linux/sound/firewire/tascam/tascam.c
Takashi Sakamoto 107cc0129a ALSA: firewire-tascam: add support for incoming MIDI messages by asynchronous transaction
TASCAM FireWire series use asynchronous transaction to transfer MIDI
messages. The transaction is sent to a registered address.

This commit supports the incoming MIDI messages. The messages in the
transaction include some quirks:
 * Two quadlets are used for one MIDI message and one timestamp.
 * Usually, the first byte of the first quadlet includes MIDI port and MSB
   4 bit of MIDI status. For system exclusive message, the first byte
   includes MIDI port and 0x04, or 0x07 in the end of the message.
 * The rest of the first quadlet includes MIDI bytes up to 3.
 * Several set of MIDI messages and timestamp can be transferred in one
   block transaction, up to 8 sets.

I note that TASCAM FireWire series ignores ID bytes of system exclusive
message. When receiving system exclusive messages with ID bytes on physical
MIDI bus, the series transfers the messages without ID bytes on IEEE 1394
bus, and vice versa.

Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2015-10-12 14:16:17 +02:00

221 lines
5.0 KiB
C

/*
* tascam.c - a part of driver for TASCAM FireWire series
*
* Copyright (c) 2015 Takashi Sakamoto
*
* Licensed under the terms of the GNU General Public License, version 2.
*/
#include "tascam.h"
MODULE_DESCRIPTION("TASCAM FireWire series Driver");
MODULE_AUTHOR("Takashi Sakamoto <o-takashi@sakamocchi.jp>");
MODULE_LICENSE("GPL v2");
static struct snd_tscm_spec model_specs[] = {
{
.name = "FW-1884",
.has_adat = true,
.has_spdif = true,
.pcm_capture_analog_channels = 8,
.pcm_playback_analog_channels = 8,
.midi_capture_ports = 4,
.midi_playback_ports = 4,
.is_controller = true,
},
{
.name = "FW-1804",
.has_adat = true,
.has_spdif = true,
.pcm_capture_analog_channels = 8,
.pcm_playback_analog_channels = 2,
.midi_capture_ports = 2,
.midi_playback_ports = 4,
.is_controller = false,
},
{
.name = "FW-1082",
.has_adat = false,
.has_spdif = true,
.pcm_capture_analog_channels = 8,
.pcm_playback_analog_channels = 2,
.midi_capture_ports = 2,
.midi_playback_ports = 2,
.is_controller = true,
},
};
static int check_name(struct snd_tscm *tscm)
{
struct fw_device *fw_dev = fw_parent_device(tscm->unit);
char vendor[8];
char model[8];
__u32 data;
/* Retrieve model name. */
data = be32_to_cpu(fw_dev->config_rom[28]);
memcpy(model, &data, 4);
data = be32_to_cpu(fw_dev->config_rom[29]);
memcpy(model + 4, &data, 4);
model[7] = '\0';
/* Retrieve vendor name. */
data = be32_to_cpu(fw_dev->config_rom[23]);
memcpy(vendor, &data, 4);
data = be32_to_cpu(fw_dev->config_rom[24]);
memcpy(vendor + 4, &data, 4);
vendor[7] = '\0';
strcpy(tscm->card->driver, "FW-TASCAM");
strcpy(tscm->card->shortname, model);
strcpy(tscm->card->mixername, model);
snprintf(tscm->card->longname, sizeof(tscm->card->longname),
"%s %s, GUID %08x%08x at %s, S%d", vendor, model,
cpu_to_be32(fw_dev->config_rom[3]),
cpu_to_be32(fw_dev->config_rom[4]),
dev_name(&tscm->unit->device), 100 << fw_dev->max_speed);
return 0;
}
static void tscm_card_free(struct snd_card *card)
{
struct snd_tscm *tscm = card->private_data;
snd_tscm_transaction_unregister(tscm);
snd_tscm_stream_destroy_duplex(tscm);
fw_unit_put(tscm->unit);
mutex_destroy(&tscm->mutex);
}
static int snd_tscm_probe(struct fw_unit *unit,
const struct ieee1394_device_id *entry)
{
struct snd_card *card;
struct snd_tscm *tscm;
int err;
/* create card */
err = snd_card_new(&unit->device, -1, NULL, THIS_MODULE,
sizeof(struct snd_tscm), &card);
if (err < 0)
return err;
card->private_free = tscm_card_free;
/* initialize myself */
tscm = card->private_data;
tscm->card = card;
tscm->unit = fw_unit_get(unit);
tscm->spec = (const struct snd_tscm_spec *)entry->driver_data;
mutex_init(&tscm->mutex);
spin_lock_init(&tscm->lock);
init_waitqueue_head(&tscm->hwdep_wait);
err = check_name(tscm);
if (err < 0)
goto error;
snd_tscm_proc_init(tscm);
err = snd_tscm_stream_init_duplex(tscm);
if (err < 0)
goto error;
err = snd_tscm_create_pcm_devices(tscm);
if (err < 0)
goto error;
err = snd_tscm_transaction_register(tscm);
if (err < 0)
goto error;
err = snd_tscm_create_hwdep_device(tscm);
if (err < 0)
goto error;
err = snd_card_register(card);
if (err < 0)
goto error;
dev_set_drvdata(&unit->device, tscm);
return err;
error:
snd_card_free(card);
return err;
}
static void snd_tscm_update(struct fw_unit *unit)
{
struct snd_tscm *tscm = dev_get_drvdata(&unit->device);
snd_tscm_transaction_reregister(tscm);
mutex_lock(&tscm->mutex);
snd_tscm_stream_update_duplex(tscm);
mutex_unlock(&tscm->mutex);
}
static void snd_tscm_remove(struct fw_unit *unit)
{
struct snd_tscm *tscm = dev_get_drvdata(&unit->device);
/* No need to wait for releasing card object in this context. */
snd_card_free_when_closed(tscm->card);
}
static const struct ieee1394_device_id snd_tscm_id_table[] = {
/* FW-1082 */
{
.match_flags = IEEE1394_MATCH_VENDOR_ID |
IEEE1394_MATCH_SPECIFIER_ID |
IEEE1394_MATCH_VERSION,
.vendor_id = 0x00022e,
.specifier_id = 0x00022e,
.version = 0x800003,
.driver_data = (kernel_ulong_t)&model_specs[2],
},
/* FW-1884 */
{
.match_flags = IEEE1394_MATCH_VENDOR_ID |
IEEE1394_MATCH_SPECIFIER_ID |
IEEE1394_MATCH_VERSION,
.vendor_id = 0x00022e,
.specifier_id = 0x00022e,
.version = 0x800000,
.driver_data = (kernel_ulong_t)&model_specs[0],
},
/* FW-1804 mey be supported if IDs are clear. */
/* FE-08 requires reverse-engineering because it just has faders. */
{}
};
MODULE_DEVICE_TABLE(ieee1394, snd_tscm_id_table);
static struct fw_driver tscm_driver = {
.driver = {
.owner = THIS_MODULE,
.name = "snd-firewire-tascam",
.bus = &fw_bus_type,
},
.probe = snd_tscm_probe,
.update = snd_tscm_update,
.remove = snd_tscm_remove,
.id_table = snd_tscm_id_table,
};
static int __init snd_tscm_init(void)
{
return driver_register(&tscm_driver.driver);
}
static void __exit snd_tscm_exit(void)
{
driver_unregister(&tscm_driver.driver);
}
module_init(snd_tscm_init);
module_exit(snd_tscm_exit);