ALSA: hda: Use LPIB for Dell Latitude 131L
[safe/jmp/linux-2.6] / drivers / acpi / acpica / nsxfname.c
index 9589fea..e611dd9 100644 (file)
 #include <acpi/acpi.h>
 #include "accommon.h"
 #include "acnamesp.h"
+#include "acparser.h"
+#include "amlcode.h"
 
 #define _COMPONENT          ACPI_NAMESPACE
 ACPI_MODULE_NAME("nsxfname")
 
+/* Local prototypes */
+static char *acpi_ns_copy_device_id(struct acpica_device_id *dest,
+                                   struct acpica_device_id *source,
+                                   char *string_area);
+
 /******************************************************************************
  *
  * FUNCTION:    acpi_get_handle
@@ -66,6 +73,7 @@ ACPI_MODULE_NAME("nsxfname")
  *              namespace handle.
  *
  ******************************************************************************/
+
 acpi_status
 acpi_get_handle(acpi_handle parent,
                acpi_string pathname, acpi_handle * ret_handle)
@@ -85,7 +93,7 @@ acpi_get_handle(acpi_handle parent,
        /* Convert a parent handle to a prefix node */
 
        if (parent) {
-               prefix_node = acpi_ns_map_handle_to_node(parent);
+               prefix_node = acpi_ns_validate_handle(parent);
                if (!prefix_node) {
                        return (AE_BAD_PARAMETER);
                }
@@ -106,7 +114,7 @@ acpi_get_handle(acpi_handle parent,
 
                if (!ACPI_STRCMP(pathname, ACPI_NS_ROOT_PATH)) {
                        *ret_handle =
-                           acpi_ns_convert_entry_to_handle(acpi_gbl_root_node);
+                           ACPI_CAST_PTR(acpi_handle, acpi_gbl_root_node);
                        return (AE_OK);
                }
        } else if (!prefix_node) {
@@ -121,7 +129,7 @@ acpi_get_handle(acpi_handle parent,
        status =
            acpi_ns_get_node(prefix_node, pathname, ACPI_NS_NO_UPSEARCH, &node);
        if (ACPI_SUCCESS(status)) {
-               *ret_handle = acpi_ns_convert_entry_to_handle(node);
+               *ret_handle = ACPI_CAST_PTR(acpi_handle, node);
        }
 
        return (status);
@@ -178,7 +186,7 @@ acpi_get_name(acpi_handle handle, u32 name_type, struct acpi_buffer * buffer)
                return (status);
        }
 
-       node = acpi_ns_map_handle_to_node(handle);
+       node = acpi_ns_validate_handle(handle);
        if (!node) {
                status = AE_BAD_PARAMETER;
                goto unlock_and_exit;
@@ -208,10 +216,38 @@ ACPI_EXPORT_SYMBOL(acpi_get_name)
 
 /******************************************************************************
  *
+ * FUNCTION:    acpi_ns_copy_device_id
+ *
+ * PARAMETERS:  Dest                - Pointer to the destination DEVICE_ID
+ *              Source              - Pointer to the source DEVICE_ID
+ *              string_area         - Pointer to where to copy the dest string
+ *
+ * RETURN:      Pointer to the next string area
+ *
+ * DESCRIPTION: Copy a single DEVICE_ID, including the string data.
+ *
+ ******************************************************************************/
+static char *acpi_ns_copy_device_id(struct acpica_device_id *dest,
+                                   struct acpica_device_id *source,
+                                   char *string_area)
+{
+       /* Create the destination DEVICE_ID */
+
+       dest->string = string_area;
+       dest->length = source->length;
+
+       /* Copy actual string and return a pointer to the next string area */
+
+       ACPI_MEMCPY(string_area, source->string, source->length);
+       return (string_area + source->length);
+}
+
+/******************************************************************************
+ *
  * FUNCTION:    acpi_get_object_info
  *
- * PARAMETERS:  Handle          - Object Handle
- *              Buffer          - Where the info is returned
+ * PARAMETERS:  Handle              - Object Handle
+ *              return_buffer       - Where the info is returned
  *
  * RETURN:      Status
  *
@@ -219,101 +255,130 @@ ACPI_EXPORT_SYMBOL(acpi_get_name)
  *              namespace node and possibly by running several standard
  *              control methods (Such as in the case of a device.)
  *
+ * For Device and Processor objects, run the Device _HID, _UID, _CID, _STA,
+ * _ADR, _sx_w, and _sx_d methods.
+ *
+ * Note: Allocates the return buffer, must be freed by the caller.
+ *
  ******************************************************************************/
+
 acpi_status
-acpi_get_object_info(acpi_handle handle, struct acpi_buffer * buffer)
+acpi_get_object_info(acpi_handle handle,
+                    struct acpi_device_info **return_buffer)
 {
-       acpi_status status;
        struct acpi_namespace_node *node;
        struct acpi_device_info *info;
-       struct acpi_device_info *return_info;
-       struct acpi_compatible_id_list *cid_list = NULL;
-       acpi_size size;
+       struct acpica_device_id_list *cid_list = NULL;
+       struct acpica_device_id *hid = NULL;
+       struct acpica_device_id *uid = NULL;
+       char *next_id_string;
+       acpi_object_type type;
+       acpi_name name;
+       u8 param_count = 0;
+       u8 valid = 0;
+       u32 info_size;
+       u32 i;
+       acpi_status status;
 
        /* Parameter validation */
 
-       if (!handle || !buffer) {
+       if (!handle || !return_buffer) {
                return (AE_BAD_PARAMETER);
        }
 
-       status = acpi_ut_validate_buffer(buffer);
-       if (ACPI_FAILURE(status)) {
-               return (status);
-       }
-
-       info = ACPI_ALLOCATE_ZEROED(sizeof(struct acpi_device_info));
-       if (!info) {
-               return (AE_NO_MEMORY);
-       }
-
        status = acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE);
        if (ACPI_FAILURE(status)) {
                goto cleanup;
        }
 
-       node = acpi_ns_map_handle_to_node(handle);
+       node = acpi_ns_validate_handle(handle);
        if (!node) {
                (void)acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
-               status = AE_BAD_PARAMETER;
-               goto cleanup;
+               return (AE_BAD_PARAMETER);
        }
 
-       /* Init return structure */
-
-       size = sizeof(struct acpi_device_info);
+       /* Get the namespace node data while the namespace is locked */
 
-       info->type = node->type;
-       info->name = node->name.integer;
-       info->valid = 0;
+       info_size = sizeof(struct acpi_device_info);
+       type = node->type;
+       name = node->name.integer;
 
        if (node->type == ACPI_TYPE_METHOD) {
-               info->param_count = node->object->method.param_count;
+               param_count = node->object->method.param_count;
        }
 
        status = acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
        if (ACPI_FAILURE(status)) {
-               goto cleanup;
+               return (status);
        }
 
-       /* If not a device, we are all done */
-
-       if (info->type == ACPI_TYPE_DEVICE) {
+       if ((type == ACPI_TYPE_DEVICE) || (type == ACPI_TYPE_PROCESSOR)) {
                /*
-                * Get extra info for ACPI Devices objects only:
-                * Run the Device _HID, _UID, _CID, _STA, _ADR and _sx_d methods.
+                * Get extra info for ACPI Device/Processor objects only:
+                * Run the Device _HID, _UID, and _CID methods.
                 *
                 * Note: none of these methods are required, so they may or may
-                * not be present for this device.  The Info->Valid bitfield is used
-                * to indicate which methods were found and ran successfully.
+                * not be present for this device. The Info->Valid bitfield is used
+                * to indicate which methods were found and run successfully.
                 */
 
                /* Execute the Device._HID method */
 
-               status = acpi_ut_execute_HID(node, &info->hardware_id);
+               status = acpi_ut_execute_HID(node, &hid);
                if (ACPI_SUCCESS(status)) {
-                       info->valid |= ACPI_VALID_HID;
+                       info_size += hid->length;
+                       valid |= ACPI_VALID_HID;
                }
 
                /* Execute the Device._UID method */
 
-               status = acpi_ut_execute_UID(node, &info->unique_id);
+               status = acpi_ut_execute_UID(node, &uid);
                if (ACPI_SUCCESS(status)) {
-                       info->valid |= ACPI_VALID_UID;
+                       info_size += uid->length;
+                       valid |= ACPI_VALID_UID;
                }
 
                /* Execute the Device._CID method */
 
                status = acpi_ut_execute_CID(node, &cid_list);
                if (ACPI_SUCCESS(status)) {
-                       size += cid_list->size;
-                       info->valid |= ACPI_VALID_CID;
+
+                       /* Add size of CID strings and CID pointer array */
+
+                       info_size +=
+                           (cid_list->list_size -
+                            sizeof(struct acpica_device_id_list));
+                       valid |= ACPI_VALID_CID;
                }
+       }
+
+       /*
+        * Now that we have the variable-length data, we can allocate the
+        * return buffer
+        */
+       info = ACPI_ALLOCATE_ZEROED(info_size);
+       if (!info) {
+               status = AE_NO_MEMORY;
+               goto cleanup;
+       }
+
+       /* Get the fixed-length data */
+
+       if ((type == ACPI_TYPE_DEVICE) || (type == ACPI_TYPE_PROCESSOR)) {
+               /*
+                * Get extra info for ACPI Device/Processor objects only:
+                * Run the _STA, _ADR and, sx_w, and _sx_d methods.
+                *
+                * Note: none of these methods are required, so they may or may
+                * not be present for this device. The Info->Valid bitfield is used
+                * to indicate which methods were found and run successfully.
+                */
 
                /* Execute the Device._STA method */
 
                status = acpi_ut_execute_STA(node, &info->current_status);
                if (ACPI_SUCCESS(status)) {
-                       info->valid |= ACPI_VALID_STA;
+                       valid |= ACPI_VALID_STA;
                }
 
                /* Execute the Device._ADR method */
@@ -321,36 +386,100 @@ acpi_get_object_info(acpi_handle handle, struct acpi_buffer * buffer)
                status = acpi_ut_evaluate_numeric_object(METHOD_NAME__ADR, node,
                                                         &info->address);
                if (ACPI_SUCCESS(status)) {
-                       info->valid |= ACPI_VALID_ADR;
+                       valid |= ACPI_VALID_ADR;
+               }
+
+               /* Execute the Device._sx_w methods */
+
+               status = acpi_ut_execute_power_methods(node,
+                                                      acpi_gbl_lowest_dstate_names,
+                                                      ACPI_NUM_sx_w_METHODS,
+                                                      info->lowest_dstates);
+               if (ACPI_SUCCESS(status)) {
+                       valid |= ACPI_VALID_SXWS;
                }
 
                /* Execute the Device._sx_d methods */
 
-               status = acpi_ut_execute_sxds(node, info->highest_dstates);
+               status = acpi_ut_execute_power_methods(node,
+                                                      acpi_gbl_highest_dstate_names,
+                                                      ACPI_NUM_sx_d_METHODS,
+                                                      info->highest_dstates);
                if (ACPI_SUCCESS(status)) {
-                       info->valid |= ACPI_VALID_SXDS;
+                       valid |= ACPI_VALID_SXDS;
                }
        }
 
-       /* Validate/Allocate/Clear caller buffer */
+       /*
+        * Create a pointer to the string area of the return buffer.
+        * Point to the end of the base struct acpi_device_info structure.
+        */
+       next_id_string = ACPI_CAST_PTR(char, info->compatible_id_list.ids);
+       if (cid_list) {
 
-       status = acpi_ut_initialize_buffer(buffer, size);
-       if (ACPI_FAILURE(status)) {
-               goto cleanup;
+               /* Point past the CID DEVICE_ID array */
+
+               next_id_string +=
+                   ((acpi_size) cid_list->count *
+                    sizeof(struct acpica_device_id));
        }
 
-       /* Populate the return buffer */
+       /*
+        * Copy the HID, UID, and CIDs to the return buffer. The variable-length
+        * strings are copied to the reserved area at the end of the buffer.
+        *
+        * For HID and CID, check if the ID is a PCI Root Bridge.
+        */
+       if (hid) {
+               next_id_string = acpi_ns_copy_device_id(&info->hardware_id,
+                                                       hid, next_id_string);
+
+               if (acpi_ut_is_pci_root_bridge(hid->string)) {
+                       info->flags |= ACPI_PCI_ROOT_BRIDGE;
+               }
+       }
 
-       return_info = buffer->pointer;
-       ACPI_MEMCPY(return_info, info, sizeof(struct acpi_device_info));
+       if (uid) {
+               next_id_string = acpi_ns_copy_device_id(&info->unique_id,
+                                                       uid, next_id_string);
+       }
 
        if (cid_list) {
-               ACPI_MEMCPY(&return_info->compatibility_id, cid_list,
-                           cid_list->size);
+               info->compatible_id_list.count = cid_list->count;
+               info->compatible_id_list.list_size = cid_list->list_size;
+
+               /* Copy each CID */
+
+               for (i = 0; i < cid_list->count; i++) {
+                       next_id_string =
+                           acpi_ns_copy_device_id(&info->compatible_id_list.
+                                                  ids[i], &cid_list->ids[i],
+                                                  next_id_string);
+
+                       if (acpi_ut_is_pci_root_bridge(cid_list->ids[i].string)) {
+                               info->flags |= ACPI_PCI_ROOT_BRIDGE;
+                       }
+               }
        }
 
+       /* Copy the fixed-length data */
+
+       info->info_size = info_size;
+       info->type = type;
+       info->name = name;
+       info->param_count = param_count;
+       info->valid = valid;
+
+       *return_buffer = info;
+       status = AE_OK;
+
       cleanup:
-       ACPI_FREE(info);
+       if (hid) {
+               ACPI_FREE(hid);
+       }
+       if (uid) {
+               ACPI_FREE(uid);
+       }
        if (cid_list) {
                ACPI_FREE(cid_list);
        }
@@ -358,3 +487,151 @@ acpi_get_object_info(acpi_handle handle, struct acpi_buffer * buffer)
 }
 
 ACPI_EXPORT_SYMBOL(acpi_get_object_info)
+
+/******************************************************************************
+ *
+ * FUNCTION:    acpi_install_method
+ *
+ * PARAMETERS:  Buffer         - An ACPI table containing one control method
+ *
+ * RETURN:      Status
+ *
+ * DESCRIPTION: Install a control method into the namespace. If the method
+ *              name already exists in the namespace, it is overwritten. The
+ *              input buffer must contain a valid DSDT or SSDT containing a
+ *              single control method.
+ *
+ ******************************************************************************/
+acpi_status acpi_install_method(u8 *buffer)
+{
+       struct acpi_table_header *table =
+           ACPI_CAST_PTR(struct acpi_table_header, buffer);
+       u8 *aml_buffer;
+       u8 *aml_start;
+       char *path;
+       struct acpi_namespace_node *node;
+       union acpi_operand_object *method_obj;
+       struct acpi_parse_state parser_state;
+       u32 aml_length;
+       u16 opcode;
+       u8 method_flags;
+       acpi_status status;
+
+       /* Parameter validation */
+
+       if (!buffer) {
+               return AE_BAD_PARAMETER;
+       }
+
+       /* Table must be a DSDT or SSDT */
+
+       if (!ACPI_COMPARE_NAME(table->signature, ACPI_SIG_DSDT) &&
+           !ACPI_COMPARE_NAME(table->signature, ACPI_SIG_SSDT)) {
+               return AE_BAD_HEADER;
+       }
+
+       /* First AML opcode in the table must be a control method */
+
+       parser_state.aml = buffer + sizeof(struct acpi_table_header);
+       opcode = acpi_ps_peek_opcode(&parser_state);
+       if (opcode != AML_METHOD_OP) {
+               return AE_BAD_PARAMETER;
+       }
+
+       /* Extract method information from the raw AML */
+
+       parser_state.aml += acpi_ps_get_opcode_size(opcode);
+       parser_state.pkg_end = acpi_ps_get_next_package_end(&parser_state);
+       path = acpi_ps_get_next_namestring(&parser_state);
+       method_flags = *parser_state.aml++;
+       aml_start = parser_state.aml;
+       aml_length = ACPI_PTR_DIFF(parser_state.pkg_end, aml_start);
+
+       /*
+        * Allocate resources up-front. We don't want to have to delete a new
+        * node from the namespace if we cannot allocate memory.
+        */
+       aml_buffer = ACPI_ALLOCATE(aml_length);
+       if (!aml_buffer) {
+               return AE_NO_MEMORY;
+       }
+
+       method_obj = acpi_ut_create_internal_object(ACPI_TYPE_METHOD);
+       if (!method_obj) {
+               ACPI_FREE(aml_buffer);
+               return AE_NO_MEMORY;
+       }
+
+       /* Lock namespace for acpi_ns_lookup, we may be creating a new node */
+
+       status = acpi_ut_acquire_mutex(ACPI_MTX_NAMESPACE);
+       if (ACPI_FAILURE(status)) {
+               goto error_exit;
+       }
+
+       /* The lookup either returns an existing node or creates a new one */
+
+       status =
+           acpi_ns_lookup(NULL, path, ACPI_TYPE_METHOD, ACPI_IMODE_LOAD_PASS1,
+                          ACPI_NS_DONT_OPEN_SCOPE | ACPI_NS_ERROR_IF_FOUND,
+                          NULL, &node);
+
+       (void)acpi_ut_release_mutex(ACPI_MTX_NAMESPACE);
+
+       if (ACPI_FAILURE(status)) {     /* ns_lookup */
+               if (status != AE_ALREADY_EXISTS) {
+                       goto error_exit;
+               }
+
+               /* Node existed previously, make sure it is a method node */
+
+               if (node->type != ACPI_TYPE_METHOD) {
+                       status = AE_TYPE;
+                       goto error_exit;
+               }
+       }
+
+       /* Copy the method AML to the local buffer */
+
+       ACPI_MEMCPY(aml_buffer, aml_start, aml_length);
+
+       /* Initialize the method object with the new method's information */
+
+       method_obj->method.aml_start = aml_buffer;
+       method_obj->method.aml_length = aml_length;
+
+       method_obj->method.param_count = (u8)
+           (method_flags & AML_METHOD_ARG_COUNT);
+
+       method_obj->method.method_flags = (u8)
+           (method_flags & ~AML_METHOD_ARG_COUNT);
+
+       if (method_flags & AML_METHOD_SERIALIZED) {
+               method_obj->method.sync_level = (u8)
+                   ((method_flags & AML_METHOD_SYNC_LEVEL) >> 4);
+       }
+
+       /*
+        * Now that it is complete, we can attach the new method object to
+        * the method Node (detaches/deletes any existing object)
+        */
+       status = acpi_ns_attach_object(node, method_obj, ACPI_TYPE_METHOD);
+
+       /*
+        * Flag indicates AML buffer is dynamic, must be deleted later.
+        * Must be set only after attach above.
+        */
+       node->flags |= ANOBJ_ALLOCATED_BUFFER;
+
+       /* Remove local reference to the method object */
+
+       acpi_ut_remove_reference(method_obj);
+       return status;
+
+error_exit:
+
+       ACPI_FREE(aml_buffer);
+       ACPI_FREE(method_obj);
+       return status;
+}
+ACPI_EXPORT_SYMBOL(acpi_install_method)