xref: /haiku/headers/os/drivers/ACPI.h (revision 5c6260dc232fcb2d4d5d1103c1623dba9663b753)
1 /*
2  * Copyright 2005-2008, Haiku Inc. All Rights Reserved.
3  * Distributed under the terms of the MIT License
4  */
5 #ifndef _ACPI_H
6 #define _ACPI_H
7 
8 
9 #include <device_manager.h>
10 #include <KernelExport.h>
11 
12 
13 typedef struct acpi_module_info acpi_module_info;
14 typedef struct acpi_object_type acpi_object_type;
15 
16 #define B_ACPI_MODULE_NAME "bus_managers/acpi/v1"
17 
18 typedef addr_t acpi_physical_address;
19 typedef addr_t acpi_io_address;
20 typedef size_t acpi_size;
21 
22 /* Actually a ptr to a NS Node */
23 typedef void *				acpi_handle;
24 
25 #ifndef __ACTYPES_H__
26 
27 /* Notify types */
28 
29 #define ACPI_SYSTEM_NOTIFY				0x1
30 #define ACPI_DEVICE_NOTIFY				0x2
31 #define ACPI_ALL_NOTIFY					(ACPI_SYSTEM_NOTIFY | ACPI_DEVICE_NOTIFY)
32 #define ACPI_MAX_NOTIFY_HANDLER_TYPE	0x3
33 
34 #define ACPI_MAX_SYS_NOTIFY				0x7f
35 
36 /* Address Space (Operation Region) Types */
37 
38 enum {
39 	ACPI_ADR_SPACE_SYSTEM_MEMORY	= 0,
40 	ACPI_ADR_SPACE_SYSTEM_IO		= 1,
41 	ACPI_ADR_SPACE_PCI_CONFIG		= 2,
42 	ACPI_ADR_SPACE_EC				= 3,
43 	ACPI_ADR_SPACE_SMBUS			= 4,
44 	ACPI_ADR_SPACE_CMOS 			= 5,
45 	ACPI_ADR_SPACE_PCI_BAR_TARGET	= 6,
46 	ACPI_ADR_SPACE_IPMI				= 7,
47 	ACPI_ADR_SPACE_DATA_TABLE		= 8,
48 	ACPI_ADR_SPACE_FIXED_HARDWARE	= 127
49 };
50 
51 /* ACPI fixed event types */
52 
53 enum {
54 	ACPI_EVENT_PMTIMER = 0,
55 	ACPI_EVENT_GLOBAL,
56 	ACPI_EVENT_POWER_BUTTON,
57 	ACPI_EVENT_SLEEP_BUTTON,
58 	ACPI_EVENT_RTC
59 };
60 
61 /* ACPI Object Types */
62 
63 enum {
64 	ACPI_TYPE_ANY = 0,
65 	ACPI_TYPE_INTEGER,
66 	ACPI_TYPE_STRING,
67 	ACPI_TYPE_BUFFER,
68 	ACPI_TYPE_PACKAGE,
69 	ACPI_TYPE_FIELD_UNIT,
70 	ACPI_TYPE_DEVICE,
71 	ACPI_TYPE_EVENT,
72 	ACPI_TYPE_METHOD,
73 	ACPI_TYPE_MUTEX,
74 	ACPI_TYPE_REGION,
75 	ACPI_TYPE_POWER,
76 	ACPI_TYPE_PROCESSOR,
77 	ACPI_TYPE_THERMAL,
78 	ACPI_TYPE_BUFFER_FIELD,
79 	ACPI_TYPE_DDB_HANDLE,
80 	ACPI_TYPE_DEBUG_OBJECT,
81 	ACPI_TYPE_LOCAL_REFERENCE = 0x14
82 };
83 
84 /* ACPI control method arg type */
85 
86 struct acpi_object_type {
87 	uint32 object_type;
88 	union {
89 		uint64 integer;
90 		struct {
91 			uint32 len;
92 			char *string; /* You have to allocate string space yourself */
93 		} string;
94 		struct {
95 			size_t length;
96 			void *buffer;
97 		} buffer;
98 		struct {
99 			uint32 count;
100 			acpi_object_type *objects;
101 		} package;
102 		struct {
103 			uint32 actual_type;
104 			acpi_handle handle;
105 		} reference;
106 		struct {
107 			uint32 cpu_id;
108 			int pblk_address;
109 			size_t pblk_length;
110 		} processor;
111 		struct {
112 			uint32 min_power_state;
113 			uint32 resource_order;
114 		} power_resource;
115 	} data;
116 };
117 
118 
119 /*
120  * List of objects, used as a parameter list for control method evaluation
121  */
122 typedef struct acpi_objects {
123 	uint32				count;
124 	acpi_object_type	*pointer;
125 } acpi_objects;
126 
127 
128 typedef struct acpi_data {
129 	acpi_size			length;		/* Length in bytes of the buffer */
130 	void				*pointer;	/* pointer to buffer */
131 } acpi_data;
132 
133 
134 enum {
135 	ACPI_ALLOCATE_BUFFER = -1,
136 };
137 
138 
139 /*
140  * acpi_status should return ACPI specific error codes, not BeOS ones.
141  */
142 typedef uint32 acpi_status;
143 
144 #endif	// __ACTYPES_H__
145 
146 
147 typedef uint32 (*acpi_event_handler)(void *Context);
148 
149 typedef acpi_status (*acpi_adr_space_handler)(uint32 function,
150 	acpi_physical_address address, uint32 bitWidth, int *value,
151 	void *handlerContext, void *regionContext);
152 
153 typedef acpi_status (*acpi_adr_space_setup)(acpi_handle regionHandle,
154 	uint32 function, void *handlerContext, void **regionContext);
155 
156 typedef void (*acpi_notify_handler)(acpi_handle device, uint32 value,
157 	void *context);
158 
159 
160 struct acpi_module_info {
161 	module_info info;
162 
163 	status_t	(*get_handle)(acpi_handle parent, const char *pathname,
164 					acpi_handle *retHandle);
165 
166 	/* Global Lock */
167 
168 	status_t	(*acquire_global_lock)(uint16 timeout, uint32 *handle);
169 	status_t	(*release_global_lock)(uint32 handle);
170 
171 	/* Notify Handler */
172 
173 	status_t	(*install_notify_handler)(acpi_handle device,
174 					uint32 handlerType, acpi_notify_handler handler,
175 					void *context);
176 	status_t	(*remove_notify_handler)(acpi_handle device,
177 					uint32 handlerType, acpi_notify_handler handler);
178 
179 	/* GPE Handler */
180 
181 	status_t	(*enable_gpe)(acpi_handle handle, uint32 gpeNumber);
182 	status_t	(*set_gpe)(acpi_handle handle, uint32 gpeNumber,
183 					uint8 action);
184 	status_t	(*install_gpe_handler)(acpi_handle handle, uint32 gpeNumber,
185 					uint32 type, acpi_event_handler handler, void *data);
186 	status_t	(*remove_gpe_handler)(acpi_handle handle, uint32 gpeNumber,
187 					acpi_event_handler address);
188 
189 	/* Address Space Handler */
190 
191 	status_t	(*install_address_space_handler)(acpi_handle handle,
192 					uint32 spaceId,
193 					acpi_adr_space_handler handler,
194 					acpi_adr_space_setup setup,	void *data);
195 	status_t	(*remove_address_space_handler)(acpi_handle handle,
196 					uint32 spaceId,
197 					acpi_adr_space_handler handler);
198 
199 	/* Fixed Event Management */
200 
201 	void		(*enable_fixed_event)(uint32 event);
202 	void		(*disable_fixed_event)(uint32 event);
203 
204 	uint32		(*fixed_event_status) (uint32 event);
205 					/* Returns 1 if event set, 0 otherwise */
206 	void		(*reset_fixed_event) (uint32 event);
207 
208 	status_t	(*install_fixed_event_handler)(uint32 event,
209 					interrupt_handler *handler, void *data);
210 	status_t	(*remove_fixed_event_handler)(uint32 event,
211 					interrupt_handler *handler);
212 
213 	/* Namespace Access */
214 
215 	status_t	(*get_next_entry)(uint32 objectType, const char *base,
216 					char *result, size_t length, void **_counter);
217 	status_t	(*get_device)(const char *hid, uint32 index, char *result,
218 					size_t resultLength);
219 
220 	status_t	(*get_device_hid)(const char *path, char *hid,
221 					size_t hidLength);
222 	uint32		(*get_object_type)(const char *path);
223 	status_t	(*get_object)(const char *path,
224 					acpi_object_type **_returnValue);
225 	status_t	(*get_object_typed)(const char *path,
226 					acpi_object_type **_returnValue, uint32 objectType);
227 	status_t	(*ns_handle_to_pathname)(acpi_handle targetHandle,
228 					acpi_data *buffer);
229 
230 	/* Control method execution and data acquisition */
231 
232 	status_t	(*evaluate_object)(const char* object,
233 					acpi_object_type *returnValue, size_t bufferLength);
234 	status_t	(*evaluate_method)(acpi_handle handle, const char *method,
235 					acpi_objects *args, acpi_data *returnValue);
236 
237 	/* Resource Management */
238 
239 	status_t	(*get_irq_routing_table)(acpi_handle busDeviceHandle,
240 					acpi_data *retBuffer);
241 	status_t	(*get_current_resources)(acpi_handle busDeviceHandle,
242 					acpi_data *retBuffer);
243 	status_t	(*get_possible_resources)(acpi_handle busDeviceHandle,
244 					acpi_data *retBuffer);
245 	status_t	(*set_current_resources)(acpi_handle busDeviceHandle,
246 					acpi_data *buffer);
247 
248 	/* Power state setting */
249 
250 	status_t	(*prepare_sleep_state)(uint8 state, void (*wakeFunc)(void),
251 					size_t size);
252 	status_t	(*enter_sleep_state)(uint8 state);
253 	status_t	(*reboot)(void);
254 
255 	/* Table Access */
256 	status_t	(*get_table)(const char *signature, uint32 instance,
257 					void **tableHeader);
258 };
259 
260 
261 /* Sleep states */
262 
263 enum {
264 	ACPI_POWER_STATE_ON = 0,
265 	ACPI_POWER_STATE_SLEEP_S1,
266 	ACPI_POWER_STATE_SLEEP_S2,
267 	ACPI_POWER_STATE_SLEEP_S3,
268 	ACPI_POWER_STATE_HIBERNATE,
269 	ACPI_POWER_STATE_OFF
270 };
271 
272 
273 #define ACPI_DEVICE_HID_ITEM	"acpi/hid"
274 #define ACPI_DEVICE_PATH_ITEM	"acpi/path"
275 #define ACPI_DEVICE_TYPE_ITEM	"acpi/type"
276 
277 
278 typedef struct acpi_device_cookie *acpi_device;
279 
280 //	Interface to one ACPI device.
281 typedef struct acpi_device_module_info {
282 	driver_module_info info;
283 
284 	/* Notify Handler */
285 
286 	status_t	(*install_notify_handler)(acpi_device device,
287 					uint32 handlerType, acpi_notify_handler handler,
288 					void *context);
289 	status_t	(*remove_notify_handler)(acpi_device device,
290 					uint32 handlerType, acpi_notify_handler handler);
291 
292 	/* Address Space Handler */
293 	status_t	(*install_address_space_handler)(acpi_device device,
294 					uint32 spaceId,
295 					acpi_adr_space_handler handler,
296 					acpi_adr_space_setup setup,	void *data);
297 	status_t	(*remove_address_space_handler)(acpi_device device,
298 					uint32 spaceId,
299 					acpi_adr_space_handler handler);
300 
301 	/* Namespace Access */
302 	uint32		(*get_object_type)(acpi_device device);
303 	status_t	(*get_object)(acpi_device device, const char *path,
304 					acpi_object_type **_returnValue);
305 
306 	/* Control method execution and data acquisition */
307 	status_t	(*evaluate_method)(acpi_device device, const char *method,
308 					acpi_objects *args, acpi_data *returnValue);
309 } acpi_device_module_info;
310 
311 
312 #endif	/* _ACPI_H */
313