sequencer.c revision 1.59 1 /* $NetBSD: sequencer.c,v 1.59 2014/07/25 08:10:35 dholland Exp $ */
2
3 /*
4 * Copyright (c) 1998, 2008 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) and by Andrew Doran.
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 *
19 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 * POSSIBILITY OF SUCH DAMAGE.
30 */
31
32 /*
33 * Locking:
34 *
35 * o sc_lock: provides atomic access to all data structures. Taken from
36 * both process and soft interrupt context.
37 *
38 * o sc_dvlock: serializes operations on /dev/sequencer. Taken from
39 * process context. Dropped while waiting for data in sequencerread()
40 * to allow concurrent reads/writes while no data available.
41 *
42 * o sc_isopen: we allow only one concurrent open, only to prevent user
43 * and/or application error.
44 *
45 * o MIDI softc locks. These can be spinlocks and there can be many of
46 * them, because we can open many MIDI devices. We take these only in two
47 * places: when enabling redirection from the MIDI device and when
48 * disabling it (open/close). midiseq_in() is called by the MIDI driver
49 * with its own lock held when passing data into this module. To avoid
50 * lock order and context problems, we package the received message as a
51 * sequencer_pcqitem_t and put onto a producer-consumer queue. A soft
52 * interrupt is scheduled to dequeue and decode the message later where we
53 * can safely acquire the sequencer device's sc_lock. PCQ is lockless for
54 * multiple producer, single consumer settings like this one.
55 */
56
57 #include <sys/cdefs.h>
58 __KERNEL_RCSID(0, "$NetBSD: sequencer.c,v 1.59 2014/07/25 08:10:35 dholland Exp $");
59
60 #include "sequencer.h"
61
62 #include <sys/param.h>
63 #include <sys/ioctl.h>
64 #include <sys/fcntl.h>
65 #include <sys/vnode.h>
66 #include <sys/select.h>
67 #include <sys/poll.h>
68 #include <sys/kmem.h>
69 #include <sys/proc.h>
70 #include <sys/systm.h>
71 #include <sys/syslog.h>
72 #include <sys/kernel.h>
73 #include <sys/signalvar.h>
74 #include <sys/conf.h>
75 #include <sys/audioio.h>
76 #include <sys/midiio.h>
77 #include <sys/device.h>
78 #include <sys/intr.h>
79 #include <sys/atomic.h>
80 #include <sys/pcq.h>
81 #include <sys/vnode.h>
82 #include <sys/kauth.h>
83
84 #include <dev/midi_if.h>
85 #include <dev/midivar.h>
86 #include <dev/sequencervar.h>
87
88 #define ADDTIMEVAL(a, b) ( \
89 (a)->tv_sec += (b)->tv_sec, \
90 (a)->tv_usec += (b)->tv_usec, \
91 (a)->tv_usec > 1000000 ? ((a)->tv_sec++, (a)->tv_usec -= 1000000) : 0\
92 )
93
94 #define SUBTIMEVAL(a, b) ( \
95 (a)->tv_sec -= (b)->tv_sec, \
96 (a)->tv_usec -= (b)->tv_usec, \
97 (a)->tv_usec < 0 ? ((a)->tv_sec--, (a)->tv_usec += 1000000) : 0\
98 )
99
100 #ifdef AUDIO_DEBUG
101 #define DPRINTF(x) if (sequencerdebug) printf x
102 #define DPRINTFN(n,x) if (sequencerdebug >= (n)) printf x
103 int sequencerdebug = 0;
104 #else
105 #define DPRINTF(x)
106 #define DPRINTFN(n,x)
107 #endif
108
109 #define SEQ_NOTE_MAX 128
110 #define SEQ_NOTE_XXX 255
111
112 #define RECALC_USPERDIV(t) \
113 ((t)->usperdiv = 60*1000000L/((t)->tempo_beatpermin*(t)->timebase_divperbeat))
114
115 typedef union sequencer_pcqitem {
116 void *qi_ptr;
117 char qi_msg[4];
118 } sequencer_pcqitem_t;
119
120 void sequencerattach(int);
121 static void seq_reset(struct sequencer_softc *);
122 static int seq_do_command(struct sequencer_softc *, seq_event_t *);
123 static int seq_do_chnvoice(struct sequencer_softc *, seq_event_t *);
124 static int seq_do_chncommon(struct sequencer_softc *, seq_event_t *);
125 static void seq_timer_waitabs(struct sequencer_softc *, uint32_t);
126 static int seq_do_timing(struct sequencer_softc *, seq_event_t *);
127 static int seq_do_local(struct sequencer_softc *, seq_event_t *);
128 static int seq_do_sysex(struct sequencer_softc *, seq_event_t *);
129 static int seq_do_fullsize(struct sequencer_softc *, seq_event_t *, struct uio *);
130 static int seq_input_event(struct sequencer_softc *, seq_event_t *);
131 static int seq_drain(struct sequencer_softc *);
132 static void seq_startoutput(struct sequencer_softc *);
133 static void seq_timeout(void *);
134 static int seq_to_new(seq_event_t *, struct uio *);
135 static void seq_softintr(void *);
136
137 static int midiseq_out(struct midi_dev *, u_char *, u_int, int);
138 static struct midi_dev *midiseq_open(int, int);
139 static void midiseq_close(struct midi_dev *);
140 static void midiseq_reset(struct midi_dev *);
141 static int midiseq_noteon(struct midi_dev *, int, int, seq_event_t *);
142 static int midiseq_noteoff(struct midi_dev *, int, int, seq_event_t *);
143 static int midiseq_keypressure(struct midi_dev *, int, int, seq_event_t *);
144 static int midiseq_pgmchange(struct midi_dev *, int, seq_event_t *);
145 static int midiseq_chnpressure(struct midi_dev *, int, seq_event_t *);
146 static int midiseq_ctlchange(struct midi_dev *, int, seq_event_t *);
147 static int midiseq_pitchbend(struct midi_dev *, int, seq_event_t *);
148 static int midiseq_loadpatch(struct midi_dev *, struct sysex_info *, struct uio *);
149 void midiseq_in(struct midi_dev *, u_char *, int);
150
151 static dev_type_open(sequenceropen);
152 static dev_type_close(sequencerclose);
153 static dev_type_read(sequencerread);
154 static dev_type_write(sequencerwrite);
155 static dev_type_ioctl(sequencerioctl);
156 static dev_type_poll(sequencerpoll);
157 static dev_type_kqfilter(sequencerkqfilter);
158
159 const struct cdevsw sequencer_cdevsw = {
160 .d_open = sequenceropen,
161 .d_close = sequencerclose,
162 .d_read = sequencerread,
163 .d_write = sequencerwrite,
164 .d_ioctl = sequencerioctl,
165 .d_stop = nostop,
166 .d_tty = notty,
167 .d_poll = sequencerpoll,
168 .d_mmap = nommap,
169 .d_kqfilter = sequencerkqfilter,
170 .d_discard = nodiscard,
171 .d_flag = D_OTHER | D_MPSAFE
172 };
173 static LIST_HEAD(, sequencer_softc) sequencers = LIST_HEAD_INITIALIZER(sequencers);
174 static kmutex_t sequencer_lock;
175
176 static void
177 sequencerdestroy(struct sequencer_softc *sc) {
178 callout_destroy(&sc->sc_callout);
179 softint_disestablish(sc->sih);
180 cv_destroy(&sc->rchan);
181 cv_destroy(&sc->wchan);
182 cv_destroy(&sc->lchan);
183 if (sc->pcq)
184 pcq_destroy(sc->pcq);
185 kmem_free(sc, sizeof(*sc));
186 }
187
188 static struct sequencer_softc *
189 sequencercreate(int unit) {
190 struct sequencer_softc *sc = kmem_zalloc(sizeof(*sc), KM_SLEEP);
191 if (sc == NULL) {
192 #ifdef DIAGNOSTIC
193 printf("%s: out of memory\n", __func__);
194 #endif
195 return NULL;
196 }
197 sc->sc_unit = unit;
198 callout_init(&sc->sc_callout, CALLOUT_MPSAFE);
199 sc->sih = softint_establish(SOFTINT_NET | SOFTINT_MPSAFE,
200 seq_softintr, sc);
201 mutex_init(&sc->lock, MUTEX_DEFAULT, IPL_NONE);
202 cv_init(&sc->rchan, "midiseqr");
203 cv_init(&sc->wchan, "midiseqw");
204 cv_init(&sc->lchan, "midiseql");
205 sc->pcq = pcq_create(SEQ_MAXQ, KM_SLEEP);
206 if (sc->pcq == NULL) {
207 sequencerdestroy(sc);
208 return NULL;
209 }
210 return sc;
211 }
212
213
214 static struct sequencer_softc *
215 sequencerget(int unit) {
216 struct sequencer_softc *sc;
217 if (unit < 0) {
218 #ifdef DIAGNOSTIC
219 panic("%s: unit %d!", __func__, unit);
220 #endif
221 return NULL;
222 }
223 mutex_enter(&sequencer_lock);
224 LIST_FOREACH(sc, &sequencers, sc_link) {
225 if (sc->sc_unit == unit) {
226 mutex_exit(&sequencer_lock);
227 return sc;
228 }
229 }
230 mutex_exit(&sequencer_lock);
231 if ((sc = sequencercreate(unit)) == NULL)
232 return NULL;
233 mutex_enter(&sequencer_lock);
234 LIST_INSERT_HEAD(&sequencers, sc, sc_link);
235 mutex_exit(&sequencer_lock);
236 return sc;
237 }
238
239 #ifdef notyet
240 static void
241 sequencerput(struct sequencer_softc *sc) {
242 mutex_enter(&sequencer_lock);
243 LIST_REMOVE(sc, sc_link);
244 mutex_exit(&sequencer_lock);
245 sequencerdestroy(sc);
246 }
247 #endif
248
249 void
250 sequencerattach(int n)
251 {
252 mutex_init(&sequencer_lock, MUTEX_DEFAULT, IPL_NONE);
253 }
254
255 /*
256 * Release reference to device acquired with sequencer_enter().
257 */
258 static void
259 sequencer_exit(struct sequencer_softc *sc)
260 {
261
262 sc->dvlock--;
263 cv_broadcast(&sc->lchan);
264 mutex_exit(&sc->lock);
265 }
266
267 /*
268 * Look up sequencer device and acquire locks for device access.
269 */
270 static int
271 sequencer_enter(dev_t dev, struct sequencer_softc **scp)
272 {
273 struct sequencer_softc *sc;
274
275 /* First, find the device and take sc_lock. */
276 if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
277 return ENXIO;
278 mutex_enter(&sc->lock);
279 while (sc->dvlock) {
280 cv_wait(&sc->lchan, &sc->lock);
281 }
282 sc->dvlock++;
283 if (sc->dying) {
284 sequencer_exit(sc);
285 return EIO;
286 }
287 *scp = sc;
288 return 0;
289 }
290
291 static int
292 sequenceropen(dev_t dev, int flags, int ifmt, struct lwp *l)
293 {
294 struct sequencer_softc *sc;
295 struct midi_dev *md;
296 struct midi_softc *msc;
297 int error, unit;
298
299 DPRINTF(("sequenceropen\n"));
300
301 if ((error = sequencer_enter(dev, &sc)) != 0)
302 return error;
303 if (sc->isopen != 0) {
304 sequencer_exit(sc);
305 return EBUSY;
306 }
307
308 if (SEQ_IS_OLD(SEQUENCERUNIT(dev)))
309 sc->mode = SEQ_OLD;
310 else
311 sc->mode = SEQ_NEW;
312 sc->isopen++;
313 sc->flags = flags & (FREAD|FWRITE);
314 sc->pbus = 0;
315 sc->async = 0;
316 sc->input_stamp = ~0;
317
318 sc->nmidi = 0;
319 sc->ndevs = midi_unit_count();
320 sc->timer.timebase_divperbeat = 100;
321 sc->timer.tempo_beatpermin = 60;
322 RECALC_USPERDIV(&sc->timer);
323 sc->timer.divs_lastevent = sc->timer.divs_lastchange = 0;
324 microtime(&sc->timer.reftime);
325
326 SEQ_QINIT(&sc->inq);
327 SEQ_QINIT(&sc->outq);
328 sc->lowat = SEQ_MAXQ / 2;
329
330 if (sc->ndevs > 0) {
331 mutex_exit(&sc->lock);
332 sc->devs = kmem_alloc(sc->ndevs * sizeof(struct midi_dev *),
333 KM_SLEEP);
334 for (unit = 0; unit < sc->ndevs; unit++) {
335 md = midiseq_open(unit, flags);
336 if (md) {
337 sc->devs[sc->nmidi++] = md;
338 md->seq = sc;
339 md->doingsysex = 0;
340 }
341 }
342 mutex_enter(&sc->lock);
343 } else {
344 sc->devs = NULL;
345 }
346
347 /* Only now redirect input from MIDI devices. */
348 for (unit = 0; unit < sc->nmidi; unit++) {
349 msc = sc->devs[unit]->msc;
350 mutex_enter(msc->lock);
351 msc->seqopen = 1;
352 mutex_exit(msc->lock);
353 }
354
355 seq_reset(sc);
356 sequencer_exit(sc);
357
358 DPRINTF(("%s: mode=%d, nmidi=%d\n", __func__, sc->mode, sc->nmidi));
359 return 0;
360 }
361
362 static int
363 seq_drain(struct sequencer_softc *sc)
364 {
365 int error;
366
367 KASSERT(mutex_owned(&sc->lock));
368
369 DPRINTFN(3, ("seq_drain: %p, len=%d\n", sc, SEQ_QLEN(&sc->outq)));
370 seq_startoutput(sc);
371 error = 0;
372 while (!SEQ_QEMPTY(&sc->outq) && !error)
373 error = cv_timedwait_sig(&sc->wchan, &sc->lock, 60*hz);
374 return (error);
375 }
376
377 static void
378 seq_timeout(void *addr)
379 {
380 struct sequencer_softc *sc = addr;
381 proc_t *p;
382 pid_t pid;
383
384 DPRINTFN(4, ("seq_timeout: %p\n", sc));
385
386 mutex_enter(&sc->lock);
387 if (sc->timeout == 0) {
388 mutex_spin_exit(&sc->lock);
389 return;
390 }
391 sc->timeout = 0;
392 seq_startoutput(sc);
393 if (SEQ_QLEN(&sc->outq) >= sc->lowat) {
394 mutex_exit(&sc->lock);
395 return;
396 }
397 cv_broadcast(&sc->wchan);
398 selnotify(&sc->wsel, 0, NOTE_SUBMIT);
399 if ((pid = sc->async) != 0) {
400 mutex_enter(proc_lock);
401 if ((p = proc_find(pid)) != NULL)
402 psignal(p, SIGIO);
403 mutex_exit(proc_lock);
404 }
405 mutex_exit(&sc->lock);
406 }
407
408 static void
409 seq_startoutput(struct sequencer_softc *sc)
410 {
411 struct sequencer_queue *q = &sc->outq;
412 seq_event_t cmd;
413
414 KASSERT(mutex_owned(&sc->lock));
415
416 if (sc->timeout)
417 return;
418 DPRINTFN(4, ("seq_startoutput: %p, len=%d\n", sc, SEQ_QLEN(q)));
419 while (!SEQ_QEMPTY(q) && !sc->timeout) {
420 SEQ_QGET(q, cmd);
421 seq_do_command(sc, &cmd);
422 }
423 }
424
425 static int
426 sequencerclose(dev_t dev, int flags, int ifmt, struct lwp *l)
427 {
428 struct sequencer_softc *sc;
429 struct midi_softc *msc;
430 int unit, error;
431
432 DPRINTF(("sequencerclose: %"PRIx64"\n", dev));
433
434 if ((error = sequencer_enter(dev, &sc)) != 0)
435 return error;
436 seq_drain(sc);
437 if (sc->timeout) {
438 callout_halt(&sc->sc_callout, &sc->lock);
439 sc->timeout = 0;
440 }
441 /* Bin input from MIDI devices. */
442 for (unit = 0; unit < sc->nmidi; unit++) {
443 msc = sc->devs[unit]->msc;
444 mutex_enter(msc->lock);
445 msc->seqopen = 0;
446 mutex_exit(msc->lock);
447 }
448 mutex_exit(&sc->lock);
449
450 for (unit = 0; unit < sc->nmidi; unit++)
451 if (sc->devs[unit] != NULL)
452 midiseq_close(sc->devs[unit]);
453 if (sc->devs != NULL) {
454 KASSERT(sc->ndevs > 0);
455 kmem_free(sc->devs, sc->ndevs * sizeof(struct midi_dev *));
456 sc->devs = NULL;
457 }
458
459 mutex_enter(&sc->lock);
460 sc->isopen = 0;
461 sequencer_exit(sc);
462
463 DPRINTF(("sequencerclose: %"PRIx64" done\n", dev));
464
465 return (0);
466 }
467
468 static int
469 seq_input_event(struct sequencer_softc *sc, seq_event_t *cmd)
470 {
471 struct sequencer_queue *q;
472
473 KASSERT(mutex_owned(&sc->lock));
474
475 DPRINTFN(2, ("seq_input_event: %02x %02x %02x %02x %02x "
476 "%02x %02x %02x\n", cmd->tag,
477 cmd->unknown.byte[0], cmd->unknown.byte[1],
478 cmd->unknown.byte[2], cmd->unknown.byte[3],
479 cmd->unknown.byte[4], cmd->unknown.byte[5],
480 cmd->unknown.byte[6]));
481 q = &sc->inq;
482 if (SEQ_QFULL(q))
483 return (ENOMEM);
484 SEQ_QPUT(q, *cmd);
485 cv_broadcast(&sc->rchan);
486 selnotify(&sc->rsel, 0, NOTE_SUBMIT);
487 if (sc->async != 0) {
488 proc_t *p;
489
490 mutex_enter(proc_lock);
491 if ((p = proc_find(sc->async)) != NULL)
492 psignal(p, SIGIO);
493 mutex_exit(proc_lock);
494 }
495 return 0;
496 }
497
498 static void
499 seq_softintr(void *addr)
500 {
501 struct sequencer_softc *sc;
502 struct timeval now;
503 seq_event_t ev;
504 int status, chan, unit;
505 sequencer_pcqitem_t qi;
506 u_long t;
507
508 sc = addr;
509
510 mutex_enter(&sc->lock);
511
512 qi.qi_ptr = pcq_get(sc->pcq);
513 if (qi.qi_ptr == NULL) {
514 mutex_exit(&sc->lock);
515 return;
516 }
517 KASSERT((qi.qi_msg[3] & 0x80) != 0);
518 unit = qi.qi_msg[3] & ~0x80;
519 status = MIDI_GET_STATUS(qi.qi_msg[0]);
520 chan = MIDI_GET_CHAN(qi.qi_msg[0]);
521 switch (status) {
522 case MIDI_NOTEON: /* midi(4) always canonicalizes hidden note-off */
523 ev = SEQ_MK_CHN(NOTEON, .device=unit, .channel=chan,
524 .key=qi.qi_msg[1], .velocity=qi.qi_msg[2]);
525 break;
526 case MIDI_NOTEOFF:
527 ev = SEQ_MK_CHN(NOTEOFF, .device=unit, .channel=chan,
528 .key=qi.qi_msg[1], .velocity=qi.qi_msg[2]);
529 break;
530 case MIDI_KEY_PRESSURE:
531 ev = SEQ_MK_CHN(KEY_PRESSURE, .device=unit, .channel=chan,
532 .key=qi.qi_msg[1], .pressure=qi.qi_msg[2]);
533 break;
534 case MIDI_CTL_CHANGE: /* XXX not correct for MSB */
535 ev = SEQ_MK_CHN(CTL_CHANGE, .device=unit, .channel=chan,
536 .controller=qi.qi_msg[1], .value=qi.qi_msg[2]);
537 break;
538 case MIDI_PGM_CHANGE:
539 ev = SEQ_MK_CHN(PGM_CHANGE, .device=unit, .channel=chan,
540 .program=qi.qi_msg[1]);
541 break;
542 case MIDI_CHN_PRESSURE:
543 ev = SEQ_MK_CHN(CHN_PRESSURE, .device=unit, .channel=chan,
544 .pressure=qi.qi_msg[1]);
545 break;
546 case MIDI_PITCH_BEND:
547 ev = SEQ_MK_CHN(PITCH_BEND, .device=unit, .channel=chan,
548 .value=(qi.qi_msg[1] & 0x7f) | ((qi.qi_msg[2] & 0x7f) << 7));
549 break;
550 default: /* this is now the point where MIDI_ACKs disappear */
551 mutex_exit(&sc->lock);
552 return;
553 }
554 microtime(&now);
555 if (!sc->timer.running)
556 now = sc->timer.stoptime;
557 SUBTIMEVAL(&now, &sc->timer.reftime);
558 t = now.tv_sec * 1000000 + now.tv_usec;
559 t /= sc->timer.usperdiv;
560 t += sc->timer.divs_lastchange;
561 if (t != sc->input_stamp) {
562 seq_input_event(sc, &SEQ_MK_TIMING(WAIT_ABS, .divisions=t));
563 sc->input_stamp = t; /* XXX wha hoppen if timer is reset? */
564 }
565 seq_input_event(sc, &ev);
566 mutex_exit(&sc->lock);
567 }
568
569 static int
570 sequencerread(dev_t dev, struct uio *uio, int ioflag)
571 {
572 struct sequencer_softc *sc;
573 struct sequencer_queue *q;
574 seq_event_t ev;
575 int error;
576
577 DPRINTFN(20, ("sequencerread: %"PRIx64", count=%d, ioflag=%x\n",
578 dev, (int)uio->uio_resid, ioflag));
579
580 if ((error = sequencer_enter(dev, &sc)) != 0)
581 return error;
582 q = &sc->inq;
583
584 if (sc->mode == SEQ_OLD) {
585 sequencer_exit(sc);
586 DPRINTFN(-1,("sequencerread: old read\n"));
587 return EINVAL; /* XXX unimplemented */
588 }
589 while (SEQ_QEMPTY(q)) {
590 if (ioflag & IO_NDELAY) {
591 error = EWOULDBLOCK;
592 break;
593 }
594 /* Drop lock to allow concurrent read/write. */
595 KASSERT(sc->dvlock != 0);
596 sc->dvlock--;
597 error = cv_wait_sig(&sc->rchan, &sc->lock);
598 while (sc->dvlock != 0) {
599 cv_wait(&sc->lchan, &sc->lock);
600 }
601 sc->dvlock++;
602 if (error) {
603 break;
604 }
605 }
606 while (uio->uio_resid >= sizeof(ev) && !error && !SEQ_QEMPTY(q)) {
607 SEQ_QGET(q, ev);
608 mutex_exit(&sc->lock);
609 error = uiomove(&ev, sizeof(ev), uio);
610 mutex_enter(&sc->lock);
611 }
612 sequencer_exit(sc);
613 return error;
614 }
615
616 static int
617 sequencerwrite(dev_t dev, struct uio *uio, int ioflag)
618 {
619 struct sequencer_softc *sc;
620 struct sequencer_queue *q;
621 int error;
622 seq_event_t cmdbuf;
623 int size;
624
625 DPRINTFN(2, ("sequencerwrite: %"PRIx64", count=%d\n", dev,
626 (int)uio->uio_resid));
627
628 if ((error = sequencer_enter(dev, &sc)) != 0)
629 return error;
630 q = &sc->outq;
631
632 size = sc->mode == SEQ_NEW ? sizeof cmdbuf : SEQOLD_CMDSIZE;
633 while (uio->uio_resid >= size && error == 0) {
634 mutex_exit(&sc->lock);
635 error = uiomove(&cmdbuf, size, uio);
636 if (error == 0) {
637 if (sc->mode == SEQ_OLD && seq_to_new(&cmdbuf, uio)) {
638 mutex_enter(&sc->lock);
639 continue;
640 }
641 if (cmdbuf.tag == SEQ_FULLSIZE) {
642 /* We do it like OSS does, asynchronously */
643 error = seq_do_fullsize(sc, &cmdbuf, uio);
644 if (error == 0) {
645 mutex_enter(&sc->lock);
646 continue;
647 }
648 }
649 }
650 mutex_enter(&sc->lock);
651 if (error != 0) {
652 break;
653 }
654 while (SEQ_QFULL(q)) {
655 seq_startoutput(sc);
656 if (SEQ_QFULL(q)) {
657 if (ioflag & IO_NDELAY) {
658 error = EWOULDBLOCK;
659 break;
660 }
661 error = cv_wait_sig(&sc->wchan, &sc->lock);
662 if (error) {
663 break;
664 }
665 }
666 }
667 if (error == 0) {
668 SEQ_QPUT(q, cmdbuf);
669 }
670 }
671 if (error == 0) {
672 seq_startoutput(sc);
673 } else {
674 DPRINTFN(2, ("sequencerwrite: error=%d\n", error));
675 }
676 sequencer_exit(sc);
677 return error;
678 }
679
680 static int
681 sequencerioctl(dev_t dev, u_long cmd, void *addr, int flag, struct lwp *l)
682 {
683 struct sequencer_softc *sc;
684 struct synth_info *si;
685 struct midi_dev *md;
686 int devno, error, t;
687 struct timeval now;
688 u_long tx;
689
690 DPRINTFN(2, ("sequencerioctl: %"PRIx64" cmd=0x%08lx\n", dev, cmd));
691
692 if ((error = sequencer_enter(dev, &sc)) != 0)
693 return error;
694 switch (cmd) {
695 case FIONBIO:
696 /* All handled in the upper FS layer. */
697 break;
698
699 case FIOASYNC:
700 if (*(int *)addr) {
701 if (sc->async != 0)
702 return EBUSY;
703 sc->async = curproc->p_pid;
704 DPRINTF(("sequencer_ioctl: FIOASYNC %d\n",
705 sc->async));
706 } else {
707 sc->async = 0;
708 }
709 break;
710
711 case SEQUENCER_RESET:
712 seq_reset(sc);
713 break;
714
715 case SEQUENCER_PANIC:
716 seq_reset(sc);
717 /* Do more? OSS doesn't */
718 break;
719
720 case SEQUENCER_SYNC:
721 if (sc->flags != FREAD)
722 seq_drain(sc);
723 break;
724
725 case SEQUENCER_INFO:
726 si = (struct synth_info*)addr;
727 devno = si->device;
728 if (devno < 0 || devno >= sc->nmidi) {
729 error = EINVAL;
730 break;
731 }
732 md = sc->devs[devno];
733 strncpy(si->name, md->name, sizeof si->name);
734 si->synth_type = SYNTH_TYPE_MIDI;
735 si->synth_subtype = md->subtype;
736 si->nr_voices = md->nr_voices;
737 si->instr_bank_size = md->instr_bank_size;
738 si->capabilities = md->capabilities;
739 break;
740
741 case SEQUENCER_NRSYNTHS:
742 *(int *)addr = sc->nmidi;
743 break;
744
745 case SEQUENCER_NRMIDIS:
746 *(int *)addr = sc->nmidi;
747 break;
748
749 case SEQUENCER_OUTOFBAND:
750 DPRINTFN(3, ("sequencer_ioctl: OOB=%02x %02x %02x %02x %02x %02x %02x %02x\n",
751 *(u_char *)addr, *((u_char *)addr+1),
752 *((u_char *)addr+2), *((u_char *)addr+3),
753 *((u_char *)addr+4), *((u_char *)addr+5),
754 *((u_char *)addr+6), *((u_char *)addr+7)));
755 if ((sc->flags & FWRITE) == 0) {
756 error = EBADF;
757 } else {
758 error = seq_do_command(sc, (seq_event_t *)addr);
759 }
760 break;
761
762 case SEQUENCER_TMR_TIMEBASE:
763 t = *(int *)addr;
764 if (t < 1)
765 t = 1;
766 if (t > 10000)
767 t = 10000;
768 *(int *)addr = t;
769 sc->timer.timebase_divperbeat = t;
770 sc->timer.divs_lastchange = sc->timer.divs_lastevent;
771 microtime(&sc->timer.reftime);
772 RECALC_USPERDIV(&sc->timer);
773 break;
774
775 case SEQUENCER_TMR_START:
776 error = seq_do_timing(sc, &SEQ_MK_TIMING(START));
777 break;
778
779 case SEQUENCER_TMR_STOP:
780 error = seq_do_timing(sc, &SEQ_MK_TIMING(STOP));
781 break;
782
783 case SEQUENCER_TMR_CONTINUE:
784 error = seq_do_timing(sc, &SEQ_MK_TIMING(CONTINUE));
785 break;
786
787 case SEQUENCER_TMR_TEMPO:
788 error = seq_do_timing(sc,
789 &SEQ_MK_TIMING(TEMPO, .bpm=*(int *)addr));
790 if (error == 0)
791 *(int *)addr = sc->timer.tempo_beatpermin;
792 break;
793
794 case SEQUENCER_TMR_SOURCE:
795 *(int *)addr = SEQUENCER_TMR_INTERNAL;
796 break;
797
798 case SEQUENCER_TMR_METRONOME:
799 /* noop */
800 break;
801
802 case SEQUENCER_THRESHOLD:
803 t = SEQ_MAXQ - *(int *)addr / sizeof (seq_event_rec);
804 if (t < 1)
805 t = 1;
806 if (t > SEQ_MAXQ)
807 t = SEQ_MAXQ;
808 sc->lowat = t;
809 break;
810
811 case SEQUENCER_CTRLRATE:
812 *(int *)addr = (sc->timer.tempo_beatpermin
813 *sc->timer.timebase_divperbeat + 30) / 60;
814 break;
815
816 case SEQUENCER_GETTIME:
817 microtime(&now);
818 SUBTIMEVAL(&now, &sc->timer.reftime);
819 tx = now.tv_sec * 1000000 + now.tv_usec;
820 tx /= sc->timer.usperdiv;
821 tx += sc->timer.divs_lastchange;
822 *(int *)addr = tx;
823 break;
824
825 default:
826 DPRINTFN(-1,("sequencer_ioctl: unimpl %08lx\n", cmd));
827 error = EINVAL;
828 break;
829 }
830 sequencer_exit(sc);
831
832 return error;
833 }
834
835 static int
836 sequencerpoll(dev_t dev, int events, struct lwp *l)
837 {
838 struct sequencer_softc *sc;
839 int revents = 0;
840 if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
841 return ENXIO;
842
843 DPRINTF(("sequencerpoll: %p events=0x%x\n", sc, events));
844
845 mutex_enter(&sc->lock);
846 if (events & (POLLIN | POLLRDNORM))
847 if ((sc->flags&FREAD) && !SEQ_QEMPTY(&sc->inq))
848 revents |= events & (POLLIN | POLLRDNORM);
849
850 if (events & (POLLOUT | POLLWRNORM))
851 if ((sc->flags&FWRITE) && SEQ_QLEN(&sc->outq) < sc->lowat)
852 revents |= events & (POLLOUT | POLLWRNORM);
853
854 if (revents == 0) {
855 if ((sc->flags&FREAD) && (events & (POLLIN | POLLRDNORM)))
856 selrecord(l, &sc->rsel);
857
858 if ((sc->flags&FWRITE) && (events & (POLLOUT | POLLWRNORM)))
859 selrecord(l, &sc->wsel);
860 }
861 mutex_exit(&sc->lock);
862
863 return revents;
864 }
865
866 static void
867 filt_sequencerrdetach(struct knote *kn)
868 {
869 struct sequencer_softc *sc = kn->kn_hook;
870
871 mutex_enter(&sc->lock);
872 SLIST_REMOVE(&sc->rsel.sel_klist, kn, knote, kn_selnext);
873 mutex_exit(&sc->lock);
874 }
875
876 static int
877 filt_sequencerread(struct knote *kn, long hint)
878 {
879 struct sequencer_softc *sc = kn->kn_hook;
880 int rv;
881
882 if (hint != NOTE_SUBMIT) {
883 mutex_enter(&sc->lock);
884 }
885 if (SEQ_QEMPTY(&sc->inq)) {
886 rv = 0;
887 } else {
888 kn->kn_data = sizeof(seq_event_rec);
889 rv = 1;
890 }
891 if (hint != NOTE_SUBMIT) {
892 mutex_exit(&sc->lock);
893 }
894 return rv;
895 }
896
897 static const struct filterops sequencerread_filtops =
898 { 1, NULL, filt_sequencerrdetach, filt_sequencerread };
899
900 static void
901 filt_sequencerwdetach(struct knote *kn)
902 {
903 struct sequencer_softc *sc = kn->kn_hook;
904
905 mutex_enter(&sc->lock);
906 SLIST_REMOVE(&sc->wsel.sel_klist, kn, knote, kn_selnext);
907 mutex_exit(&sc->lock);
908 }
909
910 static int
911 filt_sequencerwrite(struct knote *kn, long hint)
912 {
913 struct sequencer_softc *sc = kn->kn_hook;
914 int rv;
915
916 if (hint != NOTE_SUBMIT) {
917 mutex_enter(&sc->lock);
918 }
919 if (SEQ_QLEN(&sc->outq) >= sc->lowat) {
920 rv = 0;
921 } else {
922 kn->kn_data = sizeof(seq_event_rec);
923 rv = 1;
924 }
925 if (hint != NOTE_SUBMIT) {
926 mutex_exit(&sc->lock);
927 }
928 return rv;
929 }
930
931 static const struct filterops sequencerwrite_filtops =
932 { 1, NULL, filt_sequencerwdetach, filt_sequencerwrite };
933
934 static int
935 sequencerkqfilter(dev_t dev, struct knote *kn)
936 {
937 struct sequencer_softc *sc;
938 struct klist *klist;
939 if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
940 return ENXIO;
941
942 switch (kn->kn_filter) {
943 case EVFILT_READ:
944 klist = &sc->rsel.sel_klist;
945 kn->kn_fop = &sequencerread_filtops;
946 break;
947
948 case EVFILT_WRITE:
949 klist = &sc->wsel.sel_klist;
950 kn->kn_fop = &sequencerwrite_filtops;
951 break;
952
953 default:
954 return (EINVAL);
955 }
956
957 kn->kn_hook = sc;
958
959 mutex_enter(&sc->lock);
960 SLIST_INSERT_HEAD(klist, kn, kn_selnext);
961 mutex_exit(&sc->lock);
962
963 return (0);
964 }
965
966 static void
967 seq_reset(struct sequencer_softc *sc)
968 {
969 int i, chn;
970 struct midi_dev *md;
971
972 KASSERT(mutex_owned(&sc->lock));
973
974 if ( !(sc->flags & FWRITE) )
975 return;
976 for (i = 0; i < sc->nmidi; i++) {
977 md = sc->devs[i];
978 midiseq_reset(md);
979 for (chn = 0; chn < MAXCHAN; chn++) {
980 midiseq_ctlchange(md, chn, &SEQ_MK_CHN(CTL_CHANGE,
981 .controller=MIDI_CTRL_NOTES_OFF));
982 midiseq_ctlchange(md, chn, &SEQ_MK_CHN(CTL_CHANGE,
983 .controller=MIDI_CTRL_RESET));
984 midiseq_pitchbend(md, chn, &SEQ_MK_CHN(PITCH_BEND,
985 .value=MIDI_BEND_NEUTRAL));
986 }
987 }
988 }
989
990 static int
991 seq_do_command(struct sequencer_softc *sc, seq_event_t *b)
992 {
993 int dev;
994
995 KASSERT(mutex_owned(&sc->lock));
996
997 DPRINTFN(4, ("seq_do_command: %p cmd=0x%02x\n", sc, b->timing.op));
998
999 switch(b->tag) {
1000 case SEQ_LOCAL:
1001 return seq_do_local(sc, b);
1002 case SEQ_TIMING:
1003 return seq_do_timing(sc, b);
1004 case SEQ_CHN_VOICE:
1005 return seq_do_chnvoice(sc, b);
1006 case SEQ_CHN_COMMON:
1007 return seq_do_chncommon(sc, b);
1008 case SEQ_SYSEX:
1009 return seq_do_sysex(sc, b);
1010 /* COMPAT */
1011 case SEQOLD_MIDIPUTC:
1012 dev = b->putc.device;
1013 if (dev < 0 || dev >= sc->nmidi)
1014 return (ENXIO);
1015 return midiseq_out(sc->devs[dev], &b->putc.byte, 1, 0);
1016 default:
1017 DPRINTFN(-1,("seq_do_command: unimpl command %02x\n", b->tag));
1018 return (EINVAL);
1019 }
1020 }
1021
1022 static int
1023 seq_do_chnvoice(struct sequencer_softc *sc, seq_event_t *b)
1024 {
1025 int dev;
1026 int error;
1027 struct midi_dev *md;
1028
1029 KASSERT(mutex_owned(&sc->lock));
1030
1031 dev = b->voice.device;
1032 if (dev < 0 || dev >= sc->nmidi ||
1033 b->voice.channel > 15 ||
1034 b->voice.key >= SEQ_NOTE_MAX)
1035 return ENXIO;
1036 md = sc->devs[dev];
1037 switch(b->voice.op) {
1038 case MIDI_NOTEON: /* no need to special-case hidden noteoff here */
1039 error = midiseq_noteon(md, b->voice.channel, b->voice.key, b);
1040 break;
1041 case MIDI_NOTEOFF:
1042 error = midiseq_noteoff(md, b->voice.channel, b->voice.key, b);
1043 break;
1044 case MIDI_KEY_PRESSURE:
1045 error = midiseq_keypressure(md,
1046 b->voice.channel, b->voice.key, b);
1047 break;
1048 default:
1049 DPRINTFN(-1,("seq_do_chnvoice: unimpl command %02x\n",
1050 b->voice.op));
1051 error = EINVAL;
1052 break;
1053 }
1054 return error;
1055 }
1056
1057 static int
1058 seq_do_chncommon(struct sequencer_softc *sc, seq_event_t *b)
1059 {
1060 int dev;
1061 int error;
1062 struct midi_dev *md;
1063
1064 KASSERT(mutex_owned(&sc->lock));
1065
1066 dev = b->common.device;
1067 if (dev < 0 || dev >= sc->nmidi ||
1068 b->common.channel > 15)
1069 return ENXIO;
1070 md = sc->devs[dev];
1071 DPRINTFN(2,("seq_do_chncommon: %02x\n", b->common.op));
1072
1073 error = 0;
1074 switch(b->common.op) {
1075 case MIDI_PGM_CHANGE:
1076 error = midiseq_pgmchange(md, b->common.channel, b);
1077 break;
1078 case MIDI_CTL_CHANGE:
1079 error = midiseq_ctlchange(md, b->common.channel, b);
1080 break;
1081 case MIDI_PITCH_BEND:
1082 error = midiseq_pitchbend(md, b->common.channel, b);
1083 break;
1084 case MIDI_CHN_PRESSURE:
1085 error = midiseq_chnpressure(md, b->common.channel, b);
1086 break;
1087 default:
1088 DPRINTFN(-1,("seq_do_chncommon: unimpl command %02x\n",
1089 b->common.op));
1090 error = EINVAL;
1091 break;
1092 }
1093 return error;
1094 }
1095
1096 static int
1097 seq_do_local(struct sequencer_softc *sc, seq_event_t *b)
1098 {
1099
1100 KASSERT(mutex_owned(&sc->lock));
1101
1102 return (EINVAL);
1103 }
1104
1105 static int
1106 seq_do_sysex(struct sequencer_softc *sc, seq_event_t *b)
1107 {
1108 int dev, i;
1109 struct midi_dev *md;
1110 uint8_t *bf = b->sysex.buffer;
1111
1112 KASSERT(mutex_owned(&sc->lock));
1113
1114 dev = b->sysex.device;
1115 if (dev < 0 || dev >= sc->nmidi)
1116 return (ENXIO);
1117 DPRINTF(("seq_do_sysex: dev=%d\n", dev));
1118 md = sc->devs[dev];
1119
1120 if (!md->doingsysex) {
1121 midiseq_out(md, (uint8_t[]){MIDI_SYSEX_START}, 1, 0);
1122 md->doingsysex = 1;
1123 }
1124
1125 for (i = 0; i < 6 && bf[i] != 0xff; i++)
1126 ;
1127 midiseq_out(md, bf, i, 0);
1128 if (i < 6 || (i > 0 && bf[i-1] == MIDI_SYSEX_END))
1129 md->doingsysex = 0;
1130 return 0;
1131 }
1132
1133 static void
1134 seq_timer_waitabs(struct sequencer_softc *sc, uint32_t divs)
1135 {
1136 struct timeval when;
1137 long long usec;
1138 struct syn_timer *t;
1139 int ticks;
1140
1141 KASSERT(mutex_owned(&sc->lock));
1142
1143 t = &sc->timer;
1144 t->divs_lastevent = divs;
1145 divs -= t->divs_lastchange;
1146 usec = (long long)divs * (long long)t->usperdiv; /* convert to usec */
1147 when.tv_sec = usec / 1000000;
1148 when.tv_usec = usec % 1000000;
1149 DPRINTFN(4, ("seq_timer_waitabs: adjdivs=%d, sleep when=%"PRId64".%06"PRId64,
1150 divs, when.tv_sec, (uint64_t)when.tv_usec));
1151 ADDTIMEVAL(&when, &t->reftime); /* abstime for end */
1152 ticks = tvhzto(&when);
1153 DPRINTFN(4, (" when+start=%"PRId64".%06"PRId64", tick=%d\n",
1154 when.tv_sec, (uint64_t)when.tv_usec, ticks));
1155 if (ticks > 0) {
1156 #ifdef DIAGNOSTIC
1157 if (ticks > 20 * hz) {
1158 /* Waiting more than 20s */
1159 printf("seq_timer_waitabs: funny ticks=%d, "
1160 "usec=%lld\n", ticks, usec);
1161 }
1162 #endif
1163 sc->timeout = 1;
1164 callout_reset(&sc->sc_callout, ticks,
1165 seq_timeout, sc);
1166 }
1167 #ifdef SEQUENCER_DEBUG
1168 else if (tick < 0)
1169 DPRINTF(("seq_timer_waitabs: ticks = %d\n", ticks));
1170 #endif
1171 }
1172
1173 static int
1174 seq_do_timing(struct sequencer_softc *sc, seq_event_t *b)
1175 {
1176 struct syn_timer *t = &sc->timer;
1177 struct timeval when;
1178 int error;
1179
1180 KASSERT(mutex_owned(&sc->lock));
1181
1182 error = 0;
1183 switch(b->timing.op) {
1184 case TMR_WAIT_REL:
1185 seq_timer_waitabs(sc,
1186 b->t_WAIT_REL.divisions + t->divs_lastevent);
1187 break;
1188 case TMR_WAIT_ABS:
1189 seq_timer_waitabs(sc, b->t_WAIT_ABS.divisions);
1190 break;
1191 case TMR_START:
1192 microtime(&t->reftime);
1193 t->divs_lastevent = t->divs_lastchange = 0;
1194 t->running = 1;
1195 break;
1196 case TMR_STOP:
1197 microtime(&t->stoptime);
1198 t->running = 0;
1199 break;
1200 case TMR_CONTINUE:
1201 if (t->running)
1202 break;
1203 microtime(&when);
1204 SUBTIMEVAL(&when, &t->stoptime);
1205 ADDTIMEVAL(&t->reftime, &when);
1206 t->running = 1;
1207 break;
1208 case TMR_TEMPO:
1209 /* bpm is unambiguously MIDI clocks per minute / 24 */
1210 /* (24 MIDI clocks are usually but not always a quarter note) */
1211 if (b->t_TEMPO.bpm < 8) /* where are these limits specified? */
1212 t->tempo_beatpermin = 8;
1213 else if (b->t_TEMPO.bpm > 360) /* ? */
1214 t->tempo_beatpermin = 360;
1215 else
1216 t->tempo_beatpermin = b->t_TEMPO.bpm;
1217 t->divs_lastchange = t->divs_lastevent;
1218 microtime(&t->reftime);
1219 RECALC_USPERDIV(t);
1220 break;
1221 case TMR_ECHO:
1222 error = seq_input_event(sc, b);
1223 break;
1224 case TMR_RESET:
1225 t->divs_lastevent = t->divs_lastchange = 0;
1226 microtime(&t->reftime);
1227 break;
1228 case TMR_SPP:
1229 case TMR_TIMESIG:
1230 DPRINTF(("seq_do_timing: unimplemented %02x\n", b->timing.op));
1231 error = EINVAL; /* not quite accurate... */
1232 break;
1233 default:
1234 DPRINTF(("seq_timer: unknown %02x\n", b->timing.op));
1235 error = EINVAL;
1236 break;
1237 }
1238 return (error);
1239 }
1240
1241 static int
1242 seq_do_fullsize(struct sequencer_softc *sc, seq_event_t *b, struct uio *uio)
1243 {
1244 struct sysex_info sysex;
1245 u_int dev;
1246
1247 #ifdef DIAGNOSTIC
1248 if (sizeof(seq_event_rec) != SEQ_SYSEX_HDRSIZE) {
1249 printf("seq_do_fullsize: sysex size ??\n");
1250 return EINVAL;
1251 }
1252 #endif
1253 memcpy(&sysex, b, sizeof sysex);
1254 dev = sysex.device_no;
1255 if (/* dev < 0 || */ dev >= sc->nmidi)
1256 return (ENXIO);
1257 DPRINTFN(2, ("seq_do_fullsize: fmt=%04x, dev=%d, len=%d\n",
1258 sysex.key, dev, sysex.len));
1259 return (midiseq_loadpatch(sc->devs[dev], &sysex, uio));
1260 }
1261
1262 /*
1263 * Convert an old sequencer event to a new one.
1264 * NOTE: on entry, *ev may contain valid data only in the first 4 bytes.
1265 * That may be true even on exit (!) in the case of SEQOLD_MIDIPUTC; the
1266 * caller will only look at the first bytes in that case anyway. Ugly? Sure.
1267 */
1268 static int
1269 seq_to_new(seq_event_t *ev, struct uio *uio)
1270 {
1271 int cmd, chan, note, parm;
1272 uint32_t tmp_delay;
1273 int error;
1274 uint8_t *bfp;
1275
1276 cmd = ev->tag;
1277 bfp = ev->unknown.byte;
1278 chan = *bfp++;
1279 note = *bfp++;
1280 parm = *bfp++;
1281 DPRINTFN(3, ("seq_to_new: 0x%02x %d %d %d\n", cmd, chan, note, parm));
1282
1283 if (cmd >= 0x80) {
1284 /* Fill the event record */
1285 if (uio->uio_resid >= sizeof *ev - SEQOLD_CMDSIZE) {
1286 error = uiomove(bfp, sizeof *ev - SEQOLD_CMDSIZE, uio);
1287 if (error)
1288 return error;
1289 } else
1290 return EINVAL;
1291 }
1292
1293 switch(cmd) {
1294 case SEQOLD_NOTEOFF:
1295 /*
1296 * What's with the SEQ_NOTE_XXX? In OSS this seems to have
1297 * been undocumented magic for messing with the overall volume
1298 * of a 'voice', equated precariously with 'channel' and
1299 * pretty much unimplementable except by directly frobbing a
1300 * synth chip. For us, who treat everything as interfaced over
1301 * MIDI, this will just be unceremoniously discarded as
1302 * invalid in midiseq_noteoff, making the whole event an
1303 * elaborate no-op, and that doesn't seem to be any different
1304 * from what happens on linux with a MIDI-interfaced device,
1305 * by the way. The moral is ... use the new /dev/music API, ok?
1306 */
1307 *ev = SEQ_MK_CHN(NOTEOFF, .device=0, .channel=chan,
1308 .key=SEQ_NOTE_XXX, .velocity=parm);
1309 break;
1310 case SEQOLD_NOTEON:
1311 *ev = SEQ_MK_CHN(NOTEON,
1312 .device=0, .channel=chan, .key=note, .velocity=parm);
1313 break;
1314 case SEQOLD_WAIT:
1315 /*
1316 * This event cannot even /exist/ on non-littleendian machines,
1317 * and so help me, that's exactly the way OSS defined it.
1318 * Also, the OSS programmer's guide states (p. 74, v1.11)
1319 * that seqold time units are system clock ticks, unlike
1320 * the new 'divisions' which are determined by timebase. In
1321 * that case we would need to do scaling here - but no such
1322 * behavior is visible in linux either--which also treats this
1323 * value, surprisingly, as an absolute, not relative, time.
1324 * My guess is that this event has gone unused so long that
1325 * nobody could agree we got it wrong no matter what we do.
1326 */
1327 tmp_delay = *(uint32_t *)ev >> 8;
1328 *ev = SEQ_MK_TIMING(WAIT_ABS, .divisions=tmp_delay);
1329 break;
1330 case SEQOLD_SYNCTIMER:
1331 /*
1332 * The TMR_RESET event is not defined in any OSS materials
1333 * I can find; it may have been invented here just to provide
1334 * an accurate _to_new translation of this event.
1335 */
1336 *ev = SEQ_MK_TIMING(RESET);
1337 break;
1338 case SEQOLD_PGMCHANGE:
1339 *ev = SEQ_MK_CHN(PGM_CHANGE,
1340 .device=0, .channel=chan, .program=note);
1341 break;
1342 case SEQOLD_MIDIPUTC:
1343 break; /* interpret in normal mode */
1344 case SEQOLD_ECHO:
1345 case SEQOLD_PRIVATE:
1346 case SEQOLD_EXTENDED:
1347 default:
1348 DPRINTF(("seq_to_new: not impl 0x%02x\n", cmd));
1349 return EINVAL;
1350 /* In case new-style events show up */
1351 case SEQ_TIMING:
1352 case SEQ_CHN_VOICE:
1353 case SEQ_CHN_COMMON:
1354 case SEQ_FULLSIZE:
1355 break;
1356 }
1357 return 0;
1358 }
1359
1360 /**********************************************/
1361
1362 void
1363 midiseq_in(struct midi_dev *md, u_char *msg, int len)
1364 {
1365 struct sequencer_softc *sc;
1366 sequencer_pcqitem_t qi;
1367
1368 DPRINTFN(2, ("midiseq_in: %p %02x %02x %02x\n",
1369 md, msg[0], msg[1], msg[2]));
1370
1371 sc = md->seq;
1372
1373 qi.qi_msg[0] = msg[0];
1374 qi.qi_msg[1] = msg[1];
1375 qi.qi_msg[2] = msg[2];
1376 qi.qi_msg[3] = md->unit | 0x80; /* ensure non-zero value of qi_ptr */
1377 pcq_put(sc->pcq, qi.qi_ptr);
1378 softint_schedule(sc->sih);
1379 }
1380
1381 static struct midi_dev *
1382 midiseq_open(int unit, int flags)
1383 {
1384 extern struct cfdriver midi_cd;
1385 int error;
1386 struct midi_dev *md;
1387 struct midi_softc *sc;
1388 struct midi_info mi;
1389 int major;
1390 dev_t dev;
1391 vnode_t *vp;
1392 int oflags;
1393
1394 major = devsw_name2chr("midi", NULL, 0);
1395 dev = makedev(major, unit);
1396
1397 DPRINTFN(2, ("midiseq_open: %d %d\n", unit, flags));
1398
1399 error = cdevvp(dev, &vp);
1400 if (error)
1401 return NULL;
1402 vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
1403 error = VOP_OPEN(vp, flags, kauth_cred_get());
1404 VOP_UNLOCK(vp);
1405 if (error) {
1406 vrele(vp);
1407 return NULL;
1408 }
1409
1410 /* Only after we have acquired reference via VOP_OPEN(). */
1411 midi_getinfo(dev, &mi);
1412 oflags = flags;
1413 if ((mi.props & MIDI_PROP_CAN_INPUT) == 0)
1414 flags &= ~FREAD;
1415 if ((flags & (FREAD|FWRITE)) == 0) {
1416 VOP_CLOSE(vp, oflags, kauth_cred_get());
1417 vrele(vp);
1418 return NULL;
1419 }
1420
1421 sc = device_lookup_private(&midi_cd, unit);
1422 md = kmem_zalloc(sizeof(*md), KM_SLEEP);
1423 md->msc = sc;
1424 md->unit = unit;
1425 md->name = mi.name;
1426 md->subtype = 0;
1427 md->nr_voices = 128; /* XXX */
1428 md->instr_bank_size = 128; /* XXX */
1429 md->vp = vp;
1430 if (mi.props & MIDI_PROP_CAN_INPUT)
1431 md->capabilities |= SYNTH_CAP_INPUT;
1432 sc->seq_md = md;
1433 return (md);
1434 }
1435
1436 static void
1437 midiseq_close(struct midi_dev *md)
1438 {
1439 DPRINTFN(2, ("midiseq_close: %d\n", md->unit));
1440 (void)vn_close(md->vp, 0, kauth_cred_get());
1441 kmem_free(md, sizeof(*md));
1442 }
1443
1444 static void
1445 midiseq_reset(struct midi_dev *md)
1446 {
1447 /* XXX send GM reset? */
1448 DPRINTFN(3, ("midiseq_reset: %d\n", md->unit));
1449 }
1450
1451 static int
1452 midiseq_out(struct midi_dev *md, u_char *bf, u_int cc, int chk)
1453 {
1454 DPRINTFN(5, ("midiseq_out: m=%p, unit=%d, bf[0]=0x%02x, cc=%d\n",
1455 md->msc, md->unit, bf[0], cc));
1456
1457 /* midi(4) does running status compression where appropriate. */
1458 return midi_writebytes(md->unit, bf, cc);
1459 }
1460
1461 /*
1462 * If the writing process hands us a hidden note-off in a note-on event,
1463 * we will simply write it that way; no need to special case it here,
1464 * as midi(4) will always canonicalize or compress as appropriate anyway.
1465 */
1466 static int
1467 midiseq_noteon(struct midi_dev *md, int chan, int key, seq_event_t *ev)
1468 {
1469 return midiseq_out(md, (uint8_t[]){
1470 MIDI_NOTEON | chan, key, ev->c_NOTEON.velocity & 0x7f}, 3, 1);
1471 }
1472
1473 static int
1474 midiseq_noteoff(struct midi_dev *md, int chan, int key, seq_event_t *ev)
1475 {
1476 return midiseq_out(md, (uint8_t[]){
1477 MIDI_NOTEOFF | chan, key, ev->c_NOTEOFF.velocity & 0x7f}, 3, 1);
1478 }
1479
1480 static int
1481 midiseq_keypressure(struct midi_dev *md, int chan, int key, seq_event_t *ev)
1482 {
1483 return midiseq_out(md, (uint8_t[]){
1484 MIDI_KEY_PRESSURE | chan, key,
1485 ev->c_KEY_PRESSURE.pressure & 0x7f}, 3, 1);
1486 }
1487
1488 static int
1489 midiseq_pgmchange(struct midi_dev *md, int chan, seq_event_t *ev)
1490 {
1491 if (ev->c_PGM_CHANGE.program > 127)
1492 return EINVAL;
1493 return midiseq_out(md, (uint8_t[]){
1494 MIDI_PGM_CHANGE | chan, ev->c_PGM_CHANGE.program}, 2, 1);
1495 }
1496
1497 static int
1498 midiseq_chnpressure(struct midi_dev *md, int chan, seq_event_t *ev)
1499 {
1500 if (ev->c_CHN_PRESSURE.pressure > 127)
1501 return EINVAL;
1502 return midiseq_out(md, (uint8_t[]){
1503 MIDI_CHN_PRESSURE | chan, ev->c_CHN_PRESSURE.pressure}, 2, 1);
1504 }
1505
1506 static int
1507 midiseq_ctlchange(struct midi_dev *md, int chan, seq_event_t *ev)
1508 {
1509 if (ev->c_CTL_CHANGE.controller > 127)
1510 return EINVAL;
1511 return midiseq_out( md, (uint8_t[]){
1512 MIDI_CTL_CHANGE | chan, ev->c_CTL_CHANGE.controller,
1513 ev->c_CTL_CHANGE.value & 0x7f /* XXX this is SO wrong */
1514 }, 3, 1);
1515 }
1516
1517 static int
1518 midiseq_pitchbend(struct midi_dev *md, int chan, seq_event_t *ev)
1519 {
1520 return midiseq_out(md, (uint8_t[]){
1521 MIDI_PITCH_BEND | chan,
1522 ev->c_PITCH_BEND.value & 0x7f,
1523 (ev->c_PITCH_BEND.value >> 7) & 0x7f}, 3, 1);
1524 }
1525
1526 static int
1527 midiseq_loadpatch(struct midi_dev *md,
1528 struct sysex_info *sysex, struct uio *uio)
1529 {
1530 struct sequencer_softc *sc;
1531 u_char c, bf[128];
1532 int i, cc, error;
1533
1534 if (sysex->key != SEQ_SYSEX_PATCH) {
1535 DPRINTFN(-1,("midiseq_loadpatch: bad patch key 0x%04x\n",
1536 sysex->key));
1537 return (EINVAL);
1538 }
1539 if (uio->uio_resid < sysex->len)
1540 /* adjust length, should be an error */
1541 sysex->len = uio->uio_resid;
1542
1543 DPRINTFN(2, ("midiseq_loadpatch: len=%d\n", sysex->len));
1544 if (sysex->len == 0)
1545 return EINVAL;
1546 error = uiomove(&c, 1, uio);
1547 if (error)
1548 return error;
1549 if (c != MIDI_SYSEX_START) /* must start like this */
1550 return EINVAL;
1551 sc = md->seq;
1552 mutex_enter(&sc->lock);
1553 error = midiseq_out(md, &c, 1, 0);
1554 mutex_exit(&sc->lock);
1555 if (error)
1556 return error;
1557 --sysex->len;
1558 while (sysex->len > 0) {
1559 cc = sysex->len;
1560 if (cc > sizeof bf)
1561 cc = sizeof bf;
1562 error = uiomove(bf, cc, uio);
1563 if (error)
1564 break;
1565 for(i = 0; i < cc && !MIDI_IS_STATUS(bf[i]); i++)
1566 ;
1567 /*
1568 * XXX midi(4)'s buffer might not accommodate this, and the
1569 * function will not block us (though in this case we have
1570 * a process and could in principle block).
1571 */
1572 mutex_enter(&sc->lock);
1573 error = midiseq_out(md, bf, i, 0);
1574 mutex_exit(&sc->lock);
1575 if (error)
1576 break;
1577 sysex->len -= i;
1578 if (i != cc)
1579 break;
1580 }
1581 /*
1582 * Any leftover data in uio is rubbish;
1583 * the SYSEX should be one write ending in SYSEX_END.
1584 */
1585 uio->uio_resid = 0;
1586 c = MIDI_SYSEX_END;
1587 mutex_enter(&sc->lock);
1588 error = midiseq_out(md, &c, 1, 0);
1589 mutex_exit(&sc->lock);
1590 return error;
1591 }
1592
1593 #include "midi.h"
1594 #if NMIDI == 0
1595 static dev_type_open(midiopen);
1596 static dev_type_close(midiclose);
1597
1598 const struct cdevsw midi_cdevsw = {
1599 .d_open = midiopen,
1600 .d_close = midiclose,
1601 .d_read = noread,
1602 .d_write = nowrite,
1603 .d_ioctl = noioctl,
1604 .d_stop = nostop,
1605 .d_tty = notty,
1606 .d_poll = nopoll,
1607 .d_mmap = nommap,
1608 .d_kqfilter = nokqfilter,
1609 .d_discard = nodiscard,
1610 .d_flag = D_OTHER | D_MPSAFE
1611 };
1612
1613 /*
1614 * If someone has a sequencer, but no midi devices there will
1615 * be unresolved references, so we provide little stubs.
1616 */
1617
1618 int
1619 midi_unit_count(void)
1620 {
1621 return (0);
1622 }
1623
1624 static int
1625 midiopen(dev_t dev, int flags, int ifmt, struct lwp *l)
1626 {
1627 return (ENXIO);
1628 }
1629
1630 struct cfdriver midi_cd;
1631
1632 void
1633 midi_getinfo(dev_t dev, struct midi_info *mi)
1634 {
1635 mi->name = "Dummy MIDI device";
1636 mi->props = 0;
1637 }
1638
1639 static int
1640 midiclose(dev_t dev, int flags, int ifmt, struct lwp *l)
1641 {
1642 return (ENXIO);
1643 }
1644
1645 int
1646 midi_writebytes(int unit, u_char *bf, int cc)
1647 {
1648 return (ENXIO);
1649 }
1650 #endif /* NMIDI == 0 */
1651