1 /******************************************************************************
2  *
3  * Module Name: evregion - ACPI address_space (op_region) handler dispatch
4  *
5  *****************************************************************************/
6 
7 /*
8  * Copyright (C) 2000 - 2011, Intel Corp.
9  * All rights reserved.
10  *
11  * Redistribution and use in source and binary forms, with or without
12  * modification, are permitted provided that the following conditions
13  * are met:
14  * 1. Redistributions of source code must retain the above copyright
15  *    notice, this list of conditions, and the following disclaimer,
16  *    without modification.
17  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
18  *    substantially similar to the "NO WARRANTY" disclaimer below
19  *    ("Disclaimer") and any redistribution must be conditioned upon
20  *    including a substantially similar Disclaimer requirement for further
21  *    binary redistribution.
22  * 3. Neither the names of the above-listed copyright holders nor the names
23  *    of any contributors may be used to endorse or promote products derived
24  *    from this software without specific prior written permission.
25  *
26  * Alternatively, this software may be distributed under the terms of the
27  * GNU General Public License ("GPL") version 2 as published by the Free
28  * Software Foundation.
29  *
30  * NO WARRANTY
31  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
32  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
33  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
34  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
35  * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
37  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
38  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
39  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
40  * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
41  * POSSIBILITY OF SUCH DAMAGES.
42  */
43 
44 #include <acpi/acpi.h>
45 #include "accommon.h"
46 #include "acevents.h"
47 #include "acnamesp.h"
48 #include "acinterp.h"
49 
50 #define _COMPONENT          ACPI_EVENTS
51 ACPI_MODULE_NAME("evregion")
52 
53 /* Local prototypes */
54 static u8
55 acpi_ev_has_default_handler(struct acpi_namespace_node *node,
56 			    acpi_adr_space_type space_id);
57 
58 static acpi_status
59 acpi_ev_reg_run(acpi_handle obj_handle,
60 		u32 level, void *context, void **return_value);
61 
62 static acpi_status
63 acpi_ev_install_handler(acpi_handle obj_handle,
64 			u32 level, void *context, void **return_value);
65 
66 /* These are the address spaces that will get default handlers */
67 
68 #define ACPI_NUM_DEFAULT_SPACES     4
69 
70 static u8 acpi_gbl_default_address_spaces[ACPI_NUM_DEFAULT_SPACES] = {
71 	ACPI_ADR_SPACE_SYSTEM_MEMORY,
72 	ACPI_ADR_SPACE_SYSTEM_IO,
73 	ACPI_ADR_SPACE_PCI_CONFIG,
74 	ACPI_ADR_SPACE_DATA_TABLE
75 };
76 
77 /*******************************************************************************
78  *
79  * FUNCTION:    acpi_ev_install_region_handlers
80  *
81  * PARAMETERS:  None
82  *
83  * RETURN:      Status
84  *
85  * DESCRIPTION: Installs the core subsystem default address space handlers.
86  *
87  ******************************************************************************/
88 
acpi_ev_install_region_handlers(void)89 acpi_status acpi_ev_install_region_handlers(void)
90 {
91 	acpi_status status;
92 	u32 i;
93 
94 	ACPI_FUNCTION_TRACE(ev_install_region_handlers);
95 
96 	status = acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE);
97 	if (ACPI_FAILURE(status)) {
98 		return_ACPI_STATUS(status);
99 	}
100 
101 	/*
102 	 * All address spaces (PCI Config, EC, SMBus) are scope dependent and
103 	 * registration must occur for a specific device.
104 	 *
105 	 * In the case of the system memory and IO address spaces there is
106 	 * currently no device associated with the address space. For these we
107 	 * use the root.
108 	 *
109 	 * We install the default PCI config space handler at the root so that
110 	 * this space is immediately available even though the we have not
111 	 * enumerated all the PCI Root Buses yet. This is to conform to the ACPI
112 	 * specification which states that the PCI config space must be always
113 	 * available -- even though we are nowhere near ready to find the PCI root
114 	 * buses at this point.
115 	 *
116 	 * NOTE: We ignore AE_ALREADY_EXISTS because this means that a handler
117 	 * has already been installed (via acpi_install_address_space_handler).
118 	 * Similar for AE_SAME_HANDLER.
119 	 */
120 	for (i = 0; i < ACPI_NUM_DEFAULT_SPACES; i++) {
121 		status = acpi_ev_install_space_handler(acpi_gbl_root_node,
122 						       acpi_gbl_default_address_spaces
123 						       [i],
124 						       ACPI_DEFAULT_HANDLER,
125 						       NULL, NULL);
126 		switch (status) {
127 		case AE_OK:
128 		case AE_SAME_HANDLER:
129 		case AE_ALREADY_EXISTS:
130 
131 			/* These exceptions are all OK */
132 
133 			status = AE_OK;
134 			break;
135 
136 		default:
137 
138 			goto unlock_and_exit;
139 		}
140 	}
141 
142       unlock_and_exit:
143 	(void)acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
144 	return_ACPI_STATUS(status);
145 }
146 
147 /*******************************************************************************
148  *
149  * FUNCTION:    acpi_ev_has_default_handler
150  *
151  * PARAMETERS:  Node                - Namespace node for the device
152  *              space_id            - The address space ID
153  *
154  * RETURN:      TRUE if default handler is installed, FALSE otherwise
155  *
156  * DESCRIPTION: Check if the default handler is installed for the requested
157  *              space ID.
158  *
159  ******************************************************************************/
160 
161 static u8
acpi_ev_has_default_handler(struct acpi_namespace_node * node,acpi_adr_space_type space_id)162 acpi_ev_has_default_handler(struct acpi_namespace_node *node,
163 			    acpi_adr_space_type space_id)
164 {
165 	union acpi_operand_object *obj_desc;
166 	union acpi_operand_object *handler_obj;
167 
168 	/* Must have an existing internal object */
169 
170 	obj_desc = acpi_ns_get_attached_object(node);
171 	if (obj_desc) {
172 		handler_obj = obj_desc->device.handler;
173 
174 		/* Walk the linked list of handlers for this object */
175 
176 		while (handler_obj) {
177 			if (handler_obj->address_space.space_id == space_id) {
178 				if (handler_obj->address_space.handler_flags &
179 				    ACPI_ADDR_HANDLER_DEFAULT_INSTALLED) {
180 					return (TRUE);
181 				}
182 			}
183 
184 			handler_obj = handler_obj->address_space.next;
185 		}
186 	}
187 
188 	return (FALSE);
189 }
190 
191 /*******************************************************************************
192  *
193  * FUNCTION:    acpi_ev_initialize_op_regions
194  *
195  * PARAMETERS:  None
196  *
197  * RETURN:      Status
198  *
199  * DESCRIPTION: Execute _REG methods for all Operation Regions that have
200  *              an installed default region handler.
201  *
202  ******************************************************************************/
203 
acpi_ev_initialize_op_regions(void)204 acpi_status acpi_ev_initialize_op_regions(void)
205 {
206 	acpi_status status;
207 	u32 i;
208 
209 	ACPI_FUNCTION_TRACE(ev_initialize_op_regions);
210 
211 	status = acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE);
212 	if (ACPI_FAILURE(status)) {
213 		return_ACPI_STATUS(status);
214 	}
215 
216 	/* Run the _REG methods for op_regions in each default address space */
217 
218 	for (i = 0; i < ACPI_NUM_DEFAULT_SPACES; i++) {
219 		/*
220 		 * Make sure the installed handler is the DEFAULT handler. If not the
221 		 * default, the _REG methods will have already been run (when the
222 		 * handler was installed)
223 		 */
224 		if (acpi_ev_has_default_handler(acpi_gbl_root_node,
225 						acpi_gbl_default_address_spaces
226 						[i])) {
227 			status =
228 			    acpi_ev_execute_reg_methods(acpi_gbl_root_node,
229 							acpi_gbl_default_address_spaces
230 							[i]);
231 		}
232 	}
233 
234 	acpi_gbl_reg_methods_executed = TRUE;
235 
236 	(void)acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
237 	return_ACPI_STATUS(status);
238 }
239 
240 /*******************************************************************************
241  *
242  * FUNCTION:    acpi_ev_execute_reg_method
243  *
244  * PARAMETERS:  region_obj          - Region object
245  *              Function            - Passed to _REG: On (1) or Off (0)
246  *
247  * RETURN:      Status
248  *
249  * DESCRIPTION: Execute _REG method for a region
250  *
251  ******************************************************************************/
252 
253 acpi_status
acpi_ev_execute_reg_method(union acpi_operand_object * region_obj,u32 function)254 acpi_ev_execute_reg_method(union acpi_operand_object *region_obj, u32 function)
255 {
256 	struct acpi_evaluate_info *info;
257 	union acpi_operand_object *args[3];
258 	union acpi_operand_object *region_obj2;
259 	acpi_status status;
260 
261 	ACPI_FUNCTION_TRACE(ev_execute_reg_method);
262 
263 	region_obj2 = acpi_ns_get_secondary_object(region_obj);
264 	if (!region_obj2) {
265 		return_ACPI_STATUS(AE_NOT_EXIST);
266 	}
267 
268 	if (region_obj2->extra.method_REG == NULL) {
269 		return_ACPI_STATUS(AE_OK);
270 	}
271 
272 	/* Allocate and initialize the evaluation information block */
273 
274 	info = ACPI_ALLOCATE_ZEROED(sizeof(struct acpi_evaluate_info));
275 	if (!info) {
276 		return_ACPI_STATUS(AE_NO_MEMORY);
277 	}
278 
279 	info->prefix_node = region_obj2->extra.method_REG;
280 	info->pathname = NULL;
281 	info->parameters = args;
282 	info->flags = ACPI_IGNORE_RETURN_VALUE;
283 
284 	/*
285 	 * The _REG method has two arguments:
286 	 *
287 	 * Arg0 - Integer:
288 	 *  Operation region space ID Same value as region_obj->Region.space_id
289 	 *
290 	 * Arg1 - Integer:
291 	 *  connection status 1 for connecting the handler, 0 for disconnecting
292 	 *  the handler (Passed as a parameter)
293 	 */
294 	args[0] =
295 	    acpi_ut_create_integer_object((u64) region_obj->region.space_id);
296 	if (!args[0]) {
297 		status = AE_NO_MEMORY;
298 		goto cleanup1;
299 	}
300 
301 	args[1] = acpi_ut_create_integer_object((u64) function);
302 	if (!args[1]) {
303 		status = AE_NO_MEMORY;
304 		goto cleanup2;
305 	}
306 
307 	args[2] = NULL;		/* Terminate list */
308 
309 	/* Execute the method, no return value */
310 
311 	ACPI_DEBUG_EXEC(acpi_ut_display_init_pathname
312 			(ACPI_TYPE_METHOD, info->prefix_node, NULL));
313 
314 	status = acpi_ns_evaluate(info);
315 	acpi_ut_remove_reference(args[1]);
316 
317       cleanup2:
318 	acpi_ut_remove_reference(args[0]);
319 
320       cleanup1:
321 	ACPI_FREE(info);
322 	return_ACPI_STATUS(status);
323 }
324 
325 /*******************************************************************************
326  *
327  * FUNCTION:    acpi_ev_address_space_dispatch
328  *
329  * PARAMETERS:  region_obj          - Internal region object
330  *              Function            - Read or Write operation
331  *              region_offset       - Where in the region to read or write
332  *              bit_width           - Field width in bits (8, 16, 32, or 64)
333  *              Value               - Pointer to in or out value, must be
334  *                                    a full 64-bit integer
335  *
336  * RETURN:      Status
337  *
338  * DESCRIPTION: Dispatch an address space or operation region access to
339  *              a previously installed handler.
340  *
341  ******************************************************************************/
342 
343 acpi_status
acpi_ev_address_space_dispatch(union acpi_operand_object * region_obj,u32 function,u32 region_offset,u32 bit_width,u64 * value)344 acpi_ev_address_space_dispatch(union acpi_operand_object *region_obj,
345 			       u32 function,
346 			       u32 region_offset, u32 bit_width, u64 *value)
347 {
348 	acpi_status status;
349 	acpi_adr_space_handler handler;
350 	acpi_adr_space_setup region_setup;
351 	union acpi_operand_object *handler_desc;
352 	union acpi_operand_object *region_obj2;
353 	void *region_context = NULL;
354 
355 	ACPI_FUNCTION_TRACE(ev_address_space_dispatch);
356 
357 	region_obj2 = acpi_ns_get_secondary_object(region_obj);
358 	if (!region_obj2) {
359 		return_ACPI_STATUS(AE_NOT_EXIST);
360 	}
361 
362 	/* Ensure that there is a handler associated with this region */
363 
364 	handler_desc = region_obj->region.handler;
365 	if (!handler_desc) {
366 		ACPI_ERROR((AE_INFO,
367 			    "No handler for Region [%4.4s] (%p) [%s]",
368 			    acpi_ut_get_node_name(region_obj->region.node),
369 			    region_obj,
370 			    acpi_ut_get_region_name(region_obj->region.
371 						    space_id)));
372 
373 		return_ACPI_STATUS(AE_NOT_EXIST);
374 	}
375 
376 	/*
377 	 * It may be the case that the region has never been initialized.
378 	 * Some types of regions require special init code
379 	 */
380 	if (!(region_obj->region.flags & AOPOBJ_SETUP_COMPLETE)) {
381 
382 		/* This region has not been initialized yet, do it */
383 
384 		region_setup = handler_desc->address_space.setup;
385 		if (!region_setup) {
386 
387 			/* No initialization routine, exit with error */
388 
389 			ACPI_ERROR((AE_INFO,
390 				    "No init routine for region(%p) [%s]",
391 				    region_obj,
392 				    acpi_ut_get_region_name(region_obj->region.
393 							    space_id)));
394 			return_ACPI_STATUS(AE_NOT_EXIST);
395 		}
396 
397 		/*
398 		 * We must exit the interpreter because the region setup will
399 		 * potentially execute control methods (for example, the _REG method
400 		 * for this region)
401 		 */
402 		acpi_ex_exit_interpreter();
403 
404 		status = region_setup(region_obj, ACPI_REGION_ACTIVATE,
405 				      handler_desc->address_space.context,
406 				      &region_context);
407 
408 		/* Re-enter the interpreter */
409 
410 		acpi_ex_enter_interpreter();
411 
412 		/* Check for failure of the Region Setup */
413 
414 		if (ACPI_FAILURE(status)) {
415 			ACPI_EXCEPTION((AE_INFO, status,
416 					"During region initialization: [%s]",
417 					acpi_ut_get_region_name(region_obj->
418 								region.
419 								space_id)));
420 			return_ACPI_STATUS(status);
421 		}
422 
423 		/* Region initialization may have been completed by region_setup */
424 
425 		if (!(region_obj->region.flags & AOPOBJ_SETUP_COMPLETE)) {
426 			region_obj->region.flags |= AOPOBJ_SETUP_COMPLETE;
427 
428 			if (region_obj2->extra.region_context) {
429 
430 				/* The handler for this region was already installed */
431 
432 				ACPI_FREE(region_context);
433 			} else {
434 				/*
435 				 * Save the returned context for use in all accesses to
436 				 * this particular region
437 				 */
438 				region_obj2->extra.region_context =
439 				    region_context;
440 			}
441 		}
442 	}
443 
444 	/* We have everything we need, we can invoke the address space handler */
445 
446 	handler = handler_desc->address_space.handler;
447 
448 	ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
449 			  "Handler %p (@%p) Address %8.8X%8.8X [%s]\n",
450 			  &region_obj->region.handler->address_space, handler,
451 			  ACPI_FORMAT_NATIVE_UINT(region_obj->region.address +
452 						  region_offset),
453 			  acpi_ut_get_region_name(region_obj->region.
454 						  space_id)));
455 
456 	if (!(handler_desc->address_space.handler_flags &
457 	      ACPI_ADDR_HANDLER_DEFAULT_INSTALLED)) {
458 		/*
459 		 * For handlers other than the default (supplied) handlers, we must
460 		 * exit the interpreter because the handler *might* block -- we don't
461 		 * know what it will do, so we can't hold the lock on the intepreter.
462 		 */
463 		acpi_ex_exit_interpreter();
464 	}
465 
466 	/* Call the handler */
467 
468 	status = handler(function,
469 			 (region_obj->region.address + region_offset),
470 			 bit_width, value, handler_desc->address_space.context,
471 			 region_obj2->extra.region_context);
472 
473 	if (ACPI_FAILURE(status)) {
474 		ACPI_EXCEPTION((AE_INFO, status, "Returned by Handler for [%s]",
475 				acpi_ut_get_region_name(region_obj->region.
476 							space_id)));
477 	}
478 
479 	if (!(handler_desc->address_space.handler_flags &
480 	      ACPI_ADDR_HANDLER_DEFAULT_INSTALLED)) {
481 		/*
482 		 * We just returned from a non-default handler, we must re-enter the
483 		 * interpreter
484 		 */
485 		acpi_ex_enter_interpreter();
486 	}
487 
488 	return_ACPI_STATUS(status);
489 }
490 
491 /*******************************************************************************
492  *
493  * FUNCTION:    acpi_ev_detach_region
494  *
495  * PARAMETERS:  region_obj          - Region Object
496  *              acpi_ns_is_locked   - Namespace Region Already Locked?
497  *
498  * RETURN:      None
499  *
500  * DESCRIPTION: Break the association between the handler and the region
501  *              this is a two way association.
502  *
503  ******************************************************************************/
504 
505 void
acpi_ev_detach_region(union acpi_operand_object * region_obj,u8 acpi_ns_is_locked)506 acpi_ev_detach_region(union acpi_operand_object *region_obj,
507 		      u8 acpi_ns_is_locked)
508 {
509 	union acpi_operand_object *handler_obj;
510 	union acpi_operand_object *obj_desc;
511 	union acpi_operand_object **last_obj_ptr;
512 	acpi_adr_space_setup region_setup;
513 	void **region_context;
514 	union acpi_operand_object *region_obj2;
515 	acpi_status status;
516 
517 	ACPI_FUNCTION_TRACE(ev_detach_region);
518 
519 	region_obj2 = acpi_ns_get_secondary_object(region_obj);
520 	if (!region_obj2) {
521 		return_VOID;
522 	}
523 	region_context = &region_obj2->extra.region_context;
524 
525 	/* Get the address handler from the region object */
526 
527 	handler_obj = region_obj->region.handler;
528 	if (!handler_obj) {
529 
530 		/* This region has no handler, all done */
531 
532 		return_VOID;
533 	}
534 
535 	/* Find this region in the handler's list */
536 
537 	obj_desc = handler_obj->address_space.region_list;
538 	last_obj_ptr = &handler_obj->address_space.region_list;
539 
540 	while (obj_desc) {
541 
542 		/* Is this the correct Region? */
543 
544 		if (obj_desc == region_obj) {
545 			ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
546 					  "Removing Region %p from address handler %p\n",
547 					  region_obj, handler_obj));
548 
549 			/* This is it, remove it from the handler's list */
550 
551 			*last_obj_ptr = obj_desc->region.next;
552 			obj_desc->region.next = NULL;	/* Must clear field */
553 
554 			if (acpi_ns_is_locked) {
555 				status =
556 				    acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
557 				if (ACPI_FAILURE(status)) {
558 					return_VOID;
559 				}
560 			}
561 
562 			/* Now stop region accesses by executing the _REG method */
563 
564 			status = acpi_ev_execute_reg_method(region_obj, 0);
565 			if (ACPI_FAILURE(status)) {
566 				ACPI_EXCEPTION((AE_INFO, status,
567 						"from region _REG, [%s]",
568 						acpi_ut_get_region_name
569 						(region_obj->region.space_id)));
570 			}
571 
572 			if (acpi_ns_is_locked) {
573 				status =
574 				    acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE);
575 				if (ACPI_FAILURE(status)) {
576 					return_VOID;
577 				}
578 			}
579 
580 			/*
581 			 * If the region has been activated, call the setup handler with
582 			 * the deactivate notification
583 			 */
584 			if (region_obj->region.flags & AOPOBJ_SETUP_COMPLETE) {
585 				region_setup = handler_obj->address_space.setup;
586 				status =
587 				    region_setup(region_obj,
588 						 ACPI_REGION_DEACTIVATE,
589 						 handler_obj->address_space.
590 						 context, region_context);
591 
592 				/* Init routine may fail, Just ignore errors */
593 
594 				if (ACPI_FAILURE(status)) {
595 					ACPI_EXCEPTION((AE_INFO, status,
596 							"from region handler - deactivate, [%s]",
597 							acpi_ut_get_region_name
598 							(region_obj->region.
599 							 space_id)));
600 				}
601 
602 				region_obj->region.flags &=
603 				    ~(AOPOBJ_SETUP_COMPLETE);
604 			}
605 
606 			/*
607 			 * Remove handler reference in the region
608 			 *
609 			 * NOTE: this doesn't mean that the region goes away, the region
610 			 * is just inaccessible as indicated to the _REG method
611 			 *
612 			 * If the region is on the handler's list, this must be the
613 			 * region's handler
614 			 */
615 			region_obj->region.handler = NULL;
616 			acpi_ut_remove_reference(handler_obj);
617 
618 			return_VOID;
619 		}
620 
621 		/* Walk the linked list of handlers */
622 
623 		last_obj_ptr = &obj_desc->region.next;
624 		obj_desc = obj_desc->region.next;
625 	}
626 
627 	/* If we get here, the region was not in the handler's region list */
628 
629 	ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
630 			  "Cannot remove region %p from address handler %p\n",
631 			  region_obj, handler_obj));
632 
633 	return_VOID;
634 }
635 
636 /*******************************************************************************
637  *
638  * FUNCTION:    acpi_ev_attach_region
639  *
640  * PARAMETERS:  handler_obj         - Handler Object
641  *              region_obj          - Region Object
642  *              acpi_ns_is_locked   - Namespace Region Already Locked?
643  *
644  * RETURN:      None
645  *
646  * DESCRIPTION: Create the association between the handler and the region
647  *              this is a two way association.
648  *
649  ******************************************************************************/
650 
651 acpi_status
acpi_ev_attach_region(union acpi_operand_object * handler_obj,union acpi_operand_object * region_obj,u8 acpi_ns_is_locked)652 acpi_ev_attach_region(union acpi_operand_object *handler_obj,
653 		      union acpi_operand_object *region_obj,
654 		      u8 acpi_ns_is_locked)
655 {
656 
657 	ACPI_FUNCTION_TRACE(ev_attach_region);
658 
659 	ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
660 			  "Adding Region [%4.4s] %p to address handler %p [%s]\n",
661 			  acpi_ut_get_node_name(region_obj->region.node),
662 			  region_obj, handler_obj,
663 			  acpi_ut_get_region_name(region_obj->region.
664 						  space_id)));
665 
666 	/* Link this region to the front of the handler's list */
667 
668 	region_obj->region.next = handler_obj->address_space.region_list;
669 	handler_obj->address_space.region_list = region_obj;
670 
671 	/* Install the region's handler */
672 
673 	if (region_obj->region.handler) {
674 		return_ACPI_STATUS(AE_ALREADY_EXISTS);
675 	}
676 
677 	region_obj->region.handler = handler_obj;
678 	acpi_ut_add_reference(handler_obj);
679 
680 	return_ACPI_STATUS(AE_OK);
681 }
682 
683 /*******************************************************************************
684  *
685  * FUNCTION:    acpi_ev_install_handler
686  *
687  * PARAMETERS:  walk_namespace callback
688  *
689  * DESCRIPTION: This routine installs an address handler into objects that are
690  *              of type Region or Device.
691  *
692  *              If the Object is a Device, and the device has a handler of
693  *              the same type then the search is terminated in that branch.
694  *
695  *              This is because the existing handler is closer in proximity
696  *              to any more regions than the one we are trying to install.
697  *
698  ******************************************************************************/
699 
700 static acpi_status
acpi_ev_install_handler(acpi_handle obj_handle,u32 level,void * context,void ** return_value)701 acpi_ev_install_handler(acpi_handle obj_handle,
702 			u32 level, void *context, void **return_value)
703 {
704 	union acpi_operand_object *handler_obj;
705 	union acpi_operand_object *next_handler_obj;
706 	union acpi_operand_object *obj_desc;
707 	struct acpi_namespace_node *node;
708 	acpi_status status;
709 
710 	ACPI_FUNCTION_NAME(ev_install_handler);
711 
712 	handler_obj = (union acpi_operand_object *)context;
713 
714 	/* Parameter validation */
715 
716 	if (!handler_obj) {
717 		return (AE_OK);
718 	}
719 
720 	/* Convert and validate the device handle */
721 
722 	node = acpi_ns_validate_handle(obj_handle);
723 	if (!node) {
724 		return (AE_BAD_PARAMETER);
725 	}
726 
727 	/*
728 	 * We only care about regions and objects that are allowed to have
729 	 * address space handlers
730 	 */
731 	if ((node->type != ACPI_TYPE_DEVICE) &&
732 	    (node->type != ACPI_TYPE_REGION) && (node != acpi_gbl_root_node)) {
733 		return (AE_OK);
734 	}
735 
736 	/* Check for an existing internal object */
737 
738 	obj_desc = acpi_ns_get_attached_object(node);
739 	if (!obj_desc) {
740 
741 		/* No object, just exit */
742 
743 		return (AE_OK);
744 	}
745 
746 	/* Devices are handled different than regions */
747 
748 	if (obj_desc->common.type == ACPI_TYPE_DEVICE) {
749 
750 		/* Check if this Device already has a handler for this address space */
751 
752 		next_handler_obj = obj_desc->device.handler;
753 		while (next_handler_obj) {
754 
755 			/* Found a handler, is it for the same address space? */
756 
757 			if (next_handler_obj->address_space.space_id ==
758 			    handler_obj->address_space.space_id) {
759 				ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
760 						  "Found handler for region [%s] in device %p(%p) "
761 						  "handler %p\n",
762 						  acpi_ut_get_region_name
763 						  (handler_obj->address_space.
764 						   space_id), obj_desc,
765 						  next_handler_obj,
766 						  handler_obj));
767 
768 				/*
769 				 * Since the object we found it on was a device, then it
770 				 * means that someone has already installed a handler for
771 				 * the branch of the namespace from this device on. Just
772 				 * bail out telling the walk routine to not traverse this
773 				 * branch. This preserves the scoping rule for handlers.
774 				 */
775 				return (AE_CTRL_DEPTH);
776 			}
777 
778 			/* Walk the linked list of handlers attached to this device */
779 
780 			next_handler_obj = next_handler_obj->address_space.next;
781 		}
782 
783 		/*
784 		 * As long as the device didn't have a handler for this space we
785 		 * don't care about it. We just ignore it and proceed.
786 		 */
787 		return (AE_OK);
788 	}
789 
790 	/* Object is a Region */
791 
792 	if (obj_desc->region.space_id != handler_obj->address_space.space_id) {
793 
794 		/* This region is for a different address space, just ignore it */
795 
796 		return (AE_OK);
797 	}
798 
799 	/*
800 	 * Now we have a region and it is for the handler's address space type.
801 	 *
802 	 * First disconnect region for any previous handler (if any)
803 	 */
804 	acpi_ev_detach_region(obj_desc, FALSE);
805 
806 	/* Connect the region to the new handler */
807 
808 	status = acpi_ev_attach_region(handler_obj, obj_desc, FALSE);
809 	return (status);
810 }
811 
812 /*******************************************************************************
813  *
814  * FUNCTION:    acpi_ev_install_space_handler
815  *
816  * PARAMETERS:  Node            - Namespace node for the device
817  *              space_id        - The address space ID
818  *              Handler         - Address of the handler
819  *              Setup           - Address of the setup function
820  *              Context         - Value passed to the handler on each access
821  *
822  * RETURN:      Status
823  *
824  * DESCRIPTION: Install a handler for all op_regions of a given space_id.
825  *              Assumes namespace is locked
826  *
827  ******************************************************************************/
828 
829 acpi_status
acpi_ev_install_space_handler(struct acpi_namespace_node * node,acpi_adr_space_type space_id,acpi_adr_space_handler handler,acpi_adr_space_setup setup,void * context)830 acpi_ev_install_space_handler(struct acpi_namespace_node * node,
831 			      acpi_adr_space_type space_id,
832 			      acpi_adr_space_handler handler,
833 			      acpi_adr_space_setup setup, void *context)
834 {
835 	union acpi_operand_object *obj_desc;
836 	union acpi_operand_object *handler_obj;
837 	acpi_status status;
838 	acpi_object_type type;
839 	u8 flags = 0;
840 
841 	ACPI_FUNCTION_TRACE(ev_install_space_handler);
842 
843 	/*
844 	 * This registration is valid for only the types below and the root. This
845 	 * is where the default handlers get placed.
846 	 */
847 	if ((node->type != ACPI_TYPE_DEVICE) &&
848 	    (node->type != ACPI_TYPE_PROCESSOR) &&
849 	    (node->type != ACPI_TYPE_THERMAL) && (node != acpi_gbl_root_node)) {
850 		status = AE_BAD_PARAMETER;
851 		goto unlock_and_exit;
852 	}
853 
854 	if (handler == ACPI_DEFAULT_HANDLER) {
855 		flags = ACPI_ADDR_HANDLER_DEFAULT_INSTALLED;
856 
857 		switch (space_id) {
858 		case ACPI_ADR_SPACE_SYSTEM_MEMORY:
859 			handler = acpi_ex_system_memory_space_handler;
860 			setup = acpi_ev_system_memory_region_setup;
861 			break;
862 
863 		case ACPI_ADR_SPACE_SYSTEM_IO:
864 			handler = acpi_ex_system_io_space_handler;
865 			setup = acpi_ev_io_space_region_setup;
866 			break;
867 
868 		case ACPI_ADR_SPACE_PCI_CONFIG:
869 			handler = acpi_ex_pci_config_space_handler;
870 			setup = acpi_ev_pci_config_region_setup;
871 			break;
872 
873 		case ACPI_ADR_SPACE_CMOS:
874 			handler = acpi_ex_cmos_space_handler;
875 			setup = acpi_ev_cmos_region_setup;
876 			break;
877 
878 		case ACPI_ADR_SPACE_PCI_BAR_TARGET:
879 			handler = acpi_ex_pci_bar_space_handler;
880 			setup = acpi_ev_pci_bar_region_setup;
881 			break;
882 
883 		case ACPI_ADR_SPACE_DATA_TABLE:
884 			handler = acpi_ex_data_table_space_handler;
885 			setup = NULL;
886 			break;
887 
888 		default:
889 			status = AE_BAD_PARAMETER;
890 			goto unlock_and_exit;
891 		}
892 	}
893 
894 	/* If the caller hasn't specified a setup routine, use the default */
895 
896 	if (!setup) {
897 		setup = acpi_ev_default_region_setup;
898 	}
899 
900 	/* Check for an existing internal object */
901 
902 	obj_desc = acpi_ns_get_attached_object(node);
903 	if (obj_desc) {
904 		/*
905 		 * The attached device object already exists. Make sure the handler
906 		 * is not already installed.
907 		 */
908 		handler_obj = obj_desc->device.handler;
909 
910 		/* Walk the handler list for this device */
911 
912 		while (handler_obj) {
913 
914 			/* Same space_id indicates a handler already installed */
915 
916 			if (handler_obj->address_space.space_id == space_id) {
917 				if (handler_obj->address_space.handler ==
918 				    handler) {
919 					/*
920 					 * It is (relatively) OK to attempt to install the SAME
921 					 * handler twice. This can easily happen with the
922 					 * PCI_Config space.
923 					 */
924 					status = AE_SAME_HANDLER;
925 					goto unlock_and_exit;
926 				} else {
927 					/* A handler is already installed */
928 
929 					status = AE_ALREADY_EXISTS;
930 				}
931 				goto unlock_and_exit;
932 			}
933 
934 			/* Walk the linked list of handlers */
935 
936 			handler_obj = handler_obj->address_space.next;
937 		}
938 	} else {
939 		ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
940 				  "Creating object on Device %p while installing handler\n",
941 				  node));
942 
943 		/* obj_desc does not exist, create one */
944 
945 		if (node->type == ACPI_TYPE_ANY) {
946 			type = ACPI_TYPE_DEVICE;
947 		} else {
948 			type = node->type;
949 		}
950 
951 		obj_desc = acpi_ut_create_internal_object(type);
952 		if (!obj_desc) {
953 			status = AE_NO_MEMORY;
954 			goto unlock_and_exit;
955 		}
956 
957 		/* Init new descriptor */
958 
959 		obj_desc->common.type = (u8) type;
960 
961 		/* Attach the new object to the Node */
962 
963 		status = acpi_ns_attach_object(node, obj_desc, type);
964 
965 		/* Remove local reference to the object */
966 
967 		acpi_ut_remove_reference(obj_desc);
968 
969 		if (ACPI_FAILURE(status)) {
970 			goto unlock_and_exit;
971 		}
972 	}
973 
974 	ACPI_DEBUG_PRINT((ACPI_DB_OPREGION,
975 			  "Installing address handler for region %s(%X) on Device %4.4s %p(%p)\n",
976 			  acpi_ut_get_region_name(space_id), space_id,
977 			  acpi_ut_get_node_name(node), node, obj_desc));
978 
979 	/*
980 	 * Install the handler
981 	 *
982 	 * At this point there is no existing handler. Just allocate the object
983 	 * for the handler and link it into the list.
984 	 */
985 	handler_obj =
986 	    acpi_ut_create_internal_object(ACPI_TYPE_LOCAL_ADDRESS_HANDLER);
987 	if (!handler_obj) {
988 		status = AE_NO_MEMORY;
989 		goto unlock_and_exit;
990 	}
991 
992 	/* Init handler obj */
993 
994 	handler_obj->address_space.space_id = (u8) space_id;
995 	handler_obj->address_space.handler_flags = flags;
996 	handler_obj->address_space.region_list = NULL;
997 	handler_obj->address_space.node = node;
998 	handler_obj->address_space.handler = handler;
999 	handler_obj->address_space.context = context;
1000 	handler_obj->address_space.setup = setup;
1001 
1002 	/* Install at head of Device.address_space list */
1003 
1004 	handler_obj->address_space.next = obj_desc->device.handler;
1005 
1006 	/*
1007 	 * The Device object is the first reference on the handler_obj.
1008 	 * Each region that uses the handler adds a reference.
1009 	 */
1010 	obj_desc->device.handler = handler_obj;
1011 
1012 	/*
1013 	 * Walk the namespace finding all of the regions this
1014 	 * handler will manage.
1015 	 *
1016 	 * Start at the device and search the branch toward
1017 	 * the leaf nodes until either the leaf is encountered or
1018 	 * a device is detected that has an address handler of the
1019 	 * same type.
1020 	 *
1021 	 * In either case, back up and search down the remainder
1022 	 * of the branch
1023 	 */
1024 	status = acpi_ns_walk_namespace(ACPI_TYPE_ANY, node, ACPI_UINT32_MAX,
1025 					ACPI_NS_WALK_UNLOCK,
1026 					acpi_ev_install_handler, NULL,
1027 					handler_obj, NULL);
1028 
1029       unlock_and_exit:
1030 	return_ACPI_STATUS(status);
1031 }
1032 
1033 /*******************************************************************************
1034  *
1035  * FUNCTION:    acpi_ev_execute_reg_methods
1036  *
1037  * PARAMETERS:  Node            - Namespace node for the device
1038  *              space_id        - The address space ID
1039  *
1040  * RETURN:      Status
1041  *
1042  * DESCRIPTION: Run all _REG methods for the input Space ID;
1043  *              Note: assumes namespace is locked, or system init time.
1044  *
1045  ******************************************************************************/
1046 
1047 acpi_status
acpi_ev_execute_reg_methods(struct acpi_namespace_node * node,acpi_adr_space_type space_id)1048 acpi_ev_execute_reg_methods(struct acpi_namespace_node *node,
1049 			    acpi_adr_space_type space_id)
1050 {
1051 	acpi_status status;
1052 
1053 	ACPI_FUNCTION_TRACE(ev_execute_reg_methods);
1054 
1055 	/*
1056 	 * Run all _REG methods for all Operation Regions for this space ID. This
1057 	 * is a separate walk in order to handle any interdependencies between
1058 	 * regions and _REG methods. (i.e. handlers must be installed for all
1059 	 * regions of this Space ID before we can run any _REG methods)
1060 	 */
1061 	status = acpi_ns_walk_namespace(ACPI_TYPE_ANY, node, ACPI_UINT32_MAX,
1062 					ACPI_NS_WALK_UNLOCK, acpi_ev_reg_run,
1063 					NULL, &space_id, NULL);
1064 
1065 	return_ACPI_STATUS(status);
1066 }
1067 
1068 /*******************************************************************************
1069  *
1070  * FUNCTION:    acpi_ev_reg_run
1071  *
1072  * PARAMETERS:  walk_namespace callback
1073  *
1074  * DESCRIPTION: Run _REG method for region objects of the requested space_iD
1075  *
1076  ******************************************************************************/
1077 
1078 static acpi_status
acpi_ev_reg_run(acpi_handle obj_handle,u32 level,void * context,void ** return_value)1079 acpi_ev_reg_run(acpi_handle obj_handle,
1080 		u32 level, void *context, void **return_value)
1081 {
1082 	union acpi_operand_object *obj_desc;
1083 	struct acpi_namespace_node *node;
1084 	acpi_adr_space_type space_id;
1085 	acpi_status status;
1086 
1087 	space_id = *ACPI_CAST_PTR(acpi_adr_space_type, context);
1088 
1089 	/* Convert and validate the device handle */
1090 
1091 	node = acpi_ns_validate_handle(obj_handle);
1092 	if (!node) {
1093 		return (AE_BAD_PARAMETER);
1094 	}
1095 
1096 	/*
1097 	 * We only care about regions.and objects that are allowed to have address
1098 	 * space handlers
1099 	 */
1100 	if ((node->type != ACPI_TYPE_REGION) && (node != acpi_gbl_root_node)) {
1101 		return (AE_OK);
1102 	}
1103 
1104 	/* Check for an existing internal object */
1105 
1106 	obj_desc = acpi_ns_get_attached_object(node);
1107 	if (!obj_desc) {
1108 
1109 		/* No object, just exit */
1110 
1111 		return (AE_OK);
1112 	}
1113 
1114 	/* Object is a Region */
1115 
1116 	if (obj_desc->region.space_id != space_id) {
1117 
1118 		/* This region is for a different address space, just ignore it */
1119 
1120 		return (AE_OK);
1121 	}
1122 
1123 	status = acpi_ev_execute_reg_method(obj_desc, 1);
1124 	return (status);
1125 }
1126