midi.c revision 1.63 1 /* $NetBSD: midi.c,v 1.63 2008/03/05 10:48:48 cube Exp $ */
2
3 /*
4 * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Lennart Augustsson (augustss (at) NetBSD.org) and (MIDI FST and Active
9 * Sense handling) Chapman Flack (chap (at) NetBSD.org).
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
16 * 2. Redistributions in binary form must reproduce the above copyright
17 * notice, this list of conditions and the following disclaimer in the
18 * documentation and/or other materials provided with the distribution.
19 * 3. All advertising materials mentioning features or use of this software
20 * must display the following acknowledgement:
21 * This product includes software developed by the NetBSD
22 * Foundation, Inc. and its contributors.
23 * 4. Neither the name of The NetBSD Foundation nor the names of its
24 * contributors may be used to endorse or promote products derived
25 * from this software without specific prior written permission.
26 *
27 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 * POSSIBILITY OF SUCH DAMAGE.
38 */
39
40 #include <sys/cdefs.h>
41 __KERNEL_RCSID(0, "$NetBSD: midi.c,v 1.63 2008/03/05 10:48:48 cube Exp $");
42
43 #include "midi.h"
44 #include "sequencer.h"
45
46 #include <sys/param.h>
47 #include <sys/ioctl.h>
48 #include <sys/fcntl.h>
49 #include <sys/vnode.h>
50 #include <sys/select.h>
51 #include <sys/poll.h>
52 #include <sys/malloc.h>
53 #include <sys/proc.h>
54 #include <sys/systm.h>
55 #include <sys/callout.h>
56 #include <sys/syslog.h>
57 #include <sys/kernel.h>
58 #include <sys/signalvar.h>
59 #include <sys/conf.h>
60 #include <sys/audioio.h>
61 #include <sys/midiio.h>
62 #include <sys/device.h>
63 #include <sys/intr.h>
64
65 #include <dev/audio_if.h>
66 #include <dev/midi_if.h>
67 #include <dev/midivar.h>
68
69 #if NMIDI > 0
70
71 #ifdef AUDIO_DEBUG
72 #define DPRINTF(x) if (mididebug) printf x
73 #define DPRINTFN(n,x) if (mididebug >= (n)) printf x
74 int mididebug = 0;
75 /*
76 * 1: detected protocol errors and buffer overflows
77 * 2: probe, attach, detach
78 * 3: open, close
79 * 4: data received except realtime
80 * 5: ioctl
81 * 6: read, write, poll
82 * 7: data transmitted
83 * 8: uiomoves, synchronization
84 * 9: realtime data received
85 */
86 #else
87 #define DPRINTF(x)
88 #define DPRINTFN(n,x)
89 #endif
90
91 static struct simplelock hwif_register_lock = SIMPLELOCK_INITIALIZER;
92 static struct midi_softc *hwif_softc = NULL;
93
94 void midi_in(void *, int);
95 void midi_out(void *);
96 int midi_poll_out(struct midi_softc *);
97 int midi_intr_out(struct midi_softc *);
98 int midi_msg_out(struct midi_softc *,
99 u_char **, u_char **, u_char **, u_char **);
100 int midi_start_output(struct midi_softc *);
101 int midi_sleep_timo(int *, const char *, int, struct simplelock *);
102 int midi_sleep(int *, const char *, struct simplelock *);
103 void midi_wakeup(int *);
104 void midi_initbuf(struct midi_buffer *);
105 void midi_xmt_asense(void *);
106 void midi_rcv_asense(void *);
107 void midi_softintr_rd(void *);
108 void midi_softintr_wr(void *);
109
110 int midiprobe(device_t, cfdata_t, void *);
111 void midiattach(device_t, device_t, void *);
112 int mididetach(device_t, int);
113 int midiactivate(device_t, enum devact);
114
115 dev_type_open(midiopen);
116 dev_type_close(midiclose);
117 dev_type_read(midiread);
118 dev_type_write(midiwrite);
119 dev_type_ioctl(midiioctl);
120 dev_type_poll(midipoll);
121 dev_type_kqfilter(midikqfilter);
122
123 const struct cdevsw midi_cdevsw = {
124 midiopen, midiclose, midiread, midiwrite, midiioctl,
125 nostop, notty, midipoll, nommap, midikqfilter, D_OTHER,
126 };
127
128 CFATTACH_DECL_NEW(midi, sizeof(struct midi_softc),
129 midiprobe, midiattach, mididetach, midiactivate);
130
131 #define MIDI_XMT_ASENSE_PERIOD mstohz(275)
132 #define MIDI_RCV_ASENSE_PERIOD mstohz(300)
133
134 extern struct cfdriver midi_cd;
135
136 int
137 midiprobe(device_t parent, cfdata_t match, void *aux)
138 {
139 struct audio_attach_args *sa = aux;
140
141 DPRINTFN(2,("midiprobe: type=%d sa=%p hw=%p\n",
142 sa->type, sa, sa->hwif));
143 return (sa->type == AUDIODEV_TYPE_MIDI);
144 }
145
146 void
147 midiattach(device_t parent, device_t self, void *aux)
148 {
149 struct midi_softc *sc = device_private(self);
150 struct audio_attach_args *sa = aux;
151 const struct midi_hw_if *hwp = sa->hwif;
152 void *hdlp = sa->hdl;
153
154 aprint_naive("\n");
155
156 DPRINTFN(2, ("MIDI attach\n"));
157
158 #ifdef DIAGNOSTIC
159 if (hwp == 0 ||
160 hwp->open == 0 ||
161 hwp->close == 0 ||
162 hwp->output == 0 ||
163 hwp->getinfo == 0) {
164 printf("midi: missing method\n");
165 return;
166 }
167 #endif
168
169 sc->dev = self;
170 sc->hw_if = hwp;
171 sc->hw_hdl = hdlp;
172 midi_attach(sc, parent);
173 if (!device_pmf_is_registered(self))
174 if (!pmf_device_register(self, NULL, NULL))
175 aprint_error_dev(self,
176 "couldn't establish power handler\n");
177 }
178
179 int
180 midiactivate(device_t self, enum devact act)
181 {
182 struct midi_softc *sc = device_private(self);
183
184 switch (act) {
185 case DVACT_ACTIVATE:
186 return (EOPNOTSUPP);
187
188 case DVACT_DEACTIVATE:
189 sc->dying = 1;
190 break;
191 }
192 return (0);
193 }
194
195 int
196 mididetach(device_t self, int flags)
197 {
198 struct midi_softc *sc = device_private(self);
199 int maj, mn;
200
201 DPRINTFN(2,("midi_detach: sc=%p flags=%d\n", sc, flags));
202
203 pmf_device_deregister(self);
204
205 sc->dying = 1;
206
207 wakeup(&sc->wchan);
208 wakeup(&sc->rchan);
209
210 /* locate the major number */
211 maj = cdevsw_lookup_major(&midi_cdevsw);
212
213 /* Nuke the vnodes for any open instances (calls close). */
214 mn = device_unit(self);
215 vdevgone(maj, mn, mn, VCHR);
216
217 if ( !(sc->props & MIDI_PROP_NO_OUTPUT) ) {
218 evcnt_detach(&sc->xmt.bytesDiscarded);
219 evcnt_detach(&sc->xmt.incompleteMessages);
220 }
221 if ( sc->props & MIDI_PROP_CAN_INPUT ) {
222 evcnt_detach(&sc->rcv.bytesDiscarded);
223 evcnt_detach(&sc->rcv.incompleteMessages);
224 }
225
226 if (sc->sih_rd != NULL) {
227 softint_disestablish(sc->sih_rd);
228 sc->sih_rd = NULL;
229 }
230 if (sc->sih_wr != NULL) {
231 softint_disestablish(sc->sih_wr);
232 sc->sih_wr = NULL;
233 }
234
235 return (0);
236 }
237
238 void
239 midi_attach(struct midi_softc *sc, device_t parent)
240 {
241 struct midi_info mi;
242 int s;
243
244 callout_init(&sc->xmt_asense_co, 0);
245 callout_init(&sc->rcv_asense_co, 0);
246 callout_setfunc(&sc->xmt_asense_co, midi_xmt_asense, sc);
247 callout_setfunc(&sc->rcv_asense_co, midi_rcv_asense, sc);
248 simple_lock_init(&sc->out_lock);
249 simple_lock_init(&sc->in_lock);
250 sc->dying = 0;
251 sc->isopen = 0;
252
253 sc->sc_dev = parent;
254
255 sc->sih_rd = softint_establish(SOFTINT_SERIAL, midi_softintr_rd, sc);
256 sc->sih_wr = softint_establish(SOFTINT_SERIAL, midi_softintr_wr, sc);
257
258 s = splaudio();
259 simple_lock(&hwif_register_lock);
260 hwif_softc = sc;
261 sc->hw_if->getinfo(sc->hw_hdl, &mi);
262 hwif_softc = NULL;
263 simple_unlock(&hwif_register_lock);
264 splx(s);
265
266 sc->props = mi.props;
267
268 if ( !(sc->props & MIDI_PROP_NO_OUTPUT) ) {
269 evcnt_attach_dynamic(&sc->xmt.bytesDiscarded,
270 EVCNT_TYPE_MISC, NULL,
271 device_xname(sc->dev), "xmt bytes discarded");
272 evcnt_attach_dynamic(&sc->xmt.incompleteMessages,
273 EVCNT_TYPE_MISC, NULL,
274 device_xname(sc->dev), "xmt incomplete msgs");
275 }
276 if ( sc->props & MIDI_PROP_CAN_INPUT ) {
277 evcnt_attach_dynamic(&sc->rcv.bytesDiscarded,
278 EVCNT_TYPE_MISC, NULL,
279 device_xname(sc->dev), "rcv bytes discarded");
280 evcnt_attach_dynamic(&sc->rcv.incompleteMessages,
281 EVCNT_TYPE_MISC, NULL,
282 device_xname(sc->dev), "rcv incomplete msgs");
283 }
284
285 aprint_normal(": %s%s\n", mi.name,
286 (sc->props & (MIDI_PROP_OUT_INTR|MIDI_PROP_NO_OUTPUT)) ?
287 "" : " (CPU-intensive output)");
288 }
289
290 void midi_register_hw_if_ext(struct midi_hw_if_ext *exthw) {
291 if ( hwif_softc != NULL ) /* ignore calls resulting from non-init */
292 hwif_softc->hw_if_ext = exthw; /* uses of getinfo */
293 }
294
295 int
296 midi_unit_count(void)
297 {
298 int i;
299 for ( i = 0; i < midi_cd.cd_ndevs; ++i )
300 if ( NULL == midi_cd.cd_devs[i] )
301 break;
302 return i;
303 }
304
305 void
306 midi_initbuf(struct midi_buffer *mb)
307 {
308 mb->idx_producerp = mb->idx_consumerp = mb->idx;
309 mb->buf_producerp = mb->buf_consumerp = mb->buf;
310 }
311 #define PACK_MB_IDX(cat,len) (((cat)<<4)|(len))
312 #define MB_IDX_CAT(idx) ((idx)>>4)
313 #define MB_IDX_LEN(idx) ((idx)&0xf)
314
315 int
316 midi_sleep_timo(int *chan, const char *label, int timo, struct simplelock *lk)
317 {
318 int st;
319
320 if (!label)
321 label = "midi";
322
323 DPRINTFN(8, ("midi_sleep_timo: %p %s %d\n", chan, label, timo));
324 *chan = 1;
325 st = ltsleep(chan, PWAIT | PCATCH, label, timo, lk);
326 *chan = 0;
327 #ifdef MIDI_DEBUG
328 if (st != 0)
329 printf("midi_sleep: %d\n", st);
330 #endif
331 return st;
332 }
333
334 int
335 midi_sleep(int *chan, const char *label, struct simplelock *lk)
336 {
337 return midi_sleep_timo(chan, label, 0, lk);
338 }
339
340 void
341 midi_wakeup(int *chan)
342 {
343 if (*chan) {
344 DPRINTFN(8, ("midi_wakeup: %p\n", chan));
345 wakeup(chan);
346 *chan = 0;
347 }
348 }
349
350 /* in midivar.h:
351 #define MIDI_CAT_DATA 0
352 #define MIDI_CAT_STATUS1 1
353 #define MIDI_CAT_STATUS2 2
354 #define MIDI_CAT_COMMON 3
355 */
356 static char const midi_cats[] = "\0\0\0\0\0\0\0\0\2\2\2\2\1\1\2\3";
357 #define MIDI_CAT(d) (midi_cats[((d)>>4)&15])
358 #define FST_RETURN(offp,endp,ret) \
359 return (s->pos=s->msg+(offp)), (s->end=s->msg+(endp)), (ret)
360
361 enum fst_ret { FST_CHN, FST_CHV, FST_COM, FST_SYX, FST_RT, FST_MORE, FST_ERR,
362 FST_HUH, FST_SXP };
363 enum fst_form { FST_CANON, FST_COMPR, FST_VCOMP };
364 static struct {
365 int off;
366 enum fst_ret tag;
367 } const midi_forms[] = {
368 [FST_CANON] = { .off=0, .tag=FST_CHN },
369 [FST_COMPR] = { .off=1, .tag=FST_CHN },
370 [FST_VCOMP] = { .off=0, .tag=FST_CHV }
371 };
372 #define FST_CRETURN(endp) \
373 FST_RETURN(midi_forms[form].off,endp,midi_forms[form].tag)
374
375 /*
376 * A MIDI finite state transducer suitable for receiving or transmitting. It
377 * will accept correct MIDI input that uses, doesn't use, or sometimes uses the
378 * 'running status' compression technique, and transduce it to fully expanded
379 * (form=FST_CANON) or fully compressed (form=FST_COMPR or FST_VCOMP) form.
380 *
381 * Returns FST_MORE if a complete message has not been parsed yet (SysEx
382 * messages are the exception), FST_ERR or FST_HUH if the input does not
383 * conform to the protocol, or FST_CHN (channel messages), FST_COM (System
384 * Common messages), FST_RT (System Real-Time messages), or FST_SYX (System
385 * Exclusive) to broadly categorize the message parsed. s->pos and s->end
386 * locate the parsed message; while (s->pos<s->end) putchar(*(s->pos++));
387 * would output it.
388 *
389 * FST_HUH means the character c wasn't valid in the original state, but the
390 * state has now been reset to START and the caller should try again passing
391 * the same c. FST_ERR means c isn't valid in the start state; the caller
392 * should kiss it goodbye and continue to try successive characters from the
393 * input until something other than FST_ERR or FST_HUH is returned, at which
394 * point things are resynchronized.
395 *
396 * A FST_SYX return means that between pos and end are from 1 to 3
397 * bytes of a system exclusive message. A SysEx message will be delivered in
398 * one or more chunks of that form, where the first begins with 0xf0 and the
399 * last (which is the only one that might have length < 3) ends with 0xf7.
400 *
401 * Messages corrupted by a protocol error are discarded and won't be seen at
402 * all; again SysEx is the exception, as one or more chunks of it may already
403 * have been parsed.
404 *
405 * For FST_CHN messages, s->msg[0] always contains the status byte even if
406 * FST_COMPR form was requested (pos then points to msg[1]). That way, the
407 * caller can always identify the exact message if there is a need to do so.
408 * For all other message types except FST_SYX, the status byte is at *pos
409 * (which may not necessarily be msg[0]!). There is only one SysEx status
410 * byte, so the return value FST_SYX is sufficient to identify it.
411 *
412 * To simplify some use cases, compression can also be requested with
413 * form=FST_VCOMP. In this form a compressible channel message is indicated
414 * by returning a classification of FST_CHV instead of FST_CHN, and pos points
415 * to the status byte rather than being advanced past it. If the caller in this
416 * case saves the bytes from pos to end, it will have saved the entire message,
417 * and can act on the FST_CHV tag to drop the first byte later. In this form,
418 * unlike FST_CANON, hidden note-off (i.e. note-on with velocity 0) may occur.
419 *
420 * Two obscure points in the MIDI protocol complicate things further, both to
421 * do with the EndSysEx code, 0xf7. First, this code is permitted (and
422 * meaningless) outside of a System Exclusive message, anywhere a status byte
423 * could appear. Second, it is allowed to be absent at the end of a System
424 * Exclusive message (!) - any status byte at all (non-realtime) is allowed to
425 * terminate the message. Both require accomodation in the interface to
426 * midi_fst's caller. A stray 0xf7 should be ignored BUT should count as a
427 * message received for purposes of Active Sense timeout; the case is
428 * represented by a return of FST_COM with a length of zero (pos == end). A
429 * status byte other than 0xf7 during a system exclusive message will cause an
430 * FST_SXP (sysex plus) return; the bytes from pos to end are the end of the
431 * system exclusive message, and after handling those the caller should call
432 * midi_fst again with the same input byte.
433 *
434 * midi(4) will never produce either such form of rubbish.
435 */
436 static enum fst_ret
437 midi_fst(struct midi_state *s, u_char c, enum fst_form form)
438 {
439 int syxpos = 0;
440
441 if ( c >= 0xf8 ) { /* All realtime messages bypass state machine */
442 if ( c == 0xf9 || c == 0xfd ) {
443 DPRINTF( ("midi_fst: s=%p c=0x%02x undefined\n",
444 s, c));
445 s->bytesDiscarded.ev_count++;
446 return FST_ERR;
447 }
448 DPRINTFN(9, ("midi_fst: s=%p System Real-Time data=0x%02x\n",
449 s, c));
450 s->msg[2] = c;
451 FST_RETURN(2,3,FST_RT);
452 }
453
454 DPRINTFN(4, ("midi_fst: s=%p data=0x%02x state=%d\n",
455 s, c, s->state));
456
457 switch ( s->state | MIDI_CAT(c) ) { /* break ==> return FST_MORE */
458
459 case MIDI_IN_START | MIDI_CAT_COMMON:
460 case MIDI_IN_RUN1_1 | MIDI_CAT_COMMON:
461 case MIDI_IN_RUN2_2 | MIDI_CAT_COMMON:
462 case MIDI_IN_RXX2_2 | MIDI_CAT_COMMON:
463 s->msg[0] = c;
464 switch ( c ) {
465 case 0xf0: s->state = MIDI_IN_SYX1_3; break;
466 case 0xf1: s->state = MIDI_IN_COM0_1; break;
467 case 0xf2: s->state = MIDI_IN_COM0_2; break;
468 case 0xf3: s->state = MIDI_IN_COM0_1; break;
469 case 0xf6: s->state = MIDI_IN_START; FST_RETURN(0,1,FST_COM);
470 case 0xf7: s->state = MIDI_IN_START; FST_RETURN(0,0,FST_COM);
471 default: goto protocol_violation;
472 }
473 break;
474
475 case MIDI_IN_RUN1_1 | MIDI_CAT_STATUS1:
476 if ( c == s->msg[0] ) {
477 s->state = MIDI_IN_RNX0_1;
478 break;
479 }
480 /* FALLTHROUGH */
481 case MIDI_IN_RUN2_2 | MIDI_CAT_STATUS1:
482 case MIDI_IN_RXX2_2 | MIDI_CAT_STATUS1:
483 case MIDI_IN_START | MIDI_CAT_STATUS1:
484 s->state = MIDI_IN_RUN0_1;
485 s->msg[0] = c;
486 break;
487
488 case MIDI_IN_RUN2_2 | MIDI_CAT_STATUS2:
489 case MIDI_IN_RXX2_2 | MIDI_CAT_STATUS2:
490 if ( c == s->msg[0] ) {
491 s->state = MIDI_IN_RNX0_2;
492 break;
493 }
494 if ( (c ^ s->msg[0]) == 0x10 && (c & 0xe0) == 0x80 ) {
495 s->state = MIDI_IN_RXX0_2;
496 s->msg[0] = c;
497 break;
498 }
499 /* FALLTHROUGH */
500 case MIDI_IN_RUN1_1 | MIDI_CAT_STATUS2:
501 case MIDI_IN_START | MIDI_CAT_STATUS2:
502 s->state = MIDI_IN_RUN0_2;
503 s->msg[0] = c;
504 break;
505
506 case MIDI_IN_COM0_1 | MIDI_CAT_DATA:
507 s->state = MIDI_IN_START;
508 s->msg[1] = c;
509 FST_RETURN(0,2,FST_COM);
510
511 case MIDI_IN_COM0_2 | MIDI_CAT_DATA:
512 s->state = MIDI_IN_COM1_2;
513 s->msg[1] = c;
514 break;
515
516 case MIDI_IN_COM1_2 | MIDI_CAT_DATA:
517 s->state = MIDI_IN_START;
518 s->msg[2] = c;
519 FST_RETURN(0,3,FST_COM);
520
521 case MIDI_IN_RUN0_1 | MIDI_CAT_DATA:
522 s->state = MIDI_IN_RUN1_1;
523 s->msg[1] = c;
524 FST_RETURN(0,2,FST_CHN);
525
526 case MIDI_IN_RUN1_1 | MIDI_CAT_DATA:
527 case MIDI_IN_RNX0_1 | MIDI_CAT_DATA:
528 s->state = MIDI_IN_RUN1_1;
529 s->msg[1] = c;
530 FST_CRETURN(2);
531
532 case MIDI_IN_RUN0_2 | MIDI_CAT_DATA:
533 s->state = MIDI_IN_RUN1_2;
534 s->msg[1] = c;
535 break;
536
537 case MIDI_IN_RUN1_2 | MIDI_CAT_DATA:
538 if ( FST_CANON == form && 0 == c && (s->msg[0]&0xf0) == 0x90 ) {
539 s->state = MIDI_IN_RXX2_2;
540 s->msg[0] ^= 0x10;
541 s->msg[2] = 64;
542 } else {
543 s->state = MIDI_IN_RUN2_2;
544 s->msg[2] = c;
545 }
546 FST_RETURN(0,3,FST_CHN);
547
548 case MIDI_IN_RUN2_2 | MIDI_CAT_DATA:
549 s->state = MIDI_IN_RNX1_2;
550 s->msg[1] = c;
551 break;
552
553 case MIDI_IN_RXX2_2 | MIDI_CAT_DATA:
554 s->state = MIDI_IN_RXX1_2;
555 s->msg[0] ^= 0x10;
556 s->msg[1] = c;
557 break;
558
559 case MIDI_IN_RNX0_2 | MIDI_CAT_DATA:
560 s->state = MIDI_IN_RNY1_2;
561 s->msg[1] = c;
562 break;
563
564 case MIDI_IN_RXX0_2 | MIDI_CAT_DATA:
565 s->state = MIDI_IN_RXY1_2;
566 s->msg[1] = c;
567 break;
568
569 case MIDI_IN_RNX1_2 | MIDI_CAT_DATA:
570 case MIDI_IN_RNY1_2 | MIDI_CAT_DATA:
571 if ( FST_CANON == form && 0 == c && (s->msg[0]&0xf0) == 0x90 ) {
572 s->state = MIDI_IN_RXX2_2;
573 s->msg[0] ^= 0x10;
574 s->msg[2] = 64;
575 FST_RETURN(0,3,FST_CHN);
576 }
577 s->state = MIDI_IN_RUN2_2;
578 s->msg[2] = c;
579 FST_CRETURN(3);
580
581 case MIDI_IN_RXX1_2 | MIDI_CAT_DATA:
582 case MIDI_IN_RXY1_2 | MIDI_CAT_DATA:
583 if ( ( 0 == c && (s->msg[0]&0xf0) == 0x90)
584 || (64 == c && (s->msg[0]&0xf0) == 0x80
585 && FST_CANON != form) ) {
586 s->state = MIDI_IN_RXX2_2;
587 s->msg[0] ^= 0x10;
588 s->msg[2] = 64 - c;
589 FST_CRETURN(3);
590 }
591 s->state = MIDI_IN_RUN2_2;
592 s->msg[2] = c;
593 FST_RETURN(0,3,FST_CHN);
594
595 case MIDI_IN_SYX1_3 | MIDI_CAT_DATA:
596 s->state = MIDI_IN_SYX2_3;
597 s->msg[1] = c;
598 break;
599
600 case MIDI_IN_SYX2_3 | MIDI_CAT_DATA:
601 s->state = MIDI_IN_SYX0_3;
602 s->msg[2] = c;
603 FST_RETURN(0,3,FST_SYX);
604
605 case MIDI_IN_SYX0_3 | MIDI_CAT_DATA:
606 s->state = MIDI_IN_SYX1_3;
607 s->msg[0] = c;
608 break;
609
610 case MIDI_IN_SYX2_3 | MIDI_CAT_COMMON:
611 case MIDI_IN_SYX2_3 | MIDI_CAT_STATUS1:
612 case MIDI_IN_SYX2_3 | MIDI_CAT_STATUS2:
613 ++ syxpos;
614 /* FALLTHROUGH */
615 case MIDI_IN_SYX1_3 | MIDI_CAT_COMMON:
616 case MIDI_IN_SYX1_3 | MIDI_CAT_STATUS1:
617 case MIDI_IN_SYX1_3 | MIDI_CAT_STATUS2:
618 ++ syxpos;
619 /* FALLTHROUGH */
620 case MIDI_IN_SYX0_3 | MIDI_CAT_COMMON:
621 case MIDI_IN_SYX0_3 | MIDI_CAT_STATUS1:
622 case MIDI_IN_SYX0_3 | MIDI_CAT_STATUS2:
623 s->state = MIDI_IN_START;
624 if ( c == 0xf7 ) {
625 s->msg[syxpos] = c;
626 FST_RETURN(0,1+syxpos,FST_SYX);
627 }
628 s->msg[syxpos] = 0xf7;
629 FST_RETURN(0,1+syxpos,FST_SXP);
630
631 default:
632 protocol_violation:
633 DPRINTF(("midi_fst: unexpected %#02x in state %u\n",
634 c, s->state));
635 switch ( s->state ) {
636 case MIDI_IN_RUN1_1: /* can only get here by seeing an */
637 case MIDI_IN_RUN2_2: /* INVALID System Common message */
638 case MIDI_IN_RXX2_2:
639 s->state = MIDI_IN_START;
640 /* FALLTHROUGH */
641 case MIDI_IN_START:
642 s->bytesDiscarded.ev_count++;
643 return FST_ERR;
644 case MIDI_IN_COM1_2:
645 case MIDI_IN_RUN1_2:
646 case MIDI_IN_RNY1_2:
647 case MIDI_IN_RXY1_2:
648 s->bytesDiscarded.ev_count++;
649 /* FALLTHROUGH */
650 case MIDI_IN_COM0_1:
651 case MIDI_IN_RUN0_1:
652 case MIDI_IN_RNX0_1:
653 case MIDI_IN_COM0_2:
654 case MIDI_IN_RUN0_2:
655 case MIDI_IN_RNX0_2:
656 case MIDI_IN_RXX0_2:
657 case MIDI_IN_RNX1_2:
658 case MIDI_IN_RXX1_2:
659 s->bytesDiscarded.ev_count++;
660 s->incompleteMessages.ev_count++;
661 break;
662 #if defined(AUDIO_DEBUG) || defined(DIAGNOSTIC)
663 default:
664 printf("midi_fst: mishandled %#02x(%u) in state %u?!\n",
665 c, MIDI_CAT(c), s->state);
666 #endif
667 }
668 s->state = MIDI_IN_START;
669 return FST_HUH;
670 }
671 return FST_MORE;
672 }
673
674 void
675 midi_softintr_rd(void *cookie)
676 {
677 struct midi_softc *sc = cookie;
678 struct proc *p;
679
680 if (sc->async != NULL) {
681 mutex_enter(&proclist_mutex);
682 if ((p = sc->async) != NULL)
683 psignal(p, SIGIO);
684 mutex_exit(&proclist_mutex);
685 }
686 midi_wakeup(&sc->rchan);
687 selnotify(&sc->rsel, 0, 0); /* filter will spin if locked */
688 }
689
690 void
691 midi_softintr_wr(void *cookie)
692 {
693 struct midi_softc *sc = cookie;
694 struct proc *p;
695
696 if (sc->async != NULL) {
697 mutex_enter(&proclist_mutex);
698 if ((p = sc->async) != NULL)
699 psignal(p, SIGIO);
700 mutex_exit(&proclist_mutex);
701 }
702 midi_wakeup(&sc->wchan);
703 selnotify(&sc->wsel, 0, 0); /* filter will spin if locked */
704 }
705
706 void
707 midi_in(void *addr, int data)
708 {
709 struct midi_softc *sc = addr;
710 struct midi_buffer *mb = &sc->inbuf;
711 int i;
712 int count;
713 enum fst_ret got;
714 int s; /* hw may have various spls so impose our own */
715 MIDI_BUF_DECLARE(idx);
716 MIDI_BUF_DECLARE(buf);
717
718 if (!sc->isopen)
719 return;
720
721 if (!(sc->flags & FREAD))
722 return; /* discard data if not reading */
723
724 sxp_again:
725 do
726 got = midi_fst(&sc->rcv, data, FST_CANON);
727 while ( got == FST_HUH );
728
729 switch ( got ) {
730 case FST_MORE:
731 case FST_ERR:
732 return;
733 case FST_CHN:
734 case FST_COM:
735 case FST_RT:
736 #if NSEQUENCER > 0
737 if (sc->seqopen) {
738 extern void midiseq_in(struct midi_dev *,u_char *,int);
739 count = sc->rcv.end - sc->rcv.pos;
740 midiseq_in(sc->seq_md, sc->rcv.pos, count);
741 return;
742 }
743 #endif
744 /*
745 * Pass Active Sense to the sequencer if it's open, but not to
746 * a raw reader. (Really should do something intelligent with
747 * it then, though....)
748 */
749 if ( got == FST_RT && MIDI_ACK == sc->rcv.pos[0] ) {
750 if ( !sc->rcv_expect_asense ) {
751 sc->rcv_expect_asense = 1;
752 callout_schedule(&sc->rcv_asense_co,
753 MIDI_RCV_ASENSE_PERIOD);
754 }
755 sc->rcv_quiescent = 0;
756 sc->rcv_eof = 0;
757 return;
758 }
759 /* FALLTHROUGH */
760 /*
761 * Ultimately SysEx msgs should be offered to the sequencer also; the
762 * sequencer API addresses them - but maybe our sequencer can't handle
763 * them yet, so offer only to raw reader. (Which means, ultimately,
764 * discard them if the sequencer's open, as it's not doing reads!)
765 * -> When SysEx support is added to the sequencer, be sure to handle
766 * FST_SXP there too.
767 */
768 case FST_SYX:
769 case FST_SXP:
770 count = sc->rcv.end - sc->rcv.pos;
771 MIDI_IN_LOCK(sc,s);
772 sc->rcv_quiescent = 0;
773 sc->rcv_eof = 0;
774 if ( 0 == count ) {
775 MIDI_IN_UNLOCK(sc,s);
776 break;
777 }
778 MIDI_BUF_PRODUCER_INIT(mb,idx);
779 MIDI_BUF_PRODUCER_INIT(mb,buf);
780 if (count > buf_lim - buf_cur
781 || 1 > idx_lim - idx_cur) {
782 sc->rcv.bytesDiscarded.ev_count += count;
783 MIDI_IN_UNLOCK(sc,s);
784 DPRINTF(("midi_in: buffer full, discard data=0x%02x\n",
785 sc->rcv.pos[0]));
786 return;
787 }
788 for (i = 0; i < count; i++) {
789 *buf_cur++ = sc->rcv.pos[i];
790 MIDI_BUF_WRAP(buf);
791 }
792 *idx_cur++ = PACK_MB_IDX(got,count);
793 MIDI_BUF_WRAP(idx);
794 MIDI_BUF_PRODUCER_WBACK(mb,buf);
795 MIDI_BUF_PRODUCER_WBACK(mb,idx);
796 MIDI_IN_UNLOCK(sc,s);
797 softint_schedule(sc->sih_rd);
798 break;
799 default: /* don't #ifdef this away, gcc will say FST_HUH not handled */
800 printf("midi_in: midi_fst returned %d?!\n", got);
801 }
802 if ( FST_SXP == got )
803 goto sxp_again;
804 }
805
806 void
807 midi_out(void *addr)
808 {
809 struct midi_softc *sc = addr;
810
811 if (!sc->isopen)
812 return;
813 DPRINTFN(8, ("midi_out: %p\n", sc));
814 midi_intr_out(sc);
815 }
816
817 int
818 midiopen(dev_t dev, int flags, int ifmt, struct lwp *l)
819 {
820 struct midi_softc *sc;
821 const struct midi_hw_if *hw;
822 int error;
823
824 sc = device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
825 if (sc == NULL)
826 return (ENXIO);
827 if (sc->dying)
828 return (EIO);
829
830 DPRINTFN(3,("midiopen %p\n", sc));
831
832 hw = sc->hw_if;
833 if (!hw)
834 return ENXIO;
835 if (sc->isopen)
836 return EBUSY;
837
838 /* put both state machines into known states */
839 sc->rcv.state = MIDI_IN_START;
840 sc->rcv.pos = sc->rcv.msg;
841 sc->rcv.end = sc->rcv.msg;
842 sc->xmt.state = MIDI_IN_START;
843 sc->xmt.pos = sc->xmt.msg;
844 sc->xmt.end = sc->xmt.msg;
845
846 /* copy error counters so an ioctl (TBA) can give since-open stats */
847 sc->rcv.atOpen.bytesDiscarded = sc->rcv.bytesDiscarded.ev_count;
848 sc->rcv.atQuery.bytesDiscarded = sc->rcv.bytesDiscarded.ev_count;
849
850 sc->xmt.atOpen.bytesDiscarded = sc->xmt.bytesDiscarded.ev_count;
851 sc->xmt.atQuery.bytesDiscarded = sc->xmt.bytesDiscarded.ev_count;
852
853 /* and the buffers */
854 midi_initbuf(&sc->outbuf);
855 midi_initbuf(&sc->inbuf);
856
857 /* and the receive flags */
858 sc->rcv_expect_asense = 0;
859 sc->rcv_quiescent = 0;
860 sc->rcv_eof = 0;
861
862 error = hw->open(sc->hw_hdl, flags, midi_in, midi_out, sc);
863 if (error)
864 return error;
865 sc->isopen++;
866 sc->flags = flags;
867 sc->rchan = 0;
868 sc->wchan = 0;
869 sc->pbus = 0;
870 sc->async = 0;
871
872 #ifdef MIDI_SAVE
873 if (midicnt != 0) {
874 midisave.cnt = midicnt;
875 midicnt = 0;
876 }
877 #endif
878
879 return 0;
880 }
881
882 int
883 midiclose(dev_t dev, int flags, int ifmt,
884 struct lwp *l)
885 {
886 struct midi_softc *sc =
887 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
888 const struct midi_hw_if *hw = sc->hw_if;
889 int s, error;
890
891 DPRINTFN(3,("midiclose %p\n", sc));
892
893 /* midi_start_output(sc); anything buffered => pbus already set! */
894 error = 0;
895 MIDI_OUT_LOCK(sc,s);
896 while (sc->pbus) {
897 DPRINTFN(8,("midiclose sleep ...\n"));
898 error =
899 midi_sleep_timo(&sc->wchan, "mid_dr", 30*hz, &sc->out_lock);
900 }
901 sc->isopen = 0;
902 MIDI_OUT_UNLOCK(sc,s);
903 callout_stop(&sc->xmt_asense_co); /* xxx fix this - sleep? */
904 callout_stop(&sc->rcv_asense_co);
905 hw->close(sc->hw_hdl);
906 #if NSEQUENCER > 0
907 sc->seqopen = 0;
908 sc->seq_md = 0;
909 #endif
910 return 0;
911 }
912
913 int
914 midiread(dev_t dev, struct uio *uio, int ioflag)
915 {
916 struct midi_softc *sc =
917 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
918 struct midi_buffer *mb = &sc->inbuf;
919 int error;
920 int s;
921 MIDI_BUF_DECLARE(idx);
922 MIDI_BUF_DECLARE(buf);
923 int appetite;
924 int first = 1;
925
926 DPRINTFN(6,("midiread: %p, count=%lu\n", sc,
927 (unsigned long)uio->uio_resid));
928
929 if (sc->dying)
930 return EIO;
931 if ( !(sc->props & MIDI_PROP_CAN_INPUT) )
932 return ENXIO;
933
934 MIDI_IN_LOCK(sc,s);
935 MIDI_BUF_CONSUMER_INIT(mb,idx);
936 MIDI_BUF_CONSUMER_INIT(mb,buf);
937 MIDI_IN_UNLOCK(sc,s);
938
939 error = 0;
940 for ( ;; ) {
941 /*
942 * If the used portion of idx wraps around the end, just take
943 * the first part on this iteration, and we'll get the rest on
944 * the next.
945 */
946 if ( idx_lim > idx_end )
947 idx_lim = idx_end;
948 /*
949 * Count bytes through the last complete message that will
950 * fit in the requested read.
951 */
952 for (appetite = uio->uio_resid; idx_cur < idx_lim; ++idx_cur) {
953 if ( appetite < MB_IDX_LEN(*idx_cur) )
954 break;
955 appetite -= MB_IDX_LEN(*idx_cur);
956 }
957 appetite = uio->uio_resid - appetite;
958 /*
959 * Only if the read is too small to hold even the first
960 * complete message will we return a partial one (updating idx
961 * to reflect the remaining length of the message).
962 */
963 if ( appetite == 0 && idx_cur < idx_lim ) {
964 if ( !first )
965 goto unlocked_exit; /* idx_cur not advanced */
966 appetite = uio->uio_resid;
967 *idx_cur = PACK_MB_IDX(MB_IDX_CAT(*idx_cur),
968 MB_IDX_LEN(*idx_cur) - appetite);
969 }
970 KASSERT(buf_cur + appetite <= buf_lim);
971
972 /* move the bytes */
973 if ( appetite > 0 ) {
974 first = 0; /* we know we won't return empty-handed */
975 /* do two uiomoves if data wrap around end of buf */
976 if ( buf_cur + appetite > buf_end ) {
977 DPRINTFN(8,
978 ("midiread: uiomove cc=%td (prewrap)\n",
979 buf_end - buf_cur));
980 error = uiomove(buf_cur, buf_end-buf_cur, uio);
981 if ( error )
982 goto unlocked_exit;
983 appetite -= buf_end - buf_cur;
984 buf_cur = mb->buf;
985 }
986 DPRINTFN(8, ("midiread: uiomove cc=%d\n", appetite));
987 error = uiomove(buf_cur, appetite, uio);
988 if ( error )
989 goto unlocked_exit;
990 buf_cur += appetite;
991 }
992
993 MIDI_BUF_WRAP(idx);
994 MIDI_BUF_WRAP(buf);
995
996 MIDI_IN_LOCK(sc,s);
997 MIDI_BUF_CONSUMER_WBACK(mb,idx);
998 MIDI_BUF_CONSUMER_WBACK(mb,buf);
999 if ( 0 == uio->uio_resid ) /* if read satisfied, we're done */
1000 break;
1001 MIDI_BUF_CONSUMER_REFRESH(mb,idx);
1002 if ( idx_cur == idx_lim ) { /* need to wait for data? */
1003 if ( !first || sc->rcv_eof ) /* never block reader if */
1004 break; /* any data already in hand */
1005 if (ioflag & IO_NDELAY) {
1006 error = EWOULDBLOCK;
1007 break;
1008 }
1009 error = midi_sleep(&sc->rchan, "mid rd", &sc->in_lock);
1010 if ( error )
1011 break;
1012 MIDI_BUF_CONSUMER_REFRESH(mb,idx); /* what'd we get? */
1013 }
1014 MIDI_BUF_CONSUMER_REFRESH(mb,buf);
1015 MIDI_IN_UNLOCK(sc,s);
1016 if ( sc->dying )
1017 return EIO;
1018 }
1019 MIDI_IN_UNLOCK(sc,s);
1020
1021 unlocked_exit:
1022 return error;
1023 }
1024
1025 void
1026 midi_rcv_asense(void *arg)
1027 {
1028 struct midi_softc *sc = arg;
1029 int s;
1030
1031 if ( sc->dying || !sc->isopen )
1032 return;
1033
1034 if ( sc->rcv_quiescent ) {
1035 MIDI_IN_LOCK(sc,s);
1036 sc->rcv_eof = 1;
1037 sc->rcv_quiescent = 0;
1038 sc->rcv_expect_asense = 0;
1039 MIDI_IN_UNLOCK(sc,s);
1040 softint_schedule(sc->sih_rd);
1041 return;
1042 }
1043
1044 sc->rcv_quiescent = 1;
1045 callout_schedule(&sc->rcv_asense_co, MIDI_RCV_ASENSE_PERIOD);
1046 }
1047
1048 void
1049 midi_xmt_asense(void *arg)
1050 {
1051 struct midi_softc *sc = arg;
1052 int s;
1053 int error;
1054 int armed;
1055
1056 if ( sc->dying || !sc->isopen )
1057 return;
1058
1059 MIDI_OUT_LOCK(sc,s);
1060 if ( sc->pbus || sc->dying || !sc->isopen ) {
1061 MIDI_OUT_UNLOCK(sc,s);
1062 return;
1063 }
1064 sc->pbus = 1;
1065 DPRINTFN(8,("midi_xmt_asense: %p\n", sc));
1066
1067 if ( sc->props & MIDI_PROP_OUT_INTR ) {
1068 error = sc->hw_if->output(sc->hw_hdl, MIDI_ACK);
1069 armed = (error == 0);
1070 } else { /* polled output, do with interrupts unmasked */
1071 MIDI_OUT_UNLOCK(sc,s);
1072 /* running from softclock, so top half won't sneak in here */
1073 error = sc->hw_if->output(sc->hw_hdl, MIDI_ACK);
1074 MIDI_OUT_LOCK(sc,s);
1075 armed = 0;
1076 }
1077
1078 if ( !armed ) {
1079 sc->pbus = 0;
1080 callout_schedule(&sc->xmt_asense_co, MIDI_XMT_ASENSE_PERIOD);
1081 }
1082
1083 MIDI_OUT_UNLOCK(sc,s);
1084 }
1085
1086 /*
1087 * The way this function was hacked up to plug into poll_out and intr_out
1088 * after they were written won't win it any beauty contests, but it'll work
1089 * (code in haste, refactor at leisure). This may be called with the lock
1090 * (by intr_out) or without the lock (by poll_out) so it only does what could
1091 * be safe either way.
1092 */
1093 int midi_msg_out(struct midi_softc *sc,
1094 u_char **idx, u_char **idxl, u_char **buf, u_char **bufl) {
1095 MIDI_BUF_DECLARE(idx);
1096 MIDI_BUF_DECLARE(buf);
1097 MIDI_BUF_EXTENT_INIT(&sc->outbuf,idx);
1098 MIDI_BUF_EXTENT_INIT(&sc->outbuf,buf);
1099 int length;
1100 int error;
1101 u_char contig[3];
1102 u_char *cp;
1103 u_char *ep;
1104
1105 idx_cur = *idx;
1106 idx_lim = *idxl;
1107 buf_cur = *buf;
1108 buf_lim = *bufl;
1109
1110 length = MB_IDX_LEN(*idx_cur);
1111
1112 for ( cp = contig, ep = cp + length; cp < ep; ) {
1113 *cp++ = *buf_cur++;
1114 MIDI_BUF_WRAP(buf);
1115 }
1116 cp = contig;
1117
1118 switch ( MB_IDX_CAT(*idx_cur) ) {
1119 case FST_CHV: /* chnmsg to be compressed (for device that wants it) */
1120 ++ cp;
1121 -- length;
1122 /* FALLTHROUGH */
1123 case FST_CHN:
1124 error = sc->hw_if_ext->channel(sc->hw_hdl,
1125 MIDI_GET_STATUS(contig[0]),
1126 MIDI_GET_CHAN(contig[0]),
1127 cp, length);
1128 break;
1129 case FST_COM:
1130 error = sc->hw_if_ext->common(sc->hw_hdl,
1131 MIDI_GET_STATUS(contig[0]),
1132 cp, length);
1133 break;
1134 case FST_SYX:
1135 case FST_SXP:
1136 error = sc->hw_if_ext->sysex(sc->hw_hdl,
1137 cp, length);
1138 break;
1139 case FST_RT:
1140 error = sc->hw_if->output(sc->hw_hdl, *cp);
1141 break;
1142 default:
1143 error = EIO;
1144 }
1145
1146 if ( !error ) {
1147 ++ idx_cur;
1148 MIDI_BUF_WRAP(idx);
1149 *idx = idx_cur;
1150 *idxl = idx_lim;
1151 *buf = buf_cur;
1152 *bufl = buf_lim;
1153 }
1154
1155 return error;
1156 }
1157
1158 /*
1159 * midi_poll_out is intended for the midi hw (the vast majority of MIDI UARTs
1160 * on sound cards, apparently) that _do not have transmit-ready interrupts_.
1161 * Every call to hw_if->output for one of these may busy-wait to output the
1162 * byte; at the standard midi data rate that'll be 320us per byte. The
1163 * technique of writing only MIDI_MAX_WRITE bytes in a row and then waiting
1164 * for MIDI_WAIT does not reduce the total time spent busy-waiting, and it
1165 * adds arbitrary delays in transmission (and, since MIDI_WAIT is roughly the
1166 * same as the time to send MIDI_MAX_WRITE bytes, it effectively halves the
1167 * data rate). Here, a somewhat bolder approach is taken. Since midi traffic
1168 * is bursty but time-sensitive--most of the time there will be none at all,
1169 * but when there is it should go out ASAP--the strategy is to just get it
1170 * over with, and empty the buffer in one go. The effect this can have on
1171 * the rest of the system will be limited by the size of the buffer and the
1172 * sparseness of the traffic. But some precautions are in order. Interrupts
1173 * should all be unmasked when this is called, and midiwrite should not fill
1174 * the buffer more than once (when MIDI_PROP_CAN_INTR is false) without a
1175 * yield() so some other process can get scheduled. If the write is nonblocking,
1176 * midiwrite should return a short count rather than yield.
1177 *
1178 * Someday when there is fine-grained MP support, this should be reworked to
1179 * run in a callout so the writing process really could proceed concurrently.
1180 * But obviously where performance is a concern, interrupt-driven hardware
1181 * such as USB midi or (apparently) clcs will always be preferable. And it
1182 * seems (kern/32651) that many of the devices currently working in poll mode
1183 * may really have tx interrupt capability and want only implementation; that
1184 * ought to happen.
1185 */
1186 int
1187 midi_poll_out(struct midi_softc *sc)
1188 {
1189 struct midi_buffer *mb = &sc->outbuf;
1190 int error;
1191 int msglen;
1192 int s;
1193 MIDI_BUF_DECLARE(idx);
1194 MIDI_BUF_DECLARE(buf);
1195
1196 error = 0;
1197
1198 MIDI_OUT_LOCK(sc,s);
1199 MIDI_BUF_CONSUMER_INIT(mb,idx);
1200 MIDI_BUF_CONSUMER_INIT(mb,buf);
1201 MIDI_OUT_UNLOCK(sc,s);
1202
1203 for ( ;; ) {
1204 while ( idx_cur != idx_lim ) {
1205 if ( sc->hw_if_ext ) {
1206 error = midi_msg_out(sc, &idx_cur, &idx_lim,
1207 &buf_cur, &buf_lim);
1208 if ( error )
1209 goto ioerror;
1210 continue;
1211 }
1212 /* or, lacking hw_if_ext ... */
1213 msglen = MB_IDX_LEN(*idx_cur);
1214 DPRINTFN(7,("midi_poll_out: %p <- %#02x\n",
1215 sc->hw_hdl, *buf_cur));
1216 error = sc->hw_if->output(sc->hw_hdl, *buf_cur);
1217 if ( error )
1218 goto ioerror;
1219 ++ buf_cur;
1220 MIDI_BUF_WRAP(buf);
1221 -- msglen;
1222 if ( msglen )
1223 *idx_cur = PACK_MB_IDX(MB_IDX_CAT(*idx_cur),
1224 msglen);
1225 else {
1226 ++ idx_cur;
1227 MIDI_BUF_WRAP(idx);
1228 }
1229 }
1230 KASSERT(buf_cur == buf_lim);
1231 MIDI_OUT_LOCK(sc,s);
1232 MIDI_BUF_CONSUMER_WBACK(mb,idx);
1233 MIDI_BUF_CONSUMER_WBACK(mb,buf);
1234 MIDI_BUF_CONSUMER_REFRESH(mb,idx); /* any more to transmit? */
1235 MIDI_BUF_CONSUMER_REFRESH(mb,buf);
1236 if ( idx_lim == idx_cur )
1237 break; /* still holding lock */
1238 MIDI_OUT_UNLOCK(sc,s);
1239 }
1240 goto disarm; /* lock held */
1241
1242 ioerror:
1243 #if defined(AUDIO_DEBUG) || defined(DIAGNOSTIC)
1244 aprint_error_dev(sc->dev, "midi_poll_output error %d\n", error);
1245 #endif
1246 MIDI_OUT_LOCK(sc,s);
1247 MIDI_BUF_CONSUMER_WBACK(mb,idx);
1248 MIDI_BUF_CONSUMER_WBACK(mb,buf);
1249
1250 disarm:
1251 sc->pbus = 0;
1252 callout_schedule(&sc->xmt_asense_co, MIDI_XMT_ASENSE_PERIOD);
1253 MIDI_OUT_UNLOCK(sc,s);
1254 return error;
1255 }
1256
1257 /*
1258 * The interrupt flavor acquires spl and lock once and releases at the end,
1259 * as it expects to write only one byte or message. The interface convention
1260 * is that if hw_if->output returns 0, it has initiated transmission and the
1261 * completion interrupt WILL be forthcoming; if it has not returned 0, NO
1262 * interrupt will be forthcoming, and if it returns EINPROGRESS it wants
1263 * another byte right away.
1264 */
1265 int
1266 midi_intr_out(struct midi_softc *sc)
1267 {
1268 struct midi_buffer *mb = &sc->outbuf;
1269 int error;
1270 int msglen;
1271 int s;
1272 MIDI_BUF_DECLARE(idx);
1273 MIDI_BUF_DECLARE(buf);
1274 int armed = 0;
1275
1276 error = 0;
1277
1278 MIDI_OUT_LOCK(sc,s);
1279 MIDI_BUF_CONSUMER_INIT(mb,idx);
1280 MIDI_BUF_CONSUMER_INIT(mb,buf);
1281
1282 while ( idx_cur != idx_lim ) {
1283 if ( sc->hw_if_ext ) {
1284 error = midi_msg_out(sc, &idx_cur, &idx_lim,
1285 &buf_cur, &buf_lim);
1286 if ( !error ) /* no EINPROGRESS from extended hw_if */
1287 armed = 1;
1288 break;
1289 }
1290 /* or, lacking hw_if_ext ... */
1291 msglen = MB_IDX_LEN(*idx_cur);
1292 error = sc->hw_if->output(sc->hw_hdl, *buf_cur);
1293 if ( error && error != EINPROGRESS )
1294 break;
1295 ++ buf_cur;
1296 MIDI_BUF_WRAP(buf);
1297 -- msglen;
1298 if ( msglen )
1299 *idx_cur = PACK_MB_IDX(MB_IDX_CAT(*idx_cur),msglen);
1300 else {
1301 ++ idx_cur;
1302 MIDI_BUF_WRAP(idx);
1303 }
1304 if ( !error ) {
1305 armed = 1;
1306 break;
1307 }
1308 }
1309 MIDI_BUF_CONSUMER_WBACK(mb,idx);
1310 MIDI_BUF_CONSUMER_WBACK(mb,buf);
1311 if ( !armed ) {
1312 sc->pbus = 0;
1313 callout_schedule(&sc->xmt_asense_co, MIDI_XMT_ASENSE_PERIOD);
1314 }
1315 MIDI_OUT_UNLOCK(sc,s);
1316 softint_schedule(sc->sih_wr);
1317
1318 #if defined(AUDIO_DEBUG) || defined(DIAGNOSTIC)
1319 if ( error )
1320 aprint_error_dev(sc->dev, "midi_intr_output error %d\n",
1321 error);
1322 #endif
1323 return error;
1324 }
1325
1326 int
1327 midi_start_output(struct midi_softc *sc)
1328 {
1329 if (sc->dying)
1330 return EIO;
1331
1332 if ( sc->props & MIDI_PROP_OUT_INTR )
1333 return midi_intr_out(sc);
1334 return midi_poll_out(sc);
1335 }
1336
1337 static int
1338 real_writebytes(struct midi_softc *sc, u_char *ibuf, int cc)
1339 {
1340 u_char *iend = ibuf + cc;
1341 struct midi_buffer *mb = &sc->outbuf;
1342 int arming = 0;
1343 int count;
1344 int s;
1345 int got;
1346 enum fst_form form;
1347 MIDI_BUF_DECLARE(idx);
1348 MIDI_BUF_DECLARE(buf);
1349
1350 /*
1351 * If the hardware uses the extended hw_if, pass it canonicalized
1352 * messages (or compressed ones if it specifically requests, using
1353 * VCOMP form so the bottom half can still pass the op and chan along);
1354 * if it does not, send it compressed messages (using COMPR form as
1355 * there is no need to preserve the status for the bottom half).
1356 */
1357 if ( NULL == sc->hw_if_ext )
1358 form = FST_COMPR;
1359 else if ( sc->hw_if_ext->compress )
1360 form = FST_VCOMP;
1361 else
1362 form = FST_CANON;
1363
1364 MIDI_OUT_LOCK(sc,s);
1365 MIDI_BUF_PRODUCER_INIT(mb,idx);
1366 MIDI_BUF_PRODUCER_INIT(mb,buf);
1367 MIDI_OUT_UNLOCK(sc,s);
1368
1369 if (sc->dying)
1370 return EIO;
1371
1372 while ( ibuf < iend ) {
1373 got = midi_fst(&sc->xmt, *ibuf, form);
1374 ++ ibuf;
1375 switch ( got ) {
1376 case FST_MORE:
1377 continue;
1378 case FST_ERR:
1379 case FST_HUH:
1380 return EPROTO;
1381 case FST_CHN:
1382 case FST_CHV: /* only occurs in VCOMP form */
1383 case FST_COM:
1384 case FST_RT:
1385 case FST_SYX:
1386 case FST_SXP:
1387 break; /* go add to buffer */
1388 #if defined(AUDIO_DEBUG) || defined(DIAGNOSTIC)
1389 default:
1390 printf("midi_wr: midi_fst returned %d?!\n", got);
1391 #endif
1392 }
1393 count = sc->xmt.end - sc->xmt.pos;
1394 if ( 0 == count ) /* can happen with stray 0xf7; see midi_fst */
1395 continue;
1396 /*
1397 * return EWOULDBLOCK if the data passed will not fit in
1398 * the buffer; the caller should have taken steps to avoid that.
1399 * If got==FST_SXP we lose the new status byte, but we're losing
1400 * anyway, so c'est la vie.
1401 */
1402 if ( idx_cur == idx_lim || count > buf_lim - buf_cur ) {
1403 MIDI_OUT_LOCK(sc,s);
1404 MIDI_BUF_PRODUCER_REFRESH(mb,idx); /* get the most */
1405 MIDI_BUF_PRODUCER_REFRESH(mb,buf); /* current facts */
1406 MIDI_OUT_UNLOCK(sc,s);
1407 if ( idx_cur == idx_lim || count > buf_lim - buf_cur )
1408 return EWOULDBLOCK; /* caller's problem */
1409 }
1410 *idx_cur++ = PACK_MB_IDX(got,count);
1411 MIDI_BUF_WRAP(idx);
1412 while ( count ) {
1413 *buf_cur++ = *(sc->xmt.pos)++;
1414 MIDI_BUF_WRAP(buf);
1415 -- count;
1416 }
1417 if ( FST_SXP == got )
1418 -- ibuf; /* again with same status byte */
1419 }
1420 MIDI_OUT_LOCK(sc,s);
1421 MIDI_BUF_PRODUCER_WBACK(mb,buf);
1422 MIDI_BUF_PRODUCER_WBACK(mb,idx);
1423 /*
1424 * If the output transfer is not already busy, and there is a message
1425 * buffered, mark it busy, stop the Active Sense callout (what if we're
1426 * too late and it's expired already? No big deal, an extra Active Sense
1427 * never hurt anybody) and start the output transfer once we're out of
1428 * the critical section (pbus==1 will stop anyone else doing the same).
1429 */
1430 MIDI_BUF_CONSUMER_INIT(mb,idx); /* check what consumer's got to read */
1431 if ( !sc->pbus && idx_cur < idx_lim ) {
1432 sc->pbus = 1;
1433 callout_stop(&sc->xmt_asense_co);
1434 arming = 1;
1435 }
1436 MIDI_OUT_UNLOCK(sc,s);
1437 return arming ? midi_start_output(sc) : 0;
1438 }
1439
1440 int
1441 midiwrite(dev_t dev, struct uio *uio, int ioflag)
1442 {
1443 struct midi_softc *sc =
1444 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
1445 struct midi_buffer *mb = &sc->outbuf;
1446 int error;
1447 u_char inp[256];
1448 int s;
1449 MIDI_BUF_DECLARE(idx);
1450 MIDI_BUF_DECLARE(buf);
1451 size_t idxspace;
1452 size_t bufspace;
1453 size_t xfrcount;
1454 int pollout = 0;
1455
1456 DPRINTFN(6, ("midiwrite: %p, unit=%d, count=%lu\n", sc, unit,
1457 (unsigned long)uio->uio_resid));
1458
1459 if (sc->dying)
1460 return EIO;
1461
1462 error = 0;
1463 while (uio->uio_resid > 0 && !error) {
1464
1465 /*
1466 * block if necessary for the minimum buffer space to guarantee
1467 * we can write something.
1468 */
1469 MIDI_OUT_LOCK(sc,s);
1470 MIDI_BUF_PRODUCER_INIT(mb,idx); /* init can't go above loop; */
1471 MIDI_BUF_PRODUCER_INIT(mb,buf); /* real_writebytes moves cur */
1472 for ( ;; ) {
1473 idxspace = MIDI_BUF_PRODUCER_REFRESH(mb,idx) - idx_cur;
1474 bufspace = MIDI_BUF_PRODUCER_REFRESH(mb,buf) - buf_cur;
1475 if ( idxspace >= 1 && bufspace >= 3 && !pollout )
1476 break;
1477 DPRINTFN(8,("midi_write: sleep idx=%zd buf=%zd\n",
1478 idxspace, bufspace));
1479 if (ioflag & IO_NDELAY) {
1480 error = EWOULDBLOCK;
1481 /*
1482 * If some amount has already been transferred,
1483 * the common syscall code will automagically
1484 * convert this to success with a short count.
1485 */
1486 goto locked_exit;
1487 }
1488 if ( pollout ) {
1489 preempt(); /* see midi_poll_output */
1490 pollout = 0;
1491 } else
1492 error = midi_sleep(&sc->wchan, "mid wr",
1493 &sc->out_lock);
1494 if (error)
1495 /*
1496 * Similarly, the common code will handle
1497 * EINTR and ERESTART properly here, changing to
1498 * a short count if something transferred.
1499 */
1500 goto locked_exit;
1501 }
1502 MIDI_OUT_UNLOCK(sc,s);
1503
1504 /*
1505 * The number of bytes we can safely extract from the uio
1506 * depends on the available idx and buf space. Worst case,
1507 * every byte is a message so 1 idx is required per byte.
1508 * Worst case, the first byte completes a 3-byte msg in prior
1509 * state, and every subsequent byte is a Program Change or
1510 * Channel Pressure msg with running status and expands to 2
1511 * bytes, so the buf space reqd is 3+2(n-1) or 2n+1. So limit
1512 * the transfer to the min of idxspace and (bufspace-1)>>1.
1513 */
1514 xfrcount = (bufspace - 1) >> 1;
1515 if ( xfrcount > idxspace )
1516 xfrcount = idxspace;
1517 if ( xfrcount > sizeof inp )
1518 xfrcount = sizeof inp;
1519 if ( xfrcount > uio->uio_resid )
1520 xfrcount = uio->uio_resid;
1521
1522 error = uiomove(inp, xfrcount, uio);
1523 #ifdef MIDI_DEBUG
1524 if (error)
1525 printf("midi_write:(1) uiomove failed %d; "
1526 "xfrcount=%d inp=%p\n",
1527 error, xfrcount, inp);
1528 #endif
1529 if ( error )
1530 break;
1531
1532 /*
1533 * The number of bytes we extracted being calculated to
1534 * definitely fit in the buffer even with canonicalization,
1535 * there is no excuse for real_writebytes to return EWOULDBLOCK.
1536 */
1537 error = real_writebytes(sc, inp, xfrcount);
1538 KASSERT(error != EWOULDBLOCK);
1539
1540 if ( error )
1541 break;
1542 /*
1543 * If this is a polling device and we just sent a buffer, let's
1544 * not send another without giving some other process a chance.
1545 */
1546 if ( ! (sc->props & MIDI_PROP_OUT_INTR) )
1547 pollout = 1;
1548 DPRINTFN(8,("midiwrite: uio_resid now %zu, props=%d\n",
1549 uio->uio_resid, sc->props));
1550 }
1551 return error;
1552
1553 locked_exit:
1554 MIDI_OUT_UNLOCK(sc,s);
1555 return error;
1556 }
1557
1558 /*
1559 * This write routine is only called from sequencer code and expects
1560 * a write that is smaller than the MIDI buffer.
1561 */
1562 int
1563 midi_writebytes(int unit, u_char *bf, int cc)
1564 {
1565 struct midi_softc *sc =
1566 device_private(device_lookup(&midi_cd, unit));
1567
1568 DPRINTFN(7, ("midi_writebytes: %p, unit=%d, cc=%d %#02x %#02x %#02x\n",
1569 sc, unit, cc, bf[0], bf[1], bf[2]));
1570 return real_writebytes(sc, bf, cc);
1571 }
1572
1573 int
1574 midiioctl(dev_t dev, u_long cmd, void *addr, int flag, struct lwp *l)
1575 {
1576 struct midi_softc *sc =
1577 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
1578 const struct midi_hw_if *hw = sc->hw_if;
1579 int error;
1580 int s;
1581 MIDI_BUF_DECLARE(buf);
1582
1583 DPRINTFN(5,("midiioctl: %p cmd=0x%08lx\n", sc, cmd));
1584
1585 if (sc->dying)
1586 return EIO;
1587
1588 error = 0;
1589 switch (cmd) {
1590 case FIONBIO:
1591 /* All handled in the upper FS layer. */
1592 break;
1593
1594 case FIONREAD:
1595 /*
1596 * This code relies on the current implementation of midi_in
1597 * always updating buf and idx together in a critical section,
1598 * so buf always ends at a message boundary. Document this
1599 * ioctl as always returning a value such that the last message
1600 * included is complete (SysEx the only exception), and then
1601 * make sure the implementation doesn't regress. NB that
1602 * means if this ioctl returns n and the proc then issues a
1603 * read of n, n bytes will be read, but if the proc issues a
1604 * read of m < n, fewer than m bytes may be read to ensure the
1605 * read ends at a message boundary.
1606 */
1607 MIDI_IN_LOCK(sc,s);
1608 MIDI_BUF_CONSUMER_INIT(&sc->inbuf,buf);
1609 MIDI_IN_UNLOCK(sc,s);
1610 *(int *)addr = buf_lim - buf_cur;
1611 break;
1612
1613 case FIOASYNC:
1614 if (*(int *)addr) {
1615 if (sc->async)
1616 return EBUSY;
1617 sc->async = l->l_proc;
1618 DPRINTFN(5,("midi_ioctl: FIOASYNC %p\n", l->l_proc));
1619 } else
1620 sc->async = 0;
1621 break;
1622
1623 #if 0
1624 case MIDI_PRETIME:
1625 /* XXX OSS
1626 * This should set up a read timeout, but that's
1627 * why we have poll(), so there's nothing yet. */
1628 error = EINVAL;
1629 break;
1630 #endif
1631
1632 #ifdef MIDI_SAVE
1633 case MIDI_GETSAVE:
1634 error = copyout(&midisave, *(void **)addr, sizeof midisave);
1635 break;
1636 #endif
1637
1638 default:
1639 if (hw->ioctl)
1640 error = hw->ioctl(sc->hw_hdl, cmd, addr, flag, l);
1641 else
1642 error = EINVAL;
1643 break;
1644 }
1645 return error;
1646 }
1647
1648 int
1649 midipoll(dev_t dev, int events, struct lwp *l)
1650 {
1651 struct midi_softc *sc =
1652 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
1653 int revents = 0;
1654 int s;
1655 MIDI_BUF_DECLARE(idx);
1656 MIDI_BUF_DECLARE(buf);
1657
1658 DPRINTFN(6,("midipoll: %p events=0x%x\n", sc, events));
1659
1660 if (sc->dying)
1661 return POLLHUP;
1662
1663 s = splaudio();
1664
1665 if ((sc->flags&FREAD) && (events & (POLLIN | POLLRDNORM))) {
1666 simple_lock(&sc->in_lock);
1667 MIDI_BUF_CONSUMER_INIT(&sc->inbuf,idx);
1668 if (idx_cur < idx_lim)
1669 revents |= events & (POLLIN | POLLRDNORM);
1670 else
1671 selrecord(l, &sc->rsel);
1672 simple_unlock(&sc->in_lock);
1673 }
1674
1675 if ((sc->flags&FWRITE) && (events & (POLLOUT | POLLWRNORM))) {
1676 simple_lock(&sc->out_lock);
1677 MIDI_BUF_PRODUCER_INIT(&sc->outbuf,idx);
1678 MIDI_BUF_PRODUCER_INIT(&sc->outbuf,buf);
1679 if ( idx_lim - idx_cur >= 1 && buf_lim - buf_cur >= 3 )
1680 revents |= events & (POLLOUT | POLLWRNORM);
1681 else
1682 selrecord(l, &sc->wsel);
1683 simple_unlock(&sc->out_lock);
1684 }
1685
1686 splx(s);
1687 return revents;
1688 }
1689
1690 static void
1691 filt_midirdetach(struct knote *kn)
1692 {
1693 struct midi_softc *sc = kn->kn_hook;
1694 int s;
1695
1696 s = splaudio();
1697 SLIST_REMOVE(&sc->rsel.sel_klist, kn, knote, kn_selnext);
1698 splx(s);
1699 }
1700
1701 static int
1702 filt_midiread(struct knote *kn, long hint)
1703 {
1704 struct midi_softc *sc = kn->kn_hook;
1705 int s;
1706 MIDI_BUF_DECLARE(buf);
1707
1708 /* XXXLUKEM (thorpej): please make sure this is correct. */
1709
1710 MIDI_IN_LOCK(sc,s);
1711 MIDI_BUF_CONSUMER_INIT(&sc->inbuf,buf);
1712 kn->kn_data = buf_lim - buf_cur;
1713 MIDI_IN_UNLOCK(sc,s);
1714 return (kn->kn_data > 0);
1715 }
1716
1717 static const struct filterops midiread_filtops =
1718 { 1, NULL, filt_midirdetach, filt_midiread };
1719
1720 static void
1721 filt_midiwdetach(struct knote *kn)
1722 {
1723 struct midi_softc *sc = kn->kn_hook;
1724 int s;
1725
1726 s = splaudio();
1727 SLIST_REMOVE(&sc->wsel.sel_klist, kn, knote, kn_selnext);
1728 splx(s);
1729 }
1730
1731 static int
1732 filt_midiwrite(struct knote *kn, long hint)
1733 {
1734 struct midi_softc *sc = kn->kn_hook;
1735 int s;
1736 MIDI_BUF_DECLARE(idx);
1737 MIDI_BUF_DECLARE(buf);
1738
1739 /* XXXLUKEM (thorpej): please make sure this is correct. */
1740
1741 MIDI_OUT_LOCK(sc,s);
1742 MIDI_BUF_PRODUCER_INIT(&sc->outbuf,idx);
1743 MIDI_BUF_PRODUCER_INIT(&sc->outbuf,buf);
1744 kn->kn_data = ((buf_lim - buf_cur)-1)>>1;
1745 if ( kn->kn_data > idx_lim - idx_cur )
1746 kn->kn_data = idx_lim - idx_cur;
1747 MIDI_OUT_UNLOCK(sc,s);
1748 return (kn->kn_data > 0);
1749 }
1750
1751 static const struct filterops midiwrite_filtops =
1752 { 1, NULL, filt_midiwdetach, filt_midiwrite };
1753
1754 int
1755 midikqfilter(dev_t dev, struct knote *kn)
1756 {
1757 struct midi_softc *sc =
1758 device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
1759 struct klist *klist;
1760 int s;
1761
1762 switch (kn->kn_filter) {
1763 case EVFILT_READ:
1764 klist = &sc->rsel.sel_klist;
1765 kn->kn_fop = &midiread_filtops;
1766 break;
1767
1768 case EVFILT_WRITE:
1769 klist = &sc->wsel.sel_klist;
1770 kn->kn_fop = &midiwrite_filtops;
1771 break;
1772
1773 default:
1774 return (EINVAL);
1775 }
1776
1777 kn->kn_hook = sc;
1778
1779 s = splaudio();
1780 SLIST_INSERT_HEAD(klist, kn, kn_selnext);
1781 splx(s);
1782
1783 return (0);
1784 }
1785
1786 void
1787 midi_getinfo(dev_t dev, struct midi_info *mi)
1788 {
1789 struct midi_softc *sc;
1790
1791 sc = device_private(device_lookup(&midi_cd, MIDIUNIT(dev)));
1792 if (sc == NULL)
1793 return;
1794 if (sc->dying)
1795 return;
1796
1797 sc->hw_if->getinfo(sc->hw_hdl, mi);
1798 }
1799
1800 #elif NMIDIBUS > 0 /* but NMIDI == 0 */
1801
1802 void midi_register_hw_if_ext(struct midi_hw_if_ext *exthw) { /* stub */
1803 }
1804
1805 #endif /* NMIDI > 0 */
1806
1807 #if NMIDI > 0 || NMIDIBUS > 0
1808
1809 int audioprint(void *, const char *);
1810
1811 device_t
1812 midi_attach_mi(const struct midi_hw_if *mhwp, void *hdlp, device_t dev)
1813 {
1814 struct audio_attach_args arg;
1815
1816 #ifdef DIAGNOSTIC
1817 if (mhwp == NULL) {
1818 aprint_error("midi_attach_mi: NULL\n");
1819 return (0);
1820 }
1821 #endif
1822 arg.type = AUDIODEV_TYPE_MIDI;
1823 arg.hwif = mhwp;
1824 arg.hdl = hdlp;
1825 return (config_found(dev, &arg, audioprint));
1826 }
1827
1828 #endif /* NMIDI > 0 || NMIDIBUS > 0 */
1829