1 // SPDX-License-Identifier: GPL-2.0-only
3 * Generic parallel printer driver
5 * Copyright (C) 1992 by Jim Weigand and Linus Torvalds
6 * Copyright (C) 1992,1993 by Michael K. Johnson
7 * - Thanks much to Gunter Windau for pointing out to me where the error
8 * checking ought to be.
9 * Copyright (C) 1993 by Nigel Gamble (added interrupt code)
10 * Copyright (C) 1994 by Alan Cox (Modularised it)
11 * LPCAREFUL, LPABORT, LPGETSTATUS added by Chris Metcalf, metcalf@lcs.mit.edu
12 * Statistics and support for slow printers by Rob Janssen, rob@knoware.nl
13 * "lp=" command line parameters added by Grant Guenther, grant@torque.net
14 * lp_read (Status readback) support added by Carsten Gross,
15 * carsten@sol.wohnheim.uni-ulm.de
16 * Support for parport by Philip Blundell <philb@gnu.org>
17 * Parport sharing hacking by Andrea Arcangeli
18 * Fixed kernel_(to/from)_user memory copy to check for errors
19 * by Riccardo Facchetti <fizban@tin.it>
20 * 22-JAN-1998 Added support for devfs Richard Gooch <rgooch@atnf.csiro.au>
21 * Redesigned interrupt handling for handle printers with buggy handshake
22 * by Andrea Arcangeli, 11 May 1998
23 * Full efficient handling of printer with buggy irq handshake (now I have
24 * understood the meaning of the strange handshake). This is done sending new
25 * characters if the interrupt is just happened, even if the printer say to
26 * be still BUSY. This is needed at least with Epson Stylus Color. To enable
27 * the new TRUST_IRQ mode read the `LP OPTIMIZATION' section below...
28 * Fixed the irq on the rising edge of the strobe case.
29 * Obsoleted the CAREFUL flag since a printer that doesn' t work with
30 * CAREFUL will block a bit after in lp_check_status().
31 * Andrea Arcangeli, 15 Oct 1998
32 * Obsoleted and removed all the lowlevel stuff implemented in the last
33 * month to use the IEEE1284 functions (that handle the _new_ compatibilty
37 /* This driver should, in theory, work with any parallel port that has an
38 * appropriate low-level driver; all I/O is done through the parport
41 * If this driver is built into the kernel, you can configure it using the
42 * kernel command-line. For example:
44 * lp=parport1,none,parport2 (bind lp0 to parport1, disable lp1 and
45 * bind lp2 to parport2)
47 * lp=auto (assign lp devices to all ports that
48 * have printers attached, as determined
49 * by the IEEE-1284 autoprobe)
51 * lp=reset (reset the printer during
54 * lp=off (disable the printer driver entirely)
56 * If the driver is loaded as a module, similar functionality is available
57 * using module parameters. The equivalent of the above commands would be:
59 * # insmod lp.o parport=1,none,2
61 * # insmod lp.o parport=auto
63 * # insmod lp.o reset=1
66 /* COMPATIBILITY WITH OLD KERNELS
68 * Under Linux 2.0 and previous versions, lp devices were bound to ports at
69 * particular I/O addresses, as follows:
75 * The new driver, by default, binds lp devices to parport devices as it
76 * finds them. This means that if you only have one port, it will be bound
77 * to lp0 regardless of its I/O address. If you need the old behaviour, you
78 * can force it using the parameters described above.
82 * The new interrupt handling code take care of the buggy handshake
83 * of some HP and Epson printer:
85 * ACK _______________ ___________
88 * BUSY _________ _______
91 * I discovered this using the printer scanner that you can find at:
93 * ftp://e-mind.com/pub/linux/pscan/
95 * 11 May 98, Andrea Arcangeli
97 * My printer scanner run on an Epson Stylus Color show that such printer
98 * generates the irq on the _rising_ edge of the STROBE. Now lp handle
101 * 15 Oct 1998, Andrea Arcangeli
103 * The so called `buggy' handshake is really the well documented
104 * compatibility mode IEEE1284 handshake. They changed the well known
105 * Centronics handshake acking in the middle of busy expecting to not
106 * break drivers or legacy application, while they broken linux lp
107 * until I fixed it reverse engineering the protocol by hand some
110 * 14 Dec 1998, Andrea Arcangeli
112 * Copyright (C) 2000 by Tim Waugh (added LPSETTIMEOUT ioctl)
115 #include <linux/module.h>
116 #include <linux/init.h>
118 #include <linux/errno.h>
119 #include <linux/kernel.h>
120 #include <linux/major.h>
121 #include <linux/sched/signal.h>
122 #include <linux/slab.h>
123 #include <linux/fcntl.h>
124 #include <linux/delay.h>
125 #include <linux/poll.h>
126 #include <linux/console.h>
127 #include <linux/device.h>
128 #include <linux/wait.h>
129 #include <linux/jiffies.h>
130 #include <linux/mutex.h>
131 #include <linux/compat.h>
133 #include <linux/parport.h>
135 #include <linux/lp.h>
138 #include <linux/uaccess.h>
140 /* if you have more than 8 printers, remember to increase LP_NO */
143 static DEFINE_MUTEX(lp_mutex
);
144 static struct lp_struct lp_table
[LP_NO
];
145 static int port_num
[LP_NO
];
147 static unsigned int lp_count
= 0;
148 static const struct class lp_class
= {
152 #ifdef CONFIG_LP_CONSOLE
153 static struct parport
*console_registered
;
154 #endif /* CONFIG_LP_CONSOLE */
158 /* Bits used to manage claiming the parport device */
159 #define LP_PREEMPT_REQUEST 1
160 #define LP_PARPORT_CLAIMED 2
162 /* --- low-level port access ----------------------------------- */
164 #define r_dtr(x) (parport_read_data(lp_table[(x)].dev->port))
165 #define r_str(x) (parport_read_status(lp_table[(x)].dev->port))
166 #define w_ctr(x,y) do { parport_write_control(lp_table[(x)].dev->port, (y)); } while (0)
167 #define w_dtr(x,y) do { parport_write_data(lp_table[(x)].dev->port, (y)); } while (0)
169 /* Claim the parport or block trying unless we've already claimed it */
170 static void lp_claim_parport_or_block(struct lp_struct
*this_lp
)
172 if (!test_and_set_bit(LP_PARPORT_CLAIMED
, &this_lp
->bits
)) {
173 parport_claim_or_block(this_lp
->dev
);
177 /* Claim the parport or block trying unless we've already claimed it */
178 static void lp_release_parport(struct lp_struct
*this_lp
)
180 if (test_and_clear_bit(LP_PARPORT_CLAIMED
, &this_lp
->bits
)) {
181 parport_release(this_lp
->dev
);
187 static int lp_preempt(void *handle
)
189 struct lp_struct
*this_lp
= (struct lp_struct
*)handle
;
190 set_bit(LP_PREEMPT_REQUEST
, &this_lp
->bits
);
196 * Try to negotiate to a new mode; if unsuccessful negotiate to
197 * compatibility mode. Return the mode we ended up in.
199 static int lp_negotiate(struct parport
*port
, int mode
)
201 if (parport_negotiate(port
, mode
) != 0) {
202 mode
= IEEE1284_MODE_COMPAT
;
203 parport_negotiate(port
, mode
);
209 static int lp_reset(int minor
)
212 lp_claim_parport_or_block(&lp_table
[minor
]);
213 w_ctr(minor
, LP_PSELECP
);
215 w_ctr(minor
, LP_PSELECP
| LP_PINITP
);
216 retval
= r_str(minor
);
217 lp_release_parport(&lp_table
[minor
]);
221 static void lp_error(int minor
)
226 if (LP_F(minor
) & LP_ABORT
)
229 polling
= lp_table
[minor
].dev
->port
->irq
== PARPORT_IRQ_NONE
;
231 lp_release_parport(&lp_table
[minor
]);
232 prepare_to_wait(&lp_table
[minor
].waitq
, &wait
, TASK_INTERRUPTIBLE
);
233 schedule_timeout(LP_TIMEOUT_POLLED
);
234 finish_wait(&lp_table
[minor
].waitq
, &wait
);
236 lp_claim_parport_or_block(&lp_table
[minor
]);
238 parport_yield_blocking(lp_table
[minor
].dev
);
241 static int lp_check_status(int minor
)
244 unsigned int last
= lp_table
[minor
].last_error
;
245 unsigned char status
= r_str(minor
);
246 if ((status
& LP_PERRORP
) && !(LP_F(minor
) & LP_CAREFUL
))
249 else if ((status
& LP_POUTPA
)) {
250 if (last
!= LP_POUTPA
) {
252 printk(KERN_INFO
"lp%d out of paper\n", minor
);
255 } else if (!(status
& LP_PSELECD
)) {
256 if (last
!= LP_PSELECD
) {
258 printk(KERN_INFO
"lp%d off-line\n", minor
);
261 } else if (!(status
& LP_PERRORP
)) {
262 if (last
!= LP_PERRORP
) {
264 printk(KERN_INFO
"lp%d on fire\n", minor
);
268 last
= 0; /* Come here if LP_CAREFUL is set and no
269 errors are reported. */
272 lp_table
[minor
].last_error
= last
;
280 static int lp_wait_ready(int minor
, int nonblock
)
284 /* If we're not in compatibility mode, we're ready now! */
285 if (lp_table
[minor
].current_mode
!= IEEE1284_MODE_COMPAT
) {
290 error
= lp_check_status(minor
);
291 if (error
&& (nonblock
|| (LP_F(minor
) & LP_ABORT
)))
293 if (signal_pending(current
)) {
301 static ssize_t
lp_write(struct file
*file
, const char __user
*buf
,
302 size_t count
, loff_t
*ppos
)
304 unsigned int minor
= iminor(file_inode(file
));
305 struct parport
*port
= lp_table
[minor
].dev
->port
;
306 char *kbuf
= lp_table
[minor
].lp_buffer
;
309 size_t copy_size
= count
;
310 int nonblock
= ((file
->f_flags
& O_NONBLOCK
) ||
311 (LP_F(minor
) & LP_ABORT
));
314 if (time_after(jiffies
, lp_table
[minor
].lastcall
+ LP_TIME(minor
)))
315 lp_table
[minor
].runchars
= 0;
317 lp_table
[minor
].lastcall
= jiffies
;
320 /* Need to copy the data from user-space. */
321 if (copy_size
> LP_BUFFER_SIZE
)
322 copy_size
= LP_BUFFER_SIZE
;
324 if (mutex_lock_interruptible(&lp_table
[minor
].port_mutex
))
327 if (copy_from_user(kbuf
, buf
, copy_size
)) {
332 /* Claim Parport or sleep until it becomes available
334 lp_claim_parport_or_block(&lp_table
[minor
]);
335 /* Go to the proper mode. */
336 lp_table
[minor
].current_mode
= lp_negotiate(port
,
337 lp_table
[minor
].best_mode
);
339 parport_set_timeout(lp_table
[minor
].dev
,
340 (nonblock
? PARPORT_INACTIVITY_O_NONBLOCK
341 : lp_table
[minor
].timeout
));
343 if ((retv
= lp_wait_ready(minor
, nonblock
)) == 0)
345 /* Write the data. */
346 written
= parport_write(port
, kbuf
, copy_size
);
348 copy_size
-= written
;
354 if (signal_pending(current
)) {
362 /* incomplete write -> check error ! */
365 parport_negotiate(lp_table
[minor
].dev
->port
,
366 IEEE1284_MODE_COMPAT
);
367 lp_table
[minor
].current_mode
= IEEE1284_MODE_COMPAT
;
369 error
= lp_wait_ready(minor
, nonblock
);
375 } else if (nonblock
) {
381 parport_yield_blocking(lp_table
[minor
].dev
);
382 lp_table
[minor
].current_mode
384 lp_table
[minor
].best_mode
);
386 } else if (need_resched())
391 if (copy_size
> LP_BUFFER_SIZE
)
392 copy_size
= LP_BUFFER_SIZE
;
394 if (copy_from_user(kbuf
, buf
, copy_size
)) {
402 if (test_and_clear_bit(LP_PREEMPT_REQUEST
,
403 &lp_table
[minor
].bits
)) {
404 printk(KERN_INFO
"lp%d releasing parport\n", minor
);
405 parport_negotiate(lp_table
[minor
].dev
->port
,
406 IEEE1284_MODE_COMPAT
);
407 lp_table
[minor
].current_mode
= IEEE1284_MODE_COMPAT
;
408 lp_release_parport(&lp_table
[minor
]);
411 mutex_unlock(&lp_table
[minor
].port_mutex
);
416 #ifdef CONFIG_PARPORT_1284
418 /* Status readback conforming to ieee1284 */
419 static ssize_t
lp_read(struct file
*file
, char __user
*buf
,
420 size_t count
, loff_t
*ppos
)
423 unsigned int minor
=iminor(file_inode(file
));
424 struct parport
*port
= lp_table
[minor
].dev
->port
;
426 char *kbuf
= lp_table
[minor
].lp_buffer
;
427 int nonblock
= ((file
->f_flags
& O_NONBLOCK
) ||
428 (LP_F(minor
) & LP_ABORT
));
430 if (count
> LP_BUFFER_SIZE
)
431 count
= LP_BUFFER_SIZE
;
433 if (mutex_lock_interruptible(&lp_table
[minor
].port_mutex
))
436 lp_claim_parport_or_block(&lp_table
[minor
]);
438 parport_set_timeout(lp_table
[minor
].dev
,
439 (nonblock
? PARPORT_INACTIVITY_O_NONBLOCK
440 : lp_table
[minor
].timeout
));
442 parport_negotiate(lp_table
[minor
].dev
->port
, IEEE1284_MODE_COMPAT
);
443 if (parport_negotiate(lp_table
[minor
].dev
->port
,
444 IEEE1284_MODE_NIBBLE
)) {
449 while (retval
== 0) {
450 retval
= parport_read(port
, kbuf
, count
);
462 if (lp_table
[minor
].dev
->port
->irq
== PARPORT_IRQ_NONE
) {
463 parport_negotiate(lp_table
[minor
].dev
->port
,
464 IEEE1284_MODE_COMPAT
);
466 if (parport_negotiate(lp_table
[minor
].dev
->port
,
467 IEEE1284_MODE_NIBBLE
)) {
472 prepare_to_wait(&lp_table
[minor
].waitq
, &wait
, TASK_INTERRUPTIBLE
);
473 schedule_timeout(LP_TIMEOUT_POLLED
);
474 finish_wait(&lp_table
[minor
].waitq
, &wait
);
477 if (signal_pending(current
)) {
478 retval
= -ERESTARTSYS
;
484 parport_negotiate(lp_table
[minor
].dev
->port
, IEEE1284_MODE_COMPAT
);
486 lp_release_parport(&lp_table
[minor
]);
488 if (retval
> 0 && copy_to_user(buf
, kbuf
, retval
))
491 mutex_unlock(&lp_table
[minor
].port_mutex
);
496 #endif /* IEEE 1284 support */
498 static int lp_open(struct inode
*inode
, struct file
*file
)
500 unsigned int minor
= iminor(inode
);
503 mutex_lock(&lp_mutex
);
504 if (minor
>= LP_NO
) {
508 if ((LP_F(minor
) & LP_EXIST
) == 0) {
512 if (test_and_set_bit(LP_BUSY_BIT_POS
, &LP_F(minor
))) {
516 /* If ABORTOPEN is set and the printer is offline or out of paper,
517 we may still want to open it to perform ioctl()s. Therefore we
518 have commandeered O_NONBLOCK, even though it is being used in
519 a non-standard manner. This is strictly a Linux hack, and
520 should most likely only ever be used by the tunelp application. */
521 if ((LP_F(minor
) & LP_ABORTOPEN
) && !(file
->f_flags
& O_NONBLOCK
)) {
523 lp_claim_parport_or_block(&lp_table
[minor
]);
524 status
= r_str(minor
);
525 lp_release_parport(&lp_table
[minor
]);
526 if (status
& LP_POUTPA
) {
527 printk(KERN_INFO
"lp%d out of paper\n", minor
);
528 LP_F(minor
) &= ~LP_BUSY
;
531 } else if (!(status
& LP_PSELECD
)) {
532 printk(KERN_INFO
"lp%d off-line\n", minor
);
533 LP_F(minor
) &= ~LP_BUSY
;
536 } else if (!(status
& LP_PERRORP
)) {
537 printk(KERN_ERR
"lp%d printer error\n", minor
);
538 LP_F(minor
) &= ~LP_BUSY
;
543 lp_table
[minor
].lp_buffer
= kmalloc(LP_BUFFER_SIZE
, GFP_KERNEL
);
544 if (!lp_table
[minor
].lp_buffer
) {
545 LP_F(minor
) &= ~LP_BUSY
;
549 /* Determine if the peripheral supports ECP mode */
550 lp_claim_parport_or_block(&lp_table
[minor
]);
551 if ((lp_table
[minor
].dev
->port
->modes
& PARPORT_MODE_ECP
) &&
552 !parport_negotiate(lp_table
[minor
].dev
->port
,
553 IEEE1284_MODE_ECP
)) {
554 printk(KERN_INFO
"lp%d: ECP mode\n", minor
);
555 lp_table
[minor
].best_mode
= IEEE1284_MODE_ECP
;
557 lp_table
[minor
].best_mode
= IEEE1284_MODE_COMPAT
;
559 /* Leave peripheral in compatibility mode */
560 parport_negotiate(lp_table
[minor
].dev
->port
, IEEE1284_MODE_COMPAT
);
561 lp_release_parport(&lp_table
[minor
]);
562 lp_table
[minor
].current_mode
= IEEE1284_MODE_COMPAT
;
564 mutex_unlock(&lp_mutex
);
568 static int lp_release(struct inode
*inode
, struct file
*file
)
570 unsigned int minor
= iminor(inode
);
572 lp_claim_parport_or_block(&lp_table
[minor
]);
573 parport_negotiate(lp_table
[minor
].dev
->port
, IEEE1284_MODE_COMPAT
);
574 lp_table
[minor
].current_mode
= IEEE1284_MODE_COMPAT
;
575 lp_release_parport(&lp_table
[minor
]);
576 kfree(lp_table
[minor
].lp_buffer
);
577 lp_table
[minor
].lp_buffer
= NULL
;
578 LP_F(minor
) &= ~LP_BUSY
;
582 static int lp_do_ioctl(unsigned int minor
, unsigned int cmd
,
583 unsigned long arg
, void __user
*argp
)
589 printk(KERN_DEBUG
"lp%d ioctl, cmd: 0x%x, arg: 0x%lx\n", minor
, cmd
, arg
);
593 if ((LP_F(minor
) & LP_EXIST
) == 0)
597 if (arg
> UINT_MAX
/ HZ
)
599 LP_TIME(minor
) = arg
* HZ
/100;
602 LP_CHAR(minor
) = arg
;
606 LP_F(minor
) |= LP_ABORT
;
608 LP_F(minor
) &= ~LP_ABORT
;
612 LP_F(minor
) |= LP_ABORTOPEN
;
614 LP_F(minor
) &= ~LP_ABORTOPEN
;
618 LP_F(minor
) |= LP_CAREFUL
;
620 LP_F(minor
) &= ~LP_CAREFUL
;
623 LP_WAIT(minor
) = arg
;
628 if (copy_to_user(argp
, &LP_IRQ(minor
),
633 if (mutex_lock_interruptible(&lp_table
[minor
].port_mutex
))
635 lp_claim_parport_or_block(&lp_table
[minor
]);
636 status
= r_str(minor
);
637 lp_release_parport(&lp_table
[minor
]);
638 mutex_unlock(&lp_table
[minor
].port_mutex
);
640 if (copy_to_user(argp
, &status
, sizeof(int)))
648 if (copy_to_user(argp
, &LP_STAT(minor
),
649 sizeof(struct lp_stats
)))
651 if (capable(CAP_SYS_ADMIN
))
652 memset(&LP_STAT(minor
), 0,
653 sizeof(struct lp_stats
));
657 status
= LP_F(minor
);
658 if (copy_to_user(argp
, &status
, sizeof(int)))
668 static int lp_set_timeout(unsigned int minor
, s64 tv_sec
, long tv_usec
)
672 /* Convert to jiffies, place in lp_table */
673 if (tv_sec
< 0 || tv_usec
< 0)
677 * we used to not check, so let's not make this fatal,
678 * but deal with user space passing a 32-bit tv_nsec in
679 * a 64-bit field, capping the timeout to 1 second
680 * worth of microseconds, and capping the total at
683 if (tv_usec
> 999999)
686 if (tv_sec
>= MAX_SEC_IN_JIFFIES
- 1) {
687 to_jiffies
= MAX_JIFFY_OFFSET
;
689 to_jiffies
= DIV_ROUND_UP(tv_usec
, 1000000/HZ
);
690 to_jiffies
+= tv_sec
* (long) HZ
;
693 if (to_jiffies
<= 0) {
696 lp_table
[minor
].timeout
= to_jiffies
;
700 static int lp_set_timeout32(unsigned int minor
, void __user
*arg
)
704 if (copy_from_user(karg
, arg
, sizeof(karg
)))
707 return lp_set_timeout(minor
, karg
[0], karg
[1]);
710 static int lp_set_timeout64(unsigned int minor
, void __user
*arg
)
714 if (copy_from_user(karg
, arg
, sizeof(karg
)))
717 /* sparc64 suseconds_t is 32-bit only */
718 if (IS_ENABLED(CONFIG_SPARC64
) && !in_compat_syscall())
721 return lp_set_timeout(minor
, karg
[0], karg
[1]);
724 static long lp_ioctl(struct file
*file
, unsigned int cmd
,
730 minor
= iminor(file_inode(file
));
731 mutex_lock(&lp_mutex
);
733 case LPSETTIMEOUT_OLD
:
734 if (BITS_PER_LONG
== 32) {
735 ret
= lp_set_timeout32(minor
, (void __user
*)arg
);
738 fallthrough
; /* for 64-bit */
739 case LPSETTIMEOUT_NEW
:
740 ret
= lp_set_timeout64(minor
, (void __user
*)arg
);
743 ret
= lp_do_ioctl(minor
, cmd
, arg
, (void __user
*)arg
);
746 mutex_unlock(&lp_mutex
);
752 static long lp_compat_ioctl(struct file
*file
, unsigned int cmd
,
758 minor
= iminor(file_inode(file
));
759 mutex_lock(&lp_mutex
);
761 case LPSETTIMEOUT_OLD
:
762 if (!COMPAT_USE_64BIT_TIME
) {
763 ret
= lp_set_timeout32(minor
, (void __user
*)arg
);
766 fallthrough
; /* for x32 mode */
767 case LPSETTIMEOUT_NEW
:
768 ret
= lp_set_timeout64(minor
, (void __user
*)arg
);
772 /* FIXME: add an implementation if you set LP_STATS */
777 ret
= lp_do_ioctl(minor
, cmd
, arg
, compat_ptr(arg
));
780 mutex_unlock(&lp_mutex
);
786 static const struct file_operations lp_fops
= {
787 .owner
= THIS_MODULE
,
789 .unlocked_ioctl
= lp_ioctl
,
791 .compat_ioctl
= lp_compat_ioctl
,
794 .release
= lp_release
,
795 #ifdef CONFIG_PARPORT_1284
798 .llseek
= noop_llseek
,
801 /* --- support for console on the line printer ----------------- */
803 #ifdef CONFIG_LP_CONSOLE
807 /* If the printer is out of paper, we can either lose the messages or
808 * stall until the printer is happy again. Define CONSOLE_LP_STRICT
809 * non-zero to get the latter behaviour. */
810 #define CONSOLE_LP_STRICT 1
812 /* The console must be locked when we get here. */
814 static void lp_console_write(struct console
*co
, const char *s
,
817 struct pardevice
*dev
= lp_table
[CONSOLE_LP
].dev
;
818 struct parport
*port
= dev
->port
;
821 if (parport_claim(dev
))
822 /* Nothing we can do. */
825 parport_set_timeout(dev
, 0);
827 /* Go to compatibility mode. */
828 parport_negotiate(port
, IEEE1284_MODE_COMPAT
);
831 /* Write the data, converting LF->CRLF as we go. */
832 ssize_t canwrite
= count
;
833 char *lf
= memchr(s
, '\n', count
);
838 written
= parport_write(port
, s
, canwrite
);
848 if (lf
&& canwrite
<= 0) {
849 const char *crlf
= "\r\n";
852 /* Dodge the original '\n', and put '\r\n' instead. */
856 written
= parport_write(port
, crlf
, i
);
861 } while (i
> 0 && (CONSOLE_LP_STRICT
|| written
> 0));
863 } while (count
> 0 && (CONSOLE_LP_STRICT
|| written
> 0));
865 parport_release(dev
);
868 static struct console lpcons
= {
870 .write
= lp_console_write
,
871 .flags
= CON_PRINTBUFFER
,
874 #endif /* console on line printer */
876 /* --- initialisation code ------------------------------------- */
878 static int parport_nr
[LP_NO
] = { [0 ... LP_NO
-1] = LP_PARPORT_UNSPEC
};
879 static char *parport
[LP_NO
];
882 module_param_array(parport
, charp
, NULL
, 0);
883 module_param(reset
, bool, 0);
886 static int __init
lp_setup(char *str
)
888 static int parport_ptr
;
891 if (get_option(&str
, &x
)) {
893 /* disable driver on "lp=" or "lp=0" */
894 parport_nr
[0] = LP_PARPORT_OFF
;
896 printk(KERN_WARNING
"warning: 'lp=0x%x' is deprecated, ignored\n", x
);
899 } else if (!strncmp(str
, "parport", 7)) {
900 int n
= simple_strtoul(str
+7, NULL
, 10);
901 if (parport_ptr
< LP_NO
)
902 parport_nr
[parport_ptr
++] = n
;
904 printk(KERN_INFO
"lp: too many ports, %s ignored.\n",
906 } else if (!strcmp(str
, "auto")) {
907 parport_nr
[0] = LP_PARPORT_AUTO
;
908 } else if (!strcmp(str
, "none")) {
909 if (parport_ptr
< LP_NO
)
910 parport_nr
[parport_ptr
++] = LP_PARPORT_NONE
;
912 printk(KERN_INFO
"lp: too many ports, %s ignored.\n",
914 } else if (!strcmp(str
, "reset")) {
921 static int lp_register(int nr
, struct parport
*port
)
923 struct pardev_cb ppdev_cb
;
925 memset(&ppdev_cb
, 0, sizeof(ppdev_cb
));
926 ppdev_cb
.preempt
= lp_preempt
;
927 ppdev_cb
.private = &lp_table
[nr
];
928 lp_table
[nr
].dev
= parport_register_dev_model(port
, "lp",
930 if (lp_table
[nr
].dev
== NULL
)
932 lp_table
[nr
].flags
|= LP_EXIST
;
937 device_create(&lp_class
, port
->dev
, MKDEV(LP_MAJOR
, nr
), NULL
,
940 printk(KERN_INFO
"lp%d: using %s (%s).\n", nr
, port
->name
,
941 (port
->irq
== PARPORT_IRQ_NONE
)?"polling":"interrupt-driven");
943 #ifdef CONFIG_LP_CONSOLE
945 if (port
->modes
& PARPORT_MODE_SAFEININT
) {
946 register_console(&lpcons
);
947 console_registered
= port
;
948 printk(KERN_INFO
"lp%d: console ready\n", CONSOLE_LP
);
950 printk(KERN_ERR
"lp%d: cannot run console on %s\n",
951 CONSOLE_LP
, port
->name
);
954 port_num
[nr
] = port
->number
;
959 static void lp_attach(struct parport
*port
)
963 switch (parport_nr
[0]) {
964 case LP_PARPORT_UNSPEC
:
965 case LP_PARPORT_AUTO
:
966 if (parport_nr
[0] == LP_PARPORT_AUTO
&&
967 port
->probe_info
[0].class != PARPORT_CLASS_PRINTER
)
969 if (lp_count
== LP_NO
) {
970 printk(KERN_INFO
"lp: ignoring parallel port (max. %d)\n",LP_NO
);
973 for (i
= 0; i
< LP_NO
; i
++)
974 if (port_num
[i
] == -1)
977 if (!lp_register(i
, port
))
982 for (i
= 0; i
< LP_NO
; i
++) {
983 if (port
->number
== parport_nr
[i
]) {
984 if (!lp_register(i
, port
))
993 static void lp_detach(struct parport
*port
)
997 /* Write this some day. */
998 #ifdef CONFIG_LP_CONSOLE
999 if (console_registered
== port
) {
1000 unregister_console(&lpcons
);
1001 console_registered
= NULL
;
1003 #endif /* CONFIG_LP_CONSOLE */
1005 for (n
= 0; n
< LP_NO
; n
++) {
1006 if (port_num
[n
] == port
->number
) {
1009 device_destroy(&lp_class
, MKDEV(LP_MAJOR
, n
));
1010 parport_unregister_device(lp_table
[n
].dev
);
1015 static struct parport_driver lp_driver
= {
1017 .match_port
= lp_attach
,
1018 .detach
= lp_detach
,
1021 static int __init
lp_init(void)
1025 if (parport_nr
[0] == LP_PARPORT_OFF
)
1028 for (i
= 0; i
< LP_NO
; i
++) {
1029 lp_table
[i
].dev
= NULL
;
1030 lp_table
[i
].flags
= 0;
1031 lp_table
[i
].chars
= LP_INIT_CHAR
;
1032 lp_table
[i
].time
= LP_INIT_TIME
;
1033 lp_table
[i
].wait
= LP_INIT_WAIT
;
1034 lp_table
[i
].lp_buffer
= NULL
;
1036 lp_table
[i
].lastcall
= 0;
1037 lp_table
[i
].runchars
= 0;
1038 memset(&lp_table
[i
].stats
, 0, sizeof(struct lp_stats
));
1040 lp_table
[i
].last_error
= 0;
1041 init_waitqueue_head(&lp_table
[i
].waitq
);
1042 init_waitqueue_head(&lp_table
[i
].dataq
);
1043 mutex_init(&lp_table
[i
].port_mutex
);
1044 lp_table
[i
].timeout
= 10 * HZ
;
1048 if (register_chrdev(LP_MAJOR
, "lp", &lp_fops
)) {
1049 printk(KERN_ERR
"lp: unable to get major %d\n", LP_MAJOR
);
1053 err
= class_register(&lp_class
);
1057 if (parport_register_driver(&lp_driver
)) {
1058 printk(KERN_ERR
"lp: unable to register with parport\n");
1064 printk(KERN_INFO
"lp: driver loaded but no devices found\n");
1065 #ifndef CONFIG_PARPORT_1284
1066 if (parport_nr
[0] == LP_PARPORT_AUTO
)
1067 printk(KERN_INFO
"lp: (is IEEE 1284 support enabled?)\n");
1074 class_unregister(&lp_class
);
1076 unregister_chrdev(LP_MAJOR
, "lp");
1080 static int __init
lp_init_module(void)
1083 /* The user gave some parameters. Let's see what they were. */
1084 if (!strncmp(parport
[0], "auto", 4))
1085 parport_nr
[0] = LP_PARPORT_AUTO
;
1088 for (n
= 0; n
< LP_NO
&& parport
[n
]; n
++) {
1089 if (!strncmp(parport
[n
], "none", 4))
1090 parport_nr
[n
] = LP_PARPORT_NONE
;
1093 unsigned long r
= simple_strtoul(parport
[n
], &ep
, 0);
1094 if (ep
!= parport
[n
])
1097 printk(KERN_ERR
"lp: bad port specifier `%s'\n", parport
[n
]);
1108 static void lp_cleanup_module(void)
1110 parport_unregister_driver(&lp_driver
);
1112 #ifdef CONFIG_LP_CONSOLE
1113 unregister_console(&lpcons
);
1116 unregister_chrdev(LP_MAJOR
, "lp");
1117 class_unregister(&lp_class
);
1120 __setup("lp=", lp_setup
);
1121 module_init(lp_init_module
);
1122 module_exit(lp_cleanup_module
);
1124 MODULE_ALIAS_CHARDEV_MAJOR(LP_MAJOR
);
1125 MODULE_DESCRIPTION("Generic parallel printer driver");
1126 MODULE_LICENSE("GPL");