xref: /linux/include/acpi/acpi_bus.h (revision 4a819ee5f2834330656d6ac168c4c8cf27fdeec2)
1 /* SPDX-License-Identifier: GPL-2.0-or-later */
2 /*
3  *  acpi_bus.h - ACPI Bus Driver ($Revision: 22 $)
4  *
5  *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
6  *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
7  */
8 
9 #ifndef __ACPI_BUS_H__
10 #define __ACPI_BUS_H__
11 
12 #include <linux/completion.h>
13 #include <linux/container_of.h>
14 #include <linux/device.h>
15 #include <linux/kobject.h>
16 #include <linux/mutex.h>
17 #include <linux/property.h>
18 #include <linux/types.h>
19 
20 struct notifier_block;
21 
22 struct acpi_handle_list {
23 	u32 count;
24 	acpi_handle *handles;
25 };
26 
27 /* acpi_utils.h */
28 acpi_status
29 acpi_extract_package(union acpi_object *package,
30 		     struct acpi_buffer *format, struct acpi_buffer *buffer);
31 acpi_status
32 acpi_evaluate_integer(acpi_handle handle,
33 		      acpi_string pathname,
34 		      struct acpi_object_list *arguments, unsigned long long *data);
35 bool acpi_evaluate_reference(acpi_handle handle, acpi_string pathname,
36 			     struct acpi_object_list *arguments,
37 			     struct acpi_handle_list *list);
38 bool acpi_handle_list_equal(struct acpi_handle_list *list1,
39 			    struct acpi_handle_list *list2);
40 void acpi_handle_list_replace(struct acpi_handle_list *dst,
41 			      struct acpi_handle_list *src);
42 void acpi_handle_list_free(struct acpi_handle_list *list);
43 bool acpi_device_dep(acpi_handle target, acpi_handle match);
44 acpi_status
45 acpi_evaluate_ost(acpi_handle handle, u32 source_event, u32 status_code,
46 		  struct acpi_buffer *status_buf);
47 
48 bool acpi_has_method(acpi_handle handle, char *name);
49 acpi_status acpi_execute_simple_method(acpi_handle handle, char *method,
50 				       u64 arg);
51 acpi_status acpi_evaluate_ej0(acpi_handle handle);
52 acpi_status acpi_evaluate_lck(acpi_handle handle, int lock);
53 acpi_status acpi_evaluate_reg(acpi_handle handle, u8 space_id, u32 function);
54 bool acpi_ata_match(acpi_handle handle);
55 bool acpi_bay_match(acpi_handle handle);
56 bool acpi_dock_match(acpi_handle handle);
57 
58 bool acpi_check_dsm(acpi_handle handle, const guid_t *guid, u64 rev, u64 funcs);
59 union acpi_object *acpi_evaluate_dsm(acpi_handle handle, const guid_t *guid,
60 			u64 rev, u64 func, union acpi_object *argv4);
61 #ifdef CONFIG_ACPI
62 bool
63 acpi_get_physical_device_location(acpi_handle handle, struct acpi_pld_info **pld);
64 
65 static inline union acpi_object *
66 acpi_evaluate_dsm_typed(acpi_handle handle, const guid_t *guid, u64 rev,
67 			u64 func, union acpi_object *argv4,
68 			acpi_object_type type)
69 {
70 	union acpi_object *obj;
71 
72 	obj = acpi_evaluate_dsm(handle, guid, rev, func, argv4);
73 	if (obj && obj->type != type) {
74 		ACPI_FREE(obj);
75 		obj = NULL;
76 	}
77 
78 	return obj;
79 }
80 #endif
81 
82 #define	ACPI_INIT_DSM_ARGV4(cnt, eles)			\
83 	{						\
84 	  .package.type = ACPI_TYPE_PACKAGE,		\
85 	  .package.count = (cnt),			\
86 	  .package.elements = (eles)			\
87 	}
88 
89 bool acpi_dev_found(const char *hid);
90 bool acpi_dev_present(const char *hid, const char *uid, s64 hrv);
91 bool acpi_reduced_hardware(void);
92 
93 #ifdef CONFIG_ACPI
94 
95 struct proc_dir_entry;
96 
97 #define ACPI_BUS_FILE_ROOT	"acpi"
98 extern struct proc_dir_entry *acpi_root_dir;
99 
100 enum acpi_bus_device_type {
101 	ACPI_BUS_TYPE_DEVICE = 0,
102 	ACPI_BUS_TYPE_POWER,
103 	ACPI_BUS_TYPE_PROCESSOR,
104 	ACPI_BUS_TYPE_THERMAL,
105 	ACPI_BUS_TYPE_POWER_BUTTON,
106 	ACPI_BUS_TYPE_SLEEP_BUTTON,
107 	ACPI_BUS_TYPE_ECDT_EC,
108 	ACPI_BUS_DEVICE_TYPE_COUNT
109 };
110 
111 struct acpi_device;
112 
113 /*
114  * ACPI Scan Handler
115  * -----------------
116  */
117 
118 struct acpi_hotplug_profile {
119 	struct kobject kobj;
120 	int (*scan_dependent)(struct acpi_device *adev);
121 	void (*notify_online)(struct acpi_device *adev);
122 	bool enabled:1;
123 	bool demand_offline:1;
124 };
125 
126 static inline struct acpi_hotplug_profile *to_acpi_hotplug_profile(
127 						struct kobject *kobj)
128 {
129 	return container_of(kobj, struct acpi_hotplug_profile, kobj);
130 }
131 
132 struct acpi_scan_handler {
133 	struct list_head list_node;
134 	const struct acpi_device_id *ids;
135 	bool (*match)(const char *idstr, const struct acpi_device_id **matchid);
136 	int (*attach)(struct acpi_device *dev, const struct acpi_device_id *id);
137 	void (*detach)(struct acpi_device *dev);
138 	void (*post_eject)(struct acpi_device *dev);
139 	void (*bind)(struct device *phys_dev);
140 	void (*unbind)(struct device *phys_dev);
141 	struct acpi_hotplug_profile hotplug;
142 };
143 
144 /*
145  * ACPI Hotplug Context
146  * --------------------
147  */
148 
149 typedef int (*acpi_hp_notify) (struct acpi_device *, u32);
150 typedef void (*acpi_hp_uevent) (struct acpi_device *, u32);
151 typedef void (*acpi_hp_fixup) (struct acpi_device *);
152 
153 struct acpi_hotplug_context {
154 	struct acpi_device *self;
155 	acpi_hp_notify notify;
156 	acpi_hp_uevent uevent;
157 	acpi_hp_fixup fixup;
158 };
159 
160 /*
161  * ACPI Device
162  * -----------
163  */
164 
165 /* Status (_STA) */
166 
167 struct acpi_device_status {
168 	u32 present:1;
169 	u32 enabled:1;
170 	u32 show_in_ui:1;
171 	u32 functional:1;
172 	u32 battery_present:1;
173 	u32 reserved:27;
174 };
175 
176 /* Flags */
177 
178 struct acpi_device_flags {
179 	u32 dynamic_status:1;
180 	u32 removable:1;
181 	u32 ejectable:1;
182 	u32 power_manageable:1;
183 	u32 initialized:1;
184 	u32 visited:1;
185 	u32 hotplug_notify:1;
186 	u32 is_dock_station:1;
187 	u32 of_compatible_ok:1;
188 	u32 coherent_dma:1;
189 	u32 cca_seen:1;
190 	u32 enumeration_by_parent:1;
191 	u32 honor_deps:1;
192 	u32 reserved:19;
193 };
194 
195 /* File System */
196 
197 struct acpi_device_dir {
198 	struct proc_dir_entry *entry;
199 };
200 
201 #define acpi_device_dir(d)	((d)->dir.entry)
202 
203 /* Plug and Play */
204 
205 typedef char acpi_bus_id[8];
206 typedef u64 acpi_bus_address;
207 
208 struct acpi_hardware_id {
209 	struct list_head list;
210 	const char *id;
211 };
212 
213 struct acpi_pnp_type {
214 	u32 hardware_id:1;
215 	u32 bus_address:1;
216 	u32 platform_id:1;
217 	u32 backlight:1;
218 	u32 reserved:28;
219 };
220 
221 struct acpi_device_pnp {
222 	acpi_bus_id bus_id;		/* Object name */
223 	int instance_no;		/* Instance number of this object */
224 	struct acpi_pnp_type type;	/* ID type */
225 	acpi_bus_address bus_address;	/* _ADR */
226 	char *unique_id;		/* _UID */
227 	struct list_head ids;		/* _HID and _CIDs */
228 };
229 
230 #define acpi_device_bid(d)	((d)->pnp.bus_id)
231 #define acpi_device_adr(d)	((d)->pnp.bus_address)
232 const char *acpi_device_hid(struct acpi_device *device);
233 #define acpi_device_uid(d)	((d)->pnp.unique_id)
234 
235 /* Power Management */
236 
237 struct acpi_device_power_flags {
238 	u32 explicit_get:1;	/* _PSC present? */
239 	u32 power_resources:1;	/* Power resources */
240 	u32 inrush_current:1;	/* Serialize Dx->D0 */
241 	u32 power_removed:1;	/* Optimize Dx->D0 */
242 	u32 ignore_parent:1;	/* Power is independent of parent power state */
243 	u32 dsw_present:1;	/* _DSW present? */
244 	u32 reserved:26;
245 };
246 
247 struct acpi_device_power_state {
248 	struct list_head resources;	/* Power resources referenced */
249 	struct {
250 		u8 valid:1;
251 		u8 explicit_set:1;	/* _PSx present? */
252 		u8 reserved:6;
253 	} flags;
254 	int power;		/* % Power (compared to D0) */
255 	int latency;		/* Dx->D0 time (microseconds) */
256 };
257 
258 struct acpi_device_power {
259 	int state;		/* Current state */
260 	struct acpi_device_power_flags flags;
261 	struct acpi_device_power_state states[ACPI_D_STATE_COUNT];	/* Power states (D0-D3Cold) */
262 	u8 state_for_enumeration; /* Deepest power state for enumeration */
263 };
264 
265 struct acpi_dep_data {
266 	struct list_head node;
267 	acpi_handle supplier;
268 	acpi_handle consumer;
269 	bool honor_dep;
270 	bool met;
271 	bool free_when_met;
272 };
273 
274 /* Performance Management */
275 
276 struct acpi_device_perf_flags {
277 	u8 reserved:8;
278 };
279 
280 struct acpi_device_perf_state {
281 	struct {
282 		u8 valid:1;
283 		u8 reserved:7;
284 	} flags;
285 	u8 power;		/* % Power (compared to P0) */
286 	u8 performance;		/* % Performance (    "   ) */
287 	int latency;		/* Px->P0 time (microseconds) */
288 };
289 
290 struct acpi_device_perf {
291 	int state;
292 	struct acpi_device_perf_flags flags;
293 	int state_count;
294 	struct acpi_device_perf_state *states;
295 };
296 
297 /* Wakeup Management */
298 struct acpi_device_wakeup_flags {
299 	u8 valid:1;		/* Can successfully enable wakeup? */
300 	u8 notifier_present:1;  /* Wake-up notify handler has been installed */
301 };
302 
303 struct acpi_device_wakeup_context {
304 	void (*func)(struct acpi_device_wakeup_context *context);
305 	struct device *dev;
306 };
307 
308 struct acpi_device_wakeup {
309 	acpi_handle gpe_device;
310 	u64 gpe_number;
311 	u64 sleep_state;
312 	struct list_head resources;
313 	struct acpi_device_wakeup_flags flags;
314 	struct acpi_device_wakeup_context context;
315 	struct wakeup_source *ws;
316 	int prepare_count;
317 	int enable_count;
318 };
319 
320 struct acpi_device_physical_node {
321 	struct list_head node;
322 	struct device *dev;
323 	unsigned int node_id;
324 	bool put_online:1;
325 };
326 
327 struct acpi_device_properties {
328 	struct list_head list;
329 	const guid_t *guid;
330 	union acpi_object *properties;
331 	void **bufs;
332 };
333 
334 /* ACPI Device Specific Data (_DSD) */
335 struct acpi_device_data {
336 	const union acpi_object *pointer;
337 	struct list_head properties;
338 	const union acpi_object *of_compatible;
339 	struct list_head subnodes;
340 };
341 
342 struct acpi_gpio_mapping;
343 
344 #define ACPI_DEVICE_SWNODE_ROOT			0
345 
346 /*
347  * The maximum expected number of CSI-2 data lanes.
348  *
349  * This number is not expected to ever have to be equal to or greater than the
350  * number of bits in an unsigned long variable, but if it needs to be increased
351  * above that limit, code will need to be adjusted accordingly.
352  */
353 #define ACPI_DEVICE_CSI2_DATA_LANES		8
354 
355 #define ACPI_DEVICE_SWNODE_PORT_NAME_LENGTH	8
356 
357 enum acpi_device_swnode_dev_props {
358 	ACPI_DEVICE_SWNODE_DEV_ROTATION,
359 	ACPI_DEVICE_SWNODE_DEV_CLOCK_FREQUENCY,
360 	ACPI_DEVICE_SWNODE_DEV_LED_MAX_MICROAMP,
361 	ACPI_DEVICE_SWNODE_DEV_FLASH_MAX_MICROAMP,
362 	ACPI_DEVICE_SWNODE_DEV_FLASH_MAX_TIMEOUT_US,
363 	ACPI_DEVICE_SWNODE_DEV_NUM_OF,
364 	ACPI_DEVICE_SWNODE_DEV_NUM_ENTRIES
365 };
366 
367 enum acpi_device_swnode_port_props {
368 	ACPI_DEVICE_SWNODE_PORT_REG,
369 	ACPI_DEVICE_SWNODE_PORT_NUM_OF,
370 	ACPI_DEVICE_SWNODE_PORT_NUM_ENTRIES
371 };
372 
373 enum acpi_device_swnode_ep_props {
374 	ACPI_DEVICE_SWNODE_EP_REMOTE_EP,
375 	ACPI_DEVICE_SWNODE_EP_BUS_TYPE,
376 	ACPI_DEVICE_SWNODE_EP_REG,
377 	ACPI_DEVICE_SWNODE_EP_CLOCK_LANES,
378 	ACPI_DEVICE_SWNODE_EP_DATA_LANES,
379 	ACPI_DEVICE_SWNODE_EP_LANE_POLARITIES,
380 	/* TX only */
381 	ACPI_DEVICE_SWNODE_EP_LINK_FREQUENCIES,
382 	ACPI_DEVICE_SWNODE_EP_NUM_OF,
383 	ACPI_DEVICE_SWNODE_EP_NUM_ENTRIES
384 };
385 
386 /*
387  * Each device has a root software node plus two times as many nodes as the
388  * number of CSI-2 ports.
389  */
390 #define ACPI_DEVICE_SWNODE_PORT(port)	(2 * (port) + 1)
391 #define ACPI_DEVICE_SWNODE_EP(endpoint)	\
392 		(ACPI_DEVICE_SWNODE_PORT(endpoint) + 1)
393 
394 /**
395  * struct acpi_device_software_node_port - MIPI DisCo for Imaging CSI-2 port
396  * @port_name: Port name.
397  * @data_lanes: "data-lanes" property values.
398  * @lane_polarities: "lane-polarities" property values.
399  * @link_frequencies: "link_frequencies" property values.
400  * @port_nr: Port number.
401  * @crs_csi2_local: _CRS CSI2 record present (i.e. this is a transmitter one).
402  * @port_props: Port properties.
403  * @ep_props: Endpoint properties.
404  * @remote_ep: Reference to the remote endpoint.
405  */
406 struct acpi_device_software_node_port {
407 	char port_name[ACPI_DEVICE_SWNODE_PORT_NAME_LENGTH + 1];
408 	u32 data_lanes[ACPI_DEVICE_CSI2_DATA_LANES];
409 	u32 lane_polarities[ACPI_DEVICE_CSI2_DATA_LANES + 1 /* clock lane */];
410 	u64 link_frequencies[ACPI_DEVICE_CSI2_DATA_LANES];
411 	unsigned int port_nr;
412 	bool crs_csi2_local;
413 
414 	struct property_entry port_props[ACPI_DEVICE_SWNODE_PORT_NUM_ENTRIES];
415 	struct property_entry ep_props[ACPI_DEVICE_SWNODE_EP_NUM_ENTRIES];
416 
417 	struct software_node_ref_args remote_ep[1];
418 };
419 
420 /**
421  * struct acpi_device_software_nodes - Software nodes for an ACPI device
422  * @dev_props: Device properties.
423  * @nodes: Software nodes for root as well as ports and endpoints.
424  * @nodeptrs: Array of software node pointers, for (un)registering them.
425  * @ports: Information related to each port and endpoint within a port.
426  * @num_ports: The number of ports.
427  */
428 struct acpi_device_software_nodes {
429 	struct property_entry dev_props[ACPI_DEVICE_SWNODE_DEV_NUM_ENTRIES];
430 	struct software_node *nodes;
431 	const struct software_node **nodeptrs;
432 	struct acpi_device_software_node_port *ports;
433 	unsigned int num_ports;
434 };
435 
436 /* Device */
437 struct acpi_device {
438 	u32 pld_crc;
439 	int device_type;
440 	acpi_handle handle;		/* no handle for fixed hardware */
441 	struct fwnode_handle fwnode;
442 	struct list_head wakeup_list;
443 	struct list_head del_list;
444 	struct acpi_device_status status;
445 	struct acpi_device_flags flags;
446 	struct acpi_device_pnp pnp;
447 	struct acpi_device_power power;
448 	struct acpi_device_wakeup wakeup;
449 	struct acpi_device_perf performance;
450 	struct acpi_device_dir dir;
451 	struct acpi_device_data data;
452 	struct acpi_scan_handler *handler;
453 	struct acpi_hotplug_context *hp;
454 	struct acpi_device_software_nodes *swnodes;
455 	const struct acpi_gpio_mapping *driver_gpios;
456 	void *driver_data;
457 	struct device dev;
458 	unsigned int physical_node_count;
459 	unsigned int dep_unmet;
460 	struct list_head physical_node_list;
461 	struct mutex physical_node_lock;
462 	void (*remove)(struct acpi_device *);
463 };
464 
465 /* Non-device subnode */
466 struct acpi_data_node {
467 	struct list_head sibling;
468 	const char *name;
469 	acpi_handle handle;
470 	struct fwnode_handle fwnode;
471 	struct fwnode_handle *parent;
472 	struct acpi_device_data data;
473 	struct kobject kobj;
474 	struct completion kobj_done;
475 };
476 
477 extern const struct fwnode_operations acpi_device_fwnode_ops;
478 extern const struct fwnode_operations acpi_data_fwnode_ops;
479 extern const struct fwnode_operations acpi_static_fwnode_ops;
480 
481 bool is_acpi_device_node(const struct fwnode_handle *fwnode);
482 bool is_acpi_data_node(const struct fwnode_handle *fwnode);
483 
484 static inline bool is_acpi_node(const struct fwnode_handle *fwnode)
485 {
486 	return (is_acpi_device_node(fwnode) || is_acpi_data_node(fwnode));
487 }
488 
489 #define to_acpi_device_node(__fwnode)					\
490 	({								\
491 		typeof(__fwnode) __to_acpi_device_node_fwnode = __fwnode; \
492 									\
493 		is_acpi_device_node(__to_acpi_device_node_fwnode) ?	\
494 			container_of(__to_acpi_device_node_fwnode,	\
495 				     struct acpi_device, fwnode) :	\
496 			NULL;						\
497 	})
498 
499 #define to_acpi_data_node(__fwnode)					\
500 	({								\
501 		typeof(__fwnode) __to_acpi_data_node_fwnode = __fwnode;	\
502 									\
503 		is_acpi_data_node(__to_acpi_data_node_fwnode) ?		\
504 			container_of(__to_acpi_data_node_fwnode,	\
505 				     struct acpi_data_node, fwnode) :	\
506 			NULL;						\
507 	})
508 
509 static inline bool is_acpi_static_node(const struct fwnode_handle *fwnode)
510 {
511 	return !IS_ERR_OR_NULL(fwnode) &&
512 		fwnode->ops == &acpi_static_fwnode_ops;
513 }
514 
515 static inline bool acpi_data_node_match(const struct fwnode_handle *fwnode,
516 					const char *name)
517 {
518 	return is_acpi_data_node(fwnode) ?
519 		(!strcmp(to_acpi_data_node(fwnode)->name, name)) : false;
520 }
521 
522 static inline struct fwnode_handle *acpi_fwnode_handle(struct acpi_device *adev)
523 {
524 	return &adev->fwnode;
525 }
526 
527 static inline void *acpi_driver_data(struct acpi_device *d)
528 {
529 	return d->driver_data;
530 }
531 
532 #define to_acpi_device(d)	container_of(d, struct acpi_device, dev)
533 
534 static inline struct acpi_device *acpi_dev_parent(struct acpi_device *adev)
535 {
536 	if (adev->dev.parent)
537 		return to_acpi_device(adev->dev.parent);
538 
539 	return NULL;
540 }
541 
542 static inline void acpi_set_device_status(struct acpi_device *adev, u32 sta)
543 {
544 	*((u32 *)&adev->status) = sta;
545 }
546 
547 static inline void acpi_set_hp_context(struct acpi_device *adev,
548 				       struct acpi_hotplug_context *hp)
549 {
550 	hp->self = adev;
551 	adev->hp = hp;
552 }
553 
554 void acpi_initialize_hp_context(struct acpi_device *adev,
555 				struct acpi_hotplug_context *hp,
556 				acpi_hp_notify notify, acpi_hp_uevent uevent);
557 
558 /* acpi_device.dev.bus == &acpi_bus_type */
559 extern const struct bus_type acpi_bus_type;
560 
561 int acpi_bus_for_each_dev(int (*fn)(struct device *, void *), void *data);
562 int acpi_dev_for_each_child(struct acpi_device *adev,
563 			    int (*fn)(struct acpi_device *, void *), void *data);
564 int acpi_dev_for_each_child_reverse(struct acpi_device *adev,
565 				    int (*fn)(struct acpi_device *, void *),
566 				    void *data);
567 
568 /*
569  * Events
570  * ------
571  */
572 
573 #define MAX_ACPI_CLASS_NAME_LEN		20
574 typedef char acpi_device_class[MAX_ACPI_CLASS_NAME_LEN];
575 
576 struct acpi_bus_event {
577 	struct list_head node;
578 	acpi_device_class device_class;
579 	acpi_bus_id bus_id;
580 	u32 type;
581 	u32 data;
582 };
583 
584 #define ACPI_AC_CLASS	"ac_adapter"
585 
586 extern struct kobject *acpi_kobj;
587 extern int acpi_bus_generate_netlink_event(const char*, const char*, u8, int);
588 void acpi_bus_private_data_handler(acpi_handle, void *);
589 int acpi_bus_get_private_data(acpi_handle, void **);
590 int acpi_bus_attach_private_data(acpi_handle, void *);
591 void acpi_bus_detach_private_data(acpi_handle);
592 int acpi_dev_install_notify_handler(struct acpi_device *adev,
593 				    u32 handler_type,
594 				    acpi_notify_handler handler, void *context);
595 void acpi_dev_remove_notify_handler(struct acpi_device *adev,
596 				    u32 handler_type,
597 				    acpi_notify_handler handler);
598 int devm_acpi_install_notify_handler(struct device *dev, u32 handler_type,
599 				     acpi_notify_handler handler, void *context);
600 extern int acpi_notifier_call_chain(const char *device_class,
601 				    const char *bus_id, u32 type, u32 data);
602 extern int register_acpi_notifier(struct notifier_block *);
603 extern int unregister_acpi_notifier(struct notifier_block *);
604 
605 /*
606  * External Functions
607  */
608 
609 acpi_status acpi_bus_get_status_handle(acpi_handle handle,
610 				       unsigned long long *sta);
611 int acpi_bus_get_status(struct acpi_device *device);
612 
613 int acpi_bus_set_power(acpi_handle handle, int state);
614 const char *acpi_power_state_string(int state);
615 int acpi_device_set_power(struct acpi_device *device, int state);
616 int acpi_bus_init_power(struct acpi_device *device);
617 int acpi_device_fix_up_power(struct acpi_device *device);
618 void acpi_device_fix_up_power_extended(struct acpi_device *adev);
619 void acpi_device_fix_up_power_children(struct acpi_device *adev);
620 int acpi_bus_update_power(acpi_handle handle, int *state_p);
621 int acpi_device_update_power(struct acpi_device *device, int *state_p);
622 bool acpi_bus_power_manageable(acpi_handle handle);
623 void acpi_dev_power_up_children_with_adr(struct acpi_device *adev);
624 u8 acpi_dev_power_state_for_wake(struct acpi_device *adev);
625 int acpi_device_power_add_dependent(struct acpi_device *adev,
626 				    struct device *dev);
627 void acpi_device_power_remove_dependent(struct acpi_device *adev,
628 					struct device *dev);
629 
630 #ifdef CONFIG_PM
631 bool acpi_bus_can_wakeup(acpi_handle handle);
632 #else
633 static inline bool acpi_bus_can_wakeup(acpi_handle handle) { return false; }
634 #endif
635 
636 void acpi_scan_lock_acquire(void);
637 void acpi_scan_lock_release(void);
638 void acpi_lock_hp_context(void);
639 void acpi_unlock_hp_context(void);
640 int acpi_scan_add_handler(struct acpi_scan_handler *handler);
641 int acpi_bus_scan(acpi_handle handle);
642 void acpi_bus_trim(struct acpi_device *start);
643 acpi_status acpi_bus_get_ejd(acpi_handle handle, acpi_handle * ejd);
644 struct device *acpi_bus_get_primary_device(struct acpi_device *adev);
645 int acpi_match_device_ids(struct acpi_device *device,
646 			  const struct acpi_device_id *ids);
647 void acpi_set_modalias(struct acpi_device *adev, const char *default_id,
648 		       char *modalias, size_t len);
649 
650 static inline bool acpi_device_enumerated(struct acpi_device *adev)
651 {
652 	return adev && adev->flags.initialized && adev->flags.visited;
653 }
654 
655 /*
656  * Bind physical devices with ACPI devices
657  */
658 struct acpi_bus_type {
659 	struct list_head list;
660 	const char *name;
661 	bool (*match)(struct device *dev);
662 	struct acpi_device * (*find_companion)(struct device *);
663 	void (*setup)(struct device *);
664 };
665 int register_acpi_bus_type(struct acpi_bus_type *);
666 int unregister_acpi_bus_type(struct acpi_bus_type *);
667 int acpi_bind_one(struct device *dev, struct acpi_device *adev);
668 int acpi_unbind_one(struct device *dev);
669 
670 enum acpi_bridge_type {
671 	ACPI_BRIDGE_TYPE_PCIE = 1,
672 	ACPI_BRIDGE_TYPE_CXL,
673 };
674 
675 struct acpi_pci_root {
676 	struct acpi_device * device;
677 	struct pci_bus *bus;
678 	u16 segment;
679 	int bridge_type;
680 	struct resource secondary;	/* downstream bus range */
681 
682 	u32 osc_support_set;		/* _OSC state of support bits */
683 	u32 osc_control_set;		/* _OSC state of control bits */
684 	u32 osc_ext_support_set;	/* _OSC state of extended support bits */
685 	u32 osc_ext_control_set;	/* _OSC state of extended control bits */
686 	phys_addr_t mcfg_addr;
687 };
688 
689 /* helper */
690 
691 struct iommu_ops;
692 
693 bool acpi_dma_supported(const struct acpi_device *adev);
694 enum dev_dma_attr acpi_get_dma_attr(struct acpi_device *adev);
695 int acpi_iommu_fwspec_init(struct device *dev, u32 id,
696 			   struct fwnode_handle *fwnode);
697 int acpi_dma_get_range(struct device *dev, const struct bus_dma_region **map);
698 int acpi_dma_configure_id(struct device *dev, enum dev_dma_attr attr,
699 			   const u32 *input_id);
700 static inline int acpi_dma_configure(struct device *dev,
701 				     enum dev_dma_attr attr)
702 {
703 	return acpi_dma_configure_id(dev, attr, NULL);
704 }
705 struct acpi_device *acpi_find_child_device(struct acpi_device *parent,
706 					   u64 address, bool check_children);
707 struct acpi_device *acpi_find_child_by_adr(struct acpi_device *adev,
708 					   acpi_bus_address adr);
709 int acpi_is_root_bridge(acpi_handle);
710 struct acpi_pci_root *acpi_pci_find_root(acpi_handle handle);
711 
712 int acpi_enable_wakeup_device_power(struct acpi_device *dev, int state);
713 int acpi_disable_wakeup_device_power(struct acpi_device *dev);
714 
715 #ifdef CONFIG_X86
716 bool acpi_device_override_status(struct acpi_device *adev, unsigned long long *status);
717 bool acpi_quirk_skip_acpi_ac_and_battery(void);
718 int acpi_quirk_skip_serdev_enumeration(struct device *controller_parent, bool *skip);
719 #else
720 static inline bool acpi_device_override_status(struct acpi_device *adev,
721 					       unsigned long long *status)
722 {
723 	return false;
724 }
725 static inline bool acpi_quirk_skip_acpi_ac_and_battery(void)
726 {
727 	return false;
728 }
729 static inline int
730 acpi_quirk_skip_serdev_enumeration(struct device *controller_parent, bool *skip)
731 {
732 	*skip = false;
733 	return 0;
734 }
735 #endif
736 
737 #if IS_ENABLED(CONFIG_X86_ANDROID_TABLETS)
738 bool acpi_quirk_skip_i2c_client_enumeration(struct acpi_device *adev);
739 bool acpi_quirk_skip_gpio_event_handlers(void);
740 #else
741 static inline bool acpi_quirk_skip_i2c_client_enumeration(struct acpi_device *adev)
742 {
743 	return false;
744 }
745 static inline bool acpi_quirk_skip_gpio_event_handlers(void)
746 {
747 	return false;
748 }
749 #endif
750 
751 #ifdef CONFIG_PM
752 void acpi_pm_wakeup_event(struct device *dev);
753 acpi_status acpi_add_pm_notifier(struct acpi_device *adev, struct device *dev,
754 			void (*func)(struct acpi_device_wakeup_context *context));
755 acpi_status acpi_remove_pm_notifier(struct acpi_device *adev);
756 bool acpi_pm_device_can_wakeup(struct device *dev);
757 int acpi_pm_device_sleep_state(struct device *, int *, int);
758 int acpi_pm_set_device_wakeup(struct device *dev, bool enable);
759 #else
760 static inline void acpi_pm_wakeup_event(struct device *dev)
761 {
762 }
763 static inline acpi_status acpi_add_pm_notifier(struct acpi_device *adev,
764 					       struct device *dev,
765 					       void (*func)(struct acpi_device_wakeup_context *context))
766 {
767 	return AE_SUPPORT;
768 }
769 static inline acpi_status acpi_remove_pm_notifier(struct acpi_device *adev)
770 {
771 	return AE_SUPPORT;
772 }
773 static inline bool acpi_pm_device_can_wakeup(struct device *dev)
774 {
775 	return false;
776 }
777 static inline int acpi_pm_device_sleep_state(struct device *d, int *p, int m)
778 {
779 	if (p)
780 		*p = ACPI_STATE_D0;
781 
782 	return (m >= ACPI_STATE_D0 && m <= ACPI_STATE_D3_COLD) ?
783 		m : ACPI_STATE_D0;
784 }
785 static inline int acpi_pm_set_device_wakeup(struct device *dev, bool enable)
786 {
787 	return -ENODEV;
788 }
789 #endif
790 
791 #ifdef CONFIG_ACPI_SYSTEM_POWER_STATES_SUPPORT
792 bool acpi_sleep_state_supported(u8 sleep_state);
793 #else
794 static inline bool acpi_sleep_state_supported(u8 sleep_state) { return false; }
795 #endif
796 
797 #ifdef CONFIG_ACPI_SLEEP
798 u32 acpi_target_system_state(void);
799 #else
800 static inline u32 acpi_target_system_state(void) { return ACPI_STATE_S0; }
801 #endif
802 
803 static inline bool acpi_device_power_manageable(struct acpi_device *adev)
804 {
805 	return adev->flags.power_manageable;
806 }
807 
808 static inline bool acpi_device_can_wakeup(struct acpi_device *adev)
809 {
810 	return adev->wakeup.flags.valid;
811 }
812 
813 static inline bool acpi_device_can_poweroff(struct acpi_device *adev)
814 {
815 	return adev->power.states[ACPI_STATE_D3_COLD].flags.valid ||
816 		((acpi_gbl_FADT.header.revision < 6) &&
817 		adev->power.states[ACPI_STATE_D3_HOT].flags.explicit_set);
818 }
819 
820 int acpi_dev_uid_to_integer(struct acpi_device *adev, u64 *integer);
821 
822 static inline bool acpi_dev_hid_match(struct acpi_device *adev, const char *hid2)
823 {
824 	const char *hid1 = acpi_device_hid(adev);
825 
826 	return hid1 && hid2 && !strcmp(hid1, hid2);
827 }
828 
829 static inline bool acpi_str_uid_match(struct acpi_device *adev, const char *uid2)
830 {
831 	const char *uid1 = acpi_device_uid(adev);
832 
833 	return uid1 && uid2 && !strcmp(uid1, uid2);
834 }
835 
836 static inline bool acpi_int_uid_match(struct acpi_device *adev, u64 uid2)
837 {
838 	u64 uid1;
839 
840 	return !acpi_dev_uid_to_integer(adev, &uid1) && uid1 == uid2;
841 }
842 
843 #define TYPE_ENTRY(type, x)			\
844 	const type: x,				\
845 	type: x
846 
847 #define ACPI_STR_TYPES(match)			\
848 	TYPE_ENTRY(unsigned char *, match),	\
849 	TYPE_ENTRY(signed char *, match),		\
850 	TYPE_ENTRY(char *, match),		\
851 	TYPE_ENTRY(void *, match)
852 
853 /**
854  * acpi_dev_uid_match - Match device by supplied UID
855  * @adev: ACPI device to match.
856  * @uid2: Unique ID of the device.
857  *
858  * Matches UID in @adev with given @uid2.
859  *
860  * Returns: %true if matches, %false otherwise.
861  */
862 #define acpi_dev_uid_match(adev, uid2)					\
863 	_Generic(uid2,							\
864 		 /* Treat @uid2 as a string for acpi string types */	\
865 		 ACPI_STR_TYPES(acpi_str_uid_match),			\
866 		 /* Treat as an integer otherwise */			\
867 		 default: acpi_int_uid_match)(adev, uid2)
868 
869 /**
870  * acpi_dev_hid_uid_match - Match device by supplied HID and UID
871  * @adev: ACPI device to match.
872  * @hid2: Hardware ID of the device.
873  * @uid2: Unique ID of the device, pass NULL to not check _UID.
874  *
875  * Matches HID and UID in @adev with given @hid2 and @uid2. Absence of @uid2
876  * will be treated as a match. If user wants to validate @uid2, it should be
877  * done before calling this function.
878  *
879  * Returns: %true if matches or @uid2 is NULL, %false otherwise.
880  */
881 #define acpi_dev_hid_uid_match(adev, hid2, uid2)			\
882 	(acpi_dev_hid_match(adev, hid2) &&				\
883 		/* Distinguish integer 0 from NULL @uid2 */		\
884 		(_Generic(uid2,	ACPI_STR_TYPES(!(uid2)), default: 0) ||	\
885 		acpi_dev_uid_match(adev, uid2)))
886 
887 void acpi_dev_clear_dependencies(struct acpi_device *supplier);
888 bool acpi_dev_ready_for_enumeration(const struct acpi_device *device);
889 struct acpi_device *acpi_dev_get_next_consumer_dev(struct acpi_device *supplier,
890 						   struct acpi_device *start);
891 
892 /**
893  * for_each_acpi_consumer_dev - iterate over the consumer ACPI devices for a
894  *				given supplier
895  * @supplier: Pointer to the supplier's ACPI device
896  * @consumer: Pointer to &struct acpi_device to hold the consumer, initially NULL
897  */
898 #define for_each_acpi_consumer_dev(supplier, consumer)			\
899 	for (consumer = acpi_dev_get_next_consumer_dev(supplier, NULL);	\
900 	     consumer;							\
901 	     consumer = acpi_dev_get_next_consumer_dev(supplier, consumer))
902 
903 struct acpi_device *
904 acpi_dev_get_next_match_dev(struct acpi_device *adev, const char *hid, const char *uid, s64 hrv);
905 struct acpi_device *
906 acpi_dev_get_first_match_dev(const char *hid, const char *uid, s64 hrv);
907 
908 /**
909  * for_each_acpi_dev_match - iterate over ACPI devices that matching the criteria
910  * @adev: pointer to the matching ACPI device, NULL at the end of the loop
911  * @hid: Hardware ID of the device.
912  * @uid: Unique ID of the device, pass NULL to not check _UID
913  * @hrv: Hardware Revision of the device, pass -1 to not check _HRV
914  *
915  * The caller is responsible for invoking acpi_dev_put() on the returned device.
916  */
917 #define for_each_acpi_dev_match(adev, hid, uid, hrv)			\
918 	for (adev = acpi_dev_get_first_match_dev(hid, uid, hrv);	\
919 	     adev;							\
920 	     adev = acpi_dev_get_next_match_dev(adev, hid, uid, hrv))
921 
922 static inline struct acpi_device *acpi_dev_get(struct acpi_device *adev)
923 {
924 	return adev ? to_acpi_device(get_device(&adev->dev)) : NULL;
925 }
926 
927 static inline void acpi_dev_put(struct acpi_device *adev)
928 {
929 	if (adev)
930 		put_device(&adev->dev);
931 }
932 
933 struct acpi_device *acpi_fetch_acpi_dev(acpi_handle handle);
934 struct acpi_device *acpi_get_acpi_dev(acpi_handle handle);
935 
936 static inline void acpi_put_acpi_dev(struct acpi_device *adev)
937 {
938 	acpi_dev_put(adev);
939 }
940 
941 int acpi_wait_for_acpi_ipmi(void);
942 
943 int acpi_scan_add_dep(acpi_handle handle, struct acpi_handle_list *dep_devices);
944 u32 arch_acpi_add_auto_dep(acpi_handle handle);
945 #else	/* CONFIG_ACPI */
946 
947 static inline struct device *acpi_bus_get_primary_device(struct acpi_device *adev)
948 {
949 	return NULL;
950 }
951 
952 static inline int register_acpi_bus_type(void *bus) { return 0; }
953 static inline int unregister_acpi_bus_type(void *bus) { return 0; }
954 
955 static inline int acpi_wait_for_acpi_ipmi(void) { return 0; }
956 
957 static inline const char *acpi_device_hid(struct acpi_device *device)
958 {
959 	return "";
960 }
961 
962 static inline bool
963 acpi_get_physical_device_location(acpi_handle handle, struct acpi_pld_info **pld)
964 {
965 	return false;
966 }
967 
968 #define for_each_acpi_consumer_dev(supplier, consumer)			\
969 	for (consumer = NULL; false && (supplier);)
970 
971 #define for_each_acpi_dev_match(adev, hid, uid, hrv)			\
972 	for (adev = NULL; false && (hid) && (uid) && (hrv); )
973 
974 #endif				/* CONFIG_ACPI */
975 
976 #endif /*__ACPI_BUS_H__*/
977