scan.c 36.5 KB
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/*
 * scan.c - support for transforming the ACPI namespace into individual objects
 */

#include <linux/module.h>
#include <linux/init.h>
#include <linux/acpi.h>

#include <acpi/acpi_drivers.h>
#include <acpi/acinterp.h>	/* for acpi_ex_eisa_id_to_string() */

#define _COMPONENT		ACPI_BUS_COMPONENT
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ACPI_MODULE_NAME("scan")
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#define STRUCT_TO_INT(s)	(*((int*)&s))
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extern struct acpi_device *acpi_root;
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#define ACPI_BUS_CLASS			"system_bus"
#define ACPI_BUS_HID			"ACPI_BUS"
#define ACPI_BUS_DRIVER_NAME		"ACPI Bus Driver"
#define ACPI_BUS_DEVICE_NAME		"System Bus"

static LIST_HEAD(acpi_device_list);
DEFINE_SPINLOCK(acpi_device_lock);
LIST_HEAD(acpi_wakeup_device_list);


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static void acpi_device_release(struct kobject *kobj)
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{
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	struct acpi_device *dev = container_of(kobj, struct acpi_device, kobj);
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	kfree(dev->pnp.cid_list);
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	kfree(dev);
}

struct acpi_device_attribute {
	struct attribute attr;
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	 ssize_t(*show) (struct acpi_device *, char *);
	 ssize_t(*store) (struct acpi_device *, const char *, size_t);
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};

typedef void acpi_device_sysfs_files(struct kobject *,
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				     const struct attribute *);
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static void setup_sys_fs_device_files(struct acpi_device *dev,
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				      acpi_device_sysfs_files * func);
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#define create_sysfs_device_files(dev)	\
	setup_sys_fs_device_files(dev, (acpi_device_sysfs_files *)&sysfs_create_file)
#define remove_sysfs_device_files(dev)	\
	setup_sys_fs_device_files(dev, (acpi_device_sysfs_files *)&sysfs_remove_file)

#define to_acpi_device(n) container_of(n, struct acpi_device, kobj)
#define to_handle_attr(n) container_of(n, struct acpi_device_attribute, attr);

static ssize_t acpi_device_attr_show(struct kobject *kobj,
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				     struct attribute *attr, char *buf)
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{
	struct acpi_device *device = to_acpi_device(kobj);
	struct acpi_device_attribute *attribute = to_handle_attr(attr);
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	return attribute->show ? attribute->show(device, buf) : -EIO;
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}
static ssize_t acpi_device_attr_store(struct kobject *kobj,
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				      struct attribute *attr, const char *buf,
				      size_t len)
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{
	struct acpi_device *device = to_acpi_device(kobj);
	struct acpi_device_attribute *attribute = to_handle_attr(attr);
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	return attribute->store ? attribute->store(device, buf, len) : -EIO;
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}

static struct sysfs_ops acpi_device_sysfs_ops = {
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	.show = acpi_device_attr_show,
	.store = acpi_device_attr_store,
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};

static struct kobj_type ktype_acpi_ns = {
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	.sysfs_ops = &acpi_device_sysfs_ops,
	.release = acpi_device_release,
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};

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static int namespace_uevent(struct kset *kset, struct kobject *kobj,
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			     char **envp, int num_envp, char *buffer,
			     int buffer_size)
{
	struct acpi_device *dev = to_acpi_device(kobj);
	int i = 0;
	int len = 0;

	if (!dev->driver)
		return 0;

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	if (add_uevent_var(envp, num_envp, &i, buffer, buffer_size, &len,
			   "PHYSDEVDRIVER=%s", dev->driver->name))
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		return -ENOMEM;

	envp[i] = NULL;

	return 0;
}

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static struct kset_uevent_ops namespace_uevent_ops = {
	.uevent = &namespace_uevent,
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};

static struct kset acpi_namespace_kset = {
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	.kobj = {
		 .name = "namespace",
		 },
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	.subsys = &acpi_subsys,
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	.ktype = &ktype_acpi_ns,
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	.uevent_ops = &namespace_uevent_ops,
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};

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static void acpi_device_register(struct acpi_device *device,
				 struct acpi_device *parent)
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{
	/*
	 * Linkage
	 * -------
	 * Link this device to its parent and siblings.
	 */
	INIT_LIST_HEAD(&device->children);
	INIT_LIST_HEAD(&device->node);
	INIT_LIST_HEAD(&device->g_list);
	INIT_LIST_HEAD(&device->wakeup_list);

	spin_lock(&acpi_device_lock);
	if (device->parent) {
		list_add_tail(&device->node, &device->parent->children);
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		list_add_tail(&device->g_list, &device->parent->g_list);
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	} else
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		list_add_tail(&device->g_list, &acpi_device_list);
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	if (device->wakeup.flags.valid)
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		list_add_tail(&device->wakeup_list, &acpi_wakeup_device_list);
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	spin_unlock(&acpi_device_lock);

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	strlcpy(device->kobj.name, device->pnp.bus_id, KOBJ_NAME_LEN);
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	if (parent)
		device->kobj.parent = &parent->kobj;
	device->kobj.ktype = &ktype_acpi_ns;
	device->kobj.kset = &acpi_namespace_kset;
	kobject_register(&device->kobj);
	create_sysfs_device_files(device);
}

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static void acpi_device_unregister(struct acpi_device *device, int type)
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{
	spin_lock(&acpi_device_lock);
	if (device->parent) {
		list_del(&device->node);
		list_del(&device->g_list);
	} else
		list_del(&device->g_list);

	list_del(&device->wakeup_list);

	spin_unlock(&acpi_device_lock);

	acpi_detach_data(device->handle, acpi_bus_data_handler);
	remove_sysfs_device_files(device);
	kobject_unregister(&device->kobj);
}

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void acpi_bus_data_handler(acpi_handle handle, u32 function, void *context)
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{
	ACPI_FUNCTION_TRACE("acpi_bus_data_handler");

	/* TBD */

	return_VOID;
}

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static int acpi_bus_get_power_flags(struct acpi_device *device)
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{
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	acpi_status status = 0;
	acpi_handle handle = NULL;
	u32 i = 0;
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	ACPI_FUNCTION_TRACE("acpi_bus_get_power_flags");

	/*
	 * Power Management Flags
	 */
	status = acpi_get_handle(device->handle, "_PSC", &handle);
	if (ACPI_SUCCESS(status))
		device->power.flags.explicit_get = 1;
	status = acpi_get_handle(device->handle, "_IRC", &handle);
	if (ACPI_SUCCESS(status))
		device->power.flags.inrush_current = 1;

	/*
	 * Enumerate supported power management states
	 */
	for (i = ACPI_STATE_D0; i <= ACPI_STATE_D3; i++) {
		struct acpi_device_power_state *ps = &device->power.states[i];
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		char object_name[5] = { '_', 'P', 'R', '0' + i, '\0' };
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		/* Evaluate "_PRx" to se if power resources are referenced */
		acpi_evaluate_reference(device->handle, object_name, NULL,
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					&ps->resources);
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		if (ps->resources.count) {
			device->power.flags.power_resources = 1;
			ps->flags.valid = 1;
		}

		/* Evaluate "_PSx" to see if we can do explicit sets */
		object_name[2] = 'S';
		status = acpi_get_handle(device->handle, object_name, &handle);
		if (ACPI_SUCCESS(status)) {
			ps->flags.explicit_set = 1;
			ps->flags.valid = 1;
		}

		/* State is valid if we have some power control */
		if (ps->resources.count || ps->flags.explicit_set)
			ps->flags.valid = 1;

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		ps->power = -1;	/* Unknown - driver assigned */
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		ps->latency = -1;	/* Unknown - driver assigned */
	}

	/* Set defaults for D0 and D3 states (always valid) */
	device->power.states[ACPI_STATE_D0].flags.valid = 1;
	device->power.states[ACPI_STATE_D0].power = 100;
	device->power.states[ACPI_STATE_D3].flags.valid = 1;
	device->power.states[ACPI_STATE_D3].power = 0;

	/* TBD: System wake support and resource requirements. */

	device->power.state = ACPI_STATE_UNKNOWN;

	return_VALUE(0);
}

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int acpi_match_ids(struct acpi_device *device, char *ids)
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{
	if (device->flags.hardware_id)
		if (strstr(ids, device->pnp.hardware_id))
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			return 0;
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	if (device->flags.compatible_ids) {
		struct acpi_compatible_id_list *cid_list = device->pnp.cid_list;
		int i;

		/* compare multiple _CID entries against driver ids */
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		for (i = 0; i < cid_list->count; i++) {
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			if (strstr(ids, cid_list->id[i].value))
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				return 0;
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		}
	}
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	return -ENOENT;
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}

static acpi_status
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acpi_bus_extract_wakeup_device_power_package(struct acpi_device *device,
					     union acpi_object *package)
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{
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	int i = 0;
	union acpi_object *element = NULL;
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	if (!device || !package || (package->package.count < 2))
		return AE_BAD_PARAMETER;

	element = &(package->package.elements[0]);
	if (!element)
		return AE_BAD_PARAMETER;
	if (element->type == ACPI_TYPE_PACKAGE) {
		if ((element->package.count < 2) ||
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		    (element->package.elements[0].type !=
		     ACPI_TYPE_LOCAL_REFERENCE)
		    || (element->package.elements[1].type != ACPI_TYPE_INTEGER))
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			return AE_BAD_DATA;
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		device->wakeup.gpe_device =
		    element->package.elements[0].reference.handle;
		device->wakeup.gpe_number =
		    (u32) element->package.elements[1].integer.value;
	} else if (element->type == ACPI_TYPE_INTEGER) {
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		device->wakeup.gpe_number = element->integer.value;
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	} else
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		return AE_BAD_DATA;

	element = &(package->package.elements[1]);
	if (element->type != ACPI_TYPE_INTEGER) {
		return AE_BAD_DATA;
	}
	device->wakeup.sleep_state = element->integer.value;

	if ((package->package.count - 2) > ACPI_MAX_HANDLES) {
		return AE_NO_MEMORY;
	}
	device->wakeup.resources.count = package->package.count - 2;
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	for (i = 0; i < device->wakeup.resources.count; i++) {
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		element = &(package->package.elements[i + 2]);
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		if (element->type != ACPI_TYPE_ANY) {
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			return AE_BAD_DATA;
		}

		device->wakeup.resources.handles[i] = element->reference.handle;
	}

	return AE_OK;
}

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static int acpi_bus_get_wakeup_device_flags(struct acpi_device *device)
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{
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	acpi_status status = 0;
	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
	union acpi_object *package = NULL;
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	ACPI_FUNCTION_TRACE("acpi_bus_get_wakeup_flags");

	/* _PRW */
	status = acpi_evaluate_object(device->handle, "_PRW", NULL, &buffer);
	if (ACPI_FAILURE(status)) {
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		ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PRW"));
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		goto end;
	}

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	package = (union acpi_object *)buffer.pointer;
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	status = acpi_bus_extract_wakeup_device_power_package(device, package);
	if (ACPI_FAILURE(status)) {
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		ACPI_EXCEPTION((AE_INFO, status, "Extracting _PRW package"));
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		goto end;
	}

	acpi_os_free(buffer.pointer);

	device->wakeup.flags.valid = 1;
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	/* Power button, Lid switch always enable wakeup */
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	if (!acpi_match_ids(device, "PNP0C0D,PNP0C0C,PNP0C0E"))
		device->wakeup.flags.run_wake = 1;

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      end:
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	if (ACPI_FAILURE(status))
		device->flags.wake_capable = 0;
	return_VALUE(0);
}

/* --------------------------------------------------------------------------
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		ACPI sysfs device file support
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   -------------------------------------------------------------------------- */
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static ssize_t acpi_eject_store(struct acpi_device *device,
				const char *buf, size_t count);
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#define ACPI_DEVICE_ATTR(_name,_mode,_show,_store) \
static struct acpi_device_attribute acpi_device_attr_##_name = \
		__ATTR(_name, _mode, _show, _store)

ACPI_DEVICE_ATTR(eject, 0200, NULL, acpi_eject_store);

/**
 * setup_sys_fs_device_files - sets up the device files under device namespace
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 * @dev:	acpi_device object
 * @func:	function pointer to create or destroy the device file
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 */
static void
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setup_sys_fs_device_files(struct acpi_device *dev,
			  acpi_device_sysfs_files * func)
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{
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	acpi_status status;
	acpi_handle temp = NULL;
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	/*
	 * If device has _EJ0, 'eject' file is created that is used to trigger
	 * hot-removal function from userland.
	 */
	status = acpi_get_handle(dev->handle, "_EJ0", &temp);
	if (ACPI_SUCCESS(status))
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		(*(func)) (&dev->kobj, &acpi_device_attr_eject.attr);
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}

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static int acpi_eject_operation(acpi_handle handle, int lockable)
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{
	struct acpi_object_list arg_list;
	union acpi_object arg;
	acpi_status status = AE_OK;

	/*
	 * TBD: evaluate _PS3?
	 */

	if (lockable) {
		arg_list.count = 1;
		arg_list.pointer = &arg;
		arg.type = ACPI_TYPE_INTEGER;
		arg.integer.value = 0;
		acpi_evaluate_object(handle, "_LCK", &arg_list, NULL);
	}

	arg_list.count = 1;
	arg_list.pointer = &arg;
	arg.type = ACPI_TYPE_INTEGER;
	arg.integer.value = 1;

	/*
	 * TBD: _EJD support.
	 */

	status = acpi_evaluate_object(handle, "_EJ0", &arg_list, NULL);
	if (ACPI_FAILURE(status)) {
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		return (-ENODEV);
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	}

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	return (0);
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}

static ssize_t
acpi_eject_store(struct acpi_device *device, const char *buf, size_t count)
{
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	int result;
	int ret = count;
	int islockable;
	acpi_status status;
	acpi_handle handle;
	acpi_object_type type = 0;
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	if ((!count) || (buf[0] != '1')) {
		return -EINVAL;
	}
#ifndef FORCE_EJECT
	if (device->driver == NULL) {
		ret = -ENODEV;
		goto err;
	}
#endif
	status = acpi_get_type(device->handle, &type);
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	if (ACPI_FAILURE(status) || (!device->flags.ejectable)) {
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		ret = -ENODEV;
		goto err;
	}

	islockable = device->flags.lockable;
	handle = device->handle;

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	result = acpi_bus_trim(device, 1);
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	if (!result)
		result = acpi_eject_operation(handle, islockable);

	if (result) {
		ret = -EBUSY;
	}
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      err:
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	return ret;
}

/* --------------------------------------------------------------------------
                              Performance Management
   -------------------------------------------------------------------------- */

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static int acpi_bus_get_perf_flags(struct acpi_device *device)
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{
	device->performance.state = ACPI_STATE_UNKNOWN;
	return 0;
}

/* --------------------------------------------------------------------------
                                 Driver Management
   -------------------------------------------------------------------------- */

static LIST_HEAD(acpi_bus_drivers);

/**
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 * acpi_bus_match - match device IDs to driver's supported IDs
 * @device: the device that we are trying to match to a driver
 * @driver: driver whose device id table is being checked
 *
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 * Checks the device's hardware (_HID) or compatible (_CID) ids to see if it
 * matches the specified driver's criteria.
 */
static int
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acpi_bus_match(struct acpi_device *device, struct acpi_driver *driver)
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{
	if (driver && driver->ops.match)
		return driver->ops.match(device, driver);
	return acpi_match_ids(device, driver->ids);
}

/**
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 * acpi_bus_driver_init - add a device to a driver
 * @device: the device to add and initialize
 * @driver: driver for the device
 *
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 * Used to initialize a device via its device driver.  Called whenever a 
 * driver is bound to a device.  Invokes the driver's add() and start() ops.
 */
static int
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acpi_bus_driver_init(struct acpi_device *device, struct acpi_driver *driver)
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{
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	int result = 0;
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	ACPI_FUNCTION_TRACE("acpi_bus_driver_init");

	if (!device || !driver)
		return_VALUE(-EINVAL);

	if (!driver->ops.add)
		return_VALUE(-ENOSYS);

	result = driver->ops.add(device);
	if (result) {
		device->driver = NULL;
		acpi_driver_data(device) = NULL;
		return_VALUE(result);
	}

	device->driver = driver;

	/*
	 * TBD - Configuration Management: Assign resources to device based
	 * upon possible configuration and currently allocated resources.
	 */

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	ACPI_DEBUG_PRINT((ACPI_DB_INFO,
			  "Driver successfully bound to device\n"));
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	return_VALUE(0);
}

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static int acpi_start_single_object(struct acpi_device *device)
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{
	int result = 0;
	struct acpi_driver *driver;

	ACPI_FUNCTION_TRACE("acpi_start_single_object");

	if (!(driver = device->driver))
		return_VALUE(0);

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	if (driver->ops.start) {
		result = driver->ops.start(device);
		if (result && driver->ops.remove)
			driver->ops.remove(device, ACPI_BUS_REMOVAL_NORMAL);
	}

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	return_VALUE(result);
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}

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static void acpi_driver_attach(struct acpi_driver *drv)
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{
L
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539
	struct list_head *node, *next;
L
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540 541 542 543 544

	ACPI_FUNCTION_TRACE("acpi_driver_attach");

	spin_lock(&acpi_device_lock);
	list_for_each_safe(node, next, &acpi_device_list) {
L
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		struct acpi_device *dev =
		    container_of(node, struct acpi_device, g_list);
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		if (dev->driver || !dev->status.present)
			continue;
		spin_unlock(&acpi_device_lock);

		if (!acpi_bus_match(dev, drv)) {
			if (!acpi_bus_driver_init(dev, drv)) {
554
				acpi_start_single_object(dev);
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555
				atomic_inc(&drv->references);
L
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				ACPI_DEBUG_PRINT((ACPI_DB_INFO,
						  "Found driver [%s] for device [%s]\n",
L
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						  drv->name, dev->pnp.bus_id));
			}
		}
		spin_lock(&acpi_device_lock);
	}
	spin_unlock(&acpi_device_lock);
}

566
static void acpi_driver_detach(struct acpi_driver *drv)
L
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{
L
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	struct list_head *node, *next;
L
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569 570 571 572

	ACPI_FUNCTION_TRACE("acpi_driver_detach");

	spin_lock(&acpi_device_lock);
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	list_for_each_safe(node, next, &acpi_device_list) {
		struct acpi_device *dev =
		    container_of(node, struct acpi_device, g_list);
L
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		if (dev->driver == drv) {
			spin_unlock(&acpi_device_lock);
			if (drv->ops.remove)
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				drv->ops.remove(dev, ACPI_BUS_REMOVAL_NORMAL);
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			spin_lock(&acpi_device_lock);
			dev->driver = NULL;
			dev->driver_data = NULL;
			atomic_dec(&drv->references);
		}
	}
	spin_unlock(&acpi_device_lock);
}

/**
591 592 593
 * acpi_bus_register_driver - register a driver with the ACPI bus
 * @driver: driver being registered
 *
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 * Registers a driver with the ACPI bus.  Searches the namespace for all
595 596
 * devices that match the driver's criteria and binds.  Returns zero for
 * success or a negative error status for failure.
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 */
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int acpi_bus_register_driver(struct acpi_driver *driver)
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{
	ACPI_FUNCTION_TRACE("acpi_bus_register_driver");

	if (acpi_disabled)
		return_VALUE(-ENODEV);

	spin_lock(&acpi_device_lock);
	list_add_tail(&driver->node, &acpi_bus_drivers);
	spin_unlock(&acpi_device_lock);
608
	acpi_driver_attach(driver);
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610
	return_VALUE(0);
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}

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EXPORT_SYMBOL(acpi_bus_register_driver);
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/**
616 617 618
 * acpi_bus_unregister_driver - unregisters a driver with the APIC bus
 * @driver: driver to unregister
 *
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 * Unregisters a driver with the ACPI bus.  Searches the namespace for all
 * devices that match the driver's criteria and unbinds.
 */
622
void acpi_bus_unregister_driver(struct acpi_driver *driver)
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{
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	acpi_driver_detach(driver);

	if (!atomic_read(&driver->references)) {
		spin_lock(&acpi_device_lock);
		list_del_init(&driver->node);
		spin_unlock(&acpi_device_lock);
	}
631
	return;
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}
L
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EXPORT_SYMBOL(acpi_bus_unregister_driver);

/**
637 638 639
 * acpi_bus_find_driver - check if there is a driver installed for the device
 * @device: device that we are trying to find a supporting driver for
 *
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 * Parses the list of registered drivers looking for a driver applicable for
 * the specified device.
 */
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static int acpi_bus_find_driver(struct acpi_device *device)
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{
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	int result = 0;
	struct list_head *node, *next;
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	ACPI_FUNCTION_TRACE("acpi_bus_find_driver");

	spin_lock(&acpi_device_lock);
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	list_for_each_safe(node, next, &acpi_bus_drivers) {
		struct acpi_driver *driver =
		    container_of(node, struct acpi_driver, node);
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		atomic_inc(&driver->references);
		spin_unlock(&acpi_device_lock);
		if (!acpi_bus_match(device, driver)) {
			result = acpi_bus_driver_init(device, driver);
			if (!result)
				goto Done;
		}
		atomic_dec(&driver->references);
		spin_lock(&acpi_device_lock);
	}
	spin_unlock(&acpi_device_lock);

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      Done:
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	return_VALUE(result);
}

/* --------------------------------------------------------------------------
                                 Device Enumeration
   -------------------------------------------------------------------------- */

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static int acpi_bus_get_flags(struct acpi_device *device)
L
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{
L
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	acpi_status status = AE_OK;
	acpi_handle temp = NULL;
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	ACPI_FUNCTION_TRACE("acpi_bus_get_flags");

	/* Presence of _STA indicates 'dynamic_status' */
	status = acpi_get_handle(device->handle, "_STA", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.dynamic_status = 1;

	/* Presence of _CID indicates 'compatible_ids' */
	status = acpi_get_handle(device->handle, "_CID", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.compatible_ids = 1;

	/* Presence of _RMV indicates 'removable' */
	status = acpi_get_handle(device->handle, "_RMV", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.removable = 1;

	/* Presence of _EJD|_EJ0 indicates 'ejectable' */
	status = acpi_get_handle(device->handle, "_EJD", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.ejectable = 1;
	else {
		status = acpi_get_handle(device->handle, "_EJ0", &temp);
		if (ACPI_SUCCESS(status))
			device->flags.ejectable = 1;
	}

	/* Presence of _LCK indicates 'lockable' */
	status = acpi_get_handle(device->handle, "_LCK", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.lockable = 1;

	/* Presence of _PS0|_PR0 indicates 'power manageable' */
	status = acpi_get_handle(device->handle, "_PS0", &temp);
	if (ACPI_FAILURE(status))
		status = acpi_get_handle(device->handle, "_PR0", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.power_manageable = 1;

	/* Presence of _PRW indicates wake capable */
	status = acpi_get_handle(device->handle, "_PRW", &temp);
	if (ACPI_SUCCESS(status))
		device->flags.wake_capable = 1;

	/* TBD: Peformance management */

	return_VALUE(0);
}

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static void acpi_device_get_busid(struct acpi_device *device,
				  acpi_handle handle, int type)
L
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{
L
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	char bus_id[5] = { '?', 0 };
	struct acpi_buffer buffer = { sizeof(bus_id), bus_id };
	int i = 0;
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735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765

	/*
	 * Bus ID
	 * ------
	 * The device's Bus ID is simply the object name.
	 * TBD: Shouldn't this value be unique (within the ACPI namespace)?
	 */
	switch (type) {
	case ACPI_BUS_TYPE_SYSTEM:
		strcpy(device->pnp.bus_id, "ACPI");
		break;
	case ACPI_BUS_TYPE_POWER_BUTTON:
		strcpy(device->pnp.bus_id, "PWRF");
		break;
	case ACPI_BUS_TYPE_SLEEP_BUTTON:
		strcpy(device->pnp.bus_id, "SLPF");
		break;
	default:
		acpi_get_name(handle, ACPI_SINGLE_NAME, &buffer);
		/* Clean up trailing underscores (if any) */
		for (i = 3; i > 1; i--) {
			if (bus_id[i] == '_')
				bus_id[i] = '\0';
			else
				break;
		}
		strcpy(device->pnp.bus_id, bus_id);
		break;
	}
}

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static void acpi_device_set_id(struct acpi_device *device,
			       struct acpi_device *parent, acpi_handle handle,
			       int type)
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{
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	struct acpi_device_info *info;
	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
	char *hid = NULL;
	char *uid = NULL;
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	struct acpi_compatible_id_list *cid_list = NULL;
L
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	acpi_status status;
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	switch (type) {
	case ACPI_BUS_TYPE_DEVICE:
		status = acpi_get_object_info(handle, &buffer);
		if (ACPI_FAILURE(status)) {
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			printk("%s: Error reading device info\n", __FUNCTION__);
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			return;
		}

		info = buffer.pointer;
		if (info->valid & ACPI_VALID_HID)
			hid = info->hardware_id.value;
		if (info->valid & ACPI_VALID_UID)
			uid = info->unique_id.value;
		if (info->valid & ACPI_VALID_CID)
			cid_list = &info->compatibility_id;
		if (info->valid & ACPI_VALID_ADR) {
			device->pnp.bus_address = info->address;
			device->flags.bus_address = 1;
		}
		break;
	case ACPI_BUS_TYPE_POWER:
		hid = ACPI_POWER_HID;
		break;
	case ACPI_BUS_TYPE_PROCESSOR:
		hid = ACPI_PROCESSOR_HID;
		break;
	case ACPI_BUS_TYPE_SYSTEM:
		hid = ACPI_SYSTEM_HID;
		break;
	case ACPI_BUS_TYPE_THERMAL:
		hid = ACPI_THERMAL_HID;
		break;
	case ACPI_BUS_TYPE_POWER_BUTTON:
		hid = ACPI_BUTTON_HID_POWERF;
		break;
	case ACPI_BUS_TYPE_SLEEP_BUTTON:
		hid = ACPI_BUTTON_HID_SLEEPF;
		break;
	}

	/* 
	 * \_SB
	 * ----
	 * Fix for the system root bus device -- the only root-level device.
	 */
B
Bob Moore 已提交
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	if (((acpi_handle)parent == ACPI_ROOT_OBJECT) && (type == ACPI_BUS_TYPE_DEVICE)) {
L
Linus Torvalds 已提交
823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846
		hid = ACPI_BUS_HID;
		strcpy(device->pnp.device_name, ACPI_BUS_DEVICE_NAME);
		strcpy(device->pnp.device_class, ACPI_BUS_CLASS);
	}

	if (hid) {
		strcpy(device->pnp.hardware_id, hid);
		device->flags.hardware_id = 1;
	}
	if (uid) {
		strcpy(device->pnp.unique_id, uid);
		device->flags.unique_id = 1;
	}
	if (cid_list) {
		device->pnp.cid_list = kmalloc(cid_list->size, GFP_KERNEL);
		if (device->pnp.cid_list)
			memcpy(device->pnp.cid_list, cid_list, cid_list->size);
		else
			printk(KERN_ERR "Memory allocation error\n");
	}

	acpi_os_free(buffer.pointer);
}

L
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static int acpi_device_set_context(struct acpi_device *device, int type)
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Linus Torvalds 已提交
848 849 850 851 852 853 854 855 856 857 858
{
	acpi_status status = AE_OK;
	int result = 0;
	/*
	 * Context
	 * -------
	 * Attach this 'struct acpi_device' to the ACPI object.  This makes
	 * resolutions from handle->device very efficient.  Note that we need
	 * to be careful with fixed-feature devices as they all attach to the
	 * root object.
	 */
L
Len Brown 已提交
859
	if (type != ACPI_BUS_TYPE_POWER_BUTTON &&
L
Linus Torvalds 已提交
860 861
	    type != ACPI_BUS_TYPE_SLEEP_BUTTON) {
		status = acpi_attach_data(device->handle,
L
Len Brown 已提交
862
					  acpi_bus_data_handler, device);
L
Linus Torvalds 已提交
863 864 865 866 867 868 869 870 871

		if (ACPI_FAILURE(status)) {
			printk("Error attaching device data\n");
			result = -ENODEV;
		}
	}
	return result;
}

L
Len Brown 已提交
872 873
static void acpi_device_get_debug_info(struct acpi_device *device,
				       acpi_handle handle, int type)
L
Linus Torvalds 已提交
874 875
{
#ifdef CONFIG_ACPI_DEBUG_OUTPUT
L
Len Brown 已提交
876 877 878
	char *type_string = NULL;
	char name[80] = { '?', '\0' };
	struct acpi_buffer buffer = { sizeof(name), name };
L
Linus Torvalds 已提交
879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911

	switch (type) {
	case ACPI_BUS_TYPE_DEVICE:
		type_string = "Device";
		acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
		break;
	case ACPI_BUS_TYPE_POWER:
		type_string = "Power Resource";
		acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
		break;
	case ACPI_BUS_TYPE_PROCESSOR:
		type_string = "Processor";
		acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
		break;
	case ACPI_BUS_TYPE_SYSTEM:
		type_string = "System";
		acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
		break;
	case ACPI_BUS_TYPE_THERMAL:
		type_string = "Thermal Zone";
		acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
		break;
	case ACPI_BUS_TYPE_POWER_BUTTON:
		type_string = "Power Button";
		sprintf(name, "PWRB");
		break;
	case ACPI_BUS_TYPE_SLEEP_BUTTON:
		type_string = "Sleep Button";
		sprintf(name, "SLPB");
		break;
	}

	printk(KERN_DEBUG "Found %s %s [%p]\n", type_string, name, handle);
L
Len Brown 已提交
912
#endif				/*CONFIG_ACPI_DEBUG_OUTPUT */
L
Linus Torvalds 已提交
913 914
}

L
Len Brown 已提交
915
static int acpi_bus_remove(struct acpi_device *dev, int rmdevice)
L
Linus Torvalds 已提交
916
{
L
Len Brown 已提交
917 918 919
	int result = 0;
	struct acpi_driver *driver;

L
Linus Torvalds 已提交
920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951
	ACPI_FUNCTION_TRACE("acpi_bus_remove");

	if (!dev)
		return_VALUE(-EINVAL);

	driver = dev->driver;

	if ((driver) && (driver->ops.remove)) {

		if (driver->ops.stop) {
			result = driver->ops.stop(dev, ACPI_BUS_REMOVAL_EJECT);
			if (result)
				return_VALUE(result);
		}

		result = dev->driver->ops.remove(dev, ACPI_BUS_REMOVAL_EJECT);
		if (result) {
			return_VALUE(result);
		}

		atomic_dec(&dev->driver->references);
		dev->driver = NULL;
		acpi_driver_data(dev) = NULL;
	}

	if (!rmdevice)
		return_VALUE(0);

	if (dev->flags.bus_address) {
		if ((dev->parent) && (dev->parent->ops.unbind))
			dev->parent->ops.unbind(dev);
	}
L
Len Brown 已提交
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L
Linus Torvalds 已提交
953 954 955 956 957
	acpi_device_unregister(dev, ACPI_BUS_REMOVAL_EJECT);

	return_VALUE(0);
}

958
static int
L
Len Brown 已提交
959 960
acpi_add_single_object(struct acpi_device **child,
		       struct acpi_device *parent, acpi_handle handle, int type)
L
Linus Torvalds 已提交
961
{
L
Len Brown 已提交
962 963
	int result = 0;
	struct acpi_device *device = NULL;
L
Linus Torvalds 已提交
964

965
	ACPI_FUNCTION_TRACE("acpi_add_single_object");
L
Linus Torvalds 已提交
966 967 968 969 970 971

	if (!child)
		return_VALUE(-EINVAL);

	device = kmalloc(sizeof(struct acpi_device), GFP_KERNEL);
	if (!device) {
972
		ACPI_ERROR((AE_INFO, "Memory allocation error"));
L
Linus Torvalds 已提交
973 974 975 976 977 978 979
		return_VALUE(-ENOMEM);
	}
	memset(device, 0, sizeof(struct acpi_device));

	device->handle = handle;
	device->parent = parent;

L
Len Brown 已提交
980
	acpi_device_get_busid(device, handle, type);
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981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996

	/*
	 * Flags
	 * -----
	 * Get prior to calling acpi_bus_get_status() so we know whether
	 * or not _STA is present.  Note that we only look for object
	 * handles -- cannot evaluate objects until we know the device is
	 * present and properly initialized.
	 */
	result = acpi_bus_get_flags(device);
	if (result)
		goto end;

	/*
	 * Status
	 * ------
997 998 999 1000 1001 1002
	 * See if the device is present.  We always assume that non-Device
	 * and non-Processor objects (e.g. thermal zones, power resources,
	 * etc.) are present, functioning, etc. (at least when parent object
	 * is present).  Note that _STA has a different meaning for some
	 * objects (e.g. power resources) so we need to be careful how we use
	 * it.
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1003 1004
	 */
	switch (type) {
1005
	case ACPI_BUS_TYPE_PROCESSOR:
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	case ACPI_BUS_TYPE_DEVICE:
		result = acpi_bus_get_status(device);
		if (ACPI_FAILURE(result) || !device->status.present) {
			result = -ENOENT;
			goto end;
		}
		break;
	default:
		STRUCT_TO_INT(device->status) = 0x0F;
		break;
	}

	/*
	 * Initialize Device
	 * -----------------
	 * TBD: Synch with Core's enumeration/initialization process.
	 */

	/*
	 * Hardware ID, Unique ID, & Bus Address
	 * -------------------------------------
	 */
L
Len Brown 已提交
1028
	acpi_device_set_id(device, parent, handle, type);
L
Linus Torvalds 已提交
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	/*
	 * Power Management
	 * ----------------
	 */
	if (device->flags.power_manageable) {
		result = acpi_bus_get_power_flags(device);
		if (result)
			goto end;
	}

L
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1040
	/*
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1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
	 * Wakeup device management
	 *-----------------------
	 */
	if (device->flags.wake_capable) {
		result = acpi_bus_get_wakeup_device_flags(device);
		if (result)
			goto end;
	}

	/*
	 * Performance Management
	 * ----------------------
	 */
	if (device->flags.performance_manageable) {
		result = acpi_bus_get_perf_flags(device);
		if (result)
			goto end;
	}

L
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1060
	if ((result = acpi_device_set_context(device, type)))
L
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1061 1062
		goto end;

L
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1063
	acpi_device_get_debug_info(device, handle, type);
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1064

L
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	acpi_device_register(device, parent);
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1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087

	/*
	 * Bind _ADR-Based Devices
	 * -----------------------
	 * If there's a a bus address (_ADR) then we utilize the parent's 
	 * 'bind' function (if exists) to bind the ACPI- and natively-
	 * enumerated device representations.
	 */
	if (device->flags.bus_address) {
		if (device->parent && device->parent->ops.bind)
			device->parent->ops.bind(device);
	}

	/*
	 * Locate & Attach Driver
	 * ----------------------
	 * If there's a hardware id (_HID) or compatible ids (_CID) we check
	 * to see if there's a driver installed for this kind of device.  Note
	 * that drivers can install before or after a device is enumerated.
	 *
	 * TBD: Assumes LDM provides driver hot-plug capability.
	 */
1088
	acpi_bus_find_driver(device);
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      end:
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	if (!result)
		*child = device;
	else {
1094
		kfree(device->pnp.cid_list);
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		kfree(device);
	}

	return_VALUE(result);
}

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static int acpi_bus_scan(struct acpi_device *start, struct acpi_bus_ops *ops)
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{
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	acpi_status status = AE_OK;
	struct acpi_device *parent = NULL;
	struct acpi_device *child = NULL;
	acpi_handle phandle = NULL;
	acpi_handle chandle = NULL;
	acpi_object_type type = 0;
	u32 level = 1;
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	ACPI_FUNCTION_TRACE("acpi_bus_scan");

	if (!start)
		return_VALUE(-EINVAL);

	parent = start;
	phandle = start->handle;
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	/*
	 * Parse through the ACPI namespace, identify all 'devices', and
	 * create a new 'struct acpi_device' for each.
	 */
	while ((level > 0) && parent) {

		status = acpi_get_next_object(ACPI_TYPE_ANY, phandle,
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					      chandle, &chandle);
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		/*
		 * If this scope is exhausted then move our way back up.
		 */
		if (ACPI_FAILURE(status)) {
			level--;
			chandle = phandle;
			acpi_get_parent(phandle, &phandle);
			if (parent->parent)
				parent = parent->parent;
			continue;
		}

		status = acpi_get_type(chandle, &type);
		if (ACPI_FAILURE(status))
			continue;

		/*
		 * If this is a scope object then parse it (depth-first).
		 */
		if (type == ACPI_TYPE_LOCAL_SCOPE) {
			level++;
			phandle = chandle;
			chandle = NULL;
			continue;
		}

		/*
		 * We're only interested in objects that we consider 'devices'.
		 */
		switch (type) {
		case ACPI_TYPE_DEVICE:
			type = ACPI_BUS_TYPE_DEVICE;
			break;
		case ACPI_TYPE_PROCESSOR:
			type = ACPI_BUS_TYPE_PROCESSOR;
			break;
		case ACPI_TYPE_THERMAL:
			type = ACPI_BUS_TYPE_THERMAL;
			break;
		case ACPI_TYPE_POWER:
			type = ACPI_BUS_TYPE_POWER;
			break;
		default:
			continue;
		}

1174 1175
		if (ops->acpi_op_add)
			status = acpi_add_single_object(&child, parent,
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							chandle, type);
		else
1178 1179
			status = acpi_bus_get_device(chandle, &child);

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		if (ACPI_FAILURE(status))
			continue;
1182 1183 1184 1185 1186 1187

		if (ops->acpi_op_start) {
			status = acpi_start_single_object(child);
			if (ACPI_FAILURE(status))
				continue;
		}
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		/*
		 * If the device is present, enabled, and functioning then
		 * parse its scope (depth-first).  Note that we need to
		 * represent absent devices to facilitate PnP notifications
		 * -- but only the subtree head (not all of its children,
		 * which will be enumerated when the parent is inserted).
		 *
		 * TBD: Need notifications and other detection mechanisms
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		 *      in place before we can fully implement this.
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		 */
		if (child->status.present) {
			status = acpi_get_next_object(ACPI_TYPE_ANY, chandle,
						      NULL, NULL);
			if (ACPI_SUCCESS(status)) {
				level++;
				phandle = chandle;
				chandle = NULL;
				parent = child;
			}
		}
	}

	return_VALUE(0);
}

1214
int
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acpi_bus_add(struct acpi_device **child,
	     struct acpi_device *parent, acpi_handle handle, int type)
1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230
{
	int result;
	struct acpi_bus_ops ops;

	ACPI_FUNCTION_TRACE("acpi_bus_add");

	result = acpi_add_single_object(child, parent, handle, type);
	if (!result) {
		memset(&ops, 0, sizeof(ops));
		ops.acpi_op_add = 1;
		result = acpi_bus_scan(*child, &ops);
	}
	return_VALUE(result);
}
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1232 1233
EXPORT_SYMBOL(acpi_bus_add);

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int acpi_bus_start(struct acpi_device *device)
1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
{
	int result;
	struct acpi_bus_ops ops;

	ACPI_FUNCTION_TRACE("acpi_bus_start");

	if (!device)
		return_VALUE(-EINVAL);

	result = acpi_start_single_object(device);
	if (!result) {
		memset(&ops, 0, sizeof(ops));
		ops.acpi_op_start = 1;
		result = acpi_bus_scan(device, &ops);
	}
	return_VALUE(result);
}
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1253
EXPORT_SYMBOL(acpi_bus_start);
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1255
int acpi_bus_trim(struct acpi_device *start, int rmdevice)
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{
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	acpi_status status;
	struct acpi_device *parent, *child;
	acpi_handle phandle, chandle;
	acpi_object_type type;
	u32 level = 1;
	int err = 0;

	parent = start;
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	phandle = start->handle;
	child = chandle = NULL;

	while ((level > 0) && parent && (!err)) {
		status = acpi_get_next_object(ACPI_TYPE_ANY, phandle,
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					      chandle, &chandle);
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		/*
		 * If this scope is exhausted then move our way back up.
		 */
		if (ACPI_FAILURE(status)) {
			level--;
			chandle = phandle;
			acpi_get_parent(phandle, &phandle);
			child = parent;
			parent = parent->parent;

			if (level == 0)
				err = acpi_bus_remove(child, rmdevice);
			else
				err = acpi_bus_remove(child, 1);

			continue;
		}

		status = acpi_get_type(chandle, &type);
		if (ACPI_FAILURE(status)) {
			continue;
		}
		/*
		 * If there is a device corresponding to chandle then
		 * parse it (depth-first).
		 */
		if (acpi_bus_get_device(chandle, &child) == 0) {
			level++;
			phandle = chandle;
			chandle = NULL;
			parent = child;
		}
		continue;
	}
	return err;
}
1308 1309
EXPORT_SYMBOL_GPL(acpi_bus_trim);

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static int acpi_bus_scan_fixed(struct acpi_device *root)
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{
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	int result = 0;
	struct acpi_device *device = NULL;
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	ACPI_FUNCTION_TRACE("acpi_bus_scan_fixed");

	if (!root)
		return_VALUE(-ENODEV);

	/*
	 * Enumerate all fixed-feature devices.
	 */
1324 1325
	if (acpi_fadt.pwr_button == 0) {
		result = acpi_add_single_object(&device, acpi_root,
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						NULL,
						ACPI_BUS_TYPE_POWER_BUTTON);
1328 1329 1330
		if (!result)
			result = acpi_start_single_object(device);
	}
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1332 1333
	if (acpi_fadt.sleep_button == 0) {
		result = acpi_add_single_object(&device, acpi_root,
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						NULL,
						ACPI_BUS_TYPE_SLEEP_BUTTON);
1336 1337 1338
		if (!result)
			result = acpi_start_single_object(device);
	}
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	return_VALUE(result);
}

1343

1344
static inline struct acpi_device * to_acpi_dev(struct device * dev)
1345 1346 1347 1348 1349
{
	return container_of(dev, struct acpi_device, dev);
}


1350
static int root_suspend(struct acpi_device * acpi_dev, pm_message_t state)
1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383
{
	struct acpi_device * dev, * next;
	int result;

	spin_lock(&acpi_device_lock);
	list_for_each_entry_safe_reverse(dev, next, &acpi_device_list, g_list) {
		if (dev->driver && dev->driver->ops.suspend) {
			spin_unlock(&acpi_device_lock);
			result = dev->driver->ops.suspend(dev, 0);
			if (result) {
				printk(KERN_ERR PREFIX "[%s - %s] Suspend failed: %d\n",
				       acpi_device_name(dev),
				       acpi_device_bid(dev), result);
			}
			spin_lock(&acpi_device_lock);
		}
	}
	spin_unlock(&acpi_device_lock);
	return 0;
}


static int acpi_device_suspend(struct device * dev, pm_message_t state)
{
	struct acpi_device * acpi_dev = to_acpi_dev(dev);

	/*
	 * For now, we should only register 1 generic device -
	 * the ACPI root device - and from there, we walk the
	 * tree of ACPI devices to suspend each one using the
	 * ACPI driver methods.
	 */
	if (acpi_dev->handle == ACPI_ROOT_OBJECT)
1384
		root_suspend(acpi_dev, state);
1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
	return 0;
}



static int root_resume(struct acpi_device * acpi_dev)
{
	struct acpi_device * dev, * next;
	int result;

	spin_lock(&acpi_device_lock);
	list_for_each_entry_safe(dev, next, &acpi_device_list, g_list) {
		if (dev->driver && dev->driver->ops.resume) {
			spin_unlock(&acpi_device_lock);
			result = dev->driver->ops.resume(dev, 0);
			if (result) {
				printk(KERN_ERR PREFIX "[%s - %s] resume failed: %d\n",
				       acpi_device_name(dev),
				       acpi_device_bid(dev), result);
			}
			spin_lock(&acpi_device_lock);
		}
	}
	spin_unlock(&acpi_device_lock);
	return 0;
}


static int acpi_device_resume(struct device * dev)
{
	struct acpi_device * acpi_dev = to_acpi_dev(dev);

	/*
	 * For now, we should only register 1 generic device -
	 * the ACPI root device - and from there, we walk the
	 * tree of ACPI devices to resume each one using the
	 * ACPI driver methods.
	 */
	if (acpi_dev->handle == ACPI_ROOT_OBJECT)
		root_resume(acpi_dev);
	return 0;
}


struct bus_type acpi_bus_type = {
	.name		= "acpi",
	.suspend	= acpi_device_suspend,
	.resume		= acpi_device_resume,
};



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static int __init acpi_scan_init(void)
{
	int result;
1440
	struct acpi_bus_ops ops;
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	ACPI_FUNCTION_TRACE("acpi_scan_init");

	if (acpi_disabled)
		return_VALUE(0);

	kset_register(&acpi_namespace_kset);

1449 1450 1451 1452 1453 1454
	result = bus_register(&acpi_bus_type);
	if (result) {
		/* We don't want to quit even if we failed to add suspend/resume */
		printk(KERN_ERR PREFIX "Could not register bus type\n");
	}

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	/*
	 * Create the root device in the bus's device tree
	 */
1458
	result = acpi_add_single_object(&acpi_root, NULL, ACPI_ROOT_OBJECT,
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					ACPI_BUS_TYPE_SYSTEM);
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	if (result)
		goto Done;

1463
	result = acpi_start_single_object(acpi_root);
1464 1465 1466 1467 1468 1469 1470 1471 1472 1473
	if (result)
		goto Done;

	acpi_root->dev.bus = &acpi_bus_type;
	snprintf(acpi_root->dev.bus_id, BUS_ID_SIZE, "%s", acpi_bus_type.name);
	result = device_register(&acpi_root->dev);
	if (result) {
		/* We don't want to quit even if we failed to add suspend/resume */
		printk(KERN_ERR PREFIX "Could not register device\n");
	}
1474

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	/*
	 * Enumerate devices in the ACPI namespace.
	 */
	result = acpi_bus_scan_fixed(acpi_root);
1479 1480 1481 1482 1483 1484
	if (!result) {
		memset(&ops, 0, sizeof(ops));
		ops.acpi_op_add = 1;
		ops.acpi_op_start = 1;
		result = acpi_bus_scan(acpi_root, &ops);
	}
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	if (result)
		acpi_device_unregister(acpi_root, ACPI_BUS_REMOVAL_NORMAL);

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      Done:
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	return_VALUE(result);
}

subsys_initcall(acpi_scan_init);