bus.c 31.7 KB
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/*
 * bus.c - bus driver management
 *
 * Copyright (c) 2002-3 Patrick Mochel
 * Copyright (c) 2002-3 Open Source Development Labs
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 * Copyright (c) 2007 Greg Kroah-Hartman <gregkh@suse.de>
 * Copyright (c) 2007 Novell Inc.
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 *
 * This file is released under the GPLv2
 *
 */

#include <linux/device.h>
#include <linux/module.h>
#include <linux/errno.h>
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#include <linux/slab.h>
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#include <linux/init.h>
#include <linux/string.h>
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#include <linux/mutex.h>
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#include <linux/sysfs.h>
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#include "base.h"
#include "power/power.h"

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/* /sys/devices/system */
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static struct kset *system_kset;
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#define to_bus_attr(_attr) container_of(_attr, struct bus_attribute, attr)

/*
 * sysfs bindings for drivers
 */

#define to_drv_attr(_attr) container_of(_attr, struct driver_attribute, attr)


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static int __must_check bus_rescan_devices_helper(struct device *dev,
						void *data);

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static struct bus_type *bus_get(struct bus_type *bus)
{
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	if (bus) {
		kset_get(&bus->p->subsys);
		return bus;
	}
	return NULL;
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}

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static void bus_put(struct bus_type *bus)
{
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	if (bus)
		kset_put(&bus->p->subsys);
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}

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static ssize_t drv_attr_show(struct kobject *kobj, struct attribute *attr,
			     char *buf)
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{
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	struct driver_attribute *drv_attr = to_drv_attr(attr);
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	struct driver_private *drv_priv = to_driver(kobj);
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	ssize_t ret = -EIO;
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	if (drv_attr->show)
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		ret = drv_attr->show(drv_priv->driver, buf);
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	return ret;
}

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static ssize_t drv_attr_store(struct kobject *kobj, struct attribute *attr,
			      const char *buf, size_t count)
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{
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	struct driver_attribute *drv_attr = to_drv_attr(attr);
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	struct driver_private *drv_priv = to_driver(kobj);
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	ssize_t ret = -EIO;
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	if (drv_attr->store)
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		ret = drv_attr->store(drv_priv->driver, buf, count);
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	return ret;
}

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static const struct sysfs_ops driver_sysfs_ops = {
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	.show	= drv_attr_show,
	.store	= drv_attr_store,
};

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static void driver_release(struct kobject *kobj)
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{
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	struct driver_private *drv_priv = to_driver(kobj);

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	pr_debug("driver: '%s': %s\n", kobject_name(kobj), __func__);
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	kfree(drv_priv);
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}

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static struct kobj_type driver_ktype = {
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	.sysfs_ops	= &driver_sysfs_ops,
	.release	= driver_release,
};

/*
 * sysfs bindings for buses
 */
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static ssize_t bus_attr_show(struct kobject *kobj, struct attribute *attr,
			     char *buf)
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{
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	struct bus_attribute *bus_attr = to_bus_attr(attr);
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	struct subsys_private *subsys_priv = to_subsys_private(kobj);
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	ssize_t ret = 0;

	if (bus_attr->show)
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		ret = bus_attr->show(subsys_priv->bus, buf);
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	return ret;
}

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static ssize_t bus_attr_store(struct kobject *kobj, struct attribute *attr,
			      const char *buf, size_t count)
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{
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	struct bus_attribute *bus_attr = to_bus_attr(attr);
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	struct subsys_private *subsys_priv = to_subsys_private(kobj);
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	ssize_t ret = 0;

	if (bus_attr->store)
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		ret = bus_attr->store(subsys_priv->bus, buf, count);
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	return ret;
}

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static const struct sysfs_ops bus_sysfs_ops = {
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	.show	= bus_attr_show,
	.store	= bus_attr_store,
};

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int bus_create_file(struct bus_type *bus, struct bus_attribute *attr)
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{
	int error;
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	if (bus_get(bus)) {
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		error = sysfs_create_file(&bus->p->subsys.kobj, &attr->attr);
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		bus_put(bus);
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	} else
		error = -EINVAL;
	return error;
}
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EXPORT_SYMBOL_GPL(bus_create_file);
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void bus_remove_file(struct bus_type *bus, struct bus_attribute *attr)
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{
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	if (bus_get(bus)) {
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		sysfs_remove_file(&bus->p->subsys.kobj, &attr->attr);
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		bus_put(bus);
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	}
}
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EXPORT_SYMBOL_GPL(bus_remove_file);
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static void bus_release(struct kobject *kobj)
{
	struct subsys_private *priv =
		container_of(kobj, typeof(*priv), subsys.kobj);
	struct bus_type *bus = priv->bus;

	kfree(priv);
	bus->p = NULL;
}

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static struct kobj_type bus_ktype = {
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	.sysfs_ops	= &bus_sysfs_ops,
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	.release	= bus_release,
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};

static int bus_uevent_filter(struct kset *kset, struct kobject *kobj)
{
	struct kobj_type *ktype = get_ktype(kobj);

	if (ktype == &bus_ktype)
		return 1;
	return 0;
}
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static const struct kset_uevent_ops bus_uevent_ops = {
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	.filter = bus_uevent_filter,
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};

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static struct kset *bus_kset;
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/* Manually detach a device from its associated driver. */
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static ssize_t unbind_store(struct device_driver *drv, const char *buf,
			    size_t count)
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{
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	struct bus_type *bus = bus_get(drv->bus);
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	struct device *dev;
	int err = -ENODEV;

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	dev = bus_find_device_by_name(bus, NULL, buf);
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	if (dev && dev->driver == drv) {
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		if (dev->parent)	/* Needed for USB */
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			device_lock(dev->parent);
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		device_release_driver(dev);
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		if (dev->parent)
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			device_unlock(dev->parent);
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		err = count;
	}
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	put_device(dev);
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	bus_put(bus);
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	return err;
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}
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static DRIVER_ATTR_WO(unbind);
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/*
 * Manually attach a device to a driver.
 * Note: the driver must want to bind to the device,
 * it is not possible to override the driver's id table.
 */
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static ssize_t bind_store(struct device_driver *drv, const char *buf,
			  size_t count)
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{
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	struct bus_type *bus = bus_get(drv->bus);
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	struct device *dev;
	int err = -ENODEV;

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	dev = bus_find_device_by_name(bus, NULL, buf);
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	if (dev && dev->driver == NULL && driver_match_device(drv, dev)) {
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		if (dev->parent)	/* Needed for USB */
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			device_lock(dev->parent);
		device_lock(dev);
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		err = driver_probe_device(drv, dev);
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		device_unlock(dev);
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		if (dev->parent)
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			device_unlock(dev->parent);
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		if (err > 0) {
			/* success */
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			err = count;
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		} else if (err == 0) {
			/* driver didn't accept device */
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			err = -ENODEV;
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		}
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	}
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	put_device(dev);
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	bus_put(bus);
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	return err;
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}
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static DRIVER_ATTR_WO(bind);
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static ssize_t show_drivers_autoprobe(struct bus_type *bus, char *buf)
{
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	return sprintf(buf, "%d\n", bus->p->drivers_autoprobe);
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}

static ssize_t store_drivers_autoprobe(struct bus_type *bus,
				       const char *buf, size_t count)
{
	if (buf[0] == '0')
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		bus->p->drivers_autoprobe = 0;
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	else
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		bus->p->drivers_autoprobe = 1;
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	return count;
}

static ssize_t store_drivers_probe(struct bus_type *bus,
				   const char *buf, size_t count)
{
	struct device *dev;

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	dev = bus_find_device_by_name(bus, NULL, buf);
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	if (!dev)
		return -ENODEV;
	if (bus_rescan_devices_helper(dev, NULL) != 0)
		return -EINVAL;
	return count;
}
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static struct device *next_device(struct klist_iter *i)
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{
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	struct klist_node *n = klist_next(i);
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	struct device *dev = NULL;
	struct device_private *dev_prv;

	if (n) {
		dev_prv = to_device_private_bus(n);
		dev = dev_prv->device;
	}
	return dev;
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}

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/**
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 * bus_for_each_dev - device iterator.
 * @bus: bus type.
 * @start: device to start iterating from.
 * @data: data for the callback.
 * @fn: function to be called for each device.
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 *
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 * Iterate over @bus's list of devices, and call @fn for each,
 * passing it @data. If @start is not NULL, we use that device to
 * begin iterating from.
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 *
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 * We check the return of @fn each time. If it returns anything
 * other than 0, we break out and return that value.
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 *
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 * NOTE: The device that returns a non-zero value is not retained
 * in any way, nor is its refcount incremented. If the caller needs
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 * to retain this data, it should do so, and increment the reference
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 * count in the supplied callback.
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 */
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int bus_for_each_dev(struct bus_type *bus, struct device *start,
		     void *data, int (*fn)(struct device *, void *))
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{
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	struct klist_iter i;
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	struct device *dev;
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	int error = 0;
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	if (!bus || !bus->p)
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		return -EINVAL;

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	klist_iter_init_node(&bus->p->klist_devices, &i,
			     (start ? &start->p->knode_bus : NULL));
	while ((dev = next_device(&i)) && !error)
		error = fn(dev, data);
	klist_iter_exit(&i);
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	return error;
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}
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EXPORT_SYMBOL_GPL(bus_for_each_dev);
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/**
 * bus_find_device - device iterator for locating a particular device.
 * @bus: bus type
 * @start: Device to begin with
 * @data: Data to pass to match function
 * @match: Callback function to check device
 *
 * This is similar to the bus_for_each_dev() function above, but it
 * returns a reference to a device that is 'found' for later use, as
 * determined by the @match callback.
 *
 * The callback should return 0 if the device doesn't match and non-zero
 * if it does.  If the callback returns non-zero, this function will
 * return to the caller and not iterate over any more devices.
 */
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struct device *bus_find_device(struct bus_type *bus,
			       struct device *start, void *data,
			       int (*match)(struct device *dev, void *data))
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{
	struct klist_iter i;
	struct device *dev;

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	if (!bus || !bus->p)
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		return NULL;

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	klist_iter_init_node(&bus->p->klist_devices, &i,
			     (start ? &start->p->knode_bus : NULL));
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	while ((dev = next_device(&i)))
		if (match(dev, data) && get_device(dev))
			break;
	klist_iter_exit(&i);
	return dev;
}
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EXPORT_SYMBOL_GPL(bus_find_device);
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static int match_name(struct device *dev, void *data)
{
	const char *name = data;

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	return sysfs_streq(name, dev_name(dev));
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}

/**
 * bus_find_device_by_name - device iterator for locating a particular device of a specific name
 * @bus: bus type
 * @start: Device to begin with
 * @name: name of the device to match
 *
 * This is similar to the bus_find_device() function above, but it handles
 * searching by a name automatically, no need to write another strcmp matching
 * function.
 */
struct device *bus_find_device_by_name(struct bus_type *bus,
				       struct device *start, const char *name)
{
	return bus_find_device(bus, start, (void *)name, match_name);
}
EXPORT_SYMBOL_GPL(bus_find_device_by_name);

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/**
 * subsys_find_device_by_id - find a device with a specific enumeration number
 * @subsys: subsystem
 * @id: index 'id' in struct device
 * @hint: device to check first
 *
 * Check the hint's next object and if it is a match return it directly,
 * otherwise, fall back to a full list search. Either way a reference for
 * the returned object is taken.
 */
struct device *subsys_find_device_by_id(struct bus_type *subsys, unsigned int id,
					struct device *hint)
{
	struct klist_iter i;
	struct device *dev;

	if (!subsys)
		return NULL;

	if (hint) {
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		klist_iter_init_node(&subsys->p->klist_devices, &i, &hint->p->knode_bus);
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		dev = next_device(&i);
		if (dev && dev->id == id && get_device(dev)) {
			klist_iter_exit(&i);
			return dev;
		}
		klist_iter_exit(&i);
	}

	klist_iter_init_node(&subsys->p->klist_devices, &i, NULL);
	while ((dev = next_device(&i))) {
		if (dev->id == id && get_device(dev)) {
			klist_iter_exit(&i);
			return dev;
		}
	}
	klist_iter_exit(&i);
	return NULL;
}
EXPORT_SYMBOL_GPL(subsys_find_device_by_id);

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static struct device_driver *next_driver(struct klist_iter *i)
418
{
419
	struct klist_node *n = klist_next(i);
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	struct driver_private *drv_priv;

	if (n) {
		drv_priv = container_of(n, struct driver_private, knode_bus);
		return drv_priv->driver;
	}
	return NULL;
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}

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/**
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 * bus_for_each_drv - driver iterator
 * @bus: bus we're dealing with.
 * @start: driver to start iterating on.
 * @data: data to pass to the callback.
 * @fn: function to call for each driver.
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 *
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 * This is nearly identical to the device iterator above.
 * We iterate over each driver that belongs to @bus, and call
 * @fn for each. If @fn returns anything but 0, we break out
 * and return it. If @start is not NULL, we use it as the head
 * of the list.
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 *
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 * NOTE: we don't return the driver that returns a non-zero
 * value, nor do we leave the reference count incremented for that
 * driver. If the caller needs to know that info, it must set it
 * in the callback. It must also be sure to increment the refcount
 * so it doesn't disappear before returning to the caller.
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 */
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int bus_for_each_drv(struct bus_type *bus, struct device_driver *start,
		     void *data, int (*fn)(struct device_driver *, void *))
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{
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	struct klist_iter i;
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	struct device_driver *drv;
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	int error = 0;
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	if (!bus)
		return -EINVAL;

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	klist_iter_init_node(&bus->p->klist_drivers, &i,
			     start ? &start->p->knode_bus : NULL);
	while ((drv = next_driver(&i)) && !error)
		error = fn(drv, data);
	klist_iter_exit(&i);
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	return error;
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}
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EXPORT_SYMBOL_GPL(bus_for_each_drv);
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static int device_add_attrs(struct bus_type *bus, struct device *dev)
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{
	int error = 0;
	int i;

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	if (!bus->dev_attrs)
		return 0;

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	for (i = 0; bus->dev_attrs[i].attr.name; i++) {
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		error = device_create_file(dev, &bus->dev_attrs[i]);
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		if (error) {
			while (--i >= 0)
				device_remove_file(dev, &bus->dev_attrs[i]);
			break;
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		}
	}
	return error;
}

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static void device_remove_attrs(struct bus_type *bus, struct device *dev)
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{
	int i;

	if (bus->dev_attrs) {
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		for (i = 0; bus->dev_attrs[i].attr.name; i++)
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			device_remove_file(dev, &bus->dev_attrs[i]);
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	}
}

/**
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 * bus_add_device - add device to bus
 * @dev: device being added
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 *
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 * - Add device's bus attributes.
 * - Create links to device's bus.
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 * - Add the device to its bus's list of devices.
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 */
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int bus_add_device(struct device *dev)
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{
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	struct bus_type *bus = bus_get(dev->bus);
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	int error = 0;

	if (bus) {
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		pr_debug("bus: '%s': add device %s\n", bus->name, dev_name(dev));
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		error = device_add_attrs(bus, dev);
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		if (error)
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			goto out_put;
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		error = device_add_groups(dev, bus->dev_groups);
		if (error)
			goto out_groups;
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		error = sysfs_create_link(&bus->p->devices_kset->kobj,
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						&dev->kobj, dev_name(dev));
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		if (error)
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			goto out_id;
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		error = sysfs_create_link(&dev->kobj,
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				&dev->bus->p->subsys.kobj, "subsystem");
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		if (error)
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			goto out_subsys;
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		klist_add_tail(&dev->p->knode_bus, &bus->p->klist_devices);
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	}
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	return 0;

out_subsys:
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	sysfs_remove_link(&bus->p->devices_kset->kobj, dev_name(dev));
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out_groups:
	device_remove_groups(dev, bus->dev_groups);
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out_id:
	device_remove_attrs(bus, dev);
out_put:
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	bus_put(dev->bus);
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	return error;
}

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/**
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 * bus_probe_device - probe drivers for a new device
 * @dev: device to probe
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 *
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 * - Automatically probe for a driver if the bus allows it.
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 */
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void bus_probe_device(struct device *dev)
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{
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	struct bus_type *bus = dev->bus;
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	struct subsys_interface *sif;
550
	int ret;
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	if (!bus)
		return;

	if (bus->p->drivers_autoprobe) {
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		ret = device_attach(dev);
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		WARN_ON(ret < 0);
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	}
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	mutex_lock(&bus->p->mutex);
	list_for_each_entry(sif, &bus->p->interfaces, node)
		if (sif->add_dev)
			sif->add_dev(dev, sif);
	mutex_unlock(&bus->p->mutex);
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}

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/**
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 * bus_remove_device - remove device from bus
 * @dev: device to be removed
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 *
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 * - Remove device from all interfaces.
 * - Remove symlink from bus' directory.
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 * - Delete device from bus's list.
 * - Detach from its driver.
 * - Drop reference taken in bus_add_device().
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 */
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void bus_remove_device(struct device *dev)
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{
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	struct bus_type *bus = dev->bus;
	struct subsys_interface *sif;

	if (!bus)
		return;

	mutex_lock(&bus->p->mutex);
	list_for_each_entry(sif, &bus->p->interfaces, node)
		if (sif->remove_dev)
			sif->remove_dev(dev, sif);
	mutex_unlock(&bus->p->mutex);

	sysfs_remove_link(&dev->kobj, "subsystem");
	sysfs_remove_link(&dev->bus->p->devices_kset->kobj,
			  dev_name(dev));
	device_remove_attrs(dev->bus, dev);
595
	device_remove_groups(dev, dev->bus->dev_groups);
596 597 598 599 600 601 602
	if (klist_node_attached(&dev->p->knode_bus))
		klist_del(&dev->p->knode_bus);

	pr_debug("bus: '%s': remove device %s\n",
		 dev->bus->name, dev_name(dev));
	device_release_driver(dev);
	bus_put(dev->bus);
L
Linus Torvalds 已提交
603 604
}

A
Andrew Morton 已提交
605
static int __must_check add_bind_files(struct device_driver *drv)
606
{
A
Andrew Morton 已提交
607 608 609 610 611 612 613 614 615
	int ret;

	ret = driver_create_file(drv, &driver_attr_unbind);
	if (ret == 0) {
		ret = driver_create_file(drv, &driver_attr_bind);
		if (ret)
			driver_remove_file(drv, &driver_attr_unbind);
	}
	return ret;
616 617 618 619 620 621 622
}

static void remove_bind_files(struct device_driver *drv)
{
	driver_remove_file(drv, &driver_attr_bind);
	driver_remove_file(drv, &driver_attr_unbind);
}
623

624 625 626 627
static BUS_ATTR(drivers_probe, S_IWUSR, NULL, store_drivers_probe);
static BUS_ATTR(drivers_autoprobe, S_IWUSR | S_IRUGO,
		show_drivers_autoprobe, store_drivers_autoprobe);

628 629 630 631
static int add_probe_files(struct bus_type *bus)
{
	int retval;

632
	retval = bus_create_file(bus, &bus_attr_drivers_probe);
633 634 635
	if (retval)
		goto out;

636
	retval = bus_create_file(bus, &bus_attr_drivers_autoprobe);
637
	if (retval)
638
		bus_remove_file(bus, &bus_attr_drivers_probe);
639 640 641 642 643 644
out:
	return retval;
}

static void remove_probe_files(struct bus_type *bus)
{
645 646
	bus_remove_file(bus, &bus_attr_drivers_autoprobe);
	bus_remove_file(bus, &bus_attr_drivers_probe);
647
}
L
Linus Torvalds 已提交
648

649 650
static ssize_t uevent_store(struct device_driver *drv, const char *buf,
			    size_t count)
651 652 653 654
{
	enum kobject_action action;

	if (kobject_action_type(buf, count, &action) == 0)
655
		kobject_uevent(&drv->p->kobj, action);
656 657
	return count;
}
658
static DRIVER_ATTR_WO(uevent);
659

L
Linus Torvalds 已提交
660
/**
661 662
 * bus_add_driver - Add a driver to the bus.
 * @drv: driver.
L
Linus Torvalds 已提交
663
 */
A
Andrew Morton 已提交
664
int bus_add_driver(struct device_driver *drv)
L
Linus Torvalds 已提交
665
{
666 667
	struct bus_type *bus;
	struct driver_private *priv;
L
Linus Torvalds 已提交
668 669
	int error = 0;

670
	bus = bus_get(drv->bus);
671
	if (!bus)
672
		return -EINVAL;
673

674
	pr_debug("bus: '%s': add driver %s\n", bus->name, drv->name);
675 676

	priv = kzalloc(sizeof(*priv), GFP_KERNEL);
677 678 679 680
	if (!priv) {
		error = -ENOMEM;
		goto out_put_bus;
	}
681 682 683
	klist_init(&priv->klist_devices, NULL, NULL);
	priv->driver = drv;
	drv->p = priv;
684 685 686
	priv->kobj.kset = bus->p->drivers_kset;
	error = kobject_init_and_add(&priv->kobj, &driver_ktype, NULL,
				     "%s", drv->name);
687
	if (error)
688
		goto out_unregister;
689

690
	klist_add_tail(&priv->knode_bus, &bus->p->klist_drivers);
691
	if (drv->bus->p->drivers_autoprobe) {
692 693 694 695
		error = driver_attach(drv);
		if (error)
			goto out_unregister;
	}
696 697
	module_add_driver(drv->owner, drv);

698 699 700
	error = driver_create_file(drv, &driver_attr_uevent);
	if (error) {
		printk(KERN_ERR "%s: uevent attr (%s) failed\n",
701
			__func__, drv->name);
702
	}
703
	error = driver_add_groups(drv, bus->drv_groups);
704 705
	if (error) {
		/* How the hell do we get out of this pickle? Give up */
706 707
		printk(KERN_ERR "%s: driver_create_groups(%s) failed\n",
			__func__, drv->name);
708
	}
709 710 711 712 713 714 715 716

	if (!drv->suppress_bind_attrs) {
		error = add_bind_files(drv);
		if (error) {
			/* Ditto */
			printk(KERN_ERR "%s: add_bind_files(%s) failed\n",
				__func__, drv->name);
		}
L
Linus Torvalds 已提交
717
	}
718

719
	return 0;
720

A
Andrew Morton 已提交
721
out_unregister:
722
	kobject_put(&priv->kobj);
723 724
	kfree(drv->p);
	drv->p = NULL;
A
Andrew Morton 已提交
725
out_put_bus:
G
Greg Kroah-Hartman 已提交
726
	bus_put(bus);
A
Andrew Morton 已提交
727
	return error;
L
Linus Torvalds 已提交
728 729 730
}

/**
731 732
 * bus_remove_driver - delete driver from bus's knowledge.
 * @drv: driver.
L
Linus Torvalds 已提交
733
 *
734 735 736
 * Detach the driver from the devices it controls, and remove
 * it from its bus's list of drivers. Finally, we drop the reference
 * to the bus we took in bus_add_driver().
L
Linus Torvalds 已提交
737
 */
738
void bus_remove_driver(struct device_driver *drv)
L
Linus Torvalds 已提交
739
{
740 741 742
	if (!drv->bus)
		return;

743 744
	if (!drv->suppress_bind_attrs)
		remove_bind_files(drv);
745
	driver_remove_groups(drv, drv->bus->drv_groups);
746
	driver_remove_file(drv, &driver_attr_uevent);
747
	klist_remove(&drv->p->knode_bus);
748
	pr_debug("bus: '%s': remove driver %s\n", drv->bus->name, drv->name);
749 750
	driver_detach(drv);
	module_remove_driver(drv);
751
	kobject_put(&drv->p->kobj);
G
Greg Kroah-Hartman 已提交
752
	bus_put(drv->bus);
L
Linus Torvalds 已提交
753 754 755
}

/* Helper for bus_rescan_devices's iter */
A
Andrew Morton 已提交
756
static int __must_check bus_rescan_devices_helper(struct device *dev,
757
						  void *data)
L
Linus Torvalds 已提交
758
{
A
Andrew Morton 已提交
759 760
	int ret = 0;

761 762
	if (!dev->driver) {
		if (dev->parent)	/* Needed for USB */
763
			device_lock(dev->parent);
A
Andrew Morton 已提交
764
		ret = device_attach(dev);
765
		if (dev->parent)
766
			device_unlock(dev->parent);
767
	}
A
Andrew Morton 已提交
768
	return ret < 0 ? ret : 0;
L
Linus Torvalds 已提交
769 770 771
}

/**
772 773
 * bus_rescan_devices - rescan devices on the bus for possible drivers
 * @bus: the bus to scan.
L
Linus Torvalds 已提交
774
 *
775 776 777
 * This function will look for devices on the bus with no driver
 * attached and rescan it against existing drivers to see if it matches
 * any by calling device_attach() for the unbound devices.
L
Linus Torvalds 已提交
778
 */
779
int bus_rescan_devices(struct bus_type *bus)
L
Linus Torvalds 已提交
780
{
A
Andrew Morton 已提交
781
	return bus_for_each_dev(bus, NULL, NULL, bus_rescan_devices_helper);
L
Linus Torvalds 已提交
782
}
783
EXPORT_SYMBOL_GPL(bus_rescan_devices);
L
Linus Torvalds 已提交
784

785 786 787 788 789 790 791 792 793
/**
 * device_reprobe - remove driver for a device and probe for a new driver
 * @dev: the device to reprobe
 *
 * This function detaches the attached driver (if any) for the given
 * device and restarts the driver probing process.  It is intended
 * to use if probing criteria changed during a devices lifetime and
 * driver attachment should change accordingly.
 */
A
Andrew Morton 已提交
794
int device_reprobe(struct device *dev)
795 796 797
{
	if (dev->driver) {
		if (dev->parent)        /* Needed for USB */
798
			device_lock(dev->parent);
799 800
		device_release_driver(dev);
		if (dev->parent)
801
			device_unlock(dev->parent);
802
	}
A
Andrew Morton 已提交
803
	return bus_rescan_devices_helper(dev, NULL);
804 805
}
EXPORT_SYMBOL_GPL(device_reprobe);
L
Linus Torvalds 已提交
806 807

/**
808 809
 * find_bus - locate bus by name.
 * @name: name of bus.
L
Linus Torvalds 已提交
810
 *
811 812
 * Call kset_find_obj() to iterate over list of buses to
 * find a bus by name. Return bus if found.
L
Linus Torvalds 已提交
813
 *
814
 * Note that kset_find_obj increments bus' reference count.
L
Linus Torvalds 已提交
815
 */
816
#if 0
817
struct bus_type *find_bus(char *name)
L
Linus Torvalds 已提交
818
{
819
	struct kobject *k = kset_find_obj(bus_kset, name);
L
Linus Torvalds 已提交
820 821
	return k ? to_bus(k) : NULL;
}
822
#endif  /*  0  */
L
Linus Torvalds 已提交
823

824 825 826
static int bus_add_groups(struct bus_type *bus,
			  const struct attribute_group **groups)
{
827
	return sysfs_create_groups(&bus->p->subsys.kobj, groups);
828 829 830 831 832
}

static void bus_remove_groups(struct bus_type *bus,
			      const struct attribute_group **groups)
{
833
	sysfs_remove_groups(&bus->p->subsys.kobj, groups);
834 835
}

836 837
static void klist_devices_get(struct klist_node *n)
{
838 839
	struct device_private *dev_prv = to_device_private_bus(n);
	struct device *dev = dev_prv->device;
840 841 842 843 844 845

	get_device(dev);
}

static void klist_devices_put(struct klist_node *n)
{
846 847
	struct device_private *dev_prv = to_device_private_bus(n);
	struct device *dev = dev_prv->device;
848 849 850 851

	put_device(dev);
}

852 853 854 855 856 857
static ssize_t bus_uevent_store(struct bus_type *bus,
				const char *buf, size_t count)
{
	enum kobject_action action;

	if (kobject_action_type(buf, count, &action) == 0)
858
		kobject_uevent(&bus->p->subsys.kobj, action);
859 860 861 862
	return count;
}
static BUS_ATTR(uevent, S_IWUSR, NULL, bus_uevent_store);

L
Linus Torvalds 已提交
863
/**
864
 * bus_register - register a driver-core subsystem
865
 * @bus: bus to register
L
Linus Torvalds 已提交
866
 *
867
 * Once we have that, we register the bus with the kobject
868
 * infrastructure, then register the children subsystems it has:
869
 * the devices and drivers that belong to the subsystem.
L
Linus Torvalds 已提交
870
 */
871
int bus_register(struct bus_type *bus)
L
Linus Torvalds 已提交
872 873
{
	int retval;
874
	struct subsys_private *priv;
875
	struct lock_class_key *key = &bus->lock_key;
876

877
	priv = kzalloc(sizeof(struct subsys_private), GFP_KERNEL);
878 879 880 881 882
	if (!priv)
		return -ENOMEM;

	priv->bus = bus;
	bus->p = priv;
L
Linus Torvalds 已提交
883

884
	BLOCKING_INIT_NOTIFIER_HEAD(&priv->bus_notifier);
885

886
	retval = kobject_set_name(&priv->subsys.kobj, "%s", bus->name);
L
Linus Torvalds 已提交
887 888 889
	if (retval)
		goto out;

890 891 892
	priv->subsys.kobj.kset = bus_kset;
	priv->subsys.kobj.ktype = &bus_ktype;
	priv->drivers_autoprobe = 1;
893

894
	retval = kset_register(&priv->subsys);
L
Linus Torvalds 已提交
895 896 897
	if (retval)
		goto out;

898 899 900 901
	retval = bus_create_file(bus, &bus_attr_uevent);
	if (retval)
		goto bus_uevent_fail;

902 903 904
	priv->devices_kset = kset_create_and_add("devices", NULL,
						 &priv->subsys.kobj);
	if (!priv->devices_kset) {
905
		retval = -ENOMEM;
L
Linus Torvalds 已提交
906
		goto bus_devices_fail;
907
	}
L
Linus Torvalds 已提交
908

909 910 911
	priv->drivers_kset = kset_create_and_add("drivers", NULL,
						 &priv->subsys.kobj);
	if (!priv->drivers_kset) {
912
		retval = -ENOMEM;
L
Linus Torvalds 已提交
913
		goto bus_drivers_fail;
914
	}
915

916 917
	INIT_LIST_HEAD(&priv->interfaces);
	__mutex_init(&priv->mutex, "subsys mutex", key);
918 919
	klist_init(&priv->klist_devices, klist_devices_get, klist_devices_put);
	klist_init(&priv->klist_drivers, NULL, NULL);
920 921 922 923 924

	retval = add_probe_files(bus);
	if (retval)
		goto bus_probe_files_fail;

925 926 927
	retval = bus_add_groups(bus, bus->bus_groups);
	if (retval)
		goto bus_groups_fail;
L
Linus Torvalds 已提交
928

929
	pr_debug("bus: '%s': registered\n", bus->name);
L
Linus Torvalds 已提交
930 931
	return 0;

932
bus_groups_fail:
933 934
	remove_probe_files(bus);
bus_probe_files_fail:
935
	kset_unregister(bus->p->drivers_kset);
L
Linus Torvalds 已提交
936
bus_drivers_fail:
937
	kset_unregister(bus->p->devices_kset);
L
Linus Torvalds 已提交
938
bus_devices_fail:
939 940
	bus_remove_file(bus, &bus_attr_uevent);
bus_uevent_fail:
941
	kset_unregister(&bus->p->subsys);
L
Linus Torvalds 已提交
942
out:
943
	kfree(bus->p);
944
	bus->p = NULL;
L
Linus Torvalds 已提交
945 946
	return retval;
}
947
EXPORT_SYMBOL_GPL(bus_register);
L
Linus Torvalds 已提交
948 949

/**
950 951
 * bus_unregister - remove a bus from the system
 * @bus: bus.
L
Linus Torvalds 已提交
952
 *
953 954
 * Unregister the child subsystems and the bus itself.
 * Finally, we call bus_put() to release the refcount
L
Linus Torvalds 已提交
955
 */
956
void bus_unregister(struct bus_type *bus)
L
Linus Torvalds 已提交
957
{
958
	pr_debug("bus: '%s': unregistering\n", bus->name);
959 960
	if (bus->dev_root)
		device_unregister(bus->dev_root);
961
	bus_remove_groups(bus, bus->bus_groups);
962
	remove_probe_files(bus);
963 964
	kset_unregister(bus->p->drivers_kset);
	kset_unregister(bus->p->devices_kset);
965
	bus_remove_file(bus, &bus_attr_uevent);
966
	kset_unregister(&bus->p->subsys);
L
Linus Torvalds 已提交
967
}
968
EXPORT_SYMBOL_GPL(bus_unregister);
L
Linus Torvalds 已提交
969

970 971
int bus_register_notifier(struct bus_type *bus, struct notifier_block *nb)
{
972
	return blocking_notifier_chain_register(&bus->p->bus_notifier, nb);
973 974 975 976 977
}
EXPORT_SYMBOL_GPL(bus_register_notifier);

int bus_unregister_notifier(struct bus_type *bus, struct notifier_block *nb)
{
978
	return blocking_notifier_chain_unregister(&bus->p->bus_notifier, nb);
979 980 981
}
EXPORT_SYMBOL_GPL(bus_unregister_notifier);

982 983
struct kset *bus_get_kset(struct bus_type *bus)
{
984
	return &bus->p->subsys;
985 986 987
}
EXPORT_SYMBOL_GPL(bus_get_kset);

988 989
struct klist *bus_get_device_klist(struct bus_type *bus)
{
990
	return &bus->p->klist_devices;
991 992 993
}
EXPORT_SYMBOL_GPL(bus_get_device_klist);

994
/*
R
Robert P. J. Day 已提交
995
 * Yes, this forcibly breaks the klist abstraction temporarily.  It
996 997 998 999 1000 1001 1002 1003 1004 1005 1006
 * just wants to sort the klist, not change reference counts and
 * take/drop locks rapidly in the process.  It does all this while
 * holding the lock for the list, so objects can't otherwise be
 * added/removed while we're swizzling.
 */
static void device_insertion_sort_klist(struct device *a, struct list_head *list,
					int (*compare)(const struct device *a,
							const struct device *b))
{
	struct list_head *pos;
	struct klist_node *n;
1007
	struct device_private *dev_prv;
1008 1009 1010 1011
	struct device *b;

	list_for_each(pos, list) {
		n = container_of(pos, struct klist_node, n_node);
1012 1013
		dev_prv = to_device_private_bus(n);
		b = dev_prv->device;
1014
		if (compare(a, b) <= 0) {
1015 1016
			list_move_tail(&a->p->knode_bus.n_node,
				       &b->p->knode_bus.n_node);
1017 1018 1019
			return;
		}
	}
1020
	list_move_tail(&a->p->knode_bus.n_node, list);
1021 1022 1023 1024 1025 1026 1027 1028 1029
}

void bus_sort_breadthfirst(struct bus_type *bus,
			   int (*compare)(const struct device *a,
					  const struct device *b))
{
	LIST_HEAD(sorted_devices);
	struct list_head *pos, *tmp;
	struct klist_node *n;
1030
	struct device_private *dev_prv;
1031 1032 1033 1034 1035 1036 1037 1038
	struct device *dev;
	struct klist *device_klist;

	device_klist = bus_get_device_klist(bus);

	spin_lock(&device_klist->k_lock);
	list_for_each_safe(pos, tmp, &device_klist->k_list) {
		n = container_of(pos, struct klist_node, n_node);
1039 1040
		dev_prv = to_device_private_bus(n);
		dev = dev_prv->device;
1041 1042 1043 1044 1045 1046 1047
		device_insertion_sort_klist(dev, &sorted_devices, compare);
	}
	list_splice(&sorted_devices, &device_klist->k_list);
	spin_unlock(&device_klist->k_lock);
}
EXPORT_SYMBOL_GPL(bus_sort_breadthfirst);

1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
/**
 * subsys_dev_iter_init - initialize subsys device iterator
 * @iter: subsys iterator to initialize
 * @subsys: the subsys we wanna iterate over
 * @start: the device to start iterating from, if any
 * @type: device_type of the devices to iterate over, NULL for all
 *
 * Initialize subsys iterator @iter such that it iterates over devices
 * of @subsys.  If @start is set, the list iteration will start there,
 * otherwise if it is NULL, the iteration starts at the beginning of
 * the list.
 */
1060 1061
void subsys_dev_iter_init(struct subsys_dev_iter *iter, struct bus_type *subsys,
			  struct device *start, const struct device_type *type)
1062 1063 1064 1065 1066
{
	struct klist_node *start_knode = NULL;

	if (start)
		start_knode = &start->p->knode_bus;
1067 1068
	klist_iter_init_node(&subsys->p->klist_devices, &iter->ki, start_knode);
	iter->type = type;
1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141
}
EXPORT_SYMBOL_GPL(subsys_dev_iter_init);

/**
 * subsys_dev_iter_next - iterate to the next device
 * @iter: subsys iterator to proceed
 *
 * Proceed @iter to the next device and return it.  Returns NULL if
 * iteration is complete.
 *
 * The returned device is referenced and won't be released till
 * iterator is proceed to the next device or exited.  The caller is
 * free to do whatever it wants to do with the device including
 * calling back into subsys code.
 */
struct device *subsys_dev_iter_next(struct subsys_dev_iter *iter)
{
	struct klist_node *knode;
	struct device *dev;

	for (;;) {
		knode = klist_next(&iter->ki);
		if (!knode)
			return NULL;
		dev = container_of(knode, struct device_private, knode_bus)->device;
		if (!iter->type || iter->type == dev->type)
			return dev;
	}
}
EXPORT_SYMBOL_GPL(subsys_dev_iter_next);

/**
 * subsys_dev_iter_exit - finish iteration
 * @iter: subsys iterator to finish
 *
 * Finish an iteration.  Always call this function after iteration is
 * complete whether the iteration ran till the end or not.
 */
void subsys_dev_iter_exit(struct subsys_dev_iter *iter)
{
	klist_iter_exit(&iter->ki);
}
EXPORT_SYMBOL_GPL(subsys_dev_iter_exit);

int subsys_interface_register(struct subsys_interface *sif)
{
	struct bus_type *subsys;
	struct subsys_dev_iter iter;
	struct device *dev;

	if (!sif || !sif->subsys)
		return -ENODEV;

	subsys = bus_get(sif->subsys);
	if (!subsys)
		return -EINVAL;

	mutex_lock(&subsys->p->mutex);
	list_add_tail(&sif->node, &subsys->p->interfaces);
	if (sif->add_dev) {
		subsys_dev_iter_init(&iter, subsys, NULL, NULL);
		while ((dev = subsys_dev_iter_next(&iter)))
			sif->add_dev(dev, sif);
		subsys_dev_iter_exit(&iter);
	}
	mutex_unlock(&subsys->p->mutex);

	return 0;
}
EXPORT_SYMBOL_GPL(subsys_interface_register);

void subsys_interface_unregister(struct subsys_interface *sif)
{
1142
	struct bus_type *subsys;
1143 1144 1145
	struct subsys_dev_iter iter;
	struct device *dev;

1146
	if (!sif || !sif->subsys)
1147 1148
		return;

1149 1150
	subsys = sif->subsys;

1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168
	mutex_lock(&subsys->p->mutex);
	list_del_init(&sif->node);
	if (sif->remove_dev) {
		subsys_dev_iter_init(&iter, subsys, NULL, NULL);
		while ((dev = subsys_dev_iter_next(&iter)))
			sif->remove_dev(dev, sif);
		subsys_dev_iter_exit(&iter);
	}
	mutex_unlock(&subsys->p->mutex);

	bus_put(subsys);
}
EXPORT_SYMBOL_GPL(subsys_interface_unregister);

static void system_root_device_release(struct device *dev)
{
	kfree(dev);
}
1169 1170 1171 1172

static int subsys_register(struct bus_type *subsys,
			   const struct attribute_group **groups,
			   struct kobject *parent_of_root)
1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190
{
	struct device *dev;
	int err;

	err = bus_register(subsys);
	if (err < 0)
		return err;

	dev = kzalloc(sizeof(struct device), GFP_KERNEL);
	if (!dev) {
		err = -ENOMEM;
		goto err_dev;
	}

	err = dev_set_name(dev, "%s", subsys->name);
	if (err < 0)
		goto err_name;

1191
	dev->kobj.parent = parent_of_root;
1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210
	dev->groups = groups;
	dev->release = system_root_device_release;

	err = device_register(dev);
	if (err < 0)
		goto err_dev_reg;

	subsys->dev_root = dev;
	return 0;

err_dev_reg:
	put_device(dev);
	dev = NULL;
err_name:
	kfree(dev);
err_dev:
	bus_unregister(subsys);
	return err;
}
1211 1212 1213 1214 1215 1216 1217 1218 1219 1220

/**
 * subsys_system_register - register a subsystem at /sys/devices/system/
 * @subsys: system subsystem
 * @groups: default attributes for the root device
 *
 * All 'system' subsystems have a /sys/devices/system/<name> root device
 * with the name of the subsystem. The root device can carry subsystem-
 * wide attributes. All registered devices are below this single root
 * device and are named after the subsystem with a simple enumeration
1221
 * number appended. The registered devices are not explicitly named;
1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234
 * only 'id' in the device needs to be set.
 *
 * Do not use this interface for anything new, it exists for compatibility
 * with bad ideas only. New subsystems should use plain subsystems; and
 * add the subsystem-wide attributes should be added to the subsystem
 * directory itself and not some create fake root-device placed in
 * /sys/devices/system/<name>.
 */
int subsys_system_register(struct bus_type *subsys,
			   const struct attribute_group **groups)
{
	return subsys_register(subsys, groups, &system_kset->kobj);
}
1235 1236
EXPORT_SYMBOL_GPL(subsys_system_register);

1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258
/**
 * subsys_virtual_register - register a subsystem at /sys/devices/virtual/
 * @subsys: virtual subsystem
 * @groups: default attributes for the root device
 *
 * All 'virtual' subsystems have a /sys/devices/system/<name> root device
 * with the name of the subystem.  The root device can carry subsystem-wide
 * attributes.  All registered devices are below this single root device.
 * There's no restriction on device naming.  This is for kernel software
 * constructs which need sysfs interface.
 */
int subsys_virtual_register(struct bus_type *subsys,
			    const struct attribute_group **groups)
{
	struct kobject *virtual_dir;

	virtual_dir = virtual_device_parent(NULL);
	if (!virtual_dir)
		return -ENOMEM;

	return subsys_register(subsys, groups, virtual_dir);
}
1259
EXPORT_SYMBOL_GPL(subsys_virtual_register);
1260

L
Linus Torvalds 已提交
1261 1262
int __init buses_init(void)
{
1263 1264 1265
	bus_kset = kset_create_and_add("bus", &bus_uevent_ops, NULL);
	if (!bus_kset)
		return -ENOMEM;
1266 1267 1268 1269 1270

	system_kset = kset_create_and_add("system", NULL, &devices_kset->kobj);
	if (!system_kset)
		return -ENOMEM;

1271
	return 0;
L
Linus Torvalds 已提交
1272
}