1 /******************************************************************************
3 * Module Name: nsutils - Utilities for accessing ACPI namespace, accessing
4 * parents and siblings and Scope manipulation
6 *****************************************************************************/
9 * Copyright (C) 2000 - 2006, R. Byron Moore
10 * All rights reserved.
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
15 * 1. Redistributions of source code must retain the above copyright
16 * notice, this list of conditions, and the following disclaimer,
17 * without modification.
18 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
19 * substantially similar to the "NO WARRANTY" disclaimer below
20 * ("Disclaimer") and any redistribution must be conditioned upon
21 * including a substantially similar Disclaimer requirement for further
22 * binary redistribution.
23 * 3. Neither the names of the above-listed copyright holders nor the names
24 * of any contributors may be used to endorse or promote products derived
25 * from this software without specific prior written permission.
27 * Alternatively, this software may be distributed under the terms of the
28 * GNU General Public License ("GPL") version 2 as published by the Free
29 * Software Foundation.
32 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
33 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
34 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
35 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
36 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
37 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
38 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
39 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
40 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
41 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
42 * POSSIBILITY OF SUCH DAMAGES.
45 #include <acpi/acpi.h>
46 #include <acpi/acnamesp.h>
47 #include <acpi/amlcode.h>
48 #include <acpi/actables.h>
50 #define _COMPONENT ACPI_NAMESPACE
51 ACPI_MODULE_NAME("nsutils")
53 /* Local prototypes */
54 static u8
acpi_ns_valid_path_separator(char sep
);
56 #ifdef ACPI_OBSOLETE_FUNCTIONS
57 acpi_name
acpi_ns_find_parent_name(struct acpi_namespace_node
*node_to_search
);
60 /*******************************************************************************
62 * FUNCTION: acpi_ns_report_error
64 * PARAMETERS: module_name - Caller's module name (for error output)
65 * line_number - Caller's line number (for error output)
66 * internal_name - Name or path of the namespace node
67 * lookup_status - Exception code from NS lookup
71 * DESCRIPTION: Print warning message with full pathname
73 ******************************************************************************/
76 acpi_ns_report_error(char *module_name
,
78 char *internal_name
, acpi_status lookup_status
)
83 acpi_ut_report_error(module_name
, line_number
);
85 if (lookup_status
== AE_BAD_CHARACTER
) {
86 /* There is a non-ascii character in the name */
88 acpi_os_printf("[0x%4.4X] (NON-ASCII)",
89 *(ACPI_CAST_PTR(u32
, internal_name
)));
91 /* Convert path to external format */
93 status
= acpi_ns_externalize_name(ACPI_UINT32_MAX
,
94 internal_name
, NULL
, &name
);
96 /* Print target name */
98 if (ACPI_SUCCESS(status
)) {
99 acpi_os_printf("[%s]", name
);
101 acpi_os_printf("[COULD NOT EXTERNALIZE NAME]");
109 acpi_os_printf(" Namespace lookup failure, %s\n",
110 acpi_format_exception(lookup_status
));
113 /*******************************************************************************
115 * FUNCTION: acpi_ns_report_method_error
117 * PARAMETERS: module_name - Caller's module name (for error output)
118 * line_number - Caller's line number (for error output)
119 * Message - Error message to use on failure
120 * prefix_node - Prefix relative to the path
121 * Path - Path to the node (optional)
122 * method_status - Execution status
126 * DESCRIPTION: Print warning message with full pathname
128 ******************************************************************************/
131 acpi_ns_report_method_error(char *module_name
,
134 struct acpi_namespace_node
*prefix_node
,
135 char *path
, acpi_status method_status
)
138 struct acpi_namespace_node
*node
= prefix_node
;
140 acpi_ut_report_error(module_name
, line_number
);
143 status
= acpi_ns_get_node_by_path(path
, prefix_node
,
144 ACPI_NS_NO_UPSEARCH
, &node
);
145 if (ACPI_FAILURE(status
)) {
146 acpi_os_printf("[Could not get node by pathname]");
150 acpi_ns_print_node_pathname(node
, message
);
151 acpi_os_printf(", %s\n", acpi_format_exception(method_status
));
154 /*******************************************************************************
156 * FUNCTION: acpi_ns_print_node_pathname
158 * PARAMETERS: Node - Object
159 * Message - Prefix message
161 * DESCRIPTION: Print an object's full namespace pathname
162 * Manages allocation/freeing of a pathname buffer
164 ******************************************************************************/
167 acpi_ns_print_node_pathname(struct acpi_namespace_node
*node
, char *message
)
169 struct acpi_buffer buffer
;
173 acpi_os_printf("[NULL NAME]");
177 /* Convert handle to full pathname and print it (with supplied message) */
179 buffer
.length
= ACPI_ALLOCATE_LOCAL_BUFFER
;
181 status
= acpi_ns_handle_to_pathname(node
, &buffer
);
182 if (ACPI_SUCCESS(status
)) {
184 acpi_os_printf("%s ", message
);
187 acpi_os_printf("[%s] (Node %p)", (char *)buffer
.pointer
, node
);
188 ACPI_MEM_FREE(buffer
.pointer
);
192 /*******************************************************************************
194 * FUNCTION: acpi_ns_valid_root_prefix
196 * PARAMETERS: Prefix - Character to be checked
198 * RETURN: TRUE if a valid prefix
200 * DESCRIPTION: Check if a character is a valid ACPI Root prefix
202 ******************************************************************************/
204 u8
acpi_ns_valid_root_prefix(char prefix
)
207 return ((u8
) (prefix
== '\\'));
210 /*******************************************************************************
212 * FUNCTION: acpi_ns_valid_path_separator
214 * PARAMETERS: Sep - Character to be checked
216 * RETURN: TRUE if a valid path separator
218 * DESCRIPTION: Check if a character is a valid ACPI path separator
220 ******************************************************************************/
222 static u8
acpi_ns_valid_path_separator(char sep
)
225 return ((u8
) (sep
== '.'));
228 /*******************************************************************************
230 * FUNCTION: acpi_ns_get_type
232 * PARAMETERS: Node - Parent Node to be examined
234 * RETURN: Type field from Node whose handle is passed
236 * DESCRIPTION: Return the type of a Namespace node
238 ******************************************************************************/
240 acpi_object_type
acpi_ns_get_type(struct acpi_namespace_node
* node
)
242 ACPI_FUNCTION_TRACE("ns_get_type");
245 ACPI_WARNING((AE_INFO
, "Null Node parameter"));
246 return_UINT32(ACPI_TYPE_ANY
);
249 return_UINT32((acpi_object_type
) node
->type
);
252 /*******************************************************************************
254 * FUNCTION: acpi_ns_local
256 * PARAMETERS: Type - A namespace object type
258 * RETURN: LOCAL if names must be found locally in objects of the
259 * passed type, 0 if enclosing scopes should be searched
261 * DESCRIPTION: Returns scope rule for the given object type.
263 ******************************************************************************/
265 u32
acpi_ns_local(acpi_object_type type
)
267 ACPI_FUNCTION_TRACE("ns_local");
269 if (!acpi_ut_valid_object_type(type
)) {
270 /* Type code out of range */
272 ACPI_WARNING((AE_INFO
, "Invalid Object Type %X", type
));
273 return_UINT32(ACPI_NS_NORMAL
);
276 return_UINT32((u32
) acpi_gbl_ns_properties
[type
] & ACPI_NS_LOCAL
);
279 /*******************************************************************************
281 * FUNCTION: acpi_ns_get_internal_name_length
283 * PARAMETERS: Info - Info struct initialized with the
284 * external name pointer.
288 * DESCRIPTION: Calculate the length of the internal (AML) namestring
289 * corresponding to the external (ASL) namestring.
291 ******************************************************************************/
293 void acpi_ns_get_internal_name_length(struct acpi_namestring_info
*info
)
295 char *next_external_char
;
298 ACPI_FUNCTION_ENTRY();
300 next_external_char
= info
->external_name
;
301 info
->num_carats
= 0;
302 info
->num_segments
= 0;
303 info
->fully_qualified
= FALSE
;
306 * For the internal name, the required length is 4 bytes per segment, plus
307 * 1 each for root_prefix, multi_name_prefix_op, segment count, trailing null
308 * (which is not really needed, but no there's harm in putting it there)
310 * strlen() + 1 covers the first name_seg, which has no path separator
312 if (acpi_ns_valid_root_prefix(next_external_char
[0])) {
313 info
->fully_qualified
= TRUE
;
314 next_external_char
++;
317 * Handle Carat prefixes
319 while (*next_external_char
== '^') {
321 next_external_char
++;
326 * Determine the number of ACPI name "segments" by counting the number of
327 * path separators within the string. Start with one segment since the
328 * segment count is [(# separators) + 1], and zero separators is ok.
330 if (*next_external_char
) {
331 info
->num_segments
= 1;
332 for (i
= 0; next_external_char
[i
]; i
++) {
333 if (acpi_ns_valid_path_separator(next_external_char
[i
])) {
334 info
->num_segments
++;
339 info
->length
= (ACPI_NAME_SIZE
* info
->num_segments
) +
340 4 + info
->num_carats
;
342 info
->next_external_char
= next_external_char
;
345 /*******************************************************************************
347 * FUNCTION: acpi_ns_build_internal_name
349 * PARAMETERS: Info - Info struct fully initialized
353 * DESCRIPTION: Construct the internal (AML) namestring
354 * corresponding to the external (ASL) namestring.
356 ******************************************************************************/
358 acpi_status
acpi_ns_build_internal_name(struct acpi_namestring_info
*info
)
360 u32 num_segments
= info
->num_segments
;
361 char *internal_name
= info
->internal_name
;
362 char *external_name
= info
->next_external_char
;
366 ACPI_FUNCTION_TRACE("ns_build_internal_name");
368 /* Setup the correct prefixes, counts, and pointers */
370 if (info
->fully_qualified
) {
371 internal_name
[0] = '\\';
373 if (num_segments
<= 1) {
374 result
= &internal_name
[1];
375 } else if (num_segments
== 2) {
376 internal_name
[1] = AML_DUAL_NAME_PREFIX
;
377 result
= &internal_name
[2];
379 internal_name
[1] = AML_MULTI_NAME_PREFIX_OP
;
380 internal_name
[2] = (char)num_segments
;
381 result
= &internal_name
[3];
385 * Not fully qualified.
386 * Handle Carats first, then append the name segments
389 if (info
->num_carats
) {
390 for (i
= 0; i
< info
->num_carats
; i
++) {
391 internal_name
[i
] = '^';
395 if (num_segments
<= 1) {
396 result
= &internal_name
[i
];
397 } else if (num_segments
== 2) {
398 internal_name
[i
] = AML_DUAL_NAME_PREFIX
;
399 result
= &internal_name
[(acpi_native_uint
) (i
+ 1)];
401 internal_name
[i
] = AML_MULTI_NAME_PREFIX_OP
;
402 internal_name
[(acpi_native_uint
) (i
+ 1)] =
404 result
= &internal_name
[(acpi_native_uint
) (i
+ 2)];
408 /* Build the name (minus path separators) */
410 for (; num_segments
; num_segments
--) {
411 for (i
= 0; i
< ACPI_NAME_SIZE
; i
++) {
412 if (acpi_ns_valid_path_separator(*external_name
) ||
413 (*external_name
== 0)) {
414 /* Pad the segment with underscore(s) if segment is short */
418 /* Convert the character to uppercase and save it */
421 (char)ACPI_TOUPPER((int)*external_name
);
426 /* Now we must have a path separator, or the pathname is bad */
428 if (!acpi_ns_valid_path_separator(*external_name
) &&
429 (*external_name
!= 0)) {
430 return_ACPI_STATUS(AE_BAD_PARAMETER
);
433 /* Move on the next segment */
436 result
+= ACPI_NAME_SIZE
;
439 /* Terminate the string */
443 if (info
->fully_qualified
) {
444 ACPI_DEBUG_PRINT((ACPI_DB_EXEC
,
445 "Returning [%p] (abs) \"\\%s\"\n",
446 internal_name
, internal_name
));
448 ACPI_DEBUG_PRINT((ACPI_DB_EXEC
, "Returning [%p] (rel) \"%s\"\n",
449 internal_name
, internal_name
));
452 return_ACPI_STATUS(AE_OK
);
455 /*******************************************************************************
457 * FUNCTION: acpi_ns_internalize_name
459 * PARAMETERS: *external_name - External representation of name
460 * **Converted Name - Where to return the resulting
461 * internal represention of the name
465 * DESCRIPTION: Convert an external representation (e.g. "\_PR_.CPU0")
466 * to internal form (e.g. 5c 2f 02 5f 50 52 5f 43 50 55 30)
468 *******************************************************************************/
470 acpi_status
acpi_ns_internalize_name(char *external_name
, char **converted_name
)
473 struct acpi_namestring_info info
;
476 ACPI_FUNCTION_TRACE("ns_internalize_name");
478 if ((!external_name
) || (*external_name
== 0) || (!converted_name
)) {
479 return_ACPI_STATUS(AE_BAD_PARAMETER
);
482 /* Get the length of the new internal name */
484 info
.external_name
= external_name
;
485 acpi_ns_get_internal_name_length(&info
);
487 /* We need a segment to store the internal name */
489 internal_name
= ACPI_MEM_CALLOCATE(info
.length
);
490 if (!internal_name
) {
491 return_ACPI_STATUS(AE_NO_MEMORY
);
496 info
.internal_name
= internal_name
;
497 status
= acpi_ns_build_internal_name(&info
);
498 if (ACPI_FAILURE(status
)) {
499 ACPI_MEM_FREE(internal_name
);
500 return_ACPI_STATUS(status
);
503 *converted_name
= internal_name
;
504 return_ACPI_STATUS(AE_OK
);
507 /*******************************************************************************
509 * FUNCTION: acpi_ns_externalize_name
511 * PARAMETERS: internal_name_length - Lenth of the internal name below
512 * internal_name - Internal representation of name
513 * converted_name_length - Where the length is returned
514 * converted_name - Where the resulting external name
519 * DESCRIPTION: Convert internal name (e.g. 5c 2f 02 5f 50 52 5f 43 50 55 30)
520 * to its external (printable) form (e.g. "\_PR_.CPU0")
522 ******************************************************************************/
525 acpi_ns_externalize_name(u32 internal_name_length
,
527 u32
* converted_name_length
, char **converted_name
)
529 acpi_native_uint names_index
= 0;
530 acpi_native_uint num_segments
= 0;
531 acpi_native_uint required_length
;
532 acpi_native_uint prefix_length
= 0;
533 acpi_native_uint i
= 0;
534 acpi_native_uint j
= 0;
536 ACPI_FUNCTION_TRACE("ns_externalize_name");
538 if (!internal_name_length
|| !internal_name
|| !converted_name
) {
539 return_ACPI_STATUS(AE_BAD_PARAMETER
);
543 * Check for a prefix (one '\' | one or more '^').
545 switch (internal_name
[0]) {
551 for (i
= 0; i
< internal_name_length
; i
++) {
552 if (internal_name
[i
] == '^') {
553 prefix_length
= i
+ 1;
559 if (i
== internal_name_length
) {
570 * Check for object names. Note that there could be 0-255 of these
573 if (prefix_length
< internal_name_length
) {
574 switch (internal_name
[prefix_length
]) {
575 case AML_MULTI_NAME_PREFIX_OP
:
577 /* <count> 4-byte names */
579 names_index
= prefix_length
+ 2;
580 num_segments
= (acpi_native_uint
) (u8
)
581 internal_name
[(acpi_native_uint
)
582 (prefix_length
+ 1)];
585 case AML_DUAL_NAME_PREFIX
:
587 /* Two 4-byte names */
589 names_index
= prefix_length
+ 1;
603 /* one 4-byte name */
605 names_index
= prefix_length
;
612 * Calculate the length of converted_name, which equals the length
613 * of the prefix, length of all object names, length of any required
614 * punctuation ('.') between object names, plus the NULL terminator.
616 required_length
= prefix_length
+ (4 * num_segments
) +
617 ((num_segments
> 0) ? (num_segments
- 1) : 0) + 1;
620 * Check to see if we're still in bounds. If not, there's a problem
621 * with internal_name (invalid format).
623 if (required_length
> internal_name_length
) {
624 ACPI_ERROR((AE_INFO
, "Invalid internal name"));
625 return_ACPI_STATUS(AE_BAD_PATHNAME
);
629 * Build converted_name
631 *converted_name
= ACPI_MEM_CALLOCATE(required_length
);
632 if (!(*converted_name
)) {
633 return_ACPI_STATUS(AE_NO_MEMORY
);
638 for (i
= 0; i
< prefix_length
; i
++) {
639 (*converted_name
)[j
++] = internal_name
[i
];
642 if (num_segments
> 0) {
643 for (i
= 0; i
< num_segments
; i
++) {
645 (*converted_name
)[j
++] = '.';
648 (*converted_name
)[j
++] = internal_name
[names_index
++];
649 (*converted_name
)[j
++] = internal_name
[names_index
++];
650 (*converted_name
)[j
++] = internal_name
[names_index
++];
651 (*converted_name
)[j
++] = internal_name
[names_index
++];
655 if (converted_name_length
) {
656 *converted_name_length
= (u32
) required_length
;
659 return_ACPI_STATUS(AE_OK
);
662 /*******************************************************************************
664 * FUNCTION: acpi_ns_map_handle_to_node
666 * PARAMETERS: Handle - Handle to be converted to an Node
668 * RETURN: A Name table entry pointer
670 * DESCRIPTION: Convert a namespace handle to a real Node
672 * Note: Real integer handles would allow for more verification
673 * and keep all pointers within this subsystem - however this introduces
674 * more (and perhaps unnecessary) overhead.
676 ******************************************************************************/
678 struct acpi_namespace_node
*acpi_ns_map_handle_to_node(acpi_handle handle
)
681 ACPI_FUNCTION_ENTRY();
684 * Simple implementation.
690 if (handle
== ACPI_ROOT_OBJECT
) {
691 return (acpi_gbl_root_node
);
694 /* We can at least attempt to verify the handle */
696 if (ACPI_GET_DESCRIPTOR_TYPE(handle
) != ACPI_DESC_TYPE_NAMED
) {
700 return ((struct acpi_namespace_node
*)handle
);
703 /*******************************************************************************
705 * FUNCTION: acpi_ns_convert_entry_to_handle
707 * PARAMETERS: Node - Node to be converted to a Handle
709 * RETURN: A user handle
711 * DESCRIPTION: Convert a real Node to a namespace handle
713 ******************************************************************************/
715 acpi_handle
acpi_ns_convert_entry_to_handle(struct acpi_namespace_node
*node
)
719 * Simple implementation for now;
721 return ((acpi_handle
) node
);
723 /* Example future implementation ---------------------
730 if (Node == acpi_gbl_root_node)
732 return (ACPI_ROOT_OBJECT);
735 return ((acpi_handle) Node);
736 ------------------------------------------------------*/
739 /*******************************************************************************
741 * FUNCTION: acpi_ns_terminate
747 * DESCRIPTION: free memory allocated for namespace and ACPI table storage.
749 ******************************************************************************/
751 void acpi_ns_terminate(void)
753 union acpi_operand_object
*obj_desc
;
755 ACPI_FUNCTION_TRACE("ns_terminate");
758 * 1) Free the entire namespace -- all nodes and objects
760 * Delete all object descriptors attached to namepsace nodes
762 acpi_ns_delete_namespace_subtree(acpi_gbl_root_node
);
764 /* Detach any objects attached to the root */
766 obj_desc
= acpi_ns_get_attached_object(acpi_gbl_root_node
);
768 acpi_ns_detach_object(acpi_gbl_root_node
);
771 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "Namespace freed\n"));
774 * 2) Now we can delete the ACPI tables
776 acpi_tb_delete_all_tables();
777 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "ACPI Tables freed\n"));
782 /*******************************************************************************
784 * FUNCTION: acpi_ns_opens_scope
786 * PARAMETERS: Type - A valid namespace type
788 * RETURN: NEWSCOPE if the passed type "opens a name scope" according
789 * to the ACPI specification, else 0
791 ******************************************************************************/
793 u32
acpi_ns_opens_scope(acpi_object_type type
)
795 ACPI_FUNCTION_TRACE_STR("ns_opens_scope", acpi_ut_get_type_name(type
));
797 if (!acpi_ut_valid_object_type(type
)) {
798 /* type code out of range */
800 ACPI_WARNING((AE_INFO
, "Invalid Object Type %X", type
));
801 return_UINT32(ACPI_NS_NORMAL
);
804 return_UINT32(((u32
) acpi_gbl_ns_properties
[type
]) & ACPI_NS_NEWSCOPE
);
807 /*******************************************************************************
809 * FUNCTION: acpi_ns_get_node_by_path
811 * PARAMETERS: *Pathname - Name to be found, in external (ASL) format. The
812 * \ (backslash) and ^ (carat) prefixes, and the
813 * . (period) to separate segments are supported.
814 * start_node - Root of subtree to be searched, or NS_ALL for the
815 * root of the name space. If Name is fully
816 * qualified (first s8 is '\'), the passed value
817 * of Scope will not be accessed.
818 * Flags - Used to indicate whether to perform upsearch or
820 * return_node - Where the Node is returned
822 * DESCRIPTION: Look up a name relative to a given scope and return the
823 * corresponding Node. NOTE: Scope can be null.
825 * MUTEX: Locks namespace
827 ******************************************************************************/
830 acpi_ns_get_node_by_path(char *pathname
,
831 struct acpi_namespace_node
*start_node
,
832 u32 flags
, struct acpi_namespace_node
**return_node
)
834 union acpi_generic_state scope_info
;
836 char *internal_path
= NULL
;
838 ACPI_FUNCTION_TRACE_PTR("ns_get_node_by_path", pathname
);
841 /* Convert path to internal representation */
843 status
= acpi_ns_internalize_name(pathname
, &internal_path
);
844 if (ACPI_FAILURE(status
)) {
845 return_ACPI_STATUS(status
);
849 /* Must lock namespace during lookup */
851 status
= acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE
);
852 if (ACPI_FAILURE(status
)) {
856 /* Setup lookup scope (search starting point) */
858 scope_info
.scope
.node
= start_node
;
860 /* Lookup the name in the namespace */
862 status
= acpi_ns_lookup(&scope_info
, internal_path
,
863 ACPI_TYPE_ANY
, ACPI_IMODE_EXECUTE
,
864 (flags
| ACPI_NS_DONT_OPEN_SCOPE
),
866 if (ACPI_FAILURE(status
)) {
867 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "%s, %s\n",
869 acpi_format_exception(status
)));
872 (void)acpi_ut_release_mutex(ACPI_MTX_NAMESPACE
);
876 ACPI_MEM_FREE(internal_path
);
878 return_ACPI_STATUS(status
);
881 /*******************************************************************************
883 * FUNCTION: acpi_ns_get_parent_node
885 * PARAMETERS: Node - Current table entry
887 * RETURN: Parent entry of the given entry
889 * DESCRIPTION: Obtain the parent entry for a given entry in the namespace.
891 ******************************************************************************/
893 struct acpi_namespace_node
*acpi_ns_get_parent_node(struct acpi_namespace_node
896 ACPI_FUNCTION_ENTRY();
903 * Walk to the end of this peer list. The last entry is marked with a flag
904 * and the peer pointer is really a pointer back to the parent. This saves
905 * putting a parent back pointer in each and every named object!
907 while (!(node
->flags
& ANOBJ_END_OF_PEER_LIST
)) {
914 /*******************************************************************************
916 * FUNCTION: acpi_ns_get_next_valid_node
918 * PARAMETERS: Node - Current table entry
920 * RETURN: Next valid Node in the linked node list. NULL if no more valid
923 * DESCRIPTION: Find the next valid node within a name table.
924 * Useful for implementing NULL-end-of-list loops.
926 ******************************************************************************/
928 struct acpi_namespace_node
*acpi_ns_get_next_valid_node(struct
933 /* If we are at the end of this peer list, return NULL */
935 if (node
->flags
& ANOBJ_END_OF_PEER_LIST
) {
939 /* Otherwise just return the next peer */
944 #ifdef ACPI_OBSOLETE_FUNCTIONS
945 /*******************************************************************************
947 * FUNCTION: acpi_ns_find_parent_name
949 * PARAMETERS: *child_node - Named Obj whose name is to be found
951 * RETURN: The ACPI name
953 * DESCRIPTION: Search for the given obj in its parent scope and return the
954 * name segment, or "????" if the parent name can't be found
955 * (which "should not happen").
957 ******************************************************************************/
959 acpi_name
acpi_ns_find_parent_name(struct acpi_namespace_node
* child_node
)
961 struct acpi_namespace_node
*parent_node
;
963 ACPI_FUNCTION_TRACE("ns_find_parent_name");
966 /* Valid entry. Get the parent Node */
968 parent_node
= acpi_ns_get_parent_node(child_node
);
970 ACPI_DEBUG_PRINT((ACPI_DB_EXEC
,
971 "Parent of %p [%4.4s] is %p [%4.4s]\n",
973 acpi_ut_get_node_name(child_node
),
975 acpi_ut_get_node_name(parent_node
)));
977 if (parent_node
->name
.integer
) {
978 return_VALUE((acpi_name
) parent_node
->name
.
983 ACPI_DEBUG_PRINT((ACPI_DB_EXEC
,
984 "Unable to find parent of %p (%4.4s)\n",
986 acpi_ut_get_node_name(child_node
)));
989 return_VALUE(ACPI_UNKNOWN_NAME
);