v4l2-dev.c 30.3 KB
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/*
 * Video capture interface for Linux version 2
 *
 *	A generic video device interface for the LINUX operating system
 *	using a set of device structures/vectors for low level operations.
 *
 *	This program is free software; you can redistribute it and/or
 *	modify it under the terms of the GNU General Public License
 *	as published by the Free Software Foundation; either version
 *	2 of the License, or (at your option) any later version.
 *
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 * Authors:	Alan Cox, <alan@lxorguk.ukuu.org.uk> (version 1)
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 *              Mauro Carvalho Chehab <mchehab@infradead.org> (version 2)
 *
 * Fixes:	20000516  Claudio Matsuoka <claudio@conectiva.com>
 *		- Added procfs support
 */

#include <linux/module.h>
#include <linux/types.h>
#include <linux/kernel.h>
#include <linux/mm.h>
#include <linux/string.h>
#include <linux/errno.h>
#include <linux/init.h>
#include <linux/kmod.h>
#include <linux/slab.h>
#include <asm/uaccess.h>

#include <media/v4l2-common.h>
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#include <media/v4l2-device.h>
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#include <media/v4l2-ioctl.h>
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#define VIDEO_NUM_DEVICES	256
#define VIDEO_NAME              "video4linux"

/*
 *	sysfs stuff
 */

static ssize_t show_index(struct device *cd,
			 struct device_attribute *attr, char *buf)
{
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	struct video_device *vdev = to_video_device(cd);
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	return sprintf(buf, "%i\n", vdev->index);
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}

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static ssize_t show_debug(struct device *cd,
			 struct device_attribute *attr, char *buf)
{
	struct video_device *vdev = to_video_device(cd);

	return sprintf(buf, "%i\n", vdev->debug);
}

static ssize_t set_debug(struct device *cd, struct device_attribute *attr,
		   const char *buf, size_t len)
{
	struct video_device *vdev = to_video_device(cd);
	int res = 0;
	u16 value;

	res = kstrtou16(buf, 0, &value);
	if (res)
		return res;

	vdev->debug = value;
	return len;
}

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static ssize_t show_name(struct device *cd,
			 struct device_attribute *attr, char *buf)
{
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	struct video_device *vdev = to_video_device(cd);
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	return sprintf(buf, "%.*s\n", (int)sizeof(vdev->name), vdev->name);
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}

static struct device_attribute video_device_attrs[] = {
	__ATTR(name, S_IRUGO, show_name, NULL),
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	__ATTR(debug, 0644, show_debug, set_debug),
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	__ATTR(index, S_IRUGO, show_index, NULL),
	__ATTR_NULL
};

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/*
 *	Active devices
 */
static struct video_device *video_device[VIDEO_NUM_DEVICES];
static DEFINE_MUTEX(videodev_lock);
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static DECLARE_BITMAP(devnode_nums[VFL_TYPE_MAX], VIDEO_NUM_DEVICES);
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/* Device node utility functions */

/* Note: these utility functions all assume that vfl_type is in the range
   [0, VFL_TYPE_MAX-1]. */

#ifdef CONFIG_VIDEO_FIXED_MINOR_RANGES
/* Return the bitmap corresponding to vfl_type. */
static inline unsigned long *devnode_bits(int vfl_type)
{
	/* Any types not assigned to fixed minor ranges must be mapped to
	   one single bitmap for the purposes of finding a free node number
	   since all those unassigned types use the same minor range. */
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	int idx = (vfl_type > VFL_TYPE_RADIO) ? VFL_TYPE_MAX - 1 : vfl_type;
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	return devnode_nums[idx];
}
#else
/* Return the bitmap corresponding to vfl_type. */
static inline unsigned long *devnode_bits(int vfl_type)
{
	return devnode_nums[vfl_type];
}
#endif

/* Mark device node number vdev->num as used */
static inline void devnode_set(struct video_device *vdev)
{
	set_bit(vdev->num, devnode_bits(vdev->vfl_type));
}

/* Mark device node number vdev->num as unused */
static inline void devnode_clear(struct video_device *vdev)
{
	clear_bit(vdev->num, devnode_bits(vdev->vfl_type));
}

/* Try to find a free device node number in the range [from, to> */
static inline int devnode_find(struct video_device *vdev, int from, int to)
{
	return find_next_zero_bit(devnode_bits(vdev->vfl_type), to, from);
}

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struct video_device *video_device_alloc(void)
{
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	return kzalloc(sizeof(struct video_device), GFP_KERNEL);
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}
EXPORT_SYMBOL(video_device_alloc);

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void video_device_release(struct video_device *vdev)
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{
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	kfree(vdev);
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}
EXPORT_SYMBOL(video_device_release);

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void video_device_release_empty(struct video_device *vdev)
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{
	/* Do nothing */
	/* Only valid when the video_device struct is a static. */
}
EXPORT_SYMBOL(video_device_release_empty);

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static inline void video_get(struct video_device *vdev)
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{
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	get_device(&vdev->dev);
}

static inline void video_put(struct video_device *vdev)
{
	put_device(&vdev->dev);
}

/* Called when the last user of the video device exits. */
static void v4l2_device_release(struct device *cd)
{
	struct video_device *vdev = to_video_device(cd);
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	struct v4l2_device *v4l2_dev = vdev->v4l2_dev;
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	mutex_lock(&videodev_lock);
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	if (WARN_ON(video_device[vdev->minor] != vdev)) {
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		/* should not happen */
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		mutex_unlock(&videodev_lock);
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		return;
	}
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	/* Free up this device for reuse */
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	video_device[vdev->minor] = NULL;
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	/* Delete the cdev on this minor as well */
	cdev_del(vdev->cdev);
	/* Just in case some driver tries to access this from
	   the release() callback. */
	vdev->cdev = NULL;
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	/* Mark device node number as free */
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	devnode_clear(vdev);
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	mutex_unlock(&videodev_lock);
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#if defined(CONFIG_MEDIA_CONTROLLER)
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	if (v4l2_dev && v4l2_dev->mdev &&
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	    vdev->vfl_type != VFL_TYPE_SUBDEV)
		media_device_unregister_entity(&vdev->entity);
#endif

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	/* Do not call v4l2_device_put if there is no release callback set.
	 * Drivers that have no v4l2_device release callback might free the
	 * v4l2_dev instance in the video_device release callback below, so we
	 * must perform this check here.
	 *
	 * TODO: In the long run all drivers that use v4l2_device should use the
	 * v4l2_device release callback. This check will then be unnecessary.
	 */
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	if (v4l2_dev && v4l2_dev->release == NULL)
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		v4l2_dev = NULL;

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	/* Release video_device and perform other
	   cleanups as needed. */
	vdev->release(vdev);
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	/* Decrease v4l2_device refcount */
	if (v4l2_dev)
		v4l2_device_put(v4l2_dev);
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}

static struct class video_class = {
	.name = VIDEO_NAME,
	.dev_attrs = video_device_attrs,
};

struct video_device *video_devdata(struct file *file)
{
	return video_device[iminor(file->f_path.dentry->d_inode)];
}
EXPORT_SYMBOL(video_devdata);

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/* Priority handling */

static inline bool prio_is_valid(enum v4l2_priority prio)
{
	return prio == V4L2_PRIORITY_BACKGROUND ||
	       prio == V4L2_PRIORITY_INTERACTIVE ||
	       prio == V4L2_PRIORITY_RECORD;
}

void v4l2_prio_init(struct v4l2_prio_state *global)
{
	memset(global, 0, sizeof(*global));
}
EXPORT_SYMBOL(v4l2_prio_init);

int v4l2_prio_change(struct v4l2_prio_state *global, enum v4l2_priority *local,
		     enum v4l2_priority new)
{
	if (!prio_is_valid(new))
		return -EINVAL;
	if (*local == new)
		return 0;

	atomic_inc(&global->prios[new]);
	if (prio_is_valid(*local))
		atomic_dec(&global->prios[*local]);
	*local = new;
	return 0;
}
EXPORT_SYMBOL(v4l2_prio_change);

void v4l2_prio_open(struct v4l2_prio_state *global, enum v4l2_priority *local)
{
	v4l2_prio_change(global, local, V4L2_PRIORITY_DEFAULT);
}
EXPORT_SYMBOL(v4l2_prio_open);

void v4l2_prio_close(struct v4l2_prio_state *global, enum v4l2_priority local)
{
	if (prio_is_valid(local))
		atomic_dec(&global->prios[local]);
}
EXPORT_SYMBOL(v4l2_prio_close);

enum v4l2_priority v4l2_prio_max(struct v4l2_prio_state *global)
{
	if (atomic_read(&global->prios[V4L2_PRIORITY_RECORD]) > 0)
		return V4L2_PRIORITY_RECORD;
	if (atomic_read(&global->prios[V4L2_PRIORITY_INTERACTIVE]) > 0)
		return V4L2_PRIORITY_INTERACTIVE;
	if (atomic_read(&global->prios[V4L2_PRIORITY_BACKGROUND]) > 0)
		return V4L2_PRIORITY_BACKGROUND;
	return V4L2_PRIORITY_UNSET;
}
EXPORT_SYMBOL(v4l2_prio_max);

int v4l2_prio_check(struct v4l2_prio_state *global, enum v4l2_priority local)
{
	return (local < v4l2_prio_max(global)) ? -EBUSY : 0;
}
EXPORT_SYMBOL(v4l2_prio_check);


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static ssize_t v4l2_read(struct file *filp, char __user *buf,
		size_t sz, loff_t *off)
{
	struct video_device *vdev = video_devdata(filp);
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	int ret = -ENODEV;
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	if (!vdev->fops->read)
		return -EINVAL;
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	if (video_is_registered(vdev))
		ret = vdev->fops->read(filp, buf, sz, off);
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: read: %zd (%d)\n",
			video_device_node_name(vdev), sz, ret);
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	return ret;
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}

static ssize_t v4l2_write(struct file *filp, const char __user *buf,
		size_t sz, loff_t *off)
{
	struct video_device *vdev = video_devdata(filp);
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	int ret = -ENODEV;
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	if (!vdev->fops->write)
		return -EINVAL;
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	if (video_is_registered(vdev))
		ret = vdev->fops->write(filp, buf, sz, off);
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: write: %zd (%d)\n",
			video_device_node_name(vdev), sz, ret);
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	return ret;
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}

static unsigned int v4l2_poll(struct file *filp, struct poll_table_struct *poll)
{
	struct video_device *vdev = video_devdata(filp);
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	unsigned int res = POLLERR | POLLHUP;
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	if (!vdev->fops->poll)
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		return DEFAULT_POLLMASK;
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	if (video_is_registered(vdev))
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		res = vdev->fops->poll(filp, poll);
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: poll: %08x\n",
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			video_device_node_name(vdev), res);
	return res;
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}

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static long v4l2_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
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{
	struct video_device *vdev = video_devdata(filp);
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	int ret = -ENODEV;
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	if (vdev->fops->unlocked_ioctl) {
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		struct mutex *lock = v4l2_ioctl_get_lock(vdev, cmd);
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		if (lock && mutex_lock_interruptible(lock))
			return -ERESTARTSYS;
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		if (video_is_registered(vdev))
			ret = vdev->fops->unlocked_ioctl(filp, cmd, arg);
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		if (lock)
			mutex_unlock(lock);
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	} else if (vdev->fops->ioctl) {
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		/* This code path is a replacement for the BKL. It is a major
		 * hack but it will have to do for those drivers that are not
		 * yet converted to use unlocked_ioctl.
		 *
		 * There are two options: if the driver implements struct
		 * v4l2_device, then the lock defined there is used to
		 * serialize the ioctls. Otherwise the v4l2 core lock defined
		 * below is used. This lock is really bad since it serializes
		 * completely independent devices.
		 *
		 * Both variants suffer from the same problem: if the driver
		 * sleeps, then it blocks all ioctls since the lock is still
		 * held. This is very common for VIDIOC_DQBUF since that
		 * normally waits for a frame to arrive. As a result any other
		 * ioctl calls will proceed very, very slowly since each call
		 * will have to wait for the VIDIOC_QBUF to finish. Things that
		 * should take 0.01s may now take 10-20 seconds.
		 *
		 * The workaround is to *not* take the lock for VIDIOC_DQBUF.
		 * This actually works OK for videobuf-based drivers, since
		 * videobuf will take its own internal lock.
		 */
A
Arnd Bergmann 已提交
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		static DEFINE_MUTEX(v4l2_ioctl_mutex);
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		struct mutex *m = vdev->v4l2_dev ?
			&vdev->v4l2_dev->ioctl_lock : &v4l2_ioctl_mutex;
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Arnd Bergmann 已提交
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		if (cmd != VIDIOC_DQBUF && mutex_lock_interruptible(m))
			return -ERESTARTSYS;
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		if (video_is_registered(vdev))
			ret = vdev->fops->ioctl(filp, cmd, arg);
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		if (cmd != VIDIOC_DQBUF)
			mutex_unlock(m);
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	} else
		ret = -ENOTTY;
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	return ret;
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}

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#ifdef CONFIG_MMU
#define v4l2_get_unmapped_area NULL
#else
static unsigned long v4l2_get_unmapped_area(struct file *filp,
		unsigned long addr, unsigned long len, unsigned long pgoff,
		unsigned long flags)
{
	struct video_device *vdev = video_devdata(filp);
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	int ret;
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	if (!vdev->fops->get_unmapped_area)
		return -ENOSYS;
	if (!video_is_registered(vdev))
		return -ENODEV;
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	ret = vdev->fops->get_unmapped_area(filp, addr, len, pgoff, flags);
	if (vdev->debug)
		printk(KERN_DEBUG "%s: get_unmapped_area (%d)\n",
			video_device_node_name(vdev), ret);
	return ret;
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}
#endif

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static int v4l2_mmap(struct file *filp, struct vm_area_struct *vm)
{
	struct video_device *vdev = video_devdata(filp);
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	int ret = -ENODEV;

	if (!vdev->fops->mmap)
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		return -ENODEV;
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	if (video_is_registered(vdev))
		ret = vdev->fops->mmap(filp, vm);
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: mmap (%d)\n",
			video_device_node_name(vdev), ret);
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	return ret;
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}

/* Override for the open function */
static int v4l2_open(struct inode *inode, struct file *filp)
{
	struct video_device *vdev;
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	int ret = 0;
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	/* Check if the video device is available */
	mutex_lock(&videodev_lock);
	vdev = video_devdata(filp);
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	/* return ENODEV if the video device has already been removed. */
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	if (vdev == NULL || !video_is_registered(vdev)) {
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		mutex_unlock(&videodev_lock);
		return -ENODEV;
	}
	/* and increase the device refcount */
	video_get(vdev);
	mutex_unlock(&videodev_lock);
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	if (vdev->fops->open) {
		if (video_is_registered(vdev))
			ret = vdev->fops->open(filp);
		else
			ret = -ENODEV;
	}
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: open (%d)\n",
			video_device_node_name(vdev), ret);
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	/* decrease the refcount in case of an error */
	if (ret)
		video_put(vdev);
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	return ret;
}

/* Override for the release function */
static int v4l2_release(struct inode *inode, struct file *filp)
{
	struct video_device *vdev = video_devdata(filp);
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	int ret = 0;

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	if (vdev->fops->release)
		ret = vdev->fops->release(filp);
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	if (vdev->debug)
		printk(KERN_DEBUG "%s: release\n",
			video_device_node_name(vdev));
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	/* decrease the refcount unconditionally since the release()
	   return value is ignored. */
	video_put(vdev);
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	return ret;
}

static const struct file_operations v4l2_fops = {
	.owner = THIS_MODULE,
	.read = v4l2_read,
	.write = v4l2_write,
	.open = v4l2_open,
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	.get_unmapped_area = v4l2_get_unmapped_area,
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	.mmap = v4l2_mmap,
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	.unlocked_ioctl = v4l2_ioctl,
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#ifdef CONFIG_COMPAT
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	.compat_ioctl = v4l2_compat_ioctl32,
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#endif
	.release = v4l2_release,
	.poll = v4l2_poll,
	.llseek = no_llseek,
};

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/**
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 * get_index - assign stream index number based on parent device
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 * @vdev: video_device to assign index number to, vdev->parent should be assigned
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 *
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 * Note that when this is called the new device has not yet been registered
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 * in the video_device array, but it was able to obtain a minor number.
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 *
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 * This means that we can always obtain a free stream index number since
 * the worst case scenario is that there are VIDEO_NUM_DEVICES - 1 slots in
 * use of the video_device array.
 *
 * Returns a free index number.
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 */
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static int get_index(struct video_device *vdev)
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{
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	/* This can be static since this function is called with the global
	   videodev_lock held. */
	static DECLARE_BITMAP(used, VIDEO_NUM_DEVICES);
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	int i;

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	/* Some drivers do not set the parent. In that case always return 0. */
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	if (vdev->parent == NULL)
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		return 0;
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	bitmap_zero(used, VIDEO_NUM_DEVICES);
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	for (i = 0; i < VIDEO_NUM_DEVICES; i++) {
		if (video_device[i] != NULL &&
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		    video_device[i]->parent == vdev->parent) {
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			set_bit(video_device[i]->index, used);
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		}
	}

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	return find_first_zero_bit(used, VIDEO_NUM_DEVICES);
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}

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#define SET_VALID_IOCTL(ops, cmd, op)			\
	if (ops->op)					\
		set_bit(_IOC_NR(cmd), valid_ioctls)

/* This determines which ioctls are actually implemented in the driver.
   It's a one-time thing which simplifies video_ioctl2 as it can just do
   a bit test.

   Note that drivers can override this by setting bits to 1 in
   vdev->valid_ioctls. If an ioctl is marked as 1 when this function is
   called, then that ioctl will actually be marked as unimplemented.

   It does that by first setting up the local valid_ioctls bitmap, and
   at the end do a:

   vdev->valid_ioctls = valid_ioctls & ~(vdev->valid_ioctls)
 */
static void determine_valid_ioctls(struct video_device *vdev)
{
	DECLARE_BITMAP(valid_ioctls, BASE_VIDIOC_PRIVATE);
	const struct v4l2_ioctl_ops *ops = vdev->ioctl_ops;

	bitmap_zero(valid_ioctls, BASE_VIDIOC_PRIVATE);

	SET_VALID_IOCTL(ops, VIDIOC_QUERYCAP, vidioc_querycap);
	if (ops->vidioc_g_priority ||
			test_bit(V4L2_FL_USE_FH_PRIO, &vdev->flags))
		set_bit(_IOC_NR(VIDIOC_G_PRIORITY), valid_ioctls);
	if (ops->vidioc_s_priority ||
			test_bit(V4L2_FL_USE_FH_PRIO, &vdev->flags))
		set_bit(_IOC_NR(VIDIOC_S_PRIORITY), valid_ioctls);
	if (ops->vidioc_enum_fmt_vid_cap ||
	    ops->vidioc_enum_fmt_vid_out ||
	    ops->vidioc_enum_fmt_vid_cap_mplane ||
	    ops->vidioc_enum_fmt_vid_out_mplane ||
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	    ops->vidioc_enum_fmt_vid_overlay)
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		set_bit(_IOC_NR(VIDIOC_ENUM_FMT), valid_ioctls);
	if (ops->vidioc_g_fmt_vid_cap ||
	    ops->vidioc_g_fmt_vid_out ||
	    ops->vidioc_g_fmt_vid_cap_mplane ||
	    ops->vidioc_g_fmt_vid_out_mplane ||
	    ops->vidioc_g_fmt_vid_overlay ||
	    ops->vidioc_g_fmt_vbi_cap ||
	    ops->vidioc_g_fmt_vid_out_overlay ||
	    ops->vidioc_g_fmt_vbi_out ||
	    ops->vidioc_g_fmt_sliced_vbi_cap ||
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	    ops->vidioc_g_fmt_sliced_vbi_out)
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		set_bit(_IOC_NR(VIDIOC_G_FMT), valid_ioctls);
	if (ops->vidioc_s_fmt_vid_cap ||
	    ops->vidioc_s_fmt_vid_out ||
	    ops->vidioc_s_fmt_vid_cap_mplane ||
	    ops->vidioc_s_fmt_vid_out_mplane ||
	    ops->vidioc_s_fmt_vid_overlay ||
	    ops->vidioc_s_fmt_vbi_cap ||
	    ops->vidioc_s_fmt_vid_out_overlay ||
	    ops->vidioc_s_fmt_vbi_out ||
	    ops->vidioc_s_fmt_sliced_vbi_cap ||
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	    ops->vidioc_s_fmt_sliced_vbi_out)
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		set_bit(_IOC_NR(VIDIOC_S_FMT), valid_ioctls);
	if (ops->vidioc_try_fmt_vid_cap ||
	    ops->vidioc_try_fmt_vid_out ||
	    ops->vidioc_try_fmt_vid_cap_mplane ||
	    ops->vidioc_try_fmt_vid_out_mplane ||
	    ops->vidioc_try_fmt_vid_overlay ||
	    ops->vidioc_try_fmt_vbi_cap ||
	    ops->vidioc_try_fmt_vid_out_overlay ||
	    ops->vidioc_try_fmt_vbi_out ||
	    ops->vidioc_try_fmt_sliced_vbi_cap ||
601
	    ops->vidioc_try_fmt_sliced_vbi_out)
602 603 604 605 606 607 608 609 610 611
		set_bit(_IOC_NR(VIDIOC_TRY_FMT), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_REQBUFS, vidioc_reqbufs);
	SET_VALID_IOCTL(ops, VIDIOC_QUERYBUF, vidioc_querybuf);
	SET_VALID_IOCTL(ops, VIDIOC_QBUF, vidioc_qbuf);
	SET_VALID_IOCTL(ops, VIDIOC_DQBUF, vidioc_dqbuf);
	SET_VALID_IOCTL(ops, VIDIOC_OVERLAY, vidioc_overlay);
	SET_VALID_IOCTL(ops, VIDIOC_G_FBUF, vidioc_g_fbuf);
	SET_VALID_IOCTL(ops, VIDIOC_S_FBUF, vidioc_s_fbuf);
	SET_VALID_IOCTL(ops, VIDIOC_STREAMON, vidioc_streamon);
	SET_VALID_IOCTL(ops, VIDIOC_STREAMOFF, vidioc_streamoff);
612
	if (ops->vidioc_s_std)
613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664
		set_bit(_IOC_NR(VIDIOC_ENUMSTD), valid_ioctls);
	if (ops->vidioc_g_std || vdev->current_norm)
		set_bit(_IOC_NR(VIDIOC_G_STD), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_S_STD, vidioc_s_std);
	SET_VALID_IOCTL(ops, VIDIOC_QUERYSTD, vidioc_querystd);
	SET_VALID_IOCTL(ops, VIDIOC_ENUMINPUT, vidioc_enum_input);
	SET_VALID_IOCTL(ops, VIDIOC_G_INPUT, vidioc_g_input);
	SET_VALID_IOCTL(ops, VIDIOC_S_INPUT, vidioc_s_input);
	SET_VALID_IOCTL(ops, VIDIOC_ENUMOUTPUT, vidioc_enum_output);
	SET_VALID_IOCTL(ops, VIDIOC_G_OUTPUT, vidioc_g_output);
	SET_VALID_IOCTL(ops, VIDIOC_S_OUTPUT, vidioc_s_output);
	/* Note: the control handler can also be passed through the filehandle,
	   and that can't be tested here. If the bit for these control ioctls
	   is set, then the ioctl is valid. But if it is 0, then it can still
	   be valid if the filehandle passed the control handler. */
	if (vdev->ctrl_handler || ops->vidioc_queryctrl)
		set_bit(_IOC_NR(VIDIOC_QUERYCTRL), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_g_ctrl || ops->vidioc_g_ext_ctrls)
		set_bit(_IOC_NR(VIDIOC_G_CTRL), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_s_ctrl || ops->vidioc_s_ext_ctrls)
		set_bit(_IOC_NR(VIDIOC_S_CTRL), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_g_ext_ctrls)
		set_bit(_IOC_NR(VIDIOC_G_EXT_CTRLS), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_s_ext_ctrls)
		set_bit(_IOC_NR(VIDIOC_S_EXT_CTRLS), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_try_ext_ctrls)
		set_bit(_IOC_NR(VIDIOC_TRY_EXT_CTRLS), valid_ioctls);
	if (vdev->ctrl_handler || ops->vidioc_querymenu)
		set_bit(_IOC_NR(VIDIOC_QUERYMENU), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_ENUMAUDIO, vidioc_enumaudio);
	SET_VALID_IOCTL(ops, VIDIOC_G_AUDIO, vidioc_g_audio);
	SET_VALID_IOCTL(ops, VIDIOC_S_AUDIO, vidioc_s_audio);
	SET_VALID_IOCTL(ops, VIDIOC_ENUMAUDOUT, vidioc_enumaudout);
	SET_VALID_IOCTL(ops, VIDIOC_G_AUDOUT, vidioc_g_audout);
	SET_VALID_IOCTL(ops, VIDIOC_S_AUDOUT, vidioc_s_audout);
	SET_VALID_IOCTL(ops, VIDIOC_G_MODULATOR, vidioc_g_modulator);
	SET_VALID_IOCTL(ops, VIDIOC_S_MODULATOR, vidioc_s_modulator);
	if (ops->vidioc_g_crop || ops->vidioc_g_selection)
		set_bit(_IOC_NR(VIDIOC_G_CROP), valid_ioctls);
	if (ops->vidioc_s_crop || ops->vidioc_s_selection)
		set_bit(_IOC_NR(VIDIOC_S_CROP), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_G_SELECTION, vidioc_g_selection);
	SET_VALID_IOCTL(ops, VIDIOC_S_SELECTION, vidioc_s_selection);
	if (ops->vidioc_cropcap || ops->vidioc_g_selection)
		set_bit(_IOC_NR(VIDIOC_CROPCAP), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_G_JPEGCOMP, vidioc_g_jpegcomp);
	SET_VALID_IOCTL(ops, VIDIOC_S_JPEGCOMP, vidioc_s_jpegcomp);
	SET_VALID_IOCTL(ops, VIDIOC_G_ENC_INDEX, vidioc_g_enc_index);
	SET_VALID_IOCTL(ops, VIDIOC_ENCODER_CMD, vidioc_encoder_cmd);
	SET_VALID_IOCTL(ops, VIDIOC_TRY_ENCODER_CMD, vidioc_try_encoder_cmd);
	SET_VALID_IOCTL(ops, VIDIOC_DECODER_CMD, vidioc_decoder_cmd);
	SET_VALID_IOCTL(ops, VIDIOC_TRY_DECODER_CMD, vidioc_try_decoder_cmd);
665
	if (ops->vidioc_g_parm || (vdev->vfl_type == VFL_TYPE_GRABBER &&
666
					(ops->vidioc_g_std || vdev->current_norm)))
667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688
		set_bit(_IOC_NR(VIDIOC_G_PARM), valid_ioctls);
	SET_VALID_IOCTL(ops, VIDIOC_S_PARM, vidioc_s_parm);
	SET_VALID_IOCTL(ops, VIDIOC_G_TUNER, vidioc_g_tuner);
	SET_VALID_IOCTL(ops, VIDIOC_S_TUNER, vidioc_s_tuner);
	SET_VALID_IOCTL(ops, VIDIOC_G_FREQUENCY, vidioc_g_frequency);
	SET_VALID_IOCTL(ops, VIDIOC_S_FREQUENCY, vidioc_s_frequency);
	SET_VALID_IOCTL(ops, VIDIOC_G_SLICED_VBI_CAP, vidioc_g_sliced_vbi_cap);
	SET_VALID_IOCTL(ops, VIDIOC_LOG_STATUS, vidioc_log_status);
#ifdef CONFIG_VIDEO_ADV_DEBUG
	SET_VALID_IOCTL(ops, VIDIOC_DBG_G_REGISTER, vidioc_g_register);
	SET_VALID_IOCTL(ops, VIDIOC_DBG_S_REGISTER, vidioc_s_register);
#endif
	SET_VALID_IOCTL(ops, VIDIOC_DBG_G_CHIP_IDENT, vidioc_g_chip_ident);
	SET_VALID_IOCTL(ops, VIDIOC_S_HW_FREQ_SEEK, vidioc_s_hw_freq_seek);
	SET_VALID_IOCTL(ops, VIDIOC_ENUM_FRAMESIZES, vidioc_enum_framesizes);
	SET_VALID_IOCTL(ops, VIDIOC_ENUM_FRAMEINTERVALS, vidioc_enum_frameintervals);
	SET_VALID_IOCTL(ops, VIDIOC_ENUM_DV_PRESETS, vidioc_enum_dv_presets);
	SET_VALID_IOCTL(ops, VIDIOC_S_DV_PRESET, vidioc_s_dv_preset);
	SET_VALID_IOCTL(ops, VIDIOC_G_DV_PRESET, vidioc_g_dv_preset);
	SET_VALID_IOCTL(ops, VIDIOC_QUERY_DV_PRESET, vidioc_query_dv_preset);
	SET_VALID_IOCTL(ops, VIDIOC_S_DV_TIMINGS, vidioc_s_dv_timings);
	SET_VALID_IOCTL(ops, VIDIOC_G_DV_TIMINGS, vidioc_g_dv_timings);
689 690
	SET_VALID_IOCTL(ops, VIDIOC_ENUM_DV_TIMINGS, vidioc_enum_dv_timings);
	SET_VALID_IOCTL(ops, VIDIOC_QUERY_DV_TIMINGS, vidioc_query_dv_timings);
691
	SET_VALID_IOCTL(ops, VIDIOC_DV_TIMINGS_CAP, vidioc_dv_timings_cap);
692 693 694 695 696 697
	/* yes, really vidioc_subscribe_event */
	SET_VALID_IOCTL(ops, VIDIOC_DQEVENT, vidioc_subscribe_event);
	SET_VALID_IOCTL(ops, VIDIOC_SUBSCRIBE_EVENT, vidioc_subscribe_event);
	SET_VALID_IOCTL(ops, VIDIOC_UNSUBSCRIBE_EVENT, vidioc_unsubscribe_event);
	SET_VALID_IOCTL(ops, VIDIOC_CREATE_BUFS, vidioc_create_bufs);
	SET_VALID_IOCTL(ops, VIDIOC_PREPARE_BUF, vidioc_prepare_buf);
698 699
	if (ops->vidioc_enum_freq_bands || ops->vidioc_g_tuner || ops->vidioc_g_modulator)
		set_bit(_IOC_NR(VIDIOC_ENUM_FREQ_BANDS), valid_ioctls);
700 701 702 703
	bitmap_andnot(vdev->valid_ioctls, valid_ioctls, vdev->valid_ioctls,
			BASE_VIDIOC_PRIVATE);
}

704
/**
705
 *	__video_register_device - register video4linux devices
706
 *	@vdev: video device structure we want to register
707
 *	@type: type of device to register
708
 *	@nr:   which device node number (0 == /dev/video0, 1 == /dev/video1, ...
709
 *             -1 == first free)
710 711
 *	@warn_if_nr_in_use: warn if the desired device node number
 *	       was already in use and another number was chosen instead.
712
 *	@owner: module that owns the video device node
713
 *
714 715 716
 *	The registration code assigns minor numbers and device node numbers
 *	based on the requested type and registers the new device node with
 *	the kernel.
717 718 719 720
 *
 *	This function assumes that struct video_device was zeroed when it
 *	was allocated and does not contain any stale date.
 *
721 722
 *	An error is returned if no free minor or device node number could be
 *	found, or if the registration of the device node failed.
723 724 725 726 727 728 729 730 731 732
 *
 *	Zero is returned on success.
 *
 *	Valid types are
 *
 *	%VFL_TYPE_GRABBER - A frame grabber
 *
 *	%VFL_TYPE_VBI - Vertical blank data (undecoded)
 *
 *	%VFL_TYPE_RADIO - A radio card
733 734
 *
 *	%VFL_TYPE_SUBDEV - A subdevice
735
 */
736 737
int __video_register_device(struct video_device *vdev, int type, int nr,
		int warn_if_nr_in_use, struct module *owner)
738 739 740
{
	int i = 0;
	int ret;
741 742 743
	int minor_offset = 0;
	int minor_cnt = VIDEO_NUM_DEVICES;
	const char *name_base;
744

745 746
	/* A minor value of -1 marks this video device as never
	   having been registered */
747
	vdev->minor = -1;
748

749
	/* the release callback MUST be present */
750
	if (WARN_ON(!vdev->release))
751 752
		return -EINVAL;

S
Sakari Ailus 已提交
753 754 755 756
	/* v4l2_fh support */
	spin_lock_init(&vdev->fh_lock);
	INIT_LIST_HEAD(&vdev->fh_list);

757
	/* Part 1: check device type */
758 759 760 761 762 763 764 765 766 767
	switch (type) {
	case VFL_TYPE_GRABBER:
		name_base = "video";
		break;
	case VFL_TYPE_VBI:
		name_base = "vbi";
		break;
	case VFL_TYPE_RADIO:
		name_base = "radio";
		break;
768 769 770
	case VFL_TYPE_SUBDEV:
		name_base = "v4l-subdev";
		break;
771 772 773
	default:
		printk(KERN_ERR "%s called with unknown type: %d\n",
		       __func__, type);
774
		return -EINVAL;
775 776
	}

777 778
	vdev->vfl_type = type;
	vdev->cdev = NULL;
779 780 781 782 783
	if (vdev->v4l2_dev) {
		if (vdev->v4l2_dev->dev)
			vdev->parent = vdev->v4l2_dev->dev;
		if (vdev->ctrl_handler == NULL)
			vdev->ctrl_handler = vdev->v4l2_dev->ctrl_handler;
784 785 786
		/* If the prio state pointer is NULL, then use the v4l2_device
		   prio state. */
		if (vdev->prio == NULL)
787
			vdev->prio = &vdev->v4l2_dev->prio;
788
	}
789

790
	/* Part 2: find a free minor, device node number and device index. */
791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816
#ifdef CONFIG_VIDEO_FIXED_MINOR_RANGES
	/* Keep the ranges for the first four types for historical
	 * reasons.
	 * Newer devices (not yet in place) should use the range
	 * of 128-191 and just pick the first free minor there
	 * (new style). */
	switch (type) {
	case VFL_TYPE_GRABBER:
		minor_offset = 0;
		minor_cnt = 64;
		break;
	case VFL_TYPE_RADIO:
		minor_offset = 64;
		minor_cnt = 64;
		break;
	case VFL_TYPE_VBI:
		minor_offset = 224;
		minor_cnt = 32;
		break;
	default:
		minor_offset = 128;
		minor_cnt = 64;
		break;
	}
#endif

817
	/* Pick a device node number */
818
	mutex_lock(&videodev_lock);
819
	nr = devnode_find(vdev, nr == -1 ? 0 : nr, minor_cnt);
820
	if (nr == minor_cnt)
821
		nr = devnode_find(vdev, 0, minor_cnt);
822
	if (nr == minor_cnt) {
823
		printk(KERN_ERR "could not get a free device node number\n");
824 825
		mutex_unlock(&videodev_lock);
		return -ENFILE;
826
	}
827
#ifdef CONFIG_VIDEO_FIXED_MINOR_RANGES
828
	/* 1-on-1 mapping of device node number to minor number */
829 830
	i = nr;
#else
831 832
	/* The device node number and minor numbers are independent, so
	   we just find the first free minor number. */
833 834 835 836 837 838 839 840 841
	for (i = 0; i < VIDEO_NUM_DEVICES; i++)
		if (video_device[i] == NULL)
			break;
	if (i == VIDEO_NUM_DEVICES) {
		mutex_unlock(&videodev_lock);
		printk(KERN_ERR "could not get a free minor\n");
		return -ENFILE;
	}
#endif
842 843
	vdev->minor = i + minor_offset;
	vdev->num = nr;
844 845
	devnode_set(vdev);

846 847
	/* Should not happen since we thought this minor was free */
	WARN_ON(video_device[vdev->minor] != NULL);
848
	vdev->index = get_index(vdev);
849 850
	mutex_unlock(&videodev_lock);

851 852 853
	if (vdev->ioctl_ops)
		determine_valid_ioctls(vdev);

854 855 856 857 858 859
	/* Part 3: Initialize the character device */
	vdev->cdev = cdev_alloc();
	if (vdev->cdev == NULL) {
		ret = -ENOMEM;
		goto cleanup;
	}
860
	vdev->cdev->ops = &v4l2_fops;
861
	vdev->cdev->owner = owner;
862
	ret = cdev_add(vdev->cdev, MKDEV(VIDEO_MAJOR, vdev->minor), 1);
863 864
	if (ret < 0) {
		printk(KERN_ERR "%s: cdev_add failed\n", __func__);
865 866 867
		kfree(vdev->cdev);
		vdev->cdev = NULL;
		goto cleanup;
868
	}
869 870 871 872 873 874

	/* Part 4: register the device with sysfs */
	vdev->dev.class = &video_class;
	vdev->dev.devt = MKDEV(VIDEO_MAJOR, vdev->minor);
	if (vdev->parent)
		vdev->dev.parent = vdev->parent;
875
	dev_set_name(&vdev->dev, "%s%d", name_base, vdev->num);
876
	ret = device_register(&vdev->dev);
877 878
	if (ret < 0) {
		printk(KERN_ERR "%s: device_register failed\n", __func__);
879
		goto cleanup;
880
	}
881 882 883
	/* Register the release callback that will be called when the last
	   reference to the device goes away. */
	vdev->dev.release = v4l2_device_release;
884

885
	if (nr != -1 && nr != vdev->num && warn_if_nr_in_use)
886 887
		printk(KERN_WARNING "%s: requested %s%d, got %s\n", __func__,
			name_base, nr, video_device_node_name(vdev));
888 889 890 891 892

	/* Increase v4l2_device refcount */
	if (vdev->v4l2_dev)
		v4l2_device_get(vdev->v4l2_dev);

893 894
#if defined(CONFIG_MEDIA_CONTROLLER)
	/* Part 5: Register the entity. */
895 896
	if (vdev->v4l2_dev && vdev->v4l2_dev->mdev &&
	    vdev->vfl_type != VFL_TYPE_SUBDEV) {
897 898
		vdev->entity.type = MEDIA_ENT_T_DEVNODE_V4L;
		vdev->entity.name = vdev->name;
899 900
		vdev->entity.info.v4l.major = VIDEO_MAJOR;
		vdev->entity.info.v4l.minor = vdev->minor;
901 902 903 904 905 906 907 908 909
		ret = media_device_register_entity(vdev->v4l2_dev->mdev,
			&vdev->entity);
		if (ret < 0)
			printk(KERN_WARNING
			       "%s: media_device_register_entity failed\n",
			       __func__);
	}
#endif
	/* Part 6: Activate this minor. The char device can now be used. */
910
	set_bit(V4L2_FL_REGISTERED, &vdev->flags);
911 912 913
	mutex_lock(&videodev_lock);
	video_device[vdev->minor] = vdev;
	mutex_unlock(&videodev_lock);
914

915
	return 0;
916

917
cleanup:
918
	mutex_lock(&videodev_lock);
919 920
	if (vdev->cdev)
		cdev_del(vdev->cdev);
921
	devnode_clear(vdev);
922
	mutex_unlock(&videodev_lock);
923 924
	/* Mark this video device as never having been registered. */
	vdev->minor = -1;
925 926
	return ret;
}
927
EXPORT_SYMBOL(__video_register_device);
928

929 930
/**
 *	video_unregister_device - unregister a video4linux device
931
 *	@vdev: the device to unregister
932
 *
933 934
 *	This unregisters the passed device. Future open calls will
 *	be met with errors.
935
 */
936
void video_unregister_device(struct video_device *vdev)
937
{
938
	/* Check if vdev was ever registered at all */
939
	if (!vdev || !video_is_registered(vdev))
940 941
		return;

942 943 944 945
	mutex_lock(&videodev_lock);
	/* This must be in a critical section to prevent a race with v4l2_open.
	 * Once this bit has been cleared video_get may never be called again.
	 */
946
	clear_bit(V4L2_FL_REGISTERED, &vdev->flags);
947
	mutex_unlock(&videodev_lock);
948
	device_unregister(&vdev->dev);
949 950 951 952 953 954 955 956
}
EXPORT_SYMBOL(video_unregister_device);

/*
 *	Initialise video for linux
 */
static int __init videodev_init(void)
{
957
	dev_t dev = MKDEV(VIDEO_MAJOR, 0);
958 959 960
	int ret;

	printk(KERN_INFO "Linux video capture interface: v2.00\n");
961 962 963 964 965
	ret = register_chrdev_region(dev, VIDEO_NUM_DEVICES, VIDEO_NAME);
	if (ret < 0) {
		printk(KERN_WARNING "videodev: unable to get major %d\n",
				VIDEO_MAJOR);
		return ret;
966 967 968 969
	}

	ret = class_register(&video_class);
	if (ret < 0) {
970
		unregister_chrdev_region(dev, VIDEO_NUM_DEVICES);
971 972 973 974 975 976 977 978 979
		printk(KERN_WARNING "video_dev: class_register failed\n");
		return -EIO;
	}

	return 0;
}

static void __exit videodev_exit(void)
{
980 981
	dev_t dev = MKDEV(VIDEO_MAJOR, 0);

982
	class_unregister(&video_class);
983
	unregister_chrdev_region(dev, VIDEO_NUM_DEVICES);
984 985
}

986
subsys_initcall(videodev_init);
987 988 989 990 991
module_exit(videodev_exit)

MODULE_AUTHOR("Alan Cox, Mauro Carvalho Chehab <mchehab@infradead.org>");
MODULE_DESCRIPTION("Device registrar for Video4Linux drivers v2");
MODULE_LICENSE("GPL");
992
MODULE_ALIAS_CHARDEV_MAJOR(VIDEO_MAJOR);
993 994 995 996 997 998 999


/*
 * Local variables:
 * c-basic-offset: 8
 * End:
 */