1 1.25 isaki /* $NetBSD: midisyn.c,v 1.25 2019/05/08 13:40:17 isaki Exp $ */ 2 1.1 augustss 3 1.1 augustss /* 4 1.23 jmcneill * Copyright (c) 1998, 2008 The NetBSD Foundation, Inc. 5 1.1 augustss * All rights reserved. 6 1.1 augustss * 7 1.5 augustss * This code is derived from software contributed to The NetBSD Foundation 8 1.23 jmcneill * by Lennart Augustsson (augustss (at) NetBSD.org), and by Andrew Doran. 9 1.1 augustss * 10 1.1 augustss * Redistribution and use in source and binary forms, with or without 11 1.1 augustss * modification, are permitted provided that the following conditions 12 1.1 augustss * are met: 13 1.1 augustss * 1. Redistributions of source code must retain the above copyright 14 1.1 augustss * notice, this list of conditions and the following disclaimer. 15 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 augustss * notice, this list of conditions and the following disclaimer in the 17 1.1 augustss * documentation and/or other materials provided with the distribution. 18 1.1 augustss * 19 1.1 augustss * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 1.1 augustss * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 1.1 augustss * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 1.1 augustss * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 1.1 augustss * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 1.1 augustss * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 1.1 augustss * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 1.1 augustss * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 1.1 augustss * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 1.1 augustss * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 1.1 augustss * POSSIBILITY OF SUCH DAMAGE. 30 1.1 augustss */ 31 1.9 lukem 32 1.9 lukem #include <sys/cdefs.h> 33 1.25 isaki __KERNEL_RCSID(0, "$NetBSD: midisyn.c,v 1.25 2019/05/08 13:40:17 isaki Exp $"); 34 1.1 augustss 35 1.1 augustss #include <sys/param.h> 36 1.1 augustss #include <sys/ioctl.h> 37 1.1 augustss #include <sys/fcntl.h> 38 1.1 augustss #include <sys/vnode.h> 39 1.1 augustss #include <sys/select.h> 40 1.1 augustss #include <sys/proc.h> 41 1.23 jmcneill #include <sys/kmem.h> 42 1.1 augustss #include <sys/systm.h> 43 1.1 augustss #include <sys/syslog.h> 44 1.1 augustss #include <sys/kernel.h> 45 1.1 augustss #include <sys/audioio.h> 46 1.1 augustss #include <sys/midiio.h> 47 1.1 augustss #include <sys/device.h> 48 1.1 augustss 49 1.25 isaki #include <dev/audio/audio_if.h> 50 1.3 augustss #include <dev/midi_if.h> 51 1.1 augustss #include <dev/midivar.h> 52 1.1 augustss #include <dev/midisynvar.h> 53 1.1 augustss 54 1.1 augustss #ifdef AUDIO_DEBUG 55 1.1 augustss #define DPRINTF(x) if (midisyndebug) printf x 56 1.1 augustss #define DPRINTFN(n,x) if (midisyndebug >= (n)) printf x 57 1.1 augustss int midisyndebug = 0; 58 1.1 augustss #else 59 1.1 augustss #define DPRINTF(x) 60 1.1 augustss #define DPRINTFN(n,x) 61 1.1 augustss #endif 62 1.1 augustss 63 1.23 jmcneill static int midisyn_findvoice(midisyn *, int, int); 64 1.23 jmcneill static void midisyn_freevoice(midisyn *, int); 65 1.23 jmcneill static uint_fast16_t midisyn_allocvoice(midisyn *, uint_fast8_t, uint_fast8_t); 66 1.18 chap static void midisyn_attackv_vel(midisyn *, uint_fast16_t, midipitch_t, 67 1.18 chap int16_t, uint_fast8_t); 68 1.18 chap 69 1.18 chap static midictl_notify midisyn_notify; 70 1.18 chap 71 1.18 chap static midipitch_t midisyn_clamp_pitch(midipitch_t); 72 1.18 chap static int16_t midisyn_adj_level(midisyn *, uint_fast8_t); 73 1.18 chap static midipitch_t midisyn_adj_pitch(midisyn *, uint_fast8_t); 74 1.18 chap static void midisyn_chan_releasev(midisyn *, uint_fast8_t, uint_fast8_t); 75 1.18 chap static void midisyn_upd_level(midisyn *, uint_fast8_t); 76 1.18 chap static void midisyn_upd_pitch(midisyn *, uint_fast8_t); 77 1.8 augustss 78 1.23 jmcneill static int midisyn_open(void *, int, 79 1.23 jmcneill void (*iintr)(void *, int), 80 1.23 jmcneill void (*ointr)(void *), void *arg); 81 1.23 jmcneill static void midisyn_close(void *); 82 1.23 jmcneill static int midisyn_sysrt(void *, int); 83 1.23 jmcneill static void midisyn_getinfo(void *, struct midi_info *); 84 1.23 jmcneill static int midisyn_ioctl(void *, u_long, void *, int, struct lwp *); 85 1.23 jmcneill static void midisyn_get_locks(void *, kmutex_t **, kmutex_t **); 86 1.1 augustss 87 1.14 yamt const struct midi_hw_if midisyn_hw_if = { 88 1.1 augustss midisyn_open, 89 1.1 augustss midisyn_close, 90 1.18 chap midisyn_sysrt, 91 1.1 augustss midisyn_getinfo, 92 1.1 augustss midisyn_ioctl, 93 1.23 jmcneill midisyn_get_locks, 94 1.1 augustss }; 95 1.1 augustss 96 1.23 jmcneill static int midisyn_channelmsg(void *, int, int, u_char *, int); 97 1.23 jmcneill static int midisyn_commonmsg(void *, int, u_char *, int); 98 1.23 jmcneill static int midisyn_sysex(void *, u_char *, int); 99 1.18 chap 100 1.18 chap struct midi_hw_if_ext midisyn_hw_if_ext = { 101 1.18 chap .channel = midisyn_channelmsg, 102 1.18 chap .common = midisyn_commonmsg, 103 1.18 chap .sysex = midisyn_sysex, 104 1.18 chap }; 105 1.18 chap 106 1.18 chap struct channelstate { /* dyamically allocated in open() on account of size */ 107 1.18 chap /* volume state components in centibels; just sum for overall level */ 108 1.18 chap int16_t volume; 109 1.18 chap int16_t expression; 110 1.18 chap /* pitch state components in midipitch units; sum for overall effect */ 111 1.18 chap midipitch_t bend; 112 1.18 chap midipitch_t tuning_fine; 113 1.18 chap midipitch_t tuning_coarse; 114 1.18 chap /* used by bend handlers */ 115 1.18 chap int16_t bendraw; 116 1.18 chap int16_t pendingreset; 117 1.18 chap /* rearrange as more controls supported - 16 bits should last for a while */ 118 1.18 chap #define PEND_VOL 1 119 1.18 chap #define PEND_EXP 2 120 1.18 chap #define PEND_LEVEL (PEND_VOL|PEND_EXP) 121 1.18 chap #define PEND_PBS 4 122 1.18 chap #define PEND_TNF 8 123 1.18 chap #define PEND_TNC 16 124 1.18 chap #define PEND_PITCH (PEND_PBS|PEND_TNF|PEND_TNC) 125 1.18 chap #define PEND_ALL (PEND_LEVEL|PEND_PITCH) 126 1.18 chap }; 127 1.1 augustss 128 1.23 jmcneill static int 129 1.20 christos midisyn_open(void *addr, int flags, void (*iintr)(void *, int), 130 1.20 christos void (*ointr)(void *), void *arg) 131 1.1 augustss { 132 1.1 augustss midisyn *ms = addr; 133 1.23 jmcneill int rslt, error; 134 1.18 chap uint_fast8_t chan; 135 1.1 augustss 136 1.24 plunky KASSERT(ms->lock != NULL); 137 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 138 1.1 augustss DPRINTF(("midisyn_open: ms=%p ms->mets=%p\n", ms, ms->mets)); 139 1.23 jmcneill 140 1.23 jmcneill mutex_exit(ms->lock); 141 1.23 jmcneill ms->ctl.lock = ms->lock; 142 1.23 jmcneill error = midictl_open(&ms->ctl); 143 1.23 jmcneill if (error != 0) { 144 1.23 jmcneill mutex_enter(ms->lock); 145 1.23 jmcneill return error; 146 1.23 jmcneill } 147 1.23 jmcneill ms->chnstate = kmem_alloc(MIDI_MAX_CHANS * sizeof(*ms->chnstate), 148 1.23 jmcneill KM_SLEEP); /* init'd by RESET below */ 149 1.23 jmcneill mutex_enter(ms->lock); 150 1.18 chap 151 1.18 chap rslt = 0; 152 1.1 augustss if (ms->mets->open) 153 1.18 chap rslt = (ms->mets->open(ms, flags)); 154 1.18 chap 155 1.18 chap /* 156 1.18 chap * Make the right initial things happen by faking receipt of RESET on 157 1.18 chap * all channels. The hw driver's ctlnotice() will be called in turn. 158 1.18 chap */ 159 1.18 chap for ( chan = 0 ; chan < MIDI_MAX_CHANS ; ++ chan ) 160 1.18 chap midisyn_notify(ms, MIDICTL_RESET, chan, 0); 161 1.18 chap 162 1.18 chap return rslt; 163 1.1 augustss } 164 1.1 augustss 165 1.23 jmcneill static void 166 1.8 augustss midisyn_close(void *addr) 167 1.1 augustss { 168 1.1 augustss midisyn *ms = addr; 169 1.4 mycroft struct midisyn_methods *fs; 170 1.18 chap int chan; 171 1.1 augustss 172 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 173 1.1 augustss DPRINTF(("midisyn_close: ms=%p ms->mets=%p\n", ms, ms->mets)); 174 1.4 mycroft fs = ms->mets; 175 1.18 chap 176 1.18 chap for (chan = 0; chan < MIDI_MAX_CHANS; chan++) 177 1.18 chap midisyn_notify(ms, MIDICTL_SOUND_OFF, chan, 0); 178 1.18 chap 179 1.4 mycroft if (fs->close) 180 1.4 mycroft fs->close(ms); 181 1.18 chap 182 1.23 jmcneill mutex_exit(ms->lock); 183 1.18 chap midictl_close(&ms->ctl); 184 1.23 jmcneill kmem_free(ms->chnstate, MIDI_MAX_CHANS * sizeof(*ms->chnstate)); 185 1.23 jmcneill mutex_enter(ms->lock); 186 1.1 augustss } 187 1.1 augustss 188 1.23 jmcneill static void 189 1.8 augustss midisyn_getinfo(void *addr, struct midi_info *mi) 190 1.1 augustss { 191 1.1 augustss midisyn *ms = addr; 192 1.1 augustss 193 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 194 1.23 jmcneill 195 1.1 augustss mi->name = ms->name; 196 1.18 chap /* 197 1.18 chap * I was going to add a property here to suppress midi(4)'s warning 198 1.18 chap * about an output device that uses no transmit interrupt, on the 199 1.18 chap * assumption that as an onboard synth we handle "output" internally 200 1.18 chap * with nothing like the 320 us per byte busy wait of a dumb UART. 201 1.18 chap * Then I noticed that opl (at least as currently implemented) seems 202 1.18 chap * to need 40 us busy wait to set each register on an OPL2, and sets 203 1.18 chap * about 21 registers for every note-on. (Half of that is patch loading 204 1.18 chap * and could probably be reduced by different management of voices and 205 1.18 chap * patches.) For now I won't bother suppressing that warning.... 206 1.18 chap */ 207 1.1 augustss mi->props = 0; 208 1.18 chap 209 1.18 chap midi_register_hw_if_ext(&midisyn_hw_if_ext); 210 1.1 augustss } 211 1.1 augustss 212 1.23 jmcneill static void 213 1.23 jmcneill midisyn_get_locks(void *addr, kmutex_t **intr, kmutex_t **proc) 214 1.23 jmcneill { 215 1.23 jmcneill midisyn *ms = addr; 216 1.23 jmcneill 217 1.23 jmcneill *intr = ms->lock; 218 1.23 jmcneill *proc = NULL; 219 1.23 jmcneill } 220 1.23 jmcneill 221 1.23 jmcneill static int 222 1.21 christos midisyn_ioctl(void *maddr, u_long cmd, void *addr, int flag, struct lwp *l) 223 1.1 augustss { 224 1.1 augustss midisyn *ms = maddr; 225 1.1 augustss 226 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 227 1.23 jmcneill 228 1.1 augustss if (ms->mets->ioctl) 229 1.16 christos return (ms->mets->ioctl(ms, cmd, addr, flag, l)); 230 1.1 augustss else 231 1.1 augustss return (EINVAL); 232 1.1 augustss } 233 1.1 augustss 234 1.23 jmcneill static int 235 1.8 augustss midisyn_findvoice(midisyn *ms, int chan, int note) 236 1.1 augustss { 237 1.1 augustss u_int cn; 238 1.1 augustss int v; 239 1.1 augustss 240 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 241 1.23 jmcneill 242 1.3 augustss cn = MS_CHANNOTE(chan, note); 243 1.1 augustss for (v = 0; v < ms->nvoice; v++) 244 1.3 augustss if (ms->voices[v].chan_note == cn && ms->voices[v].inuse) 245 1.1 augustss return (v); 246 1.1 augustss return (-1); 247 1.1 augustss } 248 1.1 augustss 249 1.1 augustss void 250 1.24 plunky midisyn_init(midisyn *ms) 251 1.1 augustss { 252 1.23 jmcneill 253 1.24 plunky KASSERT(ms->lock != NULL); 254 1.23 jmcneill 255 1.18 chap /* 256 1.18 chap * XXX there should be a way for this function to indicate failure 257 1.18 chap * (other than panic) if some preconditions aren't met, for example 258 1.18 chap * if some nonoptional methods are missing. 259 1.18 chap */ 260 1.18 chap if (ms->mets->allocv == 0) { 261 1.23 jmcneill ms->voices = kmem_zalloc(ms->nvoice * sizeof(struct voice), 262 1.23 jmcneill KM_SLEEP); 263 1.1 augustss ms->seqno = 1; 264 1.18 chap ms->mets->allocv = midisyn_allocvoice; 265 1.1 augustss } 266 1.18 chap 267 1.18 chap if (ms->mets->attackv_vel == 0 && ms->mets->attackv != 0) 268 1.18 chap ms->mets->attackv_vel = midisyn_attackv_vel; 269 1.18 chap 270 1.18 chap ms->ctl = (midictl) { 271 1.18 chap .base_channel = 16, 272 1.18 chap .cookie = ms, 273 1.18 chap .notify = midisyn_notify 274 1.18 chap }; 275 1.18 chap 276 1.24 plunky DPRINTF(("midisyn_init: ms=%p\n", ms)); 277 1.1 augustss } 278 1.1 augustss 279 1.23 jmcneill static void 280 1.8 augustss midisyn_freevoice(midisyn *ms, int voice) 281 1.1 augustss { 282 1.23 jmcneill 283 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 284 1.23 jmcneill 285 1.18 chap if (ms->mets->allocv != midisyn_allocvoice) 286 1.1 augustss return; 287 1.3 augustss ms->voices[voice].inuse = 0; 288 1.1 augustss } 289 1.1 augustss 290 1.23 jmcneill static uint_fast16_t 291 1.18 chap midisyn_allocvoice(midisyn *ms, uint_fast8_t chan, uint_fast8_t note) 292 1.1 augustss { 293 1.1 augustss int bestv, v; 294 1.1 augustss u_int bestseq, s; 295 1.1 augustss 296 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 297 1.23 jmcneill 298 1.1 augustss /* Find a free voice, or if no free voice is found the oldest. */ 299 1.1 augustss bestv = 0; 300 1.3 augustss bestseq = ms->voices[0].seqno + (ms->voices[0].inuse ? 0x40000000 : 0); 301 1.1 augustss for (v = 1; v < ms->nvoice; v++) { 302 1.1 augustss s = ms->voices[v].seqno; 303 1.3 augustss if (ms->voices[v].inuse) 304 1.3 augustss s += 0x40000000; 305 1.1 augustss if (s < bestseq) { 306 1.1 augustss bestseq = s; 307 1.1 augustss bestv = v; 308 1.1 augustss } 309 1.1 augustss } 310 1.3 augustss DPRINTFN(10,("midisyn_allocvoice: v=%d seq=%d cn=%x inuse=%d\n", 311 1.15 perry bestv, ms->voices[bestv].seqno, 312 1.3 augustss ms->voices[bestv].chan_note, 313 1.3 augustss ms->voices[bestv].inuse)); 314 1.3 augustss #ifdef AUDIO_DEBUG 315 1.3 augustss if (ms->voices[bestv].inuse) 316 1.15 perry DPRINTFN(1,("midisyn_allocvoice: steal %x\n", 317 1.3 augustss ms->voices[bestv].chan_note)); 318 1.3 augustss #endif 319 1.3 augustss ms->voices[bestv].chan_note = MS_CHANNOTE(chan, note); 320 1.1 augustss ms->voices[bestv].seqno = ms->seqno++; 321 1.3 augustss ms->voices[bestv].inuse = 1; 322 1.1 augustss return (bestv); 323 1.1 augustss } 324 1.1 augustss 325 1.18 chap /* dummy attackv_vel that just adds vel into level for simple drivers */ 326 1.18 chap static void 327 1.18 chap midisyn_attackv_vel(midisyn *ms, uint_fast16_t voice, midipitch_t mp, 328 1.18 chap int16_t level_cB, uint_fast8_t vel) 329 1.18 chap { 330 1.23 jmcneill 331 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 332 1.23 jmcneill 333 1.18 chap ms->voices[voice].velcB = midisyn_vol2cB((uint_fast16_t)vel << 7); 334 1.18 chap ms->mets->attackv(ms, voice, mp, level_cB + ms->voices[voice].velcB); 335 1.18 chap } 336 1.18 chap 337 1.23 jmcneill static int 338 1.20 christos midisyn_sysrt(void *addr, int b) 339 1.18 chap { 340 1.23 jmcneill 341 1.18 chap return 0; 342 1.18 chap } 343 1.18 chap 344 1.23 jmcneill static int 345 1.23 jmcneill midisyn_channelmsg(void *addr, int status, int chan, u_char *buf, int len) 346 1.1 augustss { 347 1.1 augustss midisyn *ms = addr; 348 1.1 augustss int voice = 0; /* initialize to keep gcc quiet */ 349 1.1 augustss struct midisyn_methods *fs; 350 1.1 augustss 351 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 352 1.23 jmcneill 353 1.18 chap DPRINTF(("midisyn_channelmsg: ms=%p status=%#02x chan=%d\n", 354 1.18 chap ms, status, chan)); 355 1.1 augustss fs = ms->mets; 356 1.18 chap 357 1.18 chap switch (status) { 358 1.1 augustss case MIDI_NOTEOFF: 359 1.18 chap /* 360 1.18 chap * for a device that leaves voice allocation to us--and that's 361 1.18 chap * all of 'em at the moment--the voice and release velocity 362 1.18 chap * should be the only necessary arguments to noteoff. what use 363 1.18 chap * are they making of note? checking... None. Cool. 364 1.18 chap * IF there is ever a device added that does its own allocation, 365 1.18 chap * extend the interface; this findvoice won't be what to do... 366 1.18 chap */ 367 1.18 chap voice = midisyn_findvoice(ms, chan, buf[1]); 368 1.1 augustss if (voice >= 0) { 369 1.18 chap fs->releasev(ms, voice, buf[2]); 370 1.1 augustss midisyn_freevoice(ms, voice); 371 1.1 augustss } 372 1.1 augustss break; 373 1.1 augustss case MIDI_NOTEON: 374 1.18 chap /* 375 1.18 chap * what's called for here, given current drivers, is an i/f 376 1.18 chap * where midisyn computes a volume from vel*volume*expression* 377 1.18 chap * mastervolume and passes that result as a single arg. It can 378 1.18 chap * evolve later to support drivers that expose some of those 379 1.18 chap * bits separately (e.g. a driver could expose a mixer register 380 1.18 chap * on its sound card and use that for mastervolume). 381 1.18 chap */ 382 1.18 chap voice = fs->allocv(ms, chan, buf[1]); 383 1.18 chap ms->voices[voice].velcB = 0; /* assume driver handles vel */ 384 1.18 chap fs->attackv_vel(ms, voice, 385 1.18 chap midisyn_clamp_pitch(MIDIPITCH_FROM_KEY(buf[1]) + 386 1.18 chap midisyn_adj_pitch(ms, chan)), 387 1.18 chap midisyn_adj_level(ms,chan), buf[2]); 388 1.1 augustss break; 389 1.1 augustss case MIDI_KEY_PRESSURE: 390 1.18 chap /* 391 1.18 chap * unimplemented by the existing drivers. if we are doing 392 1.18 chap * voice allocation, find the voice that corresponds to this 393 1.18 chap * chan/note and define a method that passes the voice and 394 1.18 chap * pressure to the driver ... not the note, /it/ doesn't matter. 395 1.18 chap * For a driver that does its own allocation, a different 396 1.18 chap * method may be needed passing pressure, chan, note so it can 397 1.18 chap * find the right voice on its own. Be sure that whatever is 398 1.18 chap * done here is undone when midisyn_notify sees MIDICTL_RESET. 399 1.18 chap */ 400 1.1 augustss break; 401 1.1 augustss case MIDI_CTL_CHANGE: 402 1.18 chap midictl_change(&ms->ctl, chan, buf+1); 403 1.1 augustss break; 404 1.1 augustss case MIDI_PGM_CHANGE: 405 1.1 augustss if (fs->pgmchg) 406 1.18 chap fs->pgmchg(ms, chan, buf[1]); 407 1.1 augustss break; 408 1.1 augustss case MIDI_CHN_PRESSURE: 409 1.18 chap /* 410 1.18 chap * unimplemented by the existing drivers. if driver exposes no 411 1.18 chap * distinct method, can use KEY_PRESSURE method for each voice 412 1.18 chap * on channel. Be sure that whatever is 413 1.18 chap * done here is undone when midisyn_notify sees MIDICTL_RESET. 414 1.18 chap */ 415 1.1 augustss break; 416 1.1 augustss case MIDI_PITCH_BEND: 417 1.18 chap /* 418 1.18 chap * Will work for most drivers that simply render the midipitch 419 1.18 chap * as we pass it (but not cms, which chops all the bits after 420 1.18 chap * the note number and then computes its own pitch :( ). If the 421 1.18 chap * driver has a repitchv method for voices already sounding, so 422 1.18 chap * much the better. 423 1.18 chap * The bending logic lives in the handler for bend sensitivity, 424 1.18 chap * so fake a change to that to kick it off. 425 1.18 chap */ 426 1.18 chap ms->chnstate[chan].bendraw = buf[2]<<7 | buf[1]; 427 1.18 chap ms->chnstate[chan].bendraw -= MIDI_BEND_NEUTRAL; 428 1.18 chap midisyn_notify(ms, MIDICTL_RPN, chan, 429 1.18 chap MIDI_RPN_PITCH_BEND_SENSITIVITY); 430 1.1 augustss break; 431 1.1 augustss } 432 1.18 chap return 0; 433 1.1 augustss } 434 1.1 augustss 435 1.23 jmcneill static int 436 1.23 jmcneill midisyn_commonmsg(void *addr, int status, u_char *buf, int len) 437 1.1 augustss { 438 1.23 jmcneill 439 1.18 chap return 0; 440 1.18 chap } 441 1.1 augustss 442 1.23 jmcneill static int 443 1.23 jmcneill midisyn_sysex(void *addr, u_char *buf, int len) 444 1.18 chap { 445 1.23 jmcneill 446 1.18 chap /* 447 1.18 chap * unimplemented by existing drivers. it is surely more sensible 448 1.18 chap * to do some parsing of well-defined sysex messages here, either 449 1.18 chap * handling them internally or calling specific methods on the 450 1.18 chap * driver after parsing out the details, than to ask every driver 451 1.18 chap * to deal with sysex messages poked at it a byte at a time. 452 1.18 chap */ 453 1.18 chap return 0; 454 1.18 chap } 455 1.18 chap 456 1.18 chap static void 457 1.18 chap midisyn_notify(void *cookie, midictl_evt evt, 458 1.18 chap uint_fast8_t chan, uint_fast16_t key) 459 1.18 chap { 460 1.18 chap struct midisyn *ms; 461 1.18 chap int drvhandled; 462 1.18 chap 463 1.18 chap ms = (struct midisyn *)cookie; 464 1.23 jmcneill 465 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 466 1.23 jmcneill 467 1.18 chap drvhandled = 0; 468 1.18 chap if ( ms->mets->ctlnotice ) 469 1.18 chap drvhandled = ms->mets->ctlnotice(ms, evt, chan, key); 470 1.18 chap 471 1.18 chap switch ( evt | key ) { 472 1.18 chap case MIDICTL_RESET: 473 1.18 chap /* 474 1.18 chap * Re-read all ctls we use, revert pitchbend state. 475 1.18 chap * Can do it by faking change notifications. 476 1.18 chap */ 477 1.18 chap ms->chnstate[chan].pendingreset |= PEND_ALL; 478 1.18 chap midisyn_notify(ms, MIDICTL_CTLR, chan, 479 1.18 chap MIDI_CTRL_CHANNEL_VOLUME_MSB); 480 1.18 chap midisyn_notify(ms, MIDICTL_CTLR, chan, 481 1.18 chap MIDI_CTRL_EXPRESSION_MSB); 482 1.18 chap ms->chnstate[chan].bendraw = 0; /* MIDI_BEND_NEUTRAL - itself */ 483 1.18 chap midisyn_notify(ms, MIDICTL_RPN, chan, 484 1.18 chap MIDI_RPN_PITCH_BEND_SENSITIVITY); 485 1.18 chap midisyn_notify(ms, MIDICTL_RPN, chan, 486 1.18 chap MIDI_RPN_CHANNEL_FINE_TUNING); 487 1.18 chap midisyn_notify(ms, MIDICTL_RPN, chan, 488 1.18 chap MIDI_RPN_CHANNEL_COARSE_TUNING); 489 1.18 chap break; 490 1.18 chap case MIDICTL_NOTES_OFF: 491 1.18 chap if ( drvhandled ) 492 1.18 chap break; 493 1.18 chap /* releasev all voices sounding on chan; use normal vel 64 */ 494 1.18 chap midisyn_chan_releasev(ms, chan, 64); 495 1.18 chap break; 496 1.18 chap case MIDICTL_SOUND_OFF: 497 1.18 chap if ( drvhandled ) 498 1.18 chap break; 499 1.18 chap /* releasev all voices sounding on chan; use max vel 127 */ 500 1.18 chap /* it is really better for driver to handle this, instantly */ 501 1.18 chap midisyn_chan_releasev(ms, chan, 127); 502 1.18 chap break; 503 1.18 chap case MIDICTL_CTLR | MIDI_CTRL_CHANNEL_VOLUME_MSB: 504 1.18 chap ms->chnstate[chan].pendingreset &= ~PEND_VOL; 505 1.18 chap if ( drvhandled ) { 506 1.18 chap ms->chnstate[chan].volume = 0; 507 1.18 chap break; 508 1.18 chap } 509 1.18 chap ms->chnstate[chan].volume = midisyn_vol2cB( 510 1.18 chap midictl_read(&ms->ctl, chan, key, 100<<7)); 511 1.18 chap midisyn_upd_level(ms, chan); 512 1.18 chap break; 513 1.18 chap case MIDICTL_CTLR | MIDI_CTRL_EXPRESSION_MSB: 514 1.18 chap ms->chnstate[chan].pendingreset &= ~PEND_EXP; 515 1.18 chap if ( drvhandled ) { 516 1.18 chap ms->chnstate[chan].expression = 0; 517 1.18 chap break; 518 1.18 chap } 519 1.18 chap ms->chnstate[chan].expression = midisyn_vol2cB( 520 1.18 chap midictl_read(&ms->ctl, chan, key, 16383)); 521 1.18 chap midisyn_upd_level(ms, chan); 522 1.18 chap break; 523 1.18 chap /* 524 1.18 chap * SOFT_PEDAL: supporting this will be trickier; must apply only 525 1.18 chap * to notes subsequently struck, and must remember which voices 526 1.18 chap * they are for follow-on adjustments. For another day.... 527 1.18 chap */ 528 1.18 chap case MIDICTL_RPN | MIDI_RPN_PITCH_BEND_SENSITIVITY: 529 1.18 chap ms->chnstate[chan].pendingreset &= ~PEND_PBS; 530 1.18 chap if ( drvhandled ) 531 1.18 chap ms->chnstate[chan].bend = 0; 532 1.18 chap else { 533 1.18 chap uint16_t w; 534 1.18 chap int8_t semis, cents; 535 1.18 chap w = midictl_rpn_read(&ms->ctl, chan, key, 2<<7); 536 1.18 chap semis = w>>7; 537 1.18 chap cents = w&0x7f; 538 1.18 chap /* 539 1.18 chap * Mathematically, multiply semis by 540 1.18 chap * MIDIPITCH_SEMITONE*bendraw/8192. Practically, avoid 541 1.18 chap * shifting significant bits off by observing that 542 1.18 chap * MIDIPITCH_SEMITONE == 1<<14 and 8192 == 1<<13, so 543 1.18 chap * just take semis*bendraw<<1. Do the same with cents 544 1.18 chap * except <<1 becomes /50 (but rounded). 545 1.18 chap */ 546 1.18 chap ms->chnstate[chan].bend = 547 1.18 chap ( ms->chnstate[chan].bendraw * semis ) << 1; 548 1.18 chap ms->chnstate[chan].bend += 549 1.18 chap ((ms->chnstate[chan].bendraw * cents)/25 + 1) >> 1; 550 1.18 chap midisyn_upd_pitch(ms, chan); 551 1.18 chap } 552 1.18 chap break; 553 1.18 chap case MIDICTL_RPN | MIDI_RPN_CHANNEL_FINE_TUNING: 554 1.18 chap if ( drvhandled ) 555 1.18 chap ms->chnstate[chan].tuning_fine = 0; 556 1.18 chap else { 557 1.18 chap midipitch_t mp; 558 1.18 chap mp = midictl_rpn_read(&ms->ctl, chan, key, 8192); 559 1.18 chap /* 560 1.18 chap * Mathematically, subtract 8192 and scale by 561 1.18 chap * MIDIPITCH_SEMITONE/8192. Practically, subtract 8192 562 1.18 chap * and then << 1. 563 1.18 chap */ 564 1.18 chap ms->chnstate[chan].tuning_fine = ( mp - 8192 ) << 1; 565 1.18 chap midisyn_upd_pitch(ms, chan); 566 1.18 chap } 567 1.18 chap break; 568 1.18 chap case MIDICTL_RPN | MIDI_RPN_CHANNEL_COARSE_TUNING: 569 1.18 chap ms->chnstate[chan].pendingreset &= ~PEND_TNC; 570 1.18 chap if ( drvhandled ) 571 1.18 chap ms->chnstate[chan].tuning_coarse = 0; 572 1.18 chap else { 573 1.18 chap midipitch_t mp; 574 1.18 chap /* 575 1.18 chap * By definition only the MSB of this parameter is used. 576 1.18 chap * Subtract 64 for a signed count of semitones; << 14 577 1.18 chap * will convert to midipitch scale. 578 1.18 chap */ 579 1.18 chap mp = midictl_rpn_read(&ms->ctl, chan, key, 64<<7) >> 7; 580 1.18 chap ms->chnstate[chan].tuning_coarse = ( mp - 64 ) << 14; 581 1.18 chap midisyn_upd_pitch(ms, chan); 582 1.18 chap } 583 1.18 chap break; 584 1.18 chap } 585 1.18 chap } 586 1.1 augustss 587 1.18 chap static midipitch_t 588 1.18 chap midisyn_clamp_pitch(midipitch_t mp) 589 1.18 chap { 590 1.23 jmcneill 591 1.18 chap if ( mp <= 0 ) 592 1.18 chap return 0; 593 1.18 chap if ( mp >= MIDIPITCH_MAX ) 594 1.18 chap return MIDIPITCH_MAX; 595 1.18 chap return mp; 596 1.18 chap } 597 1.18 chap 598 1.18 chap static int16_t 599 1.18 chap midisyn_adj_level(midisyn *ms, uint_fast8_t chan) 600 1.18 chap { 601 1.18 chap int32_t level; 602 1.23 jmcneill 603 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 604 1.18 chap 605 1.18 chap level = ms->chnstate[chan].volume + ms->chnstate[chan].expression; 606 1.18 chap if ( level <= INT16_MIN ) 607 1.18 chap return INT16_MIN; 608 1.18 chap return level; 609 1.18 chap } 610 1.18 chap 611 1.18 chap static midipitch_t 612 1.18 chap midisyn_adj_pitch(midisyn *ms, uint_fast8_t chan) 613 1.18 chap { 614 1.18 chap struct channelstate *s = ms->chnstate + chan; 615 1.23 jmcneill 616 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 617 1.23 jmcneill 618 1.18 chap return s->bend + s->tuning_fine +s->tuning_coarse; 619 1.18 chap } 620 1.18 chap 621 1.18 chap #define VOICECHAN_FOREACH_BEGIN(ms,vp,ch) \ 622 1.18 chap { \ 623 1.18 chap struct voice *vp, *_end_##vp; \ 624 1.18 chap for (vp=(ms)->voices,_end_##vp=vp+(ms)->nvoice; \ 625 1.18 chap vp < _end_##vp; ++ vp) { \ 626 1.18 chap if ( !vp->inuse ) \ 627 1.18 chap continue; \ 628 1.18 chap if ( MS_GETCHAN(vp) == (ch) ) \ 629 1.18 chap ; \ 630 1.18 chap else \ 631 1.18 chap continue; 632 1.18 chap #define VOICECHAN_FOREACH_END }} 633 1.18 chap 634 1.18 chap static void 635 1.18 chap midisyn_chan_releasev(midisyn *ms, uint_fast8_t chan, uint_fast8_t vel) 636 1.18 chap { 637 1.23 jmcneill 638 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 639 1.23 jmcneill 640 1.18 chap VOICECHAN_FOREACH_BEGIN(ms,vp,chan) 641 1.18 chap ms->mets->releasev(ms, vp - ms->voices, vel); 642 1.18 chap midisyn_freevoice(ms, vp - ms->voices); 643 1.18 chap VOICECHAN_FOREACH_END 644 1.18 chap } 645 1.18 chap 646 1.18 chap static void 647 1.18 chap midisyn_upd_level(midisyn *ms, uint_fast8_t chan) 648 1.18 chap { 649 1.18 chap int32_t level; 650 1.18 chap int16_t chan_level; 651 1.23 jmcneill 652 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 653 1.23 jmcneill 654 1.18 chap if ( NULL == ms->mets->relevelv ) 655 1.18 chap return; 656 1.18 chap 657 1.18 chap if ( ms->chnstate[chan].pendingreset & PEND_LEVEL ) 658 1.18 chap return; 659 1.1 augustss 660 1.18 chap chan_level = midisyn_adj_level(ms, chan); 661 1.18 chap 662 1.18 chap VOICECHAN_FOREACH_BEGIN(ms,vp,chan) 663 1.18 chap level = vp->velcB + chan_level; 664 1.18 chap ms->mets->relevelv(ms, vp - ms->voices, 665 1.18 chap level <= INT16_MIN ? INT16_MIN : level); 666 1.18 chap VOICECHAN_FOREACH_END 667 1.18 chap } 668 1.1 augustss 669 1.18 chap static void 670 1.18 chap midisyn_upd_pitch(midisyn *ms, uint_fast8_t chan) 671 1.18 chap { 672 1.18 chap midipitch_t chan_adj; 673 1.23 jmcneill 674 1.23 jmcneill KASSERT(mutex_owned(ms->lock)); 675 1.18 chap 676 1.18 chap if ( NULL == ms->mets->repitchv ) 677 1.18 chap return; 678 1.18 chap 679 1.18 chap if ( ms->chnstate[chan].pendingreset & PEND_PITCH ) 680 1.18 chap return; 681 1.3 augustss 682 1.18 chap chan_adj = midisyn_adj_pitch(ms, chan); 683 1.18 chap 684 1.18 chap VOICECHAN_FOREACH_BEGIN(ms,vp,chan) 685 1.18 chap ms->mets->repitchv(ms, vp - ms->voices, 686 1.18 chap midisyn_clamp_pitch(chan_adj + 687 1.18 chap MIDIPITCH_FROM_KEY(vp->chan_note&0x7f))); 688 1.18 chap VOICECHAN_FOREACH_END 689 1.18 chap } 690 1.18 chap 691 1.18 chap #undef VOICECHAN_FOREACH_END 692 1.18 chap #undef VOICECHAN_FOREACH_BEGIN 693 1.18 chap 694 1.18 chap int16_t 695 1.18 chap midisyn_vol2cB(uint_fast16_t vol) 696 1.18 chap { 697 1.18 chap int16_t cB = 0; 698 1.18 chap int32_t v; 699 1.18 chap 700 1.18 chap if ( 0 == vol ) 701 1.18 chap return INT16_MIN; 702 1.18 chap /* 703 1.18 chap * Adjust vol to fall in the range 8192..16383. Each doubling is 704 1.18 chap * worth 12 dB. 705 1.18 chap */ 706 1.18 chap while ( vol < 8192 ) { 707 1.18 chap vol <<= 1; 708 1.18 chap cB -= 120; 709 1.3 augustss } 710 1.18 chap v = vol; /* ensure evaluation in signed 32 bit below */ 711 1.18 chap /* 712 1.18 chap * The GM vol-to-dB formula is dB = 40 log ( v / 127 ) for 7-bit v. 713 1.18 chap * The vol and expression controllers are in 14-bit space so the 714 1.18 chap * equivalent is 40 log ( v / 16256 ) - that is, MSB 127 LSB 0 because 715 1.18 chap * the LSB is commonly unused. MSB 127 LSB 127 would then be a tiny 716 1.18 chap * bit over. 717 1.18 chap * 1 dB resolution is a little coarser than we'd like, so let's shoot 718 1.18 chap * for centibels, i.e. 400 log ( v / 16256 ), and shift everything left 719 1.18 chap * as far as will fit in 32 bits, which turns out to be a shift of 22. 720 1.18 chap * This minimax polynomial approximation is good to about a centibel 721 1.18 chap * on the range 8192..16256, a shade worse (1.4 or so) above that. 722 1.18 chap * 26385/10166 is the 6th convergent of the coefficient for v^2. 723 1.18 chap */ 724 1.18 chap cB += ( v * ( 124828 - ( v * 26385 ) / 10166 ) - 1347349038 ) >> 22; 725 1.18 chap return cB; 726 1.18 chap } 727 1.3 augustss 728 1.18 chap /* 729 1.18 chap * MIDI RP-012 constitutes a MIDI Tuning Specification. The units are 730 1.18 chap * fractional-MIDIkeys, that is, the key number 00 - 7f left shifted 731 1.18 chap * 14 bits to provide a 14-bit fraction that divides each semitone. The 732 1.18 chap * whole thing is just a 21-bit number that is bent and tuned simply by 733 1.18 chap * adding and subtracting--the same offset is the same pitch change anywhere 734 1.18 chap * on the scale. One downside is that a cent is 163.84 of these units, so 735 1.18 chap * you can't expect a lengthy integer sum of cents to come out in tune; if you 736 1.18 chap * do anything in cents it is best to use them only for local adjustment of 737 1.18 chap * a pitch. 738 1.18 chap * 739 1.18 chap * This function converts a pitch in MIDItune units to Hz left-shifted 18 bits. 740 1.18 chap * That should leave you enough to shift down to whatever precision the hardware 741 1.18 chap * supports. 742 1.18 chap * 743 1.18 chap * Its prototype is exposed in <sys/midiio.h>. 744 1.18 chap */ 745 1.18 chap midihz18_t 746 1.18 chap midisyn_mp2hz18(midipitch_t mp) 747 1.18 chap { 748 1.18 chap int64_t t64a, t64b; 749 1.18 chap uint_fast8_t shift; 750 1.18 chap 751 1.18 chap /* 752 1.18 chap * Scale from the logarithmic MIDI-Tuning units to Hz<<18. Uses the 753 1.18 chap * continued-fraction form of a 2/2 rational function derived to 754 1.18 chap * cover the highest octave (mt 1900544..2097151 or 74.00.00..7f.7f.7f 755 1.18 chap * in RP-012-speak, the dotted bits are 7 wide) to produce Hz shifted 756 1.18 chap * left just as far as the maximum Hz will fit in a uint32, which 757 1.18 chap * turns out to be 18. Just shift off the result for lower octaves. 758 1.18 chap * Fit is within 1/4 MIDI tuning unit throughout (disclaimer: the 759 1.18 chap * comparison relied on the double-precision log in libm). 760 1.18 chap */ 761 1.18 chap 762 1.18 chap if ( 0 == mp ) 763 1.18 chap return 2143236; 764 1.18 chap 765 1.18 chap for ( shift = 0; mp < 1900544; ++ shift ) 766 1.18 chap mp += MIDIPITCH_OCTAVE; 767 1.18 chap 768 1.18 chap if ( 1998848 == mp ) 769 1.18 chap return UINT32_C(2463438621) >> shift; 770 1.18 chap 771 1.18 chap t64a = 0x5a1a0ee4; /* INT64_C(967879298788) gcc333: spurious warning */ 772 1.18 chap t64a |= (int64_t)0xe1 << 32; 773 1.18 chap t64a /= mp - 1998848; /* here's why 1998848 is special-cased above ;) */ 774 1.18 chap t64a += mp - 3704981; 775 1.18 chap t64b = 0x6763759d; /* INT64_C(8405905567872413) goofy warning again */ 776 1.18 chap t64b |= (int64_t)0x1ddd20 << 32; 777 1.18 chap t64b /= t64a; 778 1.18 chap t64b += UINT32_C(2463438619); 779 1.18 chap return (uint32_t)t64b >> shift; 780 1.1 augustss } 781