4 * (C) Copyright Linus Torvalds 1999
5 * (C) Copyright Johannes Erdfelt 1999-2001
6 * (C) Copyright Andreas Gal 1999
7 * (C) Copyright Gregory P. Smith 1999
8 * (C) Copyright Deti Fliegl 1999 (new USB architecture)
9 * (C) Copyright Randy Dunlap 2000
10 * (C) Copyright David Brownell 2000-2001 (kernel hotplug, usb_device_id,
12 * (C) Copyright Yggdrasil Computing, Inc. 2000
13 * (usb_device_id matching changes by Adam J. Richter)
14 * (C) Copyright Greg Kroah-Hartman 2002-2003
18 #include <linux/config.h>
19 #include <linux/module.h>
20 #include <linux/devfs_fs_kernel.h>
21 #include <linux/spinlock.h>
22 #include <linux/errno.h>
24 #ifdef CONFIG_USB_DEBUG
29 #include <linux/usb.h>
33 #define MAX_USB_MINORS 256
34 static struct file_operations
*usb_minors
[MAX_USB_MINORS
];
35 static DEFINE_SPINLOCK(minor_lock
);
37 static int usb_open(struct inode
* inode
, struct file
* file
)
39 int minor
= iminor(inode
);
40 struct file_operations
*c
;
42 struct file_operations
*old_fops
, *new_fops
= NULL
;
44 spin_lock (&minor_lock
);
45 c
= usb_minors
[minor
];
47 if (!c
|| !(new_fops
= fops_get(c
))) {
48 spin_unlock(&minor_lock
);
51 spin_unlock(&minor_lock
);
53 old_fops
= file
->f_op
;
54 file
->f_op
= new_fops
;
55 /* Curiouser and curiouser... NULL ->open() as "no device" ? */
57 err
= file
->f_op
->open(inode
,file
);
60 file
->f_op
= fops_get(old_fops
);
66 static struct file_operations usb_fops
= {
71 static struct class_simple
*usb_class
;
73 int usb_major_init(void)
77 error
= register_chrdev(USB_MAJOR
, "usb", &usb_fops
);
79 err("unable to get major %d for usb devices", USB_MAJOR
);
83 usb_class
= class_simple_create(THIS_MODULE
, "usb");
84 if (IS_ERR(usb_class
)) {
85 err("class_simple_create failed for usb devices");
86 unregister_chrdev(USB_MAJOR
, "usb");
96 void usb_major_cleanup(void)
98 class_simple_destroy(usb_class
);
100 unregister_chrdev(USB_MAJOR
, "usb");
104 * usb_register_dev - register a USB device, and ask for a minor number
105 * @intf: pointer to the usb_interface that is being registered
106 * @class_driver: pointer to the usb_class_driver for this device
108 * This should be called by all USB drivers that use the USB major number.
109 * If CONFIG_USB_DYNAMIC_MINORS is enabled, the minor number will be
110 * dynamically allocated out of the list of available ones. If it is not
111 * enabled, the minor number will be based on the next available free minor,
112 * starting at the class_driver->minor_base.
114 * This function also creates the devfs file for the usb device, if devfs
115 * is enabled, and creates a usb class device in the sysfs tree.
117 * usb_deregister_dev() must be called when the driver is done with
118 * the minor numbers given out by this function.
120 * Returns -EINVAL if something bad happens with trying to register a
121 * device, and 0 on success.
123 int usb_register_dev(struct usb_interface
*intf
,
124 struct usb_class_driver
*class_driver
)
126 int retval
= -EINVAL
;
127 int minor_base
= class_driver
->minor_base
;
129 char name
[BUS_ID_SIZE
];
132 #ifdef CONFIG_USB_DYNAMIC_MINORS
134 * We don't care what the device tries to start at, we want to start
135 * at zero to pack the devices into the smallest available space with
136 * no holes in the minor range.
142 dbg ("looking for a minor, starting at %d", minor_base
);
144 if (class_driver
->fops
== NULL
)
147 spin_lock (&minor_lock
);
148 for (minor
= minor_base
; minor
< MAX_USB_MINORS
; ++minor
) {
149 if (usb_minors
[minor
])
152 usb_minors
[minor
] = class_driver
->fops
;
157 spin_unlock (&minor_lock
);
164 /* handle the devfs registration */
165 snprintf(name
, BUS_ID_SIZE
, class_driver
->name
, minor
- minor_base
);
166 devfs_mk_cdev(MKDEV(USB_MAJOR
, minor
), class_driver
->mode
, name
);
168 /* create a usb class device for this usb interface */
169 temp
= strrchr(name
, '/');
170 if (temp
&& (temp
[1] != 0x00))
174 intf
->class_dev
= class_simple_device_add(usb_class
, MKDEV(USB_MAJOR
, minor
), &intf
->dev
, "%s", temp
);
175 if (IS_ERR(intf
->class_dev
)) {
176 spin_lock (&minor_lock
);
177 usb_minors
[intf
->minor
] = NULL
;
178 spin_unlock (&minor_lock
);
180 retval
= PTR_ERR(intf
->class_dev
);
185 EXPORT_SYMBOL(usb_register_dev
);
188 * usb_deregister_dev - deregister a USB device's dynamic minor.
189 * @intf: pointer to the usb_interface that is being deregistered
190 * @class_driver: pointer to the usb_class_driver for this device
192 * Used in conjunction with usb_register_dev(). This function is called
193 * when the USB driver is finished with the minor numbers gotten from a
194 * call to usb_register_dev() (usually when the device is disconnected
197 * This function also cleans up the devfs file for the usb device, if devfs
198 * is enabled, and removes the usb class device from the sysfs tree.
200 * This should be called by all drivers that use the USB major number.
202 void usb_deregister_dev(struct usb_interface
*intf
,
203 struct usb_class_driver
*class_driver
)
205 int minor_base
= class_driver
->minor_base
;
206 char name
[BUS_ID_SIZE
];
208 #ifdef CONFIG_USB_DYNAMIC_MINORS
212 if (intf
->minor
== -1)
215 dbg ("removing %d minor", intf
->minor
);
217 spin_lock (&minor_lock
);
218 usb_minors
[intf
->minor
] = NULL
;
219 spin_unlock (&minor_lock
);
221 snprintf(name
, BUS_ID_SIZE
, class_driver
->name
, intf
->minor
- minor_base
);
223 class_simple_device_remove(MKDEV(USB_MAJOR
, intf
->minor
));
224 intf
->class_dev
= NULL
;
227 EXPORT_SYMBOL(usb_deregister_dev
);