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/*
* USB Serial Converter driver
*
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* Copyright ( C ) 1999 - 2005 Greg Kroah - Hartman ( greg @ kroah . com )
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* Copyright ( C ) 2000 Peter Berger ( pberger @ brimson . com )
* Copyright ( C ) 2000 Al Borchers ( borchers @ steinerpoint . com )
*
* This program is free software ; you can redistribute it and / or
* modify it under the terms of the GNU General Public License version
* 2 as published by the Free Software Foundation .
*
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* This driver was originally based on the ACM driver by Armin Fuerst ( which was
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* based on a driver by Brad Keryan )
*
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* See Documentation / usb / usb - serial . txt for more information on using this
* driver
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*
*/
# include <linux/kernel.h>
# include <linux/errno.h>
# include <linux/init.h>
# include <linux/slab.h>
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# include <linux/smp_lock.h>
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# include <linux/tty.h>
# include <linux/tty_driver.h>
# include <linux/tty_flip.h>
# include <linux/module.h>
# include <linux/moduleparam.h>
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# include <linux/seq_file.h>
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# include <linux/spinlock.h>
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# include <linux/mutex.h>
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# include <linux/list.h>
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# include <linux/uaccess.h>
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# include <linux/serial.h>
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# include <linux/usb.h>
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# include <linux/usb/serial.h>
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# include "pl2303.h"
/*
* Version Information
*/
# define DRIVER_AUTHOR "Greg Kroah-Hartman, greg@kroah.com, http: //www.kroah.com/linux/"
# define DRIVER_DESC "USB Serial Driver core"
/* Driver structure we register with the USB core */
static struct usb_driver usb_serial_driver = {
. name = " usbserial " ,
. probe = usb_serial_probe ,
. disconnect = usb_serial_disconnect ,
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. suspend = usb_serial_suspend ,
. resume = usb_serial_resume ,
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. no_dynamic_id = 1 ,
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} ;
/* There is no MODULE_DEVICE_TABLE for usbserial.c. Instead
the MODULE_DEVICE_TABLE declarations in each serial driver
cause the " hotplug " program to pull in whatever module is necessary
via modprobe , and modprobe will load usbserial because the serial
drivers depend on it .
*/
static int debug ;
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/* initially all NULL */
static struct usb_serial * serial_table [ SERIAL_TTY_MINORS ] ;
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static DEFINE_MUTEX ( table_lock ) ;
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static LIST_HEAD ( usb_serial_driver_list ) ;
struct usb_serial * usb_serial_get_by_index ( unsigned index )
{
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struct usb_serial * serial ;
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mutex_lock ( & table_lock ) ;
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serial = serial_table [ index ] ;
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if ( serial )
kref_get ( & serial - > kref ) ;
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mutex_unlock ( & table_lock ) ;
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return serial ;
}
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static struct usb_serial * get_free_serial ( struct usb_serial * serial ,
int num_ports , unsigned int * minor )
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{
unsigned int i , j ;
int good_spot ;
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dbg ( " %s %d " , __func__ , num_ports ) ;
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* minor = 0 ;
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mutex_lock ( & table_lock ) ;
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for ( i = 0 ; i < SERIAL_TTY_MINORS ; + + i ) {
if ( serial_table [ i ] )
continue ;
good_spot = 1 ;
for ( j = 1 ; j < = num_ports - 1 ; + + j )
if ( ( i + j > = SERIAL_TTY_MINORS ) | | ( serial_table [ i + j ] ) ) {
good_spot = 0 ;
i + = j ;
break ;
}
if ( good_spot = = 0 )
continue ;
* minor = i ;
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j = 0 ;
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dbg ( " %s - minor base = %d " , __func__ , * minor ) ;
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for ( i = * minor ; ( i < ( * minor + num_ports ) ) & & ( i < SERIAL_TTY_MINORS ) ; + + i ) {
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serial_table [ i ] = serial ;
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serial - > port [ j + + ] - > number = i ;
}
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mutex_unlock ( & table_lock ) ;
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return serial ;
}
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mutex_unlock ( & table_lock ) ;
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return NULL ;
}
static void return_serial ( struct usb_serial * serial )
{
int i ;
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dbg ( " %s " , __func__ ) ;
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for ( i = 0 ; i < serial - > num_ports ; + + i )
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serial_table [ serial - > minor + i ] = NULL ;
}
static void destroy_serial ( struct kref * kref )
{
struct usb_serial * serial ;
struct usb_serial_port * port ;
int i ;
serial = to_usb_serial ( kref ) ;
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dbg ( " %s - %s " , __func__ , serial - > type - > description ) ;
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/* return the minor range that this device had */
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if ( serial - > minor ! = SERIAL_TTY_NO_MINOR )
return_serial ( serial ) ;
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serial - > type - > release ( serial ) ;
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/* Now that nothing is using the ports, they can be freed */
for ( i = 0 ; i < serial - > num_port_pointers ; + + i ) {
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port = serial - > port [ i ] ;
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if ( port ) {
port - > serial = NULL ;
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put_device ( & port - > dev ) ;
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}
}
usb_put_dev ( serial - > dev ) ;
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kfree ( serial ) ;
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}
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void usb_serial_put ( struct usb_serial * serial )
{
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mutex_lock ( & table_lock ) ;
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kref_put ( & serial - > kref , destroy_serial ) ;
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mutex_unlock ( & table_lock ) ;
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}
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/*****************************************************************************
* Driver tty interface functions
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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static int serial_open ( struct tty_struct * tty , struct file * filp )
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{
struct usb_serial * serial ;
struct usb_serial_port * port ;
unsigned int portNumber ;
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int retval = 0 ;
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int first = 0 ;
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dbg ( " %s " , __func__ ) ;
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/* get the serial object associated with this tty pointer */
serial = usb_serial_get_by_index ( tty - > index ) ;
if ( ! serial ) {
tty - > driver_data = NULL ;
return - ENODEV ;
}
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mutex_lock ( & serial - > disc_mutex ) ;
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portNumber = tty - > index - serial - > minor ;
port = serial - > port [ portNumber ] ;
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if ( ! port | | serial - > disconnected )
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retval = - ENODEV ;
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/*
* Note : Our locking order requirement does not allow port - > mutex
* to be acquired while serial - > disc_mutex is held .
*/
mutex_unlock ( & serial - > disc_mutex ) ;
if ( retval )
goto bailout_serial_put ;
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if ( mutex_lock_interruptible ( & port - > mutex ) ) {
retval = - ERESTARTSYS ;
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goto bailout_serial_put ;
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}
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+ + port - > port . count ;
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/* set up our port structure making the tty driver
* remember our port object , and us it */
tty - > driver_data = port ;
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tty_port_tty_set ( & port - > port , tty ) ;
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/* If the console is attached, the device is already open */
if ( port - > port . count = = 1 & & ! port - > console ) {
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first = 1 ;
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/* lock this module before we call it
* this may fail , which means we must bail out ,
* safe because we are called with BKL held */
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if ( ! try_module_get ( serial - > type - > driver . owner ) ) {
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retval = - ENODEV ;
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goto bailout_mutex_unlock ;
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}
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mutex_lock ( & serial - > disc_mutex ) ;
if ( serial - > disconnected )
retval = - ENODEV ;
else
retval = usb_autopm_get_interface ( serial - > interface ) ;
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if ( retval )
goto bailout_module_put ;
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/* only call the device specific open if this
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* is the first time the port is opened */
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retval = serial - > type - > open ( tty , port ) ;
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if ( retval )
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goto bailout_interface_put ;
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mutex_unlock ( & serial - > disc_mutex ) ;
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set_bit ( ASYNCB_INITIALIZED , & port - > port . flags ) ;
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}
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mutex_unlock ( & port - > mutex ) ;
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/* Now do the correct tty layer semantics */
retval = tty_port_block_til_ready ( & port - > port , tty , filp ) ;
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if ( retval = = 0 ) {
if ( ! first )
usb_serial_put ( serial ) ;
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return 0 ;
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}
mutex_lock ( & port - > mutex ) ;
if ( first = = 0 )
goto bailout_mutex_unlock ;
/* Undo the initial port actions */
mutex_lock ( & serial - > disc_mutex ) ;
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bailout_interface_put :
usb_autopm_put_interface ( serial - > interface ) ;
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bailout_module_put :
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mutex_unlock ( & serial - > disc_mutex ) ;
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module_put ( serial - > type - > driver . owner ) ;
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bailout_mutex_unlock :
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port - > port . count = 0 ;
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tty - > driver_data = NULL ;
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tty_port_tty_set ( & port - > port , NULL ) ;
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mutex_unlock ( & port - > mutex ) ;
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bailout_serial_put :
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usb_serial_put ( serial ) ;
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return retval ;
}
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/**
* serial_do_down - shut down hardware
* @ port : port to shut down
*
* Shut down a USB port unless it is the console . We never shut down the
* console hardware as it will always be in use .
*
* Don ' t free any resources at this point
*/
static void serial_do_down ( struct usb_serial_port * port )
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{
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struct usb_serial_driver * drv = port - > serial - > type ;
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struct usb_serial * serial ;
struct module * owner ;
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/* The console is magical, do not hang up the console hardware
or there will be tears */
if ( port - > console )
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return ;
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mutex_lock ( & port - > mutex ) ;
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serial = port - > serial ;
owner = serial - > type - > driver . owner ;
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if ( drv - > close )
drv - > close ( port ) ;
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mutex_unlock ( & port - > mutex ) ;
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}
/**
* serial_do_free - free resources post close / hangup
* @ port : port to free up
*
* Do the resource freeing and refcount dropping for the port . We must
* be careful about ordering and we must avoid freeing up the console .
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*
* Called when the last tty kref is dropped .
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*/
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static void serial_do_free ( struct tty_struct * tty )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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struct usb_serial * serial ;
struct module * owner ;
/* The console is magical, do not hang up the console hardware
or there will be tears */
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if ( port = = NULL | | port - > console )
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return ;
serial = port - > serial ;
owner = serial - > type - > driver . owner ;
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mutex_lock ( & serial - > disc_mutex ) ;
if ( ! serial - > disconnected )
usb_autopm_put_interface ( serial - > interface ) ;
mutex_unlock ( & serial - > disc_mutex ) ;
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usb_serial_put ( serial ) ;
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module_put ( owner ) ;
}
static void serial_close ( struct tty_struct * tty , struct file * filp )
{
struct usb_serial_port * port = tty - > driver_data ;
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if ( ! port )
return ;
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dbg ( " %s - port %d " , __func__ , port - > number ) ;
if ( tty_port_close_start ( & port - > port , tty , filp ) = = 0 )
return ;
serial_do_down ( port ) ;
tty_port_close_end ( & port - > port , tty ) ;
tty_port_tty_set ( & port - > port , NULL ) ;
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}
static void serial_hangup ( struct tty_struct * tty )
{
struct usb_serial_port * port = tty - > driver_data ;
serial_do_down ( port ) ;
tty_port_hangup ( & port - > port ) ;
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/* We must not free port yet - the USB serial layer depends on it's
continued existence */
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}
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static int serial_write ( struct tty_struct * tty , const unsigned char * buf ,
int count )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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int retval = - ENODEV ;
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if ( port - > serial - > dev - > state = = USB_STATE_NOTATTACHED )
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goto exit ;
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dbg ( " %s - port %d, %d byte(s) " , __func__ , port - > number , count ) ;
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/* count is managed under the mutex lock for the tty so cannot
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drop to zero until after the last close completes */
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function */
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retval = port - > serial - > type - > write ( tty , port , buf , count ) ;
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exit :
return retval ;
}
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static int serial_write_room ( struct tty_struct * tty )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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dbg ( " %s - port %d " , __func__ , port - > number ) ;
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function */
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return port - > serial - > type - > write_room ( tty ) ;
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}
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static int serial_chars_in_buffer ( struct tty_struct * tty )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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dbg ( " %s = port %d " , __func__ , port - > number ) ;
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/* if the device was unplugged then any remaining characters
fell out of the connector ; ) */
if ( port - > serial - > disconnected )
return 0 ;
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/* pass on to the driver specific version of this function */
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return port - > serial - > type - > chars_in_buffer ( tty ) ;
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}
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static void serial_throttle ( struct tty_struct * tty )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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dbg ( " %s - port %d " , __func__ , port - > number ) ;
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function */
if ( port - > serial - > type - > throttle )
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port - > serial - > type - > throttle ( tty ) ;
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}
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static void serial_unthrottle ( struct tty_struct * tty )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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dbg ( " %s - port %d " , __func__ , port - > number ) ;
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function */
if ( port - > serial - > type - > unthrottle )
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port - > serial - > type - > unthrottle ( tty ) ;
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}
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static int serial_ioctl ( struct tty_struct * tty , struct file * file ,
unsigned int cmd , unsigned long arg )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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int retval = - ENODEV ;
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dbg ( " %s - port %d, cmd 0x%.4x " , __func__ , port - > number , cmd ) ;
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function
if it is available */
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if ( port - > serial - > type - > ioctl ) {
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retval = port - > serial - > type - > ioctl ( tty , file , cmd , arg ) ;
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} else
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retval = - ENOIOCTLCMD ;
return retval ;
}
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static void serial_set_termios ( struct tty_struct * tty , struct ktermios * old )
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{
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struct usb_serial_port * port = tty - > driver_data ;
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dbg ( " %s - port %d " , __func__ , port - > number ) ;
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WARN_ON ( ! port - > port . count ) ;
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/* pass on to the driver specific version of this function
if it is available */
2005-04-17 02:20:36 +04:00
if ( port - > serial - > type - > set_termios )
2008-07-22 14:09:07 +04:00
port - > serial - > type - > set_termios ( tty , port , old ) ;
2007-10-18 12:24:22 +04:00
else
tty_termios_copy_hw ( tty - > termios , old ) ;
2005-04-17 02:20:36 +04:00
}
2008-07-22 14:18:03 +04:00
static int serial_break ( struct tty_struct * tty , int break_state )
2005-04-17 02:20:36 +04:00
{
2005-07-04 21:32:51 +04:00
struct usb_serial_port * port = tty - > driver_data ;
2005-04-17 02:20:36 +04:00
2008-03-04 03:08:34 +03:00
dbg ( " %s - port %d " , __func__ , port - > number ) ;
2005-04-17 02:20:36 +04:00
2008-07-22 14:09:07 +04:00
WARN_ON ( ! port - > port . count ) ;
2008-07-22 14:12:24 +04:00
/* pass on to the driver specific version of this function
if it is available */
2009-01-02 16:48:56 +03:00
if ( port - > serial - > type - > break_ctl )
2008-07-22 14:09:07 +04:00
port - > serial - > type - > break_ctl ( tty , break_state ) ;
2008-07-22 14:18:03 +04:00
return 0 ;
2005-04-17 02:20:36 +04:00
}
2009-04-01 02:19:21 +04:00
static int serial_proc_show ( struct seq_file * m , void * v )
2005-04-17 02:20:36 +04:00
{
struct usb_serial * serial ;
int i ;
char tmp [ 40 ] ;
2008-03-04 03:08:34 +03:00
dbg ( " %s " , __func__ ) ;
2009-04-01 02:19:21 +04:00
seq_puts ( m , " usbserinfo:1.0 driver:2.0 \n " ) ;
for ( i = 0 ; i < SERIAL_TTY_MINORS ; + + i ) {
2005-04-17 02:20:36 +04:00
serial = usb_serial_get_by_index ( i ) ;
if ( serial = = NULL )
continue ;
2009-04-01 02:19:21 +04:00
seq_printf ( m , " %d: " , i ) ;
2005-06-21 08:15:16 +04:00
if ( serial - > type - > driver . owner )
2009-04-01 02:19:21 +04:00
seq_printf ( m , " module:%s " ,
2008-07-22 14:12:24 +04:00
module_name ( serial - > type - > driver . owner ) ) ;
2009-04-01 02:19:21 +04:00
seq_printf ( m , " name: \" %s \" " ,
2008-07-22 14:12:24 +04:00
serial - > type - > description ) ;
2009-04-01 02:19:21 +04:00
seq_printf ( m , " vendor:%04x product:%04x " ,
2008-07-22 14:12:24 +04:00
le16_to_cpu ( serial - > dev - > descriptor . idVendor ) ,
le16_to_cpu ( serial - > dev - > descriptor . idProduct ) ) ;
2009-04-01 02:19:21 +04:00
seq_printf ( m , " num_ports:%d " , serial - > num_ports ) ;
seq_printf ( m , " port:%d " , i - serial - > minor + 1 ) ;
2005-04-17 02:20:36 +04:00
usb_make_path ( serial - > dev , tmp , sizeof ( tmp ) ) ;
2009-04-01 02:19:21 +04:00
seq_printf ( m , " path:%s " , tmp ) ;
2008-07-22 14:12:24 +04:00
2009-04-01 02:19:21 +04:00
seq_putc ( m , ' \n ' ) ;
2006-04-25 09:46:17 +04:00
usb_serial_put ( serial ) ;
2005-04-17 02:20:36 +04:00
}
2009-04-01 02:19:21 +04:00
return 0 ;
2005-04-17 02:20:36 +04:00
}
2009-04-01 02:19:21 +04:00
static int serial_proc_open ( struct inode * inode , struct file * file )
{
return single_open ( file , serial_proc_show , NULL ) ;
}
static const struct file_operations serial_proc_fops = {
. owner = THIS_MODULE ,
. open = serial_proc_open ,
. read = seq_read ,
. llseek = seq_lseek ,
. release = single_release ,
} ;
2008-07-22 14:12:24 +04:00
static int serial_tiocmget ( struct tty_struct * tty , struct file * file )
2005-04-17 02:20:36 +04:00
{
2005-07-04 21:32:51 +04:00
struct usb_serial_port * port = tty - > driver_data ;
2005-04-17 02:20:36 +04:00
2008-03-04 03:08:34 +03:00
dbg ( " %s - port %d " , __func__ , port - > number ) ;
2005-04-17 02:20:36 +04:00
2008-07-22 14:09:07 +04:00
WARN_ON ( ! port - > port . count ) ;
2005-04-17 02:20:36 +04:00
if ( port - > serial - > type - > tiocmget )
2008-07-22 14:09:07 +04:00
return port - > serial - > type - > tiocmget ( tty , file ) ;
2005-04-17 02:20:36 +04:00
return - EINVAL ;
}
2008-07-22 14:12:24 +04:00
static int serial_tiocmset ( struct tty_struct * tty , struct file * file ,
2005-04-17 02:20:36 +04:00
unsigned int set , unsigned int clear )
{
2005-07-04 21:32:51 +04:00
struct usb_serial_port * port = tty - > driver_data ;
2005-04-17 02:20:36 +04:00
2008-03-04 03:08:34 +03:00
dbg ( " %s - port %d " , __func__ , port - > number ) ;
2005-04-17 02:20:36 +04:00
2008-07-22 14:09:07 +04:00
WARN_ON ( ! port - > port . count ) ;
2005-04-17 02:20:36 +04:00
if ( port - > serial - > type - > tiocmset )
2008-07-22 14:09:07 +04:00
return port - > serial - > type - > tiocmset ( tty , file , set , clear ) ;
2005-04-17 02:20:36 +04:00
return - EINVAL ;
}
2006-05-23 08:58:49 +04:00
/*
* We would be calling tty_wakeup here , but unfortunately some line
* disciplines have an annoying habit of calling tty - > write from
* the write wakeup callback ( e . g . n_hdlc . c ) .
*/
void usb_serial_port_softint ( struct usb_serial_port * port )
{
schedule_work ( & port - > work ) ;
}
2008-07-22 14:12:24 +04:00
EXPORT_SYMBOL_GPL ( usb_serial_port_softint ) ;
2006-05-23 08:58:49 +04:00
2006-11-22 17:57:56 +03:00
static void usb_serial_port_work ( struct work_struct * work )
2005-04-17 02:20:36 +04:00
{
2006-11-22 17:57:56 +03:00
struct usb_serial_port * port =
container_of ( work , struct usb_serial_port , work ) ;
2005-04-17 02:20:36 +04:00
struct tty_struct * tty ;
2008-03-04 03:08:34 +03:00
dbg ( " %s - port %d " , __func__ , port - > number ) ;
2008-07-22 14:12:24 +04:00
2008-10-13 13:39:46 +04:00
tty = tty_port_tty_get ( & port - > port ) ;
2005-04-17 02:20:36 +04:00
if ( ! tty )
return ;
tty_wakeup ( tty ) ;
2008-10-13 13:39:46 +04:00
tty_kref_put ( tty ) ;
2005-04-17 02:20:36 +04:00
}
2007-01-13 09:29:26 +03:00
static void kill_traffic ( struct usb_serial_port * port )
2006-06-22 02:00:45 +04:00
{
2005-04-17 02:20:36 +04:00
usb_kill_urb ( port - > read_urb ) ;
usb_kill_urb ( port - > write_urb ) ;
2007-08-17 16:01:38 +04:00
/*
* This is tricky .
* Some drivers submit the read_urb in the
* handler for the write_urb or vice versa
* this order determines the order in which
* usb_kill_urb ( ) must be used to reliably
* kill the URBs . As it is unknown here ,
* both orders must be used in turn .
* The call below is not redundant .
*/
usb_kill_urb ( port - > read_urb ) ;
2005-04-17 02:20:36 +04:00
usb_kill_urb ( port - > interrupt_in_urb ) ;
usb_kill_urb ( port - > interrupt_out_urb ) ;
2007-01-13 09:29:26 +03:00
}
2009-09-01 19:38:34 +04:00
static void port_release ( struct device * dev )
2007-01-13 09:29:26 +03:00
{
2009-09-01 19:38:34 +04:00
struct usb_serial_port * port = to_usb_serial_port ( dev ) ;
dbg ( " %s - %s " , __func__ , dev_name ( dev ) ) ;
2009-04-14 19:31:02 +04:00
/*
* Stop all the traffic before cancelling the work , so that
* nobody will restart it by calling usb_serial_port_softint .
*/
2007-01-13 09:29:26 +03:00
kill_traffic ( port ) ;
2009-04-14 19:31:02 +04:00
cancel_work_sync ( & port - > work ) ;
2007-01-13 09:29:26 +03:00
usb_free_urb ( port - > read_urb ) ;
usb_free_urb ( port - > write_urb ) ;
usb_free_urb ( port - > interrupt_in_urb ) ;
2005-04-17 02:20:36 +04:00
usb_free_urb ( port - > interrupt_out_urb ) ;
kfree ( port - > bulk_in_buffer ) ;
kfree ( port - > bulk_out_buffer ) ;
kfree ( port - > interrupt_in_buffer ) ;
kfree ( port - > interrupt_out_buffer ) ;
kfree ( port ) ;
}
2008-07-22 14:12:24 +04:00
static struct usb_serial * create_serial ( struct usb_device * dev ,
struct usb_interface * interface ,
struct usb_serial_driver * driver )
2005-04-17 02:20:36 +04:00
{
struct usb_serial * serial ;
2006-02-27 23:29:43 +03:00
serial = kzalloc ( sizeof ( * serial ) , GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! serial ) {
2008-03-04 03:08:34 +03:00
dev_err ( & dev - > dev , " %s - out of memory \n " , __func__ ) ;
2005-04-17 02:20:36 +04:00
return NULL ;
}
serial - > dev = usb_get_dev ( dev ) ;
2005-06-21 08:15:16 +04:00
serial - > type = driver ;
2005-04-17 02:20:36 +04:00
serial - > interface = interface ;
kref_init ( & serial - > kref ) ;
2008-01-16 19:18:52 +03:00
mutex_init ( & serial - > disc_mutex ) ;
2008-07-29 20:01:04 +04:00
serial - > minor = SERIAL_TTY_NO_MINOR ;
2005-04-17 02:20:36 +04:00
return serial ;
}
2006-12-17 23:50:23 +03:00
static const struct usb_device_id * match_dynamic_id ( struct usb_interface * intf ,
2008-07-22 14:12:24 +04:00
struct usb_serial_driver * drv )
2006-12-17 23:50:23 +03:00
{
struct usb_dynid * dynid ;
spin_lock ( & drv - > dynids . lock ) ;
list_for_each_entry ( dynid , & drv - > dynids . list , node ) {
if ( usb_match_one_id ( intf , & dynid - > id ) ) {
spin_unlock ( & drv - > dynids . lock ) ;
return & dynid - > id ;
}
}
spin_unlock ( & drv - > dynids . lock ) ;
return NULL ;
}
static const struct usb_device_id * get_iface_id ( struct usb_serial_driver * drv ,
struct usb_interface * intf )
{
const struct usb_device_id * id ;
id = usb_match_id ( intf , drv - > id_table ) ;
if ( id ) {
dbg ( " static descriptor matches " ) ;
goto exit ;
}
id = match_dynamic_id ( intf , drv ) ;
if ( id )
dbg ( " dynamic descriptor matches " ) ;
exit :
return id ;
}
2008-07-22 14:12:24 +04:00
static struct usb_serial_driver * search_serial_device (
struct usb_interface * iface )
2005-04-17 02:20:36 +04:00
{
const struct usb_device_id * id ;
2007-10-11 00:24:06 +04:00
struct usb_serial_driver * drv ;
2005-04-17 02:20:36 +04:00
2006-01-10 02:13:33 +03:00
/* Check if the usb id matches a known device */
2007-10-11 00:24:06 +04:00
list_for_each_entry ( drv , & usb_serial_driver_list , driver_list ) {
id = get_iface_id ( drv , iface ) ;
2006-12-17 23:50:23 +03:00
if ( id )
2007-10-11 00:24:06 +04:00
return drv ;
2005-04-17 02:20:36 +04:00
}
return NULL ;
}
2009-06-11 15:26:29 +04:00
static int serial_carrier_raised ( struct tty_port * port )
{
struct usb_serial_port * p = container_of ( port , struct usb_serial_port , port ) ;
struct usb_serial_driver * drv = p - > serial - > type ;
if ( drv - > carrier_raised )
return drv - > carrier_raised ( p ) ;
/* No carrier control - don't block */
return 1 ;
}
static void serial_dtr_rts ( struct tty_port * port , int on )
{
struct usb_serial_port * p = container_of ( port , struct usb_serial_port , port ) ;
struct usb_serial_driver * drv = p - > serial - > type ;
if ( drv - > dtr_rts )
drv - > dtr_rts ( p , on ) ;
}
static const struct tty_port_operations serial_port_ops = {
. carrier_raised = serial_carrier_raised ,
. dtr_rts = serial_dtr_rts ,
} ;
2009-09-20 00:13:33 +04:00
/**
* serial_install - install tty
* @ driver : the driver ( USB in our case )
* @ tty : the tty being created
*
* Create the termios objects for this tty . We use the default USB
* serial ones but permit them to be overriddenby serial - > type - > termios .
* This lets us remove all the ugly hackery
*/
static int serial_install ( struct tty_driver * driver , struct tty_struct * tty )
{
int idx = tty - > index ;
struct usb_serial * serial ;
int retval ;
/* If the termios setup has yet to be done */
if ( tty - > driver - > termios [ idx ] = = NULL ) {
/* perform the standard setup */
retval = tty_init_termios ( tty ) ;
if ( retval )
return retval ;
/* allow the driver to update it */
serial = usb_serial_get_by_index ( tty - > index ) ;
if ( serial - > type - > init_termios )
serial - > type - > init_termios ( tty ) ;
usb_serial_put ( serial ) ;
}
/* Final install (we use the default method) */
tty_driver_kref_get ( driver ) ;
tty - > count + + ;
driver - > ttys [ idx ] = tty ;
return 0 ;
}
2005-04-17 02:20:36 +04:00
int usb_serial_probe ( struct usb_interface * interface ,
const struct usb_device_id * id )
{
2008-07-22 14:12:24 +04:00
struct usb_device * dev = interface_to_usbdev ( interface ) ;
2005-04-17 02:20:36 +04:00
struct usb_serial * serial = NULL ;
struct usb_serial_port * port ;
struct usb_host_interface * iface_desc ;
struct usb_endpoint_descriptor * endpoint ;
struct usb_endpoint_descriptor * interrupt_in_endpoint [ MAX_NUM_PORTS ] ;
struct usb_endpoint_descriptor * interrupt_out_endpoint [ MAX_NUM_PORTS ] ;
struct usb_endpoint_descriptor * bulk_in_endpoint [ MAX_NUM_PORTS ] ;
struct usb_endpoint_descriptor * bulk_out_endpoint [ MAX_NUM_PORTS ] ;
2005-06-21 08:15:16 +04:00
struct usb_serial_driver * type = NULL ;
2005-04-17 02:20:36 +04:00
int retval ;
2008-06-18 17:56:00 +04:00
unsigned int minor ;
2005-04-17 02:20:36 +04:00
int buffer_size ;
int i ;
int num_interrupt_in = 0 ;
int num_interrupt_out = 0 ;
int num_bulk_in = 0 ;
int num_bulk_out = 0 ;
int num_ports = 0 ;
int max_endpoints ;
2007-01-13 09:31:27 +03:00
lock_kernel ( ) ; /* guard against unloading a serial driver module */
2005-04-17 02:20:36 +04:00
type = search_serial_device ( interface ) ;
if ( ! type ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2005-04-17 02:20:36 +04:00
dbg ( " none matched " ) ;
return - ENODEV ;
}
2008-07-22 14:12:24 +04:00
serial = create_serial ( dev , interface , type ) ;
2005-04-17 02:20:36 +04:00
if ( ! serial ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-03-04 03:08:34 +03:00
dev_err ( & interface - > dev , " %s - out of memory \n " , __func__ ) ;
2005-04-17 02:20:36 +04:00
return - ENOMEM ;
}
/* if this device type has a probe function, call it */
if ( type - > probe ) {
const struct usb_device_id * id ;
2005-06-21 08:15:16 +04:00
if ( ! try_module_get ( type - > driver . owner ) ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" module get failed, exiting \n " ) ;
kfree ( serial ) ;
2005-04-17 02:20:36 +04:00
return - EIO ;
}
2006-12-17 23:50:23 +03:00
id = get_iface_id ( type , interface ) ;
2005-04-17 02:20:36 +04:00
retval = type - > probe ( serial , id ) ;
2005-06-21 08:15:16 +04:00
module_put ( type - > driver . owner ) ;
2005-04-17 02:20:36 +04:00
if ( retval ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-07-22 14:12:24 +04:00
dbg ( " sub driver rejected device " ) ;
kfree ( serial ) ;
2005-04-17 02:20:36 +04:00
return retval ;
}
}
/* descriptor matches, let's find the endpoints needed */
/* check out the endpoints */
iface_desc = interface - > cur_altsetting ;
for ( i = 0 ; i < iface_desc - > desc . bNumEndpoints ; + + i ) {
endpoint = & iface_desc - > endpoint [ i ] . desc ;
2006-09-27 22:58:53 +04:00
if ( usb_endpoint_is_bulk_in ( endpoint ) ) {
2005-04-17 02:20:36 +04:00
/* we found a bulk in endpoint */
dbg ( " found bulk in on endpoint %d " , i ) ;
bulk_in_endpoint [ num_bulk_in ] = endpoint ;
+ + num_bulk_in ;
}
2006-09-27 22:58:53 +04:00
if ( usb_endpoint_is_bulk_out ( endpoint ) ) {
2005-04-17 02:20:36 +04:00
/* we found a bulk out endpoint */
dbg ( " found bulk out on endpoint %d " , i ) ;
bulk_out_endpoint [ num_bulk_out ] = endpoint ;
+ + num_bulk_out ;
}
2006-09-27 22:58:53 +04:00
if ( usb_endpoint_is_int_in ( endpoint ) ) {
2005-04-17 02:20:36 +04:00
/* we found a interrupt in endpoint */
dbg ( " found interrupt in on endpoint %d " , i ) ;
interrupt_in_endpoint [ num_interrupt_in ] = endpoint ;
+ + num_interrupt_in ;
}
2006-09-27 22:58:53 +04:00
if ( usb_endpoint_is_int_out ( endpoint ) ) {
2005-04-17 02:20:36 +04:00
/* we found an interrupt out endpoint */
dbg ( " found interrupt out on endpoint %d " , i ) ;
interrupt_out_endpoint [ num_interrupt_out ] = endpoint ;
+ + num_interrupt_out ;
}
}
# if defined(CONFIG_USB_SERIAL_PL2303) || defined(CONFIG_USB_SERIAL_PL2303_MODULE)
2008-07-22 14:12:24 +04:00
/* BEGIN HORRIBLE HACK FOR PL2303 */
2005-04-17 02:20:36 +04:00
/* this is needed due to the looney way its endpoints are set up */
if ( ( ( le16_to_cpu ( dev - > descriptor . idVendor ) = = PL2303_VENDOR_ID ) & &
( le16_to_cpu ( dev - > descriptor . idProduct ) = = PL2303_PRODUCT_ID ) ) | |
( ( le16_to_cpu ( dev - > descriptor . idVendor ) = = ATEN_VENDOR_ID ) & &
2006-09-16 18:17:34 +04:00
( le16_to_cpu ( dev - > descriptor . idProduct ) = = ATEN_PRODUCT_ID ) ) | |
( ( le16_to_cpu ( dev - > descriptor . idVendor ) = = ALCOR_VENDOR_ID ) & &
2008-09-14 03:58:55 +04:00
( le16_to_cpu ( dev - > descriptor . idProduct ) = = ALCOR_PRODUCT_ID ) ) | |
( ( le16_to_cpu ( dev - > descriptor . idVendor ) = = SIEMENS_VENDOR_ID ) & &
( le16_to_cpu ( dev - > descriptor . idProduct ) = = SIEMENS_PRODUCT_ID_EF81 ) ) ) {
2005-04-17 02:20:36 +04:00
if ( interface ! = dev - > actconfig - > interface [ 0 ] ) {
/* check out the endpoints of the other interface*/
iface_desc = dev - > actconfig - > interface [ 0 ] - > cur_altsetting ;
for ( i = 0 ; i < iface_desc - > desc . bNumEndpoints ; + + i ) {
endpoint = & iface_desc - > endpoint [ i ] . desc ;
2006-09-27 22:58:53 +04:00
if ( usb_endpoint_is_int_in ( endpoint ) ) {
2005-04-17 02:20:36 +04:00
/* we found a interrupt in endpoint */
dbg ( " found interrupt in for Prolific device on separate interface " ) ;
interrupt_in_endpoint [ num_interrupt_in ] = endpoint ;
+ + num_interrupt_in ;
}
}
}
/* Now make sure the PL-2303 is configured correctly.
* If not , give up now and hope this hack will work
* properly during a later invocation of usb_serial_probe
*/
if ( num_bulk_in = = 0 | | num_bulk_out = = 0 ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2005-04-17 02:20:36 +04:00
dev_info ( & interface - > dev , " PL-2303 hack: descriptors matched but endpoints did not \n " ) ;
2008-07-22 14:12:24 +04:00
kfree ( serial ) ;
2005-04-17 02:20:36 +04:00
return - ENODEV ;
}
}
/* END HORRIBLE HACK FOR PL2303 */
# endif
# ifdef CONFIG_USB_SERIAL_GENERIC
if ( type = = & usb_serial_generic_device ) {
num_ports = num_bulk_out ;
if ( num_ports = = 0 ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" Generic device with no bulk out, not allowed. \n " ) ;
kfree ( serial ) ;
2005-04-17 02:20:36 +04:00
return - EIO ;
}
}
# endif
if ( ! num_ports ) {
/* if this device type has a calc_num_ports function, call it */
if ( type - > calc_num_ports ) {
2005-06-21 08:15:16 +04:00
if ( ! try_module_get ( type - > driver . owner ) ) {
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" module get failed, exiting \n " ) ;
kfree ( serial ) ;
2005-04-17 02:20:36 +04:00
return - EIO ;
}
2008-07-22 14:12:24 +04:00
num_ports = type - > calc_num_ports ( serial ) ;
2005-06-21 08:15:16 +04:00
module_put ( type - > driver . owner ) ;
2005-04-17 02:20:36 +04:00
}
if ( ! num_ports )
num_ports = type - > num_ports ;
}
serial - > num_ports = num_ports ;
serial - > num_bulk_in = num_bulk_in ;
serial - > num_bulk_out = num_bulk_out ;
serial - > num_interrupt_in = num_interrupt_in ;
serial - > num_interrupt_out = num_interrupt_out ;
2007-10-11 00:24:06 +04:00
/* found all that we need */
dev_info ( & interface - > dev , " %s converter detected \n " ,
type - > description ) ;
2005-04-17 02:20:36 +04:00
/* create our ports, we need as many as the max endpoints */
2008-07-22 14:12:24 +04:00
/* we don't use num_ports here because some devices have more
endpoint pairs than ports */
2005-04-17 02:20:36 +04:00
max_endpoints = max ( num_bulk_in , num_bulk_out ) ;
max_endpoints = max ( max_endpoints , num_interrupt_in ) ;
max_endpoints = max ( max_endpoints , num_interrupt_out ) ;
max_endpoints = max ( max_endpoints , ( int ) serial - > num_ports ) ;
serial - > num_port_pointers = max_endpoints ;
2007-01-13 09:31:27 +03:00
unlock_kernel ( ) ;
2008-07-22 14:12:24 +04:00
dbg ( " %s - setting up %d port structures for this device " ,
__func__ , max_endpoints ) ;
2005-04-17 02:20:36 +04:00
for ( i = 0 ; i < max_endpoints ; + + i ) {
2006-02-27 23:29:43 +03:00
port = kzalloc ( sizeof ( struct usb_serial_port ) , GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port )
goto probe_error ;
2008-10-13 13:39:46 +04:00
tty_port_init ( & port - > port ) ;
2009-06-11 15:26:29 +04:00
port - > port . ops = & serial_port_ops ;
2005-04-17 02:20:36 +04:00
port - > serial = serial ;
2005-04-23 23:49:16 +04:00
spin_lock_init ( & port - > lock ) ;
2006-03-24 23:12:31 +03:00
mutex_init ( & port - > mutex ) ;
2006-11-22 17:57:56 +03:00
INIT_WORK ( & port - > work , usb_serial_port_work ) ;
2005-04-17 02:20:36 +04:00
serial - > port [ i ] = port ;
2009-09-01 19:38:34 +04:00
port - > dev . parent = & interface - > dev ;
port - > dev . driver = NULL ;
port - > dev . bus = & usb_serial_bus_type ;
port - > dev . release = & port_release ;
device_initialize ( & port - > dev ) ;
2005-04-17 02:20:36 +04:00
}
/* set up the endpoint information */
for ( i = 0 ; i < num_bulk_in ; + + i ) {
endpoint = bulk_in_endpoint [ i ] ;
port = serial - > port [ i ] ;
2008-07-22 14:12:24 +04:00
port - > read_urb = usb_alloc_urb ( 0 , GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port - > read_urb ) {
dev_err ( & interface - > dev , " No free urbs available \n " ) ;
goto probe_error ;
}
buffer_size = le16_to_cpu ( endpoint - > wMaxPacketSize ) ;
port - > bulk_in_size = buffer_size ;
port - > bulk_in_endpointAddress = endpoint - > bEndpointAddress ;
2008-07-22 14:12:24 +04:00
port - > bulk_in_buffer = kmalloc ( buffer_size , GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port - > bulk_in_buffer ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" Couldn't allocate bulk_in_buffer \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
2008-07-22 14:12:24 +04:00
usb_fill_bulk_urb ( port - > read_urb , dev ,
usb_rcvbulkpipe ( dev ,
endpoint - > bEndpointAddress ) ,
port - > bulk_in_buffer , buffer_size ,
serial - > type - > read_bulk_callback , port ) ;
2005-04-17 02:20:36 +04:00
}
for ( i = 0 ; i < num_bulk_out ; + + i ) {
endpoint = bulk_out_endpoint [ i ] ;
port = serial - > port [ i ] ;
port - > write_urb = usb_alloc_urb ( 0 , GFP_KERNEL ) ;
if ( ! port - > write_urb ) {
dev_err ( & interface - > dev , " No free urbs available \n " ) ;
goto probe_error ;
}
buffer_size = le16_to_cpu ( endpoint - > wMaxPacketSize ) ;
port - > bulk_out_size = buffer_size ;
port - > bulk_out_endpointAddress = endpoint - > bEndpointAddress ;
2008-07-22 14:12:24 +04:00
port - > bulk_out_buffer = kmalloc ( buffer_size , GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port - > bulk_out_buffer ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" Couldn't allocate bulk_out_buffer \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
2008-07-22 14:12:24 +04:00
usb_fill_bulk_urb ( port - > write_urb , dev ,
usb_sndbulkpipe ( dev ,
endpoint - > bEndpointAddress ) ,
port - > bulk_out_buffer , buffer_size ,
serial - > type - > write_bulk_callback , port ) ;
2005-04-17 02:20:36 +04:00
}
if ( serial - > type - > read_int_callback ) {
for ( i = 0 ; i < num_interrupt_in ; + + i ) {
endpoint = interrupt_in_endpoint [ i ] ;
port = serial - > port [ i ] ;
port - > interrupt_in_urb = usb_alloc_urb ( 0 , GFP_KERNEL ) ;
if ( ! port - > interrupt_in_urb ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" No free urbs available \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
buffer_size = le16_to_cpu ( endpoint - > wMaxPacketSize ) ;
2008-07-22 14:12:24 +04:00
port - > interrupt_in_endpointAddress =
endpoint - > bEndpointAddress ;
port - > interrupt_in_buffer = kmalloc ( buffer_size ,
GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port - > interrupt_in_buffer ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" Couldn't allocate interrupt_in_buffer \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
2008-07-22 14:12:24 +04:00
usb_fill_int_urb ( port - > interrupt_in_urb , dev ,
usb_rcvintpipe ( dev ,
endpoint - > bEndpointAddress ) ,
port - > interrupt_in_buffer , buffer_size ,
serial - > type - > read_int_callback , port ,
endpoint - > bInterval ) ;
2005-04-17 02:20:36 +04:00
}
} else if ( num_interrupt_in ) {
dbg ( " the device claims to support interrupt in transfers, but read_int_callback is not defined " ) ;
}
2008-07-22 14:12:24 +04:00
2005-04-17 02:20:36 +04:00
if ( serial - > type - > write_int_callback ) {
for ( i = 0 ; i < num_interrupt_out ; + + i ) {
endpoint = interrupt_out_endpoint [ i ] ;
port = serial - > port [ i ] ;
port - > interrupt_out_urb = usb_alloc_urb ( 0 , GFP_KERNEL ) ;
if ( ! port - > interrupt_out_urb ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" No free urbs available \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
buffer_size = le16_to_cpu ( endpoint - > wMaxPacketSize ) ;
port - > interrupt_out_size = buffer_size ;
2008-07-22 14:12:24 +04:00
port - > interrupt_out_endpointAddress =
endpoint - > bEndpointAddress ;
port - > interrupt_out_buffer = kmalloc ( buffer_size ,
GFP_KERNEL ) ;
2005-04-17 02:20:36 +04:00
if ( ! port - > interrupt_out_buffer ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" Couldn't allocate interrupt_out_buffer \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
2008-07-22 14:12:24 +04:00
usb_fill_int_urb ( port - > interrupt_out_urb , dev ,
usb_sndintpipe ( dev ,
endpoint - > bEndpointAddress ) ,
port - > interrupt_out_buffer , buffer_size ,
serial - > type - > write_int_callback , port ,
endpoint - > bInterval ) ;
2005-04-17 02:20:36 +04:00
}
} else if ( num_interrupt_out ) {
dbg ( " the device claims to support interrupt out transfers, but write_int_callback is not defined " ) ;
}
2008-07-22 14:12:24 +04:00
2005-04-17 02:20:36 +04:00
/* if this device type has an attach function, call it */
if ( type - > attach ) {
2005-06-21 08:15:16 +04:00
if ( ! try_module_get ( type - > driver . owner ) ) {
2008-07-22 14:12:24 +04:00
dev_err ( & interface - > dev ,
" module get failed, exiting \n " ) ;
2005-04-17 02:20:36 +04:00
goto probe_error ;
}
2008-07-22 14:12:24 +04:00
retval = type - > attach ( serial ) ;
2005-06-21 08:15:16 +04:00
module_put ( type - > driver . owner ) ;
2005-04-17 02:20:36 +04:00
if ( retval < 0 )
goto probe_error ;
if ( retval > 0 ) {
2008-07-22 14:12:24 +04:00
/* quietly accept this device, but don't bind to a
serial port as it ' s about to disappear */
2009-05-27 19:25:52 +04:00
serial - > num_ports = 0 ;
2005-04-17 02:20:36 +04:00
goto exit ;
}
}
2008-07-22 14:12:24 +04:00
if ( get_free_serial ( serial , num_ports , & minor ) = = NULL ) {
2007-01-13 09:29:26 +03:00
dev_err ( & interface - > dev , " No more free serial devices \n " ) ;
goto probe_error ;
}
2007-02-26 17:43:00 +03:00
serial - > minor = minor ;
2007-01-13 09:29:26 +03:00
2005-04-17 02:20:36 +04:00
/* register all of the individual ports with the driver core */
for ( i = 0 ; i < num_ports ; + + i ) {
port = serial - > port [ i ] ;
2008-05-02 08:02:41 +04:00
dev_set_name ( & port - > dev , " ttyUSB%d " , port - > number ) ;
2008-05-02 08:02:41 +04:00
dbg ( " %s - registering %s " , __func__ , dev_name ( & port - > dev ) ) ;
2009-06-02 19:54:11 +04:00
port - > dev_state = PORT_REGISTERING ;
2009-09-01 19:38:34 +04:00
retval = device_add ( & port - > dev ) ;
2009-06-02 19:54:11 +04:00
if ( retval ) {
2006-08-28 22:43:25 +04:00
dev_err ( & port - > dev , " Error registering port device, "
" continuing \n " ) ;
2009-06-02 19:54:11 +04:00
port - > dev_state = PORT_UNREGISTERED ;
} else {
port - > dev_state = PORT_REGISTERED ;
}
2005-04-17 02:20:36 +04:00
}
2008-07-22 14:12:24 +04:00
usb_serial_console_init ( debug , minor ) ;
2005-04-17 02:20:36 +04:00
exit :
/* success */
2008-07-22 14:12:24 +04:00
usb_set_intfdata ( interface , serial ) ;
2005-04-17 02:20:36 +04:00
return 0 ;
probe_error :
2009-09-01 19:38:34 +04:00
usb_serial_put ( serial ) ;
2005-04-17 02:20:36 +04:00
return - EIO ;
}
2008-07-22 14:12:24 +04:00
EXPORT_SYMBOL_GPL ( usb_serial_probe ) ;
2005-04-17 02:20:36 +04:00
void usb_serial_disconnect ( struct usb_interface * interface )
{
int i ;
2008-07-22 14:12:24 +04:00
struct usb_serial * serial = usb_get_intfdata ( interface ) ;
2005-04-17 02:20:36 +04:00
struct device * dev = & interface - > dev ;
struct usb_serial_port * port ;
2006-04-25 09:46:17 +04:00
usb_serial_console_disconnect ( serial ) ;
2008-07-22 14:12:24 +04:00
dbg ( " %s " , __func__ ) ;
2005-04-17 02:20:36 +04:00
2008-01-16 19:18:52 +03:00
mutex_lock ( & serial - > disc_mutex ) ;
2008-07-22 14:12:24 +04:00
usb_set_intfdata ( interface , NULL ) ;
2008-01-16 19:18:52 +03:00
/* must set a flag, to signal subdrivers */
serial - > disconnected = 1 ;
2009-04-14 19:31:02 +04:00
mutex_unlock ( & serial - > disc_mutex ) ;
2008-01-16 19:18:52 +03:00
for ( i = 0 ; i < serial - > num_ports ; + + i ) {
port = serial - > port [ i ] ;
if ( port ) {
2008-10-13 13:39:46 +04:00
struct tty_struct * tty = tty_port_tty_get ( & port - > port ) ;
if ( tty ) {
2009-09-20 00:13:23 +04:00
tty_vhangup ( tty ) ;
2008-10-13 13:39:46 +04:00
tty_kref_put ( tty ) ;
}
2008-01-16 19:18:52 +03:00
kill_traffic ( port ) ;
2009-04-14 19:31:02 +04:00
cancel_work_sync ( & port - > work ) ;
2009-06-02 19:54:11 +04:00
if ( port - > dev_state = = PORT_REGISTERED ) {
/* Make sure the port is bound so that the
* driver ' s port_remove method is called .
*/
if ( ! port - > dev . driver ) {
int rc ;
port - > dev . driver =
& serial - > type - > driver ;
rc = device_bind_driver ( & port - > dev ) ;
}
port - > dev_state = PORT_UNREGISTERING ;
device_del ( & port - > dev ) ;
port - > dev_state = PORT_UNREGISTERED ;
}
2009-04-14 19:31:02 +04:00
}
}
2009-06-02 19:53:55 +04:00
serial - > type - > disconnect ( serial ) ;
2009-04-14 19:31:02 +04:00
2009-09-01 19:38:34 +04:00
/* let the last holder of this object cause it to be cleaned up */
2008-01-16 19:18:52 +03:00
usb_serial_put ( serial ) ;
2005-04-17 02:20:36 +04:00
dev_info ( dev , " device disconnected \n " ) ;
}
2008-07-22 14:12:24 +04:00
EXPORT_SYMBOL_GPL ( usb_serial_disconnect ) ;
2005-04-17 02:20:36 +04:00
2007-04-27 22:54:57 +04:00
int usb_serial_suspend ( struct usb_interface * intf , pm_message_t message )
{
struct usb_serial * serial = usb_get_intfdata ( intf ) ;
struct usb_serial_port * port ;
int i , r = 0 ;
2009-02-05 18:54:25 +03:00
serial - > suspending = 1 ;
2007-07-23 10:58:39 +04:00
for ( i = 0 ; i < serial - > num_ports ; + + i ) {
port = serial - > port [ i ] ;
if ( port )
kill_traffic ( port ) ;
2007-04-27 22:54:57 +04:00
}
if ( serial - > type - > suspend )
2007-07-23 10:58:39 +04:00
r = serial - > type - > suspend ( serial , message ) ;
2007-04-27 22:54:57 +04:00
return r ;
}
EXPORT_SYMBOL ( usb_serial_suspend ) ;
int usb_serial_resume ( struct usb_interface * intf )
{
struct usb_serial * serial = usb_get_intfdata ( intf ) ;
2009-02-06 20:06:43 +03:00
int rv ;
2007-04-27 22:54:57 +04:00
2009-02-05 18:54:25 +03:00
serial - > suspending = 0 ;
2007-10-25 21:58:43 +04:00
if ( serial - > type - > resume )
2009-02-06 20:06:43 +03:00
rv = serial - > type - > resume ( serial ) ;
else
rv = usb_serial_generic_resume ( serial ) ;
2009-02-05 18:54:25 +03:00
2009-02-06 20:06:43 +03:00
return rv ;
2007-04-27 22:54:57 +04:00
}
EXPORT_SYMBOL ( usb_serial_resume ) ;
2006-10-02 13:17:18 +04:00
static const struct tty_operations serial_ops = {
2005-04-17 02:20:36 +04:00
. open = serial_open ,
. close = serial_close ,
. write = serial_write ,
2009-06-11 15:26:29 +04:00
. hangup = serial_hangup ,
2005-04-17 02:20:36 +04:00
. write_room = serial_write_room ,
. ioctl = serial_ioctl ,
. set_termios = serial_set_termios ,
. throttle = serial_throttle ,
. unthrottle = serial_unthrottle ,
. break_ctl = serial_break ,
. chars_in_buffer = serial_chars_in_buffer ,
. tiocmget = serial_tiocmget ,
. tiocmset = serial_tiocmset ,
2009-09-20 00:13:33 +04:00
. shutdown = serial_do_free ,
. install = serial_install ,
2009-04-01 02:19:21 +04:00
. proc_fops = & serial_proc_fops ,
2005-04-17 02:20:36 +04:00
} ;
2009-06-11 15:26:29 +04:00
2005-04-17 02:20:36 +04:00
struct tty_driver * usb_serial_tty_driver ;
static int __init usb_serial_init ( void )
{
int i ;
int result ;
usb_serial_tty_driver = alloc_tty_driver ( SERIAL_TTY_MINORS ) ;
if ( ! usb_serial_tty_driver )
return - ENOMEM ;
/* Initialize our global data */
2008-07-22 14:12:24 +04:00
for ( i = 0 ; i < SERIAL_TTY_MINORS ; + + i )
2005-04-17 02:20:36 +04:00
serial_table [ i ] = NULL ;
result = bus_register ( & usb_serial_bus_type ) ;
if ( result ) {
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: %s - registering bus driver "
" failed \n " , __func__ ) ;
2005-04-17 02:20:36 +04:00
goto exit_bus ;
}
usb_serial_tty_driver - > owner = THIS_MODULE ;
usb_serial_tty_driver - > driver_name = " usbserial " ;
usb_serial_tty_driver - > name = " ttyUSB " ;
usb_serial_tty_driver - > major = SERIAL_TTY_MAJOR ;
usb_serial_tty_driver - > minor_start = 0 ;
usb_serial_tty_driver - > type = TTY_DRIVER_TYPE_SERIAL ;
usb_serial_tty_driver - > subtype = SERIAL_TYPE_NORMAL ;
2008-07-22 14:12:24 +04:00
usb_serial_tty_driver - > flags = TTY_DRIVER_REAL_RAW |
TTY_DRIVER_DYNAMIC_DEV ;
2005-04-17 02:20:36 +04:00
usb_serial_tty_driver - > init_termios = tty_std_termios ;
2008-07-22 14:12:24 +04:00
usb_serial_tty_driver - > init_termios . c_cflag = B9600 | CS8 | CREAD
| HUPCL | CLOCAL ;
2008-04-08 20:16:06 +04:00
usb_serial_tty_driver - > init_termios . c_ispeed = 9600 ;
usb_serial_tty_driver - > init_termios . c_ospeed = 9600 ;
2005-04-17 02:20:36 +04:00
tty_set_operations ( usb_serial_tty_driver , & serial_ops ) ;
result = tty_register_driver ( usb_serial_tty_driver ) ;
if ( result ) {
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: %s - tty_register_driver failed \n " ,
__func__ ) ;
2005-04-17 02:20:36 +04:00
goto exit_reg_driver ;
}
/* register the USB driver */
result = usb_register ( & usb_serial_driver ) ;
if ( result < 0 ) {
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: %s - usb_register failed \n " ,
__func__ ) ;
2005-04-17 02:20:36 +04:00
goto exit_tty ;
}
2005-05-26 16:55:55 +04:00
/* register the generic driver, if we should */
result = usb_serial_generic_register ( debug ) ;
if ( result < 0 ) {
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: %s - registering generic "
" driver failed \n " , __func__ ) ;
2005-05-26 16:55:55 +04:00
goto exit_generic ;
}
2008-08-19 00:21:04 +04:00
printk ( KERN_INFO KBUILD_MODNAME " : " DRIVER_DESC " \n " ) ;
2005-04-17 02:20:36 +04:00
return result ;
2005-05-26 16:55:55 +04:00
exit_generic :
usb_deregister ( & usb_serial_driver ) ;
2005-04-17 02:20:36 +04:00
exit_tty :
tty_unregister_driver ( usb_serial_tty_driver ) ;
exit_reg_driver :
bus_unregister ( & usb_serial_bus_type ) ;
exit_bus :
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: %s - returning with error %d \n " ,
__func__ , result ) ;
2005-04-17 02:20:36 +04:00
put_tty_driver ( usb_serial_tty_driver ) ;
return result ;
}
static void __exit usb_serial_exit ( void )
{
usb_serial_console_exit ( ) ;
usb_serial_generic_deregister ( ) ;
usb_deregister ( & usb_serial_driver ) ;
tty_unregister_driver ( usb_serial_tty_driver ) ;
put_tty_driver ( usb_serial_tty_driver ) ;
bus_unregister ( & usb_serial_bus_type ) ;
}
module_init ( usb_serial_init ) ;
module_exit ( usb_serial_exit ) ;
# define set_to_generic_if_null(type, function) \
do { \
if ( ! type - > function ) { \
type - > function = usb_serial_generic_ # # function ; \
dbg ( " Had to override the " # function \
2008-07-22 14:12:24 +04:00
" usb serial operation with the generic one. " ) ; \
2005-04-17 02:20:36 +04:00
} \
} while ( 0 )
2005-06-21 08:15:16 +04:00
static void fixup_generic ( struct usb_serial_driver * device )
2005-04-17 02:20:36 +04:00
{
set_to_generic_if_null ( device , open ) ;
set_to_generic_if_null ( device , write ) ;
set_to_generic_if_null ( device , close ) ;
set_to_generic_if_null ( device , write_room ) ;
set_to_generic_if_null ( device , chars_in_buffer ) ;
set_to_generic_if_null ( device , read_bulk_callback ) ;
set_to_generic_if_null ( device , write_bulk_callback ) ;
2009-06-02 19:53:55 +04:00
set_to_generic_if_null ( device , disconnect ) ;
set_to_generic_if_null ( device , release ) ;
2005-04-17 02:20:36 +04:00
}
2008-07-22 14:12:24 +04:00
int usb_serial_register ( struct usb_serial_driver * driver )
2005-04-17 02:20:36 +04:00
{
2008-07-22 14:12:24 +04:00
/* must be called with BKL held */
2005-04-17 02:20:36 +04:00
int retval ;
2009-02-14 16:21:13 +03:00
if ( usb_disabled ( ) )
return - ENODEV ;
2005-06-21 08:15:16 +04:00
fixup_generic ( driver ) ;
2005-04-17 02:20:36 +04:00
2005-06-21 08:15:16 +04:00
if ( ! driver - > description )
driver - > description = driver - > driver . name ;
2005-04-17 02:20:36 +04:00
/* Add this device to our list of devices */
2005-06-21 08:15:16 +04:00
list_add ( & driver - > driver_list , & usb_serial_driver_list ) ;
2005-04-17 02:20:36 +04:00
2005-06-21 08:15:16 +04:00
retval = usb_serial_bus_register ( driver ) ;
2005-04-17 02:20:36 +04:00
if ( retval ) {
2008-08-21 03:56:34 +04:00
printk ( KERN_ERR " usb-serial: problem %d when registering "
" driver %s \n " , retval , driver - > description ) ;
2005-06-21 08:15:16 +04:00
list_del ( & driver - > driver_list ) ;
2008-07-22 14:12:24 +04:00
} else
2008-08-19 00:21:04 +04:00
printk ( KERN_INFO " USB Serial support registered for %s \n " ,
2008-07-22 14:12:24 +04:00
driver - > description ) ;
2005-04-17 02:20:36 +04:00
return retval ;
}
2008-07-22 14:12:24 +04:00
EXPORT_SYMBOL_GPL ( usb_serial_register ) ;
2005-04-17 02:20:36 +04:00
2008-07-22 14:12:24 +04:00
void usb_serial_deregister ( struct usb_serial_driver * device )
2005-04-17 02:20:36 +04:00
{
2008-07-22 14:12:24 +04:00
/* must be called with BKL held */
2008-08-19 00:21:04 +04:00
printk ( KERN_INFO " USB Serial deregistering driver %s \n " ,
device - > description ) ;
2005-04-17 02:20:36 +04:00
list_del ( & device - > driver_list ) ;
usb_serial_bus_deregister ( device ) ;
}
EXPORT_SYMBOL_GPL ( usb_serial_deregister ) ;
/* Module information */
2008-07-22 14:12:24 +04:00
MODULE_AUTHOR ( DRIVER_AUTHOR ) ;
MODULE_DESCRIPTION ( DRIVER_DESC ) ;
2005-04-17 02:20:36 +04:00
MODULE_LICENSE ( " GPL " ) ;
module_param ( debug , bool , S_IRUGO | S_IWUSR ) ;
MODULE_PARM_DESC ( debug , " Debug enabled or not " ) ;