1 // SPDX-License-Identifier: GPL-2.0-or-later
4 * Copyright (c) by Jaroslav Kysela <perex@perex.cz>,
5 * Isaku Yamahata <yamahata@private.email.ne.jp>,
6 * George Hansper <ghansper@apana.org.au>,
9 * This code is based on the code from ALSA 0.5.9, but heavily rewritten.
11 * Sat Mar 31 17:27:57 PST 2001 tim.mann@compaq.com
12 * Added support for the Midiator MS-124T and for the MS-124W in
13 * Single Addressed (S/A) or Multiple Burst (M/B) mode, with
14 * power derived either parasitically from the serial port or
15 * from a separate power supply.
17 * More documentation can be found in serial-u16550.txt.
20 #include <linux/init.h>
21 #include <linux/interrupt.h>
22 #include <linux/err.h>
23 #include <linux/platform_device.h>
24 #include <linux/slab.h>
25 #include <linux/ioport.h>
26 #include <linux/module.h>
28 #include <sound/core.h>
29 #include <sound/rawmidi.h>
30 #include <sound/initval.h>
32 #include <linux/serial_reg.h>
33 #include <linux/jiffies.h>
35 MODULE_DESCRIPTION("MIDI serial u16550");
36 MODULE_LICENSE("GPL");
37 MODULE_SUPPORTED_DEVICE("{{ALSA, MIDI serial u16550}}");
39 #define SNDRV_SERIAL_SOUNDCANVAS 0 /* Roland Soundcanvas; F5 NN selects part */
40 #define SNDRV_SERIAL_MS124T 1 /* Midiator MS-124T */
41 #define SNDRV_SERIAL_MS124W_SA 2 /* Midiator MS-124W in S/A mode */
42 #define SNDRV_SERIAL_MS124W_MB 3 /* Midiator MS-124W in M/B mode */
43 #define SNDRV_SERIAL_GENERIC 4 /* Generic Interface */
44 #define SNDRV_SERIAL_MAX_ADAPTOR SNDRV_SERIAL_GENERIC
45 static const char * const adaptor_names
[] = {
53 #define SNDRV_SERIAL_NORMALBUFF 0 /* Normal blocking buffer operation */
54 #define SNDRV_SERIAL_DROPBUFF 1 /* Non-blocking discard operation */
56 static int index
[SNDRV_CARDS
] = SNDRV_DEFAULT_IDX
; /* Index 0-MAX */
57 static char *id
[SNDRV_CARDS
] = SNDRV_DEFAULT_STR
; /* ID for this card */
58 static bool enable
[SNDRV_CARDS
] = SNDRV_DEFAULT_ENABLE
; /* Enable this card */
59 static long port
[SNDRV_CARDS
] = SNDRV_DEFAULT_PORT
; /* 0x3f8,0x2f8,0x3e8,0x2e8 */
60 static int irq
[SNDRV_CARDS
] = SNDRV_DEFAULT_IRQ
; /* 3,4,5,7,9,10,11,14,15 */
61 static int speed
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
- 1)] = 38400}; /* 9600,19200,38400,57600,115200 */
62 static int base
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
- 1)] = 115200}; /* baud base */
63 static int outs
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
- 1)] = 1}; /* 1 to 16 */
64 static int ins
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
- 1)] = 1}; /* 1 to 16 */
65 static int adaptor
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
- 1)] = SNDRV_SERIAL_SOUNDCANVAS
};
66 static bool droponfull
[SNDRV_CARDS
] = {[0 ... (SNDRV_CARDS
-1)] = SNDRV_SERIAL_NORMALBUFF
};
68 module_param_array(index
, int, NULL
, 0444);
69 MODULE_PARM_DESC(index
, "Index value for Serial MIDI.");
70 module_param_array(id
, charp
, NULL
, 0444);
71 MODULE_PARM_DESC(id
, "ID string for Serial MIDI.");
72 module_param_array(enable
, bool, NULL
, 0444);
73 MODULE_PARM_DESC(enable
, "Enable UART16550A chip.");
74 module_param_hw_array(port
, long, ioport
, NULL
, 0444);
75 MODULE_PARM_DESC(port
, "Port # for UART16550A chip.");
76 module_param_hw_array(irq
, int, irq
, NULL
, 0444);
77 MODULE_PARM_DESC(irq
, "IRQ # for UART16550A chip.");
78 module_param_array(speed
, int, NULL
, 0444);
79 MODULE_PARM_DESC(speed
, "Speed in bauds.");
80 module_param_array(base
, int, NULL
, 0444);
81 MODULE_PARM_DESC(base
, "Base for divisor in bauds.");
82 module_param_array(outs
, int, NULL
, 0444);
83 MODULE_PARM_DESC(outs
, "Number of MIDI outputs.");
84 module_param_array(ins
, int, NULL
, 0444);
85 MODULE_PARM_DESC(ins
, "Number of MIDI inputs.");
86 module_param_array(droponfull
, bool, NULL
, 0444);
87 MODULE_PARM_DESC(droponfull
, "Flag to enable drop-on-full buffer mode");
89 module_param_array(adaptor
, int, NULL
, 0444);
90 MODULE_PARM_DESC(adaptor
, "Type of adaptor.");
92 /*#define SNDRV_SERIAL_MS124W_MB_NOCOMBO 1*/ /* Address outs as 0-3 instead of bitmap */
94 #define SNDRV_SERIAL_MAX_OUTS 16 /* max 64, min 16 */
95 #define SNDRV_SERIAL_MAX_INS 16 /* max 64, min 16 */
97 #define TX_BUFF_SIZE (1<<15) /* Must be 2^n */
98 #define TX_BUFF_MASK (TX_BUFF_SIZE - 1)
100 #define SERIAL_MODE_NOT_OPENED (0)
101 #define SERIAL_MODE_INPUT_OPEN (1 << 0)
102 #define SERIAL_MODE_OUTPUT_OPEN (1 << 1)
103 #define SERIAL_MODE_INPUT_TRIGGERED (1 << 2)
104 #define SERIAL_MODE_OUTPUT_TRIGGERED (1 << 3)
106 struct snd_uart16550
{
107 struct snd_card
*card
;
108 struct snd_rawmidi
*rmidi
;
109 struct snd_rawmidi_substream
*midi_output
[SNDRV_SERIAL_MAX_OUTS
];
110 struct snd_rawmidi_substream
*midi_input
[SNDRV_SERIAL_MAX_INS
];
112 int filemode
; /* open status of file */
114 spinlock_t open_lock
;
119 struct resource
*res_base
;
122 unsigned int speed_base
;
123 unsigned char divisor
;
125 unsigned char old_divisor_lsb
;
126 unsigned char old_divisor_msb
;
127 unsigned char old_line_ctrl_reg
;
129 /* parameter for using of write loop */
130 short int fifo_limit
; /* used in uart16550 */
131 short int fifo_count
; /* used in uart16550 */
133 /* type of adaptor */
138 unsigned char rstatus
;
142 unsigned char prev_status
[SNDRV_SERIAL_MAX_OUTS
];
144 /* write buffer and its writing/reading position */
145 unsigned char tx_buff
[TX_BUFF_SIZE
];
152 unsigned int timer_running
:1;
153 struct timer_list buffer_timer
;
157 static struct platform_device
*devices
[SNDRV_CARDS
];
159 static inline void snd_uart16550_add_timer(struct snd_uart16550
*uart
)
161 if (!uart
->timer_running
) {
162 /* timer 38600bps * 10bit * 16byte */
163 mod_timer(&uart
->buffer_timer
, jiffies
+ (HZ
+ 255) / 256);
164 uart
->timer_running
= 1;
168 static inline void snd_uart16550_del_timer(struct snd_uart16550
*uart
)
170 if (uart
->timer_running
) {
171 del_timer(&uart
->buffer_timer
);
172 uart
->timer_running
= 0;
176 /* This macro is only used in snd_uart16550_io_loop */
177 static inline void snd_uart16550_buffer_output(struct snd_uart16550
*uart
)
179 unsigned short buff_out
= uart
->buff_out
;
180 if (uart
->buff_in_count
> 0) {
181 outb(uart
->tx_buff
[buff_out
], uart
->base
+ UART_TX
);
184 buff_out
&= TX_BUFF_MASK
;
185 uart
->buff_out
= buff_out
;
186 uart
->buff_in_count
--;
190 /* This loop should be called with interrupts disabled
191 * We don't want to interrupt this,
192 * as we're already handling an interrupt
194 static void snd_uart16550_io_loop(struct snd_uart16550
* uart
)
196 unsigned char c
, status
;
199 /* recall previous stream */
200 substream
= uart
->prev_in
;
203 while ((status
= inb(uart
->base
+ UART_LSR
)) & UART_LSR_DR
) {
204 /* while receive data ready */
205 c
= inb(uart
->base
+ UART_RX
);
207 /* keep track of last status byte */
211 /* handle stream switch */
212 if (uart
->adaptor
== SNDRV_SERIAL_GENERIC
) {
213 if (uart
->rstatus
== 0xf5) {
214 if (c
<= SNDRV_SERIAL_MAX_INS
&& c
> 0)
217 /* prevent future bytes from being
218 interpreted as streams */
220 } else if ((uart
->filemode
& SERIAL_MODE_INPUT_OPEN
)
221 && uart
->midi_input
[substream
])
222 snd_rawmidi_receive(uart
->midi_input
[substream
],
224 } else if ((uart
->filemode
& SERIAL_MODE_INPUT_OPEN
) &&
225 uart
->midi_input
[substream
])
226 snd_rawmidi_receive(uart
->midi_input
[substream
], &c
, 1);
228 if (status
& UART_LSR_OE
)
229 snd_printk(KERN_WARNING
230 "%s: Overrun on device at 0x%lx\n",
231 uart
->rmidi
->name
, uart
->base
);
234 /* remember the last stream */
235 uart
->prev_in
= substream
;
237 /* no need of check SERIAL_MODE_OUTPUT_OPEN because if not,
238 buffer is never filled. */
239 /* Check write status */
240 if (status
& UART_LSR_THRE
)
241 uart
->fifo_count
= 0;
242 if (uart
->adaptor
== SNDRV_SERIAL_MS124W_SA
243 || uart
->adaptor
== SNDRV_SERIAL_GENERIC
) {
244 /* Can't use FIFO, must send only when CTS is true */
245 status
= inb(uart
->base
+ UART_MSR
);
246 while (uart
->fifo_count
== 0 && (status
& UART_MSR_CTS
) &&
247 uart
->buff_in_count
> 0) {
248 snd_uart16550_buffer_output(uart
);
249 status
= inb(uart
->base
+ UART_MSR
);
253 while (uart
->fifo_count
< uart
->fifo_limit
/* Can we write ? */
254 && uart
->buff_in_count
> 0) /* Do we want to? */
255 snd_uart16550_buffer_output(uart
);
257 if (uart
->irq
< 0 && uart
->buff_in_count
> 0)
258 snd_uart16550_add_timer(uart
);
261 /* NOTES ON SERVICING INTERUPTS
262 * ---------------------------
263 * After receiving a interrupt, it is important to indicate to the UART that
264 * this has been done.
265 * For a Rx interrupt, this is done by reading the received byte.
266 * For a Tx interrupt this is done by either:
269 * It is particularly important to read the IIR if a Tx interrupt is received
270 * when there is no data in tx_buff[], as in this case there no other
271 * indication that the interrupt has been serviced, and it remains outstanding
272 * indefinitely. This has the curious side effect that and no further interrupts
273 * will be generated from this device AT ALL!!.
274 * It is also desirable to clear outstanding interrupts when the device is
278 * Note that some devices need OUT2 to be set before they will generate
279 * interrupts at all. (Possibly tied to an internal pull-up on CTS?)
281 static irqreturn_t
snd_uart16550_interrupt(int irq
, void *dev_id
)
283 struct snd_uart16550
*uart
;
286 spin_lock(&uart
->open_lock
);
287 if (uart
->filemode
== SERIAL_MODE_NOT_OPENED
) {
288 spin_unlock(&uart
->open_lock
);
291 /* indicate to the UART that the interrupt has been serviced */
292 inb(uart
->base
+ UART_IIR
);
293 snd_uart16550_io_loop(uart
);
294 spin_unlock(&uart
->open_lock
);
298 /* When the polling mode, this function calls snd_uart16550_io_loop. */
299 static void snd_uart16550_buffer_timer(struct timer_list
*t
)
302 struct snd_uart16550
*uart
;
304 uart
= from_timer(uart
, t
, buffer_timer
);
305 spin_lock_irqsave(&uart
->open_lock
, flags
);
306 snd_uart16550_del_timer(uart
);
307 snd_uart16550_io_loop(uart
);
308 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
312 * this method probes, if an uart sits on given port
314 * return negative error if not found
316 static int snd_uart16550_detect(struct snd_uart16550
*uart
)
318 unsigned long io_base
= uart
->base
;
322 /* Do some vague tests for the presence of the uart */
323 if (io_base
== 0 || io_base
== SNDRV_AUTO_PORT
) {
324 return -ENODEV
; /* Not configured */
327 uart
->res_base
= request_region(io_base
, 8, "Serial MIDI");
328 if (uart
->res_base
== NULL
) {
329 snd_printk(KERN_ERR
"u16550: can't grab port 0x%lx\n", io_base
);
333 /* uart detected unless one of the following tests should fail */
335 /* 8 data-bits, 1 stop-bit, parity off, DLAB = 0 */
336 outb(UART_LCR_WLEN8
, io_base
+ UART_LCR
); /* Line Control Register */
337 c
= inb(io_base
+ UART_IER
);
338 /* The top four bits of the IER should always == 0 */
342 outb(0xaa, io_base
+ UART_SCR
);
343 /* Write arbitrary data into the scratch reg */
344 c
= inb(io_base
+ UART_SCR
);
345 /* If it comes back, it's OK */
349 outb(0x55, io_base
+ UART_SCR
);
350 /* Write arbitrary data into the scratch reg */
351 c
= inb(io_base
+ UART_SCR
);
352 /* If it comes back, it's OK */
359 static void snd_uart16550_do_open(struct snd_uart16550
* uart
)
363 /* Initialize basic variables */
364 uart
->buff_in_count
= 0;
367 uart
->fifo_limit
= 1;
368 uart
->fifo_count
= 0;
369 uart
->timer_running
= 0;
371 outb(UART_FCR_ENABLE_FIFO
/* Enable FIFO's (if available) */
372 | UART_FCR_CLEAR_RCVR
/* Clear receiver FIFO */
373 | UART_FCR_CLEAR_XMIT
/* Clear transmitter FIFO */
374 | UART_FCR_TRIGGER_4
/* Set FIFO trigger at 4-bytes */
375 /* NOTE: interrupt generated after T=(time)4-bytes
376 * if less than UART_FCR_TRIGGER bytes received
378 ,uart
->base
+ UART_FCR
); /* FIFO Control Register */
380 if ((inb(uart
->base
+ UART_IIR
) & 0xf0) == 0xc0)
381 uart
->fifo_limit
= 16;
382 if (uart
->divisor
!= 0) {
383 uart
->old_line_ctrl_reg
= inb(uart
->base
+ UART_LCR
);
384 outb(UART_LCR_DLAB
/* Divisor latch access bit */
385 ,uart
->base
+ UART_LCR
); /* Line Control Register */
386 uart
->old_divisor_lsb
= inb(uart
->base
+ UART_DLL
);
387 uart
->old_divisor_msb
= inb(uart
->base
+ UART_DLM
);
390 ,uart
->base
+ UART_DLL
); /* Divisor Latch Low */
392 ,uart
->base
+ UART_DLM
); /* Divisor Latch High */
393 /* DLAB is reset to 0 in next outb() */
395 /* Set serial parameters (parity off, etc) */
396 outb(UART_LCR_WLEN8
/* 8 data-bits */
400 ,uart
->base
+ UART_LCR
); /* Line Control Register */
402 switch (uart
->adaptor
) {
404 outb(UART_MCR_RTS
/* Set Request-To-Send line active */
405 | UART_MCR_DTR
/* Set Data-Terminal-Ready line active */
406 | UART_MCR_OUT2
/* Set OUT2 - not always required, but when
407 * it is, it is ESSENTIAL for enabling interrupts
409 ,uart
->base
+ UART_MCR
); /* Modem Control Register */
411 case SNDRV_SERIAL_MS124W_SA
:
412 case SNDRV_SERIAL_MS124W_MB
:
413 /* MS-124W can draw power from RTS and DTR if they
414 are in opposite states. */
415 outb(UART_MCR_RTS
| (0&UART_MCR_DTR
) | UART_MCR_OUT2
,
416 uart
->base
+ UART_MCR
);
418 case SNDRV_SERIAL_MS124T
:
419 /* MS-124T can draw power from RTS and/or DTR (preferably
420 both) if they are both asserted. */
421 outb(UART_MCR_RTS
| UART_MCR_DTR
| UART_MCR_OUT2
,
422 uart
->base
+ UART_MCR
);
427 byte
= (0 & UART_IER_RDI
) /* Disable Receiver data interrupt */
428 |(0 & UART_IER_THRI
) /* Disable Transmitter holding register empty interrupt */
430 } else if (uart
->adaptor
== SNDRV_SERIAL_MS124W_SA
) {
431 byte
= UART_IER_RDI
/* Enable Receiver data interrupt */
432 | UART_IER_MSI
/* Enable Modem status interrupt */
434 } else if (uart
->adaptor
== SNDRV_SERIAL_GENERIC
) {
435 byte
= UART_IER_RDI
/* Enable Receiver data interrupt */
436 | UART_IER_MSI
/* Enable Modem status interrupt */
437 | UART_IER_THRI
/* Enable Transmitter holding register empty interrupt */
440 byte
= UART_IER_RDI
/* Enable Receiver data interrupt */
441 | UART_IER_THRI
/* Enable Transmitter holding register empty interrupt */
444 outb(byte
, uart
->base
+ UART_IER
); /* Interrupt enable Register */
446 inb(uart
->base
+ UART_LSR
); /* Clear any pre-existing overrun indication */
447 inb(uart
->base
+ UART_IIR
); /* Clear any pre-existing transmit interrupt */
448 inb(uart
->base
+ UART_RX
); /* Clear any pre-existing receive interrupt */
451 static void snd_uart16550_do_close(struct snd_uart16550
* uart
)
454 snd_uart16550_del_timer(uart
);
456 /* NOTE: may need to disable interrupts before de-registering out handler.
457 * For now, the consequences are harmless.
460 outb((0 & UART_IER_RDI
) /* Disable Receiver data interrupt */
461 |(0 & UART_IER_THRI
) /* Disable Transmitter holding register empty interrupt */
462 ,uart
->base
+ UART_IER
); /* Interrupt enable Register */
464 switch (uart
->adaptor
) {
466 outb((0 & UART_MCR_RTS
) /* Deactivate Request-To-Send line */
467 |(0 & UART_MCR_DTR
) /* Deactivate Data-Terminal-Ready line */
468 |(0 & UART_MCR_OUT2
) /* Deactivate OUT2 */
469 ,uart
->base
+ UART_MCR
); /* Modem Control Register */
471 case SNDRV_SERIAL_MS124W_SA
:
472 case SNDRV_SERIAL_MS124W_MB
:
473 /* MS-124W can draw power from RTS and DTR if they
474 are in opposite states; leave it powered. */
475 outb(UART_MCR_RTS
| (0&UART_MCR_DTR
) | (0&UART_MCR_OUT2
),
476 uart
->base
+ UART_MCR
);
478 case SNDRV_SERIAL_MS124T
:
479 /* MS-124T can draw power from RTS and/or DTR (preferably
480 both) if they are both asserted; leave it powered. */
481 outb(UART_MCR_RTS
| UART_MCR_DTR
| (0&UART_MCR_OUT2
),
482 uart
->base
+ UART_MCR
);
486 inb(uart
->base
+ UART_IIR
); /* Clear any outstanding interrupts */
488 /* Restore old divisor */
489 if (uart
->divisor
!= 0) {
490 outb(UART_LCR_DLAB
/* Divisor latch access bit */
491 ,uart
->base
+ UART_LCR
); /* Line Control Register */
492 outb(uart
->old_divisor_lsb
493 ,uart
->base
+ UART_DLL
); /* Divisor Latch Low */
494 outb(uart
->old_divisor_msb
495 ,uart
->base
+ UART_DLM
); /* Divisor Latch High */
496 /* Restore old LCR (data bits, stop bits, parity, DLAB) */
497 outb(uart
->old_line_ctrl_reg
498 ,uart
->base
+ UART_LCR
); /* Line Control Register */
502 static int snd_uart16550_input_open(struct snd_rawmidi_substream
*substream
)
505 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
507 spin_lock_irqsave(&uart
->open_lock
, flags
);
508 if (uart
->filemode
== SERIAL_MODE_NOT_OPENED
)
509 snd_uart16550_do_open(uart
);
510 uart
->filemode
|= SERIAL_MODE_INPUT_OPEN
;
511 uart
->midi_input
[substream
->number
] = substream
;
512 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
516 static int snd_uart16550_input_close(struct snd_rawmidi_substream
*substream
)
519 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
521 spin_lock_irqsave(&uart
->open_lock
, flags
);
522 uart
->filemode
&= ~SERIAL_MODE_INPUT_OPEN
;
523 uart
->midi_input
[substream
->number
] = NULL
;
524 if (uart
->filemode
== SERIAL_MODE_NOT_OPENED
)
525 snd_uart16550_do_close(uart
);
526 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
530 static void snd_uart16550_input_trigger(struct snd_rawmidi_substream
*substream
,
534 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
536 spin_lock_irqsave(&uart
->open_lock
, flags
);
538 uart
->filemode
|= SERIAL_MODE_INPUT_TRIGGERED
;
540 uart
->filemode
&= ~SERIAL_MODE_INPUT_TRIGGERED
;
541 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
544 static int snd_uart16550_output_open(struct snd_rawmidi_substream
*substream
)
547 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
549 spin_lock_irqsave(&uart
->open_lock
, flags
);
550 if (uart
->filemode
== SERIAL_MODE_NOT_OPENED
)
551 snd_uart16550_do_open(uart
);
552 uart
->filemode
|= SERIAL_MODE_OUTPUT_OPEN
;
553 uart
->midi_output
[substream
->number
] = substream
;
554 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
558 static int snd_uart16550_output_close(struct snd_rawmidi_substream
*substream
)
561 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
563 spin_lock_irqsave(&uart
->open_lock
, flags
);
564 uart
->filemode
&= ~SERIAL_MODE_OUTPUT_OPEN
;
565 uart
->midi_output
[substream
->number
] = NULL
;
566 if (uart
->filemode
== SERIAL_MODE_NOT_OPENED
)
567 snd_uart16550_do_close(uart
);
568 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
572 static inline int snd_uart16550_buffer_can_write(struct snd_uart16550
*uart
,
575 if (uart
->buff_in_count
+ Num
< TX_BUFF_SIZE
)
581 static inline int snd_uart16550_write_buffer(struct snd_uart16550
*uart
,
584 unsigned short buff_in
= uart
->buff_in
;
585 if (uart
->buff_in_count
< TX_BUFF_SIZE
) {
586 uart
->tx_buff
[buff_in
] = byte
;
588 buff_in
&= TX_BUFF_MASK
;
589 uart
->buff_in
= buff_in
;
590 uart
->buff_in_count
++;
591 if (uart
->irq
< 0) /* polling mode */
592 snd_uart16550_add_timer(uart
);
598 static int snd_uart16550_output_byte(struct snd_uart16550
*uart
,
599 struct snd_rawmidi_substream
*substream
,
600 unsigned char midi_byte
)
602 if (uart
->buff_in_count
== 0 /* Buffer empty? */
603 && ((uart
->adaptor
!= SNDRV_SERIAL_MS124W_SA
&&
604 uart
->adaptor
!= SNDRV_SERIAL_GENERIC
) ||
605 (uart
->fifo_count
== 0 /* FIFO empty? */
606 && (inb(uart
->base
+ UART_MSR
) & UART_MSR_CTS
)))) { /* CTS? */
608 /* Tx Buffer Empty - try to write immediately */
609 if ((inb(uart
->base
+ UART_LSR
) & UART_LSR_THRE
) != 0) {
610 /* Transmitter holding register (and Tx FIFO) empty */
611 uart
->fifo_count
= 1;
612 outb(midi_byte
, uart
->base
+ UART_TX
);
614 if (uart
->fifo_count
< uart
->fifo_limit
) {
616 outb(midi_byte
, uart
->base
+ UART_TX
);
618 /* Cannot write (buffer empty) -
619 * put char in buffer */
620 snd_uart16550_write_buffer(uart
, midi_byte
);
624 if (!snd_uart16550_write_buffer(uart
, midi_byte
)) {
625 snd_printk(KERN_WARNING
626 "%s: Buffer overrun on device at 0x%lx\n",
627 uart
->rmidi
->name
, uart
->base
);
635 static void snd_uart16550_output_write(struct snd_rawmidi_substream
*substream
)
638 unsigned char midi_byte
, addr_byte
;
639 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
641 static unsigned long lasttime
= 0;
643 /* Interrupts are disabled during the updating of the tx_buff,
644 * since it is 'bad' to have two processes updating the same
645 * variables (ie buff_in & buff_out)
648 spin_lock_irqsave(&uart
->open_lock
, flags
);
650 if (uart
->irq
< 0) /* polling */
651 snd_uart16550_io_loop(uart
);
653 if (uart
->adaptor
== SNDRV_SERIAL_MS124W_MB
) {
656 /* in this mode we need two bytes of space */
657 if (uart
->buff_in_count
> TX_BUFF_SIZE
- 2)
659 if (snd_rawmidi_transmit(substream
, &midi_byte
, 1) != 1)
661 #ifdef SNDRV_SERIAL_MS124W_MB_NOCOMBO
662 /* select exactly one of the four ports */
663 addr_byte
= (1 << (substream
->number
+ 4)) | 0x08;
665 /* select any combination of the four ports */
666 addr_byte
= (substream
->number
<< 4) | 0x08;
668 if (addr_byte
== 0x08)
671 snd_uart16550_output_byte(uart
, substream
, addr_byte
);
673 snd_uart16550_output_byte(uart
, substream
, midi_byte
);
677 while (snd_rawmidi_transmit_peek(substream
, &midi_byte
, 1) == 1) {
678 /* Also send F5 after 3 seconds with no data
679 * to handle device disconnect */
681 (uart
->adaptor
== SNDRV_SERIAL_SOUNDCANVAS
||
682 uart
->adaptor
== SNDRV_SERIAL_GENERIC
) &&
683 (uart
->prev_out
!= substream
->number
||
684 time_after(jiffies
, lasttime
+ 3*HZ
))) {
686 if (snd_uart16550_buffer_can_write(uart
, 3)) {
687 /* Roland Soundcanvas part selection */
688 /* If this substream of the data is
689 * different previous substream
690 * in this uart, send the change part
693 uart
->prev_out
= substream
->number
;
695 snd_uart16550_output_byte(uart
, substream
,
698 snd_uart16550_output_byte(uart
, substream
,
700 /* If midi_byte is a data byte,
701 * send the previous status byte */
702 if (midi_byte
< 0x80 &&
703 uart
->adaptor
== SNDRV_SERIAL_SOUNDCANVAS
)
704 snd_uart16550_output_byte(uart
, substream
, uart
->prev_status
[uart
->prev_out
]);
705 } else if (!uart
->drop_on_full
)
711 if (!snd_uart16550_output_byte(uart
, substream
, midi_byte
) &&
712 !uart
->drop_on_full
)
715 if (midi_byte
>= 0x80 && midi_byte
< 0xf0)
716 uart
->prev_status
[uart
->prev_out
] = midi_byte
;
719 snd_rawmidi_transmit_ack( substream
, 1 );
723 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
726 static void snd_uart16550_output_trigger(struct snd_rawmidi_substream
*substream
,
730 struct snd_uart16550
*uart
= substream
->rmidi
->private_data
;
732 spin_lock_irqsave(&uart
->open_lock
, flags
);
734 uart
->filemode
|= SERIAL_MODE_OUTPUT_TRIGGERED
;
736 uart
->filemode
&= ~SERIAL_MODE_OUTPUT_TRIGGERED
;
737 spin_unlock_irqrestore(&uart
->open_lock
, flags
);
739 snd_uart16550_output_write(substream
);
742 static const struct snd_rawmidi_ops snd_uart16550_output
=
744 .open
= snd_uart16550_output_open
,
745 .close
= snd_uart16550_output_close
,
746 .trigger
= snd_uart16550_output_trigger
,
749 static const struct snd_rawmidi_ops snd_uart16550_input
=
751 .open
= snd_uart16550_input_open
,
752 .close
= snd_uart16550_input_close
,
753 .trigger
= snd_uart16550_input_trigger
,
756 static int snd_uart16550_free(struct snd_uart16550
*uart
)
759 free_irq(uart
->irq
, uart
);
760 release_and_free_resource(uart
->res_base
);
765 static int snd_uart16550_dev_free(struct snd_device
*device
)
767 struct snd_uart16550
*uart
= device
->device_data
;
768 return snd_uart16550_free(uart
);
771 static int snd_uart16550_create(struct snd_card
*card
,
772 unsigned long iobase
,
778 struct snd_uart16550
**ruart
)
780 static const struct snd_device_ops ops
= {
781 .dev_free
= snd_uart16550_dev_free
,
783 struct snd_uart16550
*uart
;
787 if ((uart
= kzalloc(sizeof(*uart
), GFP_KERNEL
)) == NULL
)
789 uart
->adaptor
= adaptor
;
791 spin_lock_init(&uart
->open_lock
);
794 uart
->drop_on_full
= droponfull
;
796 if ((err
= snd_uart16550_detect(uart
)) <= 0) {
797 printk(KERN_ERR
"no UART detected at 0x%lx\n", iobase
);
798 snd_uart16550_free(uart
);
802 if (irq
>= 0 && irq
!= SNDRV_AUTO_IRQ
) {
803 if (request_irq(irq
, snd_uart16550_interrupt
,
804 0, "Serial MIDI", uart
)) {
805 snd_printk(KERN_WARNING
806 "irq %d busy. Using Polling.\n", irq
);
811 uart
->divisor
= base
/ speed
;
812 uart
->speed
= base
/ (unsigned int)uart
->divisor
;
813 uart
->speed_base
= base
;
817 memset(uart
->prev_status
, 0x80, sizeof(unsigned char) * SNDRV_SERIAL_MAX_OUTS
);
818 timer_setup(&uart
->buffer_timer
, snd_uart16550_buffer_timer
, 0);
819 uart
->timer_running
= 0;
821 /* Register device */
822 if ((err
= snd_device_new(card
, SNDRV_DEV_LOWLEVEL
, uart
, &ops
)) < 0) {
823 snd_uart16550_free(uart
);
827 switch (uart
->adaptor
) {
828 case SNDRV_SERIAL_MS124W_SA
:
829 case SNDRV_SERIAL_MS124W_MB
:
830 /* MS-124W can draw power from RTS and DTR if they
831 are in opposite states. */
832 outb(UART_MCR_RTS
| (0&UART_MCR_DTR
), uart
->base
+ UART_MCR
);
834 case SNDRV_SERIAL_MS124T
:
835 /* MS-124T can draw power from RTS and/or DTR (preferably
836 both) if they are asserted. */
837 outb(UART_MCR_RTS
| UART_MCR_DTR
, uart
->base
+ UART_MCR
);
849 static void snd_uart16550_substreams(struct snd_rawmidi_str
*stream
)
851 struct snd_rawmidi_substream
*substream
;
853 list_for_each_entry(substream
, &stream
->substreams
, list
) {
854 sprintf(substream
->name
, "Serial MIDI %d", substream
->number
+ 1);
858 static int snd_uart16550_rmidi(struct snd_uart16550
*uart
, int device
,
860 struct snd_rawmidi
**rmidi
)
862 struct snd_rawmidi
*rrawmidi
;
865 err
= snd_rawmidi_new(uart
->card
, "UART Serial MIDI", device
,
866 outs
, ins
, &rrawmidi
);
869 snd_rawmidi_set_ops(rrawmidi
, SNDRV_RAWMIDI_STREAM_INPUT
,
870 &snd_uart16550_input
);
871 snd_rawmidi_set_ops(rrawmidi
, SNDRV_RAWMIDI_STREAM_OUTPUT
,
872 &snd_uart16550_output
);
873 strcpy(rrawmidi
->name
, "Serial MIDI");
874 snd_uart16550_substreams(&rrawmidi
->streams
[SNDRV_RAWMIDI_STREAM_OUTPUT
]);
875 snd_uart16550_substreams(&rrawmidi
->streams
[SNDRV_RAWMIDI_STREAM_INPUT
]);
876 rrawmidi
->info_flags
= SNDRV_RAWMIDI_INFO_OUTPUT
|
877 SNDRV_RAWMIDI_INFO_INPUT
|
878 SNDRV_RAWMIDI_INFO_DUPLEX
;
879 rrawmidi
->private_data
= uart
;
885 static int snd_serial_probe(struct platform_device
*devptr
)
887 struct snd_card
*card
;
888 struct snd_uart16550
*uart
;
890 int dev
= devptr
->id
;
892 switch (adaptor
[dev
]) {
893 case SNDRV_SERIAL_SOUNDCANVAS
:
896 case SNDRV_SERIAL_MS124T
:
897 case SNDRV_SERIAL_MS124W_SA
:
901 case SNDRV_SERIAL_MS124W_MB
:
905 case SNDRV_SERIAL_GENERIC
:
909 "Adaptor type is out of range 0-%d (%d)\n",
910 SNDRV_SERIAL_MAX_ADAPTOR
, adaptor
[dev
]);
914 if (outs
[dev
] < 1 || outs
[dev
] > SNDRV_SERIAL_MAX_OUTS
) {
916 "Count of outputs is out of range 1-%d (%d)\n",
917 SNDRV_SERIAL_MAX_OUTS
, outs
[dev
]);
921 if (ins
[dev
] < 1 || ins
[dev
] > SNDRV_SERIAL_MAX_INS
) {
923 "Count of inputs is out of range 1-%d (%d)\n",
924 SNDRV_SERIAL_MAX_INS
, ins
[dev
]);
928 err
= snd_card_new(&devptr
->dev
, index
[dev
], id
[dev
], THIS_MODULE
,
933 strcpy(card
->driver
, "Serial");
934 strcpy(card
->shortname
, "Serial MIDI (UART16550A)");
936 if ((err
= snd_uart16550_create(card
,
946 err
= snd_uart16550_rmidi(uart
, 0, outs
[dev
], ins
[dev
], &uart
->rmidi
);
950 sprintf(card
->longname
, "%s [%s] at %#lx, irq %d",
952 adaptor_names
[uart
->adaptor
],
956 if ((err
= snd_card_register(card
)) < 0)
959 platform_set_drvdata(devptr
, card
);
967 static int snd_serial_remove(struct platform_device
*devptr
)
969 snd_card_free(platform_get_drvdata(devptr
));
973 #define SND_SERIAL_DRIVER "snd_serial_u16550"
975 static struct platform_driver snd_serial_driver
= {
976 .probe
= snd_serial_probe
,
977 .remove
= snd_serial_remove
,
979 .name
= SND_SERIAL_DRIVER
,
983 static void snd_serial_unregister_all(void)
987 for (i
= 0; i
< ARRAY_SIZE(devices
); ++i
)
988 platform_device_unregister(devices
[i
]);
989 platform_driver_unregister(&snd_serial_driver
);
992 static int __init
alsa_card_serial_init(void)
996 if ((err
= platform_driver_register(&snd_serial_driver
)) < 0)
1000 for (i
= 0; i
< SNDRV_CARDS
; i
++) {
1001 struct platform_device
*device
;
1004 device
= platform_device_register_simple(SND_SERIAL_DRIVER
,
1008 if (!platform_get_drvdata(device
)) {
1009 platform_device_unregister(device
);
1012 devices
[i
] = device
;
1017 printk(KERN_ERR
"serial midi soundcard not found or device busy\n");
1019 snd_serial_unregister_all();
1025 static void __exit
alsa_card_serial_exit(void)
1027 snd_serial_unregister_all();
1030 module_init(alsa_card_serial_init
)
1031 module_exit(alsa_card_serial_exit
)