source: roaraudio/roard/midi.c @ 1858:a519d0669921

Last change on this file since 1858:a519d0669921 was 1858:a519d0669921, checked in by phi, 15 years ago

buffer midi_in data

File size: 8.1 KB
Line 
1//midi.c:
2
3/*
4 *      Copyright (C) Philipp 'ph3-der-loewe' Schafft - 2008
5 *
6 *  This file is part of roard a part of RoarAudio,
7 *  a cross-platform sound system for both, home and professional use.
8 *  See README for details.
9 *
10 *  This file is free software; you can redistribute it and/or modify
11 *  it under the terms of the GNU General Public License version 3
12 *  as published by the Free Software Foundation.
13 *
14 *  RoarAudio is distributed in the hope that it will be useful,
15 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17 *  GNU General Public License for more details.
18 *
19 *  You should have received a copy of the GNU General Public License
20 *  along with this software; see the file COPYING.  If not, write to
21 *  the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
22 *
23 */
24
25#include "roard.h"
26
27#if defined(ROAR_HAVE_IO_POSIX) && !defined(ROAR_TARGET_WIN32)
28#define _HAVE_CONSOLE
29#endif
30
31int midi_init (void) {
32
33 if ( midi_cb_init() == -1 ) {
34  ROAR_WARN("Can not initialize MIDI subsystem component CB");
35 }
36
37 if ( midi_clock_init() == -1 ) {
38  ROAR_WARN("Can not initialize MIDI subsystem component clock");
39 }
40
41 return 0;
42}
43
44int midi_free (void) {
45 return midi_cb_free();
46}
47
48int midi_update(void) {
49
50 if ( g_midi_clock.stream != -1 )
51  midi_check_bridge(g_midi_clock.stream);
52
53 return midi_cb_update();
54}
55
56int midi_reinit(void) {
57 return 0;
58}
59
60// STREAMS:
61
62int midi_check_stream  (int id) {
63 struct roar_stream        *   s;
64 struct roar_stream_server *  ss;
65 struct roar_buffer        *   b;
66 char                      * buf;
67 ssize_t                     len;
68
69 if ( g_streams[id] == NULL )
70  return -1;
71
72 ROAR_DBG("midi_check_stream(id=%i) = ?", id);
73
74 s = ROAR_STREAM(ss = g_streams[id]);
75
76 if ( s->dir == ROAR_DIR_BRIDGE )
77  return midi_check_bridge(id);
78
79 switch (s->info.codec) {
80  case ROAR_CODEC_MIDI:
81   break;
82  default:
83    streams_delete(id);
84    return -1;
85 }
86
87 if ( roar_buffer_new(&b, MIDI_READ_SIZE) == -1 ) {
88  ROAR_ERR("midi_check_stream(*): Can not alloc buffer space!");
89  ROAR_DBG("midi_check_stream(*) = -1");
90  return -1;
91 }
92
93 roar_buffer_get_data(b, (void **)&buf);
94
95 if ( (len = stream_vio_s_read(ss, buf, MIDI_READ_SIZE)) < 1 ) {
96  streams_delete(id);
97  return -1;
98 }
99
100 roar_buffer_set_len(b, len);
101
102  if ( stream_add_buffer(id, b) == -1 ) {
103   roar_buffer_free(b);
104   streams_delete(id);
105   return -1;
106  }
107
108 switch (s->info.codec) {
109  case ROAR_CODEC_MIDI:
110    return midi_conv_midi2mes(id);
111   break;
112  default:
113    streams_delete(id);
114    return -1;
115 }
116
117 return 0;
118}
119
120int midi_send_stream   (int id) {
121 struct roar_stream        *   s;
122 struct roar_stream_server *  ss;
123
124 if ( g_streams[id] == NULL )
125  return -1;
126
127 ROAR_DBG("midi_send_stream(id=%i) = ?", id);
128
129 s = ROAR_STREAM(ss = g_streams[id]);
130
131 switch (s->info.codec) {
132  default:
133    streams_delete(id);
134    return -1;
135 }
136
137 return 0;
138}
139
140int midi_conv_midi2mes (int id) {
141 return -1;
142}
143
144int midi_conv_mes2midi (int id) {
145 return -1;
146}
147
148// bridges:
149int midi_check_bridge  (int id) {
150
151 ROAR_WARN("midi_check_bridge(id=%i) = ?", id);
152
153 if ( id == g_midi_clock.stream ) {
154  midi_clock_tick();
155
156  return 0;
157 }
158
159 return -1;
160}
161
162// clock:
163
164int midi_clock_init (void) {
165 struct roar_stream * s;
166 struct roar_stream_server * ss;
167
168 if ( (g_midi_clock.stream = streams_new()) == -1 ) {
169  ROAR_WARN("Error while initializing MIDI subsystem component clock");
170  return -1;
171 }
172
173 midi_vio_set_dummy(g_midi_clock.stream);
174
175 streams_get(g_midi_clock.stream, &ss);
176 s = ROAR_STREAM(ss);
177
178 memcpy(&(s->info), g_sa, sizeof(struct roar_audio_info));
179
180 s->pos_rel_id    =  g_midi_clock.stream;
181
182 s->info.codec    =  ROAR_CODEC_MIDI;
183 ss->codec_orgi   =  ROAR_CODEC_MIDI;
184
185 s->info.channels =  0;
186 s->info.rate     = MIDI_RATE;
187 s->info.bits     =  8;
188
189 if ( streams_set_dir(g_midi_clock.stream, ROAR_DIR_BRIDGE, 1) == -1 ) {
190  ROAR_WARN("Error while initializing MIDI subsystem component clock");
191  return -1;
192 }
193
194 streams_set_name(g_midi_clock.stream, "MIDI Clock");
195
196 streams_set_flag(g_midi_clock.stream, ROAR_FLAG_PRIMARY);
197 streams_set_flag(g_midi_clock.stream, ROAR_FLAG_SYNC);
198
199 midi_clock_set_bph(3600); // one tick per sec
200
201 return 0;
202}
203
204int midi_clock_set_bph (uint_least32_t bph) {
205 uint_least32_t sph = g_sa->rate/2 * 75 * g_sa->channels; // samples per houre
206
207 g_midi_clock.bph  = bph;
208
209 g_midi_clock.spt  = sph/bph;
210
211 g_midi_clock.nt   = ROAR_MATH_OVERFLOW_ADD(g_pos, g_midi_clock.spt);
212
213 return 0;
214}
215
216int midi_clock_tick (void) {
217 unsigned int diff;
218
219 while ( g_pos >= g_midi_clock.nt ) {
220  diff = g_pos - g_midi_clock.nt;
221  ROAR_WARN("midi_clock_tick(void): g_pos is %u samples (%5.2f%%) ahead of nt.", diff, (float)diff/g_midi_clock.spt);
222
223  g_midi_clock.nt   = ROAR_MATH_OVERFLOW_ADD(g_midi_clock.nt, g_midi_clock.spt);
224
225  if ( streams_get_flag(g_midi_clock.stream, ROAR_FLAG_SYNC) ) {
226   ROAR_WARN("midi_clock_tick(void): TICK! (nt=%lu)", g_midi_clock.nt);
227  } else {
228   ROAR_WARN("midi_clock_tick(void): silent tick. (nt=%lu)", g_midi_clock.nt);
229  }
230 }
231
232 return 0;
233}
234
235// CB:
236
237int midi_cb_init (void) {
238#ifdef _HAVE_CONSOLE
239 struct roar_stream * s;
240 struct roar_stream_server * ss;
241 int i;
242 char * files[] = {
243                   "/dev/console",
244#ifdef __linux__
245                   "/dev/tty0",
246                   "/dev/vc/0",
247#endif
248                   NULL
249                  };
250
251 g_midi_cb.console  = -1;
252 g_midi_cb.stream   = -1;
253 g_midi_cb.stoptime =  0;
254 g_midi_cb.playing  =  0;
255
256 for (i = 0; files[i] != NULL; i++) {
257  if ( (g_midi_cb.console = open(files[i], O_WRONLY|O_NOCTTY, 0)) != -1 )
258   break;
259 }
260
261 if ( g_midi_cb.console == -1 )
262  return -1;
263
264 if ( (g_midi_cb.stream = streams_new()) == -1 ) {
265  ROAR_WARN("Error while initializing MIDI subsystem component CB");
266  midi_cb_free();
267  return -1;
268 }
269
270 midi_vio_set_dummy(g_midi_cb.stream);
271
272 streams_get(g_midi_cb.stream, &ss);
273 s = ROAR_STREAM(ss);
274
275 memcpy(&(s->info), g_sa, sizeof(struct roar_audio_info));
276
277 s->pos_rel_id    = -1;
278
279 s->info.codec    =  0;
280 ss->codec_orgi   =  0;
281
282 s->info.channels =  1;
283 s->info.rate     = 1193180;
284 s->info.bits     =  8;
285
286 if ( streams_set_dir(g_midi_cb.stream, ROAR_DIR_BRIDGE, 1) == -1 ) {
287  ROAR_WARN("Error while initializing MIDI subsystem component CB");
288  midi_cb_free();
289  return -1;
290 }
291
292 streams_set_name(g_midi_cb.stream, "Console speaker bridge");
293
294 streams_set_flag(g_midi_cb.stream, ROAR_FLAG_OUTPUT);
295 streams_set_flag(g_midi_cb.stream, ROAR_FLAG_PRIMARY);
296 streams_set_flag(g_midi_cb.stream, ROAR_FLAG_HWMIXER);
297
298 return 0;
299#else
300 g_midi_cb.console  = -1;
301 g_midi_cb.stream   = -1;
302
303 return -1;
304#endif
305}
306
307int midi_cb_free (void) {
308#ifdef _HAVE_CONSOLE
309
310 midi_cb_stop();
311
312 if ( g_midi_cb.stream != -1 )
313  streams_delete(g_midi_cb.stream);
314
315 if ( g_midi_cb.console != -1 )
316  close(g_midi_cb.console);
317
318 return 0;
319#else
320 return -1;
321#endif
322}
323
324int midi_cb_play(float t, float freq, int override) {
325 float samples_per_sec /* S/s */ = g_sa->rate * g_sa->channels;
326
327/*
328#define MIDI_CB_NOOVERRIDE 0
329#define MIDI_CB_OVERRIDE   1
330*/
331 if ( g_midi_cb.playing && override != MIDI_CB_OVERRIDE )
332  return -1;
333
334 g_midi_cb.stoptime = ROAR_MATH_OVERFLOW_ADD(g_pos, samples_per_sec*t);
335 midi_cb_start(freq);
336 g_midi_cb.playing = 1;
337
338 return 0;
339}
340
341int midi_cb_update (void) {
342 if ( !g_midi_cb.playing )
343  return 0;
344
345 if ( g_midi_cb.stoptime <= g_pos )
346  midi_cb_stop();
347
348 return 0;
349}
350
351int midi_cb_start(float freq) {
352// On linux this uses ioctl KIOCSOUND
353#ifdef __linux__
354 if ( g_midi_cb.console == -1 )
355  return -1;
356
357 if ( ioctl(g_midi_cb.console, KIOCSOUND, freq == 0 ? 0 : (int)(1193180.0/freq)) == -1 )
358  return -1;
359
360 return 0;
361#else
362 return -1;
363#endif
364}
365
366int midi_cb_stop (void) {
367#ifdef __linux__
368 g_midi_cb.playing = 0;
369 return midi_cb_start(0);
370#else
371 return -1;
372#endif
373}
374
375// VIO:
376
377int     midi_vio_set_dummy(int stream) {
378 struct roar_stream_server * ss;
379
380 if ( streams_get(stream, &ss) == -1 )
381  return -1;
382
383 ss->vio.read     = NULL;
384 ss->vio.write    = NULL;
385 ss->vio.lseek    = NULL;
386 ss->vio.nonblock = (int (*)(struct roar_vio_calls * vio, int state))midi_vio_ok;
387 ss->vio.sync     = (int (*)(struct roar_vio_calls * vio))midi_vio_ok;
388 ss->vio.ctl      = NULL;
389 ss->vio.close    = (int (*)(struct roar_vio_calls * vio))midi_vio_ok;
390
391 return 0;
392}
393
394int     midi_vio_ok(struct roar_vio_calls * vio, ...) {
395 return 0;
396}
397
398//ll
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