2 * linux/drivers/char/serial167.c
4 * Driver for MVME166/7 board serial ports, which are via a CD2401.
5 * Based very much on cyclades.c.
7 * MVME166/7 work by Richard Hirst [richard@sleepie.demon.co.uk]
9 * ==============================================================
11 * static char rcsid[] =
12 * "$Revision: 1.36.1.4 $$Date: 1995/03/29 06:14:14 $";
14 * linux/kernel/cyclades.c
16 * Maintained by Marcio Saito (cyclades@netcom.com) and
17 * Randolph Bentson (bentson@grieg.seaslug.org)
19 * Much of the design and some of the code came from serial.c
20 * which was copyright (C) 1991, 1992 Linus Torvalds. It was
21 * extensively rewritten by Theodore Ts'o, 8/16/92 -- 9/14/92,
22 * and then fixed as suggested by Michael K. Johnson 12/12/92.
24 * This version does not support shared irq's.
26 * $Log: cyclades.c,v $
27 * Revision 1.36.1.4 1995/03/29 06:14:14 bentson
28 * disambiguate between Cyclom-16Y and Cyclom-32Ye;
32 * 200 lines of changes record removed - RGH 11-10-95, starting work on
33 * converting this to drive serial ports on mvme166 (cd2401).
35 * Arnaldo Carvalho de Melo <acme@conectiva.com.br> - 2000/08/25
36 * - get rid of verify_area
37 * - use get_user to access memory from userspace in set_threshold,
38 * set_default_threshold and set_timeout
39 * - don't use the panic function in serial167_init
40 * - do resource release on failure on serial167_init
41 * - include missing restore_flags in mvme167_serial_console_setup
43 * Kars de Jong <jongk@linux-m68k.org> - 2004/09/06
44 * - replace bottom half handler with task queue handler
47 #include <linux/errno.h>
48 #include <linux/signal.h>
49 #include <linux/sched.h>
50 #include <linux/timer.h>
51 #include <linux/tty.h>
52 #include <linux/interrupt.h>
53 #include <linux/serial.h>
54 #include <linux/serialP.h>
55 #include <linux/smp_lock.h>
56 #include <linux/string.h>
57 #include <linux/fcntl.h>
58 #include <linux/ptrace.h>
59 #include <linux/serial167.h>
60 #include <linux/delay.h>
61 #include <linux/major.h>
63 #include <linux/console.h>
64 #include <linux/module.h>
65 #include <linux/bitops.h>
66 #include <linux/tty_flip.h>
68 #include <asm/system.h>
70 #include <asm/mvme16xhw.h>
71 #include <asm/bootinfo.h>
72 #include <asm/setup.h>
74 #include <linux/types.h>
75 #include <linux/kernel.h>
77 #include <asm/uaccess.h>
78 #include <linux/init.h>
80 #define SERIAL_PARANOIA_CHECK
81 #undef SERIAL_DEBUG_OPEN
82 #undef SERIAL_DEBUG_THROTTLE
83 #undef SERIAL_DEBUG_OTHER
84 #undef SERIAL_DEBUG_IO
85 #undef SERIAL_DEBUG_COUNT
86 #undef SERIAL_DEBUG_DTR
87 #undef CYCLOM_16Y_HACK
88 #define CYCLOM_ENABLE_MONITORING
90 #define WAKEUP_CHARS 256
92 #define STD_COM_FLAGS (0)
94 static struct tty_driver
*cy_serial_driver
;
95 extern int serial_console
;
96 static struct cyclades_port
*serial_console_info
= NULL
;
97 static unsigned int serial_console_cflag
= 0;
98 u_char initial_console_speed
;
100 /* Base address of cd2401 chip on mvme166/7 */
102 #define BASE_ADDR (0xfff45000)
103 #define pcc2chip ((volatile u_char *)0xfff42000)
104 #define PccSCCMICR 0x1d
105 #define PccSCCTICR 0x1e
106 #define PccSCCRICR 0x1f
107 #define PccTPIACKR 0x25
108 #define PccRPIACKR 0x27
111 /* This is the per-port data structure */
112 struct cyclades_port cy_port
[] = {
120 #define NR_PORTS ARRAY_SIZE(cy_port)
123 * This is used to look up the divisor speeds and the timeouts
124 * We're normally limited to 15 distinct baud rates. The extra
125 * are accessed via settings in info->flags.
126 * 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
127 * 10, 11, 12, 13, 14, 15, 16, 17, 18, 19,
130 static int baud_table
[] = {
131 0, 50, 75, 110, 134, 150, 200, 300, 600, 1200,
132 1800, 2400, 4800, 9600, 19200, 38400, 57600, 76800, 115200, 150000,
137 static char baud_co
[] = { /* 25 MHz clock option table */
138 /* value => 00 01 02 03 04 */
139 /* divide by 8 32 128 512 2048 */
140 0x00, 0x04, 0x04, 0x04, 0x04, 0x04, 0x03, 0x03, 0x03, 0x02,
141 0x02, 0x02, 0x01, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
144 static char baud_bpr
[] = { /* 25 MHz baud rate period table */
145 0x00, 0xf5, 0xa3, 0x6f, 0x5c, 0x51, 0xf5, 0xa3, 0x51, 0xa3,
146 0x6d, 0x51, 0xa3, 0x51, 0xa3, 0x51, 0x36, 0x29, 0x1b, 0x15
150 /* I think 166 brd clocks 2401 at 20MHz.... */
152 /* These values are written directly to tcor, and >> 5 for writing to rcor */
153 static u_char baud_co
[] = { /* 20 MHz clock option table */
154 0x00, 0x80, 0x80, 0x80, 0x80, 0x80, 0x80, 0x60, 0x60, 0x40,
155 0x40, 0x40, 0x20, 0x20, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
158 /* These values written directly to tbpr/rbpr */
159 static u_char baud_bpr
[] = { /* 20 MHz baud rate period table */
160 0x00, 0xc0, 0x80, 0x58, 0x6c, 0x40, 0xc0, 0x81, 0x40, 0x81,
161 0x57, 0x40, 0x81, 0x40, 0x81, 0x40, 0x2b, 0x20, 0x15, 0x10
164 static u_char baud_cor4
[] = { /* receive threshold */
165 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a,
166 0x0a, 0x0a, 0x0a, 0x09, 0x09, 0x08, 0x08, 0x08, 0x08, 0x07
169 static void shutdown(struct cyclades_port
*);
170 static int startup(struct cyclades_port
*);
171 static void cy_throttle(struct tty_struct
*);
172 static void cy_unthrottle(struct tty_struct
*);
173 static void config_setup(struct cyclades_port
*);
174 #ifdef CYCLOM_SHOW_STATUS
175 static void show_status(int);
178 #ifdef CONFIG_REMOTE_DEBUG
179 static void debug_setup(void);
180 void queueDebugChar(int c
);
181 int getDebugChar(void);
184 #define DEBUG_LEN 256
189 unsigned char buf
[DEBUG_LEN
];
196 * I have my own version of udelay(), as it is needed when initialising
197 * the chip, before the delay loop has been calibrated. Should probably
198 * reference one of the vmechip2 or pccchip2 counter for an accurate
199 * delay, but this wild guess will do for now.
202 void my_udelay(long us
)
205 volatile u_char
*p
= &x
;
209 for (i
= 100; i
; i
--)
213 static inline int serial_paranoia_check(struct cyclades_port
*info
, char *name
,
216 #ifdef SERIAL_PARANOIA_CHECK
218 printk("Warning: null cyclades_port for (%s) in %s\n", name
,
223 if (info
< &cy_port
[0] || info
>= &cy_port
[NR_PORTS
]) {
224 printk("Warning: cyclades_port out of range for (%s) in %s\n",
229 if (info
->magic
!= CYCLADES_MAGIC
) {
230 printk("Warning: bad magic number for serial struct (%s) in "
231 "%s\n", name
, routine
);
236 } /* serial_paranoia_check */
239 /* The following diagnostic routines allow the driver to spew
240 information on the screen, even (especially!) during interrupts.
245 local_irq_save(flags
);
246 printk(KERN_EMERG
"%s", data
);
247 local_irq_restore(flags
);
254 local_irq_save(flags
);
256 printk(KERN_EMERG
"%c", scrn
);
257 local_irq_restore(flags
);
262 (data
< 10) ? CP(data
+ '0') : CP(data
+ 'A' - 10);
266 CP1((data
>> 4) & 0x0f);
271 CP2((data
>> 8) & 0xff);
276 CP4((data
>> 16) & 0xffff);
281 /* This routine waits up to 1000 micro-seconds for the previous
282 command to the Cirrus chip to complete and then issues the
283 new command. An error is returned if the previous command
284 didn't finish within the time limit.
286 u_short
write_cy_cmd(volatile u_char
* base_addr
, u_char cmd
)
291 local_irq_save(flags
);
292 /* Check to see that the previous command has completed */
293 for (i
= 0; i
< 100; i
++) {
294 if (base_addr
[CyCCR
] == 0) {
299 /* if the CCR never cleared, the previous command
300 didn't finish within the "reasonable time" */
302 local_irq_restore(flags
);
306 /* Issue the new command */
307 base_addr
[CyCCR
] = cmd
;
308 local_irq_restore(flags
);
312 /* cy_start and cy_stop provide software output flow control as a
313 function of XON/XOFF, software CTS, and other such stuff. */
315 static void cy_stop(struct tty_struct
*tty
)
317 struct cyclades_port
*info
= tty
->driver_data
;
318 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
322 #ifdef SERIAL_DEBUG_OTHER
323 printk("cy_stop %s\n", tty
->name
); /* */
326 if (serial_paranoia_check(info
, tty
->name
, "cy_stop"))
329 channel
= info
->line
;
331 local_irq_save(flags
);
332 base_addr
[CyCAR
] = (u_char
) (channel
); /* index channel */
333 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
334 local_irq_restore(flags
);
337 static void cy_start(struct tty_struct
*tty
)
339 struct cyclades_port
*info
= tty
->driver_data
;
340 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
344 #ifdef SERIAL_DEBUG_OTHER
345 printk("cy_start %s\n", tty
->name
); /* */
348 if (serial_paranoia_check(info
, tty
->name
, "cy_start"))
351 channel
= info
->line
;
353 local_irq_save(flags
);
354 base_addr
[CyCAR
] = (u_char
) (channel
);
355 base_addr
[CyIER
] |= CyTxMpty
;
356 local_irq_restore(flags
);
359 /* The real interrupt service routines are called
360 whenever the card wants its hand held--chars
361 received, out buffer empty, modem change, etc.
363 static irqreturn_t
cd2401_rxerr_interrupt(int irq
, void *dev_id
)
365 struct tty_struct
*tty
;
366 struct cyclades_port
*info
;
367 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
368 unsigned char err
, rfoc
;
372 /* determine the channel and change to that context */
373 channel
= (u_short
) (base_addr
[CyLICR
] >> 2);
374 info
= &cy_port
[channel
];
375 info
->last_active
= jiffies
;
377 if ((err
= base_addr
[CyRISR
]) & CyTIMEOUT
) {
378 /* This is a receive timeout interrupt, ignore it */
379 base_addr
[CyREOIR
] = CyNOTRANS
;
383 /* Read a byte of data if there is any - assume the error
384 * is associated with this character */
386 if ((rfoc
= base_addr
[CyRFOC
]) != 0)
387 data
= base_addr
[CyRDR
];
391 /* if there is nowhere to put the data, discard it */
392 if (info
->tty
== 0) {
393 base_addr
[CyREOIR
] = rfoc
? 0 : CyNOTRANS
;
395 } else { /* there is an open port for this data */
397 if (err
& info
->ignore_status_mask
) {
398 base_addr
[CyREOIR
] = rfoc
? 0 : CyNOTRANS
;
401 if (tty_buffer_request_room(tty
, 1) != 0) {
402 if (err
& info
->read_status_mask
) {
404 tty_insert_flip_char(tty
, data
,
406 if (info
->flags
& ASYNC_SAK
) {
409 } else if (err
& CyFRAME
) {
410 tty_insert_flip_char(tty
, data
,
412 } else if (err
& CyPARITY
) {
413 tty_insert_flip_char(tty
, data
,
415 } else if (err
& CyOVERRUN
) {
416 tty_insert_flip_char(tty
, 0,
419 If the flip buffer itself is
420 overflowing, we still lose
421 the next incoming character.
423 if (tty_buffer_request_room(tty
, 1) !=
425 tty_insert_flip_char(tty
, data
,
428 /* These two conditions may imply */
429 /* a normal read should be done. */
430 /* else if(data & CyTIMEOUT) */
431 /* else if(data & CySPECHAR) */
433 tty_insert_flip_char(tty
, 0,
437 tty_insert_flip_char(tty
, data
, TTY_NORMAL
);
440 /* there was a software buffer overrun
441 and nothing could be done about it!!! */
444 tty_schedule_flip(tty
);
446 base_addr
[CyREOIR
] = rfoc
? 0 : CyNOTRANS
;
448 } /* cy_rxerr_interrupt */
450 static irqreturn_t
cd2401_modem_interrupt(int irq
, void *dev_id
)
452 struct cyclades_port
*info
;
453 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
458 /* determine the channel and change to that context */
459 channel
= (u_short
) (base_addr
[CyLICR
] >> 2);
460 info
= &cy_port
[channel
];
461 info
->last_active
= jiffies
;
463 mdm_change
= base_addr
[CyMISR
];
464 mdm_status
= base_addr
[CyMSVR1
];
466 if (info
->tty
== 0) { /* nowhere to put the data, ignore it */
469 if ((mdm_change
& CyDCD
)
470 && (info
->flags
& ASYNC_CHECK_CD
)) {
471 if (mdm_status
& CyDCD
) {
473 wake_up_interruptible(&info
->open_wait
);
476 tty_hangup(info
->tty
);
477 wake_up_interruptible(&info
->open_wait
);
478 info
->flags
&= ~ASYNC_NORMAL_ACTIVE
;
481 if ((mdm_change
& CyCTS
)
482 && (info
->flags
& ASYNC_CTS_FLOW
)) {
483 if (info
->tty
->stopped
) {
484 if (mdm_status
& CyCTS
) {
485 /* !!! cy_start isn't used because... */
486 info
->tty
->stopped
= 0;
487 base_addr
[CyIER
] |= CyTxMpty
;
488 tty_wakeup(info
->tty
);
491 if (!(mdm_status
& CyCTS
)) {
492 /* !!! cy_stop isn't used because... */
493 info
->tty
->stopped
= 1;
495 ~(CyTxMpty
| CyTxRdy
);
499 if (mdm_status
& CyDSR
) {
502 base_addr
[CyMEOIR
] = 0;
504 } /* cy_modem_interrupt */
506 static irqreturn_t
cd2401_tx_interrupt(int irq
, void *dev_id
)
508 struct cyclades_port
*info
;
509 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
511 int char_count
, saved_cnt
;
514 /* determine the channel and change to that context */
515 channel
= (u_short
) (base_addr
[CyLICR
] >> 2);
517 #ifdef CONFIG_REMOTE_DEBUG
518 if (channel
== DEBUG_PORT
) {
519 panic("TxInt on debug port!!!");
522 /* validate the port number (as configured and open) */
523 if ((channel
< 0) || (NR_PORTS
<= channel
)) {
524 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
525 base_addr
[CyTEOIR
] = CyNOTRANS
;
528 info
= &cy_port
[channel
];
529 info
->last_active
= jiffies
;
530 if (info
->tty
== 0) {
531 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
532 base_addr
[CyTEOIR
] = CyNOTRANS
;
536 /* load the on-chip space available for outbound data */
537 saved_cnt
= char_count
= base_addr
[CyTFTC
];
539 if (info
->x_char
) { /* send special char */
540 outch
= info
->x_char
;
541 base_addr
[CyTDR
] = outch
;
547 /* The Cirrus chip requires the "Embedded Transmit
548 Commands" of start break, delay, and end break
549 sequences to be sent. The duration of the
550 break is given in TICs, which runs at HZ
551 (typically 100) and the PPR runs at 200 Hz,
552 so the delay is duration * 200/HZ, and thus a
553 break can run from 1/100 sec to about 5/4 sec.
554 Need to check these values - RGH 141095.
556 base_addr
[CyTDR
] = 0; /* start break */
557 base_addr
[CyTDR
] = 0x81;
558 base_addr
[CyTDR
] = 0; /* delay a bit */
559 base_addr
[CyTDR
] = 0x82;
560 base_addr
[CyTDR
] = info
->x_break
* 200 / HZ
;
561 base_addr
[CyTDR
] = 0; /* terminate break */
562 base_addr
[CyTDR
] = 0x83;
567 while (char_count
> 0) {
568 if (!info
->xmit_cnt
) {
569 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
572 if (info
->xmit_buf
== 0) {
573 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
576 if (info
->tty
->stopped
|| info
->tty
->hw_stopped
) {
577 base_addr
[CyIER
] &= ~(CyTxMpty
| CyTxRdy
);
580 /* Because the Embedded Transmit Commands have been
581 enabled, we must check to see if the escape
582 character, NULL, is being sent. If it is, we
583 must ensure that there is room for it to be
584 doubled in the output stream. Therefore we
585 no longer advance the pointer when the character
586 is fetched, but rather wait until after the check
587 for a NULL output character. (This is necessary
588 because there may not be room for the two chars
589 needed to send a NULL.
591 outch
= info
->xmit_buf
[info
->xmit_tail
];
594 info
->xmit_tail
= (info
->xmit_tail
+ 1)
596 base_addr
[CyTDR
] = outch
;
599 if (char_count
> 1) {
601 info
->xmit_tail
= (info
->xmit_tail
+ 1)
603 base_addr
[CyTDR
] = outch
;
604 base_addr
[CyTDR
] = 0;
613 if (info
->xmit_cnt
< WAKEUP_CHARS
)
614 tty_wakeup(info
->tty
);
616 base_addr
[CyTEOIR
] = (char_count
!= saved_cnt
) ? 0 : CyNOTRANS
;
618 } /* cy_tx_interrupt */
620 static irqreturn_t
cd2401_rx_interrupt(int irq
, void *dev_id
)
622 struct tty_struct
*tty
;
623 struct cyclades_port
*info
;
624 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
631 /* determine the channel and change to that context */
632 channel
= (u_short
) (base_addr
[CyLICR
] >> 2);
633 info
= &cy_port
[channel
];
634 info
->last_active
= jiffies
;
635 save_cnt
= char_count
= base_addr
[CyRFOC
];
637 #ifdef CONFIG_REMOTE_DEBUG
638 if (channel
== DEBUG_PORT
) {
639 while (char_count
--) {
640 data
= base_addr
[CyRDR
];
641 queueDebugChar(data
);
645 /* if there is nowhere to put the data, discard it */
646 if (info
->tty
== 0) {
647 while (char_count
--) {
648 data
= base_addr
[CyRDR
];
650 } else { /* there is an open port for this data */
652 /* load # characters available from the chip */
654 #ifdef CYCLOM_ENABLE_MONITORING
655 ++info
->mon
.int_count
;
656 info
->mon
.char_count
+= char_count
;
657 if (char_count
> info
->mon
.char_max
)
658 info
->mon
.char_max
= char_count
;
659 info
->mon
.char_last
= char_count
;
661 while (char_count
--) {
662 data
= base_addr
[CyRDR
];
663 tty_insert_flip_char(tty
, data
, TTY_NORMAL
);
664 #ifdef CYCLOM_16Y_HACK
668 tty_schedule_flip(tty
);
671 base_addr
[CyREOIR
] = save_cnt
? 0 : CyNOTRANS
;
673 } /* cy_rx_interrupt */
675 /* This is called whenever a port becomes active;
676 interrupts are enabled and DTR & RTS are turned on.
678 static int startup(struct cyclades_port
*info
)
681 volatile unsigned char *base_addr
= (unsigned char *)BASE_ADDR
;
684 if (info
->flags
& ASYNC_INITIALIZED
) {
690 set_bit(TTY_IO_ERROR
, &info
->tty
->flags
);
694 if (!info
->xmit_buf
) {
695 info
->xmit_buf
= (unsigned char *)get_zeroed_page(GFP_KERNEL
);
696 if (!info
->xmit_buf
) {
703 channel
= info
->line
;
705 #ifdef SERIAL_DEBUG_OPEN
706 printk("startup channel %d\n", channel
);
709 local_irq_save(flags
);
710 base_addr
[CyCAR
] = (u_char
) channel
;
711 write_cy_cmd(base_addr
, CyENB_RCVR
| CyENB_XMTR
);
713 base_addr
[CyCAR
] = (u_char
) channel
; /* !!! Is this needed? */
714 base_addr
[CyMSVR1
] = CyRTS
;
715 /* CP('S');CP('1'); */
716 base_addr
[CyMSVR2
] = CyDTR
;
718 #ifdef SERIAL_DEBUG_DTR
719 printk("cyc: %d: raising DTR\n", __LINE__
);
720 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
724 base_addr
[CyIER
] |= CyRxData
;
725 info
->flags
|= ASYNC_INITIALIZED
;
728 clear_bit(TTY_IO_ERROR
, &info
->tty
->flags
);
730 info
->xmit_cnt
= info
->xmit_head
= info
->xmit_tail
= 0;
732 local_irq_restore(flags
);
734 #ifdef SERIAL_DEBUG_OPEN
740 void start_xmit(struct cyclades_port
*info
)
743 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
746 channel
= info
->line
;
747 local_irq_save(flags
);
748 base_addr
[CyCAR
] = channel
;
749 base_addr
[CyIER
] |= CyTxMpty
;
750 local_irq_restore(flags
);
754 * This routine shuts down a serial port; interrupts are disabled,
755 * and DTR is dropped if the hangup on close termio flag is on.
757 static void shutdown(struct cyclades_port
*info
)
760 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
763 if (!(info
->flags
& ASYNC_INITIALIZED
)) {
768 channel
= info
->line
;
770 #ifdef SERIAL_DEBUG_OPEN
771 printk("shutdown channel %d\n", channel
);
774 /* !!! REALLY MUST WAIT FOR LAST CHARACTER TO BE
775 SENT BEFORE DROPPING THE LINE !!! (Perhaps
776 set some flag that is read when XMTY happens.)
777 Other choices are to delay some fixed interval
778 or schedule some later processing.
780 local_irq_save(flags
);
781 if (info
->xmit_buf
) {
782 free_page((unsigned long)info
->xmit_buf
);
783 info
->xmit_buf
= NULL
;
786 base_addr
[CyCAR
] = (u_char
) channel
;
787 if (!info
->tty
|| (info
->tty
->termios
->c_cflag
& HUPCL
)) {
788 base_addr
[CyMSVR1
] = 0;
789 /* CP('C');CP('1'); */
790 base_addr
[CyMSVR2
] = 0;
791 #ifdef SERIAL_DEBUG_DTR
792 printk("cyc: %d: dropping DTR\n", __LINE__
);
793 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
797 write_cy_cmd(base_addr
, CyDIS_RCVR
);
798 /* it may be appropriate to clear _XMIT at
799 some later date (after testing)!!! */
802 set_bit(TTY_IO_ERROR
, &info
->tty
->flags
);
804 info
->flags
&= ~ASYNC_INITIALIZED
;
805 local_irq_restore(flags
);
807 #ifdef SERIAL_DEBUG_OPEN
813 * This routine finds or computes the various line characteristics.
815 static void config_setup(struct cyclades_port
*info
)
818 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
822 unsigned char ti
, need_init_chan
= 0;
824 if (!info
->tty
|| !info
->tty
->termios
) {
827 if (info
->line
== -1) {
830 cflag
= info
->tty
->termios
->c_cflag
;
835 /* Starting with kernel 1.1.65, there is direct support for
836 higher baud rates. The following code supports those
837 changes. The conditional aspect allows this driver to be
838 used for earlier as well as later kernel versions. (The
839 mapping is slightly different from serial.c because there
840 is still the possibility of supporting 75 kbit/sec with
846 else if (i
== B115200
)
849 else if (i
== B78600
)
853 info
->tty
->termios
->c_cflag
&= ~CBAUDEX
;
857 if ((info
->flags
& ASYNC_SPD_MASK
) == ASYNC_SPD_HI
)
859 if ((info
->flags
& ASYNC_SPD_MASK
) == ASYNC_SPD_VHI
)
862 /* Don't ever change the speed of the console port. It will
863 * run at the speed specified in bootinfo, or at 19.2K */
864 /* Actually, it should run at whatever speed 166Bug was using */
865 /* Note info->timeout isn't used at present */
866 if (info
!= serial_console_info
) {
867 info
->tbpr
= baud_bpr
[i
]; /* Tx BPR */
868 info
->tco
= baud_co
[i
]; /* Tx CO */
869 info
->rbpr
= baud_bpr
[i
]; /* Rx BPR */
870 info
->rco
= baud_co
[i
] >> 5; /* Rx CO */
871 if (baud_table
[i
] == 134) {
873 (info
->xmit_fifo_size
* HZ
* 30 / 269) + 2;
874 /* get it right for 134.5 baud */
875 } else if (baud_table
[i
]) {
877 (info
->xmit_fifo_size
* HZ
* 15 / baud_table
[i
]) +
879 /* this needs to be propagated into the card info */
884 /* By tradition (is it a standard?) a baud rate of zero
885 implies the line should be/has been closed. A bit
886 later in this routine such a test is performed. */
888 /* byte size and parity */
892 info
->cor4
= (info
->default_threshold
? info
->default_threshold
: baud_cor4
[i
]); /* receive threshold */
893 /* Following two lines added 101295, RGH. */
894 /* It is obviously wrong to access CyCORx, and not info->corx here,
895 * try and remember to fix it later! */
896 channel
= info
->line
;
897 base_addr
[CyCAR
] = (u_char
) channel
;
898 if (C_CLOCAL(info
->tty
)) {
899 if (base_addr
[CyIER
] & CyMdmCh
)
900 base_addr
[CyIER
] &= ~CyMdmCh
; /* without modem intr */
901 /* ignore 1->0 modem transitions */
902 if (base_addr
[CyCOR4
] & (CyDSR
| CyCTS
| CyDCD
))
903 base_addr
[CyCOR4
] &= ~(CyDSR
| CyCTS
| CyDCD
);
904 /* ignore 0->1 modem transitions */
905 if (base_addr
[CyCOR5
] & (CyDSR
| CyCTS
| CyDCD
))
906 base_addr
[CyCOR5
] &= ~(CyDSR
| CyCTS
| CyDCD
);
908 if ((base_addr
[CyIER
] & CyMdmCh
) != CyMdmCh
)
909 base_addr
[CyIER
] |= CyMdmCh
; /* with modem intr */
910 /* act on 1->0 modem transitions */
911 if ((base_addr
[CyCOR4
] & (CyDSR
| CyCTS
| CyDCD
)) !=
912 (CyDSR
| CyCTS
| CyDCD
))
913 base_addr
[CyCOR4
] |= CyDSR
| CyCTS
| CyDCD
;
914 /* act on 0->1 modem transitions */
915 if ((base_addr
[CyCOR5
] & (CyDSR
| CyCTS
| CyDCD
)) !=
916 (CyDSR
| CyCTS
| CyDCD
))
917 base_addr
[CyCOR5
] |= CyDSR
| CyCTS
| CyDCD
;
919 info
->cor3
= (cflag
& CSTOPB
) ? Cy_2_STOP
: Cy_1_STOP
;
921 switch (cflag
& CSIZE
) {
923 info
->cor1
= Cy_5_BITS
;
926 info
->cor1
= Cy_6_BITS
;
929 info
->cor1
= Cy_7_BITS
;
932 info
->cor1
= Cy_8_BITS
;
935 if (cflag
& PARENB
) {
936 if (cflag
& PARODD
) {
937 info
->cor1
|= CyPARITY_O
;
939 info
->cor1
|= CyPARITY_E
;
942 info
->cor1
|= CyPARITY_NONE
;
945 /* CTS flow control flag */
947 /* Don't complcate matters for now! RGH 141095 */
948 if (cflag
& CRTSCTS
) {
949 info
->flags
|= ASYNC_CTS_FLOW
;
950 info
->cor2
|= CyCtsAE
;
952 info
->flags
&= ~ASYNC_CTS_FLOW
;
953 info
->cor2
&= ~CyCtsAE
;
957 info
->flags
&= ~ASYNC_CHECK_CD
;
959 info
->flags
|= ASYNC_CHECK_CD
;
961 /***********************************************
962 The hardware option, CyRtsAO, presents RTS when
963 the chip has characters to send. Since most modems
964 use RTS as reverse (inbound) flow control, this
965 option is not used. If inbound flow control is
966 necessary, DTR can be programmed to provide the
967 appropriate signals for use with a non-standard
968 cable. Contact Marcio Saito for details.
969 ***********************************************/
971 channel
= info
->line
;
973 local_irq_save(flags
);
974 base_addr
[CyCAR
] = (u_char
) channel
;
976 /* CyCMR set once only in mvme167_init_serial() */
977 if (base_addr
[CyLICR
] != channel
<< 2)
978 base_addr
[CyLICR
] = channel
<< 2;
979 if (base_addr
[CyLIVR
] != 0x5c)
980 base_addr
[CyLIVR
] = 0x5c;
982 /* tx and rx baud rate */
984 if (base_addr
[CyCOR1
] != info
->cor1
)
986 if (base_addr
[CyTCOR
] != info
->tco
)
987 base_addr
[CyTCOR
] = info
->tco
;
988 if (base_addr
[CyTBPR
] != info
->tbpr
)
989 base_addr
[CyTBPR
] = info
->tbpr
;
990 if (base_addr
[CyRCOR
] != info
->rco
)
991 base_addr
[CyRCOR
] = info
->rco
;
992 if (base_addr
[CyRBPR
] != info
->rbpr
)
993 base_addr
[CyRBPR
] = info
->rbpr
;
995 /* set line characteristics according configuration */
997 if (base_addr
[CySCHR1
] != START_CHAR(info
->tty
))
998 base_addr
[CySCHR1
] = START_CHAR(info
->tty
);
999 if (base_addr
[CySCHR2
] != STOP_CHAR(info
->tty
))
1000 base_addr
[CySCHR2
] = STOP_CHAR(info
->tty
);
1001 if (base_addr
[CySCRL
] != START_CHAR(info
->tty
))
1002 base_addr
[CySCRL
] = START_CHAR(info
->tty
);
1003 if (base_addr
[CySCRH
] != START_CHAR(info
->tty
))
1004 base_addr
[CySCRH
] = START_CHAR(info
->tty
);
1005 if (base_addr
[CyCOR1
] != info
->cor1
)
1006 base_addr
[CyCOR1
] = info
->cor1
;
1007 if (base_addr
[CyCOR2
] != info
->cor2
)
1008 base_addr
[CyCOR2
] = info
->cor2
;
1009 if (base_addr
[CyCOR3
] != info
->cor3
)
1010 base_addr
[CyCOR3
] = info
->cor3
;
1011 if (base_addr
[CyCOR4
] != info
->cor4
)
1012 base_addr
[CyCOR4
] = info
->cor4
;
1013 if (base_addr
[CyCOR5
] != info
->cor5
)
1014 base_addr
[CyCOR5
] = info
->cor5
;
1015 if (base_addr
[CyCOR6
] != info
->cor6
)
1016 base_addr
[CyCOR6
] = info
->cor6
;
1017 if (base_addr
[CyCOR7
] != info
->cor7
)
1018 base_addr
[CyCOR7
] = info
->cor7
;
1021 write_cy_cmd(base_addr
, CyINIT_CHAN
);
1023 base_addr
[CyCAR
] = (u_char
) channel
; /* !!! Is this needed? */
1025 /* 2ms default rx timeout */
1026 ti
= info
->default_timeout
? info
->default_timeout
: 0x02;
1027 if (base_addr
[CyRTPRL
] != ti
)
1028 base_addr
[CyRTPRL
] = ti
;
1029 if (base_addr
[CyRTPRH
] != 0)
1030 base_addr
[CyRTPRH
] = 0;
1032 /* Set up RTS here also ????? RGH 141095 */
1033 if (i
== 0) { /* baud rate is zero, turn off line */
1034 if ((base_addr
[CyMSVR2
] & CyDTR
) == CyDTR
)
1035 base_addr
[CyMSVR2
] = 0;
1036 #ifdef SERIAL_DEBUG_DTR
1037 printk("cyc: %d: dropping DTR\n", __LINE__
);
1038 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
1039 base_addr
[CyMSVR2
]);
1042 if ((base_addr
[CyMSVR2
] & CyDTR
) != CyDTR
)
1043 base_addr
[CyMSVR2
] = CyDTR
;
1044 #ifdef SERIAL_DEBUG_DTR
1045 printk("cyc: %d: raising DTR\n", __LINE__
);
1046 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
1047 base_addr
[CyMSVR2
]);
1052 clear_bit(TTY_IO_ERROR
, &info
->tty
->flags
);
1055 local_irq_restore(flags
);
1057 } /* config_setup */
1059 static int cy_put_char(struct tty_struct
*tty
, unsigned char ch
)
1061 struct cyclades_port
*info
= tty
->driver_data
;
1062 unsigned long flags
;
1064 #ifdef SERIAL_DEBUG_IO
1065 printk("cy_put_char %s(0x%02x)\n", tty
->name
, ch
);
1068 if (serial_paranoia_check(info
, tty
->name
, "cy_put_char"))
1071 if (!info
->xmit_buf
)
1074 local_irq_save(flags
);
1075 if (info
->xmit_cnt
>= PAGE_SIZE
- 1) {
1076 local_irq_restore(flags
);
1080 info
->xmit_buf
[info
->xmit_head
++] = ch
;
1081 info
->xmit_head
&= PAGE_SIZE
- 1;
1083 local_irq_restore(flags
);
1087 static void cy_flush_chars(struct tty_struct
*tty
)
1089 struct cyclades_port
*info
= tty
->driver_data
;
1090 unsigned long flags
;
1091 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1094 #ifdef SERIAL_DEBUG_IO
1095 printk("cy_flush_chars %s\n", tty
->name
); /* */
1098 if (serial_paranoia_check(info
, tty
->name
, "cy_flush_chars"))
1101 if (info
->xmit_cnt
<= 0 || tty
->stopped
1102 || tty
->hw_stopped
|| !info
->xmit_buf
)
1105 channel
= info
->line
;
1107 local_irq_save(flags
);
1108 base_addr
[CyCAR
] = channel
;
1109 base_addr
[CyIER
] |= CyTxMpty
;
1110 local_irq_restore(flags
);
1111 } /* cy_flush_chars */
1113 /* This routine gets called when tty_write has put something into
1114 the write_queue. If the port is not already transmitting stuff,
1115 start it off by enabling interrupts. The interrupt service
1116 routine will then ensure that the characters are sent. If the
1117 port is already active, there is no need to kick it.
1119 static int cy_write(struct tty_struct
*tty
, const unsigned char *buf
, int count
)
1121 struct cyclades_port
*info
= tty
->driver_data
;
1122 unsigned long flags
;
1125 #ifdef SERIAL_DEBUG_IO
1126 printk("cy_write %s\n", tty
->name
); /* */
1129 if (serial_paranoia_check(info
, tty
->name
, "cy_write")) {
1133 if (!info
->xmit_buf
) {
1138 local_irq_save(flags
);
1139 c
= min_t(int, count
, min(SERIAL_XMIT_SIZE
- info
->xmit_cnt
- 1,
1140 SERIAL_XMIT_SIZE
- info
->xmit_head
));
1142 local_irq_restore(flags
);
1146 memcpy(info
->xmit_buf
+ info
->xmit_head
, buf
, c
);
1148 (info
->xmit_head
+ c
) & (SERIAL_XMIT_SIZE
- 1);
1149 info
->xmit_cnt
+= c
;
1150 local_irq_restore(flags
);
1157 if (info
->xmit_cnt
&& !tty
->stopped
&& !tty
->hw_stopped
) {
1163 static int cy_write_room(struct tty_struct
*tty
)
1165 struct cyclades_port
*info
= tty
->driver_data
;
1168 #ifdef SERIAL_DEBUG_IO
1169 printk("cy_write_room %s\n", tty
->name
); /* */
1172 if (serial_paranoia_check(info
, tty
->name
, "cy_write_room"))
1174 ret
= PAGE_SIZE
- info
->xmit_cnt
- 1;
1178 } /* cy_write_room */
1180 static int cy_chars_in_buffer(struct tty_struct
*tty
)
1182 struct cyclades_port
*info
= tty
->driver_data
;
1184 #ifdef SERIAL_DEBUG_IO
1185 printk("cy_chars_in_buffer %s %d\n", tty
->name
, info
->xmit_cnt
); /* */
1188 if (serial_paranoia_check(info
, tty
->name
, "cy_chars_in_buffer"))
1191 return info
->xmit_cnt
;
1192 } /* cy_chars_in_buffer */
1194 static void cy_flush_buffer(struct tty_struct
*tty
)
1196 struct cyclades_port
*info
= tty
->driver_data
;
1197 unsigned long flags
;
1199 #ifdef SERIAL_DEBUG_IO
1200 printk("cy_flush_buffer %s\n", tty
->name
); /* */
1203 if (serial_paranoia_check(info
, tty
->name
, "cy_flush_buffer"))
1205 local_irq_save(flags
);
1206 info
->xmit_cnt
= info
->xmit_head
= info
->xmit_tail
= 0;
1207 local_irq_restore(flags
);
1209 } /* cy_flush_buffer */
1211 /* This routine is called by the upper-layer tty layer to signal
1212 that incoming characters should be throttled or that the
1213 throttle should be released.
1215 static void cy_throttle(struct tty_struct
*tty
)
1217 struct cyclades_port
*info
= tty
->driver_data
;
1218 unsigned long flags
;
1219 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1222 #ifdef SERIAL_DEBUG_THROTTLE
1225 printk("throttle %s: %d....\n", tty_name(tty
, buf
),
1226 tty
->ldisc
.chars_in_buffer(tty
));
1227 printk("cy_throttle %s\n", tty
->name
);
1230 if (serial_paranoia_check(info
, tty
->name
, "cy_nthrottle")) {
1235 info
->x_char
= STOP_CHAR(tty
);
1236 /* Should use the "Send Special Character" feature!!! */
1239 channel
= info
->line
;
1241 local_irq_save(flags
);
1242 base_addr
[CyCAR
] = (u_char
) channel
;
1243 base_addr
[CyMSVR1
] = 0;
1244 local_irq_restore(flags
);
1247 static void cy_unthrottle(struct tty_struct
*tty
)
1249 struct cyclades_port
*info
= tty
->driver_data
;
1250 unsigned long flags
;
1251 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1254 #ifdef SERIAL_DEBUG_THROTTLE
1257 printk("throttle %s: %d....\n", tty_name(tty
, buf
),
1258 tty
->ldisc
.chars_in_buffer(tty
));
1259 printk("cy_unthrottle %s\n", tty
->name
);
1262 if (serial_paranoia_check(info
, tty
->name
, "cy_nthrottle")) {
1267 info
->x_char
= START_CHAR(tty
);
1268 /* Should use the "Send Special Character" feature!!! */
1271 channel
= info
->line
;
1273 local_irq_save(flags
);
1274 base_addr
[CyCAR
] = (u_char
) channel
;
1275 base_addr
[CyMSVR1
] = CyRTS
;
1276 local_irq_restore(flags
);
1277 } /* cy_unthrottle */
1280 get_serial_info(struct cyclades_port
*info
,
1281 struct serial_struct __user
* retinfo
)
1283 struct serial_struct tmp
;
1288 memset(&tmp
, 0, sizeof(tmp
));
1289 tmp
.type
= info
->type
;
1290 tmp
.line
= info
->line
;
1291 tmp
.port
= info
->line
;
1293 tmp
.flags
= info
->flags
;
1294 tmp
.baud_base
= 0; /*!!! */
1295 tmp
.close_delay
= info
->close_delay
;
1296 tmp
.custom_divisor
= 0; /*!!! */
1297 tmp
.hub6
= 0; /*!!! */
1298 return copy_to_user(retinfo
, &tmp
, sizeof(*retinfo
)) ? -EFAULT
: 0;
1299 } /* get_serial_info */
1302 set_serial_info(struct cyclades_port
*info
,
1303 struct serial_struct __user
* new_info
)
1305 struct serial_struct new_serial
;
1306 struct cyclades_port old_info
;
1311 if (copy_from_user(&new_serial
, new_info
, sizeof(new_serial
)))
1315 if (!capable(CAP_SYS_ADMIN
)) {
1316 if ((new_serial
.close_delay
!= info
->close_delay
) ||
1317 ((new_serial
.flags
& ASYNC_FLAGS
& ~ASYNC_USR_MASK
) !=
1318 (info
->flags
& ASYNC_FLAGS
& ~ASYNC_USR_MASK
)))
1320 info
->flags
= ((info
->flags
& ~ASYNC_USR_MASK
) |
1321 (new_serial
.flags
& ASYNC_USR_MASK
));
1322 goto check_and_exit
;
1326 * OK, past this point, all the error checking has been done.
1327 * At this point, we start making changes.....
1330 info
->flags
= ((info
->flags
& ~ASYNC_FLAGS
) |
1331 (new_serial
.flags
& ASYNC_FLAGS
));
1332 info
->close_delay
= new_serial
.close_delay
;
1335 if (info
->flags
& ASYNC_INITIALIZED
) {
1339 return startup(info
);
1340 } /* set_serial_info */
1342 static int cy_tiocmget(struct tty_struct
*tty
, struct file
*file
)
1344 struct cyclades_port
*info
= tty
->driver_data
;
1346 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1347 unsigned long flags
;
1348 unsigned char status
;
1350 channel
= info
->line
;
1352 local_irq_save(flags
);
1353 base_addr
[CyCAR
] = (u_char
) channel
;
1354 status
= base_addr
[CyMSVR1
] | base_addr
[CyMSVR2
];
1355 local_irq_restore(flags
);
1357 return ((status
& CyRTS
) ? TIOCM_RTS
: 0)
1358 | ((status
& CyDTR
) ? TIOCM_DTR
: 0)
1359 | ((status
& CyDCD
) ? TIOCM_CAR
: 0)
1360 | ((status
& CyDSR
) ? TIOCM_DSR
: 0)
1361 | ((status
& CyCTS
) ? TIOCM_CTS
: 0);
1365 cy_tiocmset(struct tty_struct
*tty
, struct file
*file
,
1366 unsigned int set
, unsigned int clear
)
1368 struct cyclades_port
*info
= tty
->driver_data
;
1370 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1371 unsigned long flags
;
1373 channel
= info
->line
;
1375 if (set
& TIOCM_RTS
) {
1376 local_irq_save(flags
);
1377 base_addr
[CyCAR
] = (u_char
) channel
;
1378 base_addr
[CyMSVR1
] = CyRTS
;
1379 local_irq_restore(flags
);
1381 if (set
& TIOCM_DTR
) {
1382 local_irq_save(flags
);
1383 base_addr
[CyCAR
] = (u_char
) channel
;
1384 /* CP('S');CP('2'); */
1385 base_addr
[CyMSVR2
] = CyDTR
;
1386 #ifdef SERIAL_DEBUG_DTR
1387 printk("cyc: %d: raising DTR\n", __LINE__
);
1388 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
1389 base_addr
[CyMSVR2
]);
1391 local_irq_restore(flags
);
1394 if (clear
& TIOCM_RTS
) {
1395 local_irq_save(flags
);
1396 base_addr
[CyCAR
] = (u_char
) channel
;
1397 base_addr
[CyMSVR1
] = 0;
1398 local_irq_restore(flags
);
1400 if (clear
& TIOCM_DTR
) {
1401 local_irq_save(flags
);
1402 base_addr
[CyCAR
] = (u_char
) channel
;
1403 /* CP('C');CP('2'); */
1404 base_addr
[CyMSVR2
] = 0;
1405 #ifdef SERIAL_DEBUG_DTR
1406 printk("cyc: %d: dropping DTR\n", __LINE__
);
1407 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
1408 base_addr
[CyMSVR2
]);
1410 local_irq_restore(flags
);
1414 } /* set_modem_info */
1416 static void send_break(struct cyclades_port
*info
, int duration
)
1417 { /* Let the transmit ISR take care of this (since it
1418 requires stuffing characters into the output stream).
1420 info
->x_break
= duration
;
1421 if (!info
->xmit_cnt
) {
1427 get_mon_info(struct cyclades_port
*info
, struct cyclades_monitor __user
* mon
)
1430 if (copy_to_user(mon
, &info
->mon
, sizeof(struct cyclades_monitor
)))
1432 info
->mon
.int_count
= 0;
1433 info
->mon
.char_count
= 0;
1434 info
->mon
.char_max
= 0;
1435 info
->mon
.char_last
= 0;
1439 static int set_threshold(struct cyclades_port
*info
, unsigned long __user
* arg
)
1441 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1442 unsigned long value
;
1445 if (get_user(value
, arg
))
1448 channel
= info
->line
;
1449 info
->cor4
&= ~CyREC_FIFO
;
1450 info
->cor4
|= value
& CyREC_FIFO
;
1451 base_addr
[CyCOR4
] = info
->cor4
;
1456 get_threshold(struct cyclades_port
*info
, unsigned long __user
* value
)
1458 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1462 channel
= info
->line
;
1464 tmp
= base_addr
[CyCOR4
] & CyREC_FIFO
;
1465 return put_user(tmp
, value
);
1469 set_default_threshold(struct cyclades_port
*info
, unsigned long __user
* arg
)
1471 unsigned long value
;
1473 if (get_user(value
, arg
))
1476 info
->default_threshold
= value
& 0x0f;
1481 get_default_threshold(struct cyclades_port
*info
, unsigned long __user
* value
)
1483 return put_user(info
->default_threshold
, value
);
1486 static int set_timeout(struct cyclades_port
*info
, unsigned long __user
* arg
)
1488 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1490 unsigned long value
;
1492 if (get_user(value
, arg
))
1495 channel
= info
->line
;
1497 base_addr
[CyRTPRL
] = value
& 0xff;
1498 base_addr
[CyRTPRH
] = (value
>> 8) & 0xff;
1502 static int get_timeout(struct cyclades_port
*info
, unsigned long __user
* value
)
1504 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1508 channel
= info
->line
;
1510 tmp
= base_addr
[CyRTPRL
];
1511 return put_user(tmp
, value
);
1514 static int set_default_timeout(struct cyclades_port
*info
, unsigned long value
)
1516 info
->default_timeout
= value
& 0xff;
1521 get_default_timeout(struct cyclades_port
*info
, unsigned long __user
* value
)
1523 return put_user(info
->default_timeout
, value
);
1527 cy_ioctl(struct tty_struct
*tty
, struct file
*file
,
1528 unsigned int cmd
, unsigned long arg
)
1531 struct cyclades_port
*info
= tty
->driver_data
;
1533 void __user
*argp
= (void __user
*)arg
;
1535 #ifdef SERIAL_DEBUG_OTHER
1536 printk("cy_ioctl %s, cmd = %x arg = %lx\n", tty
->name
, cmd
, arg
); /* */
1543 ret_val
= get_mon_info(info
, argp
);
1546 ret_val
= get_threshold(info
, argp
);
1549 ret_val
= set_threshold(info
, argp
);
1551 case CYGETDEFTHRESH
:
1552 ret_val
= get_default_threshold(info
, argp
);
1554 case CYSETDEFTHRESH
:
1555 ret_val
= set_default_threshold(info
, argp
);
1558 ret_val
= get_timeout(info
, argp
);
1561 ret_val
= set_timeout(info
, argp
);
1563 case CYGETDEFTIMEOUT
:
1564 ret_val
= get_default_timeout(info
, argp
);
1566 case CYSETDEFTIMEOUT
:
1567 ret_val
= set_default_timeout(info
, (unsigned long)arg
);
1569 case TCSBRK
: /* SVID version: non-zero arg --> no break */
1570 ret_val
= tty_check_change(tty
);
1573 tty_wait_until_sent(tty
, 0);
1575 send_break(info
, HZ
/ 4); /* 1/4 second */
1577 case TCSBRKP
: /* support for POSIX tcsendbreak() */
1578 ret_val
= tty_check_change(tty
);
1581 tty_wait_until_sent(tty
, 0);
1582 send_break(info
, arg
? arg
* (HZ
/ 10) : HZ
/ 4);
1585 /* The following commands are incompletely implemented!!! */
1587 ret_val
= get_serial_info(info
, argp
);
1590 ret_val
= set_serial_info(info
, argp
);
1593 ret_val
= -ENOIOCTLCMD
;
1597 #ifdef SERIAL_DEBUG_OTHER
1598 printk("cy_ioctl done\n");
1604 static void cy_set_termios(struct tty_struct
*tty
, struct ktermios
*old_termios
)
1606 struct cyclades_port
*info
= tty
->driver_data
;
1608 #ifdef SERIAL_DEBUG_OTHER
1609 printk("cy_set_termios %s\n", tty
->name
);
1612 if (tty
->termios
->c_cflag
== old_termios
->c_cflag
)
1616 if ((old_termios
->c_cflag
& CRTSCTS
) &&
1617 !(tty
->termios
->c_cflag
& CRTSCTS
)) {
1621 #ifdef tytso_patch_94Nov25_1726
1622 if (!(old_termios
->c_cflag
& CLOCAL
) &&
1623 (tty
->termios
->c_cflag
& CLOCAL
))
1624 wake_up_interruptible(&info
->open_wait
);
1626 } /* cy_set_termios */
1628 static void cy_close(struct tty_struct
*tty
, struct file
*filp
)
1630 struct cyclades_port
*info
= tty
->driver_data
;
1633 #ifdef SERIAL_DEBUG_OTHER
1634 printk("cy_close %s\n", tty
->name
);
1637 if (!info
|| serial_paranoia_check(info
, tty
->name
, "cy_close")) {
1640 #ifdef SERIAL_DEBUG_OPEN
1641 printk("cy_close %s, count = %d\n", tty
->name
, info
->count
);
1644 if ((tty
->count
== 1) && (info
->count
!= 1)) {
1646 * Uh, oh. tty->count is 1, which means that the tty
1647 * structure will be freed. Info->count should always
1648 * be one in these conditions. If it's greater than
1649 * one, we've got real problems, since it means the
1650 * serial port won't be shutdown.
1652 printk("cy_close: bad serial port count; tty->count is 1, "
1653 "info->count is %d\n", info
->count
);
1656 #ifdef SERIAL_DEBUG_COUNT
1657 printk("cyc: %d: decrementing count to %d\n", __LINE__
,
1660 if (--info
->count
< 0) {
1661 printk("cy_close: bad serial port count for ttys%d: %d\n",
1662 info
->line
, info
->count
);
1663 #ifdef SERIAL_DEBUG_COUNT
1664 printk("cyc: %d: setting count to 0\n", __LINE__
);
1670 info
->flags
|= ASYNC_CLOSING
;
1671 if (info
->flags
& ASYNC_INITIALIZED
)
1672 tty_wait_until_sent(tty
, 3000); /* 30 seconds timeout */
1674 cy_flush_buffer(tty
);
1675 tty_ldisc_flush(tty
);
1677 if (info
->blocked_open
) {
1678 if (info
->close_delay
) {
1679 msleep_interruptible(jiffies_to_msecs
1680 (info
->close_delay
));
1682 wake_up_interruptible(&info
->open_wait
);
1684 info
->flags
&= ~(ASYNC_NORMAL_ACTIVE
| ASYNC_CLOSING
);
1685 wake_up_interruptible(&info
->close_wait
);
1687 #ifdef SERIAL_DEBUG_OTHER
1688 printk("cy_close done\n");
1693 * cy_hangup() --- called by tty_hangup() when a hangup is signaled.
1695 void cy_hangup(struct tty_struct
*tty
)
1697 struct cyclades_port
*info
= tty
->driver_data
;
1699 #ifdef SERIAL_DEBUG_OTHER
1700 printk("cy_hangup %s\n", tty
->name
); /* */
1703 if (serial_paranoia_check(info
, tty
->name
, "cy_hangup"))
1710 #ifdef SERIAL_DEBUG_COUNT
1711 printk("cyc: %d: setting count to 0\n", __LINE__
);
1715 info
->flags
&= ~ASYNC_NORMAL_ACTIVE
;
1716 wake_up_interruptible(&info
->open_wait
);
1720 * ------------------------------------------------------------
1721 * cy_open() and friends
1722 * ------------------------------------------------------------
1726 block_til_ready(struct tty_struct
*tty
, struct file
*filp
,
1727 struct cyclades_port
*info
)
1729 DECLARE_WAITQUEUE(wait
, current
);
1730 unsigned long flags
;
1733 volatile u_char
*base_addr
= (u_char
*) BASE_ADDR
;
1736 * If the device is in the middle of being closed, then block
1737 * until it's done, and then try again.
1739 if (info
->flags
& ASYNC_CLOSING
) {
1740 interruptible_sleep_on(&info
->close_wait
);
1741 if (info
->flags
& ASYNC_HUP_NOTIFY
) {
1744 return -ERESTARTSYS
;
1749 * If non-blocking mode is set, then make the check up front
1752 if (filp
->f_flags
& O_NONBLOCK
) {
1753 info
->flags
|= ASYNC_NORMAL_ACTIVE
;
1758 * Block waiting for the carrier detect and the line to become
1759 * free (i.e., not in use by the callout). While we are in
1760 * this loop, info->count is dropped by one, so that
1761 * cy_close() knows when to free things. We restore it upon
1762 * exit, either normal or abnormal.
1765 add_wait_queue(&info
->open_wait
, &wait
);
1766 #ifdef SERIAL_DEBUG_OPEN
1767 printk("block_til_ready before block: %s, count = %d\n",
1768 tty
->name
, info
->count
);
1772 #ifdef SERIAL_DEBUG_COUNT
1773 printk("cyc: %d: decrementing count to %d\n", __LINE__
, info
->count
);
1775 info
->blocked_open
++;
1777 channel
= info
->line
;
1780 local_irq_save(flags
);
1781 base_addr
[CyCAR
] = (u_char
) channel
;
1782 base_addr
[CyMSVR1
] = CyRTS
;
1783 /* CP('S');CP('4'); */
1784 base_addr
[CyMSVR2
] = CyDTR
;
1785 #ifdef SERIAL_DEBUG_DTR
1786 printk("cyc: %d: raising DTR\n", __LINE__
);
1787 printk(" status: 0x%x, 0x%x\n", base_addr
[CyMSVR1
],
1788 base_addr
[CyMSVR2
]);
1790 local_irq_restore(flags
);
1791 set_current_state(TASK_INTERRUPTIBLE
);
1792 if (tty_hung_up_p(filp
)
1793 || !(info
->flags
& ASYNC_INITIALIZED
)) {
1794 if (info
->flags
& ASYNC_HUP_NOTIFY
) {
1797 retval
= -ERESTARTSYS
;
1801 local_irq_save(flags
);
1802 base_addr
[CyCAR
] = (u_char
) channel
;
1803 /* CP('L');CP1(1 && C_CLOCAL(tty)); CP1(1 && (base_addr[CyMSVR1] & CyDCD) ); */
1804 if (!(info
->flags
& ASYNC_CLOSING
)
1806 || (base_addr
[CyMSVR1
] & CyDCD
))) {
1807 local_irq_restore(flags
);
1810 local_irq_restore(flags
);
1811 if (signal_pending(current
)) {
1812 retval
= -ERESTARTSYS
;
1815 #ifdef SERIAL_DEBUG_OPEN
1816 printk("block_til_ready blocking: %s, count = %d\n",
1817 tty
->name
, info
->count
);
1822 __set_current_state(TASK_RUNNING
);
1823 remove_wait_queue(&info
->open_wait
, &wait
);
1824 if (!tty_hung_up_p(filp
)) {
1826 #ifdef SERIAL_DEBUG_COUNT
1827 printk("cyc: %d: incrementing count to %d\n", __LINE__
,
1831 info
->blocked_open
--;
1832 #ifdef SERIAL_DEBUG_OPEN
1833 printk("block_til_ready after blocking: %s, count = %d\n",
1834 tty
->name
, info
->count
);
1839 info
->flags
|= ASYNC_NORMAL_ACTIVE
;
1841 } /* block_til_ready */
1844 * This routine is called whenever a serial port is opened. It
1845 * performs the serial-specific initialization for the tty structure.
1847 int cy_open(struct tty_struct
*tty
, struct file
*filp
)
1849 struct cyclades_port
*info
;
1854 if ((line
< 0) || (NR_PORTS
<= line
)) {
1857 info
= &cy_port
[line
];
1858 if (info
->line
< 0) {
1861 #ifdef SERIAL_DEBUG_OTHER
1862 printk("cy_open %s\n", tty
->name
); /* */
1864 if (serial_paranoia_check(info
, tty
->name
, "cy_open")) {
1867 #ifdef SERIAL_DEBUG_OPEN
1868 printk("cy_open %s, count = %d\n", tty
->name
, info
->count
);
1872 #ifdef SERIAL_DEBUG_COUNT
1873 printk("cyc: %d: incrementing count to %d\n", __LINE__
, info
->count
);
1875 tty
->driver_data
= info
;
1879 * Start up serial port
1881 retval
= startup(info
);
1886 retval
= block_til_ready(tty
, filp
, info
);
1888 #ifdef SERIAL_DEBUG_OPEN
1889 printk("cy_open returning after block_til_ready with %d\n",
1894 #ifdef SERIAL_DEBUG_OPEN
1895 printk("cy_open done\n");
1902 * ---------------------------------------------------------------------
1903 * serial167_init() and friends
1905 * serial167_init() is called at boot-time to initialize the serial driver.
1906 * ---------------------------------------------------------------------
1910 * This routine prints out the appropriate serial driver version
1911 * number, and identifies which options were configured into this
1914 static void show_version(void)
1916 printk("MVME166/167 cd2401 driver\n");
1917 } /* show_version */
1919 /* initialize chips on card -- return number of valid
1920 chips (which is number of ports/4) */
1923 * This initialises the hardware to a reasonable state. It should
1924 * probe the chip first so as to copy 166-Bug setup as a default for
1925 * port 0. It initialises CMR to CyASYNC; that is never done again, so
1926 * as to limit the number of CyINIT_CHAN commands in normal running.
1928 * ... I wonder what I should do if this fails ...
1931 void mvme167_serial_console_setup(int cflag
)
1933 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
1936 u_char rcor
, rbpr
, badspeed
= 0;
1937 unsigned long flags
;
1939 local_irq_save(flags
);
1942 * First probe channel zero of the chip, to see what speed has
1946 base_addr
[CyCAR
] = 0;
1948 rcor
= base_addr
[CyRCOR
] << 5;
1949 rbpr
= base_addr
[CyRBPR
];
1951 for (spd
= 0; spd
< sizeof(baud_bpr
); spd
++)
1952 if (rbpr
== baud_bpr
[spd
] && rcor
== baud_co
[spd
])
1954 if (spd
>= sizeof(baud_bpr
)) {
1955 spd
= 14; /* 19200 */
1956 badspeed
= 1; /* Failed to identify speed */
1958 initial_console_speed
= spd
;
1960 /* OK, we have chosen a speed, now reset and reinitialise */
1962 my_udelay(20000L); /* Allow time for any active o/p to complete */
1963 if (base_addr
[CyCCR
] != 0x00) {
1964 local_irq_restore(flags
);
1965 /* printk(" chip is never idle (CCR != 0)\n"); */
1969 base_addr
[CyCCR
] = CyCHIP_RESET
; /* Reset the chip */
1972 if (base_addr
[CyGFRCR
] == 0x00) {
1973 local_irq_restore(flags
);
1974 /* printk(" chip is not responding (GFRCR stayed 0)\n"); */
1979 * System clock is 20Mhz, divided by 2048, so divide by 10 for a 1.0ms
1983 base_addr
[CyTPR
] = 10;
1985 base_addr
[CyPILR1
] = 0x01; /* Interrupt level for modem change */
1986 base_addr
[CyPILR2
] = 0x02; /* Interrupt level for tx ints */
1987 base_addr
[CyPILR3
] = 0x03; /* Interrupt level for rx ints */
1990 * Attempt to set up all channels to something reasonable, and
1991 * bang out a INIT_CHAN command. We should then be able to limit
1992 * the ammount of fiddling we have to do in normal running.
1995 for (ch
= 3; ch
>= 0; ch
--) {
1996 base_addr
[CyCAR
] = (u_char
) ch
;
1997 base_addr
[CyIER
] = 0;
1998 base_addr
[CyCMR
] = CyASYNC
;
1999 base_addr
[CyLICR
] = (u_char
) ch
<< 2;
2000 base_addr
[CyLIVR
] = 0x5c;
2001 base_addr
[CyTCOR
] = baud_co
[spd
];
2002 base_addr
[CyTBPR
] = baud_bpr
[spd
];
2003 base_addr
[CyRCOR
] = baud_co
[spd
] >> 5;
2004 base_addr
[CyRBPR
] = baud_bpr
[spd
];
2005 base_addr
[CySCHR1
] = 'Q' & 0x1f;
2006 base_addr
[CySCHR2
] = 'X' & 0x1f;
2007 base_addr
[CySCRL
] = 0;
2008 base_addr
[CySCRH
] = 0;
2009 base_addr
[CyCOR1
] = Cy_8_BITS
| CyPARITY_NONE
;
2010 base_addr
[CyCOR2
] = 0;
2011 base_addr
[CyCOR3
] = Cy_1_STOP
;
2012 base_addr
[CyCOR4
] = baud_cor4
[spd
];
2013 base_addr
[CyCOR5
] = 0;
2014 base_addr
[CyCOR6
] = 0;
2015 base_addr
[CyCOR7
] = 0;
2016 base_addr
[CyRTPRL
] = 2;
2017 base_addr
[CyRTPRH
] = 0;
2018 base_addr
[CyMSVR1
] = 0;
2019 base_addr
[CyMSVR2
] = 0;
2020 write_cy_cmd(base_addr
, CyINIT_CHAN
| CyDIS_RCVR
| CyDIS_XMTR
);
2024 * Now do specials for channel zero....
2027 base_addr
[CyMSVR1
] = CyRTS
;
2028 base_addr
[CyMSVR2
] = CyDTR
;
2029 base_addr
[CyIER
] = CyRxData
;
2030 write_cy_cmd(base_addr
, CyENB_RCVR
| CyENB_XMTR
);
2032 local_irq_restore(flags
);
2034 my_udelay(20000L); /* Let it all settle down */
2036 printk("CD2401 initialised, chip is rev 0x%02x\n", base_addr
[CyGFRCR
]);
2039 (" WARNING: Failed to identify line speed, rcor=%02x,rbpr=%02x\n",
2041 } /* serial_console_init */
2043 static const struct tty_operations cy_ops
= {
2047 .put_char
= cy_put_char
,
2048 .flush_chars
= cy_flush_chars
,
2049 .write_room
= cy_write_room
,
2050 .chars_in_buffer
= cy_chars_in_buffer
,
2051 .flush_buffer
= cy_flush_buffer
,
2053 .throttle
= cy_throttle
,
2054 .unthrottle
= cy_unthrottle
,
2055 .set_termios
= cy_set_termios
,
2058 .hangup
= cy_hangup
,
2059 .tiocmget
= cy_tiocmget
,
2060 .tiocmset
= cy_tiocmset
,
2063 /* The serial driver boot-time initialization code!
2064 Hardware I/O ports are mapped to character special devices on a
2065 first found, first allocated manner. That is, this code searches
2066 for Cyclom cards in the system. As each is found, it is probed
2067 to discover how many chips (and thus how many ports) are present.
2068 These ports are mapped to the tty ports 64 and upward in monotonic
2069 fashion. If an 8-port card is replaced with a 16-port card, the
2070 port mapping on a following card will shift.
2072 This approach is different from what is used in the other serial
2073 device driver because the Cyclom is more properly a multiplexer,
2074 not just an aggregation of serial ports on one card.
2076 If there are more cards with more ports than have been statically
2077 allocated above, a warning is printed and the extra ports are ignored.
2079 static int __init
serial167_init(void)
2081 struct cyclades_port
*info
;
2088 struct sigaction sa
;
2091 if (!(mvme16x_config
& MVME16x_CONFIG_GOT_CD2401
))
2094 cy_serial_driver
= alloc_tty_driver(NR_PORTS
);
2095 if (!cy_serial_driver
)
2104 /* Has "console=0,9600n8" been used in bootinfo to change speed? */
2105 if (serial_console_cflag
)
2106 DefSpeed
= serial_console_cflag
& 0017;
2108 DefSpeed
= initial_console_speed
;
2109 serial_console_info
= &cy_port
[0];
2110 serial_console_cflag
= DefSpeed
| CS8
;
2112 serial_console
= 64; /*callout_driver.minor_start */
2116 /* Initialize the tty_driver structure */
2118 cy_serial_driver
->owner
= THIS_MODULE
;
2119 cy_serial_driver
->name
= "ttyS";
2120 cy_serial_driver
->major
= TTY_MAJOR
;
2121 cy_serial_driver
->minor_start
= 64;
2122 cy_serial_driver
->type
= TTY_DRIVER_TYPE_SERIAL
;
2123 cy_serial_driver
->subtype
= SERIAL_TYPE_NORMAL
;
2124 cy_serial_driver
->init_termios
= tty_std_termios
;
2125 cy_serial_driver
->init_termios
.c_cflag
=
2126 B9600
| CS8
| CREAD
| HUPCL
| CLOCAL
;
2127 cy_serial_driver
->flags
= TTY_DRIVER_REAL_RAW
;
2128 tty_set_operations(cy_serial_driver
, &cy_ops
);
2130 ret
= tty_register_driver(cy_serial_driver
);
2132 printk(KERN_ERR
"Couldn't register MVME166/7 serial driver\n");
2133 put_tty_driver(cy_serial_driver
);
2139 for (index
= 0; index
< 1; index
++) {
2143 if (port_num
< NR_PORTS
) {
2144 while (good_ports
-- && port_num
< NR_PORTS
) {
2145 /*** initialize port ***/
2146 info
->magic
= CYCLADES_MAGIC
;
2147 info
->type
= PORT_CIRRUS
;
2149 info
->line
= port_num
;
2150 info
->flags
= STD_COM_FLAGS
;
2152 info
->xmit_fifo_size
= 12;
2153 info
->cor1
= CyPARITY_NONE
| Cy_8_BITS
;
2155 info
->cor3
= Cy_1_STOP
;
2156 info
->cor4
= 0x08; /* _very_ small receive threshold */
2160 info
->tbpr
= baud_bpr
[DefSpeed
]; /* Tx BPR */
2161 info
->tco
= baud_co
[DefSpeed
]; /* Tx CO */
2162 info
->rbpr
= baud_bpr
[DefSpeed
]; /* Rx BPR */
2163 info
->rco
= baud_co
[DefSpeed
] >> 5; /* Rx CO */
2164 info
->close_delay
= 0;
2167 #ifdef SERIAL_DEBUG_COUNT
2168 printk("cyc: %d: setting count to 0\n",
2171 info
->blocked_open
= 0;
2172 info
->default_threshold
= 0;
2173 info
->default_timeout
= 0;
2174 init_waitqueue_head(&info
->open_wait
);
2175 init_waitqueue_head(&info
->close_wait
);
2178 /*** !!!!!!!! this may expose new bugs !!!!!!!!! *********/
2179 info
->read_status_mask
=
2180 CyTIMEOUT
| CySPECHAR
| CyBREAK
| CyPARITY
|
2181 CyFRAME
| CyOVERRUN
;
2184 printk("ttyS%d ", info
->line
);
2187 if (!(port_num
& 7)) {
2194 while (port_num
< NR_PORTS
) {
2199 #ifdef CONFIG_REMOTE_DEBUG
2202 ret
= request_irq(MVME167_IRQ_SER_ERR
, cd2401_rxerr_interrupt
, 0,
2203 "cd2401_errors", cd2401_rxerr_interrupt
);
2205 printk(KERN_ERR
"Could't get cd2401_errors IRQ");
2206 goto cleanup_serial_driver
;
2209 ret
= request_irq(MVME167_IRQ_SER_MODEM
, cd2401_modem_interrupt
, 0,
2210 "cd2401_modem", cd2401_modem_interrupt
);
2212 printk(KERN_ERR
"Could't get cd2401_modem IRQ");
2213 goto cleanup_irq_cd2401_errors
;
2216 ret
= request_irq(MVME167_IRQ_SER_TX
, cd2401_tx_interrupt
, 0,
2217 "cd2401_txints", cd2401_tx_interrupt
);
2219 printk(KERN_ERR
"Could't get cd2401_txints IRQ");
2220 goto cleanup_irq_cd2401_modem
;
2223 ret
= request_irq(MVME167_IRQ_SER_RX
, cd2401_rx_interrupt
, 0,
2224 "cd2401_rxints", cd2401_rx_interrupt
);
2226 printk(KERN_ERR
"Could't get cd2401_rxints IRQ");
2227 goto cleanup_irq_cd2401_txints
;
2230 /* Now we have registered the interrupt handlers, allow the interrupts */
2232 pcc2chip
[PccSCCMICR
] = 0x15; /* Serial ints are level 5 */
2233 pcc2chip
[PccSCCTICR
] = 0x15;
2234 pcc2chip
[PccSCCRICR
] = 0x15;
2236 pcc2chip
[PccIMLR
] = 3; /* Allow PCC2 ints above 3!? */
2239 cleanup_irq_cd2401_txints
:
2240 free_irq(MVME167_IRQ_SER_TX
, cd2401_tx_interrupt
);
2241 cleanup_irq_cd2401_modem
:
2242 free_irq(MVME167_IRQ_SER_MODEM
, cd2401_modem_interrupt
);
2243 cleanup_irq_cd2401_errors
:
2244 free_irq(MVME167_IRQ_SER_ERR
, cd2401_rxerr_interrupt
);
2245 cleanup_serial_driver
:
2246 if (tty_unregister_driver(cy_serial_driver
))
2248 "Couldn't unregister MVME166/7 serial driver\n");
2249 put_tty_driver(cy_serial_driver
);
2251 } /* serial167_init */
2253 module_init(serial167_init
);
2255 #ifdef CYCLOM_SHOW_STATUS
2256 static void show_status(int line_num
)
2258 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
2260 struct cyclades_port
*info
;
2261 unsigned long flags
;
2263 info
= &cy_port
[line_num
];
2264 channel
= info
->line
;
2265 printk(" channel %d\n", channel
);
2266 /**/ printk(" cy_port\n");
2267 printk(" card line flags = %d %d %x\n",
2268 info
->card
, info
->line
, info
->flags
);
2270 (" *tty read_status_mask timeout xmit_fifo_size = %lx %x %x %x\n",
2271 (long)info
->tty
, info
->read_status_mask
, info
->timeout
,
2272 info
->xmit_fifo_size
);
2273 printk(" cor1,cor2,cor3,cor4,cor5,cor6,cor7 = %x %x %x %x %x %x %x\n",
2274 info
->cor1
, info
->cor2
, info
->cor3
, info
->cor4
, info
->cor5
,
2275 info
->cor6
, info
->cor7
);
2276 printk(" tbpr,tco,rbpr,rco = %d %d %d %d\n", info
->tbpr
, info
->tco
,
2277 info
->rbpr
, info
->rco
);
2278 printk(" close_delay event count = %d %d %d\n", info
->close_delay
,
2279 info
->event
, info
->count
);
2280 printk(" x_char blocked_open = %x %x\n", info
->x_char
,
2281 info
->blocked_open
);
2282 printk(" open_wait = %lx %lx %lx\n", (long)info
->open_wait
);
2284 local_irq_save(flags
);
2286 /* Global Registers */
2288 printk(" CyGFRCR %x\n", base_addr
[CyGFRCR
]);
2289 printk(" CyCAR %x\n", base_addr
[CyCAR
]);
2290 printk(" CyRISR %x\n", base_addr
[CyRISR
]);
2291 printk(" CyTISR %x\n", base_addr
[CyTISR
]);
2292 printk(" CyMISR %x\n", base_addr
[CyMISR
]);
2293 printk(" CyRIR %x\n", base_addr
[CyRIR
]);
2294 printk(" CyTIR %x\n", base_addr
[CyTIR
]);
2295 printk(" CyMIR %x\n", base_addr
[CyMIR
]);
2296 printk(" CyTPR %x\n", base_addr
[CyTPR
]);
2298 base_addr
[CyCAR
] = (u_char
) channel
;
2300 /* Virtual Registers */
2303 printk(" CyRIVR %x\n", base_addr
[CyRIVR
]);
2304 printk(" CyTIVR %x\n", base_addr
[CyTIVR
]);
2305 printk(" CyMIVR %x\n", base_addr
[CyMIVR
]);
2306 printk(" CyMISR %x\n", base_addr
[CyMISR
]);
2309 /* Channel Registers */
2311 printk(" CyCCR %x\n", base_addr
[CyCCR
]);
2312 printk(" CyIER %x\n", base_addr
[CyIER
]);
2313 printk(" CyCOR1 %x\n", base_addr
[CyCOR1
]);
2314 printk(" CyCOR2 %x\n", base_addr
[CyCOR2
]);
2315 printk(" CyCOR3 %x\n", base_addr
[CyCOR3
]);
2316 printk(" CyCOR4 %x\n", base_addr
[CyCOR4
]);
2317 printk(" CyCOR5 %x\n", base_addr
[CyCOR5
]);
2319 printk(" CyCCSR %x\n", base_addr
[CyCCSR
]);
2320 printk(" CyRDCR %x\n", base_addr
[CyRDCR
]);
2322 printk(" CySCHR1 %x\n", base_addr
[CySCHR1
]);
2323 printk(" CySCHR2 %x\n", base_addr
[CySCHR2
]);
2325 printk(" CySCHR3 %x\n", base_addr
[CySCHR3
]);
2326 printk(" CySCHR4 %x\n", base_addr
[CySCHR4
]);
2327 printk(" CySCRL %x\n", base_addr
[CySCRL
]);
2328 printk(" CySCRH %x\n", base_addr
[CySCRH
]);
2329 printk(" CyLNC %x\n", base_addr
[CyLNC
]);
2330 printk(" CyMCOR1 %x\n", base_addr
[CyMCOR1
]);
2331 printk(" CyMCOR2 %x\n", base_addr
[CyMCOR2
]);
2333 printk(" CyRTPRL %x\n", base_addr
[CyRTPRL
]);
2334 printk(" CyRTPRH %x\n", base_addr
[CyRTPRH
]);
2335 printk(" CyMSVR1 %x\n", base_addr
[CyMSVR1
]);
2336 printk(" CyMSVR2 %x\n", base_addr
[CyMSVR2
]);
2337 printk(" CyRBPR %x\n", base_addr
[CyRBPR
]);
2338 printk(" CyRCOR %x\n", base_addr
[CyRCOR
]);
2339 printk(" CyTBPR %x\n", base_addr
[CyTBPR
]);
2340 printk(" CyTCOR %x\n", base_addr
[CyTCOR
]);
2342 local_irq_restore(flags
);
2347 /* Dummy routine in mvme16x/config.c for now */
2349 /* Serial console setup. Called from linux/init/main.c */
2351 void console_setup(char *str
, int *ints
)
2354 int baud
, bits
, parity
;
2358 if (ints
[0] > 3 || ints
[1] > 3)
2361 /* Get baud, bits and parity */
2367 if ((s
= strchr(str
, ','))) {
2370 } while (*s
>= '0' && *s
<= '9');
2377 /* Now construct a cflag setting. */
2416 serial_console_info
= &cy_port
[ints
[1]];
2417 serial_console_cflag
= cflag
;
2418 serial_console
= ints
[1] + 64; /*callout_driver.minor_start */
2423 * The following is probably out of date for 2.1.x serial console stuff.
2425 * The console is registered early on from arch/m68k/kernel/setup.c, and
2426 * it therefore relies on the chip being setup correctly by 166-Bug. This
2427 * seems reasonable, as the serial port has been used to invoke the system
2428 * boot. It also means that this function must not rely on any data
2429 * initialisation performed by serial167_init() etc.
2431 * Of course, once the console has been registered, we had better ensure
2432 * that serial167_init() doesn't leave the chip non-functional.
2434 * The console must be locked when we get here.
2437 void serial167_console_write(struct console
*co
, const char *str
,
2440 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
2441 unsigned long flags
;
2442 volatile u_char sink
;
2448 local_irq_save(flags
);
2450 /* Ensure transmitter is enabled! */
2453 base_addr
[CyCAR
] = (u_char
) port
;
2454 while (base_addr
[CyCCR
])
2456 base_addr
[CyCCR
] = CyENB_XMTR
;
2458 ier
= base_addr
[CyIER
];
2459 base_addr
[CyIER
] = CyTxMpty
;
2462 if (pcc2chip
[PccSCCTICR
] & 0x20) {
2463 /* We have a Tx int. Acknowledge it */
2464 sink
= pcc2chip
[PccTPIACKR
];
2465 if ((base_addr
[CyLICR
] >> 2) == port
) {
2467 /* Last char of string is now output */
2468 base_addr
[CyTEOIR
] = CyNOTRANS
;
2472 base_addr
[CyTDR
] = '\n';
2476 } else if (*str
== '\n') {
2477 base_addr
[CyTDR
] = '\r';
2480 base_addr
[CyTDR
] = *str
++;
2483 base_addr
[CyTEOIR
] = 0;
2485 base_addr
[CyTEOIR
] = CyNOTRANS
;
2489 base_addr
[CyIER
] = ier
;
2491 local_irq_restore(flags
);
2494 static struct tty_driver
*serial167_console_device(struct console
*c
,
2498 return cy_serial_driver
;
2501 static struct console sercons
= {
2503 .write
= serial167_console_write
,
2504 .device
= serial167_console_device
,
2505 .flags
= CON_PRINTBUFFER
,
2509 static int __init
serial167_console_init(void)
2511 if (vme_brdtype
== VME_TYPE_MVME166
||
2512 vme_brdtype
== VME_TYPE_MVME167
||
2513 vme_brdtype
== VME_TYPE_MVME177
) {
2514 mvme167_serial_console_setup(0);
2515 register_console(&sercons
);
2520 console_initcall(serial167_console_init
);
2522 #ifdef CONFIG_REMOTE_DEBUG
2523 void putDebugChar(int c
)
2525 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
2526 unsigned long flags
;
2527 volatile u_char sink
;
2531 local_irq_save(flags
);
2533 /* Ensure transmitter is enabled! */
2536 base_addr
[CyCAR
] = (u_char
) port
;
2537 while (base_addr
[CyCCR
])
2539 base_addr
[CyCCR
] = CyENB_XMTR
;
2541 ier
= base_addr
[CyIER
];
2542 base_addr
[CyIER
] = CyTxMpty
;
2545 if (pcc2chip
[PccSCCTICR
] & 0x20) {
2546 /* We have a Tx int. Acknowledge it */
2547 sink
= pcc2chip
[PccTPIACKR
];
2548 if ((base_addr
[CyLICR
] >> 2) == port
) {
2549 base_addr
[CyTDR
] = c
;
2550 base_addr
[CyTEOIR
] = 0;
2553 base_addr
[CyTEOIR
] = CyNOTRANS
;
2557 base_addr
[CyIER
] = ier
;
2559 local_irq_restore(flags
);
2564 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
2565 unsigned long flags
;
2566 volatile u_char sink
;
2572 if (i
!= debugiq
.in
) {
2574 if (++i
== DEBUG_LEN
)
2579 /* OK, nothing in queue, wait in poll loop */
2581 local_irq_save(flags
);
2583 /* Ensure receiver is enabled! */
2586 base_addr
[CyCAR
] = (u_char
) port
;
2588 while (base_addr
[CyCCR
])
2590 base_addr
[CyCCR
] = CyENB_RCVR
;
2592 ier
= base_addr
[CyIER
];
2593 base_addr
[CyIER
] = CyRxData
;
2596 if (pcc2chip
[PccSCCRICR
] & 0x20) {
2597 /* We have a Rx int. Acknowledge it */
2598 sink
= pcc2chip
[PccRPIACKR
];
2599 if ((base_addr
[CyLICR
] >> 2) == port
) {
2600 int cnt
= base_addr
[CyRFOC
];
2602 c
= base_addr
[CyRDR
];
2605 ("!! debug char is null (cnt=%d) !!",
2610 base_addr
[CyREOIR
] = 0;
2612 if (i
== debugiq
.in
)
2613 panic("Debug input queue empty!");
2615 if (++i
== DEBUG_LEN
)
2620 base_addr
[CyREOIR
] = CyNOTRANS
;
2624 base_addr
[CyIER
] = ier
;
2626 local_irq_restore(flags
);
2631 void queueDebugChar(int c
)
2637 if (++i
== DEBUG_LEN
)
2639 if (i
!= debugiq
.out
)
2643 static void debug_setup()
2645 unsigned long flags
;
2646 volatile unsigned char *base_addr
= (u_char
*) BASE_ADDR
;
2651 local_irq_save(flags
);
2653 for (i
= 0; i
< 4; i
++) {
2654 base_addr
[CyCAR
] = i
;
2655 base_addr
[CyLICR
] = i
<< 2;
2658 debugiq
.in
= debugiq
.out
= 0;
2660 base_addr
[CyCAR
] = DEBUG_PORT
;
2665 base_addr
[CyIER
] = 0;
2667 base_addr
[CyCMR
] = CyASYNC
;
2668 base_addr
[CyLICR
] = DEBUG_PORT
<< 2;
2669 base_addr
[CyLIVR
] = 0x5c;
2671 /* tx and rx baud rate */
2673 base_addr
[CyTCOR
] = baud_co
[i
];
2674 base_addr
[CyTBPR
] = baud_bpr
[i
];
2675 base_addr
[CyRCOR
] = baud_co
[i
] >> 5;
2676 base_addr
[CyRBPR
] = baud_bpr
[i
];
2678 /* set line characteristics according configuration */
2680 base_addr
[CySCHR1
] = 0;
2681 base_addr
[CySCHR2
] = 0;
2682 base_addr
[CySCRL
] = 0;
2683 base_addr
[CySCRH
] = 0;
2684 base_addr
[CyCOR1
] = Cy_8_BITS
| CyPARITY_NONE
;
2685 base_addr
[CyCOR2
] = 0;
2686 base_addr
[CyCOR3
] = Cy_1_STOP
;
2687 base_addr
[CyCOR4
] = baud_cor4
[i
];
2688 base_addr
[CyCOR5
] = 0;
2689 base_addr
[CyCOR6
] = 0;
2690 base_addr
[CyCOR7
] = 0;
2692 write_cy_cmd(base_addr
, CyINIT_CHAN
);
2693 write_cy_cmd(base_addr
, CyENB_RCVR
);
2695 base_addr
[CyCAR
] = DEBUG_PORT
; /* !!! Is this needed? */
2697 base_addr
[CyRTPRL
] = 2;
2698 base_addr
[CyRTPRH
] = 0;
2700 base_addr
[CyMSVR1
] = CyRTS
;
2701 base_addr
[CyMSVR2
] = CyDTR
;
2703 base_addr
[CyIER
] = CyRxData
;
2705 local_irq_restore(flags
);
2711 MODULE_LICENSE("GPL");