sequencer.c revision 1.16 1 /* $NetBSD: sequencer.c,v 1.16 2001/09/03 14:52:29 reinoud Exp $ */
2
3 /*
4 * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Lennart Augustsson (augustss (at) netbsd.org).
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38
39 #include "sequencer.h"
40 #if NSEQUENCER > 0
41
42 #include <sys/param.h>
43 #include <sys/ioctl.h>
44 #include <sys/fcntl.h>
45 #include <sys/vnode.h>
46 #include <sys/select.h>
47 #include <sys/poll.h>
48 #include <sys/malloc.h>
49 #include <sys/proc.h>
50 #include <sys/systm.h>
51 #include <sys/syslog.h>
52 #include <sys/kernel.h>
53 #include <sys/signalvar.h>
54 #include <sys/conf.h>
55 #include <sys/audioio.h>
56 #include <sys/midiio.h>
57 #include <sys/device.h>
58
59 #include <dev/midi_if.h>
60 #include <dev/midivar.h>
61 #include <dev/sequencervar.h>
62
63 #define ADDTIMEVAL(a, b) ( \
64 (a)->tv_sec += (b)->tv_sec, \
65 (a)->tv_usec += (b)->tv_usec, \
66 (a)->tv_usec > 1000000 ? ((a)->tv_sec++, (a)->tv_usec -= 1000000) : 0\
67 )
68
69 #define SUBTIMEVAL(a, b) ( \
70 (a)->tv_sec -= (b)->tv_sec, \
71 (a)->tv_usec -= (b)->tv_usec, \
72 (a)->tv_usec < 0 ? ((a)->tv_sec--, (a)->tv_usec += 1000000) : 0\
73 )
74
75 #ifdef AUDIO_DEBUG
76 #define DPRINTF(x) if (sequencerdebug) printf x
77 #define DPRINTFN(n,x) if (sequencerdebug >= (n)) printf x
78 int sequencerdebug = 0;
79 #else
80 #define DPRINTF(x)
81 #define DPRINTFN(n,x)
82 #endif
83
84 #define SEQ_CMD(b) ((b)->arr[0])
85
86 #define SEQ_EDEV(b) ((b)->arr[1])
87 #define SEQ_ECMD(b) ((b)->arr[2])
88 #define SEQ_ECHAN(b) ((b)->arr[3])
89 #define SEQ_ENOTE(b) ((b)->arr[4])
90 #define SEQ_EPARM(b) ((b)->arr[5])
91
92 #define SEQ_EP1(b) ((b)->arr[4])
93 #define SEQ_EP2(b) ((b)->arr[5])
94
95 #define SEQ_XCMD(b) ((b)->arr[1])
96 #define SEQ_XDEV(b) ((b)->arr[2])
97 #define SEQ_XCHAN(b) ((b)->arr[3])
98 #define SEQ_XNOTE(b) ((b)->arr[4])
99 #define SEQ_XVEL(b) ((b)->arr[5])
100
101 #define SEQ_TCMD(b) ((b)->arr[1])
102 #define SEQ_TPARM(b) ((b)->arr[4])
103
104 #define SEQ_NOTE_MAX 128
105 #define SEQ_NOTE_XXX 255
106 #define SEQ_VEL_OFF 0
107
108 #define RECALC_TICK(t) ((t)->tick = 60 * 1000000L / ((t)->tempo * (t)->timebase))
109
110 struct sequencer_softc seqdevs[NSEQUENCER];
111
112 void sequencerattach __P((int));
113 void seq_reset __P((struct sequencer_softc *));
114 int seq_do_command __P((struct sequencer_softc *, seq_event_rec *));
115 int seq_do_extcommand __P((struct sequencer_softc *, seq_event_rec *));
116 int seq_do_chnvoice __P((struct sequencer_softc *, seq_event_rec *));
117 int seq_do_chncommon __P((struct sequencer_softc *, seq_event_rec *));
118 int seq_do_timing __P((struct sequencer_softc *, seq_event_rec *));
119 int seq_do_local __P((struct sequencer_softc *, seq_event_rec *));
120 int seq_do_sysex __P((struct sequencer_softc *, seq_event_rec *));
121 int seq_do_fullsize __P((struct sequencer_softc *, seq_event_rec *,
122 struct uio *));
123 int seq_timer __P((struct sequencer_softc *, int, int, seq_event_rec *));
124 static int seq_input_event __P((struct sequencer_softc *, seq_event_rec *));
125 int seq_drain __P((struct sequencer_softc *));
126 void seq_startoutput __P((struct sequencer_softc *));
127 void seq_timeout __P((void *));
128 int seq_to_new __P((seq_event_rec *, struct uio *));
129 static int seq_sleep_timo(int *, char *, int);
130 static int seq_sleep(int *, char *);
131 static void seq_wakeup(int *);
132
133 struct midi_softc;
134 int midiseq_out __P((struct midi_dev *, u_char *, u_int, int));
135 struct midi_dev *midiseq_open __P((int, int));
136 void midiseq_close __P((struct midi_dev *));
137 void midiseq_reset __P((struct midi_dev *));
138 int midiseq_noteon __P((struct midi_dev *, int, int, int));
139 int midiseq_noteoff __P((struct midi_dev *, int, int, int));
140 int midiseq_keypressure __P((struct midi_dev *, int, int, int));
141 int midiseq_pgmchange __P((struct midi_dev *, int, int));
142 int midiseq_chnpressure __P((struct midi_dev *, int, int));
143 int midiseq_ctlchange __P((struct midi_dev *, int, int, int));
144 int midiseq_pitchbend __P((struct midi_dev *, int, int));
145 int midiseq_loadpatch __P((struct midi_dev *, struct sysex_info *,
146 struct uio *));
147 int midiseq_putc __P((struct midi_dev *, int));
148 void midiseq_in __P((struct midi_dev *, u_char *, int));
149
150 void
151 sequencerattach(n)
152 int n;
153 {
154
155 for (n = 0; n < NSEQUENCER; n++)
156 callout_init(&seqdevs[n].sc_callout);
157 }
158
159 int
160 sequenceropen(dev, flags, ifmt, p)
161 dev_t dev;
162 int flags, ifmt;
163 struct proc *p;
164 {
165 int unit = SEQUENCERUNIT(dev);
166 struct sequencer_softc *sc;
167 struct midi_dev *md;
168 int nmidi;
169
170 DPRINTF(("sequenceropen\n"));
171
172 if (unit >= NSEQUENCER)
173 return (ENXIO);
174 sc = &seqdevs[unit];
175 if (sc->isopen)
176 return EBUSY;
177 if (SEQ_IS_OLD(unit))
178 sc->mode = SEQ_OLD;
179 else
180 sc->mode = SEQ_NEW;
181 sc->isopen++;
182 sc->flags = flags & (FREAD|FWRITE);
183 sc->rchan = 0;
184 sc->wchan = 0;
185 sc->pbus = 0;
186 sc->async = 0;
187 sc->input_stamp = ~0;
188
189 sc->nmidi = 0;
190 nmidi = midi_unit_count();
191
192 sc->devs = malloc(nmidi * sizeof(struct midi_dev *),
193 M_DEVBUF, M_WAITOK);
194 for (unit = 0; unit < nmidi; unit++) {
195 md = midiseq_open(unit, flags);
196 if (md) {
197 sc->devs[sc->nmidi++] = md;
198 md->seq = sc;
199 }
200 }
201
202 sc->timer.timebase = 100;
203 sc->timer.tempo = 60;
204 sc->doingsysex = 0;
205 RECALC_TICK(&sc->timer);
206 sc->timer.last = 0;
207 microtime(&sc->timer.start);
208
209 SEQ_QINIT(&sc->inq);
210 SEQ_QINIT(&sc->outq);
211 sc->lowat = SEQ_MAXQ / 2;
212
213 seq_reset(sc);
214
215 DPRINTF(("sequenceropen: mode=%d, nmidi=%d\n", sc->mode, sc->nmidi));
216 return 0;
217 }
218
219 static int
220 seq_sleep_timo(chan, label, timo)
221 int *chan;
222 char *label;
223 int timo;
224 {
225 int st;
226
227 if (!label)
228 label = "seq";
229
230 DPRINTFN(5, ("seq_sleep_timo: %p %s %d\n", chan, label, timo));
231 *chan = 1;
232 st = tsleep(chan, PWAIT | PCATCH, label, timo);
233 *chan = 0;
234 #ifdef MIDI_DEBUG
235 if (st != 0)
236 printf("seq_sleep: %d\n", st);
237 #endif
238 return st;
239 }
240
241 static int
242 seq_sleep(chan, label)
243 int *chan;
244 char *label;
245 {
246 return seq_sleep_timo(chan, label, 0);
247 }
248
249 static void
250 seq_wakeup(chan)
251 int *chan;
252 {
253 if (*chan) {
254 DPRINTFN(5, ("seq_wakeup: %p\n", chan));
255 wakeup(chan);
256 *chan = 0;
257 }
258 }
259
260 int
261 seq_drain(sc)
262 struct sequencer_softc *sc;
263 {
264 int error;
265
266 DPRINTFN(3, ("seq_drain: %p, len=%d\n", sc, SEQ_QLEN(&sc->outq)));
267 seq_startoutput(sc);
268 error = 0;
269 while(!SEQ_QEMPTY(&sc->outq) && !error)
270 error = seq_sleep_timo(&sc->wchan, "seq_dr", 60*hz);
271 return (error);
272 }
273
274 void
275 seq_timeout(addr)
276 void *addr;
277 {
278 struct sequencer_softc *sc = addr;
279 DPRINTFN(4, ("seq_timeout: %p\n", sc));
280 sc->timeout = 0;
281 seq_startoutput(sc);
282 if (SEQ_QLEN(&sc->outq) < sc->lowat) {
283 seq_wakeup(&sc->wchan);
284 selwakeup(&sc->wsel);
285 if (sc->async)
286 psignal(sc->async, SIGIO);
287 }
288
289 }
290
291 void
292 seq_startoutput(sc)
293 struct sequencer_softc *sc;
294 {
295 struct sequencer_queue *q = &sc->outq;
296 seq_event_rec cmd;
297
298 if (sc->timeout)
299 return;
300 DPRINTFN(4, ("seq_startoutput: %p, len=%d\n", sc, SEQ_QLEN(q)));
301 while(!SEQ_QEMPTY(q) && !sc->timeout) {
302 SEQ_QGET(q, cmd);
303 seq_do_command(sc, &cmd);
304 }
305 }
306
307 int
308 sequencerclose(dev, flags, ifmt, p)
309 dev_t dev;
310 int flags, ifmt;
311 struct proc *p;
312 {
313 struct sequencer_softc *sc = &seqdevs[SEQUENCERUNIT(dev)];
314 int n, s;
315
316 DPRINTF(("sequencerclose: %p\n", sc));
317
318 seq_drain(sc);
319 s = splaudio();
320 if (sc->timeout) {
321 callout_stop(&sc->sc_callout);
322 sc->timeout = 0;
323 }
324 splx(s);
325
326 for (n = 0; n < sc->nmidi; n++)
327 midiseq_close(sc->devs[n]);
328 free(sc->devs, M_DEVBUF);
329 sc->isopen = 0;
330 return (0);
331 }
332
333 static int
334 seq_input_event(sc, cmd)
335 struct sequencer_softc *sc;
336 seq_event_rec *cmd;
337 {
338 struct sequencer_queue *q = &sc->inq;
339
340 DPRINTFN(2, ("seq_input_event: %02x %02x %02x %02x %02x %02x %02x %02x\n",
341 cmd->arr[0], cmd->arr[1], cmd->arr[2], cmd->arr[3],
342 cmd->arr[4], cmd->arr[5], cmd->arr[6], cmd->arr[7]));
343 if (SEQ_QFULL(q))
344 return (ENOMEM);
345 SEQ_QPUT(q, *cmd);
346 seq_wakeup(&sc->rchan);
347 selwakeup(&sc->rsel);
348 if (sc->async)
349 psignal(sc->async, SIGIO);
350 return 0;
351 }
352
353 void
354 seq_event_intr(addr, iev)
355 void *addr;
356 seq_event_rec *iev;
357 {
358 struct sequencer_softc *sc = addr;
359 union {
360 u_int32_t l;
361 u_int8_t b[4];
362 } u;
363 u_long t;
364 struct timeval now;
365 seq_event_rec ev;
366
367 microtime(&now);
368 SUBTIMEVAL(&now, &sc->timer.start);
369 t = now.tv_sec * 1000000 + now.tv_usec;
370 t /= sc->timer.tick;
371 if (t != sc->input_stamp) {
372 ev.arr[0] = SEQ_TIMING;
373 ev.arr[1] = TMR_WAIT_ABS;
374 ev.arr[2] = 0;
375 ev.arr[3] = 0;
376 u.l = t;
377 ev.arr[4] = u.b[0];
378 ev.arr[5] = u.b[1];
379 ev.arr[6] = u.b[2];
380 ev.arr[7] = u.b[3];
381 seq_input_event(sc, &ev);
382 sc->input_stamp = t;
383 }
384 seq_input_event(sc, iev);
385 }
386
387 int
388 sequencerread(dev, uio, ioflag)
389 dev_t dev;
390 struct uio *uio;
391 int ioflag;
392 {
393 struct sequencer_softc *sc = &seqdevs[SEQUENCERUNIT(dev)];
394 struct sequencer_queue *q = &sc->inq;
395 seq_event_rec ev;
396 int error, s;
397
398 DPRINTFN(20, ("sequencerread: %p, count=%d, ioflag=%x\n",
399 sc, (int) uio->uio_resid, ioflag));
400
401 if (sc->mode == SEQ_OLD) {
402 DPRINTFN(-1,("sequencerread: old read\n"));
403 return (EINVAL); /* XXX unimplemented */
404 }
405
406 error = 0;
407 while (SEQ_QEMPTY(q)) {
408 if (ioflag & IO_NDELAY)
409 return EWOULDBLOCK;
410 else {
411 error = seq_sleep(&sc->rchan, "seq rd");
412 if (error)
413 return error;
414 }
415 }
416 s = splaudio();
417 while (uio->uio_resid >= sizeof ev && !error && !SEQ_QEMPTY(q)) {
418 SEQ_QGET(q, ev);
419 error = uiomove(&ev, sizeof ev, uio);
420 }
421 splx(s);
422 return error;
423 }
424
425 int
426 sequencerwrite(dev, uio, ioflag)
427 dev_t dev;
428 struct uio *uio;
429 int ioflag;
430 {
431 struct sequencer_softc *sc = &seqdevs[SEQUENCERUNIT(dev)];
432 struct sequencer_queue *q = &sc->outq;
433 int error;
434 seq_event_rec cmdbuf;
435 int size;
436
437 DPRINTFN(2, ("sequencerwrite: %p, count=%d\n", sc, (int) uio->uio_resid));
438
439 error = 0;
440 size = sc->mode == SEQ_NEW ? sizeof cmdbuf : SEQOLD_CMDSIZE;
441 while (uio->uio_resid >= size) {
442 error = uiomove(&cmdbuf, size, uio);
443 if (error)
444 break;
445 if (sc->mode == SEQ_OLD)
446 if (seq_to_new(&cmdbuf, uio))
447 continue;
448 if (SEQ_CMD(&cmdbuf) == SEQ_FULLSIZE) {
449 /* We do it like OSS does, asynchronously */
450 error = seq_do_fullsize(sc, &cmdbuf, uio);
451 if (error)
452 break;
453 continue;
454 }
455 while (SEQ_QFULL(q)) {
456 seq_startoutput(sc);
457 if (SEQ_QFULL(q)) {
458 if (ioflag & IO_NDELAY)
459 return EWOULDBLOCK;
460 error = seq_sleep(&sc->wchan, "seq_wr");
461 if (error)
462 return error;
463 }
464 }
465 SEQ_QPUT(q, cmdbuf);
466 }
467 seq_startoutput(sc);
468
469 #ifdef SEQUENCER_DEBUG
470 if (error)
471 DPRINTFN(2, ("sequencerwrite: error=%d\n", error));
472 #endif
473 return error;
474 }
475
476 int
477 sequencerioctl(dev, cmd, addr, flag, p)
478 dev_t dev;
479 u_long cmd;
480 caddr_t addr;
481 int flag;
482 struct proc *p;
483 {
484 struct sequencer_softc *sc = &seqdevs[SEQUENCERUNIT(dev)];
485 struct synth_info *si;
486 struct midi_dev *md;
487 int devno;
488 int error;
489 int t;
490
491 DPRINTFN(2, ("sequencerioctl: %p cmd=0x%08lx\n", sc, cmd));
492
493 error = 0;
494 switch (cmd) {
495 case FIONBIO:
496 /* All handled in the upper FS layer. */
497 break;
498
499 case FIOASYNC:
500 if (*(int *)addr) {
501 if (sc->async)
502 return EBUSY;
503 sc->async = p;
504 DPRINTF(("sequencer_ioctl: FIOASYNC %p\n", p));
505 } else
506 sc->async = 0;
507 break;
508
509 case SEQUENCER_RESET:
510 seq_reset(sc);
511 break;
512
513 case SEQUENCER_PANIC:
514 seq_reset(sc);
515 /* Do more? OSS doesn't */
516 break;
517
518 case SEQUENCER_SYNC:
519 if (sc->flags == FREAD)
520 return 0;
521 seq_drain(sc);
522 error = 0;
523 break;
524
525 case SEQUENCER_INFO:
526 si = (struct synth_info*)addr;
527 devno = si->device;
528 if (devno < 0 || devno >= sc->nmidi)
529 return EINVAL;
530 md = sc->devs[devno];
531 strncpy(si->name, md->name, sizeof si->name);
532 si->synth_type = SYNTH_TYPE_MIDI;
533 si->synth_subtype = md->subtype;
534 si->nr_voices = md->nr_voices;
535 si->instr_bank_size = md->instr_bank_size;
536 si->capabilities = md->capabilities;
537 break;
538
539 case SEQUENCER_NRSYNTHS:
540 *(int *)addr = sc->nmidi;
541 break;
542
543 case SEQUENCER_NRMIDIS:
544 *(int *)addr = sc->nmidi;
545 break;
546
547 case SEQUENCER_OUTOFBAND:
548 DPRINTFN(3, ("sequencer_ioctl: OOB=%02x %02x %02x %02x %02x %02x %02x %02x\n",
549 *(u_char *)addr, *(u_char *)(addr+1),
550 *(u_char *)(addr+2), *(u_char *)(addr+3),
551 *(u_char *)(addr+4), *(u_char *)(addr+5),
552 *(u_char *)(addr+6), *(u_char *)(addr+7)));
553 error = seq_do_command(sc, (seq_event_rec *)addr);
554 break;
555
556 case SEQUENCER_TMR_TIMEBASE:
557 t = *(int *)addr;
558 if (t < 1)
559 t = 1;
560 if (t > 10000)
561 t = 10000;
562 sc->timer.timebase = t;
563 *(int *)addr = t;
564 RECALC_TICK(&sc->timer);
565 break;
566
567 case SEQUENCER_TMR_START:
568 error = seq_timer(sc, TMR_START, 0, 0);
569 break;
570
571 case SEQUENCER_TMR_STOP:
572 error = seq_timer(sc, TMR_STOP, 0, 0);
573 break;
574
575 case SEQUENCER_TMR_CONTINUE:
576 error = seq_timer(sc, TMR_CONTINUE, 0, 0);
577 break;
578
579 case SEQUENCER_TMR_TEMPO:
580 t = *(int *)addr;
581 if (t < 8)
582 t = 8;
583 if (t > 250)
584 t = 250;
585 sc->timer.tempo = t;
586 *(int *)addr = t;
587 RECALC_TICK(&sc->timer);
588 break;
589
590 case SEQUENCER_TMR_SOURCE:
591 *(int *)addr = SEQUENCER_TMR_INTERNAL;
592 break;
593
594 case SEQUENCER_TMR_METRONOME:
595 /* noop */
596 break;
597
598 case SEQUENCER_THRESHOLD:
599 t = SEQ_MAXQ - *(int *)addr / sizeof (seq_event_rec);
600 if (t < 1)
601 t = 1;
602 if (t > SEQ_MAXQ)
603 t = SEQ_MAXQ;
604 sc->lowat = t;
605 break;
606
607 case SEQUENCER_CTRLRATE:
608 *(int *)addr = (sc->timer.tempo*sc->timer.timebase + 30) / 60;
609 break;
610
611 case SEQUENCER_GETTIME:
612 {
613 struct timeval now;
614 u_long t;
615 microtime(&now);
616 SUBTIMEVAL(&now, &sc->timer.start);
617 t = now.tv_sec * 1000000 + now.tv_usec;
618 t /= sc->timer.tick;
619 *(int *)addr = t;
620 break;
621 }
622
623 default:
624 DPRINTFN(-1,("sequencer_ioctl: unimpl %08lx\n", cmd));
625 error = EINVAL;
626 break;
627 }
628 return error;
629 }
630
631 int
632 sequencerpoll(dev, events, p)
633 dev_t dev;
634 int events;
635 struct proc *p;
636 {
637 struct sequencer_softc *sc = &seqdevs[SEQUENCERUNIT(dev)];
638 int revents = 0;
639
640 DPRINTF(("sequencerpoll: %p events=0x%x\n", sc, events));
641
642 if (events & (POLLIN | POLLRDNORM))
643 if (!SEQ_QEMPTY(&sc->inq))
644 revents |= events & (POLLIN | POLLRDNORM);
645
646 if (events & (POLLOUT | POLLWRNORM))
647 if (SEQ_QLEN(&sc->outq) < sc->lowat)
648 revents |= events & (POLLOUT | POLLWRNORM);
649
650 if (revents == 0) {
651 if (events & (POLLIN | POLLRDNORM))
652 selrecord(p, &sc->rsel);
653
654 if (events & (POLLOUT | POLLWRNORM))
655 selrecord(p, &sc->wsel);
656 }
657
658 return revents;
659 }
660
661 void
662 seq_reset(sc)
663 struct sequencer_softc *sc;
664 {
665 int i, chn;
666 struct midi_dev *md;
667
668 for (i = 0; i < sc->nmidi; i++) {
669 md = sc->devs[i];
670 midiseq_reset(md);
671 for (chn = 0; chn < MAXCHAN; chn++) {
672 midiseq_ctlchange(md, chn, MIDI_CTRL_ALLOFF, 0);
673 midiseq_ctlchange(md, chn, MIDI_CTRL_RESET, 0);
674 midiseq_pitchbend(md, chn, MIDI_BEND_NEUTRAL);
675 }
676 }
677 }
678
679 int
680 seq_do_command(sc, b)
681 struct sequencer_softc *sc;
682 seq_event_rec *b;
683 {
684 int dev;
685
686 DPRINTFN(4, ("seq_do_command: %p cmd=0x%02x\n", sc, SEQ_CMD(b)));
687
688 switch(SEQ_CMD(b)) {
689 case SEQ_LOCAL:
690 return seq_do_local(sc, b);
691 case SEQ_TIMING:
692 return seq_do_timing(sc, b);
693 case SEQ_CHN_VOICE:
694 return seq_do_chnvoice(sc, b);
695 case SEQ_CHN_COMMON:
696 return seq_do_chncommon(sc, b);
697 case SEQ_SYSEX:
698 return seq_do_sysex(sc, b);
699 /* COMPAT */
700 case SEQOLD_MIDIPUTC:
701 dev = b->arr[2];
702 if (dev < 0 || dev >= sc->nmidi)
703 return (ENXIO);
704 return midiseq_putc(sc->devs[dev], b->arr[1]);
705 default:
706 DPRINTFN(-1,("seq_do_command: unimpl command %02x\n",
707 SEQ_CMD(b)));
708 return (EINVAL);
709 }
710 }
711
712 int
713 seq_do_chnvoice(sc, b)
714 struct sequencer_softc *sc;
715 seq_event_rec *b;
716 {
717 int cmd, dev, chan, note, parm, voice;
718 int error;
719 struct midi_dev *md;
720
721 dev = SEQ_EDEV(b);
722 if (dev < 0 || dev >= sc->nmidi)
723 return ENXIO;
724 md = sc->devs[dev];
725 cmd = SEQ_ECMD(b);
726 chan = SEQ_ECHAN(b);
727 note = SEQ_ENOTE(b);
728 parm = SEQ_EPARM(b);
729 DPRINTFN(2,("seq_do_chnvoice: cmd=%02x dev=%d chan=%d note=%d parm=%d\n",
730 cmd, dev, chan, note, parm));
731 voice = chan;
732 if (cmd == MIDI_NOTEON && parm == 0) {
733 cmd = MIDI_NOTEOFF;
734 parm = MIDI_HALF_VEL;
735 }
736 switch(cmd) {
737 case MIDI_NOTEON:
738 DPRINTFN(5, ("seq_do_chnvoice: noteon %p %d %d %d\n",
739 md, voice, note, parm));
740 error = midiseq_noteon(md, voice, note, parm);
741 break;
742 case MIDI_NOTEOFF:
743 error = midiseq_noteoff(md, voice, note, parm);
744 break;
745 case MIDI_KEY_PRESSURE:
746 error = midiseq_keypressure(md, voice, note, parm);
747 break;
748 default:
749 DPRINTFN(-1,("seq_do_chnvoice: unimpl command %02x\n", cmd));
750 error = EINVAL;
751 break;
752 }
753 return error;
754 }
755
756 int
757 seq_do_chncommon(sc, b)
758 struct sequencer_softc *sc;
759 seq_event_rec *b;
760 {
761 int cmd, dev, chan, p1, w14;
762 int error;
763 struct midi_dev *md;
764 union {
765 int16_t s;
766 u_int8_t b[2];
767 } u;
768
769 dev = SEQ_EDEV(b);
770 if (dev < 0 || dev >= sc->nmidi)
771 return ENXIO;
772 md = sc->devs[dev];
773 cmd = SEQ_ECMD(b);
774 chan = SEQ_ECHAN(b);
775 p1 = SEQ_EP1(b);
776 u.b[0] = b->arr[6];
777 u.b[1] = b->arr[7];
778 w14 = u.s;
779 DPRINTFN(2,("seq_do_chncommon: %02x\n", cmd));
780
781 error = 0;
782 switch(cmd) {
783 case MIDI_PGM_CHANGE:
784 error = midiseq_pgmchange(md, chan, p1);
785 break;
786 case MIDI_CTL_CHANGE:
787 if (chan > 15 || p1 > 127)
788 return 0; /* EINVAL */
789 error = midiseq_ctlchange(md, chan, p1, w14);
790 break;
791 case MIDI_PITCH_BEND:
792 error = midiseq_pitchbend(md, chan, w14);
793 break;
794 case MIDI_CHN_PRESSURE:
795 error = midiseq_chnpressure(md, chan, p1);
796 break;
797 default:
798 DPRINTFN(-1,("seq_do_chncommon: unimpl command %02x\n", cmd));
799 error = EINVAL;
800 break;
801 }
802 return (error);
803 }
804
805 int
806 seq_do_timing(sc, b)
807 struct sequencer_softc *sc;
808 seq_event_rec *b;
809 {
810 union {
811 int32_t i;
812 u_int8_t b[4];
813 } u;
814 u.b[0] = b->arr[4];
815 u.b[1] = b->arr[5];
816 u.b[2] = b->arr[6];
817 u.b[3] = b->arr[7];
818 return seq_timer(sc, SEQ_TCMD(b), u.i, b);
819 }
820
821 int
822 seq_do_local(sc, b)
823 struct sequencer_softc *sc;
824 seq_event_rec *b;
825 {
826 return (EINVAL);
827 }
828
829 int
830 seq_do_sysex(sc, b)
831 struct sequencer_softc *sc;
832 seq_event_rec *b;
833 {
834 int dev, i;
835 struct midi_dev *md;
836 u_int8_t c, *buf = &b->arr[2];
837
838 dev = SEQ_EDEV(b);
839 if (dev < 0 || dev >= sc->nmidi)
840 return (ENXIO);
841 DPRINTF(("seq_do_sysex: dev=%d\n", dev));
842 md = sc->devs[dev];
843
844 if (!sc->doingsysex) {
845 c = MIDI_SYSEX_START;
846 midiseq_out(md, &c, 1, 0);
847 sc->doingsysex = 1;
848 }
849
850 for (i = 0; i < 6 && buf[i] != 0xff; i++)
851 ;
852 midiseq_out(md, buf, i, 0);
853 if (i < 6 || (i > 0 && buf[i-1] == MIDI_SYSEX_END))
854 sc->doingsysex = 0;
855 return (0);
856 }
857
858 int
859 seq_timer(sc, cmd, parm, b)
860 struct sequencer_softc *sc;
861 int cmd, parm;
862 seq_event_rec *b;
863 {
864 struct syn_timer *t = &sc->timer;
865 struct timeval when;
866 int ticks;
867 int error;
868 long long usec;
869
870 DPRINTFN(2,("seq_timer: %02x %d\n", cmd, parm));
871
872 error = 0;
873 switch(cmd) {
874 case TMR_WAIT_REL:
875 parm += t->last;
876 /* fall into */
877 case TMR_WAIT_ABS:
878 t->last = parm;
879 usec = (long long)parm * (long long)t->tick; /* convert to usec */
880 when.tv_sec = usec / 1000000;
881 when.tv_usec = usec % 1000000;
882 DPRINTFN(4, ("seq_timer: parm=%d, sleep when=%ld.%06ld", parm,
883 when.tv_sec, when.tv_usec));
884 ADDTIMEVAL(&when, &t->start); /* abstime for end */
885 ticks = hzto(&when);
886 DPRINTFN(4, (" when+start=%ld.%06ld, tick=%d\n",
887 when.tv_sec, when.tv_usec, ticks));
888 if (ticks > 0) {
889 #ifdef DIAGNOSTIC
890 if (ticks > 20 * hz) {
891 /* Waiting more than 20s */
892 printf("seq_timer: funny ticks=%d, usec=%lld, parm=%d, tick=%ld\n",
893 ticks, usec, parm, t->tick);
894 }
895 #endif
896 sc->timeout = 1;
897 callout_reset(&sc->sc_callout, ticks,
898 seq_timeout, sc);
899 }
900 #ifdef SEQUENCER_DEBUG
901 else if (tick < 0)
902 DPRINTF(("seq_timer: ticks = %d\n", ticks));
903 #endif
904 break;
905 case TMR_START:
906 microtime(&t->start);
907 t->running = 1;
908 break;
909 case TMR_STOP:
910 microtime(&t->stop);
911 t->running = 0;
912 break;
913 case TMR_CONTINUE:
914 microtime(&when);
915 SUBTIMEVAL(&when, &t->stop);
916 ADDTIMEVAL(&t->start, &when);
917 t->running = 1;
918 break;
919 case TMR_TEMPO:
920 /* parm is ticks per minute / timebase */
921 if (parm < 8)
922 parm = 8;
923 if (parm > 360)
924 parm = 360;
925 t->tempo = parm;
926 RECALC_TICK(t);
927 break;
928 case TMR_ECHO:
929 error = seq_input_event(sc, b);
930 break;
931 case TMR_RESET:
932 t->last = 0;
933 microtime(&t->start);
934 break;
935 default:
936 DPRINTF(("seq_timer: unknown %02x\n", cmd));
937 error = EINVAL;
938 break;
939 }
940 return (error);
941 }
942
943 int
944 seq_do_fullsize(sc, b, uio)
945 struct sequencer_softc *sc;
946 seq_event_rec *b;
947 struct uio *uio;
948 {
949 struct sysex_info sysex;
950 u_int dev;
951
952 #ifdef DIAGNOSTIC
953 if (sizeof(seq_event_rec) != SEQ_SYSEX_HDRSIZE) {
954 printf("seq_do_fullsize: sysex size ??\n");
955 return EINVAL;
956 }
957 #endif
958 memcpy(&sysex, b, sizeof sysex);
959 dev = sysex.device_no;
960 DPRINTFN(2, ("seq_do_fullsize: fmt=%04x, dev=%d, len=%d\n",
961 sysex.key, dev, sysex.len));
962 return (midiseq_loadpatch(sc->devs[dev], &sysex, uio));
963 }
964
965 /* Convert an old sequencer event to a new one. */
966 int
967 seq_to_new(ev, uio)
968 seq_event_rec *ev;
969 struct uio *uio;
970 {
971 int cmd, chan, note, parm;
972 u_int32_t delay;
973 int error;
974
975 cmd = SEQ_CMD(ev);
976 chan = ev->arr[1];
977 note = ev->arr[2];
978 parm = ev->arr[3];
979 DPRINTFN(3, ("seq_to_new: 0x%02x %d %d %d\n", cmd, chan, note, parm));
980
981 if (cmd >= 0x80) {
982 /* Fill the event record */
983 if (uio->uio_resid >= sizeof *ev - SEQOLD_CMDSIZE) {
984 error = uiomove(&ev->arr[SEQOLD_CMDSIZE],
985 sizeof *ev - SEQOLD_CMDSIZE, uio);
986 if (error)
987 return error;
988 } else
989 return EINVAL;
990 }
991
992 switch(cmd) {
993 case SEQOLD_NOTEOFF:
994 note = 255;
995 SEQ_ECMD(ev) = MIDI_NOTEOFF;
996 goto onoff;
997 case SEQOLD_NOTEON:
998 SEQ_ECMD(ev) = MIDI_NOTEON;
999 onoff:
1000 SEQ_CMD(ev) = SEQ_CHN_VOICE;
1001 SEQ_EDEV(ev) = 0;
1002 SEQ_ECHAN(ev) = chan;
1003 SEQ_ENOTE(ev) = note;
1004 SEQ_EPARM(ev) = parm;
1005 break;
1006 case SEQOLD_WAIT:
1007 delay = *(u_int32_t *)ev->arr >> 8;
1008 SEQ_CMD(ev) = SEQ_TIMING;
1009 SEQ_TCMD(ev) = TMR_WAIT_REL;
1010 *(u_int32_t *)&ev->arr[4] = delay;
1011 break;
1012 case SEQOLD_SYNCTIMER:
1013 SEQ_CMD(ev) = SEQ_TIMING;
1014 SEQ_TCMD(ev) = TMR_RESET;
1015 break;
1016 case SEQOLD_PGMCHANGE:
1017 SEQ_ECMD(ev) = MIDI_PGM_CHANGE;
1018 SEQ_CMD(ev) = SEQ_CHN_COMMON;
1019 SEQ_EDEV(ev) = 0;
1020 SEQ_ECHAN(ev) = chan;
1021 SEQ_EP1(ev) = note;
1022 break;
1023 case SEQOLD_MIDIPUTC:
1024 break; /* interpret in normal mode */
1025 case SEQOLD_ECHO:
1026 case SEQOLD_PRIVATE:
1027 case SEQOLD_EXTENDED:
1028 default:
1029 DPRINTF(("seq_to_new: not impl 0x%02x\n", cmd));
1030 return EINVAL;
1031 /* In case new events show up */
1032 case SEQ_TIMING:
1033 case SEQ_CHN_VOICE:
1034 case SEQ_CHN_COMMON:
1035 case SEQ_FULLSIZE:
1036 break;
1037 }
1038 return 0;
1039 }
1040
1041 /**********************************************/
1042
1043 void
1044 midiseq_in(md, msg, len)
1045 struct midi_dev *md;
1046 u_char *msg;
1047 int len;
1048 {
1049 int unit = md->unit;
1050 seq_event_rec ev;
1051 int status, chan;
1052
1053 DPRINTFN(2, ("midiseq_in: %p %02x %02x %02x\n",
1054 md, msg[0], msg[1], msg[2]));
1055
1056 status = MIDI_GET_STATUS(msg[0]);
1057 chan = MIDI_GET_CHAN(msg[0]);
1058 switch (status) {
1059 case MIDI_NOTEON:
1060 if (msg[2] == 0) {
1061 status = MIDI_NOTEOFF;
1062 msg[2] = MIDI_HALF_VEL;
1063 }
1064 /* fall into */
1065 case MIDI_NOTEOFF:
1066 case MIDI_KEY_PRESSURE:
1067 SEQ_MK_CHN_VOICE(&ev, unit, status, chan, msg[1], msg[2]);
1068 break;
1069 case MIDI_CTL_CHANGE:
1070 SEQ_MK_CHN_COMMON(&ev, unit, status, chan, msg[1], 0, msg[2]);
1071 break;
1072 case MIDI_PGM_CHANGE:
1073 case MIDI_CHN_PRESSURE:
1074 SEQ_MK_CHN_COMMON(&ev, unit, status, chan, msg[1], 0, 0);
1075 break;
1076 case MIDI_PITCH_BEND:
1077 SEQ_MK_CHN_COMMON(&ev, unit, status, chan, 0, 0,
1078 (msg[1] & 0x7f) | ((msg[2] & 0x7f) << 7));
1079 break;
1080 default:
1081 return;
1082 }
1083 seq_event_intr(md->seq, &ev);
1084 }
1085
1086 struct midi_dev *
1087 midiseq_open(unit, flags)
1088 int unit;
1089 int flags;
1090 {
1091 extern struct cfdriver midi_cd;
1092 int error;
1093 struct midi_dev *md;
1094 struct midi_softc *sc;
1095 struct midi_info mi;
1096
1097 DPRINTFN(2, ("midiseq_open: %d %d\n", unit, flags));
1098 error = midiopen(makedev(0, unit), flags, 0, 0);
1099 if (error)
1100 return (0);
1101 sc = midi_cd.cd_devs[unit];
1102 sc->seqopen = 1;
1103 md = malloc(sizeof *md, M_DEVBUF, M_WAITOK);
1104 sc->seq_md = md;
1105 memset(md, 0, sizeof *md);
1106 md->msc = sc;
1107 midi_getinfo(makedev(0, unit), &mi);
1108 md->unit = unit;
1109 md->name = mi.name;
1110 md->subtype = 0;
1111 md->nr_voices = 128; /* XXX */
1112 md->instr_bank_size = 128; /* XXX */
1113 if (mi.props & MIDI_PROP_CAN_INPUT)
1114 md->capabilities |= SYNTH_CAP_INPUT;
1115 return (md);
1116 }
1117
1118 void
1119 midiseq_close(md)
1120 struct midi_dev *md;
1121 {
1122 DPRINTFN(2, ("midiseq_close: %d\n", md->unit));
1123 midiclose(makedev(0, md->unit), 0, 0, 0);
1124 free(md, M_DEVBUF);
1125 }
1126
1127 void
1128 midiseq_reset(md)
1129 struct midi_dev *md;
1130 {
1131 /* XXX send GM reset? */
1132 DPRINTFN(3, ("midiseq_reset: %d\n", md->unit));
1133 }
1134
1135 int
1136 midiseq_out(md, buf, cc, chk)
1137 struct midi_dev *md;
1138 u_char *buf;
1139 u_int cc;
1140 int chk;
1141 {
1142 DPRINTFN(5, ("midiseq_out: m=%p, unit=%d, buf[0]=0x%02x, cc=%d\n",
1143 md->msc, md->unit, buf[0], cc));
1144
1145 /* The MIDI "status" byte does not have to be repeated. */
1146 if (chk && md->last_cmd == buf[0])
1147 buf++, cc--;
1148 else
1149 md->last_cmd = buf[0];
1150 return midi_writebytes(md->unit, buf, cc);
1151 }
1152
1153 int
1154 midiseq_noteon(md, chan, note, vel)
1155 struct midi_dev *md;
1156 int chan, note, vel;
1157 {
1158 u_char buf[3];
1159
1160 DPRINTFN(6, ("midiseq_noteon 0x%02x %d %d\n",
1161 MIDI_NOTEON | chan, note, vel));
1162 if (chan < 0 || chan > 15 ||
1163 note < 0 || note > 127)
1164 return EINVAL;
1165 if (vel < 0) vel = 0;
1166 if (vel > 127) vel = 127;
1167 buf[0] = MIDI_NOTEON | chan;
1168 buf[1] = note;
1169 buf[2] = vel;
1170 return midiseq_out(md, buf, 3, 1);
1171 }
1172
1173 int
1174 midiseq_noteoff(md, chan, note, vel)
1175 struct midi_dev *md;
1176 int chan, note, vel;
1177 {
1178 u_char buf[3];
1179
1180 if (chan < 0 || chan > 15 ||
1181 note < 0 || note > 127)
1182 return EINVAL;
1183 if (vel < 0) vel = 0;
1184 if (vel > 127) vel = 127;
1185 buf[0] = MIDI_NOTEOFF | chan;
1186 buf[1] = note;
1187 buf[2] = vel;
1188 return midiseq_out(md, buf, 3, 1);
1189 }
1190
1191 int
1192 midiseq_keypressure(md, chan, note, vel)
1193 struct midi_dev *md;
1194 int chan, note, vel;
1195 {
1196 u_char buf[3];
1197
1198 if (chan < 0 || chan > 15 ||
1199 note < 0 || note > 127)
1200 return EINVAL;
1201 if (vel < 0) vel = 0;
1202 if (vel > 127) vel = 127;
1203 buf[0] = MIDI_KEY_PRESSURE | chan;
1204 buf[1] = note;
1205 buf[2] = vel;
1206 return midiseq_out(md, buf, 3, 1);
1207 }
1208
1209 int
1210 midiseq_pgmchange(md, chan, parm)
1211 struct midi_dev *md;
1212 int chan, parm;
1213 {
1214 u_char buf[2];
1215
1216 if (chan < 0 || chan > 15 ||
1217 parm < 0 || parm > 127)
1218 return EINVAL;
1219 buf[0] = MIDI_PGM_CHANGE | chan;
1220 buf[1] = parm;
1221 return midiseq_out(md, buf, 2, 1);
1222 }
1223
1224 int
1225 midiseq_chnpressure(md, chan, parm)
1226 struct midi_dev *md;
1227 int chan, parm;
1228 {
1229 u_char buf[2];
1230
1231 if (chan < 0 || chan > 15 ||
1232 parm < 0 || parm > 127)
1233 return EINVAL;
1234 buf[0] = MIDI_CHN_PRESSURE | chan;
1235 buf[1] = parm;
1236 return midiseq_out(md, buf, 2, 1);
1237 }
1238
1239 int
1240 midiseq_ctlchange(md, chan, parm, w14)
1241 struct midi_dev *md;
1242 int chan, parm, w14;
1243 {
1244 u_char buf[3];
1245
1246 if (chan < 0 || chan > 15 ||
1247 parm < 0 || parm > 127)
1248 return EINVAL;
1249 buf[0] = MIDI_CTL_CHANGE | chan;
1250 buf[1] = parm;
1251 buf[2] = w14 & 0x7f;
1252 return midiseq_out(md, buf, 3, 1);
1253 }
1254
1255 int
1256 midiseq_pitchbend(md, chan, parm)
1257 struct midi_dev *md;
1258 int chan, parm;
1259 {
1260 u_char buf[3];
1261
1262 if (chan < 0 || chan > 15)
1263 return EINVAL;
1264 buf[0] = MIDI_PITCH_BEND | chan;
1265 buf[1] = parm & 0x7f;
1266 buf[2] = (parm >> 7) & 0x7f;
1267 return midiseq_out(md, buf, 3, 1);
1268 }
1269
1270 int
1271 midiseq_loadpatch(md, sysex, uio)
1272 struct midi_dev *md;
1273 struct sysex_info *sysex;
1274 struct uio *uio;
1275 {
1276 u_char c, buf[128];
1277 int i, cc, error;
1278
1279 if (sysex->key != SEQ_SYSEX_PATCH) {
1280 DPRINTFN(-1,("midiseq_loadpatch: bad patch key 0x%04x\n",
1281 sysex->key));
1282 return (EINVAL);
1283 }
1284 if (uio->uio_resid < sysex->len)
1285 /* adjust length, should be an error */
1286 sysex->len = uio->uio_resid;
1287
1288 DPRINTFN(2, ("midiseq_loadpatch: len=%d\n", sysex->len));
1289 if (sysex->len == 0)
1290 return EINVAL;
1291 error = uiomove(&c, 1, uio);
1292 if (error)
1293 return error;
1294 if (c != MIDI_SYSEX_START) /* must start like this */
1295 return EINVAL;
1296 error = midiseq_out(md, &c, 1, 0);
1297 if (error)
1298 return error;
1299 --sysex->len;
1300 while (sysex->len > 0) {
1301 cc = sysex->len;
1302 if (cc > sizeof buf)
1303 cc = sizeof buf;
1304 error = uiomove(buf, cc, uio);
1305 if (error)
1306 break;
1307 for(i = 0; i < cc && !MIDI_IS_STATUS(buf[i]); i++)
1308 ;
1309 error = midiseq_out(md, buf, i, 0);
1310 if (error)
1311 break;
1312 sysex->len -= i;
1313 if (i != cc)
1314 break;
1315 }
1316 /* Any leftover data in uio is rubbish;
1317 * the SYSEX should be one write ending in SYSEX_END.
1318 */
1319 uio->uio_resid = 0;
1320 c = MIDI_SYSEX_END;
1321 return midiseq_out(md, &c, 1, 0);
1322 }
1323
1324 int
1325 midiseq_putc(md, data)
1326 struct midi_dev *md;
1327 int data;
1328 {
1329 u_char c = data;
1330 DPRINTFN(4,("midiseq_putc: 0x%02x\n", data));
1331 return midiseq_out(md, &c, 1, 0);
1332 }
1333
1334 #include "midi.h"
1335 #if NMIDI == 0
1336 /*
1337 * If someone has a sequencer, but no midi devices there will
1338 * be unresolved references, so we provide little stubs.
1339 */
1340
1341 int
1342 midi_unit_count()
1343 {
1344 return (0);
1345 }
1346
1347 int
1348 midiopen(dev, flags, ifmt, p)
1349 dev_t dev;
1350 int flags, ifmt;
1351 struct proc *p;
1352 {
1353 return (ENXIO);
1354 }
1355
1356 struct cfdriver midi_cd;
1357
1358 void
1359 midi_getinfo(dev, mi)
1360 dev_t dev;
1361 struct midi_info *mi;
1362 {
1363 }
1364
1365 int
1366 midiclose(dev, flags, ifmt, p)
1367 dev_t dev;
1368 int flags, ifmt;
1369 struct proc *p;
1370 {
1371 return (ENXIO);
1372 }
1373
1374 int
1375 midi_writebytes(unit, buf, cc)
1376 int unit;
1377 u_char *buf;
1378 int cc;
1379 {
1380 return (ENXIO);
1381 }
1382 #endif /* NMIDI == 0 */
1383
1384 #endif /* NSEQUENCER > 0 */
1385
1386