2 * Copyright (c) by Uros Bizjak <uros@kss-loka.si>
4 * Midi Sequencer interface routines for OPL2/OPL3/OPL4 FM
6 * OPL2/3 FM instrument loader:
7 * alsa-tools/seq/sbiload/
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
25 #include "opl3_voice.h"
26 #include <linux/init.h>
27 #include <linux/moduleparam.h>
28 #include <sound/initval.h>
30 MODULE_AUTHOR("Uros Bizjak <uros@kss-loka.si>");
31 MODULE_LICENSE("GPL");
32 MODULE_DESCRIPTION("ALSA driver for OPL3 FM synth");
34 int use_internal_drums
= 0;
35 module_param(use_internal_drums
, bool, 0444);
36 MODULE_PARM_DESC(use_internal_drums
, "Enable internal OPL2/3 drums.");
38 int snd_opl3_synth_use_inc(struct snd_opl3
* opl3
)
40 if (!try_module_get(opl3
->card
->module
))
46 void snd_opl3_synth_use_dec(struct snd_opl3
* opl3
)
48 module_put(opl3
->card
->module
);
51 int snd_opl3_synth_setup(struct snd_opl3
* opl3
)
55 mutex_lock(&opl3
->access_mutex
);
57 mutex_unlock(&opl3
->access_mutex
);
61 mutex_unlock(&opl3
->access_mutex
);
65 for (idx
= 0; idx
< MAX_OPL3_VOICES
; idx
++) {
66 opl3
->voices
[idx
].state
= SNDRV_OPL3_ST_OFF
;
67 opl3
->voices
[idx
].time
= 0;
68 opl3
->voices
[idx
].keyon_reg
= 0x00;
71 opl3
->connection_reg
= 0x00;
72 if (opl3
->hardware
>= OPL3_HW_OPL3
) {
73 /* Clear 4-op connections */
74 opl3
->command(opl3
, OPL3_RIGHT
| OPL3_REG_CONNECTION_SELECT
,
75 opl3
->connection_reg
);
76 opl3
->max_voices
= MAX_OPL3_VOICES
;
81 void snd_opl3_synth_cleanup(struct snd_opl3
* opl3
)
85 /* Stop system timer */
86 spin_lock_irqsave(&opl3
->sys_timer_lock
, flags
);
87 if (opl3
->sys_timer_status
) {
88 del_timer(&opl3
->tlist
);
89 opl3
->sys_timer_status
= 0;
91 spin_unlock_irqrestore(&opl3
->sys_timer_lock
, flags
);
94 mutex_lock(&opl3
->access_mutex
);
96 mutex_unlock(&opl3
->access_mutex
);
99 static int snd_opl3_synth_use(void *private_data
, struct snd_seq_port_subscribe
* info
)
101 struct snd_opl3
*opl3
= private_data
;
104 if ((err
= snd_opl3_synth_setup(opl3
)) < 0)
107 if (use_internal_drums
) {
108 /* Percussion mode */
109 opl3
->voices
[6].state
= opl3
->voices
[7].state
=
110 opl3
->voices
[8].state
= SNDRV_OPL3_ST_NOT_AVAIL
;
111 snd_opl3_load_drums(opl3
);
112 opl3
->drum_reg
= OPL3_PERCUSSION_ENABLE
;
113 opl3
->command(opl3
, OPL3_LEFT
| OPL3_REG_PERCUSSION
, opl3
->drum_reg
);
115 opl3
->drum_reg
= 0x00;
118 if (info
->sender
.client
!= SNDRV_SEQ_CLIENT_SYSTEM
) {
119 if ((err
= snd_opl3_synth_use_inc(opl3
)) < 0)
122 opl3
->synth_mode
= SNDRV_OPL3_MODE_SEQ
;
126 static int snd_opl3_synth_unuse(void *private_data
, struct snd_seq_port_subscribe
* info
)
128 struct snd_opl3
*opl3
= private_data
;
130 snd_opl3_synth_cleanup(opl3
);
132 if (info
->sender
.client
!= SNDRV_SEQ_CLIENT_SYSTEM
)
133 snd_opl3_synth_use_dec(opl3
);
138 * MIDI emulation operators
140 struct snd_midi_op opl3_ops
= {
141 .note_on
= snd_opl3_note_on
,
142 .note_off
= snd_opl3_note_off
,
143 .key_press
= snd_opl3_key_press
,
144 .note_terminate
= snd_opl3_terminate_note
,
145 .control
= snd_opl3_control
,
146 .nrpn
= snd_opl3_nrpn
,
147 .sysex
= snd_opl3_sysex
,
150 static int snd_opl3_synth_event_input(struct snd_seq_event
* ev
, int direct
,
151 void *private_data
, int atomic
, int hop
)
153 struct snd_opl3
*opl3
= private_data
;
155 if (ev
->type
>= SNDRV_SEQ_EVENT_INSTR_BEGIN
&&
156 ev
->type
<= SNDRV_SEQ_EVENT_INSTR_CHANGE
) {
158 snd_seq_instr_event(&opl3
->fm_ops
, opl3
->ilist
, ev
,
159 opl3
->seq_client
, atomic
, hop
);
162 snd_midi_process_event(&opl3_ops
, ev
, opl3
->chset
);
167 /* ------------------------------ */
169 static void snd_opl3_synth_free_port(void *private_data
)
171 struct snd_opl3
*opl3
= private_data
;
173 snd_midi_channel_free_set(opl3
->chset
);
176 static int snd_opl3_synth_create_port(struct snd_opl3
* opl3
)
178 struct snd_seq_port_callback callbacks
;
182 voices
= (opl3
->hardware
< OPL3_HW_OPL3
) ?
183 MAX_OPL2_VOICES
: MAX_OPL3_VOICES
;
184 opl3
->chset
= snd_midi_channel_alloc_set(16);
185 if (opl3
->chset
== NULL
)
187 opl3
->chset
->private_data
= opl3
;
189 memset(&callbacks
, 0, sizeof(callbacks
));
190 callbacks
.owner
= THIS_MODULE
;
191 callbacks
.use
= snd_opl3_synth_use
;
192 callbacks
.unuse
= snd_opl3_synth_unuse
;
193 callbacks
.event_input
= snd_opl3_synth_event_input
;
194 callbacks
.private_free
= snd_opl3_synth_free_port
;
195 callbacks
.private_data
= opl3
;
197 opl_ver
= (opl3
->hardware
& OPL3_HW_MASK
) >> 8;
198 sprintf(name
, "OPL%i FM Port", opl_ver
);
200 opl3
->chset
->client
= opl3
->seq_client
;
201 opl3
->chset
->port
= snd_seq_event_port_attach(opl3
->seq_client
, &callbacks
,
202 SNDRV_SEQ_PORT_CAP_WRITE
|
203 SNDRV_SEQ_PORT_CAP_SUBS_WRITE
,
204 SNDRV_SEQ_PORT_TYPE_MIDI_GENERIC
|
205 SNDRV_SEQ_PORT_TYPE_MIDI_GM
|
206 SNDRV_SEQ_PORT_TYPE_DIRECT_SAMPLE
|
207 SNDRV_SEQ_PORT_TYPE_HARDWARE
|
208 SNDRV_SEQ_PORT_TYPE_SYNTHESIZER
,
211 if (opl3
->chset
->port
< 0) {
213 port
= opl3
->chset
->port
;
214 snd_midi_channel_free_set(opl3
->chset
);
220 /* ------------------------------ */
222 static int snd_opl3_seq_new_device(struct snd_seq_device
*dev
)
224 struct snd_opl3
*opl3
;
229 opl3
= *(struct snd_opl3
**)SNDRV_SEQ_DEVICE_ARGPTR(dev
);
233 spin_lock_init(&opl3
->voice_lock
);
235 opl3
->seq_client
= -1;
237 /* allocate new client */
238 opl_ver
= (opl3
->hardware
& OPL3_HW_MASK
) >> 8;
239 sprintf(name
, "OPL%i FM synth", opl_ver
);
240 client
= opl3
->seq_client
=
241 snd_seq_create_kernel_client(opl3
->card
, opl3
->seq_dev_num
,
246 if ((err
= snd_opl3_synth_create_port(opl3
)) < 0) {
247 snd_seq_delete_kernel_client(client
);
248 opl3
->seq_client
= -1;
252 /* initialize instrument list */
253 opl3
->ilist
= snd_seq_instr_list_new();
254 if (opl3
->ilist
== NULL
) {
255 snd_seq_delete_kernel_client(client
);
256 opl3
->seq_client
= -1;
259 opl3
->ilist
->flags
= SNDRV_SEQ_INSTR_FLG_DIRECT
;
260 snd_seq_fm_init(&opl3
->fm_ops
, NULL
);
262 /* setup system timer */
263 init_timer(&opl3
->tlist
);
264 opl3
->tlist
.function
= snd_opl3_timer_func
;
265 opl3
->tlist
.data
= (unsigned long) opl3
;
266 spin_lock_init(&opl3
->sys_timer_lock
);
267 opl3
->sys_timer_status
= 0;
269 #ifdef CONFIG_SND_SEQUENCER_OSS
270 snd_opl3_init_seq_oss(opl3
, name
);
275 static int snd_opl3_seq_delete_device(struct snd_seq_device
*dev
)
277 struct snd_opl3
*opl3
;
279 opl3
= *(struct snd_opl3
**)SNDRV_SEQ_DEVICE_ARGPTR(dev
);
283 #ifdef CONFIG_SND_SEQUENCER_OSS
284 snd_opl3_free_seq_oss(opl3
);
286 if (opl3
->seq_client
>= 0) {
287 snd_seq_delete_kernel_client(opl3
->seq_client
);
288 opl3
->seq_client
= -1;
291 snd_seq_instr_list_free(&opl3
->ilist
);
295 static int __init
alsa_opl3_seq_init(void)
297 static struct snd_seq_dev_ops ops
=
299 snd_opl3_seq_new_device
,
300 snd_opl3_seq_delete_device
303 return snd_seq_device_register_driver(SNDRV_SEQ_DEV_ID_OPL3
, &ops
,
304 sizeof(struct snd_opl3
*));
307 static void __exit
alsa_opl3_seq_exit(void)
309 snd_seq_device_unregister_driver(SNDRV_SEQ_DEV_ID_OPL3
);
312 module_init(alsa_opl3_seq_init
)
313 module_exit(alsa_opl3_seq_exit
)