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sequencer.c revision 1.61
      1 /*	$NetBSD: sequencer.c,v 1.61 2014/12/23 11:37:40 mrg 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 1.61 2014/12/23 11:37:40 mrg 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 {
    179 	callout_halt(&sc->sc_callout, &sc->lock);
    180 	callout_destroy(&sc->sc_callout);
    181 	softint_disestablish(sc->sih);
    182 	cv_destroy(&sc->rchan);
    183 	cv_destroy(&sc->wchan);
    184 	cv_destroy(&sc->lchan);
    185 	if (sc->pcq)
    186 		pcq_destroy(sc->pcq);
    187 	kmem_free(sc, sizeof(*sc));
    188 }
    189 
    190 static struct sequencer_softc *
    191 sequencercreate(int unit)
    192 {
    193 	struct sequencer_softc *sc = kmem_zalloc(sizeof(*sc), KM_SLEEP);
    194 	if (sc == NULL) {
    195 #ifdef DIAGNOSTIC
    196 		printf("%s: out of memory\n", __func__);
    197 #endif
    198 		return NULL;
    199 	}
    200 	sc->sc_unit = unit;
    201 	callout_init(&sc->sc_callout, CALLOUT_MPSAFE);
    202 	sc->sih = softint_establish(SOFTINT_NET | SOFTINT_MPSAFE,
    203 	    seq_softintr, sc);
    204 	mutex_init(&sc->lock, MUTEX_DEFAULT, IPL_NONE);
    205 	cv_init(&sc->rchan, "midiseqr");
    206 	cv_init(&sc->wchan, "midiseqw");
    207 	cv_init(&sc->lchan, "midiseql");
    208 	sc->pcq = pcq_create(SEQ_MAXQ, KM_SLEEP);
    209 	if (sc->pcq == NULL) {
    210 		sequencerdestroy(sc);
    211 		return NULL;
    212 	}
    213 	return sc;
    214 }
    215 
    216 
    217 static struct sequencer_softc *
    218 sequencerget(int unit)
    219 {
    220 	struct sequencer_softc *sc;
    221 	if (unit < 0) {
    222 #ifdef DIAGNOSTIC
    223 		panic("%s: unit %d!", __func__, unit);
    224 #endif
    225 		return NULL;
    226 	}
    227 	mutex_enter(&sequencer_lock);
    228 	LIST_FOREACH(sc, &sequencers, sc_link) {
    229 		if (sc->sc_unit == unit) {
    230 			mutex_exit(&sequencer_lock);
    231 			return sc;
    232 		}
    233 	}
    234 	mutex_exit(&sequencer_lock);
    235 	if ((sc = sequencercreate(unit)) == NULL)
    236 		return NULL;
    237 	mutex_enter(&sequencer_lock);
    238 	LIST_INSERT_HEAD(&sequencers, sc, sc_link);
    239 	mutex_exit(&sequencer_lock);
    240 	return sc;
    241 }
    242 
    243 #ifdef notyet
    244 static void
    245 sequencerput(struct sequencer_softc *sc)
    246 {
    247 	mutex_enter(&sequencer_lock);
    248 	LIST_REMOVE(sc, sc_link);
    249 	mutex_exit(&sequencer_lock);
    250 	sequencerdestroy(sc);
    251 }
    252 #endif
    253 
    254 void
    255 sequencerattach(int n)
    256 {
    257 	mutex_init(&sequencer_lock, MUTEX_DEFAULT, IPL_NONE);
    258 }
    259 
    260 /*
    261  * Release reference to device acquired with sequencer_enter().
    262  */
    263 static void
    264 sequencer_exit(struct sequencer_softc *sc)
    265 {
    266 
    267 	sc->dvlock--;
    268 	cv_broadcast(&sc->lchan);
    269 	mutex_exit(&sc->lock);
    270 }
    271 
    272 /*
    273  * Look up sequencer device and acquire locks for device access.
    274  */
    275 static int
    276 sequencer_enter(dev_t dev, struct sequencer_softc **scp)
    277 {
    278 	struct sequencer_softc *sc;
    279 
    280 	/* First, find the device and take sc_lock. */
    281 	if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
    282 		return ENXIO;
    283 	mutex_enter(&sc->lock);
    284 	while (sc->dvlock) {
    285 		cv_wait(&sc->lchan, &sc->lock);
    286 	}
    287 	sc->dvlock++;
    288 	if (sc->dying) {
    289 		sequencer_exit(sc);
    290 		return EIO;
    291 	}
    292 	*scp = sc;
    293 	return 0;
    294 }
    295 
    296 static int
    297 sequenceropen(dev_t dev, int flags, int ifmt, struct lwp *l)
    298 {
    299 	struct sequencer_softc *sc;
    300 	struct midi_dev *md;
    301 	struct midi_softc *msc;
    302 	int error, unit;
    303 
    304 	DPRINTF(("sequenceropen\n"));
    305 
    306 	if ((error = sequencer_enter(dev, &sc)) != 0)
    307 		return error;
    308 	if (sc->isopen != 0) {
    309 		sequencer_exit(sc);
    310 		return EBUSY;
    311 	}
    312 
    313 	if (SEQ_IS_OLD(SEQUENCERUNIT(dev)))
    314 		sc->mode = SEQ_OLD;
    315 	else
    316 		sc->mode = SEQ_NEW;
    317 	sc->isopen++;
    318 	sc->flags = flags & (FREAD|FWRITE);
    319 	sc->pbus = 0;
    320 	sc->async = 0;
    321 	sc->input_stamp = ~0;
    322 
    323 	sc->nmidi = 0;
    324 	sc->ndevs = midi_unit_count();
    325 	sc->timer.timebase_divperbeat = 100;
    326 	sc->timer.tempo_beatpermin = 60;
    327 	RECALC_USPERDIV(&sc->timer);
    328 	sc->timer.divs_lastevent = sc->timer.divs_lastchange = 0;
    329 	microtime(&sc->timer.reftime);
    330 
    331 	SEQ_QINIT(&sc->inq);
    332 	SEQ_QINIT(&sc->outq);
    333 	sc->lowat = SEQ_MAXQ / 2;
    334 
    335 	if (sc->ndevs > 0) {
    336 		mutex_exit(&sc->lock);
    337 		sc->devs = kmem_alloc(sc->ndevs * sizeof(struct midi_dev *),
    338 		    KM_SLEEP);
    339 		for (unit = 0; unit < sc->ndevs; unit++) {
    340 			md = midiseq_open(unit, flags);
    341 			if (md) {
    342 				sc->devs[sc->nmidi++] = md;
    343 				md->seq = sc;
    344 				md->doingsysex = 0;
    345 			}
    346 		}
    347 		mutex_enter(&sc->lock);
    348 	} else {
    349 		sc->devs = NULL;
    350 	}
    351 
    352 	/* Only now redirect input from MIDI devices. */
    353 	for (unit = 0; unit < sc->nmidi; unit++) {
    354 		extern struct cfdriver midi_cd;
    355 
    356 		msc = device_lookup_private(&midi_cd, unit);
    357 		if (msc) {
    358 			mutex_enter(msc->lock);
    359 			msc->seqopen = 1;
    360 			mutex_exit(msc->lock);
    361 		}
    362 	}
    363 
    364 	seq_reset(sc);
    365 	sequencer_exit(sc);
    366 
    367 	DPRINTF(("%s: mode=%d, nmidi=%d\n", __func__, sc->mode, sc->nmidi));
    368 	return 0;
    369 }
    370 
    371 static int
    372 seq_drain(struct sequencer_softc *sc)
    373 {
    374 	int error;
    375 
    376 	KASSERT(mutex_owned(&sc->lock));
    377 
    378 	DPRINTFN(3, ("seq_drain: %p, len=%d\n", sc, SEQ_QLEN(&sc->outq)));
    379 	seq_startoutput(sc);
    380 	error = 0;
    381 	while (!SEQ_QEMPTY(&sc->outq) && !error)
    382 		error = cv_timedwait_sig(&sc->wchan, &sc->lock, 60*hz);
    383 	return (error);
    384 }
    385 
    386 static void
    387 seq_timeout(void *addr)
    388 {
    389 	struct sequencer_softc *sc = addr;
    390 	proc_t *p;
    391 	pid_t pid;
    392 
    393 	DPRINTFN(4, ("seq_timeout: %p\n", sc));
    394 
    395 	mutex_enter(&sc->lock);
    396 	if (sc->timeout == 0) {
    397 		mutex_spin_exit(&sc->lock);
    398 		return;
    399 	}
    400 	sc->timeout = 0;
    401 	seq_startoutput(sc);
    402 	if (SEQ_QLEN(&sc->outq) >= sc->lowat) {
    403 		mutex_exit(&sc->lock);
    404 		return;
    405 	}
    406 	cv_broadcast(&sc->wchan);
    407 	selnotify(&sc->wsel, 0, NOTE_SUBMIT);
    408 	if ((pid = sc->async) != 0) {
    409 		mutex_enter(proc_lock);
    410 		if ((p = proc_find(pid)) != NULL)
    411 			psignal(p, SIGIO);
    412 		mutex_exit(proc_lock);
    413 	}
    414 	mutex_exit(&sc->lock);
    415 }
    416 
    417 static void
    418 seq_startoutput(struct sequencer_softc *sc)
    419 {
    420 	struct sequencer_queue *q = &sc->outq;
    421 	seq_event_t cmd;
    422 
    423 	KASSERT(mutex_owned(&sc->lock));
    424 
    425 	if (sc->timeout)
    426 		return;
    427 	DPRINTFN(4, ("seq_startoutput: %p, len=%d\n", sc, SEQ_QLEN(q)));
    428 	while (!SEQ_QEMPTY(q) && !sc->timeout) {
    429 		SEQ_QGET(q, cmd);
    430 		seq_do_command(sc, &cmd);
    431 	}
    432 }
    433 
    434 static int
    435 sequencerclose(dev_t dev, int flags, int ifmt, struct lwp *l)
    436 {
    437 	struct sequencer_softc *sc;
    438 	struct midi_softc *msc;
    439 	int unit, error;
    440 
    441 	DPRINTF(("%s: %"PRIx64"\n", __func__, dev));
    442 
    443 	if ((error = sequencer_enter(dev, &sc)) != 0)
    444 		return error;
    445 	seq_drain(sc);
    446 	if (sc->timeout) {
    447 		callout_halt(&sc->sc_callout, &sc->lock);
    448 		sc->timeout = 0;
    449 	}
    450 	/* Bin input from MIDI devices. */
    451 	for (unit = 0; unit < sc->nmidi; unit++) {
    452 		extern struct cfdriver midi_cd;
    453 
    454 		msc = device_lookup_private(&midi_cd, unit);
    455 		if (msc) {
    456 			mutex_enter(msc->lock);
    457 			msc->seqopen = 0;
    458 			mutex_exit(msc->lock);
    459 		}
    460 	}
    461 	mutex_exit(&sc->lock);
    462 
    463 	for (unit = 0; unit < sc->nmidi; unit++)
    464 		if (sc->devs[unit] != NULL)
    465 			midiseq_close(sc->devs[unit]);
    466 	if (sc->devs != NULL) {
    467 		KASSERT(sc->ndevs > 0);
    468 		kmem_free(sc->devs, sc->ndevs * sizeof(struct midi_dev *));
    469 		sc->devs = NULL;
    470 	}
    471 
    472 	mutex_enter(&sc->lock);
    473 	sc->isopen = 0;
    474 	sequencer_exit(sc);
    475 
    476 	DPRINTF(("%s: %"PRIx64" done\n", __func__, dev));
    477 
    478 	return (0);
    479 }
    480 
    481 static int
    482 seq_input_event(struct sequencer_softc *sc, seq_event_t *cmd)
    483 {
    484 	struct sequencer_queue *q;
    485 
    486 	KASSERT(mutex_owned(&sc->lock));
    487 
    488 	DPRINTFN(2, ("seq_input_event: %02x %02x %02x %02x %02x "
    489 	    "%02x %02x %02x\n", cmd->tag,
    490 	    cmd->unknown.byte[0], cmd->unknown.byte[1],
    491 	    cmd->unknown.byte[2], cmd->unknown.byte[3],
    492 	    cmd->unknown.byte[4], cmd->unknown.byte[5],
    493 	    cmd->unknown.byte[6]));
    494 	q = &sc->inq;
    495 	if (SEQ_QFULL(q))
    496 		return (ENOMEM);
    497 	SEQ_QPUT(q, *cmd);
    498 	cv_broadcast(&sc->rchan);
    499 	selnotify(&sc->rsel, 0, NOTE_SUBMIT);
    500 	if (sc->async != 0) {
    501 		proc_t *p;
    502 
    503 		mutex_enter(proc_lock);
    504 		if ((p = proc_find(sc->async)) != NULL)
    505 			psignal(p, SIGIO);
    506 		mutex_exit(proc_lock);
    507 	}
    508 	return 0;
    509 }
    510 
    511 static void
    512 seq_softintr(void *addr)
    513 {
    514 	struct sequencer_softc *sc;
    515 	struct timeval now;
    516 	seq_event_t ev;
    517 	int status, chan, unit;
    518 	sequencer_pcqitem_t qi;
    519 	u_long t;
    520 
    521 	sc = addr;
    522 
    523 	mutex_enter(&sc->lock);
    524 
    525 	qi.qi_ptr = pcq_get(sc->pcq);
    526 	if (qi.qi_ptr == NULL) {
    527 		mutex_exit(&sc->lock);
    528 		return;
    529 	}
    530 	KASSERT((qi.qi_msg[3] & 0x80) != 0);
    531 	unit = qi.qi_msg[3] & ~0x80;
    532 	status = MIDI_GET_STATUS(qi.qi_msg[0]);
    533 	chan = MIDI_GET_CHAN(qi.qi_msg[0]);
    534 	switch (status) {
    535 	case MIDI_NOTEON: /* midi(4) always canonicalizes hidden note-off */
    536 		ev = SEQ_MK_CHN(NOTEON, .device=unit, .channel=chan,
    537 		    .key=qi.qi_msg[1], .velocity=qi.qi_msg[2]);
    538 		break;
    539 	case MIDI_NOTEOFF:
    540 		ev = SEQ_MK_CHN(NOTEOFF, .device=unit, .channel=chan,
    541 		    .key=qi.qi_msg[1], .velocity=qi.qi_msg[2]);
    542 		break;
    543 	case MIDI_KEY_PRESSURE:
    544 		ev = SEQ_MK_CHN(KEY_PRESSURE, .device=unit, .channel=chan,
    545 		    .key=qi.qi_msg[1], .pressure=qi.qi_msg[2]);
    546 		break;
    547 	case MIDI_CTL_CHANGE: /* XXX not correct for MSB */
    548 		ev = SEQ_MK_CHN(CTL_CHANGE, .device=unit, .channel=chan,
    549 		    .controller=qi.qi_msg[1], .value=qi.qi_msg[2]);
    550 		break;
    551 	case MIDI_PGM_CHANGE:
    552 		ev = SEQ_MK_CHN(PGM_CHANGE, .device=unit, .channel=chan,
    553 		    .program=qi.qi_msg[1]);
    554 		break;
    555 	case MIDI_CHN_PRESSURE:
    556 		ev = SEQ_MK_CHN(CHN_PRESSURE, .device=unit, .channel=chan,
    557 		    .pressure=qi.qi_msg[1]);
    558 		break;
    559 	case MIDI_PITCH_BEND:
    560 		ev = SEQ_MK_CHN(PITCH_BEND, .device=unit, .channel=chan,
    561 		    .value=(qi.qi_msg[1] & 0x7f) | ((qi.qi_msg[2] & 0x7f) << 7));
    562 		break;
    563 	default: /* this is now the point where MIDI_ACKs disappear */
    564 		mutex_exit(&sc->lock);
    565 		return;
    566 	}
    567 	microtime(&now);
    568 	if (!sc->timer.running)
    569 		now = sc->timer.stoptime;
    570 	SUBTIMEVAL(&now, &sc->timer.reftime);
    571 	t = now.tv_sec * 1000000 + now.tv_usec;
    572 	t /= sc->timer.usperdiv;
    573 	t += sc->timer.divs_lastchange;
    574 	if (t != sc->input_stamp) {
    575 		seq_input_event(sc, &SEQ_MK_TIMING(WAIT_ABS, .divisions=t));
    576 		sc->input_stamp = t; /* XXX wha hoppen if timer is reset? */
    577 	}
    578 	seq_input_event(sc, &ev);
    579 	mutex_exit(&sc->lock);
    580 }
    581 
    582 static int
    583 sequencerread(dev_t dev, struct uio *uio, int ioflag)
    584 {
    585 	struct sequencer_softc *sc;
    586 	struct sequencer_queue *q;
    587 	seq_event_t ev;
    588 	int error;
    589 
    590 	DPRINTFN(20, ("sequencerread: %"PRIx64", count=%d, ioflag=%x\n",
    591 	   dev, (int)uio->uio_resid, ioflag));
    592 
    593 	if ((error = sequencer_enter(dev, &sc)) != 0)
    594 		return error;
    595 	q = &sc->inq;
    596 
    597 	if (sc->mode == SEQ_OLD) {
    598 		sequencer_exit(sc);
    599 		DPRINTFN(-1,("sequencerread: old read\n"));
    600 		return EINVAL; /* XXX unimplemented */
    601 	}
    602 	while (SEQ_QEMPTY(q)) {
    603 		if (ioflag & IO_NDELAY) {
    604 			error = EWOULDBLOCK;
    605 			break;
    606 		}
    607 		/* Drop lock to allow concurrent read/write. */
    608 		KASSERT(sc->dvlock != 0);
    609 		sc->dvlock--;
    610 		error = cv_wait_sig(&sc->rchan, &sc->lock);
    611 		while (sc->dvlock != 0) {
    612 			cv_wait(&sc->lchan, &sc->lock);
    613 		}
    614 		sc->dvlock++;
    615 		if (error) {
    616 			break;
    617 		}
    618 	}
    619 	while (uio->uio_resid >= sizeof(ev) && !error && !SEQ_QEMPTY(q)) {
    620 		SEQ_QGET(q, ev);
    621 		mutex_exit(&sc->lock);
    622 		error = uiomove(&ev, sizeof(ev), uio);
    623 		mutex_enter(&sc->lock);
    624 	}
    625 	sequencer_exit(sc);
    626 	return error;
    627 }
    628 
    629 static int
    630 sequencerwrite(dev_t dev, struct uio *uio, int ioflag)
    631 {
    632 	struct sequencer_softc *sc;
    633 	struct sequencer_queue *q;
    634 	int error;
    635 	seq_event_t cmdbuf;
    636 	int size;
    637 
    638 	DPRINTFN(2, ("sequencerwrite: %"PRIx64", count=%d\n", dev,
    639 	    (int)uio->uio_resid));
    640 
    641 	if ((error = sequencer_enter(dev, &sc)) != 0)
    642 		return error;
    643 	q = &sc->outq;
    644 
    645 	size = sc->mode == SEQ_NEW ? sizeof cmdbuf : SEQOLD_CMDSIZE;
    646 	while (uio->uio_resid >= size && error == 0) {
    647 		mutex_exit(&sc->lock);
    648 		error = uiomove(&cmdbuf, size, uio);
    649 		if (error == 0) {
    650 			if (sc->mode == SEQ_OLD && seq_to_new(&cmdbuf, uio)) {
    651 				mutex_enter(&sc->lock);
    652 				continue;
    653 			}
    654 			if (cmdbuf.tag == SEQ_FULLSIZE) {
    655 				/* We do it like OSS does, asynchronously */
    656 				error = seq_do_fullsize(sc, &cmdbuf, uio);
    657 				if (error == 0) {
    658 					mutex_enter(&sc->lock);
    659 					continue;
    660 				}
    661 			}
    662 		}
    663 		mutex_enter(&sc->lock);
    664 		if (error != 0) {
    665 			break;
    666 		}
    667 		while (SEQ_QFULL(q)) {
    668 			seq_startoutput(sc);
    669 			if (SEQ_QFULL(q)) {
    670 				if (ioflag & IO_NDELAY) {
    671 					error = EWOULDBLOCK;
    672 					break;
    673 				}
    674 				error = cv_wait_sig(&sc->wchan, &sc->lock);
    675 				if (error) {
    676 					 break;
    677 				}
    678 			}
    679 		}
    680 		if (error == 0) {
    681 			SEQ_QPUT(q, cmdbuf);
    682 		}
    683 	}
    684 	if (error == 0) {
    685 		seq_startoutput(sc);
    686 	} else {
    687 		DPRINTFN(2, ("sequencerwrite: error=%d\n", error));
    688 	}
    689 	sequencer_exit(sc);
    690 	return error;
    691 }
    692 
    693 static int
    694 sequencerioctl(dev_t dev, u_long cmd, void *addr, int flag, struct lwp *l)
    695 {
    696 	struct sequencer_softc *sc;
    697 	struct synth_info *si;
    698 	struct midi_dev *md;
    699 	int devno, error, t;
    700 	struct timeval now;
    701 	u_long tx;
    702 
    703 	DPRINTFN(2, ("sequencerioctl: %"PRIx64" cmd=0x%08lx\n", dev, cmd));
    704 
    705 	if ((error = sequencer_enter(dev, &sc)) != 0)
    706 		return error;
    707 	switch (cmd) {
    708 	case FIONBIO:
    709 		/* All handled in the upper FS layer. */
    710 		break;
    711 
    712 	case FIOASYNC:
    713 		if (*(int *)addr) {
    714 			if (sc->async != 0)
    715 				return EBUSY;
    716 			sc->async = curproc->p_pid;
    717 			DPRINTF(("%s: FIOASYNC %d\n", __func__,
    718 			    sc->async));
    719 		} else {
    720 			sc->async = 0;
    721 		}
    722 		break;
    723 
    724 	case SEQUENCER_RESET:
    725 		seq_reset(sc);
    726 		break;
    727 
    728 	case SEQUENCER_PANIC:
    729 		seq_reset(sc);
    730 		/* Do more?  OSS doesn't */
    731 		break;
    732 
    733 	case SEQUENCER_SYNC:
    734 		if (sc->flags != FREAD)
    735 			seq_drain(sc);
    736 		break;
    737 
    738 	case SEQUENCER_INFO:
    739 		si = (struct synth_info*)addr;
    740 		devno = si->device;
    741 		if (devno < 0 || devno >= sc->nmidi) {
    742 			error = EINVAL;
    743 			break;
    744 		}
    745 		md = sc->devs[devno];
    746 		strncpy(si->name, md->name, sizeof si->name);
    747 		si->synth_type = SYNTH_TYPE_MIDI;
    748 		si->synth_subtype = md->subtype;
    749 		si->nr_voices = md->nr_voices;
    750 		si->instr_bank_size = md->instr_bank_size;
    751 		si->capabilities = md->capabilities;
    752 		break;
    753 
    754 	case SEQUENCER_NRSYNTHS:
    755 		*(int *)addr = sc->nmidi;
    756 		break;
    757 
    758 	case SEQUENCER_NRMIDIS:
    759 		*(int *)addr = sc->nmidi;
    760 		break;
    761 
    762 	case SEQUENCER_OUTOFBAND:
    763 		DPRINTFN(3, ("sequencer_ioctl: OOB=%02x %02x %02x %02x %02x %02x %02x %02x\n",
    764 		    *(u_char *)addr, *((u_char *)addr+1),
    765 		    *((u_char *)addr+2), *((u_char *)addr+3),
    766 		    *((u_char *)addr+4), *((u_char *)addr+5),
    767 		    *((u_char *)addr+6), *((u_char *)addr+7)));
    768 		if ((sc->flags & FWRITE) == 0) {
    769 			error = EBADF;
    770 		} else {
    771 			error = seq_do_command(sc, (seq_event_t *)addr);
    772 		}
    773 		break;
    774 
    775 	case SEQUENCER_TMR_TIMEBASE:
    776 		t = *(int *)addr;
    777 		if (t < 1)
    778 			t = 1;
    779 		if (t > 10000)
    780 			t = 10000;
    781 		*(int *)addr = t;
    782 		sc->timer.timebase_divperbeat = t;
    783 		sc->timer.divs_lastchange = sc->timer.divs_lastevent;
    784 		microtime(&sc->timer.reftime);
    785 		RECALC_USPERDIV(&sc->timer);
    786 		break;
    787 
    788 	case SEQUENCER_TMR_START:
    789 		error = seq_do_timing(sc, &SEQ_MK_TIMING(START));
    790 		break;
    791 
    792 	case SEQUENCER_TMR_STOP:
    793 		error = seq_do_timing(sc, &SEQ_MK_TIMING(STOP));
    794 		break;
    795 
    796 	case SEQUENCER_TMR_CONTINUE:
    797 		error = seq_do_timing(sc, &SEQ_MK_TIMING(CONTINUE));
    798 		break;
    799 
    800 	case SEQUENCER_TMR_TEMPO:
    801 		error = seq_do_timing(sc,
    802 		    &SEQ_MK_TIMING(TEMPO, .bpm=*(int *)addr));
    803 		if (error == 0)
    804 			*(int *)addr = sc->timer.tempo_beatpermin;
    805 		break;
    806 
    807 	case SEQUENCER_TMR_SOURCE:
    808 		*(int *)addr = SEQUENCER_TMR_INTERNAL;
    809 		break;
    810 
    811 	case SEQUENCER_TMR_METRONOME:
    812 		/* noop */
    813 		break;
    814 
    815 	case SEQUENCER_THRESHOLD:
    816 		t = SEQ_MAXQ - *(int *)addr / sizeof (seq_event_rec);
    817 		if (t < 1)
    818 			t = 1;
    819 		if (t > SEQ_MAXQ)
    820 			t = SEQ_MAXQ;
    821 		sc->lowat = t;
    822 		break;
    823 
    824 	case SEQUENCER_CTRLRATE:
    825 		*(int *)addr = (sc->timer.tempo_beatpermin
    826 		    *sc->timer.timebase_divperbeat + 30) / 60;
    827 		break;
    828 
    829 	case SEQUENCER_GETTIME:
    830 		microtime(&now);
    831 		SUBTIMEVAL(&now, &sc->timer.reftime);
    832 		tx = now.tv_sec * 1000000 + now.tv_usec;
    833 		tx /= sc->timer.usperdiv;
    834 		tx += sc->timer.divs_lastchange;
    835 		*(int *)addr = tx;
    836 		break;
    837 
    838 	default:
    839 		DPRINTFN(-1,("sequencer_ioctl: unimpl %08lx\n", cmd));
    840 		error = EINVAL;
    841 		break;
    842 	}
    843 	sequencer_exit(sc);
    844 
    845 	return error;
    846 }
    847 
    848 static int
    849 sequencerpoll(dev_t dev, int events, struct lwp *l)
    850 {
    851 	struct sequencer_softc *sc;
    852 	int revents = 0;
    853 	if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
    854 		return ENXIO;
    855 
    856 	DPRINTF(("%s: %p events=0x%x\n", __func__, sc, events));
    857 
    858 	mutex_enter(&sc->lock);
    859 	if (events & (POLLIN | POLLRDNORM))
    860 		if ((sc->flags&FREAD) && !SEQ_QEMPTY(&sc->inq))
    861 			revents |= events & (POLLIN | POLLRDNORM);
    862 
    863 	if (events & (POLLOUT | POLLWRNORM))
    864 		if ((sc->flags&FWRITE) && SEQ_QLEN(&sc->outq) < sc->lowat)
    865 			revents |= events & (POLLOUT | POLLWRNORM);
    866 
    867 	if (revents == 0) {
    868 		if ((sc->flags&FREAD) && (events & (POLLIN | POLLRDNORM)))
    869 			selrecord(l, &sc->rsel);
    870 
    871 		if ((sc->flags&FWRITE) && (events & (POLLOUT | POLLWRNORM)))
    872 			selrecord(l, &sc->wsel);
    873 	}
    874 	mutex_exit(&sc->lock);
    875 
    876 	return revents;
    877 }
    878 
    879 static void
    880 filt_sequencerrdetach(struct knote *kn)
    881 {
    882 	struct sequencer_softc *sc = kn->kn_hook;
    883 
    884 	mutex_enter(&sc->lock);
    885 	SLIST_REMOVE(&sc->rsel.sel_klist, kn, knote, kn_selnext);
    886 	mutex_exit(&sc->lock);
    887 }
    888 
    889 static int
    890 filt_sequencerread(struct knote *kn, long hint)
    891 {
    892 	struct sequencer_softc *sc = kn->kn_hook;
    893 	int rv;
    894 
    895 	if (hint != NOTE_SUBMIT) {
    896 		mutex_enter(&sc->lock);
    897 	}
    898 	if (SEQ_QEMPTY(&sc->inq)) {
    899 		rv = 0;
    900 	} else {
    901 		kn->kn_data = sizeof(seq_event_rec);
    902 		rv = 1;
    903 	}
    904 	if (hint != NOTE_SUBMIT) {
    905 		mutex_exit(&sc->lock);
    906 	}
    907 	return rv;
    908 }
    909 
    910 static const struct filterops sequencerread_filtops =
    911 	{ 1, NULL, filt_sequencerrdetach, filt_sequencerread };
    912 
    913 static void
    914 filt_sequencerwdetach(struct knote *kn)
    915 {
    916 	struct sequencer_softc *sc = kn->kn_hook;
    917 
    918 	mutex_enter(&sc->lock);
    919 	SLIST_REMOVE(&sc->wsel.sel_klist, kn, knote, kn_selnext);
    920 	mutex_exit(&sc->lock);
    921 }
    922 
    923 static int
    924 filt_sequencerwrite(struct knote *kn, long hint)
    925 {
    926 	struct sequencer_softc *sc = kn->kn_hook;
    927 	int rv;
    928 
    929 	if (hint != NOTE_SUBMIT) {
    930 		mutex_enter(&sc->lock);
    931 	}
    932 	if (SEQ_QLEN(&sc->outq) >= sc->lowat) {
    933 		rv = 0;
    934 	} else {
    935 		kn->kn_data = sizeof(seq_event_rec);
    936 		rv = 1;
    937 	}
    938 	if (hint != NOTE_SUBMIT) {
    939 		mutex_exit(&sc->lock);
    940 	}
    941 	return rv;
    942 }
    943 
    944 static const struct filterops sequencerwrite_filtops =
    945 	{ 1, NULL, filt_sequencerwdetach, filt_sequencerwrite };
    946 
    947 static int
    948 sequencerkqfilter(dev_t dev, struct knote *kn)
    949 {
    950 	struct sequencer_softc *sc;
    951 	struct klist *klist;
    952 	if ((sc = sequencerget(SEQUENCERUNIT(dev))) == NULL)
    953 		return ENXIO;
    954 
    955 	switch (kn->kn_filter) {
    956 	case EVFILT_READ:
    957 		klist = &sc->rsel.sel_klist;
    958 		kn->kn_fop = &sequencerread_filtops;
    959 		break;
    960 
    961 	case EVFILT_WRITE:
    962 		klist = &sc->wsel.sel_klist;
    963 		kn->kn_fop = &sequencerwrite_filtops;
    964 		break;
    965 
    966 	default:
    967 		return (EINVAL);
    968 	}
    969 
    970 	kn->kn_hook = sc;
    971 
    972 	mutex_enter(&sc->lock);
    973 	SLIST_INSERT_HEAD(klist, kn, kn_selnext);
    974 	mutex_exit(&sc->lock);
    975 
    976 	return (0);
    977 }
    978 
    979 static void
    980 seq_reset(struct sequencer_softc *sc)
    981 {
    982 	int i, chn;
    983 	struct midi_dev *md;
    984 
    985 	KASSERT(mutex_owned(&sc->lock));
    986 
    987 	if (!(sc->flags & FWRITE))
    988 	        return;
    989 	for (i = 0; i < sc->nmidi; i++) {
    990 		md = sc->devs[i];
    991 		midiseq_reset(md);
    992 		for (chn = 0; chn < MAXCHAN; chn++) {
    993 			midiseq_ctlchange(md, chn, &SEQ_MK_CHN(CTL_CHANGE,
    994 			    .controller=MIDI_CTRL_NOTES_OFF));
    995 			midiseq_ctlchange(md, chn, &SEQ_MK_CHN(CTL_CHANGE,
    996 			    .controller=MIDI_CTRL_RESET));
    997 			midiseq_pitchbend(md, chn, &SEQ_MK_CHN(PITCH_BEND,
    998 			    .value=MIDI_BEND_NEUTRAL));
    999 		}
   1000 	}
   1001 }
   1002 
   1003 static int
   1004 seq_do_command(struct sequencer_softc *sc, seq_event_t *b)
   1005 {
   1006 	int dev;
   1007 
   1008 	KASSERT(mutex_owned(&sc->lock));
   1009 
   1010 	DPRINTFN(4, ("seq_do_command: %p cmd=0x%02x\n", sc, b->timing.op));
   1011 
   1012 	switch(b->tag) {
   1013 	case SEQ_LOCAL:
   1014 		return seq_do_local(sc, b);
   1015 	case SEQ_TIMING:
   1016 		return seq_do_timing(sc, b);
   1017 	case SEQ_CHN_VOICE:
   1018 		return seq_do_chnvoice(sc, b);
   1019 	case SEQ_CHN_COMMON:
   1020 		return seq_do_chncommon(sc, b);
   1021 	case SEQ_SYSEX:
   1022 		return seq_do_sysex(sc, b);
   1023 	/* COMPAT */
   1024 	case SEQOLD_MIDIPUTC:
   1025 		dev = b->putc.device;
   1026 		if (dev < 0 || dev >= sc->nmidi)
   1027 			return (ENXIO);
   1028 		return midiseq_out(sc->devs[dev], &b->putc.byte, 1, 0);
   1029 	default:
   1030 		DPRINTFN(-1,("seq_do_command: unimpl command %02x\n", b->tag));
   1031 		return (EINVAL);
   1032 	}
   1033 }
   1034 
   1035 static int
   1036 seq_do_chnvoice(struct sequencer_softc *sc, seq_event_t *b)
   1037 {
   1038 	int dev;
   1039 	int error;
   1040 	struct midi_dev *md;
   1041 
   1042 	KASSERT(mutex_owned(&sc->lock));
   1043 
   1044 	dev = b->voice.device;
   1045 	if (dev < 0 || dev >= sc->nmidi ||
   1046 	    b->voice.channel > 15 ||
   1047 	    b->voice.key >= SEQ_NOTE_MAX)
   1048 		return ENXIO;
   1049 	md = sc->devs[dev];
   1050 	switch(b->voice.op) {
   1051 	case MIDI_NOTEON: /* no need to special-case hidden noteoff here */
   1052 		error = midiseq_noteon(md, b->voice.channel, b->voice.key, b);
   1053 		break;
   1054 	case MIDI_NOTEOFF:
   1055 		error = midiseq_noteoff(md, b->voice.channel, b->voice.key, b);
   1056 		break;
   1057 	case MIDI_KEY_PRESSURE:
   1058 		error = midiseq_keypressure(md,
   1059 		    b->voice.channel, b->voice.key, b);
   1060 		break;
   1061 	default:
   1062 		DPRINTFN(-1,("seq_do_chnvoice: unimpl command %02x\n",
   1063 			b->voice.op));
   1064 		error = EINVAL;
   1065 		break;
   1066 	}
   1067 	return error;
   1068 }
   1069 
   1070 static int
   1071 seq_do_chncommon(struct sequencer_softc *sc, seq_event_t *b)
   1072 {
   1073 	int dev;
   1074 	int error;
   1075 	struct midi_dev *md;
   1076 
   1077 	KASSERT(mutex_owned(&sc->lock));
   1078 
   1079 	dev = b->common.device;
   1080 	if (dev < 0 || dev >= sc->nmidi ||
   1081 	    b->common.channel > 15)
   1082 		return ENXIO;
   1083 	md = sc->devs[dev];
   1084 	DPRINTFN(2,("seq_do_chncommon: %02x\n", b->common.op));
   1085 
   1086 	error = 0;
   1087 	switch(b->common.op) {
   1088 	case MIDI_PGM_CHANGE:
   1089 		error = midiseq_pgmchange(md, b->common.channel, b);
   1090 		break;
   1091 	case MIDI_CTL_CHANGE:
   1092 		error = midiseq_ctlchange(md, b->common.channel, b);
   1093 		break;
   1094 	case MIDI_PITCH_BEND:
   1095 		error = midiseq_pitchbend(md, b->common.channel, b);
   1096 		break;
   1097 	case MIDI_CHN_PRESSURE:
   1098 		error = midiseq_chnpressure(md, b->common.channel, b);
   1099 		break;
   1100 	default:
   1101 		DPRINTFN(-1,("seq_do_chncommon: unimpl command %02x\n",
   1102 			b->common.op));
   1103 		error = EINVAL;
   1104 		break;
   1105 	}
   1106 	return error;
   1107 }
   1108 
   1109 static int
   1110 seq_do_local(struct sequencer_softc *sc, seq_event_t *b)
   1111 {
   1112 
   1113 	KASSERT(mutex_owned(&sc->lock));
   1114 
   1115 	return (EINVAL);
   1116 }
   1117 
   1118 static int
   1119 seq_do_sysex(struct sequencer_softc *sc, seq_event_t *b)
   1120 {
   1121 	int dev, i;
   1122 	struct midi_dev *md;
   1123 	uint8_t *bf = b->sysex.buffer;
   1124 
   1125 	KASSERT(mutex_owned(&sc->lock));
   1126 
   1127 	dev = b->sysex.device;
   1128 	if (dev < 0 || dev >= sc->nmidi)
   1129 		return (ENXIO);
   1130 	DPRINTF(("%s: dev=%d\n", __func__, dev));
   1131 	md = sc->devs[dev];
   1132 
   1133 	if (!md->doingsysex) {
   1134 		midiseq_out(md, (uint8_t[]){MIDI_SYSEX_START}, 1, 0);
   1135 		md->doingsysex = 1;
   1136 	}
   1137 
   1138 	for (i = 0; i < 6 && bf[i] != 0xff; i++)
   1139 		;
   1140 	midiseq_out(md, bf, i, 0);
   1141 	if (i < 6 || (i > 0 && bf[i-1] == MIDI_SYSEX_END))
   1142 		md->doingsysex = 0;
   1143 	return 0;
   1144 }
   1145 
   1146 static void
   1147 seq_timer_waitabs(struct sequencer_softc *sc, uint32_t divs)
   1148 {
   1149 	struct timeval when;
   1150 	long long usec;
   1151 	struct syn_timer *t;
   1152 	int ticks;
   1153 
   1154 	KASSERT(mutex_owned(&sc->lock));
   1155 
   1156 	t = &sc->timer;
   1157 	t->divs_lastevent = divs;
   1158 	divs -= t->divs_lastchange;
   1159 	usec = (long long)divs * (long long)t->usperdiv; /* convert to usec */
   1160 	when.tv_sec = usec / 1000000;
   1161 	when.tv_usec = usec % 1000000;
   1162 	DPRINTFN(4, ("seq_timer_waitabs: adjdivs=%d, sleep when=%"PRId64".%06"PRId64,
   1163 	             divs, when.tv_sec, (uint64_t)when.tv_usec));
   1164 	ADDTIMEVAL(&when, &t->reftime); /* abstime for end */
   1165 	ticks = tvhzto(&when);
   1166 	DPRINTFN(4, (" when+start=%"PRId64".%06"PRId64", tick=%d\n",
   1167 		     when.tv_sec, (uint64_t)when.tv_usec, ticks));
   1168 	if (ticks > 0) {
   1169 #ifdef DIAGNOSTIC
   1170 		if (ticks > 20 * hz) {
   1171 			/* Waiting more than 20s */
   1172 			printf("seq_timer_waitabs: funny ticks=%d, "
   1173 			       "usec=%lld\n", ticks, usec);
   1174 		}
   1175 #endif
   1176 		sc->timeout = 1;
   1177 		callout_reset(&sc->sc_callout, ticks,
   1178 		    seq_timeout, sc);
   1179 	}
   1180 #ifdef SEQUENCER_DEBUG
   1181 	else if (tick < 0)
   1182 		DPRINTF(("%s: ticks = %d\n", __func__, ticks));
   1183 #endif
   1184 }
   1185 
   1186 static int
   1187 seq_do_timing(struct sequencer_softc *sc, seq_event_t *b)
   1188 {
   1189 	struct syn_timer *t = &sc->timer;
   1190 	struct timeval when;
   1191 	int error;
   1192 
   1193 	KASSERT(mutex_owned(&sc->lock));
   1194 
   1195 	error = 0;
   1196 	switch(b->timing.op) {
   1197 	case TMR_WAIT_REL:
   1198 		seq_timer_waitabs(sc,
   1199 		    b->t_WAIT_REL.divisions + t->divs_lastevent);
   1200 		break;
   1201 	case TMR_WAIT_ABS:
   1202 		seq_timer_waitabs(sc, b->t_WAIT_ABS.divisions);
   1203 		break;
   1204 	case TMR_START:
   1205 		microtime(&t->reftime);
   1206 		t->divs_lastevent = t->divs_lastchange = 0;
   1207 		t->running = 1;
   1208 		break;
   1209 	case TMR_STOP:
   1210 		microtime(&t->stoptime);
   1211 		t->running = 0;
   1212 		break;
   1213 	case TMR_CONTINUE:
   1214 		if (t->running)
   1215 			break;
   1216 		microtime(&when);
   1217 		SUBTIMEVAL(&when, &t->stoptime);
   1218 		ADDTIMEVAL(&t->reftime, &when);
   1219 		t->running = 1;
   1220 		break;
   1221 	case TMR_TEMPO:
   1222 		/* bpm is unambiguously MIDI clocks per minute / 24 */
   1223 		/* (24 MIDI clocks are usually but not always a quarter note) */
   1224 		if (b->t_TEMPO.bpm < 8) /* where are these limits specified? */
   1225 			t->tempo_beatpermin = 8;
   1226 		else if (b->t_TEMPO.bpm > 360) /* ? */
   1227 			t->tempo_beatpermin = 360;
   1228 		else
   1229 			t->tempo_beatpermin = b->t_TEMPO.bpm;
   1230 		t->divs_lastchange = t->divs_lastevent;
   1231 		microtime(&t->reftime);
   1232 		RECALC_USPERDIV(t);
   1233 		break;
   1234 	case TMR_ECHO:
   1235 		error = seq_input_event(sc, b);
   1236 		break;
   1237 	case TMR_RESET:
   1238 		t->divs_lastevent = t->divs_lastchange = 0;
   1239 		microtime(&t->reftime);
   1240 		break;
   1241 	case TMR_SPP:
   1242 	case TMR_TIMESIG:
   1243 		DPRINTF(("%s: unimplemented %02x\n", __func__, b->timing.op));
   1244 		error = EINVAL; /* not quite accurate... */
   1245 		break;
   1246 	default:
   1247 		DPRINTF(("%s: unknown %02x\n", __func__, b->timing.op));
   1248 		error = EINVAL;
   1249 		break;
   1250 	}
   1251 	return (error);
   1252 }
   1253 
   1254 static int
   1255 seq_do_fullsize(struct sequencer_softc *sc, seq_event_t *b, struct uio *uio)
   1256 {
   1257 	struct sysex_info sysex;
   1258 	u_int dev;
   1259 
   1260 #ifdef DIAGNOSTIC
   1261 	if (sizeof(seq_event_rec) != SEQ_SYSEX_HDRSIZE) {
   1262 		printf("seq_do_fullsize: sysex size ??\n");
   1263 		return EINVAL;
   1264 	}
   1265 #endif
   1266 	memcpy(&sysex, b, sizeof sysex);
   1267 	dev = sysex.device_no;
   1268 	if (/* dev < 0 || */ dev >= sc->nmidi)
   1269 		return (ENXIO);
   1270 	DPRINTFN(2, ("seq_do_fullsize: fmt=%04x, dev=%d, len=%d\n",
   1271 		     sysex.key, dev, sysex.len));
   1272 	return (midiseq_loadpatch(sc->devs[dev], &sysex, uio));
   1273 }
   1274 
   1275 /*
   1276  * Convert an old sequencer event to a new one.
   1277  * NOTE: on entry, *ev may contain valid data only in the first 4 bytes.
   1278  * That may be true even on exit (!) in the case of SEQOLD_MIDIPUTC; the
   1279  * caller will only look at the first bytes in that case anyway. Ugly? Sure.
   1280  */
   1281 static int
   1282 seq_to_new(seq_event_t *ev, struct uio *uio)
   1283 {
   1284 	int cmd, chan, note, parm;
   1285 	uint32_t tmp_delay;
   1286 	int error;
   1287 	uint8_t *bfp;
   1288 
   1289 	cmd = ev->tag;
   1290 	bfp = ev->unknown.byte;
   1291 	chan = *bfp++;
   1292 	note = *bfp++;
   1293 	parm = *bfp++;
   1294 	DPRINTFN(3, ("seq_to_new: 0x%02x %d %d %d\n", cmd, chan, note, parm));
   1295 
   1296 	if (cmd >= 0x80) {
   1297 		/* Fill the event record */
   1298 		if (uio->uio_resid >= sizeof *ev - SEQOLD_CMDSIZE) {
   1299 			error = uiomove(bfp, sizeof *ev - SEQOLD_CMDSIZE, uio);
   1300 			if (error)
   1301 				return error;
   1302 		} else
   1303 			return EINVAL;
   1304 	}
   1305 
   1306 	switch(cmd) {
   1307 	case SEQOLD_NOTEOFF:
   1308 		/*
   1309 		 * What's with the SEQ_NOTE_XXX?  In OSS this seems to have
   1310 		 * been undocumented magic for messing with the overall volume
   1311 		 * of a 'voice', equated precariously with 'channel' and
   1312 		 * pretty much unimplementable except by directly frobbing a
   1313 		 * synth chip. For us, who treat everything as interfaced over
   1314 		 * MIDI, this will just be unceremoniously discarded as
   1315 		 * invalid in midiseq_noteoff, making the whole event an
   1316 		 * elaborate no-op, and that doesn't seem to be any different
   1317 		 * from what happens on linux with a MIDI-interfaced device,
   1318 		 * by the way. The moral is ... use the new /dev/music API, ok?
   1319 		 */
   1320 		*ev = SEQ_MK_CHN(NOTEOFF, .device=0, .channel=chan,
   1321 		    .key=SEQ_NOTE_XXX, .velocity=parm);
   1322 		break;
   1323 	case SEQOLD_NOTEON:
   1324 		*ev = SEQ_MK_CHN(NOTEON,
   1325 		    .device=0, .channel=chan, .key=note, .velocity=parm);
   1326 		break;
   1327 	case SEQOLD_WAIT:
   1328 		/*
   1329 		 * This event cannot even /exist/ on non-littleendian machines,
   1330 		 * and so help me, that's exactly the way OSS defined it.
   1331 		 * Also, the OSS programmer's guide states (p. 74, v1.11)
   1332 		 * that seqold time units are system clock ticks, unlike
   1333 		 * the new 'divisions' which are determined by timebase. In
   1334 		 * that case we would need to do scaling here - but no such
   1335 		 * behavior is visible in linux either--which also treats this
   1336 		 * value, surprisingly, as an absolute, not relative, time.
   1337 		 * My guess is that this event has gone unused so long that
   1338 		 * nobody could agree we got it wrong no matter what we do.
   1339 		 */
   1340 		tmp_delay = *(uint32_t *)ev >> 8;
   1341 		*ev = SEQ_MK_TIMING(WAIT_ABS, .divisions=tmp_delay);
   1342 		break;
   1343 	case SEQOLD_SYNCTIMER:
   1344 		/*
   1345 		 * The TMR_RESET event is not defined in any OSS materials
   1346 		 * I can find; it may have been invented here just to provide
   1347 		 * an accurate _to_new translation of this event.
   1348 		 */
   1349 		*ev = SEQ_MK_TIMING(RESET);
   1350 		break;
   1351 	case SEQOLD_PGMCHANGE:
   1352 		*ev = SEQ_MK_CHN(PGM_CHANGE,
   1353 		    .device=0, .channel=chan, .program=note);
   1354 		break;
   1355 	case SEQOLD_MIDIPUTC:
   1356 		break;		/* interpret in normal mode */
   1357 	case SEQOLD_ECHO:
   1358 	case SEQOLD_PRIVATE:
   1359 	case SEQOLD_EXTENDED:
   1360 	default:
   1361 		DPRINTF(("%s: not impl 0x%02x\n", __func__, cmd));
   1362 		return EINVAL;
   1363 	/* In case new-style events show up */
   1364 	case SEQ_TIMING:
   1365 	case SEQ_CHN_VOICE:
   1366 	case SEQ_CHN_COMMON:
   1367 	case SEQ_FULLSIZE:
   1368 		break;
   1369 	}
   1370 	return 0;
   1371 }
   1372 
   1373 /**********************************************/
   1374 
   1375 void
   1376 midiseq_in(struct midi_dev *md, u_char *msg, int len)
   1377 {
   1378 	struct sequencer_softc *sc;
   1379 	sequencer_pcqitem_t qi;
   1380 
   1381 	DPRINTFN(2, ("midiseq_in: %p %02x %02x %02x\n",
   1382 		     md, msg[0], msg[1], msg[2]));
   1383 
   1384 	sc = md->seq;
   1385 
   1386 	qi.qi_msg[0] = msg[0];
   1387 	qi.qi_msg[1] = msg[1];
   1388 	qi.qi_msg[2] = msg[2];
   1389 	qi.qi_msg[3] = md->unit | 0x80;	/* ensure non-zero value of qi_ptr */
   1390 	pcq_put(sc->pcq, qi.qi_ptr);
   1391 	softint_schedule(sc->sih);
   1392 }
   1393 
   1394 static struct midi_dev *
   1395 midiseq_open(int unit, int flags)
   1396 {
   1397 	extern struct cfdriver midi_cd;
   1398 	int error;
   1399 	struct midi_dev *md;
   1400 	struct midi_softc *sc;
   1401 	struct midi_info mi;
   1402 	int major;
   1403 	dev_t dev;
   1404 	vnode_t *vp;
   1405 	int oflags;
   1406 
   1407 	major = devsw_name2chr("midi", NULL, 0);
   1408 	dev = makedev(major, unit);
   1409 
   1410 	DPRINTFN(2, ("midiseq_open: %d %d\n", unit, flags));
   1411 
   1412 	error = cdevvp(dev, &vp);
   1413 	if (error)
   1414 		return NULL;
   1415 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
   1416 	error = VOP_OPEN(vp, flags, kauth_cred_get());
   1417 	VOP_UNLOCK(vp);
   1418 	if (error) {
   1419 		vrele(vp);
   1420 		return NULL;
   1421 	}
   1422 
   1423 	/* Only after we have acquired reference via VOP_OPEN(). */
   1424 	midi_getinfo(dev, &mi);
   1425 	oflags = flags;
   1426 	if ((mi.props & MIDI_PROP_CAN_INPUT) == 0)
   1427 	        flags &= ~FREAD;
   1428 	if ((flags & (FREAD|FWRITE)) == 0) {
   1429 		VOP_CLOSE(vp, oflags, kauth_cred_get());
   1430 		vrele(vp);
   1431 	        return NULL;
   1432 	}
   1433 
   1434 	sc = device_lookup_private(&midi_cd, unit);
   1435 	md = kmem_zalloc(sizeof(*md), KM_SLEEP);
   1436 	md->unit = unit;
   1437 	md->name = mi.name;
   1438 	md->subtype = 0;
   1439 	md->nr_voices = 128;	/* XXX */
   1440 	md->instr_bank_size = 128; /* XXX */
   1441 	md->vp = vp;
   1442 	if (mi.props & MIDI_PROP_CAN_INPUT)
   1443 		md->capabilities |= SYNTH_CAP_INPUT;
   1444 	sc->seq_md = md;
   1445 	return (md);
   1446 }
   1447 
   1448 static void
   1449 midiseq_close(struct midi_dev *md)
   1450 {
   1451 	DPRINTFN(2, ("midiseq_close: %d\n", md->unit));
   1452 	(void)vn_close(md->vp, 0, kauth_cred_get());
   1453 	kmem_free(md, sizeof(*md));
   1454 }
   1455 
   1456 static void
   1457 midiseq_reset(struct midi_dev *md)
   1458 {
   1459 	/* XXX send GM reset? */
   1460 	DPRINTFN(3, ("midiseq_reset: %d\n", md->unit));
   1461 }
   1462 
   1463 static int
   1464 midiseq_out(struct midi_dev *md, u_char *bf, u_int cc, int chk)
   1465 {
   1466 	DPRINTFN(5, ("midiseq_out: md=%p, unit=%d, bf[0]=0x%02x, cc=%d\n",
   1467 		     md, md->unit, bf[0], cc));
   1468 
   1469 	/* midi(4) does running status compression where appropriate. */
   1470 	return midi_writebytes(md->unit, bf, cc);
   1471 }
   1472 
   1473 /*
   1474  * If the writing process hands us a hidden note-off in a note-on event,
   1475  * we will simply write it that way; no need to special case it here,
   1476  * as midi(4) will always canonicalize or compress as appropriate anyway.
   1477  */
   1478 static int
   1479 midiseq_noteon(struct midi_dev *md, int chan, int key, seq_event_t *ev)
   1480 {
   1481 	return midiseq_out(md, (uint8_t[]){
   1482 	    MIDI_NOTEON | chan, key, ev->c_NOTEON.velocity & 0x7f}, 3, 1);
   1483 }
   1484 
   1485 static int
   1486 midiseq_noteoff(struct midi_dev *md, int chan, int key, seq_event_t *ev)
   1487 {
   1488 	return midiseq_out(md, (uint8_t[]){
   1489 	    MIDI_NOTEOFF | chan, key, ev->c_NOTEOFF.velocity & 0x7f}, 3, 1);
   1490 }
   1491 
   1492 static int
   1493 midiseq_keypressure(struct midi_dev *md, int chan, int key, seq_event_t *ev)
   1494 {
   1495 	return midiseq_out(md, (uint8_t[]){
   1496 	    MIDI_KEY_PRESSURE | chan, key,
   1497 	    ev->c_KEY_PRESSURE.pressure & 0x7f}, 3, 1);
   1498 }
   1499 
   1500 static int
   1501 midiseq_pgmchange(struct midi_dev *md, int chan, seq_event_t *ev)
   1502 {
   1503 	if (ev->c_PGM_CHANGE.program > 127)
   1504 		return EINVAL;
   1505 	return midiseq_out(md, (uint8_t[]){
   1506 	    MIDI_PGM_CHANGE | chan, ev->c_PGM_CHANGE.program}, 2, 1);
   1507 }
   1508 
   1509 static int
   1510 midiseq_chnpressure(struct midi_dev *md, int chan, seq_event_t *ev)
   1511 {
   1512 	if (ev->c_CHN_PRESSURE.pressure > 127)
   1513 		return EINVAL;
   1514 	return midiseq_out(md, (uint8_t[]){
   1515 	    MIDI_CHN_PRESSURE | chan, ev->c_CHN_PRESSURE.pressure}, 2, 1);
   1516 }
   1517 
   1518 static int
   1519 midiseq_ctlchange(struct midi_dev *md, int chan, seq_event_t *ev)
   1520 {
   1521 	if (ev->c_CTL_CHANGE.controller > 127)
   1522 		return EINVAL;
   1523 	return midiseq_out( md, (uint8_t[]){
   1524 	    MIDI_CTL_CHANGE | chan, ev->c_CTL_CHANGE.controller,
   1525 	    ev->c_CTL_CHANGE.value & 0x7f /* XXX this is SO wrong */
   1526 	    }, 3, 1);
   1527 }
   1528 
   1529 static int
   1530 midiseq_pitchbend(struct midi_dev *md, int chan, seq_event_t *ev)
   1531 {
   1532 	return midiseq_out(md, (uint8_t[]){
   1533 	    MIDI_PITCH_BEND | chan,
   1534 	    ev->c_PITCH_BEND.value & 0x7f,
   1535 	    (ev->c_PITCH_BEND.value >> 7) & 0x7f}, 3, 1);
   1536 }
   1537 
   1538 static int
   1539 midiseq_loadpatch(struct midi_dev *md,
   1540                   struct sysex_info *sysex, struct uio *uio)
   1541 {
   1542 	struct sequencer_softc *sc;
   1543 	u_char c, bf[128];
   1544 	int i, cc, error;
   1545 
   1546 	if (sysex->key != SEQ_SYSEX_PATCH) {
   1547 		DPRINTFN(-1,("midiseq_loadpatch: bad patch key 0x%04x\n",
   1548 			     sysex->key));
   1549 		return (EINVAL);
   1550 	}
   1551 	if (uio->uio_resid < sysex->len)
   1552 		/* adjust length, should be an error */
   1553 		sysex->len = uio->uio_resid;
   1554 
   1555 	DPRINTFN(2, ("midiseq_loadpatch: len=%d\n", sysex->len));
   1556 	if (sysex->len == 0)
   1557 		return EINVAL;
   1558 	error = uiomove(&c, 1, uio);
   1559 	if (error)
   1560 		return error;
   1561 	if (c != MIDI_SYSEX_START)		/* must start like this */
   1562 		return EINVAL;
   1563 	sc = md->seq;
   1564 	mutex_enter(&sc->lock);
   1565 	error = midiseq_out(md, &c, 1, 0);
   1566 	mutex_exit(&sc->lock);
   1567 	if (error)
   1568 		return error;
   1569 	--sysex->len;
   1570 	while (sysex->len > 0) {
   1571 		cc = sysex->len;
   1572 		if (cc > sizeof bf)
   1573 			cc = sizeof bf;
   1574 		error = uiomove(bf, cc, uio);
   1575 		if (error)
   1576 			break;
   1577 		for(i = 0; i < cc && !MIDI_IS_STATUS(bf[i]); i++)
   1578 			;
   1579 		/*
   1580 		 * XXX midi(4)'s buffer might not accommodate this, and the
   1581 		 * function will not block us (though in this case we have
   1582 		 * a process and could in principle block).
   1583 		 */
   1584 		mutex_enter(&sc->lock);
   1585 		error = midiseq_out(md, bf, i, 0);
   1586 		mutex_exit(&sc->lock);
   1587 		if (error)
   1588 			break;
   1589 		sysex->len -= i;
   1590 		if (i != cc)
   1591 			break;
   1592 	}
   1593 	/*
   1594 	 * Any leftover data in uio is rubbish;
   1595 	 * the SYSEX should be one write ending in SYSEX_END.
   1596 	 */
   1597 	uio->uio_resid = 0;
   1598 	c = MIDI_SYSEX_END;
   1599 	mutex_enter(&sc->lock);
   1600 	error = midiseq_out(md, &c, 1, 0);
   1601 	mutex_exit(&sc->lock);
   1602 	return error;
   1603 }
   1604 
   1605 #include "midi.h"
   1606 #if NMIDI == 0
   1607 static dev_type_open(midiopen);
   1608 static dev_type_close(midiclose);
   1609 
   1610 const struct cdevsw midi_cdevsw = {
   1611 	.d_open = midiopen,
   1612 	.d_close = midiclose,
   1613 	.d_read = noread,
   1614 	.d_write = nowrite,
   1615 	.d_ioctl = noioctl,
   1616 	.d_stop = nostop,
   1617 	.d_tty = notty,
   1618 	.d_poll = nopoll,
   1619 	.d_mmap = nommap,
   1620 	.d_kqfilter = nokqfilter,
   1621 	.d_discard = nodiscard,
   1622 	.d_flag = D_OTHER | D_MPSAFE
   1623 };
   1624 
   1625 /*
   1626  * If someone has a sequencer, but no midi devices there will
   1627  * be unresolved references, so we provide little stubs.
   1628  */
   1629 
   1630 int
   1631 midi_unit_count(void)
   1632 {
   1633 	return (0);
   1634 }
   1635 
   1636 static int
   1637 midiopen(dev_t dev, int flags, int ifmt, struct lwp *l)
   1638 {
   1639 	return (ENXIO);
   1640 }
   1641 
   1642 struct cfdriver midi_cd;
   1643 
   1644 void
   1645 midi_getinfo(dev_t dev, struct midi_info *mi)
   1646 {
   1647         mi->name = "Dummy MIDI device";
   1648 	mi->props = 0;
   1649 }
   1650 
   1651 static int
   1652 midiclose(dev_t dev, int flags, int ifmt, struct lwp *l)
   1653 {
   1654 	return (ENXIO);
   1655 }
   1656 
   1657 int
   1658 midi_writebytes(int unit, u_char *bf, int cc)
   1659 {
   1660 	return (ENXIO);
   1661 }
   1662 #endif /* NMIDI == 0 */
   1663