1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * ALSA Driver for Ego Systems Inc. (ESI) Miditerminal 4140
4 * Copyright (c) 2006 by Matthias König <mk@phasorlab.de>
7 #include <linux/init.h>
8 #include <linux/platform_device.h>
9 #include <linux/parport.h>
10 #include <linux/spinlock.h>
11 #include <linux/module.h>
12 #include <linux/delay.h>
13 #include <linux/slab.h>
14 #include <sound/core.h>
15 #include <sound/initval.h>
16 #include <sound/rawmidi.h>
17 #include <sound/control.h>
19 #define CARD_NAME "Miditerminal 4140"
20 #define DRIVER_NAME "MTS64"
21 #define PLATFORM_DRIVER "snd_mts64"
23 static int index
[SNDRV_CARDS
] = SNDRV_DEFAULT_IDX
;
24 static char *id
[SNDRV_CARDS
] = SNDRV_DEFAULT_STR
;
25 static bool enable
[SNDRV_CARDS
] = SNDRV_DEFAULT_ENABLE_PNP
;
27 static struct platform_device
*platform_devices
[SNDRV_CARDS
];
28 static int device_count
;
30 module_param_array(index
, int, NULL
, 0444);
31 MODULE_PARM_DESC(index
, "Index value for " CARD_NAME
" soundcard.");
32 module_param_array(id
, charp
, NULL
, 0444);
33 MODULE_PARM_DESC(id
, "ID string for " CARD_NAME
" soundcard.");
34 module_param_array(enable
, bool, NULL
, 0444);
35 MODULE_PARM_DESC(enable
, "Enable " CARD_NAME
" soundcard.");
37 MODULE_AUTHOR("Matthias Koenig <mk@phasorlab.de>");
38 MODULE_DESCRIPTION("ESI Miditerminal 4140");
39 MODULE_LICENSE("GPL");
41 /*********************************************************************
43 *********************************************************************/
44 #define MTS64_NUM_INPUT_PORTS 5
45 #define MTS64_NUM_OUTPUT_PORTS 4
46 #define MTS64_SMPTE_SUBSTREAM 4
50 struct snd_card
*card
;
51 struct snd_rawmidi
*rmidi
;
52 struct pardevice
*pardev
;
54 int current_midi_output_port
;
55 int current_midi_input_port
;
56 u8 mode
[MTS64_NUM_INPUT_PORTS
];
57 struct snd_rawmidi_substream
*midi_input_substream
[MTS64_NUM_INPUT_PORTS
];
59 u8 time
[4]; /* [0]=hh, [1]=mm, [2]=ss, [3]=ff */
63 static int snd_mts64_free(struct mts64
*mts
)
69 static int snd_mts64_create(struct snd_card
*card
,
70 struct pardevice
*pardev
,
77 mts
= kzalloc(sizeof(struct mts64
), GFP_KERNEL
);
81 /* Init chip specific data */
82 spin_lock_init(&mts
->lock
);
85 mts
->current_midi_output_port
= -1;
86 mts
->current_midi_input_port
= -1;
93 /*********************************************************************
94 * HW register related constants
95 *********************************************************************/
98 #define MTS64_STAT_BSY 0x80
99 #define MTS64_STAT_BIT_SET 0x20 /* readout process, bit is set */
100 #define MTS64_STAT_PORT 0x10 /* read byte is a port number */
103 #define MTS64_CTL_READOUT 0x08 /* enable readout */
104 #define MTS64_CTL_WRITE_CMD 0x06
105 #define MTS64_CTL_WRITE_DATA 0x02
106 #define MTS64_CTL_STROBE 0x01
109 #define MTS64_CMD_RESET 0xfe
110 #define MTS64_CMD_PROBE 0x8f /* Used in probing procedure */
111 #define MTS64_CMD_SMPTE_SET_TIME 0xe8
112 #define MTS64_CMD_SMPTE_SET_FPS 0xee
113 #define MTS64_CMD_SMPTE_STOP 0xef
114 #define MTS64_CMD_SMPTE_FPS_24 0xe3
115 #define MTS64_CMD_SMPTE_FPS_25 0xe2
116 #define MTS64_CMD_SMPTE_FPS_2997 0xe4
117 #define MTS64_CMD_SMPTE_FPS_30D 0xe1
118 #define MTS64_CMD_SMPTE_FPS_30 0xe0
119 #define MTS64_CMD_COM_OPEN 0xf8 /* setting the communication mode */
120 #define MTS64_CMD_COM_CLOSE1 0xff /* clearing communication mode */
121 #define MTS64_CMD_COM_CLOSE2 0xf5
123 /*********************************************************************
124 * Hardware specific functions
125 *********************************************************************/
126 static void mts64_enable_readout(struct parport
*p
);
127 static void mts64_disable_readout(struct parport
*p
);
128 static int mts64_device_ready(struct parport
*p
);
129 static int mts64_device_init(struct parport
*p
);
130 static int mts64_device_open(struct mts64
*mts
);
131 static int mts64_device_close(struct mts64
*mts
);
132 static u8
mts64_map_midi_input(u8 c
);
133 static int mts64_probe(struct parport
*p
);
134 static u16
mts64_read(struct parport
*p
);
135 static u8
mts64_read_char(struct parport
*p
);
136 static void mts64_smpte_start(struct parport
*p
,
137 u8 hours
, u8 minutes
,
138 u8 seconds
, u8 frames
,
140 static void mts64_smpte_stop(struct parport
*p
);
141 static void mts64_write_command(struct parport
*p
, u8 c
);
142 static void mts64_write_data(struct parport
*p
, u8 c
);
143 static void mts64_write_midi(struct mts64
*mts
, u8 c
, int midiport
);
146 /* Enables the readout procedure
148 * Before we can read a midi byte from the device, we have to set
149 * bit 3 of control port.
151 static void mts64_enable_readout(struct parport
*p
)
155 c
= parport_read_control(p
);
156 c
|= MTS64_CTL_READOUT
;
157 parport_write_control(p
, c
);
162 * Readout is disabled by clearing bit 3 of control
164 static void mts64_disable_readout(struct parport
*p
)
168 c
= parport_read_control(p
);
169 c
&= ~MTS64_CTL_READOUT
;
170 parport_write_control(p
, c
);
173 /* waits for device ready
175 * Checks if BUSY (Bit 7 of status) is clear
179 static int mts64_device_ready(struct parport
*p
)
184 for (i
= 0; i
< 0xffff; ++i
) {
185 c
= parport_read_status(p
);
194 /* Init device (LED blinking startup magic)
200 static int mts64_device_init(struct parport
*p
)
204 mts64_write_command(p
, MTS64_CMD_RESET
);
206 for (i
= 0; i
< 64; ++i
) {
209 if (mts64_probe(p
) == 0) {
211 mts64_disable_readout(p
);
215 mts64_disable_readout(p
);
221 * Opens the device (set communication mode)
223 static int mts64_device_open(struct mts64
*mts
)
226 struct parport
*p
= mts
->pardev
->port
;
228 for (i
= 0; i
< 5; ++i
)
229 mts64_write_command(p
, MTS64_CMD_COM_OPEN
);
235 * Close device (clear communication mode)
237 static int mts64_device_close(struct mts64
*mts
)
240 struct parport
*p
= mts
->pardev
->port
;
242 for (i
= 0; i
< 5; ++i
) {
243 mts64_write_command(p
, MTS64_CMD_COM_CLOSE1
);
244 mts64_write_command(p
, MTS64_CMD_COM_CLOSE2
);
250 /* map hardware port to substream number
252 * When reading a byte from the device, the device tells us
253 * on what port the byte is. This HW port has to be mapped to
254 * the midiport (substream number).
255 * substream 0-3 are Midiports 1-4
256 * substream 4 is SMPTE Timecode
257 * The mapping is done by the table:
258 * HW | 0 | 1 | 2 | 3 | 4
259 * SW | 0 | 1 | 4 | 2 | 3
261 static u8
mts64_map_midi_input(u8 c
)
263 static const u8 map
[] = { 0, 1, 4, 2, 3 };
269 /* Probe parport for device
271 * Do we have a Miditerminal 4140 on parport?
276 static int mts64_probe(struct parport
*p
)
281 mts64_write_command(p
, MTS64_CMD_PROBE
);
288 if (c
!= MTS64_CMD_PROBE
)
295 /* Read byte incl. status from device
298 * data in lower 8 bits and status in upper 8 bits
300 static u16
mts64_read(struct parport
*p
)
304 mts64_device_ready(p
);
305 mts64_enable_readout(p
);
306 status
= parport_read_status(p
);
307 data
= mts64_read_char(p
);
308 mts64_disable_readout(p
);
310 return (status
<< 8) | data
;
313 /* Read a byte from device
315 * Note, that readout mode has to be enabled.
316 * readout procedure is as follows:
317 * - Write number of the Bit to read to DATA
319 * - Bit 5 of STATUS indicates if Bit is set
322 * Byte read from device
324 static u8
mts64_read_char(struct parport
*p
)
330 for (i
= 0; i
< 8; ++i
) {
331 parport_write_data(p
, i
);
333 status
= parport_read_status(p
);
334 if (status
& MTS64_STAT_BIT_SET
)
341 /* Starts SMPTE Timecode generation
343 * The device creates SMPTE Timecode by hardware.
347 * 3 30 fps (Drop-frame)
350 static void mts64_smpte_start(struct parport
*p
,
351 u8 hours
, u8 minutes
,
352 u8 seconds
, u8 frames
,
355 static const u8 fps
[5] = { MTS64_CMD_SMPTE_FPS_24
,
356 MTS64_CMD_SMPTE_FPS_25
,
357 MTS64_CMD_SMPTE_FPS_2997
,
358 MTS64_CMD_SMPTE_FPS_30D
,
359 MTS64_CMD_SMPTE_FPS_30
};
361 mts64_write_command(p
, MTS64_CMD_SMPTE_SET_TIME
);
362 mts64_write_command(p
, frames
);
363 mts64_write_command(p
, seconds
);
364 mts64_write_command(p
, minutes
);
365 mts64_write_command(p
, hours
);
367 mts64_write_command(p
, MTS64_CMD_SMPTE_SET_FPS
);
368 mts64_write_command(p
, fps
[idx
]);
371 /* Stops SMPTE Timecode generation
373 static void mts64_smpte_stop(struct parport
*p
)
375 mts64_write_command(p
, MTS64_CMD_SMPTE_STOP
);
378 /* Write a command byte to device
380 static void mts64_write_command(struct parport
*p
, u8 c
)
382 mts64_device_ready(p
);
384 parport_write_data(p
, c
);
386 parport_write_control(p
, MTS64_CTL_WRITE_CMD
);
387 parport_write_control(p
, MTS64_CTL_WRITE_CMD
| MTS64_CTL_STROBE
);
388 parport_write_control(p
, MTS64_CTL_WRITE_CMD
);
391 /* Write a data byte to device
393 static void mts64_write_data(struct parport
*p
, u8 c
)
395 mts64_device_ready(p
);
397 parport_write_data(p
, c
);
399 parport_write_control(p
, MTS64_CTL_WRITE_DATA
);
400 parport_write_control(p
, MTS64_CTL_WRITE_DATA
| MTS64_CTL_STROBE
);
401 parport_write_control(p
, MTS64_CTL_WRITE_DATA
);
404 /* Write a MIDI byte to midiport
406 * midiport ranges from 0-3 and maps to Ports 1-4
407 * assumptions: communication mode is on
409 static void mts64_write_midi(struct mts64
*mts
, u8 c
,
412 struct parport
*p
= mts
->pardev
->port
;
414 /* check current midiport */
415 if (mts
->current_midi_output_port
!= midiport
)
416 mts64_write_command(p
, midiport
);
418 /* write midi byte */
419 mts64_write_data(p
, c
);
422 /*********************************************************************
424 *********************************************************************/
427 #define snd_mts64_ctl_smpte_switch_info snd_ctl_boolean_mono_info
429 static int snd_mts64_ctl_smpte_switch_get(struct snd_kcontrol
* kctl
,
430 struct snd_ctl_elem_value
*uctl
)
432 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
434 spin_lock_irq(&mts
->lock
);
435 uctl
->value
.integer
.value
[0] = mts
->smpte_switch
;
436 spin_unlock_irq(&mts
->lock
);
441 /* smpte_switch is not accessed from IRQ handler, so we just need
442 to protect the HW access */
443 static int snd_mts64_ctl_smpte_switch_put(struct snd_kcontrol
* kctl
,
444 struct snd_ctl_elem_value
*uctl
)
446 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
448 int val
= !!uctl
->value
.integer
.value
[0];
450 spin_lock_irq(&mts
->lock
);
451 if (mts
->smpte_switch
== val
)
455 mts
->smpte_switch
= val
;
456 if (mts
->smpte_switch
) {
457 mts64_smpte_start(mts
->pardev
->port
,
458 mts
->time
[0], mts
->time
[1],
459 mts
->time
[2], mts
->time
[3],
462 mts64_smpte_stop(mts
->pardev
->port
);
465 spin_unlock_irq(&mts
->lock
);
469 static const struct snd_kcontrol_new mts64_ctl_smpte_switch
= {
470 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
471 .name
= "SMPTE Playback Switch",
473 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
475 .info
= snd_mts64_ctl_smpte_switch_info
,
476 .get
= snd_mts64_ctl_smpte_switch_get
,
477 .put
= snd_mts64_ctl_smpte_switch_put
481 static int snd_mts64_ctl_smpte_time_h_info(struct snd_kcontrol
*kctl
,
482 struct snd_ctl_elem_info
*uinfo
)
484 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
486 uinfo
->value
.integer
.min
= 0;
487 uinfo
->value
.integer
.max
= 23;
491 static int snd_mts64_ctl_smpte_time_f_info(struct snd_kcontrol
*kctl
,
492 struct snd_ctl_elem_info
*uinfo
)
494 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
496 uinfo
->value
.integer
.min
= 0;
497 uinfo
->value
.integer
.max
= 99;
501 static int snd_mts64_ctl_smpte_time_info(struct snd_kcontrol
*kctl
,
502 struct snd_ctl_elem_info
*uinfo
)
504 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
506 uinfo
->value
.integer
.min
= 0;
507 uinfo
->value
.integer
.max
= 59;
511 static int snd_mts64_ctl_smpte_time_get(struct snd_kcontrol
*kctl
,
512 struct snd_ctl_elem_value
*uctl
)
514 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
515 int idx
= kctl
->private_value
;
517 spin_lock_irq(&mts
->lock
);
518 uctl
->value
.integer
.value
[0] = mts
->time
[idx
];
519 spin_unlock_irq(&mts
->lock
);
524 static int snd_mts64_ctl_smpte_time_put(struct snd_kcontrol
*kctl
,
525 struct snd_ctl_elem_value
*uctl
)
527 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
528 int idx
= kctl
->private_value
;
529 unsigned int time
= uctl
->value
.integer
.value
[0] % 60;
532 spin_lock_irq(&mts
->lock
);
533 if (mts
->time
[idx
] != time
) {
535 mts
->time
[idx
] = time
;
537 spin_unlock_irq(&mts
->lock
);
542 static const struct snd_kcontrol_new mts64_ctl_smpte_time_hours
= {
543 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
544 .name
= "SMPTE Time Hours",
546 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
548 .info
= snd_mts64_ctl_smpte_time_h_info
,
549 .get
= snd_mts64_ctl_smpte_time_get
,
550 .put
= snd_mts64_ctl_smpte_time_put
553 static const struct snd_kcontrol_new mts64_ctl_smpte_time_minutes
= {
554 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
555 .name
= "SMPTE Time Minutes",
557 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
559 .info
= snd_mts64_ctl_smpte_time_info
,
560 .get
= snd_mts64_ctl_smpte_time_get
,
561 .put
= snd_mts64_ctl_smpte_time_put
564 static const struct snd_kcontrol_new mts64_ctl_smpte_time_seconds
= {
565 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
566 .name
= "SMPTE Time Seconds",
568 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
570 .info
= snd_mts64_ctl_smpte_time_info
,
571 .get
= snd_mts64_ctl_smpte_time_get
,
572 .put
= snd_mts64_ctl_smpte_time_put
575 static const struct snd_kcontrol_new mts64_ctl_smpte_time_frames
= {
576 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
577 .name
= "SMPTE Time Frames",
579 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
581 .info
= snd_mts64_ctl_smpte_time_f_info
,
582 .get
= snd_mts64_ctl_smpte_time_get
,
583 .put
= snd_mts64_ctl_smpte_time_put
587 static int snd_mts64_ctl_smpte_fps_info(struct snd_kcontrol
*kctl
,
588 struct snd_ctl_elem_info
*uinfo
)
590 static const char * const texts
[5] = {
591 "24", "25", "29.97", "30D", "30"
594 return snd_ctl_enum_info(uinfo
, 1, 5, texts
);
597 static int snd_mts64_ctl_smpte_fps_get(struct snd_kcontrol
*kctl
,
598 struct snd_ctl_elem_value
*uctl
)
600 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
602 spin_lock_irq(&mts
->lock
);
603 uctl
->value
.enumerated
.item
[0] = mts
->fps
;
604 spin_unlock_irq(&mts
->lock
);
609 static int snd_mts64_ctl_smpte_fps_put(struct snd_kcontrol
*kctl
,
610 struct snd_ctl_elem_value
*uctl
)
612 struct mts64
*mts
= snd_kcontrol_chip(kctl
);
615 if (uctl
->value
.enumerated
.item
[0] >= 5)
617 spin_lock_irq(&mts
->lock
);
618 if (mts
->fps
!= uctl
->value
.enumerated
.item
[0]) {
620 mts
->fps
= uctl
->value
.enumerated
.item
[0];
622 spin_unlock_irq(&mts
->lock
);
627 static const struct snd_kcontrol_new mts64_ctl_smpte_fps
= {
628 .iface
= SNDRV_CTL_ELEM_IFACE_RAWMIDI
,
631 .access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
,
633 .info
= snd_mts64_ctl_smpte_fps_info
,
634 .get
= snd_mts64_ctl_smpte_fps_get
,
635 .put
= snd_mts64_ctl_smpte_fps_put
639 static int snd_mts64_ctl_create(struct snd_card
*card
,
643 static const struct snd_kcontrol_new
*control
[] = {
644 &mts64_ctl_smpte_switch
,
645 &mts64_ctl_smpte_time_hours
,
646 &mts64_ctl_smpte_time_minutes
,
647 &mts64_ctl_smpte_time_seconds
,
648 &mts64_ctl_smpte_time_frames
,
649 &mts64_ctl_smpte_fps
,
652 for (i
= 0; control
[i
]; ++i
) {
653 err
= snd_ctl_add(card
, snd_ctl_new1(control
[i
], mts
));
655 dev_dbg(card
->dev
, "Cannot create control: %s\n",
664 /*********************************************************************
666 *********************************************************************/
667 #define MTS64_MODE_INPUT_TRIGGERED 0x01
669 static int snd_mts64_rawmidi_open(struct snd_rawmidi_substream
*substream
)
671 struct mts64
*mts
= substream
->rmidi
->private_data
;
673 if (mts
->open_count
== 0) {
674 /* We don't need a spinlock here, because this is just called
675 if the device has not been opened before.
676 So there aren't any IRQs from the device */
677 mts64_device_open(mts
);
686 static int snd_mts64_rawmidi_close(struct snd_rawmidi_substream
*substream
)
688 struct mts64
*mts
= substream
->rmidi
->private_data
;
692 if (mts
->open_count
== 0) {
693 /* We need the spinlock_irqsave here because we can still
694 have IRQs at this point */
695 spin_lock_irqsave(&mts
->lock
, flags
);
696 mts64_device_close(mts
);
697 spin_unlock_irqrestore(&mts
->lock
, flags
);
701 } else if (mts
->open_count
< 0)
707 static void snd_mts64_rawmidi_output_trigger(struct snd_rawmidi_substream
*substream
,
710 struct mts64
*mts
= substream
->rmidi
->private_data
;
714 spin_lock_irqsave(&mts
->lock
, flags
);
715 while (snd_rawmidi_transmit_peek(substream
, &data
, 1) == 1) {
716 mts64_write_midi(mts
, data
, substream
->number
+1);
717 snd_rawmidi_transmit_ack(substream
, 1);
719 spin_unlock_irqrestore(&mts
->lock
, flags
);
722 static void snd_mts64_rawmidi_input_trigger(struct snd_rawmidi_substream
*substream
,
725 struct mts64
*mts
= substream
->rmidi
->private_data
;
728 spin_lock_irqsave(&mts
->lock
, flags
);
730 mts
->mode
[substream
->number
] |= MTS64_MODE_INPUT_TRIGGERED
;
732 mts
->mode
[substream
->number
] &= ~MTS64_MODE_INPUT_TRIGGERED
;
734 spin_unlock_irqrestore(&mts
->lock
, flags
);
737 static const struct snd_rawmidi_ops snd_mts64_rawmidi_output_ops
= {
738 .open
= snd_mts64_rawmidi_open
,
739 .close
= snd_mts64_rawmidi_close
,
740 .trigger
= snd_mts64_rawmidi_output_trigger
743 static const struct snd_rawmidi_ops snd_mts64_rawmidi_input_ops
= {
744 .open
= snd_mts64_rawmidi_open
,
745 .close
= snd_mts64_rawmidi_close
,
746 .trigger
= snd_mts64_rawmidi_input_trigger
749 /* Create and initialize the rawmidi component */
750 static int snd_mts64_rawmidi_create(struct snd_card
*card
)
752 struct mts64
*mts
= card
->private_data
;
753 struct snd_rawmidi
*rmidi
;
754 struct snd_rawmidi_substream
*substream
;
755 struct list_head
*list
;
758 err
= snd_rawmidi_new(card
, CARD_NAME
, 0,
759 MTS64_NUM_OUTPUT_PORTS
,
760 MTS64_NUM_INPUT_PORTS
,
765 rmidi
->private_data
= mts
;
766 strcpy(rmidi
->name
, CARD_NAME
);
767 rmidi
->info_flags
= SNDRV_RAWMIDI_INFO_OUTPUT
|
768 SNDRV_RAWMIDI_INFO_INPUT
|
769 SNDRV_RAWMIDI_INFO_DUPLEX
;
773 /* register rawmidi ops */
774 snd_rawmidi_set_ops(rmidi
, SNDRV_RAWMIDI_STREAM_OUTPUT
,
775 &snd_mts64_rawmidi_output_ops
);
776 snd_rawmidi_set_ops(rmidi
, SNDRV_RAWMIDI_STREAM_INPUT
,
777 &snd_mts64_rawmidi_input_ops
);
779 /* name substreams */
782 &rmidi
->streams
[SNDRV_RAWMIDI_STREAM_OUTPUT
].substreams
) {
783 substream
= list_entry(list
, struct snd_rawmidi_substream
, list
);
784 sprintf(substream
->name
,
785 "Miditerminal %d", substream
->number
+1);
789 &rmidi
->streams
[SNDRV_RAWMIDI_STREAM_INPUT
].substreams
) {
790 substream
= list_entry(list
, struct snd_rawmidi_substream
, list
);
791 mts
->midi_input_substream
[substream
->number
] = substream
;
792 switch(substream
->number
) {
793 case MTS64_SMPTE_SUBSTREAM
:
794 strcpy(substream
->name
, "Miditerminal SMPTE");
797 sprintf(substream
->name
,
798 "Miditerminal %d", substream
->number
+1);
803 err
= snd_mts64_ctl_create(card
, mts
);
808 /*********************************************************************
810 *********************************************************************/
811 static void snd_mts64_interrupt(void *private)
813 struct mts64
*mts
= ((struct snd_card
*)private)->private_data
;
816 struct snd_rawmidi_substream
*substream
;
821 spin_lock(&mts
->lock
);
822 ret
= mts64_read(mts
->pardev
->port
);
826 if (status
& MTS64_STAT_PORT
) {
827 mts
->current_midi_input_port
= mts64_map_midi_input(data
);
829 if (mts
->current_midi_input_port
== -1)
831 substream
= mts
->midi_input_substream
[mts
->current_midi_input_port
];
832 if (mts
->mode
[substream
->number
] & MTS64_MODE_INPUT_TRIGGERED
)
833 snd_rawmidi_receive(substream
, &data
, 1);
836 spin_unlock(&mts
->lock
);
839 static void snd_mts64_attach(struct parport
*p
)
841 struct platform_device
*device
;
843 device
= platform_device_alloc(PLATFORM_DRIVER
, device_count
);
847 /* Temporary assignment to forward the parport */
848 platform_set_drvdata(device
, p
);
850 if (platform_device_add(device
) < 0) {
851 platform_device_put(device
);
855 /* Since we dont get the return value of probe
856 * We need to check if device probing succeeded or not */
857 if (!platform_get_drvdata(device
)) {
858 platform_device_unregister(device
);
862 /* register device in global table */
863 platform_devices
[device_count
] = device
;
867 static void snd_mts64_detach(struct parport
*p
)
869 /* nothing to do here */
872 static int snd_mts64_dev_probe(struct pardevice
*pardev
)
874 if (strcmp(pardev
->name
, DRIVER_NAME
))
880 static struct parport_driver mts64_parport_driver
= {
882 .probe
= snd_mts64_dev_probe
,
883 .match_port
= snd_mts64_attach
,
884 .detach
= snd_mts64_detach
,
887 /*********************************************************************
889 *********************************************************************/
890 static void snd_mts64_card_private_free(struct snd_card
*card
)
892 struct mts64
*mts
= card
->private_data
;
893 struct pardevice
*pardev
= mts
->pardev
;
896 parport_release(pardev
);
897 parport_unregister_device(pardev
);
903 static int snd_mts64_probe(struct platform_device
*pdev
)
905 struct pardevice
*pardev
;
908 struct snd_card
*card
= NULL
;
909 struct mts64
*mts
= NULL
;
911 struct pardev_cb mts64_cb
= {
914 .irq_func
= snd_mts64_interrupt
, /* ISR */
915 .flags
= PARPORT_DEV_EXCL
, /* flags */
918 p
= platform_get_drvdata(pdev
);
919 platform_set_drvdata(pdev
, NULL
);
921 if (dev
>= SNDRV_CARDS
)
926 err
= snd_card_new(&pdev
->dev
, index
[dev
], id
[dev
], THIS_MODULE
,
929 dev_dbg(&pdev
->dev
, "Cannot create card\n");
932 strcpy(card
->driver
, DRIVER_NAME
);
933 strcpy(card
->shortname
, "ESI " CARD_NAME
);
934 sprintf(card
->longname
, "%s at 0x%lx, irq %i",
935 card
->shortname
, p
->base
, p
->irq
);
937 mts64_cb
.private = card
; /* private */
938 pardev
= parport_register_dev_model(p
, /* port */
939 DRIVER_NAME
, /* name */
940 &mts64_cb
, /* callbacks */
941 pdev
->id
); /* device number */
943 dev_dbg(card
->dev
, "Cannot register pardevice\n");
949 if (parport_claim(pardev
)) {
950 dev_dbg(card
->dev
, "Cannot claim parport 0x%lx\n", pardev
->port
->base
);
955 err
= snd_mts64_create(card
, pardev
, &mts
);
957 dev_dbg(card
->dev
, "Cannot create main component\n");
960 card
->private_data
= mts
;
961 card
->private_free
= snd_mts64_card_private_free
;
963 err
= mts64_probe(p
);
969 err
= snd_mts64_rawmidi_create(card
);
971 dev_dbg(card
->dev
, "Creating Rawmidi component failed\n");
976 err
= mts64_device_init(p
);
980 platform_set_drvdata(pdev
, card
);
982 /* At this point card will be usable */
983 err
= snd_card_register(card
);
985 dev_dbg(card
->dev
, "Cannot register card\n");
989 dev_info(card
->dev
, "ESI Miditerminal 4140 on 0x%lx\n", p
->base
);
993 parport_release(pardev
);
995 parport_unregister_device(pardev
);
1001 static void snd_mts64_remove(struct platform_device
*pdev
)
1003 struct snd_card
*card
= platform_get_drvdata(pdev
);
1006 snd_card_free(card
);
1009 static struct platform_driver snd_mts64_driver
= {
1010 .probe
= snd_mts64_probe
,
1011 .remove
= snd_mts64_remove
,
1013 .name
= PLATFORM_DRIVER
,
1017 /*********************************************************************
1019 *********************************************************************/
1020 static void snd_mts64_unregister_all(void)
1024 for (i
= 0; i
< SNDRV_CARDS
; ++i
) {
1025 if (platform_devices
[i
]) {
1026 platform_device_unregister(platform_devices
[i
]);
1027 platform_devices
[i
] = NULL
;
1030 platform_driver_unregister(&snd_mts64_driver
);
1031 parport_unregister_driver(&mts64_parport_driver
);
1034 static int __init
snd_mts64_module_init(void)
1038 err
= platform_driver_register(&snd_mts64_driver
);
1042 if (parport_register_driver(&mts64_parport_driver
) != 0) {
1043 platform_driver_unregister(&snd_mts64_driver
);
1047 if (device_count
== 0) {
1048 snd_mts64_unregister_all();
1055 static void __exit
snd_mts64_module_exit(void)
1057 snd_mts64_unregister_all();
1060 module_init(snd_mts64_module_init
);
1061 module_exit(snd_mts64_module_exit
);