }
1111 
device_trylock(struct device * dev)1112 static inline int device_trylock(struct device *dev)
1113 {
1114 	return mutex_trylock(&dev->mutex);
1115 }
1116 
device_unlock(struct device * dev)1117 static inline void device_unlock(struct device *dev)
1118 {
1119 	mutex_unlock(&dev->mutex);
1120 }
1121 
DEFINE_GUARD(device,struct device *,device_lock (_T),device_unlock (_T))1122 DEFINE_GUARD(device, struct device *, device_lock(_T), device_unlock(_T))
1123 DEFINE_GUARD_COND(device, _intr, device_lock_interruptible(_T), _RET == 0)
1124 
1125 static inline void device_lock_assert(struct device *dev)
1126 {
1127 	lockdep_assert_held(&dev->mutex);
1128 }
1129 
dev_set_drv_sync_state(struct device * dev,void (* fn)(struct device * dev))1130 static inline int dev_set_drv_sync_state(struct device *dev,
1131 					 void (*fn)(struct device *dev))
1132 {
1133 	if (!dev || !dev->driver)
1134 		return 0;
1135 	if (dev->driver->sync_state && dev->driver->sync_state != fn)
1136 		return -EBUSY;
1137 	if (!dev->driver->sync_state)
1138 		dev->driver->sync_state = fn;
1139 	return 0;
1140 }
1141 
dev_set_removable(struct device * dev,enum device_removable removable)1142 static inline void dev_set_removable(struct device *dev,
1143 				     enum device_removable removable)
1144 {
1145 	dev->removable = removable;
1146 }
1147 
dev_is_removable(struct device * dev)1148 static inline bool dev_is_removable(struct device *dev)
1149 {
1150 	return dev->removable == DEVICE_REMOVABLE;
1151 }
1152 
dev_removable_is_valid(struct device * dev)1153 static inline bool dev_removable_is_valid(struct device *dev)
1154 {
1155 	return dev->removable != DEVICE_REMOVABLE_NOT_SUPPORTED;
1156 }
1157 
1158 /*
1159  * High level routines for use by the bus drivers
1160  */
1161 int __must_check device_register(struct device *dev);
1162 void device_unregister(struct device *dev);
1163 void device_initialize(struct device *dev);
1164 int __must_check device_add(struct device *dev);
1165 void device_del(struct device *dev);
1166 
1167 DEFINE_FREE(device_del, struct device *, if (_T) device_del(_T))
1168 
1169 int device_for_each_child(struct device *parent, void *data,
1170 			  device_iter_t fn);
1171 int device_for_each_child_reverse(struct device *parent, void *data,
1172 				  device_iter_t fn);
1173 int device_for_each_child_reverse_from(struct device *parent,
1174 				       struct device *from, void *data,
1175 				       device_iter_t fn);
1176 struct device *device_find_child(struct device *parent, const void *data,
1177 				 device_match_t match);
1178 /**
1179  * device_find_child_by_name - device iterator for locating a child device.
1180  * @parent: parent struct device
1181  * @name: name of the child device
1182  *
1183  * This is similar to the device_find_child() function above, but it
1184  * returns a reference to a device that has the name @name.
1185  *
1186  * NOTE: you will need to drop the reference with put_device() after use.
1187  */
device_find_child_by_name(struct device * parent,const char * name)1188 static inline struct device *device_find_child_by_name(struct device *parent,
1189 						       const char *name)
1190 {
1191 	return device_find_child(parent, name, device_match_name);
1192 }
1193 
1194 /**
1195  * device_find_any_child - device iterator for locating a child device, if any.
1196  * @parent: parent struct device
1197  *
1198  * This is similar to the device_find_child() function above, but it
1199  * returns a reference to a child device, if any.
1200  *
1201  * NOTE: you will need to drop the reference with put_device() after use.
1202  */
device_find_any_child(struct device * parent)1203 static inline struct device *device_find_any_child(struct device *parent)
1204 {
1205 	return device_find_child(parent, NULL, device_match_any);
1206 }
1207 
1208 int device_rename(struct device *dev, const char *new_name);
1209 int device_move(struct device *dev, struct device *new_parent,
1210 		enum dpm_order dpm_order);
1211 int device_change_owner(struct device *dev, kuid_t kuid, kgid_t kgid);
1212 
device_supports_offline(struct device * dev)1213 static inline bool device_supports_offline(struct device *dev)
1214 {
1215 	return dev->bus && dev->bus->offline && dev->bus->online;
1216 }
1217 
1218 #define __device_lock_set_class(dev, name, key)                        \
1219 do {                                                                   \
1220 	struct device *__d2 __maybe_unused = dev;                      \
1221 	lock_set_class(&__d2->mutex.dep_map, name, key, 0, _THIS_IP_); \
1222 } while (0)
1223 
1224 /**
1225  * device_lock_set_class - Specify a temporary lock class while a device
1226  *			   is attached to a driver
1227  * @dev: device to modify
1228  * @key: lock class key data
1229  *
1230  * This must be called with the device_lock() already held, for example
1231  * from driver ->probe(). Take care to only override the default
1232  * lockdep_no_validate class.
1233  */
1234 #ifdef CONFIG_LOCKDEP
1235 #define device_lock_set_class(dev, key)                                    \
1236 do {                                                                       \
1237 	struct device *__d = dev;                                          \
1238 	dev_WARN_ONCE(__d, !lockdep_match_class(&__d->mutex,               \
1239 						&__lockdep_no_validate__), \
1240 		 "overriding existing custom lock class\n");               \
1241 	__device_lock_set_class(__d, #key, key);                           \
1242 } while (0)
1243 #else
1244 #define device_lock_set_class(dev, key) __device_lock_set_class(dev, #key, key)
1245 #endif
1246 
1247 /**
1248  * device_lock_reset_class - Return a device to the default lockdep novalidate state
1249  * @dev: device to modify
1250  *
1251  * This must be called with the device_lock() already held, for example
1252  * from driver ->remove().
1253  */
1254 #define device_lock_reset_class(dev) \
1255 do { \
1256 	struct device *__d __maybe_unused = dev;                       \
1257 	lock_set_novalidate_class(&__d->mutex.dep_map, "&dev->mutex",  \
1258 				  _THIS_IP_);                          \
1259 } while (0)
1260 
1261 void lock_device_hotplug(void);
1262 void unlock_device_hotplug(void);
1263 int lock_device_hotplug_sysfs(void);
1264 int device_offline(struct device *dev);
1265 int device_online(struct device *dev);
1266 
1267 void set_primary_fwnode(struct device *dev, struct fwnode_handle *fwnode);
1268 void set_secondary_fwnode(struct device *dev, struct fwnode_handle *fwnode);
1269 void device_set_node(struct device *dev, struct fwnode_handle *fwnode);
1270 int device_add_of_node(struct device *dev, struct device_node *of_node);
1271 void device_remove_of_node(struct device *dev);
1272 void device_set_of_node_from_dev(struct device *dev, const struct device *dev2);
1273 struct device *get_dev_from_fwnode(struct fwnode_handle *fwnode);
1274 
dev_of_node(struct device * dev)1275 static inline struct device_node *dev_of_node(struct device *dev)
1276 {
1277 	if (!IS_ENABLED(CONFIG_OF) || !dev)
1278 		return NULL;
1279 	return dev->of_node;
1280 }
1281 
dev_num_vf(struct device * dev)1282 static inline int dev_num_vf(struct device *dev)
1283 {
1284 	if (dev->bus && dev->bus->num_vf)
1285 		return dev->bus->num_vf(dev);
1286 	return 0;
1287 }
1288 
1289 /*
1290  * Root device objects for grouping under /sys/devices
1291  */
1292 struct device *__root_device_register(const char *name, struct module *owner);
1293 
1294 /* This is a macro to avoid include problems with THIS_MODULE */
1295 #define root_device_register(name) \
1296 	__root_device_register(name, THIS_MODULE)
1297 
1298 void root_device_unregister(struct device *root);
1299 
dev_get_platdata(const struct device * dev)1300 static inline void *dev_get_platdata(const struct device *dev)
1301 {
1302 	return dev->platform_data;
1303 }
1304 
1305 /*
1306  * Manual binding of a device to driver. See drivers/base/bus.c
1307  * for information on use.
1308  */
1309 int __must_check device_driver_attach(const struct device_driver *drv,
1310 				      struct device *dev);
1311 int __must_check device_bind_driver(struct device *dev);
1312 void device_release_driver(struct device *dev);
1313 int  __must_check device_attach(struct device *dev);
1314 int __must_check driver_attach(const struct device_driver *drv);
1315 void device_initial_probe(struct device *dev);
1316 int __must_check device_reprobe(struct device *dev);
1317 
1318 bool device_is_bound(struct device *dev);
1319 
1320 /*
1321  * Easy functions for dynamically creating devices on the fly
1322  */
1323 __printf(5, 6) struct device *
1324 device_create(const struct class *cls, struct device *parent, dev_t devt,
1325 	      void *drvdata, const char *fmt, ...);
1326 __printf(6, 7) struct device *
1327 device_create_with_groups(const struct class *cls, struct device *parent, dev_t devt,
1328 			  void *drvdata, const struct attribute_group **groups,
1329 			  const char *fmt, ...);
1330 void device_destroy(const struct class *cls, dev_t devt);
1331 
1332 int __must_check device_add_groups(struct device *dev,
1333 				   const struct attribute_group *const *groups);
1334 void device_remove_groups(struct device *dev,
1335 			  const struct attribute_group *const *groups);
1336 
device_add_group(struct device * dev,const struct attribute_group * grp)1337 static inline int __must_check device_add_group(struct device *dev,
1338 					const struct attribute_group *grp)
1339 {
1340 	const struct attribute_group *groups[] = { grp, NULL };
1341 
1342 	return device_add_groups(dev, groups);
1343 }
1344 
device_remove_group(struct device * dev,const struct attribute_group * grp)1345 static inline void device_remove_group(struct device *dev,
1346 				       const struct attribute_group *grp)
1347 {
1348 	const struct attribute_group *groups[] = { grp, NULL };
1349 
1350 	device_remove_groups(dev, groups);
1351 }
1352 
1353 int __must_check devm_device_add_group(struct device *dev,
1354 				       const struct attribute_group *grp);
1355 
1356 /*
1357  * get_device - atomically increment the reference count for the device.
1358  *
1359  */
1360 struct device *get_device(struct device *dev);
1361 void put_device(struct device *dev);
1362 
1363 DEFINE_FREE(put_device, struct device *, if (_T) put_device(_T))
1364 
1365 bool kill_device(struct device *dev);
1366 
1367 #ifdef CONFIG_DEVTMPFS
1368 int devtmpfs_mount(void);
1369 #else
devtmpfs_mount(void)1370 static inline int devtmpfs_mount(void) { return 0; }
1371 #endif
1372 
1373 /* drivers/base/power/shutdown.c */
1374 void device_shutdown(void);
1375 
1376 /* debugging and troubleshooting/diagnostic helpers. */
1377 const char *dev_driver_string(const struct device *dev);
1378 
1379 /* Device links interface. */
1380 struct device_link *device_link_add(struct device *consumer,
1381 				    struct device *supplier, u32 flags);
1382 void device_link_del(struct device_link *link);
1383 void device_link_remove(void *consumer, struct device *supplier);
1384 void device_links_supplier_sync_state_pause(void);
1385 void device_links_supplier_sync_state_resume(void);
1386 void device_link_wait_removal(void);
1387 
device_link_test(const struct device_link * link,u32 flags)1388 static inline bool device_link_test(const struct device_link *link, u32 flags)
1389 {
1390 	return !!(link->flags & flags);
1391 }
1392 
1393 /* Create alias, so I can be autoloaded. */
1394 #define MODULE_ALIAS_CHARDEV(major,minor) \
1395 	MODULE_ALIAS("char-major-" __stringify(major) "-" __stringify(minor))
1396 #define MODULE_ALIAS_CHARDEV_MAJOR(major) \
1397 	MODULE_ALIAS("char-major-" __stringify(major) "-*")
1398 
1399 #endif /* _DEVICE_H_ */
1400