2 * Driver core for serial ports
4 * Based on drivers/char/serial.c, by Linus Torvalds, Theodore Ts'o.
6 * Copyright 1999 ARM Limited
7 * Copyright (C) 2000-2001 Deep Blue Solutions Ltd.
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
23 #include <linux/module.h>
24 #include <linux/tty.h>
25 #include <linux/tty_flip.h>
26 #include <linux/slab.h>
27 #include <linux/init.h>
28 #include <linux/console.h>
30 #include <linux/proc_fs.h>
31 #include <linux/seq_file.h>
32 #include <linux/device.h>
33 #include <linux/serial.h> /* for serial_state and serial_icounter_struct */
34 #include <linux/serial_core.h>
35 #include <linux/delay.h>
36 #include <linux/mutex.h>
39 #include <asm/uaccess.h>
42 * This is used to lock changes in serial line configuration.
44 static DEFINE_MUTEX(port_mutex
);
47 * lockdep: port->lock is initialized in two places, but we
48 * want only one lock-class:
50 static struct lock_class_key port_lock_key
;
52 #define HIGH_BITS_OFFSET ((sizeof(long)-sizeof(int))*8)
54 static void uart_change_speed(struct tty_struct
*tty
, struct uart_state
*state
,
55 struct ktermios
*old_termios
);
56 static void uart_wait_until_sent(struct tty_struct
*tty
, int timeout
);
57 static void uart_change_pm(struct uart_state
*state
,
58 enum uart_pm_state pm_state
);
60 static void uart_port_shutdown(struct tty_port
*port
);
62 static int uart_dcd_enabled(struct uart_port
*uport
)
64 return !!(uport
->status
& UPSTAT_DCD_ENABLE
);
68 * This routine is used by the interrupt handler to schedule processing in
69 * the software interrupt portion of the driver.
71 void uart_write_wakeup(struct uart_port
*port
)
73 struct uart_state
*state
= port
->state
;
75 * This means you called this function _after_ the port was
76 * closed. No cookie for you.
79 tty_wakeup(state
->port
.tty
);
82 static void uart_stop(struct tty_struct
*tty
)
84 struct uart_state
*state
= tty
->driver_data
;
85 struct uart_port
*port
= state
->uart_port
;
88 spin_lock_irqsave(&port
->lock
, flags
);
89 port
->ops
->stop_tx(port
);
90 spin_unlock_irqrestore(&port
->lock
, flags
);
93 static void __uart_start(struct tty_struct
*tty
)
95 struct uart_state
*state
= tty
->driver_data
;
96 struct uart_port
*port
= state
->uart_port
;
98 if (!uart_tx_stopped(port
))
99 port
->ops
->start_tx(port
);
102 static void uart_start(struct tty_struct
*tty
)
104 struct uart_state
*state
= tty
->driver_data
;
105 struct uart_port
*port
= state
->uart_port
;
108 spin_lock_irqsave(&port
->lock
, flags
);
110 spin_unlock_irqrestore(&port
->lock
, flags
);
114 uart_update_mctrl(struct uart_port
*port
, unsigned int set
, unsigned int clear
)
119 spin_lock_irqsave(&port
->lock
, flags
);
121 port
->mctrl
= (old
& ~clear
) | set
;
122 if (old
!= port
->mctrl
)
123 port
->ops
->set_mctrl(port
, port
->mctrl
);
124 spin_unlock_irqrestore(&port
->lock
, flags
);
127 #define uart_set_mctrl(port, set) uart_update_mctrl(port, set, 0)
128 #define uart_clear_mctrl(port, clear) uart_update_mctrl(port, 0, clear)
131 * Startup the port. This will be called once per open. All calls
132 * will be serialised by the per-port mutex.
134 static int uart_port_startup(struct tty_struct
*tty
, struct uart_state
*state
,
137 struct uart_port
*uport
= state
->uart_port
;
141 if (uport
->type
== PORT_UNKNOWN
)
145 * Make sure the device is in D0 state.
147 uart_change_pm(state
, UART_PM_STATE_ON
);
150 * Initialise and allocate the transmit and temporary
153 if (!state
->xmit
.buf
) {
154 /* This is protected by the per port mutex */
155 page
= get_zeroed_page(GFP_KERNEL
);
159 state
->xmit
.buf
= (unsigned char *) page
;
160 uart_circ_clear(&state
->xmit
);
163 retval
= uport
->ops
->startup(uport
);
165 if (uart_console(uport
) && uport
->cons
->cflag
) {
166 tty
->termios
.c_cflag
= uport
->cons
->cflag
;
167 uport
->cons
->cflag
= 0;
170 * Initialise the hardware port settings.
172 uart_change_speed(tty
, state
, NULL
);
175 * Setup the RTS and DTR signals once the
176 * port is open and ready to respond.
178 if (init_hw
&& C_BAUD(tty
))
179 uart_set_mctrl(uport
, TIOCM_RTS
| TIOCM_DTR
);
183 * This is to allow setserial on this port. People may want to set
184 * port/irq/type and then reconfigure the port properly if it failed
187 if (retval
&& capable(CAP_SYS_ADMIN
))
193 static int uart_startup(struct tty_struct
*tty
, struct uart_state
*state
,
196 struct tty_port
*port
= &state
->port
;
199 if (port
->flags
& ASYNC_INITIALIZED
)
203 * Set the TTY IO error marker - we will only clear this
204 * once we have successfully opened the port.
206 set_bit(TTY_IO_ERROR
, &tty
->flags
);
208 retval
= uart_port_startup(tty
, state
, init_hw
);
210 set_bit(ASYNCB_INITIALIZED
, &port
->flags
);
211 clear_bit(TTY_IO_ERROR
, &tty
->flags
);
212 } else if (retval
> 0)
219 * This routine will shutdown a serial port; interrupts are disabled, and
220 * DTR is dropped if the hangup on close termio flag is on. Calls to
221 * uart_shutdown are serialised by the per-port semaphore.
223 static void uart_shutdown(struct tty_struct
*tty
, struct uart_state
*state
)
225 struct uart_port
*uport
= state
->uart_port
;
226 struct tty_port
*port
= &state
->port
;
229 * Set the TTY IO error marker
232 set_bit(TTY_IO_ERROR
, &tty
->flags
);
234 if (test_and_clear_bit(ASYNCB_INITIALIZED
, &port
->flags
)) {
236 * Turn off DTR and RTS early.
238 if (uart_console(uport
) && tty
)
239 uport
->cons
->cflag
= tty
->termios
.c_cflag
;
241 if (!tty
|| C_HUPCL(tty
))
242 uart_clear_mctrl(uport
, TIOCM_DTR
| TIOCM_RTS
);
244 uart_port_shutdown(port
);
248 * It's possible for shutdown to be called after suspend if we get
249 * a DCD drop (hangup) at just the right time. Clear suspended bit so
250 * we don't try to resume a port that has been shutdown.
252 clear_bit(ASYNCB_SUSPENDED
, &port
->flags
);
255 * Free the transmit buffer page.
257 if (state
->xmit
.buf
) {
258 free_page((unsigned long)state
->xmit
.buf
);
259 state
->xmit
.buf
= NULL
;
264 * uart_update_timeout - update per-port FIFO timeout.
265 * @port: uart_port structure describing the port
266 * @cflag: termios cflag value
267 * @baud: speed of the port
269 * Set the port FIFO timeout value. The @cflag value should
270 * reflect the actual hardware settings.
273 uart_update_timeout(struct uart_port
*port
, unsigned int cflag
,
278 /* byte size and parity */
279 switch (cflag
& CSIZE
) {
300 * The total number of bits to be transmitted in the fifo.
302 bits
= bits
* port
->fifosize
;
305 * Figure the timeout to send the above number of bits.
306 * Add .02 seconds of slop
308 port
->timeout
= (HZ
* bits
) / baud
+ HZ
/50;
311 EXPORT_SYMBOL(uart_update_timeout
);
314 * uart_get_baud_rate - return baud rate for a particular port
315 * @port: uart_port structure describing the port in question.
316 * @termios: desired termios settings.
317 * @old: old termios (or NULL)
318 * @min: minimum acceptable baud rate
319 * @max: maximum acceptable baud rate
321 * Decode the termios structure into a numeric baud rate,
322 * taking account of the magic 38400 baud rate (with spd_*
323 * flags), and mapping the %B0 rate to 9600 baud.
325 * If the new baud rate is invalid, try the old termios setting.
326 * If it's still invalid, we try 9600 baud.
328 * Update the @termios structure to reflect the baud rate
329 * we're actually going to be using. Don't do this for the case
330 * where B0 is requested ("hang up").
333 uart_get_baud_rate(struct uart_port
*port
, struct ktermios
*termios
,
334 struct ktermios
*old
, unsigned int min
, unsigned int max
)
338 unsigned int altbaud
;
340 upf_t flags
= port
->flags
& UPF_SPD_MASK
;
360 for (try = 0; try < 2; try++) {
361 baud
= tty_termios_baud_rate(termios
);
364 * The spd_hi, spd_vhi, spd_shi, spd_warp kludge...
367 if (try == 0 && baud
== 38400)
371 * Special case: B0 rate.
378 if (baud
>= min
&& baud
<= max
)
382 * Oops, the quotient was zero. Try again with
383 * the old baud rate if possible.
385 termios
->c_cflag
&= ~CBAUD
;
387 baud
= tty_termios_baud_rate(old
);
389 tty_termios_encode_baud_rate(termios
,
396 * As a last resort, if the range cannot be met then clip to
397 * the nearest chip supported rate.
401 tty_termios_encode_baud_rate(termios
,
404 tty_termios_encode_baud_rate(termios
,
408 /* Should never happen */
413 EXPORT_SYMBOL(uart_get_baud_rate
);
416 * uart_get_divisor - return uart clock divisor
417 * @port: uart_port structure describing the port.
418 * @baud: desired baud rate
420 * Calculate the uart clock divisor for the port.
423 uart_get_divisor(struct uart_port
*port
, unsigned int baud
)
428 * Old custom speed handling.
430 if (baud
== 38400 && (port
->flags
& UPF_SPD_MASK
) == UPF_SPD_CUST
)
431 quot
= port
->custom_divisor
;
433 quot
= DIV_ROUND_CLOSEST(port
->uartclk
, 16 * baud
);
438 EXPORT_SYMBOL(uart_get_divisor
);
440 /* Caller holds port mutex */
441 static void uart_change_speed(struct tty_struct
*tty
, struct uart_state
*state
,
442 struct ktermios
*old_termios
)
444 struct uart_port
*uport
= state
->uart_port
;
445 struct ktermios
*termios
;
449 * If we have no tty, termios, or the port does not exist,
450 * then we can't set the parameters for this port.
452 if (!tty
|| uport
->type
== PORT_UNKNOWN
)
455 termios
= &tty
->termios
;
456 uport
->ops
->set_termios(uport
, termios
, old_termios
);
459 * Set modem status enables based on termios cflag
461 spin_lock_irq(&uport
->lock
);
462 if (termios
->c_cflag
& CRTSCTS
)
463 uport
->status
|= UPSTAT_CTS_ENABLE
;
465 uport
->status
&= ~UPSTAT_CTS_ENABLE
;
467 if (termios
->c_cflag
& CLOCAL
)
468 uport
->status
&= ~UPSTAT_DCD_ENABLE
;
470 uport
->status
|= UPSTAT_DCD_ENABLE
;
472 /* reset sw-assisted CTS flow control based on (possibly) new mode */
473 hw_stopped
= uport
->hw_stopped
;
474 uport
->hw_stopped
= uart_softcts_mode(uport
) &&
475 !(uport
->ops
->get_mctrl(uport
) & TIOCM_CTS
);
476 if (uport
->hw_stopped
) {
478 uport
->ops
->stop_tx(uport
);
483 spin_unlock_irq(&uport
->lock
);
486 static int uart_put_char(struct tty_struct
*tty
, unsigned char c
)
488 struct uart_state
*state
= tty
->driver_data
;
489 struct uart_port
*port
= state
->uart_port
;
490 struct circ_buf
*circ
;
498 spin_lock_irqsave(&port
->lock
, flags
);
499 if (uart_circ_chars_free(circ
) != 0) {
500 circ
->buf
[circ
->head
] = c
;
501 circ
->head
= (circ
->head
+ 1) & (UART_XMIT_SIZE
- 1);
504 spin_unlock_irqrestore(&port
->lock
, flags
);
508 static void uart_flush_chars(struct tty_struct
*tty
)
513 static int uart_write(struct tty_struct
*tty
,
514 const unsigned char *buf
, int count
)
516 struct uart_state
*state
= tty
->driver_data
;
517 struct uart_port
*port
;
518 struct circ_buf
*circ
;
523 * This means you called this function _after_ the port was
524 * closed. No cookie for you.
531 port
= state
->uart_port
;
537 spin_lock_irqsave(&port
->lock
, flags
);
539 c
= CIRC_SPACE_TO_END(circ
->head
, circ
->tail
, UART_XMIT_SIZE
);
544 memcpy(circ
->buf
+ circ
->head
, buf
, c
);
545 circ
->head
= (circ
->head
+ c
) & (UART_XMIT_SIZE
- 1);
552 spin_unlock_irqrestore(&port
->lock
, flags
);
557 static int uart_write_room(struct tty_struct
*tty
)
559 struct uart_state
*state
= tty
->driver_data
;
563 spin_lock_irqsave(&state
->uart_port
->lock
, flags
);
564 ret
= uart_circ_chars_free(&state
->xmit
);
565 spin_unlock_irqrestore(&state
->uart_port
->lock
, flags
);
569 static int uart_chars_in_buffer(struct tty_struct
*tty
)
571 struct uart_state
*state
= tty
->driver_data
;
575 spin_lock_irqsave(&state
->uart_port
->lock
, flags
);
576 ret
= uart_circ_chars_pending(&state
->xmit
);
577 spin_unlock_irqrestore(&state
->uart_port
->lock
, flags
);
581 static void uart_flush_buffer(struct tty_struct
*tty
)
583 struct uart_state
*state
= tty
->driver_data
;
584 struct uart_port
*port
;
588 * This means you called this function _after_ the port was
589 * closed. No cookie for you.
596 port
= state
->uart_port
;
597 pr_debug("uart_flush_buffer(%d) called\n", tty
->index
);
599 spin_lock_irqsave(&port
->lock
, flags
);
600 uart_circ_clear(&state
->xmit
);
601 if (port
->ops
->flush_buffer
)
602 port
->ops
->flush_buffer(port
);
603 spin_unlock_irqrestore(&port
->lock
, flags
);
608 * This function is used to send a high-priority XON/XOFF character to
611 static void uart_send_xchar(struct tty_struct
*tty
, char ch
)
613 struct uart_state
*state
= tty
->driver_data
;
614 struct uart_port
*port
= state
->uart_port
;
617 if (port
->ops
->send_xchar
)
618 port
->ops
->send_xchar(port
, ch
);
620 spin_lock_irqsave(&port
->lock
, flags
);
623 port
->ops
->start_tx(port
);
624 spin_unlock_irqrestore(&port
->lock
, flags
);
628 static void uart_throttle(struct tty_struct
*tty
)
630 struct uart_state
*state
= tty
->driver_data
;
631 struct uart_port
*port
= state
->uart_port
;
635 mask
|= UPSTAT_AUTOXOFF
;
637 mask
|= UPSTAT_AUTORTS
;
639 if (port
->status
& mask
) {
640 port
->ops
->throttle(port
);
641 mask
&= ~port
->status
;
644 if (mask
& UPSTAT_AUTORTS
)
645 uart_clear_mctrl(port
, TIOCM_RTS
);
647 if (mask
& UPSTAT_AUTOXOFF
)
648 uart_send_xchar(tty
, STOP_CHAR(tty
));
651 static void uart_unthrottle(struct tty_struct
*tty
)
653 struct uart_state
*state
= tty
->driver_data
;
654 struct uart_port
*port
= state
->uart_port
;
658 mask
|= UPSTAT_AUTOXOFF
;
660 mask
|= UPSTAT_AUTORTS
;
662 if (port
->status
& mask
) {
663 port
->ops
->unthrottle(port
);
664 mask
&= ~port
->status
;
667 if (mask
& UPSTAT_AUTORTS
)
668 uart_set_mctrl(port
, TIOCM_RTS
);
670 if (mask
& UPSTAT_AUTOXOFF
)
671 uart_send_xchar(tty
, START_CHAR(tty
));
674 static void uart_get_info(struct tty_port
*port
, struct serial_struct
*retinfo
)
676 struct uart_state
*state
= container_of(port
, struct uart_state
, port
);
677 struct uart_port
*uport
= state
->uart_port
;
679 memset(retinfo
, 0, sizeof(*retinfo
));
682 * Ensure the state we copy is consistent and no hardware changes
685 mutex_lock(&port
->mutex
);
686 retinfo
->type
= uport
->type
;
687 retinfo
->line
= uport
->line
;
688 retinfo
->port
= uport
->iobase
;
689 if (HIGH_BITS_OFFSET
)
690 retinfo
->port_high
= (long) uport
->iobase
>> HIGH_BITS_OFFSET
;
691 retinfo
->irq
= uport
->irq
;
692 retinfo
->flags
= uport
->flags
;
693 retinfo
->xmit_fifo_size
= uport
->fifosize
;
694 retinfo
->baud_base
= uport
->uartclk
/ 16;
695 retinfo
->close_delay
= jiffies_to_msecs(port
->close_delay
) / 10;
696 retinfo
->closing_wait
= port
->closing_wait
== ASYNC_CLOSING_WAIT_NONE
?
697 ASYNC_CLOSING_WAIT_NONE
:
698 jiffies_to_msecs(port
->closing_wait
) / 10;
699 retinfo
->custom_divisor
= uport
->custom_divisor
;
700 retinfo
->hub6
= uport
->hub6
;
701 retinfo
->io_type
= uport
->iotype
;
702 retinfo
->iomem_reg_shift
= uport
->regshift
;
703 retinfo
->iomem_base
= (void *)(unsigned long)uport
->mapbase
;
704 mutex_unlock(&port
->mutex
);
707 static int uart_get_info_user(struct tty_port
*port
,
708 struct serial_struct __user
*retinfo
)
710 struct serial_struct tmp
;
712 uart_get_info(port
, &tmp
);
714 if (copy_to_user(retinfo
, &tmp
, sizeof(*retinfo
)))
719 static int uart_set_info(struct tty_struct
*tty
, struct tty_port
*port
,
720 struct uart_state
*state
,
721 struct serial_struct
*new_info
)
723 struct uart_port
*uport
= state
->uart_port
;
724 unsigned long new_port
;
725 unsigned int change_irq
, change_port
, closing_wait
;
726 unsigned int old_custom_divisor
, close_delay
;
727 upf_t old_flags
, new_flags
;
730 new_port
= new_info
->port
;
731 if (HIGH_BITS_OFFSET
)
732 new_port
+= (unsigned long) new_info
->port_high
<< HIGH_BITS_OFFSET
;
734 new_info
->irq
= irq_canonicalize(new_info
->irq
);
735 close_delay
= msecs_to_jiffies(new_info
->close_delay
* 10);
736 closing_wait
= new_info
->closing_wait
== ASYNC_CLOSING_WAIT_NONE
?
737 ASYNC_CLOSING_WAIT_NONE
:
738 msecs_to_jiffies(new_info
->closing_wait
* 10);
741 change_irq
= !(uport
->flags
& UPF_FIXED_PORT
)
742 && new_info
->irq
!= uport
->irq
;
745 * Since changing the 'type' of the port changes its resource
746 * allocations, we should treat type changes the same as
749 change_port
= !(uport
->flags
& UPF_FIXED_PORT
)
750 && (new_port
!= uport
->iobase
||
751 (unsigned long)new_info
->iomem_base
!= uport
->mapbase
||
752 new_info
->hub6
!= uport
->hub6
||
753 new_info
->io_type
!= uport
->iotype
||
754 new_info
->iomem_reg_shift
!= uport
->regshift
||
755 new_info
->type
!= uport
->type
);
757 old_flags
= uport
->flags
;
758 new_flags
= new_info
->flags
;
759 old_custom_divisor
= uport
->custom_divisor
;
761 if (!capable(CAP_SYS_ADMIN
)) {
763 if (change_irq
|| change_port
||
764 (new_info
->baud_base
!= uport
->uartclk
/ 16) ||
765 (close_delay
!= port
->close_delay
) ||
766 (closing_wait
!= port
->closing_wait
) ||
767 (new_info
->xmit_fifo_size
&&
768 new_info
->xmit_fifo_size
!= uport
->fifosize
) ||
769 (((new_flags
^ old_flags
) & ~UPF_USR_MASK
) != 0))
771 uport
->flags
= ((uport
->flags
& ~UPF_USR_MASK
) |
772 (new_flags
& UPF_USR_MASK
));
773 uport
->custom_divisor
= new_info
->custom_divisor
;
778 * Ask the low level driver to verify the settings.
780 if (uport
->ops
->verify_port
)
781 retval
= uport
->ops
->verify_port(uport
, new_info
);
783 if ((new_info
->irq
>= nr_irqs
) || (new_info
->irq
< 0) ||
784 (new_info
->baud_base
< 9600))
790 if (change_port
|| change_irq
) {
794 * Make sure that we are the sole user of this port.
796 if (tty_port_users(port
) > 1)
800 * We need to shutdown the serial port at the old
801 * port/type/irq combination.
803 uart_shutdown(tty
, state
);
807 unsigned long old_iobase
, old_mapbase
;
808 unsigned int old_type
, old_iotype
, old_hub6
, old_shift
;
810 old_iobase
= uport
->iobase
;
811 old_mapbase
= uport
->mapbase
;
812 old_type
= uport
->type
;
813 old_hub6
= uport
->hub6
;
814 old_iotype
= uport
->iotype
;
815 old_shift
= uport
->regshift
;
818 * Free and release old regions
820 if (old_type
!= PORT_UNKNOWN
)
821 uport
->ops
->release_port(uport
);
823 uport
->iobase
= new_port
;
824 uport
->type
= new_info
->type
;
825 uport
->hub6
= new_info
->hub6
;
826 uport
->iotype
= new_info
->io_type
;
827 uport
->regshift
= new_info
->iomem_reg_shift
;
828 uport
->mapbase
= (unsigned long)new_info
->iomem_base
;
831 * Claim and map the new regions
833 if (uport
->type
!= PORT_UNKNOWN
) {
834 retval
= uport
->ops
->request_port(uport
);
836 /* Always success - Jean II */
841 * If we fail to request resources for the
842 * new port, try to restore the old settings.
845 uport
->iobase
= old_iobase
;
846 uport
->type
= old_type
;
847 uport
->hub6
= old_hub6
;
848 uport
->iotype
= old_iotype
;
849 uport
->regshift
= old_shift
;
850 uport
->mapbase
= old_mapbase
;
852 if (old_type
!= PORT_UNKNOWN
) {
853 retval
= uport
->ops
->request_port(uport
);
855 * If we failed to restore the old settings,
859 uport
->type
= PORT_UNKNOWN
;
867 /* Added to return the correct error -Ram Gupta */
873 uport
->irq
= new_info
->irq
;
874 if (!(uport
->flags
& UPF_FIXED_PORT
))
875 uport
->uartclk
= new_info
->baud_base
* 16;
876 uport
->flags
= (uport
->flags
& ~UPF_CHANGE_MASK
) |
877 (new_flags
& UPF_CHANGE_MASK
);
878 uport
->custom_divisor
= new_info
->custom_divisor
;
879 port
->close_delay
= close_delay
;
880 port
->closing_wait
= closing_wait
;
881 if (new_info
->xmit_fifo_size
)
882 uport
->fifosize
= new_info
->xmit_fifo_size
;
883 port
->low_latency
= (uport
->flags
& UPF_LOW_LATENCY
) ? 1 : 0;
887 if (uport
->type
== PORT_UNKNOWN
)
889 if (port
->flags
& ASYNC_INITIALIZED
) {
890 if (((old_flags
^ uport
->flags
) & UPF_SPD_MASK
) ||
891 old_custom_divisor
!= uport
->custom_divisor
) {
893 * If they're setting up a custom divisor or speed,
894 * instead of clearing it, then bitch about it. No
895 * need to rate-limit; it's CAP_SYS_ADMIN only.
897 if (uport
->flags
& UPF_SPD_MASK
) {
898 dev_notice(uport
->dev
,
899 "%s sets custom speed on %s. This is deprecated.\n",
901 tty_name(port
->tty
));
903 uart_change_speed(tty
, state
, NULL
);
906 retval
= uart_startup(tty
, state
, 1);
911 static int uart_set_info_user(struct tty_struct
*tty
, struct uart_state
*state
,
912 struct serial_struct __user
*newinfo
)
914 struct serial_struct new_serial
;
915 struct tty_port
*port
= &state
->port
;
918 if (copy_from_user(&new_serial
, newinfo
, sizeof(new_serial
)))
922 * This semaphore protects port->count. It is also
923 * very useful to prevent opens. Also, take the
924 * port configuration semaphore to make sure that a
925 * module insertion/removal doesn't change anything
928 mutex_lock(&port
->mutex
);
929 retval
= uart_set_info(tty
, port
, state
, &new_serial
);
930 mutex_unlock(&port
->mutex
);
935 * uart_get_lsr_info - get line status register info
936 * @tty: tty associated with the UART
937 * @state: UART being queried
938 * @value: returned modem value
940 * Note: uart_ioctl protects us against hangups.
942 static int uart_get_lsr_info(struct tty_struct
*tty
,
943 struct uart_state
*state
, unsigned int __user
*value
)
945 struct uart_port
*uport
= state
->uart_port
;
948 result
= uport
->ops
->tx_empty(uport
);
951 * If we're about to load something into the transmit
952 * register, we'll pretend the transmitter isn't empty to
953 * avoid a race condition (depending on when the transmit
954 * interrupt happens).
957 ((uart_circ_chars_pending(&state
->xmit
) > 0) &&
958 !uart_tx_stopped(uport
)))
959 result
&= ~TIOCSER_TEMT
;
961 return put_user(result
, value
);
964 static int uart_tiocmget(struct tty_struct
*tty
)
966 struct uart_state
*state
= tty
->driver_data
;
967 struct tty_port
*port
= &state
->port
;
968 struct uart_port
*uport
= state
->uart_port
;
971 mutex_lock(&port
->mutex
);
972 if (!(tty
->flags
& (1 << TTY_IO_ERROR
))) {
973 result
= uport
->mctrl
;
974 spin_lock_irq(&uport
->lock
);
975 result
|= uport
->ops
->get_mctrl(uport
);
976 spin_unlock_irq(&uport
->lock
);
978 mutex_unlock(&port
->mutex
);
984 uart_tiocmset(struct tty_struct
*tty
, unsigned int set
, unsigned int clear
)
986 struct uart_state
*state
= tty
->driver_data
;
987 struct uart_port
*uport
= state
->uart_port
;
988 struct tty_port
*port
= &state
->port
;
991 mutex_lock(&port
->mutex
);
992 if (!(tty
->flags
& (1 << TTY_IO_ERROR
))) {
993 uart_update_mctrl(uport
, set
, clear
);
996 mutex_unlock(&port
->mutex
);
1000 static int uart_break_ctl(struct tty_struct
*tty
, int break_state
)
1002 struct uart_state
*state
= tty
->driver_data
;
1003 struct tty_port
*port
= &state
->port
;
1004 struct uart_port
*uport
= state
->uart_port
;
1006 mutex_lock(&port
->mutex
);
1008 if (uport
->type
!= PORT_UNKNOWN
)
1009 uport
->ops
->break_ctl(uport
, break_state
);
1011 mutex_unlock(&port
->mutex
);
1015 static int uart_do_autoconfig(struct tty_struct
*tty
,struct uart_state
*state
)
1017 struct uart_port
*uport
= state
->uart_port
;
1018 struct tty_port
*port
= &state
->port
;
1021 if (!capable(CAP_SYS_ADMIN
))
1025 * Take the per-port semaphore. This prevents count from
1026 * changing, and hence any extra opens of the port while
1027 * we're auto-configuring.
1029 if (mutex_lock_interruptible(&port
->mutex
))
1030 return -ERESTARTSYS
;
1033 if (tty_port_users(port
) == 1) {
1034 uart_shutdown(tty
, state
);
1037 * If we already have a port type configured,
1038 * we must release its resources.
1040 if (uport
->type
!= PORT_UNKNOWN
)
1041 uport
->ops
->release_port(uport
);
1043 flags
= UART_CONFIG_TYPE
;
1044 if (uport
->flags
& UPF_AUTO_IRQ
)
1045 flags
|= UART_CONFIG_IRQ
;
1048 * This will claim the ports resources if
1051 uport
->ops
->config_port(uport
, flags
);
1053 ret
= uart_startup(tty
, state
, 1);
1055 mutex_unlock(&port
->mutex
);
1059 static void uart_enable_ms(struct uart_port
*uport
)
1062 * Force modem status interrupts on
1064 if (uport
->ops
->enable_ms
)
1065 uport
->ops
->enable_ms(uport
);
1069 * Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
1070 * - mask passed in arg for lines of interest
1071 * (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
1072 * Caller should use TIOCGICOUNT to see which one it was
1074 * FIXME: This wants extracting into a common all driver implementation
1075 * of TIOCMWAIT using tty_port.
1078 uart_wait_modem_status(struct uart_state
*state
, unsigned long arg
)
1080 struct uart_port
*uport
= state
->uart_port
;
1081 struct tty_port
*port
= &state
->port
;
1082 DECLARE_WAITQUEUE(wait
, current
);
1083 struct uart_icount cprev
, cnow
;
1087 * note the counters on entry
1089 spin_lock_irq(&uport
->lock
);
1090 memcpy(&cprev
, &uport
->icount
, sizeof(struct uart_icount
));
1091 uart_enable_ms(uport
);
1092 spin_unlock_irq(&uport
->lock
);
1094 add_wait_queue(&port
->delta_msr_wait
, &wait
);
1096 spin_lock_irq(&uport
->lock
);
1097 memcpy(&cnow
, &uport
->icount
, sizeof(struct uart_icount
));
1098 spin_unlock_irq(&uport
->lock
);
1100 set_current_state(TASK_INTERRUPTIBLE
);
1102 if (((arg
& TIOCM_RNG
) && (cnow
.rng
!= cprev
.rng
)) ||
1103 ((arg
& TIOCM_DSR
) && (cnow
.dsr
!= cprev
.dsr
)) ||
1104 ((arg
& TIOCM_CD
) && (cnow
.dcd
!= cprev
.dcd
)) ||
1105 ((arg
& TIOCM_CTS
) && (cnow
.cts
!= cprev
.cts
))) {
1112 /* see if a signal did it */
1113 if (signal_pending(current
)) {
1120 __set_current_state(TASK_RUNNING
);
1121 remove_wait_queue(&port
->delta_msr_wait
, &wait
);
1127 * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
1128 * Return: write counters to the user passed counter struct
1129 * NB: both 1->0 and 0->1 transitions are counted except for
1130 * RI where only 0->1 is counted.
1132 static int uart_get_icount(struct tty_struct
*tty
,
1133 struct serial_icounter_struct
*icount
)
1135 struct uart_state
*state
= tty
->driver_data
;
1136 struct uart_icount cnow
;
1137 struct uart_port
*uport
= state
->uart_port
;
1139 spin_lock_irq(&uport
->lock
);
1140 memcpy(&cnow
, &uport
->icount
, sizeof(struct uart_icount
));
1141 spin_unlock_irq(&uport
->lock
);
1143 icount
->cts
= cnow
.cts
;
1144 icount
->dsr
= cnow
.dsr
;
1145 icount
->rng
= cnow
.rng
;
1146 icount
->dcd
= cnow
.dcd
;
1147 icount
->rx
= cnow
.rx
;
1148 icount
->tx
= cnow
.tx
;
1149 icount
->frame
= cnow
.frame
;
1150 icount
->overrun
= cnow
.overrun
;
1151 icount
->parity
= cnow
.parity
;
1152 icount
->brk
= cnow
.brk
;
1153 icount
->buf_overrun
= cnow
.buf_overrun
;
1158 static int uart_get_rs485_config(struct uart_port
*port
,
1159 struct serial_rs485 __user
*rs485
)
1161 unsigned long flags
;
1162 struct serial_rs485 aux
;
1164 spin_lock_irqsave(&port
->lock
, flags
);
1166 spin_unlock_irqrestore(&port
->lock
, flags
);
1168 if (copy_to_user(rs485
, &aux
, sizeof(aux
)))
1174 static int uart_set_rs485_config(struct uart_port
*port
,
1175 struct serial_rs485 __user
*rs485_user
)
1177 struct serial_rs485 rs485
;
1179 unsigned long flags
;
1181 if (!port
->rs485_config
)
1182 return -ENOIOCTLCMD
;
1184 if (copy_from_user(&rs485
, rs485_user
, sizeof(*rs485_user
)))
1187 spin_lock_irqsave(&port
->lock
, flags
);
1188 ret
= port
->rs485_config(port
, &rs485
);
1189 spin_unlock_irqrestore(&port
->lock
, flags
);
1193 if (copy_to_user(rs485_user
, &port
->rs485
, sizeof(port
->rs485
)))
1200 * Called via sys_ioctl. We can use spin_lock_irq() here.
1203 uart_ioctl(struct tty_struct
*tty
, unsigned int cmd
,
1206 struct uart_state
*state
= tty
->driver_data
;
1207 struct tty_port
*port
= &state
->port
;
1208 void __user
*uarg
= (void __user
*)arg
;
1209 int ret
= -ENOIOCTLCMD
;
1213 * These ioctls don't rely on the hardware to be present.
1217 ret
= uart_get_info_user(port
, uarg
);
1221 down_write(&tty
->termios_rwsem
);
1222 ret
= uart_set_info_user(tty
, state
, uarg
);
1223 up_write(&tty
->termios_rwsem
);
1227 down_write(&tty
->termios_rwsem
);
1228 ret
= uart_do_autoconfig(tty
, state
);
1229 up_write(&tty
->termios_rwsem
);
1232 case TIOCSERGWILD
: /* obsolete */
1233 case TIOCSERSWILD
: /* obsolete */
1238 if (ret
!= -ENOIOCTLCMD
)
1241 if (tty
->flags
& (1 << TTY_IO_ERROR
)) {
1247 * The following should only be used when hardware is present.
1251 ret
= uart_wait_modem_status(state
, arg
);
1255 if (ret
!= -ENOIOCTLCMD
)
1258 mutex_lock(&port
->mutex
);
1260 if (tty
->flags
& (1 << TTY_IO_ERROR
)) {
1266 * All these rely on hardware being present and need to be
1267 * protected against the tty being hung up.
1271 case TIOCSERGETLSR
: /* Get line status register */
1272 ret
= uart_get_lsr_info(tty
, state
, uarg
);
1276 ret
= uart_get_rs485_config(state
->uart_port
, uarg
);
1280 ret
= uart_set_rs485_config(state
->uart_port
, uarg
);
1283 struct uart_port
*uport
= state
->uart_port
;
1284 if (uport
->ops
->ioctl
)
1285 ret
= uport
->ops
->ioctl(uport
, cmd
, arg
);
1290 mutex_unlock(&port
->mutex
);
1295 static void uart_set_ldisc(struct tty_struct
*tty
)
1297 struct uart_state
*state
= tty
->driver_data
;
1298 struct uart_port
*uport
= state
->uart_port
;
1300 if (uport
->ops
->set_ldisc
) {
1301 mutex_lock(&state
->port
.mutex
);
1302 uport
->ops
->set_ldisc(uport
, &tty
->termios
);
1303 mutex_unlock(&state
->port
.mutex
);
1307 static void uart_set_termios(struct tty_struct
*tty
,
1308 struct ktermios
*old_termios
)
1310 struct uart_state
*state
= tty
->driver_data
;
1311 struct uart_port
*uport
= state
->uart_port
;
1312 unsigned int cflag
= tty
->termios
.c_cflag
;
1313 unsigned int iflag_mask
= IGNBRK
|BRKINT
|IGNPAR
|PARMRK
|INPCK
;
1314 bool sw_changed
= false;
1317 * Drivers doing software flow control also need to know
1318 * about changes to these input settings.
1320 if (uport
->flags
& UPF_SOFT_FLOW
) {
1321 iflag_mask
|= IXANY
|IXON
|IXOFF
;
1323 tty
->termios
.c_cc
[VSTART
] != old_termios
->c_cc
[VSTART
] ||
1324 tty
->termios
.c_cc
[VSTOP
] != old_termios
->c_cc
[VSTOP
];
1328 * These are the bits that are used to setup various
1329 * flags in the low level driver. We can ignore the Bfoo
1330 * bits in c_cflag; c_[io]speed will always be set
1331 * appropriately by set_termios() in tty_ioctl.c
1333 if ((cflag
^ old_termios
->c_cflag
) == 0 &&
1334 tty
->termios
.c_ospeed
== old_termios
->c_ospeed
&&
1335 tty
->termios
.c_ispeed
== old_termios
->c_ispeed
&&
1336 ((tty
->termios
.c_iflag
^ old_termios
->c_iflag
) & iflag_mask
) == 0 &&
1341 mutex_lock(&state
->port
.mutex
);
1342 uart_change_speed(tty
, state
, old_termios
);
1343 mutex_unlock(&state
->port
.mutex
);
1344 /* reload cflag from termios; port driver may have overriden flags */
1345 cflag
= tty
->termios
.c_cflag
;
1347 /* Handle transition to B0 status */
1348 if ((old_termios
->c_cflag
& CBAUD
) && !(cflag
& CBAUD
))
1349 uart_clear_mctrl(uport
, TIOCM_RTS
| TIOCM_DTR
);
1350 /* Handle transition away from B0 status */
1351 else if (!(old_termios
->c_cflag
& CBAUD
) && (cflag
& CBAUD
)) {
1352 unsigned int mask
= TIOCM_DTR
;
1353 if (!(cflag
& CRTSCTS
) || !test_bit(TTY_THROTTLED
, &tty
->flags
))
1355 uart_set_mctrl(uport
, mask
);
1360 * Calls to uart_close() are serialised via the tty_lock in
1361 * drivers/tty/tty_io.c:tty_release()
1362 * drivers/tty/tty_io.c:do_tty_hangup()
1363 * This runs from a workqueue and can sleep for a _short_ time only.
1365 static void uart_close(struct tty_struct
*tty
, struct file
*filp
)
1367 struct uart_state
*state
= tty
->driver_data
;
1368 struct tty_port
*port
;
1369 struct uart_port
*uport
;
1372 struct uart_driver
*drv
= tty
->driver
->driver_state
;
1374 state
= drv
->state
+ tty
->index
;
1375 port
= &state
->port
;
1376 spin_lock_irq(&port
->lock
);
1378 spin_unlock_irq(&port
->lock
);
1382 uport
= state
->uart_port
;
1383 port
= &state
->port
;
1384 pr_debug("uart_close(%d) called\n", tty
->index
);
1386 if (!port
->count
|| tty_port_close_start(port
, tty
, filp
) == 0)
1390 * At this point, we stop accepting input. To do this, we
1391 * disable the receive line status interrupts.
1393 if (port
->flags
& ASYNC_INITIALIZED
) {
1394 spin_lock_irq(&uport
->lock
);
1395 uport
->ops
->stop_rx(uport
);
1396 spin_unlock_irq(&uport
->lock
);
1398 * Before we drop DTR, make sure the UART transmitter
1399 * has completely drained; this is especially
1400 * important if there is a transmit FIFO!
1402 uart_wait_until_sent(tty
, uport
->timeout
);
1405 mutex_lock(&port
->mutex
);
1406 uart_shutdown(tty
, state
);
1407 tty_port_tty_set(port
, NULL
);
1409 spin_lock_irq(&port
->lock
);
1411 if (port
->blocked_open
) {
1412 spin_unlock_irq(&port
->lock
);
1413 if (port
->close_delay
)
1414 msleep_interruptible(jiffies_to_msecs(port
->close_delay
));
1415 spin_lock_irq(&port
->lock
);
1416 } else if (!uart_console(uport
)) {
1417 spin_unlock_irq(&port
->lock
);
1418 uart_change_pm(state
, UART_PM_STATE_OFF
);
1419 spin_lock_irq(&port
->lock
);
1423 * Wake up anyone trying to open this port.
1425 clear_bit(ASYNCB_NORMAL_ACTIVE
, &port
->flags
);
1426 spin_unlock_irq(&port
->lock
);
1427 wake_up_interruptible(&port
->open_wait
);
1429 mutex_unlock(&port
->mutex
);
1431 tty_ldisc_flush(tty
);
1435 static void uart_wait_until_sent(struct tty_struct
*tty
, int timeout
)
1437 struct uart_state
*state
= tty
->driver_data
;
1438 struct uart_port
*port
= state
->uart_port
;
1439 unsigned long char_time
, expire
;
1441 if (port
->type
== PORT_UNKNOWN
|| port
->fifosize
== 0)
1445 * Set the check interval to be 1/5 of the estimated time to
1446 * send a single character, and make it at least 1. The check
1447 * interval should also be less than the timeout.
1449 * Note: we have to use pretty tight timings here to satisfy
1452 char_time
= (port
->timeout
- HZ
/50) / port
->fifosize
;
1453 char_time
= char_time
/ 5;
1456 if (timeout
&& timeout
< char_time
)
1457 char_time
= timeout
;
1460 * If the transmitter hasn't cleared in twice the approximate
1461 * amount of time to send the entire FIFO, it probably won't
1462 * ever clear. This assumes the UART isn't doing flow
1463 * control, which is currently the case. Hence, if it ever
1464 * takes longer than port->timeout, this is probably due to a
1465 * UART bug of some kind. So, we clamp the timeout parameter at
1468 if (timeout
== 0 || timeout
> 2 * port
->timeout
)
1469 timeout
= 2 * port
->timeout
;
1471 expire
= jiffies
+ timeout
;
1473 pr_debug("uart_wait_until_sent(%d), jiffies=%lu, expire=%lu...\n",
1474 port
->line
, jiffies
, expire
);
1477 * Check whether the transmitter is empty every 'char_time'.
1478 * 'timeout' / 'expire' give us the maximum amount of time
1481 while (!port
->ops
->tx_empty(port
)) {
1482 msleep_interruptible(jiffies_to_msecs(char_time
));
1483 if (signal_pending(current
))
1485 if (time_after(jiffies
, expire
))
1491 * Calls to uart_hangup() are serialised by the tty_lock in
1492 * drivers/tty/tty_io.c:do_tty_hangup()
1493 * This runs from a workqueue and can sleep for a _short_ time only.
1495 static void uart_hangup(struct tty_struct
*tty
)
1497 struct uart_state
*state
= tty
->driver_data
;
1498 struct tty_port
*port
= &state
->port
;
1499 unsigned long flags
;
1501 pr_debug("uart_hangup(%d)\n", tty
->index
);
1503 mutex_lock(&port
->mutex
);
1504 if (port
->flags
& ASYNC_NORMAL_ACTIVE
) {
1505 uart_flush_buffer(tty
);
1506 uart_shutdown(tty
, state
);
1507 spin_lock_irqsave(&port
->lock
, flags
);
1509 clear_bit(ASYNCB_NORMAL_ACTIVE
, &port
->flags
);
1510 spin_unlock_irqrestore(&port
->lock
, flags
);
1511 tty_port_tty_set(port
, NULL
);
1512 if (!uart_console(state
->uart_port
))
1513 uart_change_pm(state
, UART_PM_STATE_OFF
);
1514 wake_up_interruptible(&port
->open_wait
);
1515 wake_up_interruptible(&port
->delta_msr_wait
);
1517 mutex_unlock(&port
->mutex
);
1520 static void uart_port_shutdown(struct tty_port
*port
)
1522 struct uart_state
*state
= container_of(port
, struct uart_state
, port
);
1523 struct uart_port
*uport
= state
->uart_port
;
1526 * clear delta_msr_wait queue to avoid mem leaks: we may free
1527 * the irq here so the queue might never be woken up. Note
1528 * that we won't end up waiting on delta_msr_wait again since
1529 * any outstanding file descriptors should be pointing at
1530 * hung_up_tty_fops now.
1532 wake_up_interruptible(&port
->delta_msr_wait
);
1535 * Free the IRQ and disable the port.
1537 uport
->ops
->shutdown(uport
);
1540 * Ensure that the IRQ handler isn't running on another CPU.
1542 synchronize_irq(uport
->irq
);
1545 static int uart_carrier_raised(struct tty_port
*port
)
1547 struct uart_state
*state
= container_of(port
, struct uart_state
, port
);
1548 struct uart_port
*uport
= state
->uart_port
;
1550 spin_lock_irq(&uport
->lock
);
1551 uart_enable_ms(uport
);
1552 mctrl
= uport
->ops
->get_mctrl(uport
);
1553 spin_unlock_irq(&uport
->lock
);
1554 if (mctrl
& TIOCM_CAR
)
1559 static void uart_dtr_rts(struct tty_port
*port
, int onoff
)
1561 struct uart_state
*state
= container_of(port
, struct uart_state
, port
);
1562 struct uart_port
*uport
= state
->uart_port
;
1565 uart_set_mctrl(uport
, TIOCM_DTR
| TIOCM_RTS
);
1567 uart_clear_mctrl(uport
, TIOCM_DTR
| TIOCM_RTS
);
1571 * Calls to uart_open are serialised by the tty_lock in
1572 * drivers/tty/tty_io.c:tty_open()
1573 * Note that if this fails, then uart_close() _will_ be called.
1575 * In time, we want to scrap the "opening nonpresent ports"
1576 * behaviour and implement an alternative way for setserial
1577 * to set base addresses/ports/types. This will allow us to
1578 * get rid of a certain amount of extra tests.
1580 static int uart_open(struct tty_struct
*tty
, struct file
*filp
)
1582 struct uart_driver
*drv
= tty
->driver
->driver_state
;
1583 int retval
, line
= tty
->index
;
1584 struct uart_state
*state
= drv
->state
+ line
;
1585 struct tty_port
*port
= &state
->port
;
1587 pr_debug("uart_open(%d) called\n", line
);
1589 spin_lock_irq(&port
->lock
);
1591 spin_unlock_irq(&port
->lock
);
1594 * We take the semaphore here to guarantee that we won't be re-entered
1595 * while allocating the state structure, or while we request any IRQs
1596 * that the driver may need. This also has the nice side-effect that
1597 * it delays the action of uart_hangup, so we can guarantee that
1598 * state->port.tty will always contain something reasonable.
1600 if (mutex_lock_interruptible(&port
->mutex
)) {
1601 retval
= -ERESTARTSYS
;
1605 if (!state
->uart_port
|| state
->uart_port
->flags
& UPF_DEAD
) {
1610 tty
->driver_data
= state
;
1611 state
->uart_port
->state
= state
;
1612 state
->port
.low_latency
=
1613 (state
->uart_port
->flags
& UPF_LOW_LATENCY
) ? 1 : 0;
1614 tty_port_tty_set(port
, tty
);
1617 * Start up the serial port.
1619 retval
= uart_startup(tty
, state
, 0);
1622 * If we succeeded, wait until the port is ready.
1625 mutex_unlock(&port
->mutex
);
1627 retval
= tty_port_block_til_ready(port
, tty
, filp
);
1632 static const char *uart_type(struct uart_port
*port
)
1634 const char *str
= NULL
;
1636 if (port
->ops
->type
)
1637 str
= port
->ops
->type(port
);
1645 #ifdef CONFIG_PROC_FS
1647 static void uart_line_info(struct seq_file
*m
, struct uart_driver
*drv
, int i
)
1649 struct uart_state
*state
= drv
->state
+ i
;
1650 struct tty_port
*port
= &state
->port
;
1651 enum uart_pm_state pm_state
;
1652 struct uart_port
*uport
= state
->uart_port
;
1654 unsigned int status
;
1660 mmio
= uport
->iotype
>= UPIO_MEM
;
1661 seq_printf(m
, "%d: uart:%s %s%08llX irq:%d",
1662 uport
->line
, uart_type(uport
),
1663 mmio
? "mmio:0x" : "port:",
1664 mmio
? (unsigned long long)uport
->mapbase
1665 : (unsigned long long)uport
->iobase
,
1668 if (uport
->type
== PORT_UNKNOWN
) {
1673 if (capable(CAP_SYS_ADMIN
)) {
1674 mutex_lock(&port
->mutex
);
1675 pm_state
= state
->pm_state
;
1676 if (pm_state
!= UART_PM_STATE_ON
)
1677 uart_change_pm(state
, UART_PM_STATE_ON
);
1678 spin_lock_irq(&uport
->lock
);
1679 status
= uport
->ops
->get_mctrl(uport
);
1680 spin_unlock_irq(&uport
->lock
);
1681 if (pm_state
!= UART_PM_STATE_ON
)
1682 uart_change_pm(state
, pm_state
);
1683 mutex_unlock(&port
->mutex
);
1685 seq_printf(m
, " tx:%d rx:%d",
1686 uport
->icount
.tx
, uport
->icount
.rx
);
1687 if (uport
->icount
.frame
)
1688 seq_printf(m
, " fe:%d", uport
->icount
.frame
);
1689 if (uport
->icount
.parity
)
1690 seq_printf(m
, " pe:%d", uport
->icount
.parity
);
1691 if (uport
->icount
.brk
)
1692 seq_printf(m
, " brk:%d", uport
->icount
.brk
);
1693 if (uport
->icount
.overrun
)
1694 seq_printf(m
, " oe:%d", uport
->icount
.overrun
);
1696 #define INFOBIT(bit, str) \
1697 if (uport->mctrl & (bit)) \
1698 strncat(stat_buf, (str), sizeof(stat_buf) - \
1699 strlen(stat_buf) - 2)
1700 #define STATBIT(bit, str) \
1701 if (status & (bit)) \
1702 strncat(stat_buf, (str), sizeof(stat_buf) - \
1703 strlen(stat_buf) - 2)
1707 INFOBIT(TIOCM_RTS
, "|RTS");
1708 STATBIT(TIOCM_CTS
, "|CTS");
1709 INFOBIT(TIOCM_DTR
, "|DTR");
1710 STATBIT(TIOCM_DSR
, "|DSR");
1711 STATBIT(TIOCM_CAR
, "|CD");
1712 STATBIT(TIOCM_RNG
, "|RI");
1716 seq_puts(m
, stat_buf
);
1723 static int uart_proc_show(struct seq_file
*m
, void *v
)
1725 struct tty_driver
*ttydrv
= m
->private;
1726 struct uart_driver
*drv
= ttydrv
->driver_state
;
1729 seq_printf(m
, "serinfo:1.0 driver%s%s revision:%s\n", "", "", "");
1730 for (i
= 0; i
< drv
->nr
; i
++)
1731 uart_line_info(m
, drv
, i
);
1735 static int uart_proc_open(struct inode
*inode
, struct file
*file
)
1737 return single_open(file
, uart_proc_show
, PDE_DATA(inode
));
1740 static const struct file_operations uart_proc_fops
= {
1741 .owner
= THIS_MODULE
,
1742 .open
= uart_proc_open
,
1744 .llseek
= seq_lseek
,
1745 .release
= single_release
,
1749 #if defined(CONFIG_SERIAL_CORE_CONSOLE) || defined(CONFIG_CONSOLE_POLL)
1751 * uart_console_write - write a console message to a serial port
1752 * @port: the port to write the message
1753 * @s: array of characters
1754 * @count: number of characters in string to write
1755 * @putchar: function to write character to port
1757 void uart_console_write(struct uart_port
*port
, const char *s
,
1759 void (*putchar
)(struct uart_port
*, int))
1763 for (i
= 0; i
< count
; i
++, s
++) {
1765 putchar(port
, '\r');
1769 EXPORT_SYMBOL_GPL(uart_console_write
);
1772 * Check whether an invalid uart number has been specified, and
1773 * if so, search for the first available port that does have
1776 struct uart_port
* __init
1777 uart_get_console(struct uart_port
*ports
, int nr
, struct console
*co
)
1779 int idx
= co
->index
;
1781 if (idx
< 0 || idx
>= nr
|| (ports
[idx
].iobase
== 0 &&
1782 ports
[idx
].membase
== NULL
))
1783 for (idx
= 0; idx
< nr
; idx
++)
1784 if (ports
[idx
].iobase
!= 0 ||
1785 ports
[idx
].membase
!= NULL
)
1794 * uart_parse_earlycon - Parse earlycon options
1795 * @p: ptr to 2nd field (ie., just beyond '<name>,')
1796 * @iotype: ptr for decoded iotype (out)
1797 * @addr: ptr for decoded mapbase/iobase (out)
1798 * @options: ptr for <options> field; NULL if not present (out)
1800 * Decodes earlycon kernel command line parameters of the form
1801 * earlycon=<name>,io|mmio|mmio16|mmio32|mmio32be|mmio32native,<addr>,<options>
1802 * console=<name>,io|mmio|mmio16|mmio32|mmio32be|mmio32native,<addr>,<options>
1805 * earlycon=<name>,0x<addr>,<options>
1806 * console=<name>,0x<addr>,<options>
1807 * is also accepted; the returned @iotype will be UPIO_MEM.
1809 * Returns 0 on success or -EINVAL on failure
1811 int uart_parse_earlycon(char *p
, unsigned char *iotype
, unsigned long *addr
,
1814 if (strncmp(p
, "mmio,", 5) == 0) {
1817 } else if (strncmp(p
, "mmio16,", 7) == 0) {
1818 *iotype
= UPIO_MEM16
;
1820 } else if (strncmp(p
, "mmio32,", 7) == 0) {
1821 *iotype
= UPIO_MEM32
;
1823 } else if (strncmp(p
, "mmio32be,", 9) == 0) {
1824 *iotype
= UPIO_MEM32BE
;
1826 } else if (strncmp(p
, "mmio32native,", 13) == 0) {
1827 *iotype
= IS_ENABLED(CONFIG_CPU_BIG_ENDIAN
) ?
1828 UPIO_MEM32BE
: UPIO_MEM32
;
1830 } else if (strncmp(p
, "io,", 3) == 0) {
1831 *iotype
= UPIO_PORT
;
1833 } else if (strncmp(p
, "0x", 2) == 0) {
1839 *addr
= simple_strtoul(p
, NULL
, 0);
1847 EXPORT_SYMBOL_GPL(uart_parse_earlycon
);
1850 * uart_parse_options - Parse serial port baud/parity/bits/flow control.
1851 * @options: pointer to option string
1852 * @baud: pointer to an 'int' variable for the baud rate.
1853 * @parity: pointer to an 'int' variable for the parity.
1854 * @bits: pointer to an 'int' variable for the number of data bits.
1855 * @flow: pointer to an 'int' variable for the flow control character.
1857 * uart_parse_options decodes a string containing the serial console
1858 * options. The format of the string is <baud><parity><bits><flow>,
1862 uart_parse_options(char *options
, int *baud
, int *parity
, int *bits
, int *flow
)
1866 *baud
= simple_strtoul(s
, NULL
, 10);
1867 while (*s
>= '0' && *s
<= '9')
1876 EXPORT_SYMBOL_GPL(uart_parse_options
);
1879 * uart_set_options - setup the serial console parameters
1880 * @port: pointer to the serial ports uart_port structure
1881 * @co: console pointer
1883 * @parity: parity character - 'n' (none), 'o' (odd), 'e' (even)
1884 * @bits: number of data bits
1885 * @flow: flow control character - 'r' (rts)
1888 uart_set_options(struct uart_port
*port
, struct console
*co
,
1889 int baud
, int parity
, int bits
, int flow
)
1891 struct ktermios termios
;
1892 static struct ktermios dummy
;
1895 * Ensure that the serial console lock is initialised
1897 * If this port is a console, then the spinlock is already
1900 if (!(uart_console(port
) && (port
->cons
->flags
& CON_ENABLED
))) {
1901 spin_lock_init(&port
->lock
);
1902 lockdep_set_class(&port
->lock
, &port_lock_key
);
1905 memset(&termios
, 0, sizeof(struct ktermios
));
1907 termios
.c_cflag
|= CREAD
| HUPCL
| CLOCAL
;
1908 tty_termios_encode_baud_rate(&termios
, baud
, baud
);
1911 termios
.c_cflag
|= CS7
;
1913 termios
.c_cflag
|= CS8
;
1917 termios
.c_cflag
|= PARODD
;
1920 termios
.c_cflag
|= PARENB
;
1925 termios
.c_cflag
|= CRTSCTS
;
1928 * some uarts on other side don't support no flow control.
1929 * So we set * DTR in host uart to make them happy
1931 port
->mctrl
|= TIOCM_DTR
;
1933 port
->ops
->set_termios(port
, &termios
, &dummy
);
1935 * Allow the setting of the UART parameters with a NULL console
1939 co
->cflag
= termios
.c_cflag
;
1943 EXPORT_SYMBOL_GPL(uart_set_options
);
1944 #endif /* CONFIG_SERIAL_CORE_CONSOLE */
1947 * uart_change_pm - set power state of the port
1949 * @state: port descriptor
1950 * @pm_state: new state
1952 * Locking: port->mutex has to be held
1954 static void uart_change_pm(struct uart_state
*state
,
1955 enum uart_pm_state pm_state
)
1957 struct uart_port
*port
= state
->uart_port
;
1959 if (state
->pm_state
!= pm_state
) {
1961 port
->ops
->pm(port
, pm_state
, state
->pm_state
);
1962 state
->pm_state
= pm_state
;
1967 struct uart_port
*port
;
1968 struct uart_driver
*driver
;
1971 static int serial_match_port(struct device
*dev
, void *data
)
1973 struct uart_match
*match
= data
;
1974 struct tty_driver
*tty_drv
= match
->driver
->tty_driver
;
1975 dev_t devt
= MKDEV(tty_drv
->major
, tty_drv
->minor_start
) +
1978 return dev
->devt
== devt
; /* Actually, only one tty per port */
1981 int uart_suspend_port(struct uart_driver
*drv
, struct uart_port
*uport
)
1983 struct uart_state
*state
= drv
->state
+ uport
->line
;
1984 struct tty_port
*port
= &state
->port
;
1985 struct device
*tty_dev
;
1986 struct uart_match match
= {uport
, drv
};
1988 mutex_lock(&port
->mutex
);
1990 tty_dev
= device_find_child(uport
->dev
, &match
, serial_match_port
);
1991 if (device_may_wakeup(tty_dev
)) {
1992 if (!enable_irq_wake(uport
->irq
))
1993 uport
->irq_wake
= 1;
1994 put_device(tty_dev
);
1995 mutex_unlock(&port
->mutex
);
1998 put_device(tty_dev
);
2000 /* Nothing to do if the console is not suspending */
2001 if (!console_suspend_enabled
&& uart_console(uport
))
2004 uport
->suspended
= 1;
2006 if (port
->flags
& ASYNC_INITIALIZED
) {
2007 const struct uart_ops
*ops
= uport
->ops
;
2010 set_bit(ASYNCB_SUSPENDED
, &port
->flags
);
2011 clear_bit(ASYNCB_INITIALIZED
, &port
->flags
);
2013 spin_lock_irq(&uport
->lock
);
2014 ops
->stop_tx(uport
);
2015 ops
->set_mctrl(uport
, 0);
2016 ops
->stop_rx(uport
);
2017 spin_unlock_irq(&uport
->lock
);
2020 * Wait for the transmitter to empty.
2022 for (tries
= 3; !ops
->tx_empty(uport
) && tries
; tries
--)
2025 dev_err(uport
->dev
, "%s%d: Unable to drain transmitter\n",
2027 drv
->tty_driver
->name_base
+ uport
->line
);
2029 ops
->shutdown(uport
);
2033 * Disable the console device before suspending.
2035 if (uart_console(uport
))
2036 console_stop(uport
->cons
);
2038 uart_change_pm(state
, UART_PM_STATE_OFF
);
2040 mutex_unlock(&port
->mutex
);
2045 int uart_resume_port(struct uart_driver
*drv
, struct uart_port
*uport
)
2047 struct uart_state
*state
= drv
->state
+ uport
->line
;
2048 struct tty_port
*port
= &state
->port
;
2049 struct device
*tty_dev
;
2050 struct uart_match match
= {uport
, drv
};
2051 struct ktermios termios
;
2053 mutex_lock(&port
->mutex
);
2055 tty_dev
= device_find_child(uport
->dev
, &match
, serial_match_port
);
2056 if (!uport
->suspended
&& device_may_wakeup(tty_dev
)) {
2057 if (uport
->irq_wake
) {
2058 disable_irq_wake(uport
->irq
);
2059 uport
->irq_wake
= 0;
2061 put_device(tty_dev
);
2062 mutex_unlock(&port
->mutex
);
2065 put_device(tty_dev
);
2066 uport
->suspended
= 0;
2069 * Re-enable the console device after suspending.
2071 if (uart_console(uport
)) {
2073 * First try to use the console cflag setting.
2075 memset(&termios
, 0, sizeof(struct ktermios
));
2076 termios
.c_cflag
= uport
->cons
->cflag
;
2079 * If that's unset, use the tty termios setting.
2081 if (port
->tty
&& termios
.c_cflag
== 0)
2082 termios
= port
->tty
->termios
;
2084 if (console_suspend_enabled
)
2085 uart_change_pm(state
, UART_PM_STATE_ON
);
2086 uport
->ops
->set_termios(uport
, &termios
, NULL
);
2087 if (console_suspend_enabled
)
2088 console_start(uport
->cons
);
2091 if (port
->flags
& ASYNC_SUSPENDED
) {
2092 const struct uart_ops
*ops
= uport
->ops
;
2095 uart_change_pm(state
, UART_PM_STATE_ON
);
2096 spin_lock_irq(&uport
->lock
);
2097 ops
->set_mctrl(uport
, 0);
2098 spin_unlock_irq(&uport
->lock
);
2099 if (console_suspend_enabled
|| !uart_console(uport
)) {
2100 /* Protected by port mutex for now */
2101 struct tty_struct
*tty
= port
->tty
;
2102 ret
= ops
->startup(uport
);
2105 uart_change_speed(tty
, state
, NULL
);
2106 spin_lock_irq(&uport
->lock
);
2107 ops
->set_mctrl(uport
, uport
->mctrl
);
2108 ops
->start_tx(uport
);
2109 spin_unlock_irq(&uport
->lock
);
2110 set_bit(ASYNCB_INITIALIZED
, &port
->flags
);
2113 * Failed to resume - maybe hardware went away?
2114 * Clear the "initialized" flag so we won't try
2115 * to call the low level drivers shutdown method.
2117 uart_shutdown(tty
, state
);
2121 clear_bit(ASYNCB_SUSPENDED
, &port
->flags
);
2124 mutex_unlock(&port
->mutex
);
2130 uart_report_port(struct uart_driver
*drv
, struct uart_port
*port
)
2134 switch (port
->iotype
) {
2136 snprintf(address
, sizeof(address
), "I/O 0x%lx", port
->iobase
);
2139 snprintf(address
, sizeof(address
),
2140 "I/O 0x%lx offset 0x%x", port
->iobase
, port
->hub6
);
2148 snprintf(address
, sizeof(address
),
2149 "MMIO 0x%llx", (unsigned long long)port
->mapbase
);
2152 strlcpy(address
, "*unknown*", sizeof(address
));
2156 printk(KERN_INFO
"%s%s%s%d at %s (irq = %d, base_baud = %d) is a %s\n",
2157 port
->dev
? dev_name(port
->dev
) : "",
2158 port
->dev
? ": " : "",
2160 drv
->tty_driver
->name_base
+ port
->line
,
2161 address
, port
->irq
, port
->uartclk
/ 16, uart_type(port
));
2165 uart_configure_port(struct uart_driver
*drv
, struct uart_state
*state
,
2166 struct uart_port
*port
)
2171 * If there isn't a port here, don't do anything further.
2173 if (!port
->iobase
&& !port
->mapbase
&& !port
->membase
)
2177 * Now do the auto configuration stuff. Note that config_port
2178 * is expected to claim the resources and map the port for us.
2181 if (port
->flags
& UPF_AUTO_IRQ
)
2182 flags
|= UART_CONFIG_IRQ
;
2183 if (port
->flags
& UPF_BOOT_AUTOCONF
) {
2184 if (!(port
->flags
& UPF_FIXED_TYPE
)) {
2185 port
->type
= PORT_UNKNOWN
;
2186 flags
|= UART_CONFIG_TYPE
;
2188 port
->ops
->config_port(port
, flags
);
2191 if (port
->type
!= PORT_UNKNOWN
) {
2192 unsigned long flags
;
2194 uart_report_port(drv
, port
);
2196 /* Power up port for set_mctrl() */
2197 uart_change_pm(state
, UART_PM_STATE_ON
);
2200 * Ensure that the modem control lines are de-activated.
2201 * keep the DTR setting that is set in uart_set_options()
2202 * We probably don't need a spinlock around this, but
2204 spin_lock_irqsave(&port
->lock
, flags
);
2205 port
->ops
->set_mctrl(port
, port
->mctrl
& TIOCM_DTR
);
2206 spin_unlock_irqrestore(&port
->lock
, flags
);
2209 * If this driver supports console, and it hasn't been
2210 * successfully registered yet, try to re-register it.
2211 * It may be that the port was not available.
2213 if (port
->cons
&& !(port
->cons
->flags
& CON_ENABLED
))
2214 register_console(port
->cons
);
2217 * Power down all ports by default, except the
2218 * console if we have one.
2220 if (!uart_console(port
))
2221 uart_change_pm(state
, UART_PM_STATE_OFF
);
2225 #ifdef CONFIG_CONSOLE_POLL
2227 static int uart_poll_init(struct tty_driver
*driver
, int line
, char *options
)
2229 struct uart_driver
*drv
= driver
->driver_state
;
2230 struct uart_state
*state
= drv
->state
+ line
;
2231 struct uart_port
*port
;
2238 if (!state
|| !state
->uart_port
)
2241 port
= state
->uart_port
;
2242 if (!(port
->ops
->poll_get_char
&& port
->ops
->poll_put_char
))
2245 if (port
->ops
->poll_init
) {
2246 struct tty_port
*tport
= &state
->port
;
2249 mutex_lock(&tport
->mutex
);
2251 * We don't set ASYNCB_INITIALIZED as we only initialized the
2252 * hw, e.g. state->xmit is still uninitialized.
2254 if (!test_bit(ASYNCB_INITIALIZED
, &tport
->flags
))
2255 ret
= port
->ops
->poll_init(port
);
2256 mutex_unlock(&tport
->mutex
);
2262 uart_parse_options(options
, &baud
, &parity
, &bits
, &flow
);
2263 return uart_set_options(port
, NULL
, baud
, parity
, bits
, flow
);
2269 static int uart_poll_get_char(struct tty_driver
*driver
, int line
)
2271 struct uart_driver
*drv
= driver
->driver_state
;
2272 struct uart_state
*state
= drv
->state
+ line
;
2273 struct uart_port
*port
;
2275 if (!state
|| !state
->uart_port
)
2278 port
= state
->uart_port
;
2279 return port
->ops
->poll_get_char(port
);
2282 static void uart_poll_put_char(struct tty_driver
*driver
, int line
, char ch
)
2284 struct uart_driver
*drv
= driver
->driver_state
;
2285 struct uart_state
*state
= drv
->state
+ line
;
2286 struct uart_port
*port
;
2288 if (!state
|| !state
->uart_port
)
2291 port
= state
->uart_port
;
2294 port
->ops
->poll_put_char(port
, '\r');
2295 port
->ops
->poll_put_char(port
, ch
);
2299 static const struct tty_operations uart_ops
= {
2301 .close
= uart_close
,
2302 .write
= uart_write
,
2303 .put_char
= uart_put_char
,
2304 .flush_chars
= uart_flush_chars
,
2305 .write_room
= uart_write_room
,
2306 .chars_in_buffer
= uart_chars_in_buffer
,
2307 .flush_buffer
= uart_flush_buffer
,
2308 .ioctl
= uart_ioctl
,
2309 .throttle
= uart_throttle
,
2310 .unthrottle
= uart_unthrottle
,
2311 .send_xchar
= uart_send_xchar
,
2312 .set_termios
= uart_set_termios
,
2313 .set_ldisc
= uart_set_ldisc
,
2315 .start
= uart_start
,
2316 .hangup
= uart_hangup
,
2317 .break_ctl
= uart_break_ctl
,
2318 .wait_until_sent
= uart_wait_until_sent
,
2319 #ifdef CONFIG_PROC_FS
2320 .proc_fops
= &uart_proc_fops
,
2322 .tiocmget
= uart_tiocmget
,
2323 .tiocmset
= uart_tiocmset
,
2324 .get_icount
= uart_get_icount
,
2325 #ifdef CONFIG_CONSOLE_POLL
2326 .poll_init
= uart_poll_init
,
2327 .poll_get_char
= uart_poll_get_char
,
2328 .poll_put_char
= uart_poll_put_char
,
2332 static const struct tty_port_operations uart_port_ops
= {
2333 .carrier_raised
= uart_carrier_raised
,
2334 .dtr_rts
= uart_dtr_rts
,
2338 * uart_register_driver - register a driver with the uart core layer
2339 * @drv: low level driver structure
2341 * Register a uart driver with the core driver. We in turn register
2342 * with the tty layer, and initialise the core driver per-port state.
2344 * We have a proc file in /proc/tty/driver which is named after the
2347 * drv->port should be NULL, and the per-port structures should be
2348 * registered using uart_add_one_port after this call has succeeded.
2350 int uart_register_driver(struct uart_driver
*drv
)
2352 struct tty_driver
*normal
;
2358 * Maybe we should be using a slab cache for this, especially if
2359 * we have a large number of ports to handle.
2361 drv
->state
= kzalloc(sizeof(struct uart_state
) * drv
->nr
, GFP_KERNEL
);
2365 normal
= alloc_tty_driver(drv
->nr
);
2369 drv
->tty_driver
= normal
;
2371 normal
->driver_name
= drv
->driver_name
;
2372 normal
->name
= drv
->dev_name
;
2373 normal
->major
= drv
->major
;
2374 normal
->minor_start
= drv
->minor
;
2375 normal
->type
= TTY_DRIVER_TYPE_SERIAL
;
2376 normal
->subtype
= SERIAL_TYPE_NORMAL
;
2377 normal
->init_termios
= tty_std_termios
;
2378 normal
->init_termios
.c_cflag
= B9600
| CS8
| CREAD
| HUPCL
| CLOCAL
;
2379 normal
->init_termios
.c_ispeed
= normal
->init_termios
.c_ospeed
= 9600;
2380 normal
->flags
= TTY_DRIVER_REAL_RAW
| TTY_DRIVER_DYNAMIC_DEV
;
2381 normal
->driver_state
= drv
;
2382 tty_set_operations(normal
, &uart_ops
);
2385 * Initialise the UART state(s).
2387 for (i
= 0; i
< drv
->nr
; i
++) {
2388 struct uart_state
*state
= drv
->state
+ i
;
2389 struct tty_port
*port
= &state
->port
;
2391 tty_port_init(port
);
2392 port
->ops
= &uart_port_ops
;
2395 retval
= tty_register_driver(normal
);
2399 for (i
= 0; i
< drv
->nr
; i
++)
2400 tty_port_destroy(&drv
->state
[i
].port
);
2401 put_tty_driver(normal
);
2409 * uart_unregister_driver - remove a driver from the uart core layer
2410 * @drv: low level driver structure
2412 * Remove all references to a driver from the core driver. The low
2413 * level driver must have removed all its ports via the
2414 * uart_remove_one_port() if it registered them with uart_add_one_port().
2415 * (ie, drv->port == NULL)
2417 void uart_unregister_driver(struct uart_driver
*drv
)
2419 struct tty_driver
*p
= drv
->tty_driver
;
2422 tty_unregister_driver(p
);
2424 for (i
= 0; i
< drv
->nr
; i
++)
2425 tty_port_destroy(&drv
->state
[i
].port
);
2428 drv
->tty_driver
= NULL
;
2431 struct tty_driver
*uart_console_device(struct console
*co
, int *index
)
2433 struct uart_driver
*p
= co
->data
;
2435 return p
->tty_driver
;
2438 static ssize_t
uart_get_attr_uartclk(struct device
*dev
,
2439 struct device_attribute
*attr
, char *buf
)
2441 struct serial_struct tmp
;
2442 struct tty_port
*port
= dev_get_drvdata(dev
);
2444 uart_get_info(port
, &tmp
);
2445 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.baud_base
* 16);
2448 static ssize_t
uart_get_attr_type(struct device
*dev
,
2449 struct device_attribute
*attr
, char *buf
)
2451 struct serial_struct tmp
;
2452 struct tty_port
*port
= dev_get_drvdata(dev
);
2454 uart_get_info(port
, &tmp
);
2455 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.type
);
2457 static ssize_t
uart_get_attr_line(struct device
*dev
,
2458 struct device_attribute
*attr
, char *buf
)
2460 struct serial_struct tmp
;
2461 struct tty_port
*port
= dev_get_drvdata(dev
);
2463 uart_get_info(port
, &tmp
);
2464 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.line
);
2467 static ssize_t
uart_get_attr_port(struct device
*dev
,
2468 struct device_attribute
*attr
, char *buf
)
2470 struct serial_struct tmp
;
2471 struct tty_port
*port
= dev_get_drvdata(dev
);
2472 unsigned long ioaddr
;
2474 uart_get_info(port
, &tmp
);
2476 if (HIGH_BITS_OFFSET
)
2477 ioaddr
|= (unsigned long)tmp
.port_high
<< HIGH_BITS_OFFSET
;
2478 return snprintf(buf
, PAGE_SIZE
, "0x%lX\n", ioaddr
);
2481 static ssize_t
uart_get_attr_irq(struct device
*dev
,
2482 struct device_attribute
*attr
, char *buf
)
2484 struct serial_struct tmp
;
2485 struct tty_port
*port
= dev_get_drvdata(dev
);
2487 uart_get_info(port
, &tmp
);
2488 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.irq
);
2491 static ssize_t
uart_get_attr_flags(struct device
*dev
,
2492 struct device_attribute
*attr
, char *buf
)
2494 struct serial_struct tmp
;
2495 struct tty_port
*port
= dev_get_drvdata(dev
);
2497 uart_get_info(port
, &tmp
);
2498 return snprintf(buf
, PAGE_SIZE
, "0x%X\n", tmp
.flags
);
2501 static ssize_t
uart_get_attr_xmit_fifo_size(struct device
*dev
,
2502 struct device_attribute
*attr
, char *buf
)
2504 struct serial_struct tmp
;
2505 struct tty_port
*port
= dev_get_drvdata(dev
);
2507 uart_get_info(port
, &tmp
);
2508 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.xmit_fifo_size
);
2512 static ssize_t
uart_get_attr_close_delay(struct device
*dev
,
2513 struct device_attribute
*attr
, char *buf
)
2515 struct serial_struct tmp
;
2516 struct tty_port
*port
= dev_get_drvdata(dev
);
2518 uart_get_info(port
, &tmp
);
2519 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.close_delay
);
2523 static ssize_t
uart_get_attr_closing_wait(struct device
*dev
,
2524 struct device_attribute
*attr
, char *buf
)
2526 struct serial_struct tmp
;
2527 struct tty_port
*port
= dev_get_drvdata(dev
);
2529 uart_get_info(port
, &tmp
);
2530 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.closing_wait
);
2533 static ssize_t
uart_get_attr_custom_divisor(struct device
*dev
,
2534 struct device_attribute
*attr
, char *buf
)
2536 struct serial_struct tmp
;
2537 struct tty_port
*port
= dev_get_drvdata(dev
);
2539 uart_get_info(port
, &tmp
);
2540 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.custom_divisor
);
2543 static ssize_t
uart_get_attr_io_type(struct device
*dev
,
2544 struct device_attribute
*attr
, char *buf
)
2546 struct serial_struct tmp
;
2547 struct tty_port
*port
= dev_get_drvdata(dev
);
2549 uart_get_info(port
, &tmp
);
2550 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.io_type
);
2553 static ssize_t
uart_get_attr_iomem_base(struct device
*dev
,
2554 struct device_attribute
*attr
, char *buf
)
2556 struct serial_struct tmp
;
2557 struct tty_port
*port
= dev_get_drvdata(dev
);
2559 uart_get_info(port
, &tmp
);
2560 return snprintf(buf
, PAGE_SIZE
, "0x%lX\n", (unsigned long)tmp
.iomem_base
);
2563 static ssize_t
uart_get_attr_iomem_reg_shift(struct device
*dev
,
2564 struct device_attribute
*attr
, char *buf
)
2566 struct serial_struct tmp
;
2567 struct tty_port
*port
= dev_get_drvdata(dev
);
2569 uart_get_info(port
, &tmp
);
2570 return snprintf(buf
, PAGE_SIZE
, "%d\n", tmp
.iomem_reg_shift
);
2573 static DEVICE_ATTR(type
, S_IRUSR
| S_IRGRP
, uart_get_attr_type
, NULL
);
2574 static DEVICE_ATTR(line
, S_IRUSR
| S_IRGRP
, uart_get_attr_line
, NULL
);
2575 static DEVICE_ATTR(port
, S_IRUSR
| S_IRGRP
, uart_get_attr_port
, NULL
);
2576 static DEVICE_ATTR(irq
, S_IRUSR
| S_IRGRP
, uart_get_attr_irq
, NULL
);
2577 static DEVICE_ATTR(flags
, S_IRUSR
| S_IRGRP
, uart_get_attr_flags
, NULL
);
2578 static DEVICE_ATTR(xmit_fifo_size
, S_IRUSR
| S_IRGRP
, uart_get_attr_xmit_fifo_size
, NULL
);
2579 static DEVICE_ATTR(uartclk
, S_IRUSR
| S_IRGRP
, uart_get_attr_uartclk
, NULL
);
2580 static DEVICE_ATTR(close_delay
, S_IRUSR
| S_IRGRP
, uart_get_attr_close_delay
, NULL
);
2581 static DEVICE_ATTR(closing_wait
, S_IRUSR
| S_IRGRP
, uart_get_attr_closing_wait
, NULL
);
2582 static DEVICE_ATTR(custom_divisor
, S_IRUSR
| S_IRGRP
, uart_get_attr_custom_divisor
, NULL
);
2583 static DEVICE_ATTR(io_type
, S_IRUSR
| S_IRGRP
, uart_get_attr_io_type
, NULL
);
2584 static DEVICE_ATTR(iomem_base
, S_IRUSR
| S_IRGRP
, uart_get_attr_iomem_base
, NULL
);
2585 static DEVICE_ATTR(iomem_reg_shift
, S_IRUSR
| S_IRGRP
, uart_get_attr_iomem_reg_shift
, NULL
);
2587 static struct attribute
*tty_dev_attrs
[] = {
2588 &dev_attr_type
.attr
,
2589 &dev_attr_line
.attr
,
2590 &dev_attr_port
.attr
,
2592 &dev_attr_flags
.attr
,
2593 &dev_attr_xmit_fifo_size
.attr
,
2594 &dev_attr_uartclk
.attr
,
2595 &dev_attr_close_delay
.attr
,
2596 &dev_attr_closing_wait
.attr
,
2597 &dev_attr_custom_divisor
.attr
,
2598 &dev_attr_io_type
.attr
,
2599 &dev_attr_iomem_base
.attr
,
2600 &dev_attr_iomem_reg_shift
.attr
,
2604 static const struct attribute_group tty_dev_attr_group
= {
2605 .attrs
= tty_dev_attrs
,
2609 * uart_add_one_port - attach a driver-defined port structure
2610 * @drv: pointer to the uart low level driver structure for this port
2611 * @uport: uart port structure to use for this port.
2613 * This allows the driver to register its own uart_port structure
2614 * with the core driver. The main purpose is to allow the low
2615 * level uart drivers to expand uart_port, rather than having yet
2616 * more levels of structures.
2618 int uart_add_one_port(struct uart_driver
*drv
, struct uart_port
*uport
)
2620 struct uart_state
*state
;
2621 struct tty_port
*port
;
2623 struct device
*tty_dev
;
2626 BUG_ON(in_interrupt());
2628 if (uport
->line
>= drv
->nr
)
2631 state
= drv
->state
+ uport
->line
;
2632 port
= &state
->port
;
2634 mutex_lock(&port_mutex
);
2635 mutex_lock(&port
->mutex
);
2636 if (state
->uart_port
) {
2641 /* Link the port to the driver state table and vice versa */
2642 state
->uart_port
= uport
;
2643 uport
->state
= state
;
2645 state
->pm_state
= UART_PM_STATE_UNDEFINED
;
2646 uport
->cons
= drv
->cons
;
2647 uport
->minor
= drv
->tty_driver
->minor_start
+ uport
->line
;
2650 * If this port is a console, then the spinlock is already
2653 if (!(uart_console(uport
) && (uport
->cons
->flags
& CON_ENABLED
))) {
2654 spin_lock_init(&uport
->lock
);
2655 lockdep_set_class(&uport
->lock
, &port_lock_key
);
2657 if (uport
->cons
&& uport
->dev
)
2658 of_console_check(uport
->dev
->of_node
, uport
->cons
->name
, uport
->line
);
2660 uart_configure_port(drv
, state
, uport
);
2663 if (uport
->attr_group
)
2666 uport
->tty_groups
= kcalloc(num_groups
, sizeof(*uport
->tty_groups
),
2668 if (!uport
->tty_groups
) {
2672 uport
->tty_groups
[0] = &tty_dev_attr_group
;
2673 if (uport
->attr_group
)
2674 uport
->tty_groups
[1] = uport
->attr_group
;
2677 * Register the port whether it's detected or not. This allows
2678 * setserial to be used to alter this port's parameters.
2680 tty_dev
= tty_port_register_device_attr(port
, drv
->tty_driver
,
2681 uport
->line
, uport
->dev
, port
, uport
->tty_groups
);
2682 if (likely(!IS_ERR(tty_dev
))) {
2683 device_set_wakeup_capable(tty_dev
, 1);
2685 dev_err(uport
->dev
, "Cannot register tty device on line %d\n",
2690 * Ensure UPF_DEAD is not set.
2692 uport
->flags
&= ~UPF_DEAD
;
2695 mutex_unlock(&port
->mutex
);
2696 mutex_unlock(&port_mutex
);
2702 * uart_remove_one_port - detach a driver defined port structure
2703 * @drv: pointer to the uart low level driver structure for this port
2704 * @uport: uart port structure for this port
2706 * This unhooks (and hangs up) the specified port structure from the
2707 * core driver. No further calls will be made to the low-level code
2710 int uart_remove_one_port(struct uart_driver
*drv
, struct uart_port
*uport
)
2712 struct uart_state
*state
= drv
->state
+ uport
->line
;
2713 struct tty_port
*port
= &state
->port
;
2714 struct tty_struct
*tty
;
2717 BUG_ON(in_interrupt());
2719 if (state
->uart_port
!= uport
)
2720 dev_alert(uport
->dev
, "Removing wrong port: %p != %p\n",
2721 state
->uart_port
, uport
);
2723 mutex_lock(&port_mutex
);
2726 * Mark the port "dead" - this prevents any opens from
2727 * succeeding while we shut down the port.
2729 mutex_lock(&port
->mutex
);
2730 if (!state
->uart_port
) {
2731 mutex_unlock(&port
->mutex
);
2735 uport
->flags
|= UPF_DEAD
;
2736 mutex_unlock(&port
->mutex
);
2739 * Remove the devices from the tty layer
2741 tty_unregister_device(drv
->tty_driver
, uport
->line
);
2743 tty
= tty_port_tty_get(port
);
2745 tty_vhangup(port
->tty
);
2750 * If the port is used as a console, unregister it
2752 if (uart_console(uport
))
2753 unregister_console(uport
->cons
);
2756 * Free the port IO and memory resources, if any.
2758 if (uport
->type
!= PORT_UNKNOWN
)
2759 uport
->ops
->release_port(uport
);
2760 kfree(uport
->tty_groups
);
2763 * Indicate that there isn't a port here anymore.
2765 uport
->type
= PORT_UNKNOWN
;
2767 state
->uart_port
= NULL
;
2769 mutex_unlock(&port_mutex
);
2775 * Are the two ports equivalent?
2777 int uart_match_port(struct uart_port
*port1
, struct uart_port
*port2
)
2779 if (port1
->iotype
!= port2
->iotype
)
2782 switch (port1
->iotype
) {
2784 return (port1
->iobase
== port2
->iobase
);
2786 return (port1
->iobase
== port2
->iobase
) &&
2787 (port1
->hub6
== port2
->hub6
);
2794 return (port1
->mapbase
== port2
->mapbase
);
2798 EXPORT_SYMBOL(uart_match_port
);
2801 * uart_handle_dcd_change - handle a change of carrier detect state
2802 * @uport: uart_port structure for the open port
2803 * @status: new carrier detect status, nonzero if active
2805 * Caller must hold uport->lock
2807 void uart_handle_dcd_change(struct uart_port
*uport
, unsigned int status
)
2809 struct tty_port
*port
= &uport
->state
->port
;
2810 struct tty_struct
*tty
= port
->tty
;
2811 struct tty_ldisc
*ld
;
2813 lockdep_assert_held_once(&uport
->lock
);
2816 ld
= tty_ldisc_ref(tty
);
2818 if (ld
->ops
->dcd_change
)
2819 ld
->ops
->dcd_change(tty
, status
);
2820 tty_ldisc_deref(ld
);
2824 uport
->icount
.dcd
++;
2826 if (uart_dcd_enabled(uport
)) {
2828 wake_up_interruptible(&port
->open_wait
);
2833 EXPORT_SYMBOL_GPL(uart_handle_dcd_change
);
2836 * uart_handle_cts_change - handle a change of clear-to-send state
2837 * @uport: uart_port structure for the open port
2838 * @status: new clear to send status, nonzero if active
2840 * Caller must hold uport->lock
2842 void uart_handle_cts_change(struct uart_port
*uport
, unsigned int status
)
2844 lockdep_assert_held_once(&uport
->lock
);
2846 uport
->icount
.cts
++;
2848 if (uart_softcts_mode(uport
)) {
2849 if (uport
->hw_stopped
) {
2851 uport
->hw_stopped
= 0;
2852 uport
->ops
->start_tx(uport
);
2853 uart_write_wakeup(uport
);
2857 uport
->hw_stopped
= 1;
2858 uport
->ops
->stop_tx(uport
);
2864 EXPORT_SYMBOL_GPL(uart_handle_cts_change
);
2867 * uart_insert_char - push a char to the uart layer
2869 * User is responsible to call tty_flip_buffer_push when they are done with
2872 * @port: corresponding port
2873 * @status: state of the serial port RX buffer (LSR for 8250)
2874 * @overrun: mask of overrun bits in @status
2875 * @ch: character to push
2876 * @flag: flag for the character (see TTY_NORMAL and friends)
2878 void uart_insert_char(struct uart_port
*port
, unsigned int status
,
2879 unsigned int overrun
, unsigned int ch
, unsigned int flag
)
2881 struct tty_port
*tport
= &port
->state
->port
;
2883 if ((status
& port
->ignore_status_mask
& ~overrun
) == 0)
2884 if (tty_insert_flip_char(tport
, ch
, flag
) == 0)
2885 ++port
->icount
.buf_overrun
;
2888 * Overrun is special. Since it's reported immediately,
2889 * it doesn't affect the current character.
2891 if (status
& ~port
->ignore_status_mask
& overrun
)
2892 if (tty_insert_flip_char(tport
, 0, TTY_OVERRUN
) == 0)
2893 ++port
->icount
.buf_overrun
;
2895 EXPORT_SYMBOL_GPL(uart_insert_char
);
2897 EXPORT_SYMBOL(uart_write_wakeup
);
2898 EXPORT_SYMBOL(uart_register_driver
);
2899 EXPORT_SYMBOL(uart_unregister_driver
);
2900 EXPORT_SYMBOL(uart_suspend_port
);
2901 EXPORT_SYMBOL(uart_resume_port
);
2902 EXPORT_SYMBOL(uart_add_one_port
);
2903 EXPORT_SYMBOL(uart_remove_one_port
);
2905 MODULE_DESCRIPTION("Serial driver core");
2906 MODULE_LICENSE("GPL");