audio.c revision 1.16.2.2 1 1.16.2.2 christos /* $NetBSD: audio.c,v 1.16.2.2 2019/06/10 22:07:06 christos Exp $ */
2 1.16.2.2 christos
3 1.16.2.2 christos /*-
4 1.16.2.2 christos * Copyright (c) 2008 The NetBSD Foundation, Inc.
5 1.16.2.2 christos * All rights reserved.
6 1.16.2.2 christos *
7 1.16.2.2 christos * This code is derived from software contributed to The NetBSD Foundation
8 1.16.2.2 christos * by Andrew Doran.
9 1.16.2.2 christos *
10 1.16.2.2 christos * Redistribution and use in source and binary forms, with or without
11 1.16.2.2 christos * modification, are permitted provided that the following conditions
12 1.16.2.2 christos * are met:
13 1.16.2.2 christos * 1. Redistributions of source code must retain the above copyright
14 1.16.2.2 christos * notice, this list of conditions and the following disclaimer.
15 1.16.2.2 christos * 2. Redistributions in binary form must reproduce the above copyright
16 1.16.2.2 christos * notice, this list of conditions and the following disclaimer in the
17 1.16.2.2 christos * documentation and/or other materials provided with the distribution.
18 1.16.2.2 christos *
19 1.16.2.2 christos * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.16.2.2 christos * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.16.2.2 christos * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.16.2.2 christos * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.16.2.2 christos * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.16.2.2 christos * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.16.2.2 christos * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.16.2.2 christos * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.16.2.2 christos * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.16.2.2 christos * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.16.2.2 christos * POSSIBILITY OF SUCH DAMAGE.
30 1.16.2.2 christos */
31 1.16.2.2 christos
32 1.16.2.2 christos /*
33 1.16.2.2 christos * Copyright (c) 1991-1993 Regents of the University of California.
34 1.16.2.2 christos * All rights reserved.
35 1.16.2.2 christos *
36 1.16.2.2 christos * Redistribution and use in source and binary forms, with or without
37 1.16.2.2 christos * modification, are permitted provided that the following conditions
38 1.16.2.2 christos * are met:
39 1.16.2.2 christos * 1. Redistributions of source code must retain the above copyright
40 1.16.2.2 christos * notice, this list of conditions and the following disclaimer.
41 1.16.2.2 christos * 2. Redistributions in binary form must reproduce the above copyright
42 1.16.2.2 christos * notice, this list of conditions and the following disclaimer in the
43 1.16.2.2 christos * documentation and/or other materials provided with the distribution.
44 1.16.2.2 christos * 3. All advertising materials mentioning features or use of this software
45 1.16.2.2 christos * must display the following acknowledgement:
46 1.16.2.2 christos * This product includes software developed by the Computer Systems
47 1.16.2.2 christos * Engineering Group at Lawrence Berkeley Laboratory.
48 1.16.2.2 christos * 4. Neither the name of the University nor of the Laboratory may be used
49 1.16.2.2 christos * to endorse or promote products derived from this software without
50 1.16.2.2 christos * specific prior written permission.
51 1.16.2.2 christos *
52 1.16.2.2 christos * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
53 1.16.2.2 christos * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
54 1.16.2.2 christos * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
55 1.16.2.2 christos * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
56 1.16.2.2 christos * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
57 1.16.2.2 christos * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
58 1.16.2.2 christos * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
59 1.16.2.2 christos * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
60 1.16.2.2 christos * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
61 1.16.2.2 christos * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
62 1.16.2.2 christos * SUCH DAMAGE.
63 1.16.2.2 christos */
64 1.16.2.2 christos
65 1.16.2.2 christos /*
66 1.16.2.2 christos * Locking: there are three locks per device.
67 1.16.2.2 christos *
68 1.16.2.2 christos * - sc_lock, provided by the underlying driver. This is an adaptive lock,
69 1.16.2.2 christos * returned in the second parameter to hw_if->get_locks(). It is known
70 1.16.2.2 christos * as the "thread lock".
71 1.16.2.2 christos *
72 1.16.2.2 christos * It serializes access to state in all places except the
73 1.16.2.2 christos * driver's interrupt service routine. This lock is taken from process
74 1.16.2.2 christos * context (example: access to /dev/audio). It is also taken from soft
75 1.16.2.2 christos * interrupt handlers in this module, primarily to serialize delivery of
76 1.16.2.2 christos * wakeups. This lock may be used/provided by modules external to the
77 1.16.2.2 christos * audio subsystem, so take care not to introduce a lock order problem.
78 1.16.2.2 christos * LONG TERM SLEEPS MUST NOT OCCUR WITH THIS LOCK HELD.
79 1.16.2.2 christos *
80 1.16.2.2 christos * - sc_intr_lock, provided by the underlying driver. This may be either a
81 1.16.2.2 christos * spinlock (at IPL_SCHED or IPL_VM) or an adaptive lock (IPL_NONE or
82 1.16.2.2 christos * IPL_SOFT*), returned in the first parameter to hw_if->get_locks(). It
83 1.16.2.2 christos * is known as the "interrupt lock".
84 1.16.2.2 christos *
85 1.16.2.2 christos * It provides atomic access to the device's hardware state, and to audio
86 1.16.2.2 christos * channel data that may be accessed by the hardware driver's ISR.
87 1.16.2.2 christos * In all places outside the ISR, sc_lock must be held before taking
88 1.16.2.2 christos * sc_intr_lock. This is to ensure that groups of hardware operations are
89 1.16.2.2 christos * made atomically. SLEEPS CANNOT OCCUR WITH THIS LOCK HELD.
90 1.16.2.2 christos *
91 1.16.2.2 christos * - sc_exlock, private to this module. This is a variable protected by
92 1.16.2.2 christos * sc_lock. It is known as the "critical section".
93 1.16.2.2 christos * Some operations release sc_lock in order to allocate memory, to wait
94 1.16.2.2 christos * for in-flight I/O to complete, to copy to/from user context, etc.
95 1.16.2.2 christos * sc_exlock provides a critical section even under the circumstance.
96 1.16.2.2 christos * "+" in following list indicates the interfaces which necessary to be
97 1.16.2.2 christos * protected by sc_exlock.
98 1.16.2.2 christos *
99 1.16.2.2 christos * List of hardware interface methods, and which locks are held when each
100 1.16.2.2 christos * is called by this module:
101 1.16.2.2 christos *
102 1.16.2.2 christos * METHOD INTR THREAD NOTES
103 1.16.2.2 christos * ----------------------- ------- ------- -------------------------
104 1.16.2.2 christos * open x x +
105 1.16.2.2 christos * close x x +
106 1.16.2.2 christos * query_format - x
107 1.16.2.2 christos * set_format - x
108 1.16.2.2 christos * round_blocksize - x
109 1.16.2.2 christos * commit_settings - x
110 1.16.2.2 christos * init_output x x
111 1.16.2.2 christos * init_input x x
112 1.16.2.2 christos * start_output x x +
113 1.16.2.2 christos * start_input x x +
114 1.16.2.2 christos * halt_output x x +
115 1.16.2.2 christos * halt_input x x +
116 1.16.2.2 christos * speaker_ctl x x
117 1.16.2.2 christos * getdev - x
118 1.16.2.2 christos * set_port - x +
119 1.16.2.2 christos * get_port - x +
120 1.16.2.2 christos * query_devinfo - x
121 1.16.2.2 christos * allocm - - + (*1)
122 1.16.2.2 christos * freem - - + (*1)
123 1.16.2.2 christos * round_buffersize - x
124 1.16.2.2 christos * get_props - x
125 1.16.2.2 christos * trigger_output x x +
126 1.16.2.2 christos * trigger_input x x +
127 1.16.2.2 christos * dev_ioctl - x
128 1.16.2.2 christos * get_locks - - Called at attach time
129 1.16.2.2 christos *
130 1.16.2.2 christos * *1 Note: Before 8.0, since these have been called only at attach time,
131 1.16.2.2 christos * neither lock were necessary. Currently, on the other hand, since
132 1.16.2.2 christos * these may be also called after attach, the thread lock is required.
133 1.16.2.2 christos *
134 1.16.2.2 christos * In addition, there is an additional lock.
135 1.16.2.2 christos *
136 1.16.2.2 christos * - track->lock. This is an atomic variable and is similar to the
137 1.16.2.2 christos * "interrupt lock". This is one for each track. If any thread context
138 1.16.2.2 christos * (and software interrupt context) and hardware interrupt context who
139 1.16.2.2 christos * want to access some variables on this track, they must acquire this
140 1.16.2.2 christos * lock before. It protects track's consistency between hardware
141 1.16.2.2 christos * interrupt context and others.
142 1.16.2.2 christos */
143 1.16.2.2 christos
144 1.16.2.2 christos #include <sys/cdefs.h>
145 1.16.2.2 christos __KERNEL_RCSID(0, "$NetBSD: audio.c,v 1.16.2.2 2019/06/10 22:07:06 christos Exp $");
146 1.16.2.2 christos
147 1.16.2.2 christos #ifdef _KERNEL_OPT
148 1.16.2.2 christos #include "audio.h"
149 1.16.2.2 christos #include "midi.h"
150 1.16.2.2 christos #endif
151 1.16.2.2 christos
152 1.16.2.2 christos #if NAUDIO > 0
153 1.16.2.2 christos
154 1.16.2.2 christos #ifdef _KERNEL
155 1.16.2.2 christos
156 1.16.2.2 christos #include <sys/types.h>
157 1.16.2.2 christos #include <sys/param.h>
158 1.16.2.2 christos #include <sys/atomic.h>
159 1.16.2.2 christos #include <sys/audioio.h>
160 1.16.2.2 christos #include <sys/conf.h>
161 1.16.2.2 christos #include <sys/cpu.h>
162 1.16.2.2 christos #include <sys/device.h>
163 1.16.2.2 christos #include <sys/fcntl.h>
164 1.16.2.2 christos #include <sys/file.h>
165 1.16.2.2 christos #include <sys/filedesc.h>
166 1.16.2.2 christos #include <sys/intr.h>
167 1.16.2.2 christos #include <sys/ioctl.h>
168 1.16.2.2 christos #include <sys/kauth.h>
169 1.16.2.2 christos #include <sys/kernel.h>
170 1.16.2.2 christos #include <sys/kmem.h>
171 1.16.2.2 christos #include <sys/malloc.h>
172 1.16.2.2 christos #include <sys/mman.h>
173 1.16.2.2 christos #include <sys/module.h>
174 1.16.2.2 christos #include <sys/poll.h>
175 1.16.2.2 christos #include <sys/proc.h>
176 1.16.2.2 christos #include <sys/queue.h>
177 1.16.2.2 christos #include <sys/select.h>
178 1.16.2.2 christos #include <sys/signalvar.h>
179 1.16.2.2 christos #include <sys/stat.h>
180 1.16.2.2 christos #include <sys/sysctl.h>
181 1.16.2.2 christos #include <sys/systm.h>
182 1.16.2.2 christos #include <sys/syslog.h>
183 1.16.2.2 christos #include <sys/vnode.h>
184 1.16.2.2 christos
185 1.16.2.2 christos #include <dev/audio/audio_if.h>
186 1.16.2.2 christos #include <dev/audio/audiovar.h>
187 1.16.2.2 christos #include <dev/audio/audiodef.h>
188 1.16.2.2 christos #include <dev/audio/linear.h>
189 1.16.2.2 christos #include <dev/audio/mulaw.h>
190 1.16.2.2 christos
191 1.16.2.2 christos #include <machine/endian.h>
192 1.16.2.2 christos
193 1.16.2.2 christos #include <uvm/uvm.h>
194 1.16.2.2 christos
195 1.16.2.2 christos #include "ioconf.h"
196 1.16.2.2 christos #endif /* _KERNEL */
197 1.16.2.2 christos
198 1.16.2.2 christos /*
199 1.16.2.2 christos * 0: No debug logs
200 1.16.2.2 christos * 1: action changes like open/close/set_format...
201 1.16.2.2 christos * 2: + normal operations like read/write/ioctl...
202 1.16.2.2 christos * 3: + TRACEs except interrupt
203 1.16.2.2 christos * 4: + TRACEs including interrupt
204 1.16.2.2 christos */
205 1.16.2.2 christos //#define AUDIO_DEBUG 1
206 1.16.2.2 christos
207 1.16.2.2 christos #if defined(AUDIO_DEBUG)
208 1.16.2.2 christos
209 1.16.2.2 christos int audiodebug = AUDIO_DEBUG;
210 1.16.2.2 christos static void audio_vtrace(struct audio_softc *sc, const char *, const char *,
211 1.16.2.2 christos const char *, va_list);
212 1.16.2.2 christos static void audio_trace(struct audio_softc *sc, const char *, const char *, ...)
213 1.16.2.2 christos __printflike(3, 4);
214 1.16.2.2 christos static void audio_tracet(const char *, audio_track_t *, const char *, ...)
215 1.16.2.2 christos __printflike(3, 4);
216 1.16.2.2 christos static void audio_tracef(const char *, audio_file_t *, const char *, ...)
217 1.16.2.2 christos __printflike(3, 4);
218 1.16.2.2 christos
219 1.16.2.2 christos /* XXX sloppy memory logger */
220 1.16.2.2 christos static void audio_mlog_init(void);
221 1.16.2.2 christos static void audio_mlog_free(void);
222 1.16.2.2 christos static void audio_mlog_softintr(void *);
223 1.16.2.2 christos extern void audio_mlog_flush(void);
224 1.16.2.2 christos extern void audio_mlog_printf(const char *, ...);
225 1.16.2.2 christos
226 1.16.2.2 christos static int mlog_refs; /* reference counter */
227 1.16.2.2 christos static char *mlog_buf[2]; /* double buffer */
228 1.16.2.2 christos static int mlog_buflen; /* buffer length */
229 1.16.2.2 christos static int mlog_used; /* used length */
230 1.16.2.2 christos static int mlog_full; /* number of dropped lines by buffer full */
231 1.16.2.2 christos static int mlog_drop; /* number of dropped lines by busy */
232 1.16.2.2 christos static volatile uint32_t mlog_inuse; /* in-use */
233 1.16.2.2 christos static int mlog_wpage; /* active page */
234 1.16.2.2 christos static void *mlog_sih; /* softint handle */
235 1.16.2.2 christos
236 1.16.2.2 christos static void
237 1.16.2.2 christos audio_mlog_init(void)
238 1.16.2.2 christos {
239 1.16.2.2 christos mlog_refs++;
240 1.16.2.2 christos if (mlog_refs > 1)
241 1.16.2.2 christos return;
242 1.16.2.2 christos mlog_buflen = 4096;
243 1.16.2.2 christos mlog_buf[0] = kmem_zalloc(mlog_buflen, KM_SLEEP);
244 1.16.2.2 christos mlog_buf[1] = kmem_zalloc(mlog_buflen, KM_SLEEP);
245 1.16.2.2 christos mlog_used = 0;
246 1.16.2.2 christos mlog_full = 0;
247 1.16.2.2 christos mlog_drop = 0;
248 1.16.2.2 christos mlog_inuse = 0;
249 1.16.2.2 christos mlog_wpage = 0;
250 1.16.2.2 christos mlog_sih = softint_establish(SOFTINT_SERIAL, audio_mlog_softintr, NULL);
251 1.16.2.2 christos if (mlog_sih == NULL)
252 1.16.2.2 christos printf("%s: softint_establish failed\n", __func__);
253 1.16.2.2 christos }
254 1.16.2.2 christos
255 1.16.2.2 christos static void
256 1.16.2.2 christos audio_mlog_free(void)
257 1.16.2.2 christos {
258 1.16.2.2 christos mlog_refs--;
259 1.16.2.2 christos if (mlog_refs > 0)
260 1.16.2.2 christos return;
261 1.16.2.2 christos
262 1.16.2.2 christos audio_mlog_flush();
263 1.16.2.2 christos if (mlog_sih)
264 1.16.2.2 christos softint_disestablish(mlog_sih);
265 1.16.2.2 christos kmem_free(mlog_buf[0], mlog_buflen);
266 1.16.2.2 christos kmem_free(mlog_buf[1], mlog_buflen);
267 1.16.2.2 christos }
268 1.16.2.2 christos
269 1.16.2.2 christos /*
270 1.16.2.2 christos * Flush memory buffer.
271 1.16.2.2 christos * It must not be called from hardware interrupt context.
272 1.16.2.2 christos */
273 1.16.2.2 christos void
274 1.16.2.2 christos audio_mlog_flush(void)
275 1.16.2.2 christos {
276 1.16.2.2 christos if (mlog_refs == 0)
277 1.16.2.2 christos return;
278 1.16.2.2 christos
279 1.16.2.2 christos /* Nothing to do if already in use ? */
280 1.16.2.2 christos if (atomic_swap_32(&mlog_inuse, 1) == 1)
281 1.16.2.2 christos return;
282 1.16.2.2 christos
283 1.16.2.2 christos int rpage = mlog_wpage;
284 1.16.2.2 christos mlog_wpage ^= 1;
285 1.16.2.2 christos mlog_buf[mlog_wpage][0] = '\0';
286 1.16.2.2 christos mlog_used = 0;
287 1.16.2.2 christos
288 1.16.2.2 christos atomic_swap_32(&mlog_inuse, 0);
289 1.16.2.2 christos
290 1.16.2.2 christos if (mlog_buf[rpage][0] != '\0') {
291 1.16.2.2 christos printf("%s", mlog_buf[rpage]);
292 1.16.2.2 christos if (mlog_drop > 0)
293 1.16.2.2 christos printf("mlog_drop %d\n", mlog_drop);
294 1.16.2.2 christos if (mlog_full > 0)
295 1.16.2.2 christos printf("mlog_full %d\n", mlog_full);
296 1.16.2.2 christos }
297 1.16.2.2 christos mlog_full = 0;
298 1.16.2.2 christos mlog_drop = 0;
299 1.16.2.2 christos }
300 1.16.2.2 christos
301 1.16.2.2 christos static void
302 1.16.2.2 christos audio_mlog_softintr(void *cookie)
303 1.16.2.2 christos {
304 1.16.2.2 christos audio_mlog_flush();
305 1.16.2.2 christos }
306 1.16.2.2 christos
307 1.16.2.2 christos void
308 1.16.2.2 christos audio_mlog_printf(const char *fmt, ...)
309 1.16.2.2 christos {
310 1.16.2.2 christos int len;
311 1.16.2.2 christos va_list ap;
312 1.16.2.2 christos
313 1.16.2.2 christos if (atomic_swap_32(&mlog_inuse, 1) == 1) {
314 1.16.2.2 christos /* already inuse */
315 1.16.2.2 christos mlog_drop++;
316 1.16.2.2 christos return;
317 1.16.2.2 christos }
318 1.16.2.2 christos
319 1.16.2.2 christos va_start(ap, fmt);
320 1.16.2.2 christos len = vsnprintf(
321 1.16.2.2 christos mlog_buf[mlog_wpage] + mlog_used,
322 1.16.2.2 christos mlog_buflen - mlog_used,
323 1.16.2.2 christos fmt, ap);
324 1.16.2.2 christos va_end(ap);
325 1.16.2.2 christos
326 1.16.2.2 christos mlog_used += len;
327 1.16.2.2 christos if (mlog_buflen - mlog_used <= 1) {
328 1.16.2.2 christos mlog_full++;
329 1.16.2.2 christos }
330 1.16.2.2 christos
331 1.16.2.2 christos atomic_swap_32(&mlog_inuse, 0);
332 1.16.2.2 christos
333 1.16.2.2 christos if (mlog_sih)
334 1.16.2.2 christos softint_schedule(mlog_sih);
335 1.16.2.2 christos }
336 1.16.2.2 christos
337 1.16.2.2 christos /* trace functions */
338 1.16.2.2 christos static void
339 1.16.2.2 christos audio_vtrace(struct audio_softc *sc, const char *funcname, const char *header,
340 1.16.2.2 christos const char *fmt, va_list ap)
341 1.16.2.2 christos {
342 1.16.2.2 christos char buf[256];
343 1.16.2.2 christos int n;
344 1.16.2.2 christos
345 1.16.2.2 christos n = 0;
346 1.16.2.2 christos buf[0] = '\0';
347 1.16.2.2 christos n += snprintf(buf + n, sizeof(buf) - n, "%s@%d %s",
348 1.16.2.2 christos funcname, device_unit(sc->sc_dev), header);
349 1.16.2.2 christos n += vsnprintf(buf + n, sizeof(buf) - n, fmt, ap);
350 1.16.2.2 christos
351 1.16.2.2 christos if (cpu_intr_p()) {
352 1.16.2.2 christos audio_mlog_printf("%s\n", buf);
353 1.16.2.2 christos } else {
354 1.16.2.2 christos audio_mlog_flush();
355 1.16.2.2 christos printf("%s\n", buf);
356 1.16.2.2 christos }
357 1.16.2.2 christos }
358 1.16.2.2 christos
359 1.16.2.2 christos static void
360 1.16.2.2 christos audio_trace(struct audio_softc *sc, const char *funcname, const char *fmt, ...)
361 1.16.2.2 christos {
362 1.16.2.2 christos va_list ap;
363 1.16.2.2 christos
364 1.16.2.2 christos va_start(ap, fmt);
365 1.16.2.2 christos audio_vtrace(sc, funcname, "", fmt, ap);
366 1.16.2.2 christos va_end(ap);
367 1.16.2.2 christos }
368 1.16.2.2 christos
369 1.16.2.2 christos static void
370 1.16.2.2 christos audio_tracet(const char *funcname, audio_track_t *track, const char *fmt, ...)
371 1.16.2.2 christos {
372 1.16.2.2 christos char hdr[16];
373 1.16.2.2 christos va_list ap;
374 1.16.2.2 christos
375 1.16.2.2 christos snprintf(hdr, sizeof(hdr), "#%d ", track->id);
376 1.16.2.2 christos va_start(ap, fmt);
377 1.16.2.2 christos audio_vtrace(track->mixer->sc, funcname, hdr, fmt, ap);
378 1.16.2.2 christos va_end(ap);
379 1.16.2.2 christos }
380 1.16.2.2 christos
381 1.16.2.2 christos static void
382 1.16.2.2 christos audio_tracef(const char *funcname, audio_file_t *file, const char *fmt, ...)
383 1.16.2.2 christos {
384 1.16.2.2 christos char hdr[32];
385 1.16.2.2 christos char phdr[16], rhdr[16];
386 1.16.2.2 christos va_list ap;
387 1.16.2.2 christos
388 1.16.2.2 christos phdr[0] = '\0';
389 1.16.2.2 christos rhdr[0] = '\0';
390 1.16.2.2 christos if (file->ptrack)
391 1.16.2.2 christos snprintf(phdr, sizeof(phdr), "#%d", file->ptrack->id);
392 1.16.2.2 christos if (file->rtrack)
393 1.16.2.2 christos snprintf(rhdr, sizeof(rhdr), "#%d", file->rtrack->id);
394 1.16.2.2 christos snprintf(hdr, sizeof(hdr), "{%s,%s} ", phdr, rhdr);
395 1.16.2.2 christos
396 1.16.2.2 christos va_start(ap, fmt);
397 1.16.2.2 christos audio_vtrace(file->sc, funcname, hdr, fmt, ap);
398 1.16.2.2 christos va_end(ap);
399 1.16.2.2 christos }
400 1.16.2.2 christos
401 1.16.2.2 christos #define DPRINTF(n, fmt...) do { \
402 1.16.2.2 christos if (audiodebug >= (n)) { \
403 1.16.2.2 christos audio_mlog_flush(); \
404 1.16.2.2 christos printf(fmt); \
405 1.16.2.2 christos } \
406 1.16.2.2 christos } while (0)
407 1.16.2.2 christos #define TRACE(n, fmt...) do { \
408 1.16.2.2 christos if (audiodebug >= (n)) audio_trace(sc, __func__, fmt); \
409 1.16.2.2 christos } while (0)
410 1.16.2.2 christos #define TRACET(n, t, fmt...) do { \
411 1.16.2.2 christos if (audiodebug >= (n)) audio_tracet(__func__, t, fmt); \
412 1.16.2.2 christos } while (0)
413 1.16.2.2 christos #define TRACEF(n, f, fmt...) do { \
414 1.16.2.2 christos if (audiodebug >= (n)) audio_tracef(__func__, f, fmt); \
415 1.16.2.2 christos } while (0)
416 1.16.2.2 christos
417 1.16.2.2 christos struct audio_track_debugbuf {
418 1.16.2.2 christos char usrbuf[32];
419 1.16.2.2 christos char codec[32];
420 1.16.2.2 christos char chvol[32];
421 1.16.2.2 christos char chmix[32];
422 1.16.2.2 christos char freq[32];
423 1.16.2.2 christos char outbuf[32];
424 1.16.2.2 christos };
425 1.16.2.2 christos
426 1.16.2.2 christos static void
427 1.16.2.2 christos audio_track_bufstat(audio_track_t *track, struct audio_track_debugbuf *buf)
428 1.16.2.2 christos {
429 1.16.2.2 christos
430 1.16.2.2 christos memset(buf, 0, sizeof(*buf));
431 1.16.2.2 christos
432 1.16.2.2 christos snprintf(buf->outbuf, sizeof(buf->outbuf), " out=%d/%d/%d",
433 1.16.2.2 christos track->outbuf.head, track->outbuf.used, track->outbuf.capacity);
434 1.16.2.2 christos if (track->freq.filter)
435 1.16.2.2 christos snprintf(buf->freq, sizeof(buf->freq), " f=%d/%d/%d",
436 1.16.2.2 christos track->freq.srcbuf.head,
437 1.16.2.2 christos track->freq.srcbuf.used,
438 1.16.2.2 christos track->freq.srcbuf.capacity);
439 1.16.2.2 christos if (track->chmix.filter)
440 1.16.2.2 christos snprintf(buf->chmix, sizeof(buf->chmix), " m=%d",
441 1.16.2.2 christos track->chmix.srcbuf.used);
442 1.16.2.2 christos if (track->chvol.filter)
443 1.16.2.2 christos snprintf(buf->chvol, sizeof(buf->chvol), " v=%d",
444 1.16.2.2 christos track->chvol.srcbuf.used);
445 1.16.2.2 christos if (track->codec.filter)
446 1.16.2.2 christos snprintf(buf->codec, sizeof(buf->codec), " e=%d",
447 1.16.2.2 christos track->codec.srcbuf.used);
448 1.16.2.2 christos snprintf(buf->usrbuf, sizeof(buf->usrbuf), " usr=%d/%d/H%d",
449 1.16.2.2 christos track->usrbuf.head, track->usrbuf.used, track->usrbuf_usedhigh);
450 1.16.2.2 christos }
451 1.16.2.2 christos #else
452 1.16.2.2 christos #define DPRINTF(n, fmt...) do { } while (0)
453 1.16.2.2 christos #define TRACE(n, fmt, ...) do { } while (0)
454 1.16.2.2 christos #define TRACET(n, t, fmt, ...) do { } while (0)
455 1.16.2.2 christos #define TRACEF(n, f, fmt, ...) do { } while (0)
456 1.16.2.2 christos #endif
457 1.16.2.2 christos
458 1.16.2.2 christos #define SPECIFIED(x) ((x) != ~0)
459 1.16.2.2 christos #define SPECIFIED_CH(x) ((x) != (u_char)~0)
460 1.16.2.2 christos
461 1.16.2.2 christos /* Device timeout in msec */
462 1.16.2.2 christos #define AUDIO_TIMEOUT (3000)
463 1.16.2.2 christos
464 1.16.2.2 christos /* #define AUDIO_PM_IDLE */
465 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
466 1.16.2.2 christos int audio_idle_timeout = 30;
467 1.16.2.2 christos #endif
468 1.16.2.2 christos
469 1.16.2.2 christos struct portname {
470 1.16.2.2 christos const char *name;
471 1.16.2.2 christos int mask;
472 1.16.2.2 christos };
473 1.16.2.2 christos
474 1.16.2.2 christos static int audiomatch(device_t, cfdata_t, void *);
475 1.16.2.2 christos static void audioattach(device_t, device_t, void *);
476 1.16.2.2 christos static int audiodetach(device_t, int);
477 1.16.2.2 christos static int audioactivate(device_t, enum devact);
478 1.16.2.2 christos static void audiochilddet(device_t, device_t);
479 1.16.2.2 christos static int audiorescan(device_t, const char *, const int *);
480 1.16.2.2 christos
481 1.16.2.2 christos static int audio_modcmd(modcmd_t, void *);
482 1.16.2.2 christos
483 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
484 1.16.2.2 christos static void audio_idle(void *);
485 1.16.2.2 christos static void audio_activity(device_t, devactive_t);
486 1.16.2.2 christos #endif
487 1.16.2.2 christos
488 1.16.2.2 christos static bool audio_suspend(device_t dv, const pmf_qual_t *);
489 1.16.2.2 christos static bool audio_resume(device_t dv, const pmf_qual_t *);
490 1.16.2.2 christos static void audio_volume_down(device_t);
491 1.16.2.2 christos static void audio_volume_up(device_t);
492 1.16.2.2 christos static void audio_volume_toggle(device_t);
493 1.16.2.2 christos
494 1.16.2.2 christos static void audio_mixer_capture(struct audio_softc *);
495 1.16.2.2 christos static void audio_mixer_restore(struct audio_softc *);
496 1.16.2.2 christos
497 1.16.2.2 christos static void audio_softintr_rd(void *);
498 1.16.2.2 christos static void audio_softintr_wr(void *);
499 1.16.2.2 christos
500 1.16.2.2 christos static int audio_enter_exclusive(struct audio_softc *);
501 1.16.2.2 christos static void audio_exit_exclusive(struct audio_softc *);
502 1.16.2.2 christos static int audio_track_waitio(struct audio_softc *, audio_track_t *);
503 1.16.2.2 christos
504 1.16.2.2 christos static int audioclose(struct file *);
505 1.16.2.2 christos static int audioread(struct file *, off_t *, struct uio *, kauth_cred_t, int);
506 1.16.2.2 christos static int audiowrite(struct file *, off_t *, struct uio *, kauth_cred_t, int);
507 1.16.2.2 christos static int audioioctl(struct file *, u_long, void *);
508 1.16.2.2 christos static int audiopoll(struct file *, int);
509 1.16.2.2 christos static int audiokqfilter(struct file *, struct knote *);
510 1.16.2.2 christos static int audiommap(struct file *, off_t *, size_t, int, int *, int *,
511 1.16.2.2 christos struct uvm_object **, int *);
512 1.16.2.2 christos static int audiostat(struct file *, struct stat *);
513 1.16.2.2 christos
514 1.16.2.2 christos static void filt_audiowrite_detach(struct knote *);
515 1.16.2.2 christos static int filt_audiowrite_event(struct knote *, long);
516 1.16.2.2 christos static void filt_audioread_detach(struct knote *);
517 1.16.2.2 christos static int filt_audioread_event(struct knote *, long);
518 1.16.2.2 christos
519 1.16.2.2 christos static int audio_open(dev_t, struct audio_softc *, int, int, struct lwp *,
520 1.16.2.2 christos struct audiobell_arg *);
521 1.16.2.2 christos static int audio_close(struct audio_softc *, audio_file_t *);
522 1.16.2.2 christos static int audio_read(struct audio_softc *, struct uio *, int, audio_file_t *);
523 1.16.2.2 christos static int audio_write(struct audio_softc *, struct uio *, int, audio_file_t *);
524 1.16.2.2 christos static void audio_file_clear(struct audio_softc *, audio_file_t *);
525 1.16.2.2 christos static int audio_ioctl(dev_t, struct audio_softc *, u_long, void *, int,
526 1.16.2.2 christos struct lwp *, audio_file_t *);
527 1.16.2.2 christos static int audio_poll(struct audio_softc *, int, struct lwp *, audio_file_t *);
528 1.16.2.2 christos static int audio_kqfilter(struct audio_softc *, audio_file_t *, struct knote *);
529 1.16.2.2 christos static int audio_mmap(struct audio_softc *, off_t *, size_t, int, int *, int *,
530 1.16.2.2 christos struct uvm_object **, int *, audio_file_t *);
531 1.16.2.2 christos
532 1.16.2.2 christos static int audioctl_open(dev_t, struct audio_softc *, int, int, struct lwp *);
533 1.16.2.2 christos
534 1.16.2.2 christos static void audio_pintr(void *);
535 1.16.2.2 christos static void audio_rintr(void *);
536 1.16.2.2 christos
537 1.16.2.2 christos static int audio_query_devinfo(struct audio_softc *, mixer_devinfo_t *);
538 1.16.2.2 christos
539 1.16.2.2 christos static __inline int audio_track_readablebytes(const audio_track_t *);
540 1.16.2.2 christos static int audio_file_setinfo(struct audio_softc *, audio_file_t *,
541 1.16.2.2 christos const struct audio_info *);
542 1.16.2.2 christos static int audio_track_setinfo_check(audio_format2_t *,
543 1.16.2.2 christos const struct audio_prinfo *);
544 1.16.2.2 christos static void audio_track_setinfo_water(audio_track_t *,
545 1.16.2.2 christos const struct audio_info *);
546 1.16.2.2 christos static int audio_hw_setinfo(struct audio_softc *, const struct audio_info *,
547 1.16.2.2 christos struct audio_info *);
548 1.16.2.2 christos static int audio_hw_set_format(struct audio_softc *, int,
549 1.16.2.2 christos audio_format2_t *, audio_format2_t *,
550 1.16.2.2 christos audio_filter_reg_t *, audio_filter_reg_t *);
551 1.16.2.2 christos static int audiogetinfo(struct audio_softc *, struct audio_info *, int,
552 1.16.2.2 christos audio_file_t *);
553 1.16.2.2 christos static int audio_get_props(struct audio_softc *);
554 1.16.2.2 christos static bool audio_can_playback(struct audio_softc *);
555 1.16.2.2 christos static bool audio_can_capture(struct audio_softc *);
556 1.16.2.2 christos static int audio_check_params(audio_format2_t *);
557 1.16.2.2 christos static int audio_mixers_init(struct audio_softc *sc, int,
558 1.16.2.2 christos const audio_format2_t *, const audio_format2_t *,
559 1.16.2.2 christos const audio_filter_reg_t *, const audio_filter_reg_t *);
560 1.16.2.2 christos static int audio_select_freq(const struct audio_format *);
561 1.16.2.2 christos static int audio_hw_probe(struct audio_softc *, int, int *,
562 1.16.2.2 christos audio_format2_t *, audio_format2_t *);
563 1.16.2.2 christos static int audio_hw_probe_fmt(struct audio_softc *, audio_format2_t *, int);
564 1.16.2.2 christos static int audio_hw_validate_format(struct audio_softc *, int,
565 1.16.2.2 christos const audio_format2_t *);
566 1.16.2.2 christos static int audio_mixers_set_format(struct audio_softc *,
567 1.16.2.2 christos const struct audio_info *);
568 1.16.2.2 christos static void audio_mixers_get_format(struct audio_softc *, struct audio_info *);
569 1.16.2.2 christos static int audio_sysctl_volume(SYSCTLFN_PROTO);
570 1.16.2.2 christos static int audio_sysctl_blk_ms(SYSCTLFN_PROTO);
571 1.16.2.2 christos static int audio_sysctl_multiuser(SYSCTLFN_PROTO);
572 1.16.2.2 christos #if defined(AUDIO_DEBUG)
573 1.16.2.2 christos static int audio_sysctl_debug(SYSCTLFN_PROTO);
574 1.16.2.2 christos static void audio_format2_tostr(char *, size_t, const audio_format2_t *);
575 1.16.2.2 christos static void audio_print_format2(const char *, const audio_format2_t *) __unused;
576 1.16.2.2 christos #endif
577 1.16.2.2 christos
578 1.16.2.2 christos static void *audio_realloc(void *, size_t);
579 1.16.2.2 christos static int audio_realloc_usrbuf(audio_track_t *, int);
580 1.16.2.2 christos static void audio_free_usrbuf(audio_track_t *);
581 1.16.2.2 christos
582 1.16.2.2 christos static audio_track_t *audio_track_create(struct audio_softc *,
583 1.16.2.2 christos audio_trackmixer_t *);
584 1.16.2.2 christos static void audio_track_destroy(audio_track_t *);
585 1.16.2.2 christos static audio_filter_t audio_track_get_codec(audio_track_t *,
586 1.16.2.2 christos const audio_format2_t *, const audio_format2_t *);
587 1.16.2.2 christos static int audio_track_set_format(audio_track_t *, audio_format2_t *);
588 1.16.2.2 christos static void audio_track_play(audio_track_t *);
589 1.16.2.2 christos static int audio_track_drain(struct audio_softc *, audio_track_t *);
590 1.16.2.2 christos static void audio_track_record(audio_track_t *);
591 1.16.2.2 christos static void audio_track_clear(struct audio_softc *, audio_track_t *);
592 1.16.2.2 christos
593 1.16.2.2 christos static int audio_mixer_init(struct audio_softc *, int,
594 1.16.2.2 christos const audio_format2_t *, const audio_filter_reg_t *);
595 1.16.2.2 christos static void audio_mixer_destroy(struct audio_softc *, audio_trackmixer_t *);
596 1.16.2.2 christos static void audio_pmixer_start(struct audio_softc *, bool);
597 1.16.2.2 christos static void audio_pmixer_process(struct audio_softc *);
598 1.16.2.2 christos static int audio_pmixer_mix_track(audio_trackmixer_t *, audio_track_t *, int);
599 1.16.2.2 christos static void audio_pmixer_output(struct audio_softc *);
600 1.16.2.2 christos static int audio_pmixer_halt(struct audio_softc *);
601 1.16.2.2 christos static void audio_rmixer_start(struct audio_softc *);
602 1.16.2.2 christos static void audio_rmixer_process(struct audio_softc *);
603 1.16.2.2 christos static void audio_rmixer_input(struct audio_softc *);
604 1.16.2.2 christos static int audio_rmixer_halt(struct audio_softc *);
605 1.16.2.2 christos
606 1.16.2.2 christos static void mixer_init(struct audio_softc *);
607 1.16.2.2 christos static int mixer_open(dev_t, struct audio_softc *, int, int, struct lwp *);
608 1.16.2.2 christos static int mixer_close(struct audio_softc *, audio_file_t *);
609 1.16.2.2 christos static int mixer_ioctl(struct audio_softc *, u_long, void *, int, struct lwp *);
610 1.16.2.2 christos static void mixer_remove(struct audio_softc *);
611 1.16.2.2 christos static void mixer_signal(struct audio_softc *);
612 1.16.2.2 christos
613 1.16.2.2 christos static int au_portof(struct audio_softc *, char *, int);
614 1.16.2.2 christos
615 1.16.2.2 christos static void au_setup_ports(struct audio_softc *, struct au_mixer_ports *,
616 1.16.2.2 christos mixer_devinfo_t *, const struct portname *);
617 1.16.2.2 christos static int au_set_lr_value(struct audio_softc *, mixer_ctrl_t *, int, int);
618 1.16.2.2 christos static int au_get_lr_value(struct audio_softc *, mixer_ctrl_t *, int *, int *);
619 1.16.2.2 christos static int au_set_gain(struct audio_softc *, struct au_mixer_ports *, int, int);
620 1.16.2.2 christos static void au_get_gain(struct audio_softc *, struct au_mixer_ports *,
621 1.16.2.2 christos u_int *, u_char *);
622 1.16.2.2 christos static int au_set_port(struct audio_softc *, struct au_mixer_ports *, u_int);
623 1.16.2.2 christos static int au_get_port(struct audio_softc *, struct au_mixer_ports *);
624 1.16.2.2 christos static int au_set_monitor_gain(struct audio_softc *, int);
625 1.16.2.2 christos static int au_get_monitor_gain(struct audio_softc *);
626 1.16.2.2 christos static int audio_get_port(struct audio_softc *, mixer_ctrl_t *);
627 1.16.2.2 christos static int audio_set_port(struct audio_softc *, mixer_ctrl_t *);
628 1.16.2.2 christos
629 1.16.2.2 christos static __inline struct audio_params
630 1.16.2.2 christos format2_to_params(const audio_format2_t *f2)
631 1.16.2.2 christos {
632 1.16.2.2 christos audio_params_t p;
633 1.16.2.2 christos
634 1.16.2.2 christos /* validbits/precision <-> precision/stride */
635 1.16.2.2 christos p.sample_rate = f2->sample_rate;
636 1.16.2.2 christos p.channels = f2->channels;
637 1.16.2.2 christos p.encoding = f2->encoding;
638 1.16.2.2 christos p.validbits = f2->precision;
639 1.16.2.2 christos p.precision = f2->stride;
640 1.16.2.2 christos return p;
641 1.16.2.2 christos }
642 1.16.2.2 christos
643 1.16.2.2 christos static __inline audio_format2_t
644 1.16.2.2 christos params_to_format2(const struct audio_params *p)
645 1.16.2.2 christos {
646 1.16.2.2 christos audio_format2_t f2;
647 1.16.2.2 christos
648 1.16.2.2 christos /* precision/stride <-> validbits/precision */
649 1.16.2.2 christos f2.sample_rate = p->sample_rate;
650 1.16.2.2 christos f2.channels = p->channels;
651 1.16.2.2 christos f2.encoding = p->encoding;
652 1.16.2.2 christos f2.precision = p->validbits;
653 1.16.2.2 christos f2.stride = p->precision;
654 1.16.2.2 christos return f2;
655 1.16.2.2 christos }
656 1.16.2.2 christos
657 1.16.2.2 christos /* Return true if this track is a playback track. */
658 1.16.2.2 christos static __inline bool
659 1.16.2.2 christos audio_track_is_playback(const audio_track_t *track)
660 1.16.2.2 christos {
661 1.16.2.2 christos
662 1.16.2.2 christos return ((track->mode & AUMODE_PLAY) != 0);
663 1.16.2.2 christos }
664 1.16.2.2 christos
665 1.16.2.2 christos /* Return true if this track is a recording track. */
666 1.16.2.2 christos static __inline bool
667 1.16.2.2 christos audio_track_is_record(const audio_track_t *track)
668 1.16.2.2 christos {
669 1.16.2.2 christos
670 1.16.2.2 christos return ((track->mode & AUMODE_RECORD) != 0);
671 1.16.2.2 christos }
672 1.16.2.2 christos
673 1.16.2.2 christos #if 0 /* XXX Not used yet */
674 1.16.2.2 christos /*
675 1.16.2.2 christos * Convert 0..255 volume used in userland to internal presentation 0..256.
676 1.16.2.2 christos */
677 1.16.2.2 christos static __inline u_int
678 1.16.2.2 christos audio_volume_to_inner(u_int v)
679 1.16.2.2 christos {
680 1.16.2.2 christos
681 1.16.2.2 christos return v < 127 ? v : v + 1;
682 1.16.2.2 christos }
683 1.16.2.2 christos
684 1.16.2.2 christos /*
685 1.16.2.2 christos * Convert 0..256 internal presentation to 0..255 volume used in userland.
686 1.16.2.2 christos */
687 1.16.2.2 christos static __inline u_int
688 1.16.2.2 christos audio_volume_to_outer(u_int v)
689 1.16.2.2 christos {
690 1.16.2.2 christos
691 1.16.2.2 christos return v < 127 ? v : v - 1;
692 1.16.2.2 christos }
693 1.16.2.2 christos #endif /* 0 */
694 1.16.2.2 christos
695 1.16.2.2 christos static dev_type_open(audioopen);
696 1.16.2.2 christos /* XXXMRG use more dev_type_xxx */
697 1.16.2.2 christos
698 1.16.2.2 christos const struct cdevsw audio_cdevsw = {
699 1.16.2.2 christos .d_open = audioopen,
700 1.16.2.2 christos .d_close = noclose,
701 1.16.2.2 christos .d_read = noread,
702 1.16.2.2 christos .d_write = nowrite,
703 1.16.2.2 christos .d_ioctl = noioctl,
704 1.16.2.2 christos .d_stop = nostop,
705 1.16.2.2 christos .d_tty = notty,
706 1.16.2.2 christos .d_poll = nopoll,
707 1.16.2.2 christos .d_mmap = nommap,
708 1.16.2.2 christos .d_kqfilter = nokqfilter,
709 1.16.2.2 christos .d_discard = nodiscard,
710 1.16.2.2 christos .d_flag = D_OTHER | D_MPSAFE
711 1.16.2.2 christos };
712 1.16.2.2 christos
713 1.16.2.2 christos const struct fileops audio_fileops = {
714 1.16.2.2 christos .fo_name = "audio",
715 1.16.2.2 christos .fo_read = audioread,
716 1.16.2.2 christos .fo_write = audiowrite,
717 1.16.2.2 christos .fo_ioctl = audioioctl,
718 1.16.2.2 christos .fo_fcntl = fnullop_fcntl,
719 1.16.2.2 christos .fo_stat = audiostat,
720 1.16.2.2 christos .fo_poll = audiopoll,
721 1.16.2.2 christos .fo_close = audioclose,
722 1.16.2.2 christos .fo_mmap = audiommap,
723 1.16.2.2 christos .fo_kqfilter = audiokqfilter,
724 1.16.2.2 christos .fo_restart = fnullop_restart
725 1.16.2.2 christos };
726 1.16.2.2 christos
727 1.16.2.2 christos /* The default audio mode: 8 kHz mono mu-law */
728 1.16.2.2 christos static const struct audio_params audio_default = {
729 1.16.2.2 christos .sample_rate = 8000,
730 1.16.2.2 christos .encoding = AUDIO_ENCODING_ULAW,
731 1.16.2.2 christos .precision = 8,
732 1.16.2.2 christos .validbits = 8,
733 1.16.2.2 christos .channels = 1,
734 1.16.2.2 christos };
735 1.16.2.2 christos
736 1.16.2.2 christos static const char *encoding_names[] = {
737 1.16.2.2 christos "none",
738 1.16.2.2 christos AudioEmulaw,
739 1.16.2.2 christos AudioEalaw,
740 1.16.2.2 christos "pcm16",
741 1.16.2.2 christos "pcm8",
742 1.16.2.2 christos AudioEadpcm,
743 1.16.2.2 christos AudioEslinear_le,
744 1.16.2.2 christos AudioEslinear_be,
745 1.16.2.2 christos AudioEulinear_le,
746 1.16.2.2 christos AudioEulinear_be,
747 1.16.2.2 christos AudioEslinear,
748 1.16.2.2 christos AudioEulinear,
749 1.16.2.2 christos AudioEmpeg_l1_stream,
750 1.16.2.2 christos AudioEmpeg_l1_packets,
751 1.16.2.2 christos AudioEmpeg_l1_system,
752 1.16.2.2 christos AudioEmpeg_l2_stream,
753 1.16.2.2 christos AudioEmpeg_l2_packets,
754 1.16.2.2 christos AudioEmpeg_l2_system,
755 1.16.2.2 christos AudioEac3,
756 1.16.2.2 christos };
757 1.16.2.2 christos
758 1.16.2.2 christos /*
759 1.16.2.2 christos * Returns encoding name corresponding to AUDIO_ENCODING_*.
760 1.16.2.2 christos * Note that it may return a local buffer because it is mainly for debugging.
761 1.16.2.2 christos */
762 1.16.2.2 christos const char *
763 1.16.2.2 christos audio_encoding_name(int encoding)
764 1.16.2.2 christos {
765 1.16.2.2 christos static char buf[16];
766 1.16.2.2 christos
767 1.16.2.2 christos if (0 <= encoding && encoding < __arraycount(encoding_names)) {
768 1.16.2.2 christos return encoding_names[encoding];
769 1.16.2.2 christos } else {
770 1.16.2.2 christos snprintf(buf, sizeof(buf), "enc=%d", encoding);
771 1.16.2.2 christos return buf;
772 1.16.2.2 christos }
773 1.16.2.2 christos }
774 1.16.2.2 christos
775 1.16.2.2 christos /*
776 1.16.2.2 christos * Supported encodings used by AUDIO_GETENC.
777 1.16.2.2 christos * index and flags are set by code.
778 1.16.2.2 christos * XXX is there any needs for SLINEAR_OE:>=16/ULINEAR_OE:>=16 ?
779 1.16.2.2 christos */
780 1.16.2.2 christos static const audio_encoding_t audio_encodings[] = {
781 1.16.2.2 christos { 0, AudioEmulaw, AUDIO_ENCODING_ULAW, 8, 0 },
782 1.16.2.2 christos { 0, AudioEalaw, AUDIO_ENCODING_ALAW, 8, 0 },
783 1.16.2.2 christos { 0, AudioEslinear, AUDIO_ENCODING_SLINEAR, 8, 0 },
784 1.16.2.2 christos { 0, AudioEulinear, AUDIO_ENCODING_ULINEAR, 8, 0 },
785 1.16.2.2 christos { 0, AudioEslinear_le, AUDIO_ENCODING_SLINEAR_LE, 16, 0 },
786 1.16.2.2 christos { 0, AudioEulinear_le, AUDIO_ENCODING_ULINEAR_LE, 16, 0 },
787 1.16.2.2 christos { 0, AudioEslinear_be, AUDIO_ENCODING_SLINEAR_BE, 16, 0 },
788 1.16.2.2 christos { 0, AudioEulinear_be, AUDIO_ENCODING_ULINEAR_BE, 16, 0 },
789 1.16.2.2 christos #if defined(AUDIO_SUPPORT_LINEAR24)
790 1.16.2.2 christos { 0, AudioEslinear_le, AUDIO_ENCODING_SLINEAR_LE, 24, 0 },
791 1.16.2.2 christos { 0, AudioEulinear_le, AUDIO_ENCODING_ULINEAR_LE, 24, 0 },
792 1.16.2.2 christos { 0, AudioEslinear_be, AUDIO_ENCODING_SLINEAR_BE, 24, 0 },
793 1.16.2.2 christos { 0, AudioEulinear_be, AUDIO_ENCODING_ULINEAR_BE, 24, 0 },
794 1.16.2.2 christos #endif
795 1.16.2.2 christos { 0, AudioEslinear_le, AUDIO_ENCODING_SLINEAR_LE, 32, 0 },
796 1.16.2.2 christos { 0, AudioEulinear_le, AUDIO_ENCODING_ULINEAR_LE, 32, 0 },
797 1.16.2.2 christos { 0, AudioEslinear_be, AUDIO_ENCODING_SLINEAR_BE, 32, 0 },
798 1.16.2.2 christos { 0, AudioEulinear_be, AUDIO_ENCODING_ULINEAR_BE, 32, 0 },
799 1.16.2.2 christos };
800 1.16.2.2 christos
801 1.16.2.2 christos static const struct portname itable[] = {
802 1.16.2.2 christos { AudioNmicrophone, AUDIO_MICROPHONE },
803 1.16.2.2 christos { AudioNline, AUDIO_LINE_IN },
804 1.16.2.2 christos { AudioNcd, AUDIO_CD },
805 1.16.2.2 christos { 0, 0 }
806 1.16.2.2 christos };
807 1.16.2.2 christos static const struct portname otable[] = {
808 1.16.2.2 christos { AudioNspeaker, AUDIO_SPEAKER },
809 1.16.2.2 christos { AudioNheadphone, AUDIO_HEADPHONE },
810 1.16.2.2 christos { AudioNline, AUDIO_LINE_OUT },
811 1.16.2.2 christos { 0, 0 }
812 1.16.2.2 christos };
813 1.16.2.2 christos
814 1.16.2.2 christos CFATTACH_DECL3_NEW(audio, sizeof(struct audio_softc),
815 1.16.2.2 christos audiomatch, audioattach, audiodetach, audioactivate, audiorescan,
816 1.16.2.2 christos audiochilddet, DVF_DETACH_SHUTDOWN);
817 1.16.2.2 christos
818 1.16.2.2 christos static int
819 1.16.2.2 christos audiomatch(device_t parent, cfdata_t match, void *aux)
820 1.16.2.2 christos {
821 1.16.2.2 christos struct audio_attach_args *sa;
822 1.16.2.2 christos
823 1.16.2.2 christos sa = aux;
824 1.16.2.2 christos DPRINTF(1, "%s: type=%d sa=%p hw=%p\n",
825 1.16.2.2 christos __func__, sa->type, sa, sa->hwif);
826 1.16.2.2 christos return (sa->type == AUDIODEV_TYPE_AUDIO) ? 1 : 0;
827 1.16.2.2 christos }
828 1.16.2.2 christos
829 1.16.2.2 christos static void
830 1.16.2.2 christos audioattach(device_t parent, device_t self, void *aux)
831 1.16.2.2 christos {
832 1.16.2.2 christos struct audio_softc *sc;
833 1.16.2.2 christos struct audio_attach_args *sa;
834 1.16.2.2 christos const struct audio_hw_if *hw_if;
835 1.16.2.2 christos audio_format2_t phwfmt;
836 1.16.2.2 christos audio_format2_t rhwfmt;
837 1.16.2.2 christos audio_filter_reg_t pfil;
838 1.16.2.2 christos audio_filter_reg_t rfil;
839 1.16.2.2 christos const struct sysctlnode *node;
840 1.16.2.2 christos void *hdlp;
841 1.16.2.2 christos bool has_playback;
842 1.16.2.2 christos bool has_capture;
843 1.16.2.2 christos bool has_indep;
844 1.16.2.2 christos bool has_fulldup;
845 1.16.2.2 christos int mode;
846 1.16.2.2 christos int props;
847 1.16.2.2 christos int error;
848 1.16.2.2 christos
849 1.16.2.2 christos sc = device_private(self);
850 1.16.2.2 christos sc->sc_dev = self;
851 1.16.2.2 christos sa = (struct audio_attach_args *)aux;
852 1.16.2.2 christos hw_if = sa->hwif;
853 1.16.2.2 christos hdlp = sa->hdl;
854 1.16.2.2 christos
855 1.16.2.2 christos if (hw_if == NULL || hw_if->get_locks == NULL) {
856 1.16.2.2 christos panic("audioattach: missing hw_if method");
857 1.16.2.2 christos }
858 1.16.2.2 christos
859 1.16.2.2 christos hw_if->get_locks(hdlp, &sc->sc_intr_lock, &sc->sc_lock);
860 1.16.2.2 christos
861 1.16.2.2 christos #ifdef DIAGNOSTIC
862 1.16.2.2 christos if (hw_if->query_format == NULL ||
863 1.16.2.2 christos hw_if->set_format == NULL ||
864 1.16.2.2 christos (hw_if->start_output == NULL && hw_if->trigger_output == NULL) ||
865 1.16.2.2 christos (hw_if->start_input == NULL && hw_if->trigger_input == NULL) ||
866 1.16.2.2 christos hw_if->halt_output == NULL ||
867 1.16.2.2 christos hw_if->halt_input == NULL ||
868 1.16.2.2 christos hw_if->getdev == NULL ||
869 1.16.2.2 christos hw_if->set_port == NULL ||
870 1.16.2.2 christos hw_if->get_port == NULL ||
871 1.16.2.2 christos hw_if->query_devinfo == NULL ||
872 1.16.2.2 christos hw_if->get_props == NULL) {
873 1.16.2.2 christos aprint_error(": missing method\n");
874 1.16.2.2 christos return;
875 1.16.2.2 christos }
876 1.16.2.2 christos #endif
877 1.16.2.2 christos
878 1.16.2.2 christos sc->hw_if = hw_if;
879 1.16.2.2 christos sc->hw_hdl = hdlp;
880 1.16.2.2 christos sc->hw_dev = parent;
881 1.16.2.2 christos
882 1.16.2.2 christos sc->sc_blk_ms = AUDIO_BLK_MS;
883 1.16.2.2 christos SLIST_INIT(&sc->sc_files);
884 1.16.2.2 christos cv_init(&sc->sc_exlockcv, "audiolk");
885 1.16.2.2 christos
886 1.16.2.2 christos mutex_enter(sc->sc_lock);
887 1.16.2.2 christos props = audio_get_props(sc);
888 1.16.2.2 christos mutex_exit(sc->sc_lock);
889 1.16.2.2 christos
890 1.16.2.2 christos has_playback = (props & AUDIO_PROP_PLAYBACK);
891 1.16.2.2 christos has_capture = (props & AUDIO_PROP_CAPTURE);
892 1.16.2.2 christos has_indep = (props & AUDIO_PROP_INDEPENDENT);
893 1.16.2.2 christos has_fulldup = (props & AUDIO_PROP_FULLDUPLEX);
894 1.16.2.2 christos
895 1.16.2.2 christos KASSERT(has_playback || has_capture);
896 1.16.2.2 christos /* Unidirectional device must have neither FULLDUP nor INDEPENDENT. */
897 1.16.2.2 christos if (!has_playback || !has_capture) {
898 1.16.2.2 christos KASSERT(!has_indep);
899 1.16.2.2 christos KASSERT(!has_fulldup);
900 1.16.2.2 christos }
901 1.16.2.2 christos
902 1.16.2.2 christos mode = 0;
903 1.16.2.2 christos if (has_playback) {
904 1.16.2.2 christos aprint_normal(": playback");
905 1.16.2.2 christos mode |= AUMODE_PLAY;
906 1.16.2.2 christos }
907 1.16.2.2 christos if (has_capture) {
908 1.16.2.2 christos aprint_normal("%c capture", has_playback ? ',' : ':');
909 1.16.2.2 christos mode |= AUMODE_RECORD;
910 1.16.2.2 christos }
911 1.16.2.2 christos if (has_playback && has_capture) {
912 1.16.2.2 christos if (has_fulldup)
913 1.16.2.2 christos aprint_normal(", full duplex");
914 1.16.2.2 christos else
915 1.16.2.2 christos aprint_normal(", half duplex");
916 1.16.2.2 christos
917 1.16.2.2 christos if (has_indep)
918 1.16.2.2 christos aprint_normal(", independent");
919 1.16.2.2 christos }
920 1.16.2.2 christos
921 1.16.2.2 christos aprint_naive("\n");
922 1.16.2.2 christos aprint_normal("\n");
923 1.16.2.2 christos
924 1.16.2.2 christos /* probe hw params */
925 1.16.2.2 christos memset(&phwfmt, 0, sizeof(phwfmt));
926 1.16.2.2 christos memset(&rhwfmt, 0, sizeof(rhwfmt));
927 1.16.2.2 christos memset(&pfil, 0, sizeof(pfil));
928 1.16.2.2 christos memset(&rfil, 0, sizeof(rfil));
929 1.16.2.2 christos mutex_enter(sc->sc_lock);
930 1.16.2.2 christos error = audio_hw_probe(sc, has_indep, &mode, &phwfmt, &rhwfmt);
931 1.16.2.2 christos if (error) {
932 1.16.2.2 christos mutex_exit(sc->sc_lock);
933 1.16.2.2 christos aprint_error_dev(self, "audio_hw_probe failed, "
934 1.16.2.2 christos "error = %d\n", error);
935 1.16.2.2 christos goto bad;
936 1.16.2.2 christos }
937 1.16.2.2 christos if (mode == 0) {
938 1.16.2.2 christos mutex_exit(sc->sc_lock);
939 1.16.2.2 christos aprint_error_dev(self, "audio_hw_probe failed, no mode\n");
940 1.16.2.2 christos goto bad;
941 1.16.2.2 christos }
942 1.16.2.2 christos /* Init hardware. */
943 1.16.2.2 christos /* hw_probe() also validates [pr]hwfmt. */
944 1.16.2.2 christos error = audio_hw_set_format(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
945 1.16.2.2 christos if (error) {
946 1.16.2.2 christos mutex_exit(sc->sc_lock);
947 1.16.2.2 christos aprint_error_dev(self, "audio_hw_set_format failed, "
948 1.16.2.2 christos "error = %d\n", error);
949 1.16.2.2 christos goto bad;
950 1.16.2.2 christos }
951 1.16.2.2 christos
952 1.16.2.2 christos /*
953 1.16.2.2 christos * Init track mixers. If at least one direction is available on
954 1.16.2.2 christos * attach time, we assume a success.
955 1.16.2.2 christos */
956 1.16.2.2 christos error = audio_mixers_init(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
957 1.16.2.2 christos mutex_exit(sc->sc_lock);
958 1.16.2.2 christos if (sc->sc_pmixer == NULL && sc->sc_rmixer == NULL) {
959 1.16.2.2 christos aprint_error_dev(self, "audio_mixers_init failed, "
960 1.16.2.2 christos "error = %d\n", error);
961 1.16.2.2 christos goto bad;
962 1.16.2.2 christos }
963 1.16.2.2 christos
964 1.16.2.2 christos selinit(&sc->sc_wsel);
965 1.16.2.2 christos selinit(&sc->sc_rsel);
966 1.16.2.2 christos
967 1.16.2.2 christos /* Initial parameter of /dev/sound */
968 1.16.2.2 christos sc->sc_sound_pparams = params_to_format2(&audio_default);
969 1.16.2.2 christos sc->sc_sound_rparams = params_to_format2(&audio_default);
970 1.16.2.2 christos sc->sc_sound_ppause = false;
971 1.16.2.2 christos sc->sc_sound_rpause = false;
972 1.16.2.2 christos
973 1.16.2.2 christos /* XXX TODO: consider about sc_ai */
974 1.16.2.2 christos
975 1.16.2.2 christos mixer_init(sc);
976 1.16.2.2 christos TRACE(2, "inputs ports=0x%x, input master=%d, "
977 1.16.2.2 christos "output ports=0x%x, output master=%d",
978 1.16.2.2 christos sc->sc_inports.allports, sc->sc_inports.master,
979 1.16.2.2 christos sc->sc_outports.allports, sc->sc_outports.master);
980 1.16.2.2 christos
981 1.16.2.2 christos sysctl_createv(&sc->sc_log, 0, NULL, &node,
982 1.16.2.2 christos 0,
983 1.16.2.2 christos CTLTYPE_NODE, device_xname(sc->sc_dev),
984 1.16.2.2 christos SYSCTL_DESCR("audio test"),
985 1.16.2.2 christos NULL, 0,
986 1.16.2.2 christos NULL, 0,
987 1.16.2.2 christos CTL_HW,
988 1.16.2.2 christos CTL_CREATE, CTL_EOL);
989 1.16.2.2 christos
990 1.16.2.2 christos if (node != NULL) {
991 1.16.2.2 christos sysctl_createv(&sc->sc_log, 0, NULL, NULL,
992 1.16.2.2 christos CTLFLAG_READWRITE,
993 1.16.2.2 christos CTLTYPE_INT, "volume",
994 1.16.2.2 christos SYSCTL_DESCR("software volume test"),
995 1.16.2.2 christos audio_sysctl_volume, 0, (void *)sc, 0,
996 1.16.2.2 christos CTL_HW, node->sysctl_num, CTL_CREATE, CTL_EOL);
997 1.16.2.2 christos
998 1.16.2.2 christos sysctl_createv(&sc->sc_log, 0, NULL, NULL,
999 1.16.2.2 christos CTLFLAG_READWRITE,
1000 1.16.2.2 christos CTLTYPE_INT, "blk_ms",
1001 1.16.2.2 christos SYSCTL_DESCR("blocksize in msec"),
1002 1.16.2.2 christos audio_sysctl_blk_ms, 0, (void *)sc, 0,
1003 1.16.2.2 christos CTL_HW, node->sysctl_num, CTL_CREATE, CTL_EOL);
1004 1.16.2.2 christos
1005 1.16.2.2 christos sysctl_createv(&sc->sc_log, 0, NULL, NULL,
1006 1.16.2.2 christos CTLFLAG_READWRITE,
1007 1.16.2.2 christos CTLTYPE_BOOL, "multiuser",
1008 1.16.2.2 christos SYSCTL_DESCR("allow multiple user access"),
1009 1.16.2.2 christos audio_sysctl_multiuser, 0, (void *)sc, 0,
1010 1.16.2.2 christos CTL_HW, node->sysctl_num, CTL_CREATE, CTL_EOL);
1011 1.16.2.2 christos
1012 1.16.2.2 christos #if defined(AUDIO_DEBUG)
1013 1.16.2.2 christos sysctl_createv(&sc->sc_log, 0, NULL, NULL,
1014 1.16.2.2 christos CTLFLAG_READWRITE,
1015 1.16.2.2 christos CTLTYPE_INT, "debug",
1016 1.16.2.2 christos SYSCTL_DESCR("debug level (0..4)"),
1017 1.16.2.2 christos audio_sysctl_debug, 0, (void *)sc, 0,
1018 1.16.2.2 christos CTL_HW, node->sysctl_num, CTL_CREATE, CTL_EOL);
1019 1.16.2.2 christos #endif
1020 1.16.2.2 christos }
1021 1.16.2.2 christos
1022 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
1023 1.16.2.2 christos callout_init(&sc->sc_idle_counter, 0);
1024 1.16.2.2 christos callout_setfunc(&sc->sc_idle_counter, audio_idle, self);
1025 1.16.2.2 christos #endif
1026 1.16.2.2 christos
1027 1.16.2.2 christos if (!pmf_device_register(self, audio_suspend, audio_resume))
1028 1.16.2.2 christos aprint_error_dev(self, "couldn't establish power handler\n");
1029 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
1030 1.16.2.2 christos if (!device_active_register(self, audio_activity))
1031 1.16.2.2 christos aprint_error_dev(self, "couldn't register activity handler\n");
1032 1.16.2.2 christos #endif
1033 1.16.2.2 christos
1034 1.16.2.2 christos if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_DOWN,
1035 1.16.2.2 christos audio_volume_down, true))
1036 1.16.2.2 christos aprint_error_dev(self, "couldn't add volume down handler\n");
1037 1.16.2.2 christos if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_UP,
1038 1.16.2.2 christos audio_volume_up, true))
1039 1.16.2.2 christos aprint_error_dev(self, "couldn't add volume up handler\n");
1040 1.16.2.2 christos if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_TOGGLE,
1041 1.16.2.2 christos audio_volume_toggle, true))
1042 1.16.2.2 christos aprint_error_dev(self, "couldn't add volume toggle handler\n");
1043 1.16.2.2 christos
1044 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
1045 1.16.2.2 christos callout_schedule(&sc->sc_idle_counter, audio_idle_timeout * hz);
1046 1.16.2.2 christos #endif
1047 1.16.2.2 christos
1048 1.16.2.2 christos #if defined(AUDIO_DEBUG)
1049 1.16.2.2 christos audio_mlog_init();
1050 1.16.2.2 christos #endif
1051 1.16.2.2 christos
1052 1.16.2.2 christos audiorescan(self, "audio", NULL);
1053 1.16.2.2 christos return;
1054 1.16.2.2 christos
1055 1.16.2.2 christos bad:
1056 1.16.2.2 christos /* Clearing hw_if means that device is attached but disabled. */
1057 1.16.2.2 christos sc->hw_if = NULL;
1058 1.16.2.2 christos aprint_error_dev(sc->sc_dev, "disabled\n");
1059 1.16.2.2 christos return;
1060 1.16.2.2 christos }
1061 1.16.2.2 christos
1062 1.16.2.2 christos /*
1063 1.16.2.2 christos * Initialize hardware mixer.
1064 1.16.2.2 christos * This function is called from audioattach().
1065 1.16.2.2 christos */
1066 1.16.2.2 christos static void
1067 1.16.2.2 christos mixer_init(struct audio_softc *sc)
1068 1.16.2.2 christos {
1069 1.16.2.2 christos mixer_devinfo_t mi;
1070 1.16.2.2 christos int iclass, mclass, oclass, rclass;
1071 1.16.2.2 christos int record_master_found, record_source_found;
1072 1.16.2.2 christos
1073 1.16.2.2 christos iclass = mclass = oclass = rclass = -1;
1074 1.16.2.2 christos sc->sc_inports.index = -1;
1075 1.16.2.2 christos sc->sc_inports.master = -1;
1076 1.16.2.2 christos sc->sc_inports.nports = 0;
1077 1.16.2.2 christos sc->sc_inports.isenum = false;
1078 1.16.2.2 christos sc->sc_inports.allports = 0;
1079 1.16.2.2 christos sc->sc_inports.isdual = false;
1080 1.16.2.2 christos sc->sc_inports.mixerout = -1;
1081 1.16.2.2 christos sc->sc_inports.cur_port = -1;
1082 1.16.2.2 christos sc->sc_outports.index = -1;
1083 1.16.2.2 christos sc->sc_outports.master = -1;
1084 1.16.2.2 christos sc->sc_outports.nports = 0;
1085 1.16.2.2 christos sc->sc_outports.isenum = false;
1086 1.16.2.2 christos sc->sc_outports.allports = 0;
1087 1.16.2.2 christos sc->sc_outports.isdual = false;
1088 1.16.2.2 christos sc->sc_outports.mixerout = -1;
1089 1.16.2.2 christos sc->sc_outports.cur_port = -1;
1090 1.16.2.2 christos sc->sc_monitor_port = -1;
1091 1.16.2.2 christos /*
1092 1.16.2.2 christos * Read through the underlying driver's list, picking out the class
1093 1.16.2.2 christos * names from the mixer descriptions. We'll need them to decode the
1094 1.16.2.2 christos * mixer descriptions on the next pass through the loop.
1095 1.16.2.2 christos */
1096 1.16.2.2 christos mutex_enter(sc->sc_lock);
1097 1.16.2.2 christos for(mi.index = 0; ; mi.index++) {
1098 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) != 0)
1099 1.16.2.2 christos break;
1100 1.16.2.2 christos /*
1101 1.16.2.2 christos * The type of AUDIO_MIXER_CLASS merely introduces a class.
1102 1.16.2.2 christos * All the other types describe an actual mixer.
1103 1.16.2.2 christos */
1104 1.16.2.2 christos if (mi.type == AUDIO_MIXER_CLASS) {
1105 1.16.2.2 christos if (strcmp(mi.label.name, AudioCinputs) == 0)
1106 1.16.2.2 christos iclass = mi.mixer_class;
1107 1.16.2.2 christos if (strcmp(mi.label.name, AudioCmonitor) == 0)
1108 1.16.2.2 christos mclass = mi.mixer_class;
1109 1.16.2.2 christos if (strcmp(mi.label.name, AudioCoutputs) == 0)
1110 1.16.2.2 christos oclass = mi.mixer_class;
1111 1.16.2.2 christos if (strcmp(mi.label.name, AudioCrecord) == 0)
1112 1.16.2.2 christos rclass = mi.mixer_class;
1113 1.16.2.2 christos }
1114 1.16.2.2 christos }
1115 1.16.2.2 christos mutex_exit(sc->sc_lock);
1116 1.16.2.2 christos
1117 1.16.2.2 christos /* Allocate save area. Ensure non-zero allocation. */
1118 1.16.2.2 christos sc->sc_nmixer_states = mi.index;
1119 1.16.2.2 christos sc->sc_mixer_state = kmem_zalloc(sizeof(mixer_ctrl_t) *
1120 1.16.2.2 christos (sc->sc_nmixer_states + 1), KM_SLEEP);
1121 1.16.2.2 christos
1122 1.16.2.2 christos /*
1123 1.16.2.2 christos * This is where we assign each control in the "audio" model, to the
1124 1.16.2.2 christos * underlying "mixer" control. We walk through the whole list once,
1125 1.16.2.2 christos * assigning likely candidates as we come across them.
1126 1.16.2.2 christos */
1127 1.16.2.2 christos record_master_found = 0;
1128 1.16.2.2 christos record_source_found = 0;
1129 1.16.2.2 christos mutex_enter(sc->sc_lock);
1130 1.16.2.2 christos for(mi.index = 0; ; mi.index++) {
1131 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) != 0)
1132 1.16.2.2 christos break;
1133 1.16.2.2 christos KASSERT(mi.index < sc->sc_nmixer_states);
1134 1.16.2.2 christos if (mi.type == AUDIO_MIXER_CLASS)
1135 1.16.2.2 christos continue;
1136 1.16.2.2 christos if (mi.mixer_class == iclass) {
1137 1.16.2.2 christos /*
1138 1.16.2.2 christos * AudioCinputs is only a fallback, when we don't
1139 1.16.2.2 christos * find what we're looking for in AudioCrecord, so
1140 1.16.2.2 christos * check the flags before accepting one of these.
1141 1.16.2.2 christos */
1142 1.16.2.2 christos if (strcmp(mi.label.name, AudioNmaster) == 0
1143 1.16.2.2 christos && record_master_found == 0)
1144 1.16.2.2 christos sc->sc_inports.master = mi.index;
1145 1.16.2.2 christos if (strcmp(mi.label.name, AudioNsource) == 0
1146 1.16.2.2 christos && record_source_found == 0) {
1147 1.16.2.2 christos if (mi.type == AUDIO_MIXER_ENUM) {
1148 1.16.2.2 christos int i;
1149 1.16.2.2 christos for(i = 0; i < mi.un.e.num_mem; i++)
1150 1.16.2.2 christos if (strcmp(mi.un.e.member[i].label.name,
1151 1.16.2.2 christos AudioNmixerout) == 0)
1152 1.16.2.2 christos sc->sc_inports.mixerout =
1153 1.16.2.2 christos mi.un.e.member[i].ord;
1154 1.16.2.2 christos }
1155 1.16.2.2 christos au_setup_ports(sc, &sc->sc_inports, &mi,
1156 1.16.2.2 christos itable);
1157 1.16.2.2 christos }
1158 1.16.2.2 christos if (strcmp(mi.label.name, AudioNdac) == 0 &&
1159 1.16.2.2 christos sc->sc_outports.master == -1)
1160 1.16.2.2 christos sc->sc_outports.master = mi.index;
1161 1.16.2.2 christos } else if (mi.mixer_class == mclass) {
1162 1.16.2.2 christos if (strcmp(mi.label.name, AudioNmonitor) == 0)
1163 1.16.2.2 christos sc->sc_monitor_port = mi.index;
1164 1.16.2.2 christos } else if (mi.mixer_class == oclass) {
1165 1.16.2.2 christos if (strcmp(mi.label.name, AudioNmaster) == 0)
1166 1.16.2.2 christos sc->sc_outports.master = mi.index;
1167 1.16.2.2 christos if (strcmp(mi.label.name, AudioNselect) == 0)
1168 1.16.2.2 christos au_setup_ports(sc, &sc->sc_outports, &mi,
1169 1.16.2.2 christos otable);
1170 1.16.2.2 christos } else if (mi.mixer_class == rclass) {
1171 1.16.2.2 christos /*
1172 1.16.2.2 christos * These are the preferred mixers for the audio record
1173 1.16.2.2 christos * controls, so set the flags here, but don't check.
1174 1.16.2.2 christos */
1175 1.16.2.2 christos if (strcmp(mi.label.name, AudioNmaster) == 0) {
1176 1.16.2.2 christos sc->sc_inports.master = mi.index;
1177 1.16.2.2 christos record_master_found = 1;
1178 1.16.2.2 christos }
1179 1.16.2.2 christos #if 1 /* Deprecated. Use AudioNmaster. */
1180 1.16.2.2 christos if (strcmp(mi.label.name, AudioNrecord) == 0) {
1181 1.16.2.2 christos sc->sc_inports.master = mi.index;
1182 1.16.2.2 christos record_master_found = 1;
1183 1.16.2.2 christos }
1184 1.16.2.2 christos if (strcmp(mi.label.name, AudioNvolume) == 0) {
1185 1.16.2.2 christos sc->sc_inports.master = mi.index;
1186 1.16.2.2 christos record_master_found = 1;
1187 1.16.2.2 christos }
1188 1.16.2.2 christos #endif
1189 1.16.2.2 christos if (strcmp(mi.label.name, AudioNsource) == 0) {
1190 1.16.2.2 christos if (mi.type == AUDIO_MIXER_ENUM) {
1191 1.16.2.2 christos int i;
1192 1.16.2.2 christos for(i = 0; i < mi.un.e.num_mem; i++)
1193 1.16.2.2 christos if (strcmp(mi.un.e.member[i].label.name,
1194 1.16.2.2 christos AudioNmixerout) == 0)
1195 1.16.2.2 christos sc->sc_inports.mixerout =
1196 1.16.2.2 christos mi.un.e.member[i].ord;
1197 1.16.2.2 christos }
1198 1.16.2.2 christos au_setup_ports(sc, &sc->sc_inports, &mi,
1199 1.16.2.2 christos itable);
1200 1.16.2.2 christos record_source_found = 1;
1201 1.16.2.2 christos }
1202 1.16.2.2 christos }
1203 1.16.2.2 christos }
1204 1.16.2.2 christos mutex_exit(sc->sc_lock);
1205 1.16.2.2 christos }
1206 1.16.2.2 christos
1207 1.16.2.2 christos static int
1208 1.16.2.2 christos audioactivate(device_t self, enum devact act)
1209 1.16.2.2 christos {
1210 1.16.2.2 christos struct audio_softc *sc = device_private(self);
1211 1.16.2.2 christos
1212 1.16.2.2 christos switch (act) {
1213 1.16.2.2 christos case DVACT_DEACTIVATE:
1214 1.16.2.2 christos mutex_enter(sc->sc_lock);
1215 1.16.2.2 christos sc->sc_dying = true;
1216 1.16.2.2 christos cv_broadcast(&sc->sc_exlockcv);
1217 1.16.2.2 christos mutex_exit(sc->sc_lock);
1218 1.16.2.2 christos return 0;
1219 1.16.2.2 christos default:
1220 1.16.2.2 christos return EOPNOTSUPP;
1221 1.16.2.2 christos }
1222 1.16.2.2 christos }
1223 1.16.2.2 christos
1224 1.16.2.2 christos static int
1225 1.16.2.2 christos audiodetach(device_t self, int flags)
1226 1.16.2.2 christos {
1227 1.16.2.2 christos struct audio_softc *sc;
1228 1.16.2.2 christos int maj, mn;
1229 1.16.2.2 christos int error;
1230 1.16.2.2 christos
1231 1.16.2.2 christos sc = device_private(self);
1232 1.16.2.2 christos TRACE(2, "flags=%d", flags);
1233 1.16.2.2 christos
1234 1.16.2.2 christos /* device is not initialized */
1235 1.16.2.2 christos if (sc->hw_if == NULL)
1236 1.16.2.2 christos return 0;
1237 1.16.2.2 christos
1238 1.16.2.2 christos /* Start draining existing accessors of the device. */
1239 1.16.2.2 christos error = config_detach_children(self, flags);
1240 1.16.2.2 christos if (error)
1241 1.16.2.2 christos return error;
1242 1.16.2.2 christos
1243 1.16.2.2 christos mutex_enter(sc->sc_lock);
1244 1.16.2.2 christos sc->sc_dying = true;
1245 1.16.2.2 christos cv_broadcast(&sc->sc_exlockcv);
1246 1.16.2.2 christos if (sc->sc_pmixer)
1247 1.16.2.2 christos cv_broadcast(&sc->sc_pmixer->outcv);
1248 1.16.2.2 christos if (sc->sc_rmixer)
1249 1.16.2.2 christos cv_broadcast(&sc->sc_rmixer->outcv);
1250 1.16.2.2 christos mutex_exit(sc->sc_lock);
1251 1.16.2.2 christos
1252 1.16.2.2 christos /* locate the major number */
1253 1.16.2.2 christos maj = cdevsw_lookup_major(&audio_cdevsw);
1254 1.16.2.2 christos
1255 1.16.2.2 christos /*
1256 1.16.2.2 christos * Nuke the vnodes for any open instances (calls close).
1257 1.16.2.2 christos * Will wait until any activity on the device nodes has ceased.
1258 1.16.2.2 christos */
1259 1.16.2.2 christos mn = device_unit(self);
1260 1.16.2.2 christos vdevgone(maj, mn | SOUND_DEVICE, mn | SOUND_DEVICE, VCHR);
1261 1.16.2.2 christos vdevgone(maj, mn | AUDIO_DEVICE, mn | AUDIO_DEVICE, VCHR);
1262 1.16.2.2 christos vdevgone(maj, mn | AUDIOCTL_DEVICE, mn | AUDIOCTL_DEVICE, VCHR);
1263 1.16.2.2 christos vdevgone(maj, mn | MIXER_DEVICE, mn | MIXER_DEVICE, VCHR);
1264 1.16.2.2 christos
1265 1.16.2.2 christos pmf_event_deregister(self, PMFE_AUDIO_VOLUME_DOWN,
1266 1.16.2.2 christos audio_volume_down, true);
1267 1.16.2.2 christos pmf_event_deregister(self, PMFE_AUDIO_VOLUME_UP,
1268 1.16.2.2 christos audio_volume_up, true);
1269 1.16.2.2 christos pmf_event_deregister(self, PMFE_AUDIO_VOLUME_TOGGLE,
1270 1.16.2.2 christos audio_volume_toggle, true);
1271 1.16.2.2 christos
1272 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
1273 1.16.2.2 christos callout_halt(&sc->sc_idle_counter, sc->sc_lock);
1274 1.16.2.2 christos
1275 1.16.2.2 christos device_active_deregister(self, audio_activity);
1276 1.16.2.2 christos #endif
1277 1.16.2.2 christos
1278 1.16.2.2 christos pmf_device_deregister(self);
1279 1.16.2.2 christos
1280 1.16.2.2 christos /* Free resources */
1281 1.16.2.2 christos mutex_enter(sc->sc_lock);
1282 1.16.2.2 christos if (sc->sc_pmixer) {
1283 1.16.2.2 christos audio_mixer_destroy(sc, sc->sc_pmixer);
1284 1.16.2.2 christos kmem_free(sc->sc_pmixer, sizeof(*sc->sc_pmixer));
1285 1.16.2.2 christos }
1286 1.16.2.2 christos if (sc->sc_rmixer) {
1287 1.16.2.2 christos audio_mixer_destroy(sc, sc->sc_rmixer);
1288 1.16.2.2 christos kmem_free(sc->sc_rmixer, sizeof(*sc->sc_rmixer));
1289 1.16.2.2 christos }
1290 1.16.2.2 christos mutex_exit(sc->sc_lock);
1291 1.16.2.2 christos
1292 1.16.2.2 christos seldestroy(&sc->sc_wsel);
1293 1.16.2.2 christos seldestroy(&sc->sc_rsel);
1294 1.16.2.2 christos
1295 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
1296 1.16.2.2 christos callout_destroy(&sc->sc_idle_counter);
1297 1.16.2.2 christos #endif
1298 1.16.2.2 christos
1299 1.16.2.2 christos cv_destroy(&sc->sc_exlockcv);
1300 1.16.2.2 christos
1301 1.16.2.2 christos #if defined(AUDIO_DEBUG)
1302 1.16.2.2 christos audio_mlog_free();
1303 1.16.2.2 christos #endif
1304 1.16.2.2 christos
1305 1.16.2.2 christos return 0;
1306 1.16.2.2 christos }
1307 1.16.2.2 christos
1308 1.16.2.2 christos static void
1309 1.16.2.2 christos audiochilddet(device_t self, device_t child)
1310 1.16.2.2 christos {
1311 1.16.2.2 christos
1312 1.16.2.2 christos /* we hold no child references, so do nothing */
1313 1.16.2.2 christos }
1314 1.16.2.2 christos
1315 1.16.2.2 christos static int
1316 1.16.2.2 christos audiosearch(device_t parent, cfdata_t cf, const int *locs, void *aux)
1317 1.16.2.2 christos {
1318 1.16.2.2 christos
1319 1.16.2.2 christos if (config_match(parent, cf, aux))
1320 1.16.2.2 christos config_attach_loc(parent, cf, locs, aux, NULL);
1321 1.16.2.2 christos
1322 1.16.2.2 christos return 0;
1323 1.16.2.2 christos }
1324 1.16.2.2 christos
1325 1.16.2.2 christos static int
1326 1.16.2.2 christos audiorescan(device_t self, const char *ifattr, const int *flags)
1327 1.16.2.2 christos {
1328 1.16.2.2 christos struct audio_softc *sc = device_private(self);
1329 1.16.2.2 christos
1330 1.16.2.2 christos if (!ifattr_match(ifattr, "audio"))
1331 1.16.2.2 christos return 0;
1332 1.16.2.2 christos
1333 1.16.2.2 christos config_search_loc(audiosearch, sc->sc_dev, "audio", NULL, NULL);
1334 1.16.2.2 christos
1335 1.16.2.2 christos return 0;
1336 1.16.2.2 christos }
1337 1.16.2.2 christos
1338 1.16.2.2 christos /*
1339 1.16.2.2 christos * Called from hardware driver. This is where the MI audio driver gets
1340 1.16.2.2 christos * probed/attached to the hardware driver.
1341 1.16.2.2 christos */
1342 1.16.2.2 christos device_t
1343 1.16.2.2 christos audio_attach_mi(const struct audio_hw_if *ahwp, void *hdlp, device_t dev)
1344 1.16.2.2 christos {
1345 1.16.2.2 christos struct audio_attach_args arg;
1346 1.16.2.2 christos
1347 1.16.2.2 christos #ifdef DIAGNOSTIC
1348 1.16.2.2 christos if (ahwp == NULL) {
1349 1.16.2.2 christos aprint_error("audio_attach_mi: NULL\n");
1350 1.16.2.2 christos return 0;
1351 1.16.2.2 christos }
1352 1.16.2.2 christos #endif
1353 1.16.2.2 christos arg.type = AUDIODEV_TYPE_AUDIO;
1354 1.16.2.2 christos arg.hwif = ahwp;
1355 1.16.2.2 christos arg.hdl = hdlp;
1356 1.16.2.2 christos return config_found(dev, &arg, audioprint);
1357 1.16.2.2 christos }
1358 1.16.2.2 christos
1359 1.16.2.2 christos /*
1360 1.16.2.2 christos * Acquire sc_lock and enter exlock critical section.
1361 1.16.2.2 christos * If successful, it returns 0. Otherwise returns errno.
1362 1.16.2.2 christos */
1363 1.16.2.2 christos static int
1364 1.16.2.2 christos audio_enter_exclusive(struct audio_softc *sc)
1365 1.16.2.2 christos {
1366 1.16.2.2 christos int error;
1367 1.16.2.2 christos
1368 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
1369 1.16.2.2 christos
1370 1.16.2.2 christos mutex_enter(sc->sc_lock);
1371 1.16.2.2 christos if (sc->sc_dying) {
1372 1.16.2.2 christos mutex_exit(sc->sc_lock);
1373 1.16.2.2 christos return EIO;
1374 1.16.2.2 christos }
1375 1.16.2.2 christos
1376 1.16.2.2 christos while (__predict_false(sc->sc_exlock != 0)) {
1377 1.16.2.2 christos error = cv_wait_sig(&sc->sc_exlockcv, sc->sc_lock);
1378 1.16.2.2 christos if (sc->sc_dying)
1379 1.16.2.2 christos error = EIO;
1380 1.16.2.2 christos if (error) {
1381 1.16.2.2 christos mutex_exit(sc->sc_lock);
1382 1.16.2.2 christos return error;
1383 1.16.2.2 christos }
1384 1.16.2.2 christos }
1385 1.16.2.2 christos
1386 1.16.2.2 christos /* Acquire */
1387 1.16.2.2 christos sc->sc_exlock = 1;
1388 1.16.2.2 christos return 0;
1389 1.16.2.2 christos }
1390 1.16.2.2 christos
1391 1.16.2.2 christos /*
1392 1.16.2.2 christos * Leave exlock critical section and release sc_lock.
1393 1.16.2.2 christos * Must be called with sc_lock held.
1394 1.16.2.2 christos */
1395 1.16.2.2 christos static void
1396 1.16.2.2 christos audio_exit_exclusive(struct audio_softc *sc)
1397 1.16.2.2 christos {
1398 1.16.2.2 christos
1399 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
1400 1.16.2.2 christos KASSERT(sc->sc_exlock);
1401 1.16.2.2 christos
1402 1.16.2.2 christos /* Leave critical section */
1403 1.16.2.2 christos sc->sc_exlock = 0;
1404 1.16.2.2 christos cv_broadcast(&sc->sc_exlockcv);
1405 1.16.2.2 christos mutex_exit(sc->sc_lock);
1406 1.16.2.2 christos }
1407 1.16.2.2 christos
1408 1.16.2.2 christos /*
1409 1.16.2.2 christos * Wait for I/O to complete, releasing sc_lock.
1410 1.16.2.2 christos * Must be called with sc_lock held.
1411 1.16.2.2 christos */
1412 1.16.2.2 christos static int
1413 1.16.2.2 christos audio_track_waitio(struct audio_softc *sc, audio_track_t *track)
1414 1.16.2.2 christos {
1415 1.16.2.2 christos int error;
1416 1.16.2.2 christos
1417 1.16.2.2 christos KASSERT(track);
1418 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
1419 1.16.2.2 christos
1420 1.16.2.2 christos /* Wait for pending I/O to complete. */
1421 1.16.2.2 christos error = cv_timedwait_sig(&track->mixer->outcv, sc->sc_lock,
1422 1.16.2.2 christos mstohz(AUDIO_TIMEOUT));
1423 1.16.2.2 christos if (sc->sc_dying) {
1424 1.16.2.2 christos error = EIO;
1425 1.16.2.2 christos }
1426 1.16.2.2 christos if (error) {
1427 1.16.2.2 christos TRACET(2, track, "cv_timedwait_sig failed %d", error);
1428 1.16.2.2 christos if (error == EWOULDBLOCK)
1429 1.16.2.2 christos device_printf(sc->sc_dev, "device timeout\n");
1430 1.16.2.2 christos } else {
1431 1.16.2.2 christos TRACET(3, track, "wakeup");
1432 1.16.2.2 christos }
1433 1.16.2.2 christos return error;
1434 1.16.2.2 christos }
1435 1.16.2.2 christos
1436 1.16.2.2 christos /*
1437 1.16.2.2 christos * Try to acquire track lock.
1438 1.16.2.2 christos * It doesn't block if the track lock is already aquired.
1439 1.16.2.2 christos * Returns true if the track lock was acquired, or false if the track
1440 1.16.2.2 christos * lock was already acquired.
1441 1.16.2.2 christos */
1442 1.16.2.2 christos static __inline bool
1443 1.16.2.2 christos audio_track_lock_tryenter(audio_track_t *track)
1444 1.16.2.2 christos {
1445 1.16.2.2 christos return (atomic_cas_uint(&track->lock, 0, 1) == 0);
1446 1.16.2.2 christos }
1447 1.16.2.2 christos
1448 1.16.2.2 christos /*
1449 1.16.2.2 christos * Acquire track lock.
1450 1.16.2.2 christos */
1451 1.16.2.2 christos static __inline void
1452 1.16.2.2 christos audio_track_lock_enter(audio_track_t *track)
1453 1.16.2.2 christos {
1454 1.16.2.2 christos /* Don't sleep here. */
1455 1.16.2.2 christos while (audio_track_lock_tryenter(track) == false)
1456 1.16.2.2 christos ;
1457 1.16.2.2 christos }
1458 1.16.2.2 christos
1459 1.16.2.2 christos /*
1460 1.16.2.2 christos * Release track lock.
1461 1.16.2.2 christos */
1462 1.16.2.2 christos static __inline void
1463 1.16.2.2 christos audio_track_lock_exit(audio_track_t *track)
1464 1.16.2.2 christos {
1465 1.16.2.2 christos atomic_swap_uint(&track->lock, 0);
1466 1.16.2.2 christos }
1467 1.16.2.2 christos
1468 1.16.2.2 christos
1469 1.16.2.2 christos static int
1470 1.16.2.2 christos audioopen(dev_t dev, int flags, int ifmt, struct lwp *l)
1471 1.16.2.2 christos {
1472 1.16.2.2 christos struct audio_softc *sc;
1473 1.16.2.2 christos int error;
1474 1.16.2.2 christos
1475 1.16.2.2 christos /* Find the device */
1476 1.16.2.2 christos sc = device_lookup_private(&audio_cd, AUDIOUNIT(dev));
1477 1.16.2.2 christos if (sc == NULL || sc->hw_if == NULL)
1478 1.16.2.2 christos return ENXIO;
1479 1.16.2.2 christos
1480 1.16.2.2 christos error = audio_enter_exclusive(sc);
1481 1.16.2.2 christos if (error)
1482 1.16.2.2 christos return error;
1483 1.16.2.2 christos
1484 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
1485 1.16.2.2 christos switch (AUDIODEV(dev)) {
1486 1.16.2.2 christos case SOUND_DEVICE:
1487 1.16.2.2 christos case AUDIO_DEVICE:
1488 1.16.2.2 christos error = audio_open(dev, sc, flags, ifmt, l, NULL);
1489 1.16.2.2 christos break;
1490 1.16.2.2 christos case AUDIOCTL_DEVICE:
1491 1.16.2.2 christos error = audioctl_open(dev, sc, flags, ifmt, l);
1492 1.16.2.2 christos break;
1493 1.16.2.2 christos case MIXER_DEVICE:
1494 1.16.2.2 christos error = mixer_open(dev, sc, flags, ifmt, l);
1495 1.16.2.2 christos break;
1496 1.16.2.2 christos default:
1497 1.16.2.2 christos error = ENXIO;
1498 1.16.2.2 christos break;
1499 1.16.2.2 christos }
1500 1.16.2.2 christos audio_exit_exclusive(sc);
1501 1.16.2.2 christos
1502 1.16.2.2 christos return error;
1503 1.16.2.2 christos }
1504 1.16.2.2 christos
1505 1.16.2.2 christos static int
1506 1.16.2.2 christos audioclose(struct file *fp)
1507 1.16.2.2 christos {
1508 1.16.2.2 christos struct audio_softc *sc;
1509 1.16.2.2 christos audio_file_t *file;
1510 1.16.2.2 christos int error;
1511 1.16.2.2 christos dev_t dev;
1512 1.16.2.2 christos
1513 1.16.2.2 christos KASSERT(fp->f_audioctx);
1514 1.16.2.2 christos file = fp->f_audioctx;
1515 1.16.2.2 christos sc = file->sc;
1516 1.16.2.2 christos dev = file->dev;
1517 1.16.2.2 christos
1518 1.16.2.2 christos /* audio_{enter,exit}_exclusive() is called by lower audio_close() */
1519 1.16.2.2 christos
1520 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
1521 1.16.2.2 christos switch (AUDIODEV(dev)) {
1522 1.16.2.2 christos case SOUND_DEVICE:
1523 1.16.2.2 christos case AUDIO_DEVICE:
1524 1.16.2.2 christos error = audio_close(sc, file);
1525 1.16.2.2 christos break;
1526 1.16.2.2 christos case AUDIOCTL_DEVICE:
1527 1.16.2.2 christos error = 0;
1528 1.16.2.2 christos break;
1529 1.16.2.2 christos case MIXER_DEVICE:
1530 1.16.2.2 christos error = mixer_close(sc, file);
1531 1.16.2.2 christos break;
1532 1.16.2.2 christos default:
1533 1.16.2.2 christos error = ENXIO;
1534 1.16.2.2 christos break;
1535 1.16.2.2 christos }
1536 1.16.2.2 christos if (error == 0) {
1537 1.16.2.2 christos kmem_free(fp->f_audioctx, sizeof(audio_file_t));
1538 1.16.2.2 christos fp->f_audioctx = NULL;
1539 1.16.2.2 christos }
1540 1.16.2.2 christos
1541 1.16.2.2 christos return error;
1542 1.16.2.2 christos }
1543 1.16.2.2 christos
1544 1.16.2.2 christos static int
1545 1.16.2.2 christos audioread(struct file *fp, off_t *offp, struct uio *uio, kauth_cred_t cred,
1546 1.16.2.2 christos int ioflag)
1547 1.16.2.2 christos {
1548 1.16.2.2 christos struct audio_softc *sc;
1549 1.16.2.2 christos audio_file_t *file;
1550 1.16.2.2 christos int error;
1551 1.16.2.2 christos dev_t dev;
1552 1.16.2.2 christos
1553 1.16.2.2 christos KASSERT(fp->f_audioctx);
1554 1.16.2.2 christos file = fp->f_audioctx;
1555 1.16.2.2 christos sc = file->sc;
1556 1.16.2.2 christos dev = file->dev;
1557 1.16.2.2 christos
1558 1.16.2.2 christos if (fp->f_flag & O_NONBLOCK)
1559 1.16.2.2 christos ioflag |= IO_NDELAY;
1560 1.16.2.2 christos
1561 1.16.2.2 christos switch (AUDIODEV(dev)) {
1562 1.16.2.2 christos case SOUND_DEVICE:
1563 1.16.2.2 christos case AUDIO_DEVICE:
1564 1.16.2.2 christos error = audio_read(sc, uio, ioflag, file);
1565 1.16.2.2 christos break;
1566 1.16.2.2 christos case AUDIOCTL_DEVICE:
1567 1.16.2.2 christos case MIXER_DEVICE:
1568 1.16.2.2 christos error = ENODEV;
1569 1.16.2.2 christos break;
1570 1.16.2.2 christos default:
1571 1.16.2.2 christos error = ENXIO;
1572 1.16.2.2 christos break;
1573 1.16.2.2 christos }
1574 1.16.2.2 christos
1575 1.16.2.2 christos return error;
1576 1.16.2.2 christos }
1577 1.16.2.2 christos
1578 1.16.2.2 christos static int
1579 1.16.2.2 christos audiowrite(struct file *fp, off_t *offp, struct uio *uio, kauth_cred_t cred,
1580 1.16.2.2 christos int ioflag)
1581 1.16.2.2 christos {
1582 1.16.2.2 christos struct audio_softc *sc;
1583 1.16.2.2 christos audio_file_t *file;
1584 1.16.2.2 christos int error;
1585 1.16.2.2 christos dev_t dev;
1586 1.16.2.2 christos
1587 1.16.2.2 christos KASSERT(fp->f_audioctx);
1588 1.16.2.2 christos file = fp->f_audioctx;
1589 1.16.2.2 christos sc = file->sc;
1590 1.16.2.2 christos dev = file->dev;
1591 1.16.2.2 christos
1592 1.16.2.2 christos if (fp->f_flag & O_NONBLOCK)
1593 1.16.2.2 christos ioflag |= IO_NDELAY;
1594 1.16.2.2 christos
1595 1.16.2.2 christos switch (AUDIODEV(dev)) {
1596 1.16.2.2 christos case SOUND_DEVICE:
1597 1.16.2.2 christos case AUDIO_DEVICE:
1598 1.16.2.2 christos error = audio_write(sc, uio, ioflag, file);
1599 1.16.2.2 christos break;
1600 1.16.2.2 christos case AUDIOCTL_DEVICE:
1601 1.16.2.2 christos case MIXER_DEVICE:
1602 1.16.2.2 christos error = ENODEV;
1603 1.16.2.2 christos break;
1604 1.16.2.2 christos default:
1605 1.16.2.2 christos error = ENXIO;
1606 1.16.2.2 christos break;
1607 1.16.2.2 christos }
1608 1.16.2.2 christos
1609 1.16.2.2 christos return error;
1610 1.16.2.2 christos }
1611 1.16.2.2 christos
1612 1.16.2.2 christos static int
1613 1.16.2.2 christos audioioctl(struct file *fp, u_long cmd, void *addr)
1614 1.16.2.2 christos {
1615 1.16.2.2 christos struct audio_softc *sc;
1616 1.16.2.2 christos audio_file_t *file;
1617 1.16.2.2 christos struct lwp *l = curlwp;
1618 1.16.2.2 christos int error;
1619 1.16.2.2 christos dev_t dev;
1620 1.16.2.2 christos
1621 1.16.2.2 christos KASSERT(fp->f_audioctx);
1622 1.16.2.2 christos file = fp->f_audioctx;
1623 1.16.2.2 christos sc = file->sc;
1624 1.16.2.2 christos dev = file->dev;
1625 1.16.2.2 christos
1626 1.16.2.2 christos switch (AUDIODEV(dev)) {
1627 1.16.2.2 christos case SOUND_DEVICE:
1628 1.16.2.2 christos case AUDIO_DEVICE:
1629 1.16.2.2 christos case AUDIOCTL_DEVICE:
1630 1.16.2.2 christos mutex_enter(sc->sc_lock);
1631 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
1632 1.16.2.2 christos mutex_exit(sc->sc_lock);
1633 1.16.2.2 christos if (IOCGROUP(cmd) == IOCGROUP(AUDIO_MIXER_READ))
1634 1.16.2.2 christos error = mixer_ioctl(sc, cmd, addr, fp->f_flag, l);
1635 1.16.2.2 christos else
1636 1.16.2.2 christos error = audio_ioctl(dev, sc, cmd, addr, fp->f_flag, l,
1637 1.16.2.2 christos file);
1638 1.16.2.2 christos break;
1639 1.16.2.2 christos case MIXER_DEVICE:
1640 1.16.2.2 christos error = mixer_ioctl(sc, cmd, addr, fp->f_flag, l);
1641 1.16.2.2 christos break;
1642 1.16.2.2 christos default:
1643 1.16.2.2 christos error = ENXIO;
1644 1.16.2.2 christos break;
1645 1.16.2.2 christos }
1646 1.16.2.2 christos
1647 1.16.2.2 christos return error;
1648 1.16.2.2 christos }
1649 1.16.2.2 christos
1650 1.16.2.2 christos static int
1651 1.16.2.2 christos audiostat(struct file *fp, struct stat *st)
1652 1.16.2.2 christos {
1653 1.16.2.2 christos audio_file_t *file;
1654 1.16.2.2 christos
1655 1.16.2.2 christos KASSERT(fp->f_audioctx);
1656 1.16.2.2 christos file = fp->f_audioctx;
1657 1.16.2.2 christos
1658 1.16.2.2 christos memset(st, 0, sizeof(*st));
1659 1.16.2.2 christos
1660 1.16.2.2 christos st->st_dev = file->dev;
1661 1.16.2.2 christos st->st_uid = kauth_cred_geteuid(fp->f_cred);
1662 1.16.2.2 christos st->st_gid = kauth_cred_getegid(fp->f_cred);
1663 1.16.2.2 christos st->st_mode = S_IFCHR;
1664 1.16.2.2 christos return 0;
1665 1.16.2.2 christos }
1666 1.16.2.2 christos
1667 1.16.2.2 christos static int
1668 1.16.2.2 christos audiopoll(struct file *fp, int events)
1669 1.16.2.2 christos {
1670 1.16.2.2 christos struct audio_softc *sc;
1671 1.16.2.2 christos audio_file_t *file;
1672 1.16.2.2 christos struct lwp *l = curlwp;
1673 1.16.2.2 christos int revents;
1674 1.16.2.2 christos dev_t dev;
1675 1.16.2.2 christos
1676 1.16.2.2 christos KASSERT(fp->f_audioctx);
1677 1.16.2.2 christos file = fp->f_audioctx;
1678 1.16.2.2 christos sc = file->sc;
1679 1.16.2.2 christos dev = file->dev;
1680 1.16.2.2 christos
1681 1.16.2.2 christos switch (AUDIODEV(dev)) {
1682 1.16.2.2 christos case SOUND_DEVICE:
1683 1.16.2.2 christos case AUDIO_DEVICE:
1684 1.16.2.2 christos revents = audio_poll(sc, events, l, file);
1685 1.16.2.2 christos break;
1686 1.16.2.2 christos case AUDIOCTL_DEVICE:
1687 1.16.2.2 christos case MIXER_DEVICE:
1688 1.16.2.2 christos revents = 0;
1689 1.16.2.2 christos break;
1690 1.16.2.2 christos default:
1691 1.16.2.2 christos revents = POLLERR;
1692 1.16.2.2 christos break;
1693 1.16.2.2 christos }
1694 1.16.2.2 christos
1695 1.16.2.2 christos return revents;
1696 1.16.2.2 christos }
1697 1.16.2.2 christos
1698 1.16.2.2 christos static int
1699 1.16.2.2 christos audiokqfilter(struct file *fp, struct knote *kn)
1700 1.16.2.2 christos {
1701 1.16.2.2 christos struct audio_softc *sc;
1702 1.16.2.2 christos audio_file_t *file;
1703 1.16.2.2 christos dev_t dev;
1704 1.16.2.2 christos int error;
1705 1.16.2.2 christos
1706 1.16.2.2 christos KASSERT(fp->f_audioctx);
1707 1.16.2.2 christos file = fp->f_audioctx;
1708 1.16.2.2 christos sc = file->sc;
1709 1.16.2.2 christos dev = file->dev;
1710 1.16.2.2 christos
1711 1.16.2.2 christos switch (AUDIODEV(dev)) {
1712 1.16.2.2 christos case SOUND_DEVICE:
1713 1.16.2.2 christos case AUDIO_DEVICE:
1714 1.16.2.2 christos error = audio_kqfilter(sc, file, kn);
1715 1.16.2.2 christos break;
1716 1.16.2.2 christos case AUDIOCTL_DEVICE:
1717 1.16.2.2 christos case MIXER_DEVICE:
1718 1.16.2.2 christos error = ENODEV;
1719 1.16.2.2 christos break;
1720 1.16.2.2 christos default:
1721 1.16.2.2 christos error = ENXIO;
1722 1.16.2.2 christos break;
1723 1.16.2.2 christos }
1724 1.16.2.2 christos
1725 1.16.2.2 christos return error;
1726 1.16.2.2 christos }
1727 1.16.2.2 christos
1728 1.16.2.2 christos static int
1729 1.16.2.2 christos audiommap(struct file *fp, off_t *offp, size_t len, int prot, int *flagsp,
1730 1.16.2.2 christos int *advicep, struct uvm_object **uobjp, int *maxprotp)
1731 1.16.2.2 christos {
1732 1.16.2.2 christos struct audio_softc *sc;
1733 1.16.2.2 christos audio_file_t *file;
1734 1.16.2.2 christos dev_t dev;
1735 1.16.2.2 christos int error;
1736 1.16.2.2 christos
1737 1.16.2.2 christos KASSERT(fp->f_audioctx);
1738 1.16.2.2 christos file = fp->f_audioctx;
1739 1.16.2.2 christos sc = file->sc;
1740 1.16.2.2 christos dev = file->dev;
1741 1.16.2.2 christos
1742 1.16.2.2 christos mutex_enter(sc->sc_lock);
1743 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM); /* XXXJDM */
1744 1.16.2.2 christos mutex_exit(sc->sc_lock);
1745 1.16.2.2 christos
1746 1.16.2.2 christos switch (AUDIODEV(dev)) {
1747 1.16.2.2 christos case SOUND_DEVICE:
1748 1.16.2.2 christos case AUDIO_DEVICE:
1749 1.16.2.2 christos error = audio_mmap(sc, offp, len, prot, flagsp, advicep,
1750 1.16.2.2 christos uobjp, maxprotp, file);
1751 1.16.2.2 christos break;
1752 1.16.2.2 christos case AUDIOCTL_DEVICE:
1753 1.16.2.2 christos case MIXER_DEVICE:
1754 1.16.2.2 christos default:
1755 1.16.2.2 christos error = ENOTSUP;
1756 1.16.2.2 christos break;
1757 1.16.2.2 christos }
1758 1.16.2.2 christos
1759 1.16.2.2 christos return error;
1760 1.16.2.2 christos }
1761 1.16.2.2 christos
1762 1.16.2.2 christos
1763 1.16.2.2 christos /* Exported interfaces for audiobell. */
1764 1.16.2.2 christos
1765 1.16.2.2 christos /*
1766 1.16.2.2 christos * Open for audiobell.
1767 1.16.2.2 christos * sample_rate, encoding, precision and channels in arg are in-parameter
1768 1.16.2.2 christos * and indicates input encoding.
1769 1.16.2.2 christos * Stores allocated file to arg->file.
1770 1.16.2.2 christos * Stores blocksize to arg->blocksize.
1771 1.16.2.2 christos * If successful returns 0, otherwise errno.
1772 1.16.2.2 christos */
1773 1.16.2.2 christos int
1774 1.16.2.2 christos audiobellopen(dev_t dev, struct audiobell_arg *arg)
1775 1.16.2.2 christos {
1776 1.16.2.2 christos struct audio_softc *sc;
1777 1.16.2.2 christos int error;
1778 1.16.2.2 christos
1779 1.16.2.2 christos /* Find the device */
1780 1.16.2.2 christos sc = device_lookup_private(&audio_cd, AUDIOUNIT(dev));
1781 1.16.2.2 christos if (sc == NULL || sc->hw_if == NULL)
1782 1.16.2.2 christos return ENXIO;
1783 1.16.2.2 christos
1784 1.16.2.2 christos error = audio_enter_exclusive(sc);
1785 1.16.2.2 christos if (error)
1786 1.16.2.2 christos return error;
1787 1.16.2.2 christos
1788 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
1789 1.16.2.2 christos error = audio_open(dev, sc, FWRITE, 0, curlwp, arg);
1790 1.16.2.2 christos
1791 1.16.2.2 christos audio_exit_exclusive(sc);
1792 1.16.2.2 christos return error;
1793 1.16.2.2 christos }
1794 1.16.2.2 christos
1795 1.16.2.2 christos /* Close for audiobell */
1796 1.16.2.2 christos int
1797 1.16.2.2 christos audiobellclose(audio_file_t *file)
1798 1.16.2.2 christos {
1799 1.16.2.2 christos struct audio_softc *sc;
1800 1.16.2.2 christos int error;
1801 1.16.2.2 christos
1802 1.16.2.2 christos sc = file->sc;
1803 1.16.2.2 christos
1804 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
1805 1.16.2.2 christos error = audio_close(sc, file);
1806 1.16.2.2 christos
1807 1.16.2.2 christos /*
1808 1.16.2.2 christos * Since file has already been destructed,
1809 1.16.2.2 christos * audio_file_release() is not necessary.
1810 1.16.2.2 christos */
1811 1.16.2.2 christos
1812 1.16.2.2 christos return error;
1813 1.16.2.2 christos }
1814 1.16.2.2 christos
1815 1.16.2.2 christos /* Playback for audiobell */
1816 1.16.2.2 christos int
1817 1.16.2.2 christos audiobellwrite(audio_file_t *file, struct uio *uio)
1818 1.16.2.2 christos {
1819 1.16.2.2 christos struct audio_softc *sc;
1820 1.16.2.2 christos int error;
1821 1.16.2.2 christos
1822 1.16.2.2 christos sc = file->sc;
1823 1.16.2.2 christos error = audio_write(sc, uio, 0, file);
1824 1.16.2.2 christos return error;
1825 1.16.2.2 christos }
1826 1.16.2.2 christos
1827 1.16.2.2 christos
1828 1.16.2.2 christos /*
1829 1.16.2.2 christos * Audio driver
1830 1.16.2.2 christos */
1831 1.16.2.2 christos int
1832 1.16.2.2 christos audio_open(dev_t dev, struct audio_softc *sc, int flags, int ifmt,
1833 1.16.2.2 christos struct lwp *l, struct audiobell_arg *bell)
1834 1.16.2.2 christos {
1835 1.16.2.2 christos struct audio_info ai;
1836 1.16.2.2 christos struct file *fp;
1837 1.16.2.2 christos audio_file_t *af;
1838 1.16.2.2 christos audio_ring_t *hwbuf;
1839 1.16.2.2 christos bool fullduplex;
1840 1.16.2.2 christos int fd;
1841 1.16.2.2 christos int error;
1842 1.16.2.2 christos
1843 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
1844 1.16.2.2 christos KASSERT(sc->sc_exlock);
1845 1.16.2.2 christos
1846 1.16.2.2 christos TRACE(1, "%sflags=0x%x po=%d ro=%d",
1847 1.16.2.2 christos (audiodebug >= 3) ? "start " : "",
1848 1.16.2.2 christos flags, sc->sc_popens, sc->sc_ropens);
1849 1.16.2.2 christos
1850 1.16.2.2 christos af = kmem_zalloc(sizeof(audio_file_t), KM_SLEEP);
1851 1.16.2.2 christos af->sc = sc;
1852 1.16.2.2 christos af->dev = dev;
1853 1.16.2.2 christos if ((flags & FWRITE) != 0 && audio_can_playback(sc))
1854 1.16.2.2 christos af->mode |= AUMODE_PLAY | AUMODE_PLAY_ALL;
1855 1.16.2.2 christos if ((flags & FREAD) != 0 && audio_can_capture(sc))
1856 1.16.2.2 christos af->mode |= AUMODE_RECORD;
1857 1.16.2.2 christos if (af->mode == 0) {
1858 1.16.2.2 christos error = ENXIO;
1859 1.16.2.2 christos goto bad1;
1860 1.16.2.2 christos }
1861 1.16.2.2 christos
1862 1.16.2.2 christos fullduplex = (audio_get_props(sc) & AUDIO_PROP_FULLDUPLEX);
1863 1.16.2.2 christos
1864 1.16.2.2 christos /*
1865 1.16.2.2 christos * On half duplex hardware,
1866 1.16.2.2 christos * 1. if mode is (PLAY | REC), let mode PLAY.
1867 1.16.2.2 christos * 2. if mode is PLAY, let mode PLAY if no rec tracks, otherwise error.
1868 1.16.2.2 christos * 3. if mode is REC, let mode REC if no play tracks, otherwise error.
1869 1.16.2.2 christos */
1870 1.16.2.2 christos if (fullduplex == false) {
1871 1.16.2.2 christos if ((af->mode & AUMODE_PLAY)) {
1872 1.16.2.2 christos if (sc->sc_ropens != 0) {
1873 1.16.2.2 christos TRACE(1, "record track already exists");
1874 1.16.2.2 christos error = ENODEV;
1875 1.16.2.2 christos goto bad1;
1876 1.16.2.2 christos }
1877 1.16.2.2 christos /* Play takes precedence */
1878 1.16.2.2 christos af->mode &= ~AUMODE_RECORD;
1879 1.16.2.2 christos }
1880 1.16.2.2 christos if ((af->mode & AUMODE_RECORD)) {
1881 1.16.2.2 christos if (sc->sc_popens != 0) {
1882 1.16.2.2 christos TRACE(1, "play track already exists");
1883 1.16.2.2 christos error = ENODEV;
1884 1.16.2.2 christos goto bad1;
1885 1.16.2.2 christos }
1886 1.16.2.2 christos }
1887 1.16.2.2 christos }
1888 1.16.2.2 christos
1889 1.16.2.2 christos /* Create tracks */
1890 1.16.2.2 christos if ((af->mode & AUMODE_PLAY))
1891 1.16.2.2 christos af->ptrack = audio_track_create(sc, sc->sc_pmixer);
1892 1.16.2.2 christos if ((af->mode & AUMODE_RECORD))
1893 1.16.2.2 christos af->rtrack = audio_track_create(sc, sc->sc_rmixer);
1894 1.16.2.2 christos
1895 1.16.2.2 christos /* Set parameters */
1896 1.16.2.2 christos AUDIO_INITINFO(&ai);
1897 1.16.2.2 christos if (bell) {
1898 1.16.2.2 christos ai.play.sample_rate = bell->sample_rate;
1899 1.16.2.2 christos ai.play.encoding = bell->encoding;
1900 1.16.2.2 christos ai.play.channels = bell->channels;
1901 1.16.2.2 christos ai.play.precision = bell->precision;
1902 1.16.2.2 christos ai.play.pause = false;
1903 1.16.2.2 christos } else if (ISDEVAUDIO(dev)) {
1904 1.16.2.2 christos /* If /dev/audio, initialize everytime. */
1905 1.16.2.2 christos ai.play.sample_rate = audio_default.sample_rate;
1906 1.16.2.2 christos ai.play.encoding = audio_default.encoding;
1907 1.16.2.2 christos ai.play.channels = audio_default.channels;
1908 1.16.2.2 christos ai.play.precision = audio_default.precision;
1909 1.16.2.2 christos ai.play.pause = false;
1910 1.16.2.2 christos ai.record.sample_rate = audio_default.sample_rate;
1911 1.16.2.2 christos ai.record.encoding = audio_default.encoding;
1912 1.16.2.2 christos ai.record.channels = audio_default.channels;
1913 1.16.2.2 christos ai.record.precision = audio_default.precision;
1914 1.16.2.2 christos ai.record.pause = false;
1915 1.16.2.2 christos } else {
1916 1.16.2.2 christos /* If /dev/sound, take over the previous parameters. */
1917 1.16.2.2 christos ai.play.sample_rate = sc->sc_sound_pparams.sample_rate;
1918 1.16.2.2 christos ai.play.encoding = sc->sc_sound_pparams.encoding;
1919 1.16.2.2 christos ai.play.channels = sc->sc_sound_pparams.channels;
1920 1.16.2.2 christos ai.play.precision = sc->sc_sound_pparams.precision;
1921 1.16.2.2 christos ai.play.pause = sc->sc_sound_ppause;
1922 1.16.2.2 christos ai.record.sample_rate = sc->sc_sound_rparams.sample_rate;
1923 1.16.2.2 christos ai.record.encoding = sc->sc_sound_rparams.encoding;
1924 1.16.2.2 christos ai.record.channels = sc->sc_sound_rparams.channels;
1925 1.16.2.2 christos ai.record.precision = sc->sc_sound_rparams.precision;
1926 1.16.2.2 christos ai.record.pause = sc->sc_sound_rpause;
1927 1.16.2.2 christos }
1928 1.16.2.2 christos error = audio_file_setinfo(sc, af, &ai);
1929 1.16.2.2 christos if (error)
1930 1.16.2.2 christos goto bad2;
1931 1.16.2.2 christos
1932 1.16.2.2 christos if (sc->sc_popens + sc->sc_ropens == 0) {
1933 1.16.2.2 christos /* First open */
1934 1.16.2.2 christos
1935 1.16.2.2 christos sc->sc_cred = kauth_cred_get();
1936 1.16.2.2 christos kauth_cred_hold(sc->sc_cred);
1937 1.16.2.2 christos
1938 1.16.2.2 christos if (sc->hw_if->open) {
1939 1.16.2.2 christos int hwflags;
1940 1.16.2.2 christos
1941 1.16.2.2 christos /*
1942 1.16.2.2 christos * Call hw_if->open() only at first open of
1943 1.16.2.2 christos * combination of playback and recording.
1944 1.16.2.2 christos * On full duplex hardware, the flags passed to
1945 1.16.2.2 christos * hw_if->open() is always (FREAD | FWRITE)
1946 1.16.2.2 christos * regardless of this open()'s flags.
1947 1.16.2.2 christos * see also dev/isa/aria.c
1948 1.16.2.2 christos * On half duplex hardware, the flags passed to
1949 1.16.2.2 christos * hw_if->open() is either FREAD or FWRITE.
1950 1.16.2.2 christos * see also arch/evbarm/mini2440/audio_mini2440.c
1951 1.16.2.2 christos */
1952 1.16.2.2 christos if (fullduplex) {
1953 1.16.2.2 christos hwflags = FREAD | FWRITE;
1954 1.16.2.2 christos } else {
1955 1.16.2.2 christos /* Construct hwflags from af->mode. */
1956 1.16.2.2 christos hwflags = 0;
1957 1.16.2.2 christos if ((af->mode & AUMODE_PLAY) != 0)
1958 1.16.2.2 christos hwflags |= FWRITE;
1959 1.16.2.2 christos if ((af->mode & AUMODE_RECORD) != 0)
1960 1.16.2.2 christos hwflags |= FREAD;
1961 1.16.2.2 christos }
1962 1.16.2.2 christos
1963 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
1964 1.16.2.2 christos error = sc->hw_if->open(sc->hw_hdl, hwflags);
1965 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
1966 1.16.2.2 christos if (error)
1967 1.16.2.2 christos goto bad2;
1968 1.16.2.2 christos }
1969 1.16.2.2 christos
1970 1.16.2.2 christos /*
1971 1.16.2.2 christos * Set speaker mode when a half duplex.
1972 1.16.2.2 christos * XXX I'm not sure this is correct.
1973 1.16.2.2 christos */
1974 1.16.2.2 christos if (1/*XXX*/) {
1975 1.16.2.2 christos if (sc->hw_if->speaker_ctl) {
1976 1.16.2.2 christos int on;
1977 1.16.2.2 christos if (af->ptrack) {
1978 1.16.2.2 christos on = 1;
1979 1.16.2.2 christos } else {
1980 1.16.2.2 christos on = 0;
1981 1.16.2.2 christos }
1982 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
1983 1.16.2.2 christos error = sc->hw_if->speaker_ctl(sc->hw_hdl, on);
1984 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
1985 1.16.2.2 christos if (error)
1986 1.16.2.2 christos goto bad3;
1987 1.16.2.2 christos }
1988 1.16.2.2 christos }
1989 1.16.2.2 christos } else if (sc->sc_multiuser == false) {
1990 1.16.2.2 christos uid_t euid = kauth_cred_geteuid(kauth_cred_get());
1991 1.16.2.2 christos if (euid != 0 && euid != kauth_cred_geteuid(sc->sc_cred)) {
1992 1.16.2.2 christos error = EPERM;
1993 1.16.2.2 christos goto bad2;
1994 1.16.2.2 christos }
1995 1.16.2.2 christos }
1996 1.16.2.2 christos
1997 1.16.2.2 christos /* Call init_output if this is the first playback open. */
1998 1.16.2.2 christos if (af->ptrack && sc->sc_popens == 0) {
1999 1.16.2.2 christos if (sc->hw_if->init_output) {
2000 1.16.2.2 christos hwbuf = &sc->sc_pmixer->hwbuf;
2001 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2002 1.16.2.2 christos error = sc->hw_if->init_output(sc->hw_hdl,
2003 1.16.2.2 christos hwbuf->mem,
2004 1.16.2.2 christos hwbuf->capacity *
2005 1.16.2.2 christos hwbuf->fmt.channels * hwbuf->fmt.stride / NBBY);
2006 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2007 1.16.2.2 christos if (error)
2008 1.16.2.2 christos goto bad3;
2009 1.16.2.2 christos }
2010 1.16.2.2 christos }
2011 1.16.2.2 christos /* Call init_input if this is the first recording open. */
2012 1.16.2.2 christos if (af->rtrack && sc->sc_ropens == 0) {
2013 1.16.2.2 christos if (sc->hw_if->init_input) {
2014 1.16.2.2 christos hwbuf = &sc->sc_rmixer->hwbuf;
2015 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2016 1.16.2.2 christos error = sc->hw_if->init_input(sc->hw_hdl,
2017 1.16.2.2 christos hwbuf->mem,
2018 1.16.2.2 christos hwbuf->capacity *
2019 1.16.2.2 christos hwbuf->fmt.channels * hwbuf->fmt.stride / NBBY);
2020 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2021 1.16.2.2 christos if (error)
2022 1.16.2.2 christos goto bad3;
2023 1.16.2.2 christos }
2024 1.16.2.2 christos }
2025 1.16.2.2 christos
2026 1.16.2.2 christos if (bell == NULL) {
2027 1.16.2.2 christos error = fd_allocfile(&fp, &fd);
2028 1.16.2.2 christos if (error)
2029 1.16.2.2 christos goto bad3;
2030 1.16.2.2 christos }
2031 1.16.2.2 christos
2032 1.16.2.2 christos /*
2033 1.16.2.2 christos * Count up finally.
2034 1.16.2.2 christos * Don't fail from here.
2035 1.16.2.2 christos */
2036 1.16.2.2 christos if (af->ptrack)
2037 1.16.2.2 christos sc->sc_popens++;
2038 1.16.2.2 christos if (af->rtrack)
2039 1.16.2.2 christos sc->sc_ropens++;
2040 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2041 1.16.2.2 christos SLIST_INSERT_HEAD(&sc->sc_files, af, entry);
2042 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2043 1.16.2.2 christos
2044 1.16.2.2 christos if (bell) {
2045 1.16.2.2 christos bell->file = af;
2046 1.16.2.2 christos } else {
2047 1.16.2.2 christos error = fd_clone(fp, fd, flags, &audio_fileops, af);
2048 1.16.2.2 christos KASSERT(error == EMOVEFD);
2049 1.16.2.2 christos }
2050 1.16.2.2 christos
2051 1.16.2.2 christos TRACEF(3, af, "done");
2052 1.16.2.2 christos return error;
2053 1.16.2.2 christos
2054 1.16.2.2 christos /*
2055 1.16.2.2 christos * Since track here is not yet linked to sc_files,
2056 1.16.2.2 christos * you can call track_destroy() without sc_intr_lock.
2057 1.16.2.2 christos */
2058 1.16.2.2 christos bad3:
2059 1.16.2.2 christos if (sc->sc_popens + sc->sc_ropens == 0) {
2060 1.16.2.2 christos if (sc->hw_if->close) {
2061 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2062 1.16.2.2 christos sc->hw_if->close(sc->hw_hdl);
2063 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2064 1.16.2.2 christos }
2065 1.16.2.2 christos }
2066 1.16.2.2 christos bad2:
2067 1.16.2.2 christos if (af->rtrack) {
2068 1.16.2.2 christos audio_track_destroy(af->rtrack);
2069 1.16.2.2 christos af->rtrack = NULL;
2070 1.16.2.2 christos }
2071 1.16.2.2 christos if (af->ptrack) {
2072 1.16.2.2 christos audio_track_destroy(af->ptrack);
2073 1.16.2.2 christos af->ptrack = NULL;
2074 1.16.2.2 christos }
2075 1.16.2.2 christos bad1:
2076 1.16.2.2 christos kmem_free(af, sizeof(*af));
2077 1.16.2.2 christos return error;
2078 1.16.2.2 christos }
2079 1.16.2.2 christos
2080 1.16.2.2 christos /*
2081 1.16.2.2 christos * Must NOT called with sc_lock nor sc_exlock held.
2082 1.16.2.2 christos */
2083 1.16.2.2 christos int
2084 1.16.2.2 christos audio_close(struct audio_softc *sc, audio_file_t *file)
2085 1.16.2.2 christos {
2086 1.16.2.2 christos audio_track_t *oldtrack;
2087 1.16.2.2 christos int error;
2088 1.16.2.2 christos
2089 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2090 1.16.2.2 christos
2091 1.16.2.2 christos TRACEF(1, file, "%spid=%d.%d po=%d ro=%d",
2092 1.16.2.2 christos (audiodebug >= 3) ? "start " : "",
2093 1.16.2.2 christos (int)curproc->p_pid, (int)curlwp->l_lid,
2094 1.16.2.2 christos sc->sc_popens, sc->sc_ropens);
2095 1.16.2.2 christos KASSERTMSG(sc->sc_popens + sc->sc_ropens > 0,
2096 1.16.2.2 christos "sc->sc_popens=%d, sc->sc_ropens=%d",
2097 1.16.2.2 christos sc->sc_popens, sc->sc_ropens);
2098 1.16.2.2 christos
2099 1.16.2.2 christos /*
2100 1.16.2.2 christos * Drain first.
2101 1.16.2.2 christos * It must be done before acquiring exclusive lock.
2102 1.16.2.2 christos */
2103 1.16.2.2 christos if (file->ptrack) {
2104 1.16.2.2 christos mutex_enter(sc->sc_lock);
2105 1.16.2.2 christos audio_track_drain(sc, file->ptrack);
2106 1.16.2.2 christos mutex_exit(sc->sc_lock);
2107 1.16.2.2 christos }
2108 1.16.2.2 christos
2109 1.16.2.2 christos /* Then, acquire exclusive lock to protect counters. */
2110 1.16.2.2 christos /* XXX what should I do when an error occurs? */
2111 1.16.2.2 christos error = audio_enter_exclusive(sc);
2112 1.16.2.2 christos if (error)
2113 1.16.2.2 christos return error;
2114 1.16.2.2 christos
2115 1.16.2.2 christos if (file->ptrack) {
2116 1.16.2.2 christos /* Call hw halt_output if this is the last playback track. */
2117 1.16.2.2 christos if (sc->sc_popens == 1 && sc->sc_pbusy) {
2118 1.16.2.2 christos error = audio_pmixer_halt(sc);
2119 1.16.2.2 christos if (error) {
2120 1.16.2.2 christos device_printf(sc->sc_dev,
2121 1.16.2.2 christos "halt_output failed with %d\n", error);
2122 1.16.2.2 christos }
2123 1.16.2.2 christos }
2124 1.16.2.2 christos
2125 1.16.2.2 christos /* Destroy the track. */
2126 1.16.2.2 christos oldtrack = file->ptrack;
2127 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2128 1.16.2.2 christos file->ptrack = NULL;
2129 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2130 1.16.2.2 christos TRACET(3, oldtrack, "dropframes=%" PRIu64,
2131 1.16.2.2 christos oldtrack->dropframes);
2132 1.16.2.2 christos audio_track_destroy(oldtrack);
2133 1.16.2.2 christos
2134 1.16.2.2 christos KASSERT(sc->sc_popens > 0);
2135 1.16.2.2 christos sc->sc_popens--;
2136 1.16.2.2 christos }
2137 1.16.2.2 christos if (file->rtrack) {
2138 1.16.2.2 christos /* Call hw halt_input if this is the last recording track. */
2139 1.16.2.2 christos if (sc->sc_ropens == 1 && sc->sc_rbusy) {
2140 1.16.2.2 christos error = audio_rmixer_halt(sc);
2141 1.16.2.2 christos if (error) {
2142 1.16.2.2 christos device_printf(sc->sc_dev,
2143 1.16.2.2 christos "halt_input failed with %d\n", error);
2144 1.16.2.2 christos }
2145 1.16.2.2 christos }
2146 1.16.2.2 christos
2147 1.16.2.2 christos /* Destroy the track. */
2148 1.16.2.2 christos oldtrack = file->rtrack;
2149 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2150 1.16.2.2 christos file->rtrack = NULL;
2151 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2152 1.16.2.2 christos TRACET(3, oldtrack, "dropframes=%" PRIu64,
2153 1.16.2.2 christos oldtrack->dropframes);
2154 1.16.2.2 christos audio_track_destroy(oldtrack);
2155 1.16.2.2 christos
2156 1.16.2.2 christos KASSERT(sc->sc_ropens > 0);
2157 1.16.2.2 christos sc->sc_ropens--;
2158 1.16.2.2 christos }
2159 1.16.2.2 christos
2160 1.16.2.2 christos /* Call hw close if this is the last track. */
2161 1.16.2.2 christos if (sc->sc_popens + sc->sc_ropens == 0) {
2162 1.16.2.2 christos if (sc->hw_if->close) {
2163 1.16.2.2 christos TRACE(2, "hw_if close");
2164 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2165 1.16.2.2 christos sc->hw_if->close(sc->hw_hdl);
2166 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2167 1.16.2.2 christos }
2168 1.16.2.2 christos
2169 1.16.2.2 christos kauth_cred_free(sc->sc_cred);
2170 1.16.2.2 christos }
2171 1.16.2.2 christos
2172 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2173 1.16.2.2 christos SLIST_REMOVE(&sc->sc_files, file, audio_file, entry);
2174 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2175 1.16.2.2 christos
2176 1.16.2.2 christos TRACE(3, "done");
2177 1.16.2.2 christos audio_exit_exclusive(sc);
2178 1.16.2.2 christos return 0;
2179 1.16.2.2 christos }
2180 1.16.2.2 christos
2181 1.16.2.2 christos int
2182 1.16.2.2 christos audio_read(struct audio_softc *sc, struct uio *uio, int ioflag,
2183 1.16.2.2 christos audio_file_t *file)
2184 1.16.2.2 christos {
2185 1.16.2.2 christos audio_track_t *track;
2186 1.16.2.2 christos audio_ring_t *usrbuf;
2187 1.16.2.2 christos audio_ring_t *input;
2188 1.16.2.2 christos int error;
2189 1.16.2.2 christos
2190 1.16.2.2 christos track = file->rtrack;
2191 1.16.2.2 christos KASSERT(track);
2192 1.16.2.2 christos TRACET(2, track, "resid=%zd", uio->uio_resid);
2193 1.16.2.2 christos
2194 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2195 1.16.2.2 christos
2196 1.16.2.2 christos /* I think it's better than EINVAL. */
2197 1.16.2.2 christos if (track->mmapped)
2198 1.16.2.2 christos return EPERM;
2199 1.16.2.2 christos
2200 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
2201 1.16.2.2 christos mutex_enter(sc->sc_lock);
2202 1.16.2.2 christos if (device_is_active(&sc->sc_dev) || sc->sc_idle)
2203 1.16.2.2 christos device_active(&sc->sc_dev, DVA_SYSTEM);
2204 1.16.2.2 christos mutex_exit(sc->sc_lock);
2205 1.16.2.2 christos #endif
2206 1.16.2.2 christos
2207 1.16.2.2 christos /*
2208 1.16.2.2 christos * On half-duplex hardware, O_RDWR is treated as O_WRONLY.
2209 1.16.2.2 christos * However read() system call itself can be called because it's
2210 1.16.2.2 christos * opened with O_RDWR. So in this case, deny this read().
2211 1.16.2.2 christos */
2212 1.16.2.2 christos if ((file->mode & AUMODE_RECORD) == 0) {
2213 1.16.2.2 christos return EBADF;
2214 1.16.2.2 christos }
2215 1.16.2.2 christos
2216 1.16.2.2 christos TRACET(3, track, "resid=%zd", uio->uio_resid);
2217 1.16.2.2 christos
2218 1.16.2.2 christos usrbuf = &track->usrbuf;
2219 1.16.2.2 christos input = track->input;
2220 1.16.2.2 christos
2221 1.16.2.2 christos /*
2222 1.16.2.2 christos * The first read starts rmixer.
2223 1.16.2.2 christos */
2224 1.16.2.2 christos error = audio_enter_exclusive(sc);
2225 1.16.2.2 christos if (error)
2226 1.16.2.2 christos return error;
2227 1.16.2.2 christos if (sc->sc_rbusy == false)
2228 1.16.2.2 christos audio_rmixer_start(sc);
2229 1.16.2.2 christos audio_exit_exclusive(sc);
2230 1.16.2.2 christos
2231 1.16.2.2 christos error = 0;
2232 1.16.2.2 christos while (uio->uio_resid > 0 && error == 0) {
2233 1.16.2.2 christos int bytes;
2234 1.16.2.2 christos
2235 1.16.2.2 christos TRACET(3, track,
2236 1.16.2.2 christos "while resid=%zd input=%d/%d/%d usrbuf=%d/%d/H%d",
2237 1.16.2.2 christos uio->uio_resid,
2238 1.16.2.2 christos input->head, input->used, input->capacity,
2239 1.16.2.2 christos usrbuf->head, usrbuf->used, track->usrbuf_usedhigh);
2240 1.16.2.2 christos
2241 1.16.2.2 christos /* Wait when buffers are empty. */
2242 1.16.2.2 christos mutex_enter(sc->sc_lock);
2243 1.16.2.2 christos for (;;) {
2244 1.16.2.2 christos bool empty;
2245 1.16.2.2 christos audio_track_lock_enter(track);
2246 1.16.2.2 christos empty = (input->used == 0 && usrbuf->used == 0);
2247 1.16.2.2 christos audio_track_lock_exit(track);
2248 1.16.2.2 christos if (!empty)
2249 1.16.2.2 christos break;
2250 1.16.2.2 christos
2251 1.16.2.2 christos if ((ioflag & IO_NDELAY)) {
2252 1.16.2.2 christos mutex_exit(sc->sc_lock);
2253 1.16.2.2 christos return EWOULDBLOCK;
2254 1.16.2.2 christos }
2255 1.16.2.2 christos
2256 1.16.2.2 christos TRACET(3, track, "sleep");
2257 1.16.2.2 christos error = audio_track_waitio(sc, track);
2258 1.16.2.2 christos if (error) {
2259 1.16.2.2 christos mutex_exit(sc->sc_lock);
2260 1.16.2.2 christos return error;
2261 1.16.2.2 christos }
2262 1.16.2.2 christos }
2263 1.16.2.2 christos mutex_exit(sc->sc_lock);
2264 1.16.2.2 christos
2265 1.16.2.2 christos audio_track_lock_enter(track);
2266 1.16.2.2 christos audio_track_record(track);
2267 1.16.2.2 christos
2268 1.16.2.2 christos /* uiomove from usrbuf as much as possible. */
2269 1.16.2.2 christos bytes = uimin(usrbuf->used, uio->uio_resid);
2270 1.16.2.2 christos while (bytes > 0) {
2271 1.16.2.2 christos int head = usrbuf->head;
2272 1.16.2.2 christos int len = uimin(bytes, usrbuf->capacity - head);
2273 1.16.2.2 christos error = uiomove((uint8_t *)usrbuf->mem + head, len,
2274 1.16.2.2 christos uio);
2275 1.16.2.2 christos if (error) {
2276 1.16.2.2 christos audio_track_lock_exit(track);
2277 1.16.2.2 christos device_printf(sc->sc_dev,
2278 1.16.2.2 christos "uiomove(len=%d) failed with %d\n",
2279 1.16.2.2 christos len, error);
2280 1.16.2.2 christos goto abort;
2281 1.16.2.2 christos }
2282 1.16.2.2 christos auring_take(usrbuf, len);
2283 1.16.2.2 christos track->useriobytes += len;
2284 1.16.2.2 christos TRACET(3, track, "uiomove(len=%d) usrbuf=%d/%d/C%d",
2285 1.16.2.2 christos len,
2286 1.16.2.2 christos usrbuf->head, usrbuf->used, usrbuf->capacity);
2287 1.16.2.2 christos bytes -= len;
2288 1.16.2.2 christos }
2289 1.16.2.2 christos
2290 1.16.2.2 christos audio_track_lock_exit(track);
2291 1.16.2.2 christos }
2292 1.16.2.2 christos
2293 1.16.2.2 christos abort:
2294 1.16.2.2 christos return error;
2295 1.16.2.2 christos }
2296 1.16.2.2 christos
2297 1.16.2.2 christos
2298 1.16.2.2 christos /*
2299 1.16.2.2 christos * Clear file's playback and/or record track buffer immediately.
2300 1.16.2.2 christos */
2301 1.16.2.2 christos static void
2302 1.16.2.2 christos audio_file_clear(struct audio_softc *sc, audio_file_t *file)
2303 1.16.2.2 christos {
2304 1.16.2.2 christos
2305 1.16.2.2 christos if (file->ptrack)
2306 1.16.2.2 christos audio_track_clear(sc, file->ptrack);
2307 1.16.2.2 christos if (file->rtrack)
2308 1.16.2.2 christos audio_track_clear(sc, file->rtrack);
2309 1.16.2.2 christos }
2310 1.16.2.2 christos
2311 1.16.2.2 christos int
2312 1.16.2.2 christos audio_write(struct audio_softc *sc, struct uio *uio, int ioflag,
2313 1.16.2.2 christos audio_file_t *file)
2314 1.16.2.2 christos {
2315 1.16.2.2 christos audio_track_t *track;
2316 1.16.2.2 christos audio_ring_t *usrbuf;
2317 1.16.2.2 christos audio_ring_t *outbuf;
2318 1.16.2.2 christos int error;
2319 1.16.2.2 christos
2320 1.16.2.2 christos track = file->ptrack;
2321 1.16.2.2 christos KASSERT(track);
2322 1.16.2.2 christos TRACET(2, track, "%sresid=%zd pid=%d.%d ioflag=0x%x",
2323 1.16.2.2 christos audiodebug >= 3 ? "begin " : "",
2324 1.16.2.2 christos uio->uio_resid, (int)curproc->p_pid, (int)curlwp->l_lid, ioflag);
2325 1.16.2.2 christos
2326 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2327 1.16.2.2 christos
2328 1.16.2.2 christos /* I think it's better than EINVAL. */
2329 1.16.2.2 christos if (track->mmapped)
2330 1.16.2.2 christos return EPERM;
2331 1.16.2.2 christos
2332 1.16.2.2 christos if (uio->uio_resid == 0) {
2333 1.16.2.2 christos track->eofcounter++;
2334 1.16.2.2 christos return 0;
2335 1.16.2.2 christos }
2336 1.16.2.2 christos
2337 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
2338 1.16.2.2 christos mutex_enter(sc->sc_lock);
2339 1.16.2.2 christos if (device_is_active(&sc->sc_dev) || sc->sc_idle)
2340 1.16.2.2 christos device_active(&sc->sc_dev, DVA_SYSTEM);
2341 1.16.2.2 christos mutex_exit(sc->sc_lock);
2342 1.16.2.2 christos #endif
2343 1.16.2.2 christos
2344 1.16.2.2 christos usrbuf = &track->usrbuf;
2345 1.16.2.2 christos outbuf = &track->outbuf;
2346 1.16.2.2 christos
2347 1.16.2.2 christos /*
2348 1.16.2.2 christos * The first write starts pmixer.
2349 1.16.2.2 christos */
2350 1.16.2.2 christos error = audio_enter_exclusive(sc);
2351 1.16.2.2 christos if (error)
2352 1.16.2.2 christos return error;
2353 1.16.2.2 christos if (sc->sc_pbusy == false)
2354 1.16.2.2 christos audio_pmixer_start(sc, false);
2355 1.16.2.2 christos audio_exit_exclusive(sc);
2356 1.16.2.2 christos
2357 1.16.2.2 christos track->pstate = AUDIO_STATE_RUNNING;
2358 1.16.2.2 christos error = 0;
2359 1.16.2.2 christos while (uio->uio_resid > 0 && error == 0) {
2360 1.16.2.2 christos int bytes;
2361 1.16.2.2 christos
2362 1.16.2.2 christos TRACET(3, track, "while resid=%zd usrbuf=%d/%d/H%d",
2363 1.16.2.2 christos uio->uio_resid,
2364 1.16.2.2 christos usrbuf->head, usrbuf->used, track->usrbuf_usedhigh);
2365 1.16.2.2 christos
2366 1.16.2.2 christos /* Wait when buffers are full. */
2367 1.16.2.2 christos mutex_enter(sc->sc_lock);
2368 1.16.2.2 christos for (;;) {
2369 1.16.2.2 christos bool full;
2370 1.16.2.2 christos audio_track_lock_enter(track);
2371 1.16.2.2 christos full = (usrbuf->used >= track->usrbuf_usedhigh &&
2372 1.16.2.2 christos outbuf->used >= outbuf->capacity);
2373 1.16.2.2 christos audio_track_lock_exit(track);
2374 1.16.2.2 christos if (!full)
2375 1.16.2.2 christos break;
2376 1.16.2.2 christos
2377 1.16.2.2 christos if ((ioflag & IO_NDELAY)) {
2378 1.16.2.2 christos error = EWOULDBLOCK;
2379 1.16.2.2 christos mutex_exit(sc->sc_lock);
2380 1.16.2.2 christos goto abort;
2381 1.16.2.2 christos }
2382 1.16.2.2 christos
2383 1.16.2.2 christos TRACET(3, track, "sleep usrbuf=%d/H%d",
2384 1.16.2.2 christos usrbuf->used, track->usrbuf_usedhigh);
2385 1.16.2.2 christos error = audio_track_waitio(sc, track);
2386 1.16.2.2 christos if (error) {
2387 1.16.2.2 christos mutex_exit(sc->sc_lock);
2388 1.16.2.2 christos goto abort;
2389 1.16.2.2 christos }
2390 1.16.2.2 christos }
2391 1.16.2.2 christos mutex_exit(sc->sc_lock);
2392 1.16.2.2 christos
2393 1.16.2.2 christos audio_track_lock_enter(track);
2394 1.16.2.2 christos
2395 1.16.2.2 christos /* uiomove to usrbuf as much as possible. */
2396 1.16.2.2 christos bytes = uimin(track->usrbuf_usedhigh - usrbuf->used,
2397 1.16.2.2 christos uio->uio_resid);
2398 1.16.2.2 christos while (bytes > 0) {
2399 1.16.2.2 christos int tail = auring_tail(usrbuf);
2400 1.16.2.2 christos int len = uimin(bytes, usrbuf->capacity - tail);
2401 1.16.2.2 christos error = uiomove((uint8_t *)usrbuf->mem + tail, len,
2402 1.16.2.2 christos uio);
2403 1.16.2.2 christos if (error) {
2404 1.16.2.2 christos audio_track_lock_exit(track);
2405 1.16.2.2 christos device_printf(sc->sc_dev,
2406 1.16.2.2 christos "uiomove(len=%d) failed with %d\n",
2407 1.16.2.2 christos len, error);
2408 1.16.2.2 christos goto abort;
2409 1.16.2.2 christos }
2410 1.16.2.2 christos auring_push(usrbuf, len);
2411 1.16.2.2 christos track->useriobytes += len;
2412 1.16.2.2 christos TRACET(3, track, "uiomove(len=%d) usrbuf=%d/%d/C%d",
2413 1.16.2.2 christos len,
2414 1.16.2.2 christos usrbuf->head, usrbuf->used, usrbuf->capacity);
2415 1.16.2.2 christos bytes -= len;
2416 1.16.2.2 christos }
2417 1.16.2.2 christos
2418 1.16.2.2 christos /* Convert them as much as possible. */
2419 1.16.2.2 christos while (usrbuf->used >= track->usrbuf_blksize &&
2420 1.16.2.2 christos outbuf->used < outbuf->capacity) {
2421 1.16.2.2 christos audio_track_play(track);
2422 1.16.2.2 christos }
2423 1.16.2.2 christos
2424 1.16.2.2 christos audio_track_lock_exit(track);
2425 1.16.2.2 christos }
2426 1.16.2.2 christos
2427 1.16.2.2 christos abort:
2428 1.16.2.2 christos TRACET(3, track, "done error=%d", error);
2429 1.16.2.2 christos return error;
2430 1.16.2.2 christos }
2431 1.16.2.2 christos
2432 1.16.2.2 christos int
2433 1.16.2.2 christos audio_ioctl(dev_t dev, struct audio_softc *sc, u_long cmd, void *addr, int flag,
2434 1.16.2.2 christos struct lwp *l, audio_file_t *file)
2435 1.16.2.2 christos {
2436 1.16.2.2 christos struct audio_offset *ao;
2437 1.16.2.2 christos struct audio_info ai;
2438 1.16.2.2 christos audio_track_t *track;
2439 1.16.2.2 christos audio_encoding_t *ae;
2440 1.16.2.2 christos audio_format_query_t *query;
2441 1.16.2.2 christos u_int stamp;
2442 1.16.2.2 christos u_int offs;
2443 1.16.2.2 christos int fd;
2444 1.16.2.2 christos int index;
2445 1.16.2.2 christos int error;
2446 1.16.2.2 christos
2447 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2448 1.16.2.2 christos
2449 1.16.2.2 christos #if defined(AUDIO_DEBUG)
2450 1.16.2.2 christos const char *ioctlnames[] = {
2451 1.16.2.2 christos " AUDIO_GETINFO", /* 21 */
2452 1.16.2.2 christos " AUDIO_SETINFO", /* 22 */
2453 1.16.2.2 christos " AUDIO_DRAIN", /* 23 */
2454 1.16.2.2 christos " AUDIO_FLUSH", /* 24 */
2455 1.16.2.2 christos " AUDIO_WSEEK", /* 25 */
2456 1.16.2.2 christos " AUDIO_RERROR", /* 26 */
2457 1.16.2.2 christos " AUDIO_GETDEV", /* 27 */
2458 1.16.2.2 christos " AUDIO_GETENC", /* 28 */
2459 1.16.2.2 christos " AUDIO_GETFD", /* 29 */
2460 1.16.2.2 christos " AUDIO_SETFD", /* 30 */
2461 1.16.2.2 christos " AUDIO_PERROR", /* 31 */
2462 1.16.2.2 christos " AUDIO_GETIOFFS", /* 32 */
2463 1.16.2.2 christos " AUDIO_GETOOFFS", /* 33 */
2464 1.16.2.2 christos " AUDIO_GETPROPS", /* 34 */
2465 1.16.2.2 christos " AUDIO_GETBUFINFO", /* 35 */
2466 1.16.2.2 christos " AUDIO_SETCHAN", /* 36 */
2467 1.16.2.2 christos " AUDIO_GETCHAN", /* 37 */
2468 1.16.2.2 christos " AUDIO_QUERYFORMAT", /* 38 */
2469 1.16.2.2 christos " AUDIO_GETFORMAT", /* 39 */
2470 1.16.2.2 christos " AUDIO_SETFORMAT", /* 40 */
2471 1.16.2.2 christos };
2472 1.16.2.2 christos int nameidx = (cmd & 0xff);
2473 1.16.2.2 christos const char *ioctlname = "";
2474 1.16.2.2 christos if (21 <= nameidx && nameidx <= 21 + __arraycount(ioctlnames))
2475 1.16.2.2 christos ioctlname = ioctlnames[nameidx - 21];
2476 1.16.2.2 christos TRACEF(2, file, "(%lu,'%c',%lu)%s pid=%d.%d",
2477 1.16.2.2 christos IOCPARM_LEN(cmd), (char)IOCGROUP(cmd), cmd&0xff, ioctlname,
2478 1.16.2.2 christos (int)curproc->p_pid, (int)l->l_lid);
2479 1.16.2.2 christos #endif
2480 1.16.2.2 christos
2481 1.16.2.2 christos error = 0;
2482 1.16.2.2 christos switch (cmd) {
2483 1.16.2.2 christos case FIONBIO:
2484 1.16.2.2 christos /* All handled in the upper FS layer. */
2485 1.16.2.2 christos break;
2486 1.16.2.2 christos
2487 1.16.2.2 christos case FIONREAD:
2488 1.16.2.2 christos /* Get the number of bytes that can be read. */
2489 1.16.2.2 christos if (file->rtrack) {
2490 1.16.2.2 christos *(int *)addr = audio_track_readablebytes(file->rtrack);
2491 1.16.2.2 christos } else {
2492 1.16.2.2 christos *(int *)addr = 0;
2493 1.16.2.2 christos }
2494 1.16.2.2 christos break;
2495 1.16.2.2 christos
2496 1.16.2.2 christos case FIOASYNC:
2497 1.16.2.2 christos /* Set/Clear ASYNC I/O. */
2498 1.16.2.2 christos if (*(int *)addr) {
2499 1.16.2.2 christos file->async_audio = curproc->p_pid;
2500 1.16.2.2 christos TRACEF(2, file, "FIOASYNC pid %d", file->async_audio);
2501 1.16.2.2 christos } else {
2502 1.16.2.2 christos file->async_audio = 0;
2503 1.16.2.2 christos TRACEF(2, file, "FIOASYNC off");
2504 1.16.2.2 christos }
2505 1.16.2.2 christos break;
2506 1.16.2.2 christos
2507 1.16.2.2 christos case AUDIO_FLUSH:
2508 1.16.2.2 christos /* XXX TODO: clear errors and restart? */
2509 1.16.2.2 christos audio_file_clear(sc, file);
2510 1.16.2.2 christos break;
2511 1.16.2.2 christos
2512 1.16.2.2 christos case AUDIO_RERROR:
2513 1.16.2.2 christos /*
2514 1.16.2.2 christos * Number of read bytes dropped. We don't know where
2515 1.16.2.2 christos * or when they were dropped (including conversion stage).
2516 1.16.2.2 christos * Therefore, the number of accurate bytes or samples is
2517 1.16.2.2 christos * also unknown.
2518 1.16.2.2 christos */
2519 1.16.2.2 christos track = file->rtrack;
2520 1.16.2.2 christos if (track) {
2521 1.16.2.2 christos *(int *)addr = frametobyte(&track->usrbuf.fmt,
2522 1.16.2.2 christos track->dropframes);
2523 1.16.2.2 christos }
2524 1.16.2.2 christos break;
2525 1.16.2.2 christos
2526 1.16.2.2 christos case AUDIO_PERROR:
2527 1.16.2.2 christos /*
2528 1.16.2.2 christos * Number of write bytes dropped. We don't know where
2529 1.16.2.2 christos * or when they were dropped (including conversion stage).
2530 1.16.2.2 christos * Therefore, the number of accurate bytes or samples is
2531 1.16.2.2 christos * also unknown.
2532 1.16.2.2 christos */
2533 1.16.2.2 christos track = file->ptrack;
2534 1.16.2.2 christos if (track) {
2535 1.16.2.2 christos *(int *)addr = frametobyte(&track->usrbuf.fmt,
2536 1.16.2.2 christos track->dropframes);
2537 1.16.2.2 christos }
2538 1.16.2.2 christos break;
2539 1.16.2.2 christos
2540 1.16.2.2 christos case AUDIO_GETIOFFS:
2541 1.16.2.2 christos /* XXX TODO */
2542 1.16.2.2 christos ao = (struct audio_offset *)addr;
2543 1.16.2.2 christos ao->samples = 0;
2544 1.16.2.2 christos ao->deltablks = 0;
2545 1.16.2.2 christos ao->offset = 0;
2546 1.16.2.2 christos break;
2547 1.16.2.2 christos
2548 1.16.2.2 christos case AUDIO_GETOOFFS:
2549 1.16.2.2 christos ao = (struct audio_offset *)addr;
2550 1.16.2.2 christos track = file->ptrack;
2551 1.16.2.2 christos if (track == NULL) {
2552 1.16.2.2 christos ao->samples = 0;
2553 1.16.2.2 christos ao->deltablks = 0;
2554 1.16.2.2 christos ao->offset = 0;
2555 1.16.2.2 christos break;
2556 1.16.2.2 christos }
2557 1.16.2.2 christos mutex_enter(sc->sc_lock);
2558 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
2559 1.16.2.2 christos /* figure out where next DMA will start */
2560 1.16.2.2 christos stamp = track->usrbuf_stamp;
2561 1.16.2.2 christos offs = track->usrbuf.head;
2562 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
2563 1.16.2.2 christos mutex_exit(sc->sc_lock);
2564 1.16.2.2 christos
2565 1.16.2.2 christos ao->samples = stamp;
2566 1.16.2.2 christos ao->deltablks = (stamp / track->usrbuf_blksize) -
2567 1.16.2.2 christos (track->usrbuf_stamp_last / track->usrbuf_blksize);
2568 1.16.2.2 christos track->usrbuf_stamp_last = stamp;
2569 1.16.2.2 christos offs = rounddown(offs, track->usrbuf_blksize)
2570 1.16.2.2 christos + track->usrbuf_blksize;
2571 1.16.2.2 christos if (offs >= track->usrbuf.capacity)
2572 1.16.2.2 christos offs -= track->usrbuf.capacity;
2573 1.16.2.2 christos ao->offset = offs;
2574 1.16.2.2 christos
2575 1.16.2.2 christos TRACET(3, track, "GETOOFFS: samples=%u deltablks=%u offset=%u",
2576 1.16.2.2 christos ao->samples, ao->deltablks, ao->offset);
2577 1.16.2.2 christos break;
2578 1.16.2.2 christos
2579 1.16.2.2 christos case AUDIO_WSEEK:
2580 1.16.2.2 christos /* XXX return value does not include outbuf one. */
2581 1.16.2.2 christos if (file->ptrack)
2582 1.16.2.2 christos *(u_long *)addr = file->ptrack->usrbuf.used;
2583 1.16.2.2 christos break;
2584 1.16.2.2 christos
2585 1.16.2.2 christos case AUDIO_SETINFO:
2586 1.16.2.2 christos error = audio_enter_exclusive(sc);
2587 1.16.2.2 christos if (error)
2588 1.16.2.2 christos break;
2589 1.16.2.2 christos error = audio_file_setinfo(sc, file, (struct audio_info *)addr);
2590 1.16.2.2 christos if (error) {
2591 1.16.2.2 christos audio_exit_exclusive(sc);
2592 1.16.2.2 christos break;
2593 1.16.2.2 christos }
2594 1.16.2.2 christos /* XXX TODO: update last_ai if /dev/sound ? */
2595 1.16.2.2 christos if (ISDEVSOUND(dev))
2596 1.16.2.2 christos error = audiogetinfo(sc, &sc->sc_ai, 0, file);
2597 1.16.2.2 christos audio_exit_exclusive(sc);
2598 1.16.2.2 christos break;
2599 1.16.2.2 christos
2600 1.16.2.2 christos case AUDIO_GETINFO:
2601 1.16.2.2 christos error = audio_enter_exclusive(sc);
2602 1.16.2.2 christos if (error)
2603 1.16.2.2 christos break;
2604 1.16.2.2 christos error = audiogetinfo(sc, (struct audio_info *)addr, 1, file);
2605 1.16.2.2 christos audio_exit_exclusive(sc);
2606 1.16.2.2 christos break;
2607 1.16.2.2 christos
2608 1.16.2.2 christos case AUDIO_GETBUFINFO:
2609 1.16.2.2 christos mutex_enter(sc->sc_lock);
2610 1.16.2.2 christos error = audiogetinfo(sc, (struct audio_info *)addr, 0, file);
2611 1.16.2.2 christos mutex_exit(sc->sc_lock);
2612 1.16.2.2 christos break;
2613 1.16.2.2 christos
2614 1.16.2.2 christos case AUDIO_DRAIN:
2615 1.16.2.2 christos if (file->ptrack) {
2616 1.16.2.2 christos mutex_enter(sc->sc_lock);
2617 1.16.2.2 christos error = audio_track_drain(sc, file->ptrack);
2618 1.16.2.2 christos mutex_exit(sc->sc_lock);
2619 1.16.2.2 christos }
2620 1.16.2.2 christos break;
2621 1.16.2.2 christos
2622 1.16.2.2 christos case AUDIO_GETDEV:
2623 1.16.2.2 christos mutex_enter(sc->sc_lock);
2624 1.16.2.2 christos error = sc->hw_if->getdev(sc->hw_hdl, (audio_device_t *)addr);
2625 1.16.2.2 christos mutex_exit(sc->sc_lock);
2626 1.16.2.2 christos break;
2627 1.16.2.2 christos
2628 1.16.2.2 christos case AUDIO_GETENC:
2629 1.16.2.2 christos ae = (audio_encoding_t *)addr;
2630 1.16.2.2 christos index = ae->index;
2631 1.16.2.2 christos if (index < 0 || index >= __arraycount(audio_encodings)) {
2632 1.16.2.2 christos error = EINVAL;
2633 1.16.2.2 christos break;
2634 1.16.2.2 christos }
2635 1.16.2.2 christos *ae = audio_encodings[index];
2636 1.16.2.2 christos ae->index = index;
2637 1.16.2.2 christos /*
2638 1.16.2.2 christos * EMULATED always.
2639 1.16.2.2 christos * EMULATED flag at that time used to mean that it could
2640 1.16.2.2 christos * not be passed directly to the hardware as-is. But
2641 1.16.2.2 christos * currently, all formats including hardware native is not
2642 1.16.2.2 christos * passed directly to the hardware. So I set EMULATED
2643 1.16.2.2 christos * flag for all formats.
2644 1.16.2.2 christos */
2645 1.16.2.2 christos ae->flags = AUDIO_ENCODINGFLAG_EMULATED;
2646 1.16.2.2 christos break;
2647 1.16.2.2 christos
2648 1.16.2.2 christos case AUDIO_GETFD:
2649 1.16.2.2 christos /*
2650 1.16.2.2 christos * Returns the current setting of full duplex mode.
2651 1.16.2.2 christos * If HW has full duplex mode and there are two mixers,
2652 1.16.2.2 christos * it is full duplex. Otherwise half duplex.
2653 1.16.2.2 christos */
2654 1.16.2.2 christos mutex_enter(sc->sc_lock);
2655 1.16.2.2 christos fd = (audio_get_props(sc) & AUDIO_PROP_FULLDUPLEX)
2656 1.16.2.2 christos && (sc->sc_pmixer && sc->sc_rmixer);
2657 1.16.2.2 christos mutex_exit(sc->sc_lock);
2658 1.16.2.2 christos *(int *)addr = fd;
2659 1.16.2.2 christos break;
2660 1.16.2.2 christos
2661 1.16.2.2 christos case AUDIO_GETPROPS:
2662 1.16.2.2 christos mutex_enter(sc->sc_lock);
2663 1.16.2.2 christos *(int *)addr = audio_get_props(sc);
2664 1.16.2.2 christos mutex_exit(sc->sc_lock);
2665 1.16.2.2 christos break;
2666 1.16.2.2 christos
2667 1.16.2.2 christos case AUDIO_QUERYFORMAT:
2668 1.16.2.2 christos query = (audio_format_query_t *)addr;
2669 1.16.2.2 christos if (sc->hw_if->query_format) {
2670 1.16.2.2 christos mutex_enter(sc->sc_lock);
2671 1.16.2.2 christos error = sc->hw_if->query_format(sc->hw_hdl, query);
2672 1.16.2.2 christos mutex_exit(sc->sc_lock);
2673 1.16.2.2 christos /* Hide internal infomations */
2674 1.16.2.2 christos query->fmt.driver_data = NULL;
2675 1.16.2.2 christos } else {
2676 1.16.2.2 christos error = ENODEV;
2677 1.16.2.2 christos }
2678 1.16.2.2 christos break;
2679 1.16.2.2 christos
2680 1.16.2.2 christos case AUDIO_GETFORMAT:
2681 1.16.2.2 christos audio_mixers_get_format(sc, (struct audio_info *)addr);
2682 1.16.2.2 christos break;
2683 1.16.2.2 christos
2684 1.16.2.2 christos case AUDIO_SETFORMAT:
2685 1.16.2.2 christos mutex_enter(sc->sc_lock);
2686 1.16.2.2 christos audio_mixers_get_format(sc, &ai);
2687 1.16.2.2 christos error = audio_mixers_set_format(sc, (struct audio_info *)addr);
2688 1.16.2.2 christos if (error) {
2689 1.16.2.2 christos /* Rollback */
2690 1.16.2.2 christos audio_mixers_set_format(sc, &ai);
2691 1.16.2.2 christos }
2692 1.16.2.2 christos mutex_exit(sc->sc_lock);
2693 1.16.2.2 christos break;
2694 1.16.2.2 christos
2695 1.16.2.2 christos case AUDIO_SETFD:
2696 1.16.2.2 christos case AUDIO_SETCHAN:
2697 1.16.2.2 christos case AUDIO_GETCHAN:
2698 1.16.2.2 christos /* Obsoleted */
2699 1.16.2.2 christos break;
2700 1.16.2.2 christos
2701 1.16.2.2 christos default:
2702 1.16.2.2 christos if (sc->hw_if->dev_ioctl) {
2703 1.16.2.2 christos error = audio_enter_exclusive(sc);
2704 1.16.2.2 christos if (error)
2705 1.16.2.2 christos break;
2706 1.16.2.2 christos error = sc->hw_if->dev_ioctl(sc->hw_hdl,
2707 1.16.2.2 christos cmd, addr, flag, l);
2708 1.16.2.2 christos audio_exit_exclusive(sc);
2709 1.16.2.2 christos } else {
2710 1.16.2.2 christos TRACEF(2, file, "unknown ioctl");
2711 1.16.2.2 christos error = EINVAL;
2712 1.16.2.2 christos }
2713 1.16.2.2 christos break;
2714 1.16.2.2 christos }
2715 1.16.2.2 christos TRACEF(2, file, "(%lu,'%c',%lu)%s result %d",
2716 1.16.2.2 christos IOCPARM_LEN(cmd), (char)IOCGROUP(cmd), cmd&0xff, ioctlname,
2717 1.16.2.2 christos error);
2718 1.16.2.2 christos return error;
2719 1.16.2.2 christos }
2720 1.16.2.2 christos
2721 1.16.2.2 christos /*
2722 1.16.2.2 christos * Returns the number of bytes that can be read on recording buffer.
2723 1.16.2.2 christos */
2724 1.16.2.2 christos static __inline int
2725 1.16.2.2 christos audio_track_readablebytes(const audio_track_t *track)
2726 1.16.2.2 christos {
2727 1.16.2.2 christos int bytes;
2728 1.16.2.2 christos
2729 1.16.2.2 christos KASSERT(track);
2730 1.16.2.2 christos KASSERT(track->mode == AUMODE_RECORD);
2731 1.16.2.2 christos
2732 1.16.2.2 christos /*
2733 1.16.2.2 christos * Although usrbuf is primarily readable data, recorded data
2734 1.16.2.2 christos * also stays in track->input until reading. So it is necessary
2735 1.16.2.2 christos * to add it. track->input is in frame, usrbuf is in byte.
2736 1.16.2.2 christos */
2737 1.16.2.2 christos bytes = track->usrbuf.used +
2738 1.16.2.2 christos track->input->used * frametobyte(&track->usrbuf.fmt, 1);
2739 1.16.2.2 christos return bytes;
2740 1.16.2.2 christos }
2741 1.16.2.2 christos
2742 1.16.2.2 christos int
2743 1.16.2.2 christos audio_poll(struct audio_softc *sc, int events, struct lwp *l,
2744 1.16.2.2 christos audio_file_t *file)
2745 1.16.2.2 christos {
2746 1.16.2.2 christos audio_track_t *track;
2747 1.16.2.2 christos int revents;
2748 1.16.2.2 christos bool in_is_valid;
2749 1.16.2.2 christos bool out_is_valid;
2750 1.16.2.2 christos
2751 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2752 1.16.2.2 christos
2753 1.16.2.2 christos #if defined(AUDIO_DEBUG)
2754 1.16.2.2 christos #define POLLEV_BITMAP "\177\020" \
2755 1.16.2.2 christos "b\10WRBAND\0" \
2756 1.16.2.2 christos "b\7RDBAND\0" "b\6RDNORM\0" "b\5NVAL\0" "b\4HUP\0" \
2757 1.16.2.2 christos "b\3ERR\0" "b\2OUT\0" "b\1PRI\0" "b\0IN\0"
2758 1.16.2.2 christos char evbuf[64];
2759 1.16.2.2 christos snprintb(evbuf, sizeof(evbuf), POLLEV_BITMAP, events);
2760 1.16.2.2 christos TRACEF(2, file, "pid=%d.%d events=%s",
2761 1.16.2.2 christos (int)curproc->p_pid, (int)l->l_lid, evbuf);
2762 1.16.2.2 christos #endif
2763 1.16.2.2 christos
2764 1.16.2.2 christos revents = 0;
2765 1.16.2.2 christos in_is_valid = false;
2766 1.16.2.2 christos out_is_valid = false;
2767 1.16.2.2 christos if (events & (POLLIN | POLLRDNORM)) {
2768 1.16.2.2 christos track = file->rtrack;
2769 1.16.2.2 christos if (track) {
2770 1.16.2.2 christos int used;
2771 1.16.2.2 christos in_is_valid = true;
2772 1.16.2.2 christos used = audio_track_readablebytes(track);
2773 1.16.2.2 christos if (used > 0)
2774 1.16.2.2 christos revents |= events & (POLLIN | POLLRDNORM);
2775 1.16.2.2 christos }
2776 1.16.2.2 christos }
2777 1.16.2.2 christos if (events & (POLLOUT | POLLWRNORM)) {
2778 1.16.2.2 christos track = file->ptrack;
2779 1.16.2.2 christos if (track) {
2780 1.16.2.2 christos out_is_valid = true;
2781 1.16.2.2 christos if (track->usrbuf.used <= track->usrbuf_usedlow)
2782 1.16.2.2 christos revents |= events & (POLLOUT | POLLWRNORM);
2783 1.16.2.2 christos }
2784 1.16.2.2 christos }
2785 1.16.2.2 christos
2786 1.16.2.2 christos if (revents == 0) {
2787 1.16.2.2 christos mutex_enter(sc->sc_lock);
2788 1.16.2.2 christos if (in_is_valid) {
2789 1.16.2.2 christos TRACEF(3, file, "selrecord rsel");
2790 1.16.2.2 christos selrecord(l, &sc->sc_rsel);
2791 1.16.2.2 christos }
2792 1.16.2.2 christos if (out_is_valid) {
2793 1.16.2.2 christos TRACEF(3, file, "selrecord wsel");
2794 1.16.2.2 christos selrecord(l, &sc->sc_wsel);
2795 1.16.2.2 christos }
2796 1.16.2.2 christos mutex_exit(sc->sc_lock);
2797 1.16.2.2 christos }
2798 1.16.2.2 christos
2799 1.16.2.2 christos #if defined(AUDIO_DEBUG)
2800 1.16.2.2 christos snprintb(evbuf, sizeof(evbuf), POLLEV_BITMAP, revents);
2801 1.16.2.2 christos TRACEF(2, file, "revents=%s", evbuf);
2802 1.16.2.2 christos #endif
2803 1.16.2.2 christos return revents;
2804 1.16.2.2 christos }
2805 1.16.2.2 christos
2806 1.16.2.2 christos static const struct filterops audioread_filtops = {
2807 1.16.2.2 christos .f_isfd = 1,
2808 1.16.2.2 christos .f_attach = NULL,
2809 1.16.2.2 christos .f_detach = filt_audioread_detach,
2810 1.16.2.2 christos .f_event = filt_audioread_event,
2811 1.16.2.2 christos };
2812 1.16.2.2 christos
2813 1.16.2.2 christos static void
2814 1.16.2.2 christos filt_audioread_detach(struct knote *kn)
2815 1.16.2.2 christos {
2816 1.16.2.2 christos struct audio_softc *sc;
2817 1.16.2.2 christos audio_file_t *file;
2818 1.16.2.2 christos
2819 1.16.2.2 christos file = kn->kn_hook;
2820 1.16.2.2 christos sc = file->sc;
2821 1.16.2.2 christos TRACEF(3, file, "");
2822 1.16.2.2 christos
2823 1.16.2.2 christos mutex_enter(sc->sc_lock);
2824 1.16.2.2 christos SLIST_REMOVE(&sc->sc_rsel.sel_klist, kn, knote, kn_selnext);
2825 1.16.2.2 christos mutex_exit(sc->sc_lock);
2826 1.16.2.2 christos }
2827 1.16.2.2 christos
2828 1.16.2.2 christos static int
2829 1.16.2.2 christos filt_audioread_event(struct knote *kn, long hint)
2830 1.16.2.2 christos {
2831 1.16.2.2 christos audio_file_t *file;
2832 1.16.2.2 christos audio_track_t *track;
2833 1.16.2.2 christos
2834 1.16.2.2 christos file = kn->kn_hook;
2835 1.16.2.2 christos track = file->rtrack;
2836 1.16.2.2 christos
2837 1.16.2.2 christos /*
2838 1.16.2.2 christos * kn_data must contain the number of bytes can be read.
2839 1.16.2.2 christos * The return value indicates whether the event occurs or not.
2840 1.16.2.2 christos */
2841 1.16.2.2 christos
2842 1.16.2.2 christos if (track == NULL) {
2843 1.16.2.2 christos /* can not read with this descriptor. */
2844 1.16.2.2 christos kn->kn_data = 0;
2845 1.16.2.2 christos return 0;
2846 1.16.2.2 christos }
2847 1.16.2.2 christos
2848 1.16.2.2 christos kn->kn_data = audio_track_readablebytes(track);
2849 1.16.2.2 christos TRACEF(3, file, "data=%" PRId64, kn->kn_data);
2850 1.16.2.2 christos return kn->kn_data > 0;
2851 1.16.2.2 christos }
2852 1.16.2.2 christos
2853 1.16.2.2 christos static const struct filterops audiowrite_filtops = {
2854 1.16.2.2 christos .f_isfd = 1,
2855 1.16.2.2 christos .f_attach = NULL,
2856 1.16.2.2 christos .f_detach = filt_audiowrite_detach,
2857 1.16.2.2 christos .f_event = filt_audiowrite_event,
2858 1.16.2.2 christos };
2859 1.16.2.2 christos
2860 1.16.2.2 christos static void
2861 1.16.2.2 christos filt_audiowrite_detach(struct knote *kn)
2862 1.16.2.2 christos {
2863 1.16.2.2 christos struct audio_softc *sc;
2864 1.16.2.2 christos audio_file_t *file;
2865 1.16.2.2 christos
2866 1.16.2.2 christos file = kn->kn_hook;
2867 1.16.2.2 christos sc = file->sc;
2868 1.16.2.2 christos TRACEF(3, file, "");
2869 1.16.2.2 christos
2870 1.16.2.2 christos mutex_enter(sc->sc_lock);
2871 1.16.2.2 christos SLIST_REMOVE(&sc->sc_wsel.sel_klist, kn, knote, kn_selnext);
2872 1.16.2.2 christos mutex_exit(sc->sc_lock);
2873 1.16.2.2 christos }
2874 1.16.2.2 christos
2875 1.16.2.2 christos static int
2876 1.16.2.2 christos filt_audiowrite_event(struct knote *kn, long hint)
2877 1.16.2.2 christos {
2878 1.16.2.2 christos audio_file_t *file;
2879 1.16.2.2 christos audio_track_t *track;
2880 1.16.2.2 christos
2881 1.16.2.2 christos file = kn->kn_hook;
2882 1.16.2.2 christos track = file->ptrack;
2883 1.16.2.2 christos
2884 1.16.2.2 christos /*
2885 1.16.2.2 christos * kn_data must contain the number of bytes can be write.
2886 1.16.2.2 christos * The return value indicates whether the event occurs or not.
2887 1.16.2.2 christos */
2888 1.16.2.2 christos
2889 1.16.2.2 christos if (track == NULL) {
2890 1.16.2.2 christos /* can not write with this descriptor. */
2891 1.16.2.2 christos kn->kn_data = 0;
2892 1.16.2.2 christos return 0;
2893 1.16.2.2 christos }
2894 1.16.2.2 christos
2895 1.16.2.2 christos kn->kn_data = track->usrbuf_usedhigh - track->usrbuf.used;
2896 1.16.2.2 christos TRACEF(3, file, "data=%" PRId64, kn->kn_data);
2897 1.16.2.2 christos return (track->usrbuf.used < track->usrbuf_usedlow);
2898 1.16.2.2 christos }
2899 1.16.2.2 christos
2900 1.16.2.2 christos int
2901 1.16.2.2 christos audio_kqfilter(struct audio_softc *sc, audio_file_t *file, struct knote *kn)
2902 1.16.2.2 christos {
2903 1.16.2.2 christos struct klist *klist;
2904 1.16.2.2 christos
2905 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2906 1.16.2.2 christos
2907 1.16.2.2 christos TRACEF(3, file, "kn=%p kn_filter=%x", kn, (int)kn->kn_filter);
2908 1.16.2.2 christos
2909 1.16.2.2 christos switch (kn->kn_filter) {
2910 1.16.2.2 christos case EVFILT_READ:
2911 1.16.2.2 christos klist = &sc->sc_rsel.sel_klist;
2912 1.16.2.2 christos kn->kn_fop = &audioread_filtops;
2913 1.16.2.2 christos break;
2914 1.16.2.2 christos
2915 1.16.2.2 christos case EVFILT_WRITE:
2916 1.16.2.2 christos klist = &sc->sc_wsel.sel_klist;
2917 1.16.2.2 christos kn->kn_fop = &audiowrite_filtops;
2918 1.16.2.2 christos break;
2919 1.16.2.2 christos
2920 1.16.2.2 christos default:
2921 1.16.2.2 christos return EINVAL;
2922 1.16.2.2 christos }
2923 1.16.2.2 christos
2924 1.16.2.2 christos kn->kn_hook = file;
2925 1.16.2.2 christos
2926 1.16.2.2 christos mutex_enter(sc->sc_lock);
2927 1.16.2.2 christos SLIST_INSERT_HEAD(klist, kn, kn_selnext);
2928 1.16.2.2 christos mutex_exit(sc->sc_lock);
2929 1.16.2.2 christos
2930 1.16.2.2 christos return 0;
2931 1.16.2.2 christos }
2932 1.16.2.2 christos
2933 1.16.2.2 christos int
2934 1.16.2.2 christos audio_mmap(struct audio_softc *sc, off_t *offp, size_t len, int prot,
2935 1.16.2.2 christos int *flagsp, int *advicep, struct uvm_object **uobjp, int *maxprotp,
2936 1.16.2.2 christos audio_file_t *file)
2937 1.16.2.2 christos {
2938 1.16.2.2 christos audio_track_t *track;
2939 1.16.2.2 christos vsize_t vsize;
2940 1.16.2.2 christos int error;
2941 1.16.2.2 christos
2942 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
2943 1.16.2.2 christos
2944 1.16.2.2 christos TRACEF(2, file, "off=%lld, prot=%d", (long long)(*offp), prot);
2945 1.16.2.2 christos
2946 1.16.2.2 christos if (*offp < 0)
2947 1.16.2.2 christos return EINVAL;
2948 1.16.2.2 christos
2949 1.16.2.2 christos #if 0
2950 1.16.2.2 christos /* XXX
2951 1.16.2.2 christos * The idea here was to use the protection to determine if
2952 1.16.2.2 christos * we are mapping the read or write buffer, but it fails.
2953 1.16.2.2 christos * The VM system is broken in (at least) two ways.
2954 1.16.2.2 christos * 1) If you map memory VM_PROT_WRITE you SIGSEGV
2955 1.16.2.2 christos * when writing to it, so VM_PROT_READ|VM_PROT_WRITE
2956 1.16.2.2 christos * has to be used for mmapping the play buffer.
2957 1.16.2.2 christos * 2) Even if calling mmap() with VM_PROT_READ|VM_PROT_WRITE
2958 1.16.2.2 christos * audio_mmap will get called at some point with VM_PROT_READ
2959 1.16.2.2 christos * only.
2960 1.16.2.2 christos * So, alas, we always map the play buffer for now.
2961 1.16.2.2 christos */
2962 1.16.2.2 christos if (prot == (VM_PROT_READ|VM_PROT_WRITE) ||
2963 1.16.2.2 christos prot == VM_PROT_WRITE)
2964 1.16.2.2 christos track = file->ptrack;
2965 1.16.2.2 christos else if (prot == VM_PROT_READ)
2966 1.16.2.2 christos track = file->rtrack;
2967 1.16.2.2 christos else
2968 1.16.2.2 christos return EINVAL;
2969 1.16.2.2 christos #else
2970 1.16.2.2 christos track = file->ptrack;
2971 1.16.2.2 christos #endif
2972 1.16.2.2 christos if (track == NULL)
2973 1.16.2.2 christos return EACCES;
2974 1.16.2.2 christos
2975 1.16.2.2 christos vsize = roundup2(MAX(track->usrbuf.capacity, PAGE_SIZE), PAGE_SIZE);
2976 1.16.2.2 christos if (len > vsize)
2977 1.16.2.2 christos return EOVERFLOW;
2978 1.16.2.2 christos if (*offp > (uint)(vsize - len))
2979 1.16.2.2 christos return EOVERFLOW;
2980 1.16.2.2 christos
2981 1.16.2.2 christos /* XXX TODO: what happens when mmap twice. */
2982 1.16.2.2 christos if (!track->mmapped) {
2983 1.16.2.2 christos track->mmapped = true;
2984 1.16.2.2 christos
2985 1.16.2.2 christos if (!track->is_pause) {
2986 1.16.2.2 christos error = audio_enter_exclusive(sc);
2987 1.16.2.2 christos if (error)
2988 1.16.2.2 christos return error;
2989 1.16.2.2 christos if (sc->sc_pbusy == false)
2990 1.16.2.2 christos audio_pmixer_start(sc, true);
2991 1.16.2.2 christos audio_exit_exclusive(sc);
2992 1.16.2.2 christos }
2993 1.16.2.2 christos /* XXX mmapping record buffer is not supported */
2994 1.16.2.2 christos }
2995 1.16.2.2 christos
2996 1.16.2.2 christos /* get ringbuffer */
2997 1.16.2.2 christos *uobjp = track->uobj;
2998 1.16.2.2 christos
2999 1.16.2.2 christos /* Acquire a reference for the mmap. munmap will release. */
3000 1.16.2.2 christos uao_reference(*uobjp);
3001 1.16.2.2 christos *maxprotp = prot;
3002 1.16.2.2 christos *advicep = UVM_ADV_RANDOM;
3003 1.16.2.2 christos *flagsp = MAP_SHARED;
3004 1.16.2.2 christos return 0;
3005 1.16.2.2 christos }
3006 1.16.2.2 christos
3007 1.16.2.2 christos /*
3008 1.16.2.2 christos * /dev/audioctl has to be able to open at any time without interference
3009 1.16.2.2 christos * with any /dev/audio or /dev/sound.
3010 1.16.2.2 christos */
3011 1.16.2.2 christos static int
3012 1.16.2.2 christos audioctl_open(dev_t dev, struct audio_softc *sc, int flags, int ifmt,
3013 1.16.2.2 christos struct lwp *l)
3014 1.16.2.2 christos {
3015 1.16.2.2 christos struct file *fp;
3016 1.16.2.2 christos audio_file_t *af;
3017 1.16.2.2 christos int fd;
3018 1.16.2.2 christos int error;
3019 1.16.2.2 christos
3020 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
3021 1.16.2.2 christos KASSERT(sc->sc_exlock);
3022 1.16.2.2 christos
3023 1.16.2.2 christos TRACE(1, "");
3024 1.16.2.2 christos
3025 1.16.2.2 christos error = fd_allocfile(&fp, &fd);
3026 1.16.2.2 christos if (error)
3027 1.16.2.2 christos return error;
3028 1.16.2.2 christos
3029 1.16.2.2 christos af = kmem_zalloc(sizeof(audio_file_t), KM_SLEEP);
3030 1.16.2.2 christos af->sc = sc;
3031 1.16.2.2 christos af->dev = dev;
3032 1.16.2.2 christos
3033 1.16.2.2 christos /* Not necessary to insert sc_files. */
3034 1.16.2.2 christos
3035 1.16.2.2 christos error = fd_clone(fp, fd, flags, &audio_fileops, af);
3036 1.16.2.2 christos KASSERT(error == EMOVEFD);
3037 1.16.2.2 christos
3038 1.16.2.2 christos return error;
3039 1.16.2.2 christos }
3040 1.16.2.2 christos
3041 1.16.2.2 christos /*
3042 1.16.2.2 christos * Reallocate 'memblock' with specified 'bytes' if 'bytes' > 0.
3043 1.16.2.2 christos * Or free 'memblock' and return NULL if 'byte' is zero.
3044 1.16.2.2 christos */
3045 1.16.2.2 christos static void *
3046 1.16.2.2 christos audio_realloc(void *memblock, size_t bytes)
3047 1.16.2.2 christos {
3048 1.16.2.2 christos
3049 1.16.2.2 christos if (memblock != NULL) {
3050 1.16.2.2 christos if (bytes != 0) {
3051 1.16.2.2 christos return kern_realloc(memblock, bytes, M_NOWAIT);
3052 1.16.2.2 christos } else {
3053 1.16.2.2 christos kern_free(memblock);
3054 1.16.2.2 christos return NULL;
3055 1.16.2.2 christos }
3056 1.16.2.2 christos } else {
3057 1.16.2.2 christos if (bytes != 0) {
3058 1.16.2.2 christos return kern_malloc(bytes, M_NOWAIT);
3059 1.16.2.2 christos } else {
3060 1.16.2.2 christos return NULL;
3061 1.16.2.2 christos }
3062 1.16.2.2 christos }
3063 1.16.2.2 christos }
3064 1.16.2.2 christos
3065 1.16.2.2 christos /*
3066 1.16.2.2 christos * Free 'mem' if available, and initialize the pointer.
3067 1.16.2.2 christos * For this reason, this is implemented as macro.
3068 1.16.2.2 christos */
3069 1.16.2.2 christos #define audio_free(mem) do { \
3070 1.16.2.2 christos if (mem != NULL) { \
3071 1.16.2.2 christos kern_free(mem); \
3072 1.16.2.2 christos mem = NULL; \
3073 1.16.2.2 christos } \
3074 1.16.2.2 christos } while (0)
3075 1.16.2.2 christos
3076 1.16.2.2 christos /*
3077 1.16.2.2 christos * (Re)allocate usrbuf with 'newbufsize' bytes.
3078 1.16.2.2 christos * Use this function for usrbuf because only usrbuf can be mmapped.
3079 1.16.2.2 christos * If successful, it updates track->usrbuf.mem, track->usrbuf.capacity and
3080 1.16.2.2 christos * returns 0. Otherwise, it clears track->usrbuf.mem, track->usrbuf.capacity
3081 1.16.2.2 christos * and returns errno.
3082 1.16.2.2 christos * It must be called before updating usrbuf.capacity.
3083 1.16.2.2 christos */
3084 1.16.2.2 christos static int
3085 1.16.2.2 christos audio_realloc_usrbuf(audio_track_t *track, int newbufsize)
3086 1.16.2.2 christos {
3087 1.16.2.2 christos struct audio_softc *sc;
3088 1.16.2.2 christos vaddr_t vstart;
3089 1.16.2.2 christos vsize_t oldvsize;
3090 1.16.2.2 christos vsize_t newvsize;
3091 1.16.2.2 christos int error;
3092 1.16.2.2 christos
3093 1.16.2.2 christos KASSERT(newbufsize > 0);
3094 1.16.2.2 christos sc = track->mixer->sc;
3095 1.16.2.2 christos
3096 1.16.2.2 christos /* Get a nonzero multiple of PAGE_SIZE */
3097 1.16.2.2 christos newvsize = roundup2(MAX(newbufsize, PAGE_SIZE), PAGE_SIZE);
3098 1.16.2.2 christos
3099 1.16.2.2 christos if (track->usrbuf.mem != NULL) {
3100 1.16.2.2 christos oldvsize = roundup2(MAX(track->usrbuf.capacity, PAGE_SIZE),
3101 1.16.2.2 christos PAGE_SIZE);
3102 1.16.2.2 christos if (oldvsize == newvsize) {
3103 1.16.2.2 christos track->usrbuf.capacity = newbufsize;
3104 1.16.2.2 christos return 0;
3105 1.16.2.2 christos }
3106 1.16.2.2 christos vstart = (vaddr_t)track->usrbuf.mem;
3107 1.16.2.2 christos uvm_unmap(kernel_map, vstart, vstart + oldvsize);
3108 1.16.2.2 christos /* uvm_unmap also detach uobj */
3109 1.16.2.2 christos track->uobj = NULL; /* paranoia */
3110 1.16.2.2 christos track->usrbuf.mem = NULL;
3111 1.16.2.2 christos }
3112 1.16.2.2 christos
3113 1.16.2.2 christos /* Create a uvm anonymous object */
3114 1.16.2.2 christos track->uobj = uao_create(newvsize, 0);
3115 1.16.2.2 christos
3116 1.16.2.2 christos /* Map it into the kernel virtual address space */
3117 1.16.2.2 christos vstart = 0;
3118 1.16.2.2 christos error = uvm_map(kernel_map, &vstart, newvsize, track->uobj, 0, 0,
3119 1.16.2.2 christos UVM_MAPFLAG(UVM_PROT_RW, UVM_PROT_RW, UVM_INH_NONE,
3120 1.16.2.2 christos UVM_ADV_RANDOM, 0));
3121 1.16.2.2 christos if (error) {
3122 1.16.2.2 christos device_printf(sc->sc_dev, "uvm_map failed with %d\n", error);
3123 1.16.2.2 christos uao_detach(track->uobj); /* release reference */
3124 1.16.2.2 christos goto abort;
3125 1.16.2.2 christos }
3126 1.16.2.2 christos
3127 1.16.2.2 christos error = uvm_map_pageable(kernel_map, vstart, vstart + newvsize,
3128 1.16.2.2 christos false, 0);
3129 1.16.2.2 christos if (error) {
3130 1.16.2.2 christos device_printf(sc->sc_dev, "uvm_map_pageable failed with %d\n",
3131 1.16.2.2 christos error);
3132 1.16.2.2 christos uvm_unmap(kernel_map, vstart, vstart + newvsize);
3133 1.16.2.2 christos /* uvm_unmap also detach uobj */
3134 1.16.2.2 christos goto abort;
3135 1.16.2.2 christos }
3136 1.16.2.2 christos
3137 1.16.2.2 christos track->usrbuf.mem = (void *)vstart;
3138 1.16.2.2 christos track->usrbuf.capacity = newbufsize;
3139 1.16.2.2 christos memset(track->usrbuf.mem, 0, newvsize);
3140 1.16.2.2 christos return 0;
3141 1.16.2.2 christos
3142 1.16.2.2 christos /* failure */
3143 1.16.2.2 christos abort:
3144 1.16.2.2 christos track->uobj = NULL; /* paranoia */
3145 1.16.2.2 christos track->usrbuf.mem = NULL;
3146 1.16.2.2 christos track->usrbuf.capacity = 0;
3147 1.16.2.2 christos return error;
3148 1.16.2.2 christos }
3149 1.16.2.2 christos
3150 1.16.2.2 christos /*
3151 1.16.2.2 christos * Free usrbuf (if available).
3152 1.16.2.2 christos */
3153 1.16.2.2 christos static void
3154 1.16.2.2 christos audio_free_usrbuf(audio_track_t *track)
3155 1.16.2.2 christos {
3156 1.16.2.2 christos vaddr_t vstart;
3157 1.16.2.2 christos vsize_t vsize;
3158 1.16.2.2 christos
3159 1.16.2.2 christos vstart = (vaddr_t)track->usrbuf.mem;
3160 1.16.2.2 christos vsize = roundup2(MAX(track->usrbuf.capacity, PAGE_SIZE), PAGE_SIZE);
3161 1.16.2.2 christos if (track->usrbuf.mem != NULL) {
3162 1.16.2.2 christos /*
3163 1.16.2.2 christos * Unmap the kernel mapping. uvm_unmap releases the
3164 1.16.2.2 christos * reference to the uvm object, and this should be the
3165 1.16.2.2 christos * last virtual mapping of the uvm object, so no need
3166 1.16.2.2 christos * to explicitly release (`detach') the object.
3167 1.16.2.2 christos */
3168 1.16.2.2 christos uvm_unmap(kernel_map, vstart, vstart + vsize);
3169 1.16.2.2 christos
3170 1.16.2.2 christos track->uobj = NULL;
3171 1.16.2.2 christos track->usrbuf.mem = NULL;
3172 1.16.2.2 christos track->usrbuf.capacity = 0;
3173 1.16.2.2 christos }
3174 1.16.2.2 christos }
3175 1.16.2.2 christos
3176 1.16.2.2 christos /*
3177 1.16.2.2 christos * This filter changes the volume for each channel.
3178 1.16.2.2 christos * arg->context points track->ch_volume[].
3179 1.16.2.2 christos */
3180 1.16.2.2 christos static void
3181 1.16.2.2 christos audio_track_chvol(audio_filter_arg_t *arg)
3182 1.16.2.2 christos {
3183 1.16.2.2 christos int16_t *ch_volume;
3184 1.16.2.2 christos const aint_t *s;
3185 1.16.2.2 christos aint_t *d;
3186 1.16.2.2 christos u_int i;
3187 1.16.2.2 christos u_int ch;
3188 1.16.2.2 christos u_int channels;
3189 1.16.2.2 christos
3190 1.16.2.2 christos DIAGNOSTIC_filter_arg(arg);
3191 1.16.2.2 christos KASSERT(arg->srcfmt->channels == arg->dstfmt->channels);
3192 1.16.2.2 christos KASSERT(arg->context != NULL);
3193 1.16.2.2 christos KASSERT(arg->srcfmt->channels <= AUDIO_MAX_CHANNELS);
3194 1.16.2.2 christos
3195 1.16.2.2 christos s = arg->src;
3196 1.16.2.2 christos d = arg->dst;
3197 1.16.2.2 christos ch_volume = arg->context;
3198 1.16.2.2 christos
3199 1.16.2.2 christos channels = arg->srcfmt->channels;
3200 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3201 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3202 1.16.2.2 christos aint2_t val;
3203 1.16.2.2 christos val = *s++;
3204 1.16.2.2 christos #if defined(AUDIO_USE_C_IMPLEMENTATION_DEFINED_BEHAVIOR) && defined(__GNUC__)
3205 1.16.2.2 christos val = val * ch_volume[ch] >> 8;
3206 1.16.2.2 christos #else
3207 1.16.2.2 christos val = val * ch_volume[ch] / 256;
3208 1.16.2.2 christos #endif
3209 1.16.2.2 christos *d++ = (aint_t)val;
3210 1.16.2.2 christos }
3211 1.16.2.2 christos }
3212 1.16.2.2 christos }
3213 1.16.2.2 christos
3214 1.16.2.2 christos /*
3215 1.16.2.2 christos * This filter performs conversion from stereo (or more channels) to mono.
3216 1.16.2.2 christos */
3217 1.16.2.2 christos static void
3218 1.16.2.2 christos audio_track_chmix_mixLR(audio_filter_arg_t *arg)
3219 1.16.2.2 christos {
3220 1.16.2.2 christos const aint_t *s;
3221 1.16.2.2 christos aint_t *d;
3222 1.16.2.2 christos u_int i;
3223 1.16.2.2 christos
3224 1.16.2.2 christos DIAGNOSTIC_filter_arg(arg);
3225 1.16.2.2 christos
3226 1.16.2.2 christos s = arg->src;
3227 1.16.2.2 christos d = arg->dst;
3228 1.16.2.2 christos
3229 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3230 1.16.2.2 christos #if defined(AUDIO_USE_C_IMPLEMENTATION_DEFINED_BEHAVIOR) && defined(__GNUC__)
3231 1.16.2.2 christos *d++ = (s[0] >> 1) + (s[1] >> 1);
3232 1.16.2.2 christos #else
3233 1.16.2.2 christos *d++ = (s[0] / 2) + (s[1] / 2);
3234 1.16.2.2 christos #endif
3235 1.16.2.2 christos s += arg->srcfmt->channels;
3236 1.16.2.2 christos }
3237 1.16.2.2 christos }
3238 1.16.2.2 christos
3239 1.16.2.2 christos /*
3240 1.16.2.2 christos * This filter performs conversion from mono to stereo (or more channels).
3241 1.16.2.2 christos */
3242 1.16.2.2 christos static void
3243 1.16.2.2 christos audio_track_chmix_dupLR(audio_filter_arg_t *arg)
3244 1.16.2.2 christos {
3245 1.16.2.2 christos const aint_t *s;
3246 1.16.2.2 christos aint_t *d;
3247 1.16.2.2 christos u_int i;
3248 1.16.2.2 christos u_int ch;
3249 1.16.2.2 christos u_int dstchannels;
3250 1.16.2.2 christos
3251 1.16.2.2 christos DIAGNOSTIC_filter_arg(arg);
3252 1.16.2.2 christos
3253 1.16.2.2 christos s = arg->src;
3254 1.16.2.2 christos d = arg->dst;
3255 1.16.2.2 christos dstchannels = arg->dstfmt->channels;
3256 1.16.2.2 christos
3257 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3258 1.16.2.2 christos d[0] = s[0];
3259 1.16.2.2 christos d[1] = s[0];
3260 1.16.2.2 christos s++;
3261 1.16.2.2 christos d += dstchannels;
3262 1.16.2.2 christos }
3263 1.16.2.2 christos if (dstchannels > 2) {
3264 1.16.2.2 christos d = arg->dst;
3265 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3266 1.16.2.2 christos for (ch = 2; ch < dstchannels; ch++) {
3267 1.16.2.2 christos d[ch] = 0;
3268 1.16.2.2 christos }
3269 1.16.2.2 christos d += dstchannels;
3270 1.16.2.2 christos }
3271 1.16.2.2 christos }
3272 1.16.2.2 christos }
3273 1.16.2.2 christos
3274 1.16.2.2 christos /*
3275 1.16.2.2 christos * This filter shrinks M channels into N channels.
3276 1.16.2.2 christos * Extra channels are discarded.
3277 1.16.2.2 christos */
3278 1.16.2.2 christos static void
3279 1.16.2.2 christos audio_track_chmix_shrink(audio_filter_arg_t *arg)
3280 1.16.2.2 christos {
3281 1.16.2.2 christos const aint_t *s;
3282 1.16.2.2 christos aint_t *d;
3283 1.16.2.2 christos u_int i;
3284 1.16.2.2 christos u_int ch;
3285 1.16.2.2 christos
3286 1.16.2.2 christos DIAGNOSTIC_filter_arg(arg);
3287 1.16.2.2 christos
3288 1.16.2.2 christos s = arg->src;
3289 1.16.2.2 christos d = arg->dst;
3290 1.16.2.2 christos
3291 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3292 1.16.2.2 christos for (ch = 0; ch < arg->dstfmt->channels; ch++) {
3293 1.16.2.2 christos *d++ = s[ch];
3294 1.16.2.2 christos }
3295 1.16.2.2 christos s += arg->srcfmt->channels;
3296 1.16.2.2 christos }
3297 1.16.2.2 christos }
3298 1.16.2.2 christos
3299 1.16.2.2 christos /*
3300 1.16.2.2 christos * This filter expands M channels into N channels.
3301 1.16.2.2 christos * Silence is inserted for missing channels.
3302 1.16.2.2 christos */
3303 1.16.2.2 christos static void
3304 1.16.2.2 christos audio_track_chmix_expand(audio_filter_arg_t *arg)
3305 1.16.2.2 christos {
3306 1.16.2.2 christos const aint_t *s;
3307 1.16.2.2 christos aint_t *d;
3308 1.16.2.2 christos u_int i;
3309 1.16.2.2 christos u_int ch;
3310 1.16.2.2 christos u_int srcchannels;
3311 1.16.2.2 christos u_int dstchannels;
3312 1.16.2.2 christos
3313 1.16.2.2 christos DIAGNOSTIC_filter_arg(arg);
3314 1.16.2.2 christos
3315 1.16.2.2 christos s = arg->src;
3316 1.16.2.2 christos d = arg->dst;
3317 1.16.2.2 christos
3318 1.16.2.2 christos srcchannels = arg->srcfmt->channels;
3319 1.16.2.2 christos dstchannels = arg->dstfmt->channels;
3320 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3321 1.16.2.2 christos for (ch = 0; ch < srcchannels; ch++) {
3322 1.16.2.2 christos *d++ = *s++;
3323 1.16.2.2 christos }
3324 1.16.2.2 christos for (; ch < dstchannels; ch++) {
3325 1.16.2.2 christos *d++ = 0;
3326 1.16.2.2 christos }
3327 1.16.2.2 christos }
3328 1.16.2.2 christos }
3329 1.16.2.2 christos
3330 1.16.2.2 christos /*
3331 1.16.2.2 christos * This filter performs frequency conversion (up sampling).
3332 1.16.2.2 christos * It uses linear interpolation.
3333 1.16.2.2 christos */
3334 1.16.2.2 christos static void
3335 1.16.2.2 christos audio_track_freq_up(audio_filter_arg_t *arg)
3336 1.16.2.2 christos {
3337 1.16.2.2 christos audio_track_t *track;
3338 1.16.2.2 christos audio_ring_t *src;
3339 1.16.2.2 christos audio_ring_t *dst;
3340 1.16.2.2 christos const aint_t *s;
3341 1.16.2.2 christos aint_t *d;
3342 1.16.2.2 christos aint_t prev[AUDIO_MAX_CHANNELS];
3343 1.16.2.2 christos aint_t curr[AUDIO_MAX_CHANNELS];
3344 1.16.2.2 christos aint_t grad[AUDIO_MAX_CHANNELS];
3345 1.16.2.2 christos u_int i;
3346 1.16.2.2 christos u_int t;
3347 1.16.2.2 christos u_int step;
3348 1.16.2.2 christos u_int channels;
3349 1.16.2.2 christos u_int ch;
3350 1.16.2.2 christos int srcused;
3351 1.16.2.2 christos
3352 1.16.2.2 christos track = arg->context;
3353 1.16.2.2 christos KASSERT(track);
3354 1.16.2.2 christos src = &track->freq.srcbuf;
3355 1.16.2.2 christos dst = track->freq.dst;
3356 1.16.2.2 christos DIAGNOSTIC_ring(dst);
3357 1.16.2.2 christos DIAGNOSTIC_ring(src);
3358 1.16.2.2 christos KASSERT(src->used > 0);
3359 1.16.2.2 christos KASSERT(src->fmt.channels == dst->fmt.channels);
3360 1.16.2.2 christos KASSERT(src->head % track->mixer->frames_per_block == 0);
3361 1.16.2.2 christos
3362 1.16.2.2 christos s = arg->src;
3363 1.16.2.2 christos d = arg->dst;
3364 1.16.2.2 christos
3365 1.16.2.2 christos /*
3366 1.16.2.2 christos * In order to faciliate interpolation for each block, slide (delay)
3367 1.16.2.2 christos * input by one sample. As a result, strictly speaking, the output
3368 1.16.2.2 christos * phase is delayed by 1/dstfreq. However, I believe there is no
3369 1.16.2.2 christos * observable impact.
3370 1.16.2.2 christos *
3371 1.16.2.2 christos * Example)
3372 1.16.2.2 christos * srcfreq:dstfreq = 1:3
3373 1.16.2.2 christos *
3374 1.16.2.2 christos * A - -
3375 1.16.2.2 christos * |
3376 1.16.2.2 christos * |
3377 1.16.2.2 christos * | B - -
3378 1.16.2.2 christos * +-----+-----> input timeframe
3379 1.16.2.2 christos * 0 1
3380 1.16.2.2 christos *
3381 1.16.2.2 christos * 0 1
3382 1.16.2.2 christos * +-----+-----> input timeframe
3383 1.16.2.2 christos * | A
3384 1.16.2.2 christos * | x x
3385 1.16.2.2 christos * | x x
3386 1.16.2.2 christos * x (B)
3387 1.16.2.2 christos * +-+-+-+-+-+-> output timeframe
3388 1.16.2.2 christos * 0 1 2 3 4 5
3389 1.16.2.2 christos */
3390 1.16.2.2 christos
3391 1.16.2.2 christos /* Last samples in previous block */
3392 1.16.2.2 christos channels = src->fmt.channels;
3393 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3394 1.16.2.2 christos prev[ch] = track->freq_prev[ch];
3395 1.16.2.2 christos curr[ch] = track->freq_curr[ch];
3396 1.16.2.2 christos grad[ch] = curr[ch] - prev[ch];
3397 1.16.2.2 christos }
3398 1.16.2.2 christos
3399 1.16.2.2 christos step = track->freq_step;
3400 1.16.2.2 christos t = track->freq_current;
3401 1.16.2.2 christos //#define FREQ_DEBUG
3402 1.16.2.2 christos #if defined(FREQ_DEBUG)
3403 1.16.2.2 christos #define PRINTF(fmt...) printf(fmt)
3404 1.16.2.2 christos #else
3405 1.16.2.2 christos #define PRINTF(fmt...) do { } while (0)
3406 1.16.2.2 christos #endif
3407 1.16.2.2 christos srcused = src->used;
3408 1.16.2.2 christos PRINTF("upstart step=%d leap=%d", step, track->freq_leap);
3409 1.16.2.2 christos PRINTF(" srcused=%d arg->count=%u", src->used, arg->count);
3410 1.16.2.2 christos PRINTF(" prev=%d curr=%d grad=%d", prev[0], curr[0], grad[0]);
3411 1.16.2.2 christos PRINTF(" t=%d\n", t);
3412 1.16.2.2 christos
3413 1.16.2.2 christos for (i = 0; i < arg->count; i++) {
3414 1.16.2.2 christos PRINTF("i=%d t=%5d", i, t);
3415 1.16.2.2 christos if (t >= 65536) {
3416 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3417 1.16.2.2 christos prev[ch] = curr[ch];
3418 1.16.2.2 christos curr[ch] = *s++;
3419 1.16.2.2 christos grad[ch] = curr[ch] - prev[ch];
3420 1.16.2.2 christos }
3421 1.16.2.2 christos PRINTF(" prev=%d s[%d]=%d",
3422 1.16.2.2 christos prev[0], src->used - srcused, curr[0]);
3423 1.16.2.2 christos
3424 1.16.2.2 christos /* Update */
3425 1.16.2.2 christos t -= 65536;
3426 1.16.2.2 christos srcused--;
3427 1.16.2.2 christos if (srcused < 0) {
3428 1.16.2.2 christos PRINTF(" break\n");
3429 1.16.2.2 christos break;
3430 1.16.2.2 christos }
3431 1.16.2.2 christos }
3432 1.16.2.2 christos
3433 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3434 1.16.2.2 christos *d++ = prev[ch] + (aint2_t)grad[ch] * t / 65536;
3435 1.16.2.2 christos #if defined(FREQ_DEBUG)
3436 1.16.2.2 christos if (ch == 0)
3437 1.16.2.2 christos printf(" t=%5d *d=%d", t, d[-1]);
3438 1.16.2.2 christos #endif
3439 1.16.2.2 christos }
3440 1.16.2.2 christos t += step;
3441 1.16.2.2 christos
3442 1.16.2.2 christos PRINTF("\n");
3443 1.16.2.2 christos }
3444 1.16.2.2 christos PRINTF("end prev=%d curr=%d\n", prev[0], curr[0]);
3445 1.16.2.2 christos
3446 1.16.2.2 christos auring_take(src, src->used);
3447 1.16.2.2 christos auring_push(dst, i);
3448 1.16.2.2 christos
3449 1.16.2.2 christos /* Adjust */
3450 1.16.2.2 christos t += track->freq_leap;
3451 1.16.2.2 christos
3452 1.16.2.2 christos track->freq_current = t;
3453 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3454 1.16.2.2 christos track->freq_prev[ch] = prev[ch];
3455 1.16.2.2 christos track->freq_curr[ch] = curr[ch];
3456 1.16.2.2 christos }
3457 1.16.2.2 christos }
3458 1.16.2.2 christos
3459 1.16.2.2 christos /*
3460 1.16.2.2 christos * This filter performs frequency conversion (down sampling).
3461 1.16.2.2 christos * It uses simple thinning.
3462 1.16.2.2 christos */
3463 1.16.2.2 christos static void
3464 1.16.2.2 christos audio_track_freq_down(audio_filter_arg_t *arg)
3465 1.16.2.2 christos {
3466 1.16.2.2 christos audio_track_t *track;
3467 1.16.2.2 christos audio_ring_t *src;
3468 1.16.2.2 christos audio_ring_t *dst;
3469 1.16.2.2 christos const aint_t *s0;
3470 1.16.2.2 christos aint_t *d;
3471 1.16.2.2 christos u_int i;
3472 1.16.2.2 christos u_int t;
3473 1.16.2.2 christos u_int step;
3474 1.16.2.2 christos u_int ch;
3475 1.16.2.2 christos u_int channels;
3476 1.16.2.2 christos
3477 1.16.2.2 christos track = arg->context;
3478 1.16.2.2 christos KASSERT(track);
3479 1.16.2.2 christos src = &track->freq.srcbuf;
3480 1.16.2.2 christos dst = track->freq.dst;
3481 1.16.2.2 christos
3482 1.16.2.2 christos DIAGNOSTIC_ring(dst);
3483 1.16.2.2 christos DIAGNOSTIC_ring(src);
3484 1.16.2.2 christos KASSERT(src->used > 0);
3485 1.16.2.2 christos KASSERT(src->fmt.channels == dst->fmt.channels);
3486 1.16.2.2 christos KASSERTMSG(src->head % track->mixer->frames_per_block == 0,
3487 1.16.2.2 christos "src->head=%d fpb=%d",
3488 1.16.2.2 christos src->head, track->mixer->frames_per_block);
3489 1.16.2.2 christos
3490 1.16.2.2 christos s0 = arg->src;
3491 1.16.2.2 christos d = arg->dst;
3492 1.16.2.2 christos t = track->freq_current;
3493 1.16.2.2 christos step = track->freq_step;
3494 1.16.2.2 christos channels = dst->fmt.channels;
3495 1.16.2.2 christos PRINTF("downstart step=%d leap=%d", step, track->freq_leap);
3496 1.16.2.2 christos PRINTF(" srcused=%d arg->count=%u", src->used, arg->count);
3497 1.16.2.2 christos PRINTF(" t=%d\n", t);
3498 1.16.2.2 christos
3499 1.16.2.2 christos for (i = 0; i < arg->count && t / 65536 < src->used; i++) {
3500 1.16.2.2 christos const aint_t *s;
3501 1.16.2.2 christos PRINTF("i=%4d t=%10d", i, t);
3502 1.16.2.2 christos s = s0 + (t / 65536) * channels;
3503 1.16.2.2 christos PRINTF(" s=%5ld", (s - s0) / channels);
3504 1.16.2.2 christos for (ch = 0; ch < channels; ch++) {
3505 1.16.2.2 christos if (ch == 0) PRINTF(" *s=%d", s[ch]);
3506 1.16.2.2 christos *d++ = s[ch];
3507 1.16.2.2 christos }
3508 1.16.2.2 christos PRINTF("\n");
3509 1.16.2.2 christos t += step;
3510 1.16.2.2 christos }
3511 1.16.2.2 christos t += track->freq_leap;
3512 1.16.2.2 christos PRINTF("end t=%d\n", t);
3513 1.16.2.2 christos auring_take(src, src->used);
3514 1.16.2.2 christos auring_push(dst, i);
3515 1.16.2.2 christos track->freq_current = t % 65536;
3516 1.16.2.2 christos }
3517 1.16.2.2 christos
3518 1.16.2.2 christos /*
3519 1.16.2.2 christos * Creates track and returns it.
3520 1.16.2.2 christos */
3521 1.16.2.2 christos audio_track_t *
3522 1.16.2.2 christos audio_track_create(struct audio_softc *sc, audio_trackmixer_t *mixer)
3523 1.16.2.2 christos {
3524 1.16.2.2 christos audio_track_t *track;
3525 1.16.2.2 christos static int newid = 0;
3526 1.16.2.2 christos
3527 1.16.2.2 christos track = kmem_zalloc(sizeof(*track), KM_SLEEP);
3528 1.16.2.2 christos
3529 1.16.2.2 christos track->id = newid++;
3530 1.16.2.2 christos track->mixer = mixer;
3531 1.16.2.2 christos track->mode = mixer->mode;
3532 1.16.2.2 christos
3533 1.16.2.2 christos /* Do TRACE after id is assigned. */
3534 1.16.2.2 christos TRACET(3, track, "for %s",
3535 1.16.2.2 christos mixer->mode == AUMODE_PLAY ? "playback" : "recording");
3536 1.16.2.2 christos
3537 1.16.2.2 christos #if defined(AUDIO_SUPPORT_TRACK_VOLUME)
3538 1.16.2.2 christos track->volume = 256;
3539 1.16.2.2 christos #endif
3540 1.16.2.2 christos for (int i = 0; i < AUDIO_MAX_CHANNELS; i++) {
3541 1.16.2.2 christos track->ch_volume[i] = 256;
3542 1.16.2.2 christos }
3543 1.16.2.2 christos
3544 1.16.2.2 christos return track;
3545 1.16.2.2 christos }
3546 1.16.2.2 christos
3547 1.16.2.2 christos /*
3548 1.16.2.2 christos * Release all resources of the track and track itself.
3549 1.16.2.2 christos * track must not be NULL. Don't specify the track within the file
3550 1.16.2.2 christos * structure linked from sc->sc_files.
3551 1.16.2.2 christos */
3552 1.16.2.2 christos static void
3553 1.16.2.2 christos audio_track_destroy(audio_track_t *track)
3554 1.16.2.2 christos {
3555 1.16.2.2 christos
3556 1.16.2.2 christos KASSERT(track);
3557 1.16.2.2 christos
3558 1.16.2.2 christos audio_free_usrbuf(track);
3559 1.16.2.2 christos audio_free(track->codec.srcbuf.mem);
3560 1.16.2.2 christos audio_free(track->chvol.srcbuf.mem);
3561 1.16.2.2 christos audio_free(track->chmix.srcbuf.mem);
3562 1.16.2.2 christos audio_free(track->freq.srcbuf.mem);
3563 1.16.2.2 christos audio_free(track->outbuf.mem);
3564 1.16.2.2 christos
3565 1.16.2.2 christos kmem_free(track, sizeof(*track));
3566 1.16.2.2 christos }
3567 1.16.2.2 christos
3568 1.16.2.2 christos /*
3569 1.16.2.2 christos * It returns encoding conversion filter according to src and dst format.
3570 1.16.2.2 christos * If it is not a convertible pair, it returns NULL. Either src or dst
3571 1.16.2.2 christos * must be internal format.
3572 1.16.2.2 christos */
3573 1.16.2.2 christos static audio_filter_t
3574 1.16.2.2 christos audio_track_get_codec(audio_track_t *track, const audio_format2_t *src,
3575 1.16.2.2 christos const audio_format2_t *dst)
3576 1.16.2.2 christos {
3577 1.16.2.2 christos
3578 1.16.2.2 christos if (audio_format2_is_internal(src)) {
3579 1.16.2.2 christos if (dst->encoding == AUDIO_ENCODING_ULAW) {
3580 1.16.2.2 christos return audio_internal_to_mulaw;
3581 1.16.2.2 christos } else if (dst->encoding == AUDIO_ENCODING_ALAW) {
3582 1.16.2.2 christos return audio_internal_to_alaw;
3583 1.16.2.2 christos } else if (audio_format2_is_linear(dst)) {
3584 1.16.2.2 christos switch (dst->stride) {
3585 1.16.2.2 christos case 8:
3586 1.16.2.2 christos return audio_internal_to_linear8;
3587 1.16.2.2 christos case 16:
3588 1.16.2.2 christos return audio_internal_to_linear16;
3589 1.16.2.2 christos #if defined(AUDIO_SUPPORT_LINEAR24)
3590 1.16.2.2 christos case 24:
3591 1.16.2.2 christos return audio_internal_to_linear24;
3592 1.16.2.2 christos #endif
3593 1.16.2.2 christos case 32:
3594 1.16.2.2 christos return audio_internal_to_linear32;
3595 1.16.2.2 christos default:
3596 1.16.2.2 christos TRACET(1, track, "unsupported %s stride %d",
3597 1.16.2.2 christos "dst", dst->stride);
3598 1.16.2.2 christos goto abort;
3599 1.16.2.2 christos }
3600 1.16.2.2 christos }
3601 1.16.2.2 christos } else if (audio_format2_is_internal(dst)) {
3602 1.16.2.2 christos if (src->encoding == AUDIO_ENCODING_ULAW) {
3603 1.16.2.2 christos return audio_mulaw_to_internal;
3604 1.16.2.2 christos } else if (src->encoding == AUDIO_ENCODING_ALAW) {
3605 1.16.2.2 christos return audio_alaw_to_internal;
3606 1.16.2.2 christos } else if (audio_format2_is_linear(src)) {
3607 1.16.2.2 christos switch (src->stride) {
3608 1.16.2.2 christos case 8:
3609 1.16.2.2 christos return audio_linear8_to_internal;
3610 1.16.2.2 christos case 16:
3611 1.16.2.2 christos return audio_linear16_to_internal;
3612 1.16.2.2 christos #if defined(AUDIO_SUPPORT_LINEAR24)
3613 1.16.2.2 christos case 24:
3614 1.16.2.2 christos return audio_linear24_to_internal;
3615 1.16.2.2 christos #endif
3616 1.16.2.2 christos case 32:
3617 1.16.2.2 christos return audio_linear32_to_internal;
3618 1.16.2.2 christos default:
3619 1.16.2.2 christos TRACET(1, track, "unsupported %s stride %d",
3620 1.16.2.2 christos "src", src->stride);
3621 1.16.2.2 christos goto abort;
3622 1.16.2.2 christos }
3623 1.16.2.2 christos }
3624 1.16.2.2 christos }
3625 1.16.2.2 christos
3626 1.16.2.2 christos TRACET(1, track, "unsupported encoding");
3627 1.16.2.2 christos abort:
3628 1.16.2.2 christos #if defined(AUDIO_DEBUG)
3629 1.16.2.2 christos if (audiodebug >= 2) {
3630 1.16.2.2 christos char buf[100];
3631 1.16.2.2 christos audio_format2_tostr(buf, sizeof(buf), src);
3632 1.16.2.2 christos TRACET(2, track, "src %s", buf);
3633 1.16.2.2 christos audio_format2_tostr(buf, sizeof(buf), dst);
3634 1.16.2.2 christos TRACET(2, track, "dst %s", buf);
3635 1.16.2.2 christos }
3636 1.16.2.2 christos #endif
3637 1.16.2.2 christos return NULL;
3638 1.16.2.2 christos }
3639 1.16.2.2 christos
3640 1.16.2.2 christos /*
3641 1.16.2.2 christos * Initialize the codec stage of this track as necessary.
3642 1.16.2.2 christos * If successful, it initializes the codec stage as necessary, stores updated
3643 1.16.2.2 christos * last_dst in *last_dstp in any case, and returns 0.
3644 1.16.2.2 christos * Otherwise, it returns errno without modifying *last_dstp.
3645 1.16.2.2 christos */
3646 1.16.2.2 christos static int
3647 1.16.2.2 christos audio_track_init_codec(audio_track_t *track, audio_ring_t **last_dstp)
3648 1.16.2.2 christos {
3649 1.16.2.2 christos struct audio_softc *sc;
3650 1.16.2.2 christos audio_ring_t *last_dst;
3651 1.16.2.2 christos audio_ring_t *srcbuf;
3652 1.16.2.2 christos audio_format2_t *srcfmt;
3653 1.16.2.2 christos audio_format2_t *dstfmt;
3654 1.16.2.2 christos audio_filter_arg_t *arg;
3655 1.16.2.2 christos u_int len;
3656 1.16.2.2 christos int error;
3657 1.16.2.2 christos
3658 1.16.2.2 christos KASSERT(track);
3659 1.16.2.2 christos
3660 1.16.2.2 christos sc = track->mixer->sc;
3661 1.16.2.2 christos last_dst = *last_dstp;
3662 1.16.2.2 christos dstfmt = &last_dst->fmt;
3663 1.16.2.2 christos srcfmt = &track->inputfmt;
3664 1.16.2.2 christos srcbuf = &track->codec.srcbuf;
3665 1.16.2.2 christos error = 0;
3666 1.16.2.2 christos
3667 1.16.2.2 christos if (srcfmt->encoding != dstfmt->encoding
3668 1.16.2.2 christos || srcfmt->precision != dstfmt->precision
3669 1.16.2.2 christos || srcfmt->stride != dstfmt->stride) {
3670 1.16.2.2 christos track->codec.dst = last_dst;
3671 1.16.2.2 christos
3672 1.16.2.2 christos srcbuf->fmt = *dstfmt;
3673 1.16.2.2 christos srcbuf->fmt.encoding = srcfmt->encoding;
3674 1.16.2.2 christos srcbuf->fmt.precision = srcfmt->precision;
3675 1.16.2.2 christos srcbuf->fmt.stride = srcfmt->stride;
3676 1.16.2.2 christos
3677 1.16.2.2 christos track->codec.filter = audio_track_get_codec(track,
3678 1.16.2.2 christos &srcbuf->fmt, dstfmt);
3679 1.16.2.2 christos if (track->codec.filter == NULL) {
3680 1.16.2.2 christos error = EINVAL;
3681 1.16.2.2 christos goto abort;
3682 1.16.2.2 christos }
3683 1.16.2.2 christos
3684 1.16.2.2 christos srcbuf->head = 0;
3685 1.16.2.2 christos srcbuf->used = 0;
3686 1.16.2.2 christos srcbuf->capacity = frame_per_block(track->mixer, &srcbuf->fmt);
3687 1.16.2.2 christos len = auring_bytelen(srcbuf);
3688 1.16.2.2 christos srcbuf->mem = audio_realloc(srcbuf->mem, len);
3689 1.16.2.2 christos if (srcbuf->mem == NULL) {
3690 1.16.2.2 christos device_printf(sc->sc_dev, "%s: malloc(%d) failed\n",
3691 1.16.2.2 christos __func__, len);
3692 1.16.2.2 christos error = ENOMEM;
3693 1.16.2.2 christos goto abort;
3694 1.16.2.2 christos }
3695 1.16.2.2 christos
3696 1.16.2.2 christos arg = &track->codec.arg;
3697 1.16.2.2 christos arg->srcfmt = &srcbuf->fmt;
3698 1.16.2.2 christos arg->dstfmt = dstfmt;
3699 1.16.2.2 christos arg->context = NULL;
3700 1.16.2.2 christos
3701 1.16.2.2 christos *last_dstp = srcbuf;
3702 1.16.2.2 christos return 0;
3703 1.16.2.2 christos }
3704 1.16.2.2 christos
3705 1.16.2.2 christos abort:
3706 1.16.2.2 christos track->codec.filter = NULL;
3707 1.16.2.2 christos audio_free(srcbuf->mem);
3708 1.16.2.2 christos return error;
3709 1.16.2.2 christos }
3710 1.16.2.2 christos
3711 1.16.2.2 christos /*
3712 1.16.2.2 christos * Initialize the chvol stage of this track as necessary.
3713 1.16.2.2 christos * If successful, it initializes the chvol stage as necessary, stores updated
3714 1.16.2.2 christos * last_dst in *last_dstp in any case, and returns 0.
3715 1.16.2.2 christos * Otherwise, it returns errno without modifying *last_dstp.
3716 1.16.2.2 christos */
3717 1.16.2.2 christos static int
3718 1.16.2.2 christos audio_track_init_chvol(audio_track_t *track, audio_ring_t **last_dstp)
3719 1.16.2.2 christos {
3720 1.16.2.2 christos struct audio_softc *sc;
3721 1.16.2.2 christos audio_ring_t *last_dst;
3722 1.16.2.2 christos audio_ring_t *srcbuf;
3723 1.16.2.2 christos audio_format2_t *srcfmt;
3724 1.16.2.2 christos audio_format2_t *dstfmt;
3725 1.16.2.2 christos audio_filter_arg_t *arg;
3726 1.16.2.2 christos u_int len;
3727 1.16.2.2 christos int error;
3728 1.16.2.2 christos
3729 1.16.2.2 christos KASSERT(track);
3730 1.16.2.2 christos
3731 1.16.2.2 christos sc = track->mixer->sc;
3732 1.16.2.2 christos last_dst = *last_dstp;
3733 1.16.2.2 christos dstfmt = &last_dst->fmt;
3734 1.16.2.2 christos srcfmt = &track->inputfmt;
3735 1.16.2.2 christos srcbuf = &track->chvol.srcbuf;
3736 1.16.2.2 christos error = 0;
3737 1.16.2.2 christos
3738 1.16.2.2 christos /* Check whether channel volume conversion is necessary. */
3739 1.16.2.2 christos bool use_chvol = false;
3740 1.16.2.2 christos for (int ch = 0; ch < srcfmt->channels; ch++) {
3741 1.16.2.2 christos if (track->ch_volume[ch] != 256) {
3742 1.16.2.2 christos use_chvol = true;
3743 1.16.2.2 christos break;
3744 1.16.2.2 christos }
3745 1.16.2.2 christos }
3746 1.16.2.2 christos
3747 1.16.2.2 christos if (use_chvol == true) {
3748 1.16.2.2 christos track->chvol.dst = last_dst;
3749 1.16.2.2 christos track->chvol.filter = audio_track_chvol;
3750 1.16.2.2 christos
3751 1.16.2.2 christos srcbuf->fmt = *dstfmt;
3752 1.16.2.2 christos /* no format conversion occurs */
3753 1.16.2.2 christos
3754 1.16.2.2 christos srcbuf->head = 0;
3755 1.16.2.2 christos srcbuf->used = 0;
3756 1.16.2.2 christos srcbuf->capacity = frame_per_block(track->mixer, &srcbuf->fmt);
3757 1.16.2.2 christos len = auring_bytelen(srcbuf);
3758 1.16.2.2 christos srcbuf->mem = audio_realloc(srcbuf->mem, len);
3759 1.16.2.2 christos if (srcbuf->mem == NULL) {
3760 1.16.2.2 christos device_printf(sc->sc_dev, "%s: malloc(%d) failed\n",
3761 1.16.2.2 christos __func__, len);
3762 1.16.2.2 christos error = ENOMEM;
3763 1.16.2.2 christos goto abort;
3764 1.16.2.2 christos }
3765 1.16.2.2 christos
3766 1.16.2.2 christos arg = &track->chvol.arg;
3767 1.16.2.2 christos arg->srcfmt = &srcbuf->fmt;
3768 1.16.2.2 christos arg->dstfmt = dstfmt;
3769 1.16.2.2 christos arg->context = track->ch_volume;
3770 1.16.2.2 christos
3771 1.16.2.2 christos *last_dstp = srcbuf;
3772 1.16.2.2 christos return 0;
3773 1.16.2.2 christos }
3774 1.16.2.2 christos
3775 1.16.2.2 christos abort:
3776 1.16.2.2 christos track->chvol.filter = NULL;
3777 1.16.2.2 christos audio_free(srcbuf->mem);
3778 1.16.2.2 christos return error;
3779 1.16.2.2 christos }
3780 1.16.2.2 christos
3781 1.16.2.2 christos /*
3782 1.16.2.2 christos * Initialize the chmix stage of this track as necessary.
3783 1.16.2.2 christos * If successful, it initializes the chmix stage as necessary, stores updated
3784 1.16.2.2 christos * last_dst in *last_dstp in any case, and returns 0.
3785 1.16.2.2 christos * Otherwise, it returns errno without modifying *last_dstp.
3786 1.16.2.2 christos */
3787 1.16.2.2 christos static int
3788 1.16.2.2 christos audio_track_init_chmix(audio_track_t *track, audio_ring_t **last_dstp)
3789 1.16.2.2 christos {
3790 1.16.2.2 christos struct audio_softc *sc;
3791 1.16.2.2 christos audio_ring_t *last_dst;
3792 1.16.2.2 christos audio_ring_t *srcbuf;
3793 1.16.2.2 christos audio_format2_t *srcfmt;
3794 1.16.2.2 christos audio_format2_t *dstfmt;
3795 1.16.2.2 christos audio_filter_arg_t *arg;
3796 1.16.2.2 christos u_int srcch;
3797 1.16.2.2 christos u_int dstch;
3798 1.16.2.2 christos u_int len;
3799 1.16.2.2 christos int error;
3800 1.16.2.2 christos
3801 1.16.2.2 christos KASSERT(track);
3802 1.16.2.2 christos
3803 1.16.2.2 christos sc = track->mixer->sc;
3804 1.16.2.2 christos last_dst = *last_dstp;
3805 1.16.2.2 christos dstfmt = &last_dst->fmt;
3806 1.16.2.2 christos srcfmt = &track->inputfmt;
3807 1.16.2.2 christos srcbuf = &track->chmix.srcbuf;
3808 1.16.2.2 christos error = 0;
3809 1.16.2.2 christos
3810 1.16.2.2 christos srcch = srcfmt->channels;
3811 1.16.2.2 christos dstch = dstfmt->channels;
3812 1.16.2.2 christos if (srcch != dstch) {
3813 1.16.2.2 christos track->chmix.dst = last_dst;
3814 1.16.2.2 christos
3815 1.16.2.2 christos if (srcch >= 2 && dstch == 1) {
3816 1.16.2.2 christos track->chmix.filter = audio_track_chmix_mixLR;
3817 1.16.2.2 christos } else if (srcch == 1 && dstch >= 2) {
3818 1.16.2.2 christos track->chmix.filter = audio_track_chmix_dupLR;
3819 1.16.2.2 christos } else if (srcch > dstch) {
3820 1.16.2.2 christos track->chmix.filter = audio_track_chmix_shrink;
3821 1.16.2.2 christos } else {
3822 1.16.2.2 christos track->chmix.filter = audio_track_chmix_expand;
3823 1.16.2.2 christos }
3824 1.16.2.2 christos
3825 1.16.2.2 christos srcbuf->fmt = *dstfmt;
3826 1.16.2.2 christos srcbuf->fmt.channels = srcch;
3827 1.16.2.2 christos
3828 1.16.2.2 christos srcbuf->head = 0;
3829 1.16.2.2 christos srcbuf->used = 0;
3830 1.16.2.2 christos /* XXX The buffer size should be able to calculate. */
3831 1.16.2.2 christos srcbuf->capacity = frame_per_block(track->mixer, &srcbuf->fmt);
3832 1.16.2.2 christos len = auring_bytelen(srcbuf);
3833 1.16.2.2 christos srcbuf->mem = audio_realloc(srcbuf->mem, len);
3834 1.16.2.2 christos if (srcbuf->mem == NULL) {
3835 1.16.2.2 christos device_printf(sc->sc_dev, "%s: malloc(%d) failed\n",
3836 1.16.2.2 christos __func__, len);
3837 1.16.2.2 christos error = ENOMEM;
3838 1.16.2.2 christos goto abort;
3839 1.16.2.2 christos }
3840 1.16.2.2 christos
3841 1.16.2.2 christos arg = &track->chmix.arg;
3842 1.16.2.2 christos arg->srcfmt = &srcbuf->fmt;
3843 1.16.2.2 christos arg->dstfmt = dstfmt;
3844 1.16.2.2 christos arg->context = NULL;
3845 1.16.2.2 christos
3846 1.16.2.2 christos *last_dstp = srcbuf;
3847 1.16.2.2 christos return 0;
3848 1.16.2.2 christos }
3849 1.16.2.2 christos
3850 1.16.2.2 christos abort:
3851 1.16.2.2 christos track->chmix.filter = NULL;
3852 1.16.2.2 christos audio_free(srcbuf->mem);
3853 1.16.2.2 christos return error;
3854 1.16.2.2 christos }
3855 1.16.2.2 christos
3856 1.16.2.2 christos /*
3857 1.16.2.2 christos * Initialize the freq stage of this track as necessary.
3858 1.16.2.2 christos * If successful, it initializes the freq stage as necessary, stores updated
3859 1.16.2.2 christos * last_dst in *last_dstp in any case, and returns 0.
3860 1.16.2.2 christos * Otherwise, it returns errno without modifying *last_dstp.
3861 1.16.2.2 christos */
3862 1.16.2.2 christos static int
3863 1.16.2.2 christos audio_track_init_freq(audio_track_t *track, audio_ring_t **last_dstp)
3864 1.16.2.2 christos {
3865 1.16.2.2 christos struct audio_softc *sc;
3866 1.16.2.2 christos audio_ring_t *last_dst;
3867 1.16.2.2 christos audio_ring_t *srcbuf;
3868 1.16.2.2 christos audio_format2_t *srcfmt;
3869 1.16.2.2 christos audio_format2_t *dstfmt;
3870 1.16.2.2 christos audio_filter_arg_t *arg;
3871 1.16.2.2 christos uint32_t srcfreq;
3872 1.16.2.2 christos uint32_t dstfreq;
3873 1.16.2.2 christos u_int dst_capacity;
3874 1.16.2.2 christos u_int mod;
3875 1.16.2.2 christos u_int len;
3876 1.16.2.2 christos int error;
3877 1.16.2.2 christos
3878 1.16.2.2 christos KASSERT(track);
3879 1.16.2.2 christos
3880 1.16.2.2 christos sc = track->mixer->sc;
3881 1.16.2.2 christos last_dst = *last_dstp;
3882 1.16.2.2 christos dstfmt = &last_dst->fmt;
3883 1.16.2.2 christos srcfmt = &track->inputfmt;
3884 1.16.2.2 christos srcbuf = &track->freq.srcbuf;
3885 1.16.2.2 christos error = 0;
3886 1.16.2.2 christos
3887 1.16.2.2 christos srcfreq = srcfmt->sample_rate;
3888 1.16.2.2 christos dstfreq = dstfmt->sample_rate;
3889 1.16.2.2 christos if (srcfreq != dstfreq) {
3890 1.16.2.2 christos track->freq.dst = last_dst;
3891 1.16.2.2 christos
3892 1.16.2.2 christos memset(track->freq_prev, 0, sizeof(track->freq_prev));
3893 1.16.2.2 christos memset(track->freq_curr, 0, sizeof(track->freq_curr));
3894 1.16.2.2 christos
3895 1.16.2.2 christos /* freq_step is the ratio of src/dst when let dst 65536. */
3896 1.16.2.2 christos track->freq_step = (uint64_t)srcfreq * 65536 / dstfreq;
3897 1.16.2.2 christos
3898 1.16.2.2 christos dst_capacity = frame_per_block(track->mixer, dstfmt);
3899 1.16.2.2 christos mod = (uint64_t)srcfreq * 65536 % dstfreq;
3900 1.16.2.2 christos track->freq_leap = (mod * dst_capacity + dstfreq / 2) / dstfreq;
3901 1.16.2.2 christos
3902 1.16.2.2 christos if (track->freq_step < 65536) {
3903 1.16.2.2 christos track->freq.filter = audio_track_freq_up;
3904 1.16.2.2 christos /* In order to carry at the first time. */
3905 1.16.2.2 christos track->freq_current = 65536;
3906 1.16.2.2 christos } else {
3907 1.16.2.2 christos track->freq.filter = audio_track_freq_down;
3908 1.16.2.2 christos track->freq_current = 0;
3909 1.16.2.2 christos }
3910 1.16.2.2 christos
3911 1.16.2.2 christos srcbuf->fmt = *dstfmt;
3912 1.16.2.2 christos srcbuf->fmt.sample_rate = srcfreq;
3913 1.16.2.2 christos
3914 1.16.2.2 christos srcbuf->head = 0;
3915 1.16.2.2 christos srcbuf->used = 0;
3916 1.16.2.2 christos srcbuf->capacity = frame_per_block(track->mixer, &srcbuf->fmt);
3917 1.16.2.2 christos len = auring_bytelen(srcbuf);
3918 1.16.2.2 christos srcbuf->mem = audio_realloc(srcbuf->mem, len);
3919 1.16.2.2 christos if (srcbuf->mem == NULL) {
3920 1.16.2.2 christos device_printf(sc->sc_dev, "%s: malloc(%d) failed\n",
3921 1.16.2.2 christos __func__, len);
3922 1.16.2.2 christos error = ENOMEM;
3923 1.16.2.2 christos goto abort;
3924 1.16.2.2 christos }
3925 1.16.2.2 christos
3926 1.16.2.2 christos arg = &track->freq.arg;
3927 1.16.2.2 christos arg->srcfmt = &srcbuf->fmt;
3928 1.16.2.2 christos arg->dstfmt = dstfmt;/*&last_dst->fmt;*/
3929 1.16.2.2 christos arg->context = track;
3930 1.16.2.2 christos
3931 1.16.2.2 christos *last_dstp = srcbuf;
3932 1.16.2.2 christos return 0;
3933 1.16.2.2 christos }
3934 1.16.2.2 christos
3935 1.16.2.2 christos abort:
3936 1.16.2.2 christos track->freq.filter = NULL;
3937 1.16.2.2 christos audio_free(srcbuf->mem);
3938 1.16.2.2 christos return error;
3939 1.16.2.2 christos }
3940 1.16.2.2 christos
3941 1.16.2.2 christos /*
3942 1.16.2.2 christos * When playing back: (e.g. if codec and freq stage are valid)
3943 1.16.2.2 christos *
3944 1.16.2.2 christos * write
3945 1.16.2.2 christos * | uiomove
3946 1.16.2.2 christos * v
3947 1.16.2.2 christos * usrbuf [...............] byte ring buffer (mmap-able)
3948 1.16.2.2 christos * | memcpy
3949 1.16.2.2 christos * v
3950 1.16.2.2 christos * codec.srcbuf[....] 1 block (ring) buffer <-- stage input
3951 1.16.2.2 christos * .dst ----+
3952 1.16.2.2 christos * | convert
3953 1.16.2.2 christos * v
3954 1.16.2.2 christos * freq.srcbuf [....] 1 block (ring) buffer
3955 1.16.2.2 christos * .dst ----+
3956 1.16.2.2 christos * | convert
3957 1.16.2.2 christos * v
3958 1.16.2.2 christos * outbuf [...............] NBLKOUT blocks ring buffer
3959 1.16.2.2 christos *
3960 1.16.2.2 christos *
3961 1.16.2.2 christos * When recording:
3962 1.16.2.2 christos *
3963 1.16.2.2 christos * freq.srcbuf [...............] NBLKOUT blocks ring buffer <-- stage input
3964 1.16.2.2 christos * .dst ----+
3965 1.16.2.2 christos * | convert
3966 1.16.2.2 christos * v
3967 1.16.2.2 christos * codec.srcbuf[.....] 1 block (ring) buffer
3968 1.16.2.2 christos * .dst ----+
3969 1.16.2.2 christos * | convert
3970 1.16.2.2 christos * v
3971 1.16.2.2 christos * outbuf [.....] 1 block (ring) buffer
3972 1.16.2.2 christos * | memcpy
3973 1.16.2.2 christos * v
3974 1.16.2.2 christos * usrbuf [...............] byte ring buffer (mmap-able *)
3975 1.16.2.2 christos * | uiomove
3976 1.16.2.2 christos * v
3977 1.16.2.2 christos * read
3978 1.16.2.2 christos *
3979 1.16.2.2 christos * *: usrbuf for recording is also mmap-able due to symmetry with
3980 1.16.2.2 christos * playback buffer, but for now mmap will never happen for recording.
3981 1.16.2.2 christos */
3982 1.16.2.2 christos
3983 1.16.2.2 christos /*
3984 1.16.2.2 christos * Set the userland format of this track.
3985 1.16.2.2 christos * usrfmt argument should be parameter verified with audio_check_params().
3986 1.16.2.2 christos * It will release and reallocate all internal conversion buffers.
3987 1.16.2.2 christos * It returns 0 if successful. Otherwise it returns errno with clearing all
3988 1.16.2.2 christos * internal buffers.
3989 1.16.2.2 christos * It must be called without sc_intr_lock since uvm_* routines require non
3990 1.16.2.2 christos * intr_lock state.
3991 1.16.2.2 christos * It must be called with track lock held since it may release and reallocate
3992 1.16.2.2 christos * outbuf.
3993 1.16.2.2 christos */
3994 1.16.2.2 christos static int
3995 1.16.2.2 christos audio_track_set_format(audio_track_t *track, audio_format2_t *usrfmt)
3996 1.16.2.2 christos {
3997 1.16.2.2 christos struct audio_softc *sc;
3998 1.16.2.2 christos u_int newbufsize;
3999 1.16.2.2 christos u_int oldblksize;
4000 1.16.2.2 christos u_int len;
4001 1.16.2.2 christos int error;
4002 1.16.2.2 christos
4003 1.16.2.2 christos KASSERT(track);
4004 1.16.2.2 christos sc = track->mixer->sc;
4005 1.16.2.2 christos
4006 1.16.2.2 christos /* usrbuf is the closest buffer to the userland. */
4007 1.16.2.2 christos track->usrbuf.fmt = *usrfmt;
4008 1.16.2.2 christos
4009 1.16.2.2 christos /*
4010 1.16.2.2 christos * For references, one block size (in 40msec) is:
4011 1.16.2.2 christos * 320 bytes = 204 blocks/64KB for mulaw/8kHz/1ch
4012 1.16.2.2 christos * 7680 bytes = 8 blocks/64KB for s16/48kHz/2ch
4013 1.16.2.2 christos * 30720 bytes = 90 KB/3blocks for s16/48kHz/8ch
4014 1.16.2.2 christos * 61440 bytes = 180 KB/3blocks for s16/96kHz/8ch
4015 1.16.2.2 christos * 245760 bytes = 720 KB/3blocks for s32/192kHz/8ch
4016 1.16.2.2 christos *
4017 1.16.2.2 christos * For example,
4018 1.16.2.2 christos * 1) If usrbuf_blksize = 7056 (s16/44.1k/2ch) and PAGE_SIZE = 8192,
4019 1.16.2.2 christos * newbufsize = rounddown(65536 / 7056) = 63504
4020 1.16.2.2 christos * newvsize = roundup2(63504, PAGE_SIZE) = 65536
4021 1.16.2.2 christos * Therefore it maps 8 * 8K pages and usrbuf->capacity = 63504.
4022 1.16.2.2 christos *
4023 1.16.2.2 christos * 2) If usrbuf_blksize = 7680 (s16/48k/2ch) and PAGE_SIZE = 4096,
4024 1.16.2.2 christos * newbufsize = rounddown(65536 / 7680) = 61440
4025 1.16.2.2 christos * newvsize = roundup2(61440, PAGE_SIZE) = 61440 (= 15 pages)
4026 1.16.2.2 christos * Therefore it maps 15 * 4K pages and usrbuf->capacity = 61440.
4027 1.16.2.2 christos */
4028 1.16.2.2 christos oldblksize = track->usrbuf_blksize;
4029 1.16.2.2 christos track->usrbuf_blksize = frametobyte(&track->usrbuf.fmt,
4030 1.16.2.2 christos frame_per_block(track->mixer, &track->usrbuf.fmt));
4031 1.16.2.2 christos track->usrbuf.head = 0;
4032 1.16.2.2 christos track->usrbuf.used = 0;
4033 1.16.2.2 christos newbufsize = MAX(track->usrbuf_blksize * AUMINNOBLK, 65536);
4034 1.16.2.2 christos newbufsize = rounddown(newbufsize, track->usrbuf_blksize);
4035 1.16.2.2 christos error = audio_realloc_usrbuf(track, newbufsize);
4036 1.16.2.2 christos if (error) {
4037 1.16.2.2 christos device_printf(sc->sc_dev, "malloc usrbuf(%d) failed\n",
4038 1.16.2.2 christos newbufsize);
4039 1.16.2.2 christos goto error;
4040 1.16.2.2 christos }
4041 1.16.2.2 christos
4042 1.16.2.2 christos /* Recalc water mark. */
4043 1.16.2.2 christos if (track->usrbuf_blksize != oldblksize) {
4044 1.16.2.2 christos if (audio_track_is_playback(track)) {
4045 1.16.2.2 christos /* Set high at 100%, low at 75%. */
4046 1.16.2.2 christos track->usrbuf_usedhigh = track->usrbuf.capacity;
4047 1.16.2.2 christos track->usrbuf_usedlow = track->usrbuf.capacity * 3 / 4;
4048 1.16.2.2 christos } else {
4049 1.16.2.2 christos /* Set high at 100% minus 1block(?), low at 0% */
4050 1.16.2.2 christos track->usrbuf_usedhigh = track->usrbuf.capacity -
4051 1.16.2.2 christos track->usrbuf_blksize;
4052 1.16.2.2 christos track->usrbuf_usedlow = 0;
4053 1.16.2.2 christos }
4054 1.16.2.2 christos }
4055 1.16.2.2 christos
4056 1.16.2.2 christos /* Stage buffer */
4057 1.16.2.2 christos audio_ring_t *last_dst = &track->outbuf;
4058 1.16.2.2 christos if (audio_track_is_playback(track)) {
4059 1.16.2.2 christos /* On playback, initialize from the mixer side in order. */
4060 1.16.2.2 christos track->inputfmt = *usrfmt;
4061 1.16.2.2 christos track->outbuf.fmt = track->mixer->track_fmt;
4062 1.16.2.2 christos
4063 1.16.2.2 christos if ((error = audio_track_init_freq(track, &last_dst)) != 0)
4064 1.16.2.2 christos goto error;
4065 1.16.2.2 christos if ((error = audio_track_init_chmix(track, &last_dst)) != 0)
4066 1.16.2.2 christos goto error;
4067 1.16.2.2 christos if ((error = audio_track_init_chvol(track, &last_dst)) != 0)
4068 1.16.2.2 christos goto error;
4069 1.16.2.2 christos if ((error = audio_track_init_codec(track, &last_dst)) != 0)
4070 1.16.2.2 christos goto error;
4071 1.16.2.2 christos } else {
4072 1.16.2.2 christos /* On recording, initialize from userland side in order. */
4073 1.16.2.2 christos track->inputfmt = track->mixer->track_fmt;
4074 1.16.2.2 christos track->outbuf.fmt = *usrfmt;
4075 1.16.2.2 christos
4076 1.16.2.2 christos if ((error = audio_track_init_codec(track, &last_dst)) != 0)
4077 1.16.2.2 christos goto error;
4078 1.16.2.2 christos if ((error = audio_track_init_chvol(track, &last_dst)) != 0)
4079 1.16.2.2 christos goto error;
4080 1.16.2.2 christos if ((error = audio_track_init_chmix(track, &last_dst)) != 0)
4081 1.16.2.2 christos goto error;
4082 1.16.2.2 christos if ((error = audio_track_init_freq(track, &last_dst)) != 0)
4083 1.16.2.2 christos goto error;
4084 1.16.2.2 christos }
4085 1.16.2.2 christos #if 0
4086 1.16.2.2 christos /* debug */
4087 1.16.2.2 christos if (track->freq.filter) {
4088 1.16.2.2 christos audio_print_format2("freq src", &track->freq.srcbuf.fmt);
4089 1.16.2.2 christos audio_print_format2("freq dst", &track->freq.dst->fmt);
4090 1.16.2.2 christos }
4091 1.16.2.2 christos if (track->chmix.filter) {
4092 1.16.2.2 christos audio_print_format2("chmix src", &track->chmix.srcbuf.fmt);
4093 1.16.2.2 christos audio_print_format2("chmix dst", &track->chmix.dst->fmt);
4094 1.16.2.2 christos }
4095 1.16.2.2 christos if (track->chvol.filter) {
4096 1.16.2.2 christos audio_print_format2("chvol src", &track->chvol.srcbuf.fmt);
4097 1.16.2.2 christos audio_print_format2("chvol dst", &track->chvol.dst->fmt);
4098 1.16.2.2 christos }
4099 1.16.2.2 christos if (track->codec.filter) {
4100 1.16.2.2 christos audio_print_format2("codec src", &track->codec.srcbuf.fmt);
4101 1.16.2.2 christos audio_print_format2("codec dst", &track->codec.dst->fmt);
4102 1.16.2.2 christos }
4103 1.16.2.2 christos #endif
4104 1.16.2.2 christos
4105 1.16.2.2 christos /* Stage input buffer */
4106 1.16.2.2 christos track->input = last_dst;
4107 1.16.2.2 christos
4108 1.16.2.2 christos /*
4109 1.16.2.2 christos * On the recording track, make the first stage a ring buffer.
4110 1.16.2.2 christos * XXX is there a better way?
4111 1.16.2.2 christos */
4112 1.16.2.2 christos if (audio_track_is_record(track)) {
4113 1.16.2.2 christos track->input->capacity = NBLKOUT *
4114 1.16.2.2 christos frame_per_block(track->mixer, &track->input->fmt);
4115 1.16.2.2 christos len = auring_bytelen(track->input);
4116 1.16.2.2 christos track->input->mem = audio_realloc(track->input->mem, len);
4117 1.16.2.2 christos if (track->input->mem == NULL) {
4118 1.16.2.2 christos device_printf(sc->sc_dev, "malloc input(%d) failed\n",
4119 1.16.2.2 christos len);
4120 1.16.2.2 christos error = ENOMEM;
4121 1.16.2.2 christos goto error;
4122 1.16.2.2 christos }
4123 1.16.2.2 christos }
4124 1.16.2.2 christos
4125 1.16.2.2 christos /*
4126 1.16.2.2 christos * Output buffer.
4127 1.16.2.2 christos * On the playback track, its capacity is NBLKOUT blocks.
4128 1.16.2.2 christos * On the recording track, its capacity is 1 block.
4129 1.16.2.2 christos */
4130 1.16.2.2 christos track->outbuf.head = 0;
4131 1.16.2.2 christos track->outbuf.used = 0;
4132 1.16.2.2 christos track->outbuf.capacity = frame_per_block(track->mixer,
4133 1.16.2.2 christos &track->outbuf.fmt);
4134 1.16.2.2 christos if (audio_track_is_playback(track))
4135 1.16.2.2 christos track->outbuf.capacity *= NBLKOUT;
4136 1.16.2.2 christos len = auring_bytelen(&track->outbuf);
4137 1.16.2.2 christos track->outbuf.mem = audio_realloc(track->outbuf.mem, len);
4138 1.16.2.2 christos if (track->outbuf.mem == NULL) {
4139 1.16.2.2 christos device_printf(sc->sc_dev, "malloc outbuf(%d) failed\n", len);
4140 1.16.2.2 christos error = ENOMEM;
4141 1.16.2.2 christos goto error;
4142 1.16.2.2 christos }
4143 1.16.2.2 christos
4144 1.16.2.2 christos #if defined(AUDIO_DEBUG)
4145 1.16.2.2 christos if (audiodebug >= 3) {
4146 1.16.2.2 christos struct audio_track_debugbuf m;
4147 1.16.2.2 christos
4148 1.16.2.2 christos memset(&m, 0, sizeof(m));
4149 1.16.2.2 christos snprintf(m.outbuf, sizeof(m.outbuf), " out=%d",
4150 1.16.2.2 christos track->outbuf.capacity * frametobyte(&track->outbuf.fmt,1));
4151 1.16.2.2 christos if (track->freq.filter)
4152 1.16.2.2 christos snprintf(m.freq, sizeof(m.freq), " freq=%d",
4153 1.16.2.2 christos track->freq.srcbuf.capacity *
4154 1.16.2.2 christos frametobyte(&track->freq.srcbuf.fmt, 1));
4155 1.16.2.2 christos if (track->chmix.filter)
4156 1.16.2.2 christos snprintf(m.chmix, sizeof(m.chmix), " chmix=%d",
4157 1.16.2.2 christos track->chmix.srcbuf.capacity *
4158 1.16.2.2 christos frametobyte(&track->chmix.srcbuf.fmt, 1));
4159 1.16.2.2 christos if (track->chvol.filter)
4160 1.16.2.2 christos snprintf(m.chvol, sizeof(m.chvol), " chvol=%d",
4161 1.16.2.2 christos track->chvol.srcbuf.capacity *
4162 1.16.2.2 christos frametobyte(&track->chvol.srcbuf.fmt, 1));
4163 1.16.2.2 christos if (track->codec.filter)
4164 1.16.2.2 christos snprintf(m.codec, sizeof(m.codec), " codec=%d",
4165 1.16.2.2 christos track->codec.srcbuf.capacity *
4166 1.16.2.2 christos frametobyte(&track->codec.srcbuf.fmt, 1));
4167 1.16.2.2 christos snprintf(m.usrbuf, sizeof(m.usrbuf),
4168 1.16.2.2 christos " usr=%d", track->usrbuf.capacity);
4169 1.16.2.2 christos
4170 1.16.2.2 christos if (audio_track_is_playback(track)) {
4171 1.16.2.2 christos TRACET(0, track, "bufsize%s%s%s%s%s%s",
4172 1.16.2.2 christos m.outbuf, m.freq, m.chmix,
4173 1.16.2.2 christos m.chvol, m.codec, m.usrbuf);
4174 1.16.2.2 christos } else {
4175 1.16.2.2 christos TRACET(0, track, "bufsize%s%s%s%s%s%s",
4176 1.16.2.2 christos m.freq, m.chmix, m.chvol,
4177 1.16.2.2 christos m.codec, m.outbuf, m.usrbuf);
4178 1.16.2.2 christos }
4179 1.16.2.2 christos }
4180 1.16.2.2 christos #endif
4181 1.16.2.2 christos return 0;
4182 1.16.2.2 christos
4183 1.16.2.2 christos error:
4184 1.16.2.2 christos audio_free_usrbuf(track);
4185 1.16.2.2 christos audio_free(track->codec.srcbuf.mem);
4186 1.16.2.2 christos audio_free(track->chvol.srcbuf.mem);
4187 1.16.2.2 christos audio_free(track->chmix.srcbuf.mem);
4188 1.16.2.2 christos audio_free(track->freq.srcbuf.mem);
4189 1.16.2.2 christos audio_free(track->outbuf.mem);
4190 1.16.2.2 christos return error;
4191 1.16.2.2 christos }
4192 1.16.2.2 christos
4193 1.16.2.2 christos /*
4194 1.16.2.2 christos * Fill silence frames (as the internal format) up to 1 block
4195 1.16.2.2 christos * if the ring is not empty and less than 1 block.
4196 1.16.2.2 christos * It returns the number of appended frames.
4197 1.16.2.2 christos */
4198 1.16.2.2 christos static int
4199 1.16.2.2 christos audio_append_silence(audio_track_t *track, audio_ring_t *ring)
4200 1.16.2.2 christos {
4201 1.16.2.2 christos int fpb;
4202 1.16.2.2 christos int n;
4203 1.16.2.2 christos
4204 1.16.2.2 christos KASSERT(track);
4205 1.16.2.2 christos KASSERT(audio_format2_is_internal(&ring->fmt));
4206 1.16.2.2 christos
4207 1.16.2.2 christos /* XXX is n correct? */
4208 1.16.2.2 christos /* XXX memset uses frametobyte()? */
4209 1.16.2.2 christos
4210 1.16.2.2 christos if (ring->used == 0)
4211 1.16.2.2 christos return 0;
4212 1.16.2.2 christos
4213 1.16.2.2 christos fpb = frame_per_block(track->mixer, &ring->fmt);
4214 1.16.2.2 christos if (ring->used >= fpb)
4215 1.16.2.2 christos return 0;
4216 1.16.2.2 christos
4217 1.16.2.2 christos n = (ring->capacity - ring->used) % fpb;
4218 1.16.2.2 christos
4219 1.16.2.2 christos KASSERT(auring_get_contig_free(ring) >= n);
4220 1.16.2.2 christos
4221 1.16.2.2 christos memset(auring_tailptr_aint(ring), 0,
4222 1.16.2.2 christos n * ring->fmt.channels * sizeof(aint_t));
4223 1.16.2.2 christos auring_push(ring, n);
4224 1.16.2.2 christos return n;
4225 1.16.2.2 christos }
4226 1.16.2.2 christos
4227 1.16.2.2 christos /*
4228 1.16.2.2 christos * Execute the conversion stage.
4229 1.16.2.2 christos * It prepares arg from this stage and executes stage->filter.
4230 1.16.2.2 christos * It must be called only if stage->filter is not NULL.
4231 1.16.2.2 christos *
4232 1.16.2.2 christos * For stages other than frequency conversion, the function increments
4233 1.16.2.2 christos * src and dst counters here. For frequency conversion stage, on the
4234 1.16.2.2 christos * other hand, the function does not touch src and dst counters and
4235 1.16.2.2 christos * filter side has to increment them.
4236 1.16.2.2 christos */
4237 1.16.2.2 christos static void
4238 1.16.2.2 christos audio_apply_stage(audio_track_t *track, audio_stage_t *stage, bool isfreq)
4239 1.16.2.2 christos {
4240 1.16.2.2 christos audio_filter_arg_t *arg;
4241 1.16.2.2 christos int srccount;
4242 1.16.2.2 christos int dstcount;
4243 1.16.2.2 christos int count;
4244 1.16.2.2 christos
4245 1.16.2.2 christos KASSERT(track);
4246 1.16.2.2 christos KASSERT(stage->filter);
4247 1.16.2.2 christos
4248 1.16.2.2 christos srccount = auring_get_contig_used(&stage->srcbuf);
4249 1.16.2.2 christos dstcount = auring_get_contig_free(stage->dst);
4250 1.16.2.2 christos
4251 1.16.2.2 christos if (isfreq) {
4252 1.16.2.2 christos KASSERTMSG(srccount > 0, "freq but srccount == %d", srccount);
4253 1.16.2.2 christos count = uimin(dstcount, track->mixer->frames_per_block);
4254 1.16.2.2 christos } else {
4255 1.16.2.2 christos count = uimin(srccount, dstcount);
4256 1.16.2.2 christos }
4257 1.16.2.2 christos
4258 1.16.2.2 christos if (count > 0) {
4259 1.16.2.2 christos arg = &stage->arg;
4260 1.16.2.2 christos arg->src = auring_headptr(&stage->srcbuf);
4261 1.16.2.2 christos arg->dst = auring_tailptr(stage->dst);
4262 1.16.2.2 christos arg->count = count;
4263 1.16.2.2 christos
4264 1.16.2.2 christos stage->filter(arg);
4265 1.16.2.2 christos
4266 1.16.2.2 christos if (!isfreq) {
4267 1.16.2.2 christos auring_take(&stage->srcbuf, count);
4268 1.16.2.2 christos auring_push(stage->dst, count);
4269 1.16.2.2 christos }
4270 1.16.2.2 christos }
4271 1.16.2.2 christos }
4272 1.16.2.2 christos
4273 1.16.2.2 christos /*
4274 1.16.2.2 christos * Produce output buffer for playback from user input buffer.
4275 1.16.2.2 christos * It must be called only if usrbuf is not empty and outbuf is
4276 1.16.2.2 christos * available at least one free block.
4277 1.16.2.2 christos */
4278 1.16.2.2 christos static void
4279 1.16.2.2 christos audio_track_play(audio_track_t *track)
4280 1.16.2.2 christos {
4281 1.16.2.2 christos audio_ring_t *usrbuf;
4282 1.16.2.2 christos audio_ring_t *input;
4283 1.16.2.2 christos int count;
4284 1.16.2.2 christos int framesize;
4285 1.16.2.2 christos int bytes;
4286 1.16.2.2 christos u_int dropcount;
4287 1.16.2.2 christos
4288 1.16.2.2 christos KASSERT(track);
4289 1.16.2.2 christos KASSERT(track->lock);
4290 1.16.2.2 christos TRACET(4, track, "start pstate=%d", track->pstate);
4291 1.16.2.2 christos
4292 1.16.2.2 christos /* At this point usrbuf must not be empty. */
4293 1.16.2.2 christos KASSERT(track->usrbuf.used > 0);
4294 1.16.2.2 christos /* Also, outbuf must be available at least one block. */
4295 1.16.2.2 christos count = auring_get_contig_free(&track->outbuf);
4296 1.16.2.2 christos KASSERTMSG(count >= frame_per_block(track->mixer, &track->outbuf.fmt),
4297 1.16.2.2 christos "count=%d fpb=%d",
4298 1.16.2.2 christos count, frame_per_block(track->mixer, &track->outbuf.fmt));
4299 1.16.2.2 christos
4300 1.16.2.2 christos /* XXX TODO: is this necessary for now? */
4301 1.16.2.2 christos int track_count_0 = track->outbuf.used;
4302 1.16.2.2 christos
4303 1.16.2.2 christos usrbuf = &track->usrbuf;
4304 1.16.2.2 christos input = track->input;
4305 1.16.2.2 christos dropcount = 0;
4306 1.16.2.2 christos
4307 1.16.2.2 christos /*
4308 1.16.2.2 christos * framesize is always 1 byte or more since all formats supported as
4309 1.16.2.2 christos * usrfmt(=input) have 8bit or more stride.
4310 1.16.2.2 christos */
4311 1.16.2.2 christos framesize = frametobyte(&input->fmt, 1);
4312 1.16.2.2 christos KASSERT(framesize >= 1);
4313 1.16.2.2 christos
4314 1.16.2.2 christos /* The next stage of usrbuf (=input) must be available. */
4315 1.16.2.2 christos KASSERT(auring_get_contig_free(input) > 0);
4316 1.16.2.2 christos
4317 1.16.2.2 christos /*
4318 1.16.2.2 christos * Copy usrbuf up to 1block to input buffer.
4319 1.16.2.2 christos * count is the number of frames to copy from usrbuf.
4320 1.16.2.2 christos * bytes is the number of bytes to copy from usrbuf. However it is
4321 1.16.2.2 christos * not copied less than one frame.
4322 1.16.2.2 christos */
4323 1.16.2.2 christos count = uimin(usrbuf->used, track->usrbuf_blksize) / framesize;
4324 1.16.2.2 christos bytes = count * framesize;
4325 1.16.2.2 christos
4326 1.16.2.2 christos /*
4327 1.16.2.2 christos * If bytes is less than one block,
4328 1.16.2.2 christos * if not draining, buffer is not filled so return.
4329 1.16.2.2 christos * if draining, fall through.
4330 1.16.2.2 christos */
4331 1.16.2.2 christos if (count < track->usrbuf_blksize / framesize) {
4332 1.16.2.2 christos dropcount = track->usrbuf_blksize / framesize - count;
4333 1.16.2.2 christos
4334 1.16.2.2 christos if (track->pstate != AUDIO_STATE_DRAINING) {
4335 1.16.2.2 christos /* Wait until filled. */
4336 1.16.2.2 christos TRACET(4, track, "not enough; return");
4337 1.16.2.2 christos return;
4338 1.16.2.2 christos }
4339 1.16.2.2 christos }
4340 1.16.2.2 christos
4341 1.16.2.2 christos track->usrbuf_stamp += bytes;
4342 1.16.2.2 christos
4343 1.16.2.2 christos if (usrbuf->head + bytes < usrbuf->capacity) {
4344 1.16.2.2 christos memcpy((uint8_t *)input->mem + auring_tail(input) * framesize,
4345 1.16.2.2 christos (uint8_t *)usrbuf->mem + usrbuf->head,
4346 1.16.2.2 christos bytes);
4347 1.16.2.2 christos auring_push(input, count);
4348 1.16.2.2 christos auring_take(usrbuf, bytes);
4349 1.16.2.2 christos } else {
4350 1.16.2.2 christos int bytes1;
4351 1.16.2.2 christos int bytes2;
4352 1.16.2.2 christos
4353 1.16.2.2 christos bytes1 = auring_get_contig_used(usrbuf);
4354 1.16.2.2 christos KASSERT(bytes1 % framesize == 0);
4355 1.16.2.2 christos memcpy((uint8_t *)input->mem + auring_tail(input) * framesize,
4356 1.16.2.2 christos (uint8_t *)usrbuf->mem + usrbuf->head,
4357 1.16.2.2 christos bytes1);
4358 1.16.2.2 christos auring_push(input, bytes1 / framesize);
4359 1.16.2.2 christos auring_take(usrbuf, bytes1);
4360 1.16.2.2 christos
4361 1.16.2.2 christos bytes2 = bytes - bytes1;
4362 1.16.2.2 christos memcpy((uint8_t *)input->mem + auring_tail(input) * framesize,
4363 1.16.2.2 christos (uint8_t *)usrbuf->mem + usrbuf->head,
4364 1.16.2.2 christos bytes2);
4365 1.16.2.2 christos auring_push(input, bytes2 / framesize);
4366 1.16.2.2 christos auring_take(usrbuf, bytes2);
4367 1.16.2.2 christos }
4368 1.16.2.2 christos
4369 1.16.2.2 christos /* Encoding conversion */
4370 1.16.2.2 christos if (track->codec.filter)
4371 1.16.2.2 christos audio_apply_stage(track, &track->codec, false);
4372 1.16.2.2 christos
4373 1.16.2.2 christos /* Channel volume */
4374 1.16.2.2 christos if (track->chvol.filter)
4375 1.16.2.2 christos audio_apply_stage(track, &track->chvol, false);
4376 1.16.2.2 christos
4377 1.16.2.2 christos /* Channel mix */
4378 1.16.2.2 christos if (track->chmix.filter)
4379 1.16.2.2 christos audio_apply_stage(track, &track->chmix, false);
4380 1.16.2.2 christos
4381 1.16.2.2 christos /* Frequency conversion */
4382 1.16.2.2 christos /*
4383 1.16.2.2 christos * Since the frequency conversion needs correction for each block,
4384 1.16.2.2 christos * it rounds up to 1 block.
4385 1.16.2.2 christos */
4386 1.16.2.2 christos if (track->freq.filter) {
4387 1.16.2.2 christos int n;
4388 1.16.2.2 christos n = audio_append_silence(track, &track->freq.srcbuf);
4389 1.16.2.2 christos if (n > 0) {
4390 1.16.2.2 christos TRACET(4, track,
4391 1.16.2.2 christos "freq.srcbuf add silence %d -> %d/%d/%d",
4392 1.16.2.2 christos n,
4393 1.16.2.2 christos track->freq.srcbuf.head,
4394 1.16.2.2 christos track->freq.srcbuf.used,
4395 1.16.2.2 christos track->freq.srcbuf.capacity);
4396 1.16.2.2 christos }
4397 1.16.2.2 christos if (track->freq.srcbuf.used > 0) {
4398 1.16.2.2 christos audio_apply_stage(track, &track->freq, true);
4399 1.16.2.2 christos }
4400 1.16.2.2 christos }
4401 1.16.2.2 christos
4402 1.16.2.2 christos if (dropcount != 0) {
4403 1.16.2.2 christos /*
4404 1.16.2.2 christos * Clear all conversion buffer pointer if the conversion was
4405 1.16.2.2 christos * not exactly one block. These conversion stage buffers are
4406 1.16.2.2 christos * certainly circular buffers because of symmetry with the
4407 1.16.2.2 christos * previous and next stage buffer. However, since they are
4408 1.16.2.2 christos * treated as simple contiguous buffers in operation, so head
4409 1.16.2.2 christos * always should point 0. This may happen during drain-age.
4410 1.16.2.2 christos */
4411 1.16.2.2 christos TRACET(4, track, "reset stage");
4412 1.16.2.2 christos if (track->codec.filter) {
4413 1.16.2.2 christos KASSERT(track->codec.srcbuf.used == 0);
4414 1.16.2.2 christos track->codec.srcbuf.head = 0;
4415 1.16.2.2 christos }
4416 1.16.2.2 christos if (track->chvol.filter) {
4417 1.16.2.2 christos KASSERT(track->chvol.srcbuf.used == 0);
4418 1.16.2.2 christos track->chvol.srcbuf.head = 0;
4419 1.16.2.2 christos }
4420 1.16.2.2 christos if (track->chmix.filter) {
4421 1.16.2.2 christos KASSERT(track->chmix.srcbuf.used == 0);
4422 1.16.2.2 christos track->chmix.srcbuf.head = 0;
4423 1.16.2.2 christos }
4424 1.16.2.2 christos if (track->freq.filter) {
4425 1.16.2.2 christos KASSERT(track->freq.srcbuf.used == 0);
4426 1.16.2.2 christos track->freq.srcbuf.head = 0;
4427 1.16.2.2 christos }
4428 1.16.2.2 christos }
4429 1.16.2.2 christos
4430 1.16.2.2 christos if (track->input == &track->outbuf) {
4431 1.16.2.2 christos track->outputcounter = track->inputcounter;
4432 1.16.2.2 christos } else {
4433 1.16.2.2 christos track->outputcounter += track->outbuf.used - track_count_0;
4434 1.16.2.2 christos }
4435 1.16.2.2 christos
4436 1.16.2.2 christos #if defined(AUDIO_DEBUG)
4437 1.16.2.2 christos if (audiodebug >= 3) {
4438 1.16.2.2 christos struct audio_track_debugbuf m;
4439 1.16.2.2 christos audio_track_bufstat(track, &m);
4440 1.16.2.2 christos TRACET(0, track, "end%s%s%s%s%s%s",
4441 1.16.2.2 christos m.outbuf, m.freq, m.chvol, m.chmix, m.codec, m.usrbuf);
4442 1.16.2.2 christos }
4443 1.16.2.2 christos #endif
4444 1.16.2.2 christos }
4445 1.16.2.2 christos
4446 1.16.2.2 christos /*
4447 1.16.2.2 christos * Produce user output buffer for recording from input buffer.
4448 1.16.2.2 christos */
4449 1.16.2.2 christos static void
4450 1.16.2.2 christos audio_track_record(audio_track_t *track)
4451 1.16.2.2 christos {
4452 1.16.2.2 christos audio_ring_t *outbuf;
4453 1.16.2.2 christos audio_ring_t *usrbuf;
4454 1.16.2.2 christos int count;
4455 1.16.2.2 christos int bytes;
4456 1.16.2.2 christos int framesize;
4457 1.16.2.2 christos
4458 1.16.2.2 christos KASSERT(track);
4459 1.16.2.2 christos KASSERT(track->lock);
4460 1.16.2.2 christos
4461 1.16.2.2 christos /* Number of frames to process */
4462 1.16.2.2 christos count = auring_get_contig_used(track->input);
4463 1.16.2.2 christos count = uimin(count, track->mixer->frames_per_block);
4464 1.16.2.2 christos if (count == 0) {
4465 1.16.2.2 christos TRACET(4, track, "count == 0");
4466 1.16.2.2 christos return;
4467 1.16.2.2 christos }
4468 1.16.2.2 christos
4469 1.16.2.2 christos /* Frequency conversion */
4470 1.16.2.2 christos if (track->freq.filter) {
4471 1.16.2.2 christos if (track->freq.srcbuf.used > 0) {
4472 1.16.2.2 christos audio_apply_stage(track, &track->freq, true);
4473 1.16.2.2 christos /* XXX should input of freq be from beginning of buf? */
4474 1.16.2.2 christos }
4475 1.16.2.2 christos }
4476 1.16.2.2 christos
4477 1.16.2.2 christos /* Channel mix */
4478 1.16.2.2 christos if (track->chmix.filter)
4479 1.16.2.2 christos audio_apply_stage(track, &track->chmix, false);
4480 1.16.2.2 christos
4481 1.16.2.2 christos /* Channel volume */
4482 1.16.2.2 christos if (track->chvol.filter)
4483 1.16.2.2 christos audio_apply_stage(track, &track->chvol, false);
4484 1.16.2.2 christos
4485 1.16.2.2 christos /* Encoding conversion */
4486 1.16.2.2 christos if (track->codec.filter)
4487 1.16.2.2 christos audio_apply_stage(track, &track->codec, false);
4488 1.16.2.2 christos
4489 1.16.2.2 christos /* Copy outbuf to usrbuf */
4490 1.16.2.2 christos outbuf = &track->outbuf;
4491 1.16.2.2 christos usrbuf = &track->usrbuf;
4492 1.16.2.2 christos /*
4493 1.16.2.2 christos * framesize is always 1 byte or more since all formats supported
4494 1.16.2.2 christos * as usrfmt(=output) have 8bit or more stride.
4495 1.16.2.2 christos */
4496 1.16.2.2 christos framesize = frametobyte(&outbuf->fmt, 1);
4497 1.16.2.2 christos KASSERT(framesize >= 1);
4498 1.16.2.2 christos /*
4499 1.16.2.2 christos * count is the number of frames to copy to usrbuf.
4500 1.16.2.2 christos * bytes is the number of bytes to copy to usrbuf.
4501 1.16.2.2 christos */
4502 1.16.2.2 christos count = outbuf->used;
4503 1.16.2.2 christos count = uimin(count,
4504 1.16.2.2 christos (track->usrbuf_usedhigh - usrbuf->used) / framesize);
4505 1.16.2.2 christos bytes = count * framesize;
4506 1.16.2.2 christos if (auring_tail(usrbuf) + bytes < usrbuf->capacity) {
4507 1.16.2.2 christos memcpy((uint8_t *)usrbuf->mem + auring_tail(usrbuf),
4508 1.16.2.2 christos (uint8_t *)outbuf->mem + outbuf->head * framesize,
4509 1.16.2.2 christos bytes);
4510 1.16.2.2 christos auring_push(usrbuf, bytes);
4511 1.16.2.2 christos auring_take(outbuf, count);
4512 1.16.2.2 christos } else {
4513 1.16.2.2 christos int bytes1;
4514 1.16.2.2 christos int bytes2;
4515 1.16.2.2 christos
4516 1.16.2.2 christos bytes1 = auring_get_contig_used(usrbuf);
4517 1.16.2.2 christos KASSERT(bytes1 % framesize == 0);
4518 1.16.2.2 christos memcpy((uint8_t *)usrbuf->mem + auring_tail(usrbuf),
4519 1.16.2.2 christos (uint8_t *)outbuf->mem + outbuf->head * framesize,
4520 1.16.2.2 christos bytes1);
4521 1.16.2.2 christos auring_push(usrbuf, bytes1);
4522 1.16.2.2 christos auring_take(outbuf, bytes1 / framesize);
4523 1.16.2.2 christos
4524 1.16.2.2 christos bytes2 = bytes - bytes1;
4525 1.16.2.2 christos memcpy((uint8_t *)usrbuf->mem + auring_tail(usrbuf),
4526 1.16.2.2 christos (uint8_t *)outbuf->mem + outbuf->head * framesize,
4527 1.16.2.2 christos bytes2);
4528 1.16.2.2 christos auring_push(usrbuf, bytes2);
4529 1.16.2.2 christos auring_take(outbuf, bytes2 / framesize);
4530 1.16.2.2 christos }
4531 1.16.2.2 christos
4532 1.16.2.2 christos /* XXX TODO: any counters here? */
4533 1.16.2.2 christos
4534 1.16.2.2 christos #if defined(AUDIO_DEBUG)
4535 1.16.2.2 christos if (audiodebug >= 3) {
4536 1.16.2.2 christos struct audio_track_debugbuf m;
4537 1.16.2.2 christos audio_track_bufstat(track, &m);
4538 1.16.2.2 christos TRACET(0, track, "end%s%s%s%s%s%s",
4539 1.16.2.2 christos m.freq, m.chvol, m.chmix, m.codec, m.outbuf, m.usrbuf);
4540 1.16.2.2 christos }
4541 1.16.2.2 christos #endif
4542 1.16.2.2 christos }
4543 1.16.2.2 christos
4544 1.16.2.2 christos /*
4545 1.16.2.2 christos * Calcurate blktime [msec] from mixer(.hwbuf.fmt).
4546 1.16.2.2 christos * Must be called with sc_lock held.
4547 1.16.2.2 christos */
4548 1.16.2.2 christos static u_int
4549 1.16.2.2 christos audio_mixer_calc_blktime(struct audio_softc *sc, audio_trackmixer_t *mixer)
4550 1.16.2.2 christos {
4551 1.16.2.2 christos audio_format2_t *fmt;
4552 1.16.2.2 christos u_int blktime;
4553 1.16.2.2 christos u_int frames_per_block;
4554 1.16.2.2 christos
4555 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
4556 1.16.2.2 christos
4557 1.16.2.2 christos fmt = &mixer->hwbuf.fmt;
4558 1.16.2.2 christos blktime = sc->sc_blk_ms;
4559 1.16.2.2 christos
4560 1.16.2.2 christos /*
4561 1.16.2.2 christos * If stride is not multiples of 8, special treatment is necessary.
4562 1.16.2.2 christos * For now, it is only x68k's vs(4), 4 bit/sample ADPCM.
4563 1.16.2.2 christos */
4564 1.16.2.2 christos if (fmt->stride == 4) {
4565 1.16.2.2 christos frames_per_block = fmt->sample_rate * blktime / 1000;
4566 1.16.2.2 christos if ((frames_per_block & 1) != 0)
4567 1.16.2.2 christos blktime *= 2;
4568 1.16.2.2 christos }
4569 1.16.2.2 christos #ifdef DIAGNOSTIC
4570 1.16.2.2 christos else if (fmt->stride % NBBY != 0) {
4571 1.16.2.2 christos panic("unsupported HW stride %d", fmt->stride);
4572 1.16.2.2 christos }
4573 1.16.2.2 christos #endif
4574 1.16.2.2 christos
4575 1.16.2.2 christos return blktime;
4576 1.16.2.2 christos }
4577 1.16.2.2 christos
4578 1.16.2.2 christos /*
4579 1.16.2.2 christos * Initialize the mixer corresponding to the mode.
4580 1.16.2.2 christos * Set AUMODE_PLAY to the 'mode' for playback or AUMODE_RECORD for recording.
4581 1.16.2.2 christos * sc->sc_[pr]mixer (corresponding to the 'mode') must be zero-filled.
4582 1.16.2.2 christos * This function returns 0 on sucessful. Otherwise returns errno.
4583 1.16.2.2 christos * Must be called with sc_lock held.
4584 1.16.2.2 christos */
4585 1.16.2.2 christos static int
4586 1.16.2.2 christos audio_mixer_init(struct audio_softc *sc, int mode,
4587 1.16.2.2 christos const audio_format2_t *hwfmt, const audio_filter_reg_t *reg)
4588 1.16.2.2 christos {
4589 1.16.2.2 christos char codecbuf[64];
4590 1.16.2.2 christos audio_trackmixer_t *mixer;
4591 1.16.2.2 christos void (*softint_handler)(void *);
4592 1.16.2.2 christos int len;
4593 1.16.2.2 christos int blksize;
4594 1.16.2.2 christos int capacity;
4595 1.16.2.2 christos size_t bufsize;
4596 1.16.2.2 christos int hwblks;
4597 1.16.2.2 christos int blkms;
4598 1.16.2.2 christos int error;
4599 1.16.2.2 christos
4600 1.16.2.2 christos KASSERT(hwfmt != NULL);
4601 1.16.2.2 christos KASSERT(reg != NULL);
4602 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
4603 1.16.2.2 christos
4604 1.16.2.2 christos error = 0;
4605 1.16.2.2 christos if (mode == AUMODE_PLAY)
4606 1.16.2.2 christos mixer = sc->sc_pmixer;
4607 1.16.2.2 christos else
4608 1.16.2.2 christos mixer = sc->sc_rmixer;
4609 1.16.2.2 christos
4610 1.16.2.2 christos mixer->sc = sc;
4611 1.16.2.2 christos mixer->mode = mode;
4612 1.16.2.2 christos
4613 1.16.2.2 christos mixer->hwbuf.fmt = *hwfmt;
4614 1.16.2.2 christos mixer->volume = 256;
4615 1.16.2.2 christos mixer->blktime_d = 1000;
4616 1.16.2.2 christos mixer->blktime_n = audio_mixer_calc_blktime(sc, mixer);
4617 1.16.2.2 christos sc->sc_blk_ms = mixer->blktime_n;
4618 1.16.2.2 christos hwblks = NBLKHW;
4619 1.16.2.2 christos
4620 1.16.2.2 christos mixer->frames_per_block = frame_per_block(mixer, &mixer->hwbuf.fmt);
4621 1.16.2.2 christos blksize = frametobyte(&mixer->hwbuf.fmt, mixer->frames_per_block);
4622 1.16.2.2 christos if (sc->hw_if->round_blocksize) {
4623 1.16.2.2 christos int rounded;
4624 1.16.2.2 christos audio_params_t p = format2_to_params(&mixer->hwbuf.fmt);
4625 1.16.2.2 christos rounded = sc->hw_if->round_blocksize(sc->hw_hdl, blksize,
4626 1.16.2.2 christos mode, &p);
4627 1.16.2.2 christos TRACE(2, "round_blocksize %d -> %d", blksize, rounded);
4628 1.16.2.2 christos if (rounded != blksize) {
4629 1.16.2.2 christos if ((rounded * NBBY) % (mixer->hwbuf.fmt.stride *
4630 1.16.2.2 christos mixer->hwbuf.fmt.channels) != 0) {
4631 1.16.2.2 christos device_printf(sc->sc_dev,
4632 1.16.2.2 christos "blksize not configured %d -> %d\n",
4633 1.16.2.2 christos blksize, rounded);
4634 1.16.2.2 christos return EINVAL;
4635 1.16.2.2 christos }
4636 1.16.2.2 christos /* Recalculation */
4637 1.16.2.2 christos blksize = rounded;
4638 1.16.2.2 christos mixer->frames_per_block = blksize * NBBY /
4639 1.16.2.2 christos (mixer->hwbuf.fmt.stride *
4640 1.16.2.2 christos mixer->hwbuf.fmt.channels);
4641 1.16.2.2 christos }
4642 1.16.2.2 christos }
4643 1.16.2.2 christos mixer->blktime_n = mixer->frames_per_block;
4644 1.16.2.2 christos mixer->blktime_d = mixer->hwbuf.fmt.sample_rate;
4645 1.16.2.2 christos
4646 1.16.2.2 christos capacity = mixer->frames_per_block * hwblks;
4647 1.16.2.2 christos bufsize = frametobyte(&mixer->hwbuf.fmt, capacity);
4648 1.16.2.2 christos if (sc->hw_if->round_buffersize) {
4649 1.16.2.2 christos size_t rounded;
4650 1.16.2.2 christos rounded = sc->hw_if->round_buffersize(sc->hw_hdl, mode,
4651 1.16.2.2 christos bufsize);
4652 1.16.2.2 christos TRACE(2, "round_buffersize %zd -> %zd", bufsize, rounded);
4653 1.16.2.2 christos if (rounded < bufsize) {
4654 1.16.2.2 christos /* buffersize needs NBLKHW blocks at least. */
4655 1.16.2.2 christos device_printf(sc->sc_dev,
4656 1.16.2.2 christos "buffersize too small: buffersize=%zd blksize=%d\n",
4657 1.16.2.2 christos rounded, blksize);
4658 1.16.2.2 christos return EINVAL;
4659 1.16.2.2 christos }
4660 1.16.2.2 christos if (rounded % blksize != 0) {
4661 1.16.2.2 christos /* buffersize/blksize constraint mismatch? */
4662 1.16.2.2 christos device_printf(sc->sc_dev,
4663 1.16.2.2 christos "buffersize must be multiple of blksize: "
4664 1.16.2.2 christos "buffersize=%zu blksize=%d\n",
4665 1.16.2.2 christos rounded, blksize);
4666 1.16.2.2 christos return EINVAL;
4667 1.16.2.2 christos }
4668 1.16.2.2 christos if (rounded != bufsize) {
4669 1.16.2.2 christos /* Recalcuration */
4670 1.16.2.2 christos bufsize = rounded;
4671 1.16.2.2 christos hwblks = bufsize / blksize;
4672 1.16.2.2 christos capacity = mixer->frames_per_block * hwblks;
4673 1.16.2.2 christos }
4674 1.16.2.2 christos }
4675 1.16.2.2 christos TRACE(2, "buffersize for %s = %zu",
4676 1.16.2.2 christos (mode == AUMODE_PLAY) ? "playback" : "recording",
4677 1.16.2.2 christos bufsize);
4678 1.16.2.2 christos mixer->hwbuf.capacity = capacity;
4679 1.16.2.2 christos
4680 1.16.2.2 christos /*
4681 1.16.2.2 christos * XXX need to release sc_lock for compatibility?
4682 1.16.2.2 christos */
4683 1.16.2.2 christos if (sc->hw_if->allocm) {
4684 1.16.2.2 christos mixer->hwbuf.mem = sc->hw_if->allocm(sc->hw_hdl, mode, bufsize);
4685 1.16.2.2 christos if (mixer->hwbuf.mem == NULL) {
4686 1.16.2.2 christos device_printf(sc->sc_dev, "%s: allocm(%zu) failed\n",
4687 1.16.2.2 christos __func__, bufsize);
4688 1.16.2.2 christos return ENOMEM;
4689 1.16.2.2 christos }
4690 1.16.2.2 christos } else {
4691 1.16.2.2 christos mixer->hwbuf.mem = kern_malloc(bufsize, M_NOWAIT);
4692 1.16.2.2 christos if (mixer->hwbuf.mem == NULL) {
4693 1.16.2.2 christos device_printf(sc->sc_dev,
4694 1.16.2.2 christos "%s: malloc hwbuf(%zu) failed\n",
4695 1.16.2.2 christos __func__, bufsize);
4696 1.16.2.2 christos return ENOMEM;
4697 1.16.2.2 christos }
4698 1.16.2.2 christos }
4699 1.16.2.2 christos
4700 1.16.2.2 christos /* From here, audio_mixer_destroy is necessary to exit. */
4701 1.16.2.2 christos if (mode == AUMODE_PLAY) {
4702 1.16.2.2 christos cv_init(&mixer->outcv, "audiowr");
4703 1.16.2.2 christos } else {
4704 1.16.2.2 christos cv_init(&mixer->outcv, "audiord");
4705 1.16.2.2 christos }
4706 1.16.2.2 christos
4707 1.16.2.2 christos if (mode == AUMODE_PLAY) {
4708 1.16.2.2 christos softint_handler = audio_softintr_wr;
4709 1.16.2.2 christos } else {
4710 1.16.2.2 christos softint_handler = audio_softintr_rd;
4711 1.16.2.2 christos }
4712 1.16.2.2 christos mixer->sih = softint_establish(SOFTINT_SERIAL | SOFTINT_MPSAFE,
4713 1.16.2.2 christos softint_handler, sc);
4714 1.16.2.2 christos if (mixer->sih == NULL) {
4715 1.16.2.2 christos device_printf(sc->sc_dev, "softint_establish failed\n");
4716 1.16.2.2 christos goto abort;
4717 1.16.2.2 christos }
4718 1.16.2.2 christos
4719 1.16.2.2 christos mixer->track_fmt.encoding = AUDIO_ENCODING_SLINEAR_NE;
4720 1.16.2.2 christos mixer->track_fmt.precision = AUDIO_INTERNAL_BITS;
4721 1.16.2.2 christos mixer->track_fmt.stride = AUDIO_INTERNAL_BITS;
4722 1.16.2.2 christos mixer->track_fmt.channels = mixer->hwbuf.fmt.channels;
4723 1.16.2.2 christos mixer->track_fmt.sample_rate = mixer->hwbuf.fmt.sample_rate;
4724 1.16.2.2 christos
4725 1.16.2.2 christos if (mixer->hwbuf.fmt.encoding == AUDIO_ENCODING_SLINEAR_OE &&
4726 1.16.2.2 christos mixer->hwbuf.fmt.precision == AUDIO_INTERNAL_BITS) {
4727 1.16.2.2 christos mixer->swap_endian = true;
4728 1.16.2.2 christos TRACE(1, "swap_endian");
4729 1.16.2.2 christos }
4730 1.16.2.2 christos
4731 1.16.2.2 christos if (mode == AUMODE_PLAY) {
4732 1.16.2.2 christos /* Mixing buffer */
4733 1.16.2.2 christos mixer->mixfmt = mixer->track_fmt;
4734 1.16.2.2 christos mixer->mixfmt.precision *= 2;
4735 1.16.2.2 christos mixer->mixfmt.stride *= 2;
4736 1.16.2.2 christos /* XXX TODO: use some macros? */
4737 1.16.2.2 christos len = mixer->frames_per_block * mixer->mixfmt.channels *
4738 1.16.2.2 christos mixer->mixfmt.stride / NBBY;
4739 1.16.2.2 christos mixer->mixsample = audio_realloc(mixer->mixsample, len);
4740 1.16.2.2 christos if (mixer->mixsample == NULL) {
4741 1.16.2.2 christos device_printf(sc->sc_dev,
4742 1.16.2.2 christos "%s: malloc mixsample(%d) failed\n",
4743 1.16.2.2 christos __func__, len);
4744 1.16.2.2 christos error = ENOMEM;
4745 1.16.2.2 christos goto abort;
4746 1.16.2.2 christos }
4747 1.16.2.2 christos } else {
4748 1.16.2.2 christos /* No mixing buffer for recording */
4749 1.16.2.2 christos }
4750 1.16.2.2 christos
4751 1.16.2.2 christos if (reg->codec) {
4752 1.16.2.2 christos mixer->codec = reg->codec;
4753 1.16.2.2 christos mixer->codecarg.context = reg->context;
4754 1.16.2.2 christos if (mode == AUMODE_PLAY) {
4755 1.16.2.2 christos mixer->codecarg.srcfmt = &mixer->track_fmt;
4756 1.16.2.2 christos mixer->codecarg.dstfmt = &mixer->hwbuf.fmt;
4757 1.16.2.2 christos } else {
4758 1.16.2.2 christos mixer->codecarg.srcfmt = &mixer->hwbuf.fmt;
4759 1.16.2.2 christos mixer->codecarg.dstfmt = &mixer->track_fmt;
4760 1.16.2.2 christos }
4761 1.16.2.2 christos mixer->codecbuf.fmt = mixer->track_fmt;
4762 1.16.2.2 christos mixer->codecbuf.capacity = mixer->frames_per_block;
4763 1.16.2.2 christos len = auring_bytelen(&mixer->codecbuf);
4764 1.16.2.2 christos mixer->codecbuf.mem = audio_realloc(mixer->codecbuf.mem, len);
4765 1.16.2.2 christos if (mixer->codecbuf.mem == NULL) {
4766 1.16.2.2 christos device_printf(sc->sc_dev,
4767 1.16.2.2 christos "%s: malloc codecbuf(%d) failed\n",
4768 1.16.2.2 christos __func__, len);
4769 1.16.2.2 christos error = ENOMEM;
4770 1.16.2.2 christos goto abort;
4771 1.16.2.2 christos }
4772 1.16.2.2 christos }
4773 1.16.2.2 christos
4774 1.16.2.2 christos /* Succeeded so display it. */
4775 1.16.2.2 christos codecbuf[0] = '\0';
4776 1.16.2.2 christos if (mixer->codec || mixer->swap_endian) {
4777 1.16.2.2 christos snprintf(codecbuf, sizeof(codecbuf), " %s %s:%d",
4778 1.16.2.2 christos (mode == AUMODE_PLAY) ? "->" : "<-",
4779 1.16.2.2 christos audio_encoding_name(mixer->hwbuf.fmt.encoding),
4780 1.16.2.2 christos mixer->hwbuf.fmt.precision);
4781 1.16.2.2 christos }
4782 1.16.2.2 christos blkms = mixer->blktime_n * 1000 / mixer->blktime_d;
4783 1.16.2.2 christos aprint_normal_dev(sc->sc_dev, "%s:%d%s %dch %dHz, blk %dms for %s\n",
4784 1.16.2.2 christos audio_encoding_name(mixer->track_fmt.encoding),
4785 1.16.2.2 christos mixer->track_fmt.precision,
4786 1.16.2.2 christos codecbuf,
4787 1.16.2.2 christos mixer->track_fmt.channels,
4788 1.16.2.2 christos mixer->track_fmt.sample_rate,
4789 1.16.2.2 christos blkms,
4790 1.16.2.2 christos (mode == AUMODE_PLAY) ? "playback" : "recording");
4791 1.16.2.2 christos
4792 1.16.2.2 christos return 0;
4793 1.16.2.2 christos
4794 1.16.2.2 christos abort:
4795 1.16.2.2 christos audio_mixer_destroy(sc, mixer);
4796 1.16.2.2 christos return error;
4797 1.16.2.2 christos }
4798 1.16.2.2 christos
4799 1.16.2.2 christos /*
4800 1.16.2.2 christos * Releases all resources of 'mixer'.
4801 1.16.2.2 christos * Note that it does not release the memory area of 'mixer' itself.
4802 1.16.2.2 christos * Must be called with sc_lock held.
4803 1.16.2.2 christos */
4804 1.16.2.2 christos static void
4805 1.16.2.2 christos audio_mixer_destroy(struct audio_softc *sc, audio_trackmixer_t *mixer)
4806 1.16.2.2 christos {
4807 1.16.2.2 christos int mode;
4808 1.16.2.2 christos
4809 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
4810 1.16.2.2 christos
4811 1.16.2.2 christos mode = mixer->mode;
4812 1.16.2.2 christos KASSERT(mode == AUMODE_PLAY || mode == AUMODE_RECORD);
4813 1.16.2.2 christos
4814 1.16.2.2 christos if (mixer->hwbuf.mem != NULL) {
4815 1.16.2.2 christos if (sc->hw_if->freem) {
4816 1.16.2.2 christos sc->hw_if->freem(sc->hw_hdl, mixer->hwbuf.mem, mode);
4817 1.16.2.2 christos } else {
4818 1.16.2.2 christos kern_free(mixer->hwbuf.mem);
4819 1.16.2.2 christos }
4820 1.16.2.2 christos mixer->hwbuf.mem = NULL;
4821 1.16.2.2 christos }
4822 1.16.2.2 christos
4823 1.16.2.2 christos audio_free(mixer->codecbuf.mem);
4824 1.16.2.2 christos audio_free(mixer->mixsample);
4825 1.16.2.2 christos
4826 1.16.2.2 christos cv_destroy(&mixer->outcv);
4827 1.16.2.2 christos
4828 1.16.2.2 christos if (mixer->sih) {
4829 1.16.2.2 christos softint_disestablish(mixer->sih);
4830 1.16.2.2 christos mixer->sih = NULL;
4831 1.16.2.2 christos }
4832 1.16.2.2 christos }
4833 1.16.2.2 christos
4834 1.16.2.2 christos /*
4835 1.16.2.2 christos * Starts playback mixer.
4836 1.16.2.2 christos * Must be called only if sc_pbusy is false.
4837 1.16.2.2 christos * Must be called with sc_lock held.
4838 1.16.2.2 christos * Must not be called from the interrupt context.
4839 1.16.2.2 christos */
4840 1.16.2.2 christos static void
4841 1.16.2.2 christos audio_pmixer_start(struct audio_softc *sc, bool force)
4842 1.16.2.2 christos {
4843 1.16.2.2 christos audio_trackmixer_t *mixer;
4844 1.16.2.2 christos int minimum;
4845 1.16.2.2 christos
4846 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
4847 1.16.2.2 christos KASSERT(sc->sc_pbusy == false);
4848 1.16.2.2 christos
4849 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
4850 1.16.2.2 christos
4851 1.16.2.2 christos mixer = sc->sc_pmixer;
4852 1.16.2.2 christos TRACE(2, "%smixseq=%d hwseq=%d hwbuf=%d/%d/%d%s",
4853 1.16.2.2 christos (audiodebug >= 3) ? "begin " : "",
4854 1.16.2.2 christos (int)mixer->mixseq, (int)mixer->hwseq,
4855 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity,
4856 1.16.2.2 christos force ? " force" : "");
4857 1.16.2.2 christos
4858 1.16.2.2 christos /* Need two blocks to start normally. */
4859 1.16.2.2 christos minimum = (force) ? 1 : 2;
4860 1.16.2.2 christos while (mixer->hwbuf.used < mixer->frames_per_block * minimum) {
4861 1.16.2.2 christos audio_pmixer_process(sc);
4862 1.16.2.2 christos }
4863 1.16.2.2 christos
4864 1.16.2.2 christos /* Start output */
4865 1.16.2.2 christos audio_pmixer_output(sc);
4866 1.16.2.2 christos sc->sc_pbusy = true;
4867 1.16.2.2 christos
4868 1.16.2.2 christos TRACE(3, "end mixseq=%d hwseq=%d hwbuf=%d/%d/%d",
4869 1.16.2.2 christos (int)mixer->mixseq, (int)mixer->hwseq,
4870 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity);
4871 1.16.2.2 christos
4872 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
4873 1.16.2.2 christos }
4874 1.16.2.2 christos
4875 1.16.2.2 christos /*
4876 1.16.2.2 christos * When playing back with MD filter:
4877 1.16.2.2 christos *
4878 1.16.2.2 christos * track track ...
4879 1.16.2.2 christos * v v
4880 1.16.2.2 christos * + mix (with aint2_t)
4881 1.16.2.2 christos * | master volume (with aint2_t)
4882 1.16.2.2 christos * v
4883 1.16.2.2 christos * mixsample [::::] wide-int 1 block (ring) buffer
4884 1.16.2.2 christos * |
4885 1.16.2.2 christos * | convert aint2_t -> aint_t
4886 1.16.2.2 christos * v
4887 1.16.2.2 christos * codecbuf [....] 1 block (ring) buffer
4888 1.16.2.2 christos * |
4889 1.16.2.2 christos * | convert to hw format
4890 1.16.2.2 christos * v
4891 1.16.2.2 christos * hwbuf [............] NBLKHW blocks ring buffer
4892 1.16.2.2 christos *
4893 1.16.2.2 christos * When playing back without MD filter:
4894 1.16.2.2 christos *
4895 1.16.2.2 christos * mixsample [::::] wide-int 1 block (ring) buffer
4896 1.16.2.2 christos * |
4897 1.16.2.2 christos * | convert aint2_t -> aint_t
4898 1.16.2.2 christos * | (with byte swap if necessary)
4899 1.16.2.2 christos * v
4900 1.16.2.2 christos * hwbuf [............] NBLKHW blocks ring buffer
4901 1.16.2.2 christos *
4902 1.16.2.2 christos * mixsample: slinear_NE, wide internal precision, HW ch, HW freq.
4903 1.16.2.2 christos * codecbuf: slinear_NE, internal precision, HW ch, HW freq.
4904 1.16.2.2 christos * hwbuf: HW encoding, HW precision, HW ch, HW freq.
4905 1.16.2.2 christos */
4906 1.16.2.2 christos
4907 1.16.2.2 christos /*
4908 1.16.2.2 christos * Performs track mixing and converts it to hwbuf.
4909 1.16.2.2 christos * Note that this function doesn't transfer hwbuf to hardware.
4910 1.16.2.2 christos * Must be called with sc_intr_lock held.
4911 1.16.2.2 christos */
4912 1.16.2.2 christos static void
4913 1.16.2.2 christos audio_pmixer_process(struct audio_softc *sc)
4914 1.16.2.2 christos {
4915 1.16.2.2 christos audio_trackmixer_t *mixer;
4916 1.16.2.2 christos audio_file_t *f;
4917 1.16.2.2 christos int frame_count;
4918 1.16.2.2 christos int sample_count;
4919 1.16.2.2 christos int mixed;
4920 1.16.2.2 christos int i;
4921 1.16.2.2 christos aint2_t *m;
4922 1.16.2.2 christos aint_t *h;
4923 1.16.2.2 christos
4924 1.16.2.2 christos mixer = sc->sc_pmixer;
4925 1.16.2.2 christos
4926 1.16.2.2 christos frame_count = mixer->frames_per_block;
4927 1.16.2.2 christos KASSERT(auring_get_contig_free(&mixer->hwbuf) >= frame_count);
4928 1.16.2.2 christos sample_count = frame_count * mixer->mixfmt.channels;
4929 1.16.2.2 christos
4930 1.16.2.2 christos mixer->mixseq++;
4931 1.16.2.2 christos
4932 1.16.2.2 christos /* Mix all tracks */
4933 1.16.2.2 christos mixed = 0;
4934 1.16.2.2 christos SLIST_FOREACH(f, &sc->sc_files, entry) {
4935 1.16.2.2 christos audio_track_t *track = f->ptrack;
4936 1.16.2.2 christos
4937 1.16.2.2 christos if (track == NULL)
4938 1.16.2.2 christos continue;
4939 1.16.2.2 christos
4940 1.16.2.2 christos if (track->is_pause) {
4941 1.16.2.2 christos TRACET(4, track, "skip; paused");
4942 1.16.2.2 christos continue;
4943 1.16.2.2 christos }
4944 1.16.2.2 christos
4945 1.16.2.2 christos /* Skip if the track is used by process context. */
4946 1.16.2.2 christos if (audio_track_lock_tryenter(track) == false) {
4947 1.16.2.2 christos TRACET(4, track, "skip; in use");
4948 1.16.2.2 christos continue;
4949 1.16.2.2 christos }
4950 1.16.2.2 christos
4951 1.16.2.2 christos /* Emulate mmap'ped track */
4952 1.16.2.2 christos if (track->mmapped) {
4953 1.16.2.2 christos auring_push(&track->usrbuf, track->usrbuf_blksize);
4954 1.16.2.2 christos TRACET(4, track, "mmap; usr=%d/%d/C%d",
4955 1.16.2.2 christos track->usrbuf.head,
4956 1.16.2.2 christos track->usrbuf.used,
4957 1.16.2.2 christos track->usrbuf.capacity);
4958 1.16.2.2 christos }
4959 1.16.2.2 christos
4960 1.16.2.2 christos if (track->outbuf.used < mixer->frames_per_block &&
4961 1.16.2.2 christos track->usrbuf.used > 0) {
4962 1.16.2.2 christos TRACET(4, track, "process");
4963 1.16.2.2 christos audio_track_play(track);
4964 1.16.2.2 christos }
4965 1.16.2.2 christos
4966 1.16.2.2 christos if (track->outbuf.used > 0) {
4967 1.16.2.2 christos mixed = audio_pmixer_mix_track(mixer, track, mixed);
4968 1.16.2.2 christos } else {
4969 1.16.2.2 christos TRACET(4, track, "skip; empty");
4970 1.16.2.2 christos }
4971 1.16.2.2 christos
4972 1.16.2.2 christos audio_track_lock_exit(track);
4973 1.16.2.2 christos }
4974 1.16.2.2 christos
4975 1.16.2.2 christos if (mixed == 0) {
4976 1.16.2.2 christos /* Silence */
4977 1.16.2.2 christos memset(mixer->mixsample, 0,
4978 1.16.2.2 christos frametobyte(&mixer->mixfmt, frame_count));
4979 1.16.2.2 christos } else {
4980 1.16.2.2 christos aint2_t ovf_plus;
4981 1.16.2.2 christos aint2_t ovf_minus;
4982 1.16.2.2 christos int vol;
4983 1.16.2.2 christos
4984 1.16.2.2 christos /* Overflow detection */
4985 1.16.2.2 christos ovf_plus = AINT_T_MAX;
4986 1.16.2.2 christos ovf_minus = AINT_T_MIN;
4987 1.16.2.2 christos m = mixer->mixsample;
4988 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
4989 1.16.2.2 christos aint2_t val;
4990 1.16.2.2 christos
4991 1.16.2.2 christos val = *m++;
4992 1.16.2.2 christos if (val > ovf_plus)
4993 1.16.2.2 christos ovf_plus = val;
4994 1.16.2.2 christos else if (val < ovf_minus)
4995 1.16.2.2 christos ovf_minus = val;
4996 1.16.2.2 christos }
4997 1.16.2.2 christos
4998 1.16.2.2 christos /* Master Volume Auto Adjust */
4999 1.16.2.2 christos vol = mixer->volume;
5000 1.16.2.2 christos if (ovf_plus > (aint2_t)AINT_T_MAX
5001 1.16.2.2 christos || ovf_minus < (aint2_t)AINT_T_MIN) {
5002 1.16.2.2 christos aint2_t ovf;
5003 1.16.2.2 christos int vol2;
5004 1.16.2.2 christos
5005 1.16.2.2 christos /* XXX TODO: Check AINT2_T_MIN ? */
5006 1.16.2.2 christos ovf = ovf_plus;
5007 1.16.2.2 christos if (ovf < -ovf_minus)
5008 1.16.2.2 christos ovf = -ovf_minus;
5009 1.16.2.2 christos
5010 1.16.2.2 christos /* Turn down the volume if overflow occured. */
5011 1.16.2.2 christos vol2 = (int)((aint2_t)AINT_T_MAX * 256 / ovf);
5012 1.16.2.2 christos if (vol2 < vol)
5013 1.16.2.2 christos vol = vol2;
5014 1.16.2.2 christos
5015 1.16.2.2 christos if (vol < mixer->volume) {
5016 1.16.2.2 christos /* Turn down gradually to 128. */
5017 1.16.2.2 christos if (mixer->volume > 128) {
5018 1.16.2.2 christos mixer->volume =
5019 1.16.2.2 christos (mixer->volume * 95) / 100;
5020 1.16.2.2 christos device_printf(sc->sc_dev,
5021 1.16.2.2 christos "auto volume adjust: volume %d\n",
5022 1.16.2.2 christos mixer->volume);
5023 1.16.2.2 christos }
5024 1.16.2.2 christos }
5025 1.16.2.2 christos }
5026 1.16.2.2 christos
5027 1.16.2.2 christos /* Apply Master Volume. */
5028 1.16.2.2 christos if (vol != 256) {
5029 1.16.2.2 christos m = mixer->mixsample;
5030 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5031 1.16.2.2 christos #if defined(AUDIO_USE_C_IMPLEMENTATION_DEFINED_BEHAVIOR) && defined(__GNUC__)
5032 1.16.2.2 christos *m = *m * vol >> 8;
5033 1.16.2.2 christos #else
5034 1.16.2.2 christos *m = *m * vol / 256;
5035 1.16.2.2 christos #endif
5036 1.16.2.2 christos m++;
5037 1.16.2.2 christos }
5038 1.16.2.2 christos }
5039 1.16.2.2 christos }
5040 1.16.2.2 christos
5041 1.16.2.2 christos /*
5042 1.16.2.2 christos * The rest is the hardware part.
5043 1.16.2.2 christos */
5044 1.16.2.2 christos
5045 1.16.2.2 christos if (mixer->codec) {
5046 1.16.2.2 christos h = auring_tailptr_aint(&mixer->codecbuf);
5047 1.16.2.2 christos } else {
5048 1.16.2.2 christos h = auring_tailptr_aint(&mixer->hwbuf);
5049 1.16.2.2 christos }
5050 1.16.2.2 christos
5051 1.16.2.2 christos m = mixer->mixsample;
5052 1.16.2.2 christos if (mixer->swap_endian) {
5053 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5054 1.16.2.2 christos *h++ = bswap16(*m++);
5055 1.16.2.2 christos }
5056 1.16.2.2 christos } else {
5057 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5058 1.16.2.2 christos *h++ = *m++;
5059 1.16.2.2 christos }
5060 1.16.2.2 christos }
5061 1.16.2.2 christos
5062 1.16.2.2 christos /* Hardware driver's codec */
5063 1.16.2.2 christos if (mixer->codec) {
5064 1.16.2.2 christos auring_push(&mixer->codecbuf, frame_count);
5065 1.16.2.2 christos mixer->codecarg.src = auring_headptr(&mixer->codecbuf);
5066 1.16.2.2 christos mixer->codecarg.dst = auring_tailptr(&mixer->hwbuf);
5067 1.16.2.2 christos mixer->codecarg.count = frame_count;
5068 1.16.2.2 christos mixer->codec(&mixer->codecarg);
5069 1.16.2.2 christos auring_take(&mixer->codecbuf, mixer->codecarg.count);
5070 1.16.2.2 christos }
5071 1.16.2.2 christos
5072 1.16.2.2 christos auring_push(&mixer->hwbuf, frame_count);
5073 1.16.2.2 christos
5074 1.16.2.2 christos TRACE(4, "done mixseq=%d hwbuf=%d/%d/%d%s",
5075 1.16.2.2 christos (int)mixer->mixseq,
5076 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity,
5077 1.16.2.2 christos (mixed == 0) ? " silent" : "");
5078 1.16.2.2 christos }
5079 1.16.2.2 christos
5080 1.16.2.2 christos /*
5081 1.16.2.2 christos * Mix one track.
5082 1.16.2.2 christos * 'mixed' specifies the number of tracks mixed so far.
5083 1.16.2.2 christos * It returns the number of tracks mixed. In other words, it returns
5084 1.16.2.2 christos * mixed + 1 if this track is mixed.
5085 1.16.2.2 christos */
5086 1.16.2.2 christos static int
5087 1.16.2.2 christos audio_pmixer_mix_track(audio_trackmixer_t *mixer, audio_track_t *track,
5088 1.16.2.2 christos int mixed)
5089 1.16.2.2 christos {
5090 1.16.2.2 christos int count;
5091 1.16.2.2 christos int sample_count;
5092 1.16.2.2 christos int remain;
5093 1.16.2.2 christos int i;
5094 1.16.2.2 christos const aint_t *s;
5095 1.16.2.2 christos aint2_t *d;
5096 1.16.2.2 christos
5097 1.16.2.2 christos /* XXX TODO: Is this necessary for now? */
5098 1.16.2.2 christos if (mixer->mixseq < track->seq)
5099 1.16.2.2 christos return mixed;
5100 1.16.2.2 christos
5101 1.16.2.2 christos count = auring_get_contig_used(&track->outbuf);
5102 1.16.2.2 christos count = uimin(count, mixer->frames_per_block);
5103 1.16.2.2 christos
5104 1.16.2.2 christos s = auring_headptr_aint(&track->outbuf);
5105 1.16.2.2 christos d = mixer->mixsample;
5106 1.16.2.2 christos
5107 1.16.2.2 christos /*
5108 1.16.2.2 christos * Apply track volume with double-sized integer and perform
5109 1.16.2.2 christos * additive synthesis.
5110 1.16.2.2 christos *
5111 1.16.2.2 christos * XXX If you limit the track volume to 1.0 or less (<= 256),
5112 1.16.2.2 christos * it would be better to do this in the track conversion stage
5113 1.16.2.2 christos * rather than here. However, if you accept the volume to
5114 1.16.2.2 christos * be greater than 1.0 (> 256), it's better to do it here.
5115 1.16.2.2 christos * Because the operation here is done by double-sized integer.
5116 1.16.2.2 christos */
5117 1.16.2.2 christos sample_count = count * mixer->mixfmt.channels;
5118 1.16.2.2 christos if (mixed == 0) {
5119 1.16.2.2 christos /* If this is the first track, assignment can be used. */
5120 1.16.2.2 christos #if defined(AUDIO_SUPPORT_TRACK_VOLUME)
5121 1.16.2.2 christos if (track->volume != 256) {
5122 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5123 1.16.2.2 christos #if defined(AUDIO_USE_C_IMPLEMENTATION_DEFINED_BEHAVIOR) && defined(__GNUC__)
5124 1.16.2.2 christos *d++ = ((aint2_t)*s++) * track->volume >> 8;
5125 1.16.2.2 christos #else
5126 1.16.2.2 christos *d++ = ((aint2_t)*s++) * track->volume / 256;
5127 1.16.2.2 christos #endif
5128 1.16.2.2 christos }
5129 1.16.2.2 christos } else
5130 1.16.2.2 christos #endif
5131 1.16.2.2 christos {
5132 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5133 1.16.2.2 christos *d++ = ((aint2_t)*s++);
5134 1.16.2.2 christos }
5135 1.16.2.2 christos }
5136 1.16.2.2 christos } else {
5137 1.16.2.2 christos /* If this is the second or later, add it. */
5138 1.16.2.2 christos #if defined(AUDIO_SUPPORT_TRACK_VOLUME)
5139 1.16.2.2 christos if (track->volume != 256) {
5140 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5141 1.16.2.2 christos #if defined(AUDIO_USE_C_IMPLEMENTATION_DEFINED_BEHAVIOR) && defined(__GNUC__)
5142 1.16.2.2 christos *d++ += ((aint2_t)*s++) * track->volume >> 8;
5143 1.16.2.2 christos #else
5144 1.16.2.2 christos *d++ += ((aint2_t)*s++) * track->volume / 256;
5145 1.16.2.2 christos #endif
5146 1.16.2.2 christos }
5147 1.16.2.2 christos } else
5148 1.16.2.2 christos #endif
5149 1.16.2.2 christos {
5150 1.16.2.2 christos for (i = 0; i < sample_count; i++) {
5151 1.16.2.2 christos *d++ += ((aint2_t)*s++);
5152 1.16.2.2 christos }
5153 1.16.2.2 christos }
5154 1.16.2.2 christos }
5155 1.16.2.2 christos
5156 1.16.2.2 christos auring_take(&track->outbuf, count);
5157 1.16.2.2 christos /*
5158 1.16.2.2 christos * The counters have to align block even if outbuf is less than
5159 1.16.2.2 christos * one block. XXX Is this still necessary?
5160 1.16.2.2 christos */
5161 1.16.2.2 christos remain = mixer->frames_per_block - count;
5162 1.16.2.2 christos if (__predict_false(remain != 0)) {
5163 1.16.2.2 christos auring_push(&track->outbuf, remain);
5164 1.16.2.2 christos auring_take(&track->outbuf, remain);
5165 1.16.2.2 christos }
5166 1.16.2.2 christos
5167 1.16.2.2 christos /*
5168 1.16.2.2 christos * Update track sequence.
5169 1.16.2.2 christos * mixseq has previous value yet at this point.
5170 1.16.2.2 christos */
5171 1.16.2.2 christos track->seq = mixer->mixseq + 1;
5172 1.16.2.2 christos
5173 1.16.2.2 christos return mixed + 1;
5174 1.16.2.2 christos }
5175 1.16.2.2 christos
5176 1.16.2.2 christos /*
5177 1.16.2.2 christos * Output one block from hwbuf to HW.
5178 1.16.2.2 christos * Must be called with sc_intr_lock held.
5179 1.16.2.2 christos */
5180 1.16.2.2 christos static void
5181 1.16.2.2 christos audio_pmixer_output(struct audio_softc *sc)
5182 1.16.2.2 christos {
5183 1.16.2.2 christos audio_trackmixer_t *mixer;
5184 1.16.2.2 christos audio_params_t params;
5185 1.16.2.2 christos void *start;
5186 1.16.2.2 christos void *end;
5187 1.16.2.2 christos int blksize;
5188 1.16.2.2 christos int error;
5189 1.16.2.2 christos
5190 1.16.2.2 christos mixer = sc->sc_pmixer;
5191 1.16.2.2 christos TRACE(4, "pbusy=%d hwbuf=%d/%d/%d",
5192 1.16.2.2 christos sc->sc_pbusy,
5193 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity);
5194 1.16.2.2 christos KASSERT(mixer->hwbuf.used >= mixer->frames_per_block);
5195 1.16.2.2 christos
5196 1.16.2.2 christos blksize = frametobyte(&mixer->hwbuf.fmt, mixer->frames_per_block);
5197 1.16.2.2 christos
5198 1.16.2.2 christos if (sc->hw_if->trigger_output) {
5199 1.16.2.2 christos /* trigger (at once) */
5200 1.16.2.2 christos if (!sc->sc_pbusy) {
5201 1.16.2.2 christos start = mixer->hwbuf.mem;
5202 1.16.2.2 christos end = (uint8_t *)start + auring_bytelen(&mixer->hwbuf);
5203 1.16.2.2 christos params = format2_to_params(&mixer->hwbuf.fmt);
5204 1.16.2.2 christos
5205 1.16.2.2 christos error = sc->hw_if->trigger_output(sc->hw_hdl,
5206 1.16.2.2 christos start, end, blksize, audio_pintr, sc, ¶ms);
5207 1.16.2.2 christos if (error) {
5208 1.16.2.2 christos device_printf(sc->sc_dev,
5209 1.16.2.2 christos "trigger_output failed with %d", error);
5210 1.16.2.2 christos return;
5211 1.16.2.2 christos }
5212 1.16.2.2 christos }
5213 1.16.2.2 christos } else {
5214 1.16.2.2 christos /* start (everytime) */
5215 1.16.2.2 christos start = auring_headptr(&mixer->hwbuf);
5216 1.16.2.2 christos
5217 1.16.2.2 christos error = sc->hw_if->start_output(sc->hw_hdl,
5218 1.16.2.2 christos start, blksize, audio_pintr, sc);
5219 1.16.2.2 christos if (error) {
5220 1.16.2.2 christos device_printf(sc->sc_dev,
5221 1.16.2.2 christos "start_output failed with %d", error);
5222 1.16.2.2 christos return;
5223 1.16.2.2 christos }
5224 1.16.2.2 christos }
5225 1.16.2.2 christos }
5226 1.16.2.2 christos
5227 1.16.2.2 christos /*
5228 1.16.2.2 christos * This is an interrupt handler for playback.
5229 1.16.2.2 christos * It is called with sc_intr_lock held.
5230 1.16.2.2 christos *
5231 1.16.2.2 christos * It is usually called from hardware interrupt. However, note that
5232 1.16.2.2 christos * for some drivers (e.g. uaudio) it is called from software interrupt.
5233 1.16.2.2 christos */
5234 1.16.2.2 christos static void
5235 1.16.2.2 christos audio_pintr(void *arg)
5236 1.16.2.2 christos {
5237 1.16.2.2 christos struct audio_softc *sc;
5238 1.16.2.2 christos audio_trackmixer_t *mixer;
5239 1.16.2.2 christos
5240 1.16.2.2 christos sc = arg;
5241 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_intr_lock));
5242 1.16.2.2 christos
5243 1.16.2.2 christos if (sc->sc_dying)
5244 1.16.2.2 christos return;
5245 1.16.2.2 christos #if defined(DIAGNOSTIC)
5246 1.16.2.2 christos if (sc->sc_pbusy == false) {
5247 1.16.2.2 christos device_printf(sc->sc_dev, "stray interrupt\n");
5248 1.16.2.2 christos return;
5249 1.16.2.2 christos }
5250 1.16.2.2 christos #endif
5251 1.16.2.2 christos
5252 1.16.2.2 christos mixer = sc->sc_pmixer;
5253 1.16.2.2 christos mixer->hw_complete_counter += mixer->frames_per_block;
5254 1.16.2.2 christos mixer->hwseq++;
5255 1.16.2.2 christos
5256 1.16.2.2 christos auring_take(&mixer->hwbuf, mixer->frames_per_block);
5257 1.16.2.2 christos
5258 1.16.2.2 christos TRACE(4,
5259 1.16.2.2 christos "HW_INT ++hwseq=%" PRIu64 " cmplcnt=%" PRIu64 " hwbuf=%d/%d/%d",
5260 1.16.2.2 christos mixer->hwseq, mixer->hw_complete_counter,
5261 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity);
5262 1.16.2.2 christos
5263 1.16.2.2 christos #if !defined(_KERNEL)
5264 1.16.2.2 christos /* This is a debug code for userland test. */
5265 1.16.2.2 christos return;
5266 1.16.2.2 christos #endif
5267 1.16.2.2 christos
5268 1.16.2.2 christos #if defined(AUDIO_HW_SINGLE_BUFFER)
5269 1.16.2.2 christos /*
5270 1.16.2.2 christos * Create a new block here and output it immediately.
5271 1.16.2.2 christos * It makes a latency lower but needs machine power.
5272 1.16.2.2 christos */
5273 1.16.2.2 christos audio_pmixer_process(sc);
5274 1.16.2.2 christos audio_pmixer_output(sc);
5275 1.16.2.2 christos #else
5276 1.16.2.2 christos /*
5277 1.16.2.2 christos * It is called when block N output is done.
5278 1.16.2.2 christos * Output immediately block N+1 created by the last interrupt.
5279 1.16.2.2 christos * And then create block N+2 for the next interrupt.
5280 1.16.2.2 christos * This method makes playback robust even on slower machines.
5281 1.16.2.2 christos * Instead the latency is increased by one block.
5282 1.16.2.2 christos */
5283 1.16.2.2 christos
5284 1.16.2.2 christos /* At first, output ready block. */
5285 1.16.2.2 christos if (mixer->hwbuf.used >= mixer->frames_per_block) {
5286 1.16.2.2 christos audio_pmixer_output(sc);
5287 1.16.2.2 christos }
5288 1.16.2.2 christos
5289 1.16.2.2 christos bool later = false;
5290 1.16.2.2 christos
5291 1.16.2.2 christos if (mixer->hwbuf.used < mixer->frames_per_block) {
5292 1.16.2.2 christos later = true;
5293 1.16.2.2 christos }
5294 1.16.2.2 christos
5295 1.16.2.2 christos /* Then, process next block. */
5296 1.16.2.2 christos audio_pmixer_process(sc);
5297 1.16.2.2 christos
5298 1.16.2.2 christos if (later) {
5299 1.16.2.2 christos audio_pmixer_output(sc);
5300 1.16.2.2 christos }
5301 1.16.2.2 christos #endif
5302 1.16.2.2 christos
5303 1.16.2.2 christos /*
5304 1.16.2.2 christos * When this interrupt is the real hardware interrupt, disabling
5305 1.16.2.2 christos * preemption here is not necessary. But some drivers (e.g. uaudio)
5306 1.16.2.2 christos * emulate it by software interrupt, so kpreempt_disable is necessary.
5307 1.16.2.2 christos */
5308 1.16.2.2 christos kpreempt_disable();
5309 1.16.2.2 christos softint_schedule(mixer->sih);
5310 1.16.2.2 christos kpreempt_enable();
5311 1.16.2.2 christos }
5312 1.16.2.2 christos
5313 1.16.2.2 christos /*
5314 1.16.2.2 christos * Starts record mixer.
5315 1.16.2.2 christos * Must be called only if sc_rbusy is false.
5316 1.16.2.2 christos * Must be called with sc_lock held.
5317 1.16.2.2 christos * Must not be called from the interrupt context.
5318 1.16.2.2 christos */
5319 1.16.2.2 christos static void
5320 1.16.2.2 christos audio_rmixer_start(struct audio_softc *sc)
5321 1.16.2.2 christos {
5322 1.16.2.2 christos
5323 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
5324 1.16.2.2 christos KASSERT(sc->sc_rbusy == false);
5325 1.16.2.2 christos
5326 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
5327 1.16.2.2 christos
5328 1.16.2.2 christos TRACE(2, "%s", (audiodebug >= 3) ? "begin" : "");
5329 1.16.2.2 christos audio_rmixer_input(sc);
5330 1.16.2.2 christos sc->sc_rbusy = true;
5331 1.16.2.2 christos TRACE(3, "end");
5332 1.16.2.2 christos
5333 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
5334 1.16.2.2 christos }
5335 1.16.2.2 christos
5336 1.16.2.2 christos /*
5337 1.16.2.2 christos * When recording with MD filter:
5338 1.16.2.2 christos *
5339 1.16.2.2 christos * hwbuf [............] NBLKHW blocks ring buffer
5340 1.16.2.2 christos * |
5341 1.16.2.2 christos * | convert from hw format
5342 1.16.2.2 christos * v
5343 1.16.2.2 christos * codecbuf [....] 1 block (ring) buffer
5344 1.16.2.2 christos * | |
5345 1.16.2.2 christos * v v
5346 1.16.2.2 christos * track track ...
5347 1.16.2.2 christos *
5348 1.16.2.2 christos * When recording without MD filter:
5349 1.16.2.2 christos *
5350 1.16.2.2 christos * hwbuf [............] NBLKHW blocks ring buffer
5351 1.16.2.2 christos * | |
5352 1.16.2.2 christos * v v
5353 1.16.2.2 christos * track track ...
5354 1.16.2.2 christos *
5355 1.16.2.2 christos * hwbuf: HW encoding, HW precision, HW ch, HW freq.
5356 1.16.2.2 christos * codecbuf: slinear_NE, internal precision, HW ch, HW freq.
5357 1.16.2.2 christos */
5358 1.16.2.2 christos
5359 1.16.2.2 christos /*
5360 1.16.2.2 christos * Distribute a recorded block to all recording tracks.
5361 1.16.2.2 christos */
5362 1.16.2.2 christos static void
5363 1.16.2.2 christos audio_rmixer_process(struct audio_softc *sc)
5364 1.16.2.2 christos {
5365 1.16.2.2 christos audio_trackmixer_t *mixer;
5366 1.16.2.2 christos audio_ring_t *mixersrc;
5367 1.16.2.2 christos audio_file_t *f;
5368 1.16.2.2 christos aint_t *p;
5369 1.16.2.2 christos int count;
5370 1.16.2.2 christos int bytes;
5371 1.16.2.2 christos int i;
5372 1.16.2.2 christos
5373 1.16.2.2 christos mixer = sc->sc_rmixer;
5374 1.16.2.2 christos
5375 1.16.2.2 christos /*
5376 1.16.2.2 christos * count is the number of frames to be retrieved this time.
5377 1.16.2.2 christos * count should be one block.
5378 1.16.2.2 christos */
5379 1.16.2.2 christos count = auring_get_contig_used(&mixer->hwbuf);
5380 1.16.2.2 christos count = uimin(count, mixer->frames_per_block);
5381 1.16.2.2 christos if (count <= 0) {
5382 1.16.2.2 christos TRACE(4, "count %d: too short", count);
5383 1.16.2.2 christos return;
5384 1.16.2.2 christos }
5385 1.16.2.2 christos bytes = frametobyte(&mixer->track_fmt, count);
5386 1.16.2.2 christos
5387 1.16.2.2 christos /* Hardware driver's codec */
5388 1.16.2.2 christos if (mixer->codec) {
5389 1.16.2.2 christos mixer->codecarg.src = auring_headptr(&mixer->hwbuf);
5390 1.16.2.2 christos mixer->codecarg.dst = auring_tailptr(&mixer->codecbuf);
5391 1.16.2.2 christos mixer->codecarg.count = count;
5392 1.16.2.2 christos mixer->codec(&mixer->codecarg);
5393 1.16.2.2 christos auring_take(&mixer->hwbuf, mixer->codecarg.count);
5394 1.16.2.2 christos auring_push(&mixer->codecbuf, mixer->codecarg.count);
5395 1.16.2.2 christos mixersrc = &mixer->codecbuf;
5396 1.16.2.2 christos } else {
5397 1.16.2.2 christos mixersrc = &mixer->hwbuf;
5398 1.16.2.2 christos }
5399 1.16.2.2 christos
5400 1.16.2.2 christos if (mixer->swap_endian) {
5401 1.16.2.2 christos /* inplace conversion */
5402 1.16.2.2 christos p = auring_headptr_aint(mixersrc);
5403 1.16.2.2 christos for (i = 0; i < count * mixer->track_fmt.channels; i++, p++) {
5404 1.16.2.2 christos *p = bswap16(*p);
5405 1.16.2.2 christos }
5406 1.16.2.2 christos }
5407 1.16.2.2 christos
5408 1.16.2.2 christos /* Distribute to all tracks. */
5409 1.16.2.2 christos SLIST_FOREACH(f, &sc->sc_files, entry) {
5410 1.16.2.2 christos audio_track_t *track = f->rtrack;
5411 1.16.2.2 christos audio_ring_t *input;
5412 1.16.2.2 christos
5413 1.16.2.2 christos if (track == NULL)
5414 1.16.2.2 christos continue;
5415 1.16.2.2 christos
5416 1.16.2.2 christos if (track->is_pause) {
5417 1.16.2.2 christos TRACET(4, track, "skip; paused");
5418 1.16.2.2 christos continue;
5419 1.16.2.2 christos }
5420 1.16.2.2 christos
5421 1.16.2.2 christos if (audio_track_lock_tryenter(track) == false) {
5422 1.16.2.2 christos TRACET(4, track, "skip; in use");
5423 1.16.2.2 christos continue;
5424 1.16.2.2 christos }
5425 1.16.2.2 christos
5426 1.16.2.2 christos /* If the track buffer is full, discard the oldest one? */
5427 1.16.2.2 christos input = track->input;
5428 1.16.2.2 christos if (input->capacity - input->used < mixer->frames_per_block) {
5429 1.16.2.2 christos int drops = mixer->frames_per_block -
5430 1.16.2.2 christos (input->capacity - input->used);
5431 1.16.2.2 christos track->dropframes += drops;
5432 1.16.2.2 christos TRACET(4, track, "drop %d frames: inp=%d/%d/%d",
5433 1.16.2.2 christos drops,
5434 1.16.2.2 christos input->head, input->used, input->capacity);
5435 1.16.2.2 christos auring_take(input, drops);
5436 1.16.2.2 christos }
5437 1.16.2.2 christos KASSERT(input->used % mixer->frames_per_block == 0);
5438 1.16.2.2 christos
5439 1.16.2.2 christos memcpy(auring_tailptr_aint(input),
5440 1.16.2.2 christos auring_headptr_aint(mixersrc),
5441 1.16.2.2 christos bytes);
5442 1.16.2.2 christos auring_push(input, count);
5443 1.16.2.2 christos
5444 1.16.2.2 christos /* XXX sequence counter? */
5445 1.16.2.2 christos
5446 1.16.2.2 christos audio_track_lock_exit(track);
5447 1.16.2.2 christos }
5448 1.16.2.2 christos
5449 1.16.2.2 christos auring_take(mixersrc, count);
5450 1.16.2.2 christos }
5451 1.16.2.2 christos
5452 1.16.2.2 christos /*
5453 1.16.2.2 christos * Input one block from HW to hwbuf.
5454 1.16.2.2 christos * Must be called with sc_intr_lock held.
5455 1.16.2.2 christos */
5456 1.16.2.2 christos static void
5457 1.16.2.2 christos audio_rmixer_input(struct audio_softc *sc)
5458 1.16.2.2 christos {
5459 1.16.2.2 christos audio_trackmixer_t *mixer;
5460 1.16.2.2 christos audio_params_t params;
5461 1.16.2.2 christos void *start;
5462 1.16.2.2 christos void *end;
5463 1.16.2.2 christos int blksize;
5464 1.16.2.2 christos int error;
5465 1.16.2.2 christos
5466 1.16.2.2 christos mixer = sc->sc_rmixer;
5467 1.16.2.2 christos blksize = frametobyte(&mixer->hwbuf.fmt, mixer->frames_per_block);
5468 1.16.2.2 christos
5469 1.16.2.2 christos if (sc->hw_if->trigger_input) {
5470 1.16.2.2 christos /* trigger (at once) */
5471 1.16.2.2 christos if (!sc->sc_rbusy) {
5472 1.16.2.2 christos start = mixer->hwbuf.mem;
5473 1.16.2.2 christos end = (uint8_t *)start + auring_bytelen(&mixer->hwbuf);
5474 1.16.2.2 christos params = format2_to_params(&mixer->hwbuf.fmt);
5475 1.16.2.2 christos
5476 1.16.2.2 christos error = sc->hw_if->trigger_input(sc->hw_hdl,
5477 1.16.2.2 christos start, end, blksize, audio_rintr, sc, ¶ms);
5478 1.16.2.2 christos if (error) {
5479 1.16.2.2 christos device_printf(sc->sc_dev,
5480 1.16.2.2 christos "trigger_input failed with %d", error);
5481 1.16.2.2 christos return;
5482 1.16.2.2 christos }
5483 1.16.2.2 christos }
5484 1.16.2.2 christos } else {
5485 1.16.2.2 christos /* start (everytime) */
5486 1.16.2.2 christos start = auring_tailptr(&mixer->hwbuf);
5487 1.16.2.2 christos
5488 1.16.2.2 christos error = sc->hw_if->start_input(sc->hw_hdl,
5489 1.16.2.2 christos start, blksize, audio_rintr, sc);
5490 1.16.2.2 christos if (error) {
5491 1.16.2.2 christos device_printf(sc->sc_dev,
5492 1.16.2.2 christos "start_input failed with %d", error);
5493 1.16.2.2 christos return;
5494 1.16.2.2 christos }
5495 1.16.2.2 christos }
5496 1.16.2.2 christos }
5497 1.16.2.2 christos
5498 1.16.2.2 christos /*
5499 1.16.2.2 christos * This is an interrupt handler for recording.
5500 1.16.2.2 christos * It is called with sc_intr_lock.
5501 1.16.2.2 christos *
5502 1.16.2.2 christos * It is usually called from hardware interrupt. However, note that
5503 1.16.2.2 christos * for some drivers (e.g. uaudio) it is called from software interrupt.
5504 1.16.2.2 christos */
5505 1.16.2.2 christos static void
5506 1.16.2.2 christos audio_rintr(void *arg)
5507 1.16.2.2 christos {
5508 1.16.2.2 christos struct audio_softc *sc;
5509 1.16.2.2 christos audio_trackmixer_t *mixer;
5510 1.16.2.2 christos
5511 1.16.2.2 christos sc = arg;
5512 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_intr_lock));
5513 1.16.2.2 christos
5514 1.16.2.2 christos if (sc->sc_dying)
5515 1.16.2.2 christos return;
5516 1.16.2.2 christos #if defined(DIAGNOSTIC)
5517 1.16.2.2 christos if (sc->sc_rbusy == false) {
5518 1.16.2.2 christos device_printf(sc->sc_dev, "stray interrupt\n");
5519 1.16.2.2 christos return;
5520 1.16.2.2 christos }
5521 1.16.2.2 christos #endif
5522 1.16.2.2 christos
5523 1.16.2.2 christos mixer = sc->sc_rmixer;
5524 1.16.2.2 christos mixer->hw_complete_counter += mixer->frames_per_block;
5525 1.16.2.2 christos mixer->hwseq++;
5526 1.16.2.2 christos
5527 1.16.2.2 christos auring_push(&mixer->hwbuf, mixer->frames_per_block);
5528 1.16.2.2 christos
5529 1.16.2.2 christos TRACE(4,
5530 1.16.2.2 christos "HW_INT ++hwseq=%" PRIu64 " cmplcnt=%" PRIu64 " hwbuf=%d/%d/%d",
5531 1.16.2.2 christos mixer->hwseq, mixer->hw_complete_counter,
5532 1.16.2.2 christos mixer->hwbuf.head, mixer->hwbuf.used, mixer->hwbuf.capacity);
5533 1.16.2.2 christos
5534 1.16.2.2 christos /* Distrubute recorded block */
5535 1.16.2.2 christos audio_rmixer_process(sc);
5536 1.16.2.2 christos
5537 1.16.2.2 christos /* Request next block */
5538 1.16.2.2 christos audio_rmixer_input(sc);
5539 1.16.2.2 christos
5540 1.16.2.2 christos /*
5541 1.16.2.2 christos * When this interrupt is the real hardware interrupt, disabling
5542 1.16.2.2 christos * preemption here is not necessary. But some drivers (e.g. uaudio)
5543 1.16.2.2 christos * emulate it by software interrupt, so kpreempt_disable is necessary.
5544 1.16.2.2 christos */
5545 1.16.2.2 christos kpreempt_disable();
5546 1.16.2.2 christos softint_schedule(mixer->sih);
5547 1.16.2.2 christos kpreempt_enable();
5548 1.16.2.2 christos }
5549 1.16.2.2 christos
5550 1.16.2.2 christos /*
5551 1.16.2.2 christos * Halts playback mixer.
5552 1.16.2.2 christos * This function also clears related parameters, so call this function
5553 1.16.2.2 christos * instead of calling halt_output directly.
5554 1.16.2.2 christos * Must be called only if sc_pbusy is true.
5555 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
5556 1.16.2.2 christos */
5557 1.16.2.2 christos static int
5558 1.16.2.2 christos audio_pmixer_halt(struct audio_softc *sc)
5559 1.16.2.2 christos {
5560 1.16.2.2 christos int error;
5561 1.16.2.2 christos
5562 1.16.2.2 christos TRACE(2, "");
5563 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
5564 1.16.2.2 christos KASSERT(sc->sc_exlock);
5565 1.16.2.2 christos
5566 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
5567 1.16.2.2 christos error = sc->hw_if->halt_output(sc->hw_hdl);
5568 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
5569 1.16.2.2 christos
5570 1.16.2.2 christos /* Halts anyway even if some error has occurred. */
5571 1.16.2.2 christos sc->sc_pbusy = false;
5572 1.16.2.2 christos sc->sc_pmixer->hwbuf.head = 0;
5573 1.16.2.2 christos sc->sc_pmixer->hwbuf.used = 0;
5574 1.16.2.2 christos sc->sc_pmixer->mixseq = 0;
5575 1.16.2.2 christos sc->sc_pmixer->hwseq = 0;
5576 1.16.2.2 christos
5577 1.16.2.2 christos return error;
5578 1.16.2.2 christos }
5579 1.16.2.2 christos
5580 1.16.2.2 christos /*
5581 1.16.2.2 christos * Halts recording mixer.
5582 1.16.2.2 christos * This function also clears related parameters, so call this function
5583 1.16.2.2 christos * instead of calling halt_input directly.
5584 1.16.2.2 christos * Must be called only if sc_rbusy is true.
5585 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
5586 1.16.2.2 christos */
5587 1.16.2.2 christos static int
5588 1.16.2.2 christos audio_rmixer_halt(struct audio_softc *sc)
5589 1.16.2.2 christos {
5590 1.16.2.2 christos int error;
5591 1.16.2.2 christos
5592 1.16.2.2 christos TRACE(2, "");
5593 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
5594 1.16.2.2 christos KASSERT(sc->sc_exlock);
5595 1.16.2.2 christos
5596 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
5597 1.16.2.2 christos error = sc->hw_if->halt_input(sc->hw_hdl);
5598 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
5599 1.16.2.2 christos
5600 1.16.2.2 christos /* Halts anyway even if some error has occurred. */
5601 1.16.2.2 christos sc->sc_rbusy = false;
5602 1.16.2.2 christos sc->sc_rmixer->hwbuf.head = 0;
5603 1.16.2.2 christos sc->sc_rmixer->hwbuf.used = 0;
5604 1.16.2.2 christos sc->sc_rmixer->mixseq = 0;
5605 1.16.2.2 christos sc->sc_rmixer->hwseq = 0;
5606 1.16.2.2 christos
5607 1.16.2.2 christos return error;
5608 1.16.2.2 christos }
5609 1.16.2.2 christos
5610 1.16.2.2 christos /*
5611 1.16.2.2 christos * Flush this track.
5612 1.16.2.2 christos * Halts all operations, clears all buffers, reset error counters.
5613 1.16.2.2 christos * XXX I'm not sure...
5614 1.16.2.2 christos */
5615 1.16.2.2 christos static void
5616 1.16.2.2 christos audio_track_clear(struct audio_softc *sc, audio_track_t *track)
5617 1.16.2.2 christos {
5618 1.16.2.2 christos
5619 1.16.2.2 christos KASSERT(track);
5620 1.16.2.2 christos TRACET(3, track, "clear");
5621 1.16.2.2 christos
5622 1.16.2.2 christos audio_track_lock_enter(track);
5623 1.16.2.2 christos
5624 1.16.2.2 christos track->usrbuf.used = 0;
5625 1.16.2.2 christos /* Clear all internal parameters. */
5626 1.16.2.2 christos if (track->codec.filter) {
5627 1.16.2.2 christos track->codec.srcbuf.used = 0;
5628 1.16.2.2 christos track->codec.srcbuf.head = 0;
5629 1.16.2.2 christos }
5630 1.16.2.2 christos if (track->chvol.filter) {
5631 1.16.2.2 christos track->chvol.srcbuf.used = 0;
5632 1.16.2.2 christos track->chvol.srcbuf.head = 0;
5633 1.16.2.2 christos }
5634 1.16.2.2 christos if (track->chmix.filter) {
5635 1.16.2.2 christos track->chmix.srcbuf.used = 0;
5636 1.16.2.2 christos track->chmix.srcbuf.head = 0;
5637 1.16.2.2 christos }
5638 1.16.2.2 christos if (track->freq.filter) {
5639 1.16.2.2 christos track->freq.srcbuf.used = 0;
5640 1.16.2.2 christos track->freq.srcbuf.head = 0;
5641 1.16.2.2 christos if (track->freq_step < 65536)
5642 1.16.2.2 christos track->freq_current = 65536;
5643 1.16.2.2 christos else
5644 1.16.2.2 christos track->freq_current = 0;
5645 1.16.2.2 christos memset(track->freq_prev, 0, sizeof(track->freq_prev));
5646 1.16.2.2 christos memset(track->freq_curr, 0, sizeof(track->freq_curr));
5647 1.16.2.2 christos }
5648 1.16.2.2 christos /* Clear buffer, then operation halts naturally. */
5649 1.16.2.2 christos track->outbuf.used = 0;
5650 1.16.2.2 christos
5651 1.16.2.2 christos /* Clear counters. */
5652 1.16.2.2 christos track->dropframes = 0;
5653 1.16.2.2 christos
5654 1.16.2.2 christos audio_track_lock_exit(track);
5655 1.16.2.2 christos }
5656 1.16.2.2 christos
5657 1.16.2.2 christos /*
5658 1.16.2.2 christos * Drain the track.
5659 1.16.2.2 christos * track must be present and for playback.
5660 1.16.2.2 christos * If successful, it returns 0. Otherwise returns errno.
5661 1.16.2.2 christos * Must be called with sc_lock held.
5662 1.16.2.2 christos */
5663 1.16.2.2 christos static int
5664 1.16.2.2 christos audio_track_drain(struct audio_softc *sc, audio_track_t *track)
5665 1.16.2.2 christos {
5666 1.16.2.2 christos audio_trackmixer_t *mixer;
5667 1.16.2.2 christos int done;
5668 1.16.2.2 christos int error;
5669 1.16.2.2 christos
5670 1.16.2.2 christos KASSERT(track);
5671 1.16.2.2 christos TRACET(3, track, "start");
5672 1.16.2.2 christos mixer = track->mixer;
5673 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
5674 1.16.2.2 christos
5675 1.16.2.2 christos /* Ignore them if pause. */
5676 1.16.2.2 christos if (track->is_pause) {
5677 1.16.2.2 christos TRACET(3, track, "pause -> clear");
5678 1.16.2.2 christos track->pstate = AUDIO_STATE_CLEAR;
5679 1.16.2.2 christos }
5680 1.16.2.2 christos /* Terminate early here if there is no data in the track. */
5681 1.16.2.2 christos if (track->pstate == AUDIO_STATE_CLEAR) {
5682 1.16.2.2 christos TRACET(3, track, "no need to drain");
5683 1.16.2.2 christos return 0;
5684 1.16.2.2 christos }
5685 1.16.2.2 christos track->pstate = AUDIO_STATE_DRAINING;
5686 1.16.2.2 christos
5687 1.16.2.2 christos for (;;) {
5688 1.16.2.2 christos /* I want to display it before condition evaluation. */
5689 1.16.2.2 christos TRACET(3, track, "pid=%d.%d trkseq=%d hwseq=%d out=%d/%d/%d",
5690 1.16.2.2 christos (int)curproc->p_pid, (int)curlwp->l_lid,
5691 1.16.2.2 christos (int)track->seq, (int)mixer->hwseq,
5692 1.16.2.2 christos track->outbuf.head, track->outbuf.used,
5693 1.16.2.2 christos track->outbuf.capacity);
5694 1.16.2.2 christos
5695 1.16.2.2 christos /* Condition to terminate */
5696 1.16.2.2 christos audio_track_lock_enter(track);
5697 1.16.2.2 christos done = (track->usrbuf.used < frametobyte(&track->inputfmt, 1) &&
5698 1.16.2.2 christos track->outbuf.used == 0 &&
5699 1.16.2.2 christos track->seq <= mixer->hwseq);
5700 1.16.2.2 christos audio_track_lock_exit(track);
5701 1.16.2.2 christos if (done)
5702 1.16.2.2 christos break;
5703 1.16.2.2 christos
5704 1.16.2.2 christos TRACET(3, track, "sleep");
5705 1.16.2.2 christos error = audio_track_waitio(sc, track);
5706 1.16.2.2 christos if (error)
5707 1.16.2.2 christos return error;
5708 1.16.2.2 christos
5709 1.16.2.2 christos /* XXX call audio_track_play here ? */
5710 1.16.2.2 christos }
5711 1.16.2.2 christos
5712 1.16.2.2 christos track->pstate = AUDIO_STATE_CLEAR;
5713 1.16.2.2 christos TRACET(3, track, "done trk_inp=%d trk_out=%d",
5714 1.16.2.2 christos (int)track->inputcounter, (int)track->outputcounter);
5715 1.16.2.2 christos return 0;
5716 1.16.2.2 christos }
5717 1.16.2.2 christos
5718 1.16.2.2 christos /*
5719 1.16.2.2 christos * This is software interrupt handler for record.
5720 1.16.2.2 christos * It is called from recording hardware interrupt everytime.
5721 1.16.2.2 christos * It does:
5722 1.16.2.2 christos * - Deliver SIGIO for all async processes.
5723 1.16.2.2 christos * - Notify to audio_read() that data has arrived.
5724 1.16.2.2 christos * - selnotify() for select/poll-ing processes.
5725 1.16.2.2 christos */
5726 1.16.2.2 christos /*
5727 1.16.2.2 christos * XXX If a process issues FIOASYNC between hardware interrupt and
5728 1.16.2.2 christos * software interrupt, (stray) SIGIO will be sent to the process
5729 1.16.2.2 christos * despite the fact that it has not receive recorded data yet.
5730 1.16.2.2 christos */
5731 1.16.2.2 christos static void
5732 1.16.2.2 christos audio_softintr_rd(void *cookie)
5733 1.16.2.2 christos {
5734 1.16.2.2 christos struct audio_softc *sc = cookie;
5735 1.16.2.2 christos audio_file_t *f;
5736 1.16.2.2 christos proc_t *p;
5737 1.16.2.2 christos pid_t pid;
5738 1.16.2.2 christos
5739 1.16.2.2 christos mutex_enter(sc->sc_lock);
5740 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
5741 1.16.2.2 christos
5742 1.16.2.2 christos SLIST_FOREACH(f, &sc->sc_files, entry) {
5743 1.16.2.2 christos audio_track_t *track = f->rtrack;
5744 1.16.2.2 christos
5745 1.16.2.2 christos if (track == NULL)
5746 1.16.2.2 christos continue;
5747 1.16.2.2 christos
5748 1.16.2.2 christos TRACET(4, track, "broadcast; inp=%d/%d/%d",
5749 1.16.2.2 christos track->input->head,
5750 1.16.2.2 christos track->input->used,
5751 1.16.2.2 christos track->input->capacity);
5752 1.16.2.2 christos
5753 1.16.2.2 christos pid = f->async_audio;
5754 1.16.2.2 christos if (pid != 0) {
5755 1.16.2.2 christos TRACEF(4, f, "sending SIGIO %d", pid);
5756 1.16.2.2 christos mutex_enter(proc_lock);
5757 1.16.2.2 christos if ((p = proc_find(pid)) != NULL)
5758 1.16.2.2 christos psignal(p, SIGIO);
5759 1.16.2.2 christos mutex_exit(proc_lock);
5760 1.16.2.2 christos }
5761 1.16.2.2 christos }
5762 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
5763 1.16.2.2 christos
5764 1.16.2.2 christos /* Notify that data has arrived. */
5765 1.16.2.2 christos selnotify(&sc->sc_rsel, 0, NOTE_SUBMIT);
5766 1.16.2.2 christos KNOTE(&sc->sc_rsel.sel_klist, 0);
5767 1.16.2.2 christos cv_broadcast(&sc->sc_rmixer->outcv);
5768 1.16.2.2 christos
5769 1.16.2.2 christos mutex_exit(sc->sc_lock);
5770 1.16.2.2 christos }
5771 1.16.2.2 christos
5772 1.16.2.2 christos /*
5773 1.16.2.2 christos * This is software interrupt handler for playback.
5774 1.16.2.2 christos * It is called from playback hardware interrupt everytime.
5775 1.16.2.2 christos * It does:
5776 1.16.2.2 christos * - Deliver SIGIO for all async and writable (used < lowat) processes.
5777 1.16.2.2 christos * - Notify to audio_write() that outbuf block available.
5778 1.16.2.2 christos * - selnotify() for select/poll-ing processes if there are any writable
5779 1.16.2.2 christos * (used < lowat) processes. Checking each descriptor will be done by
5780 1.16.2.2 christos * filt_audiowrite_event().
5781 1.16.2.2 christos */
5782 1.16.2.2 christos static void
5783 1.16.2.2 christos audio_softintr_wr(void *cookie)
5784 1.16.2.2 christos {
5785 1.16.2.2 christos struct audio_softc *sc = cookie;
5786 1.16.2.2 christos audio_file_t *f;
5787 1.16.2.2 christos bool found;
5788 1.16.2.2 christos proc_t *p;
5789 1.16.2.2 christos pid_t pid;
5790 1.16.2.2 christos
5791 1.16.2.2 christos TRACE(4, "called");
5792 1.16.2.2 christos found = false;
5793 1.16.2.2 christos
5794 1.16.2.2 christos mutex_enter(sc->sc_lock);
5795 1.16.2.2 christos mutex_enter(sc->sc_intr_lock);
5796 1.16.2.2 christos
5797 1.16.2.2 christos SLIST_FOREACH(f, &sc->sc_files, entry) {
5798 1.16.2.2 christos audio_track_t *track = f->ptrack;
5799 1.16.2.2 christos
5800 1.16.2.2 christos if (track == NULL)
5801 1.16.2.2 christos continue;
5802 1.16.2.2 christos
5803 1.16.2.2 christos TRACET(4, track, "broadcast; trseq=%d out=%d/%d/%d",
5804 1.16.2.2 christos (int)track->seq,
5805 1.16.2.2 christos track->outbuf.head,
5806 1.16.2.2 christos track->outbuf.used,
5807 1.16.2.2 christos track->outbuf.capacity);
5808 1.16.2.2 christos
5809 1.16.2.2 christos /*
5810 1.16.2.2 christos * Send a signal if the process is async mode and
5811 1.16.2.2 christos * used is lower than lowat.
5812 1.16.2.2 christos */
5813 1.16.2.2 christos if (track->usrbuf.used <= track->usrbuf_usedlow &&
5814 1.16.2.2 christos !track->is_pause) {
5815 1.16.2.2 christos found = true;
5816 1.16.2.2 christos pid = f->async_audio;
5817 1.16.2.2 christos if (pid != 0) {
5818 1.16.2.2 christos TRACEF(4, f, "sending SIGIO %d", pid);
5819 1.16.2.2 christos mutex_enter(proc_lock);
5820 1.16.2.2 christos if ((p = proc_find(pid)) != NULL)
5821 1.16.2.2 christos psignal(p, SIGIO);
5822 1.16.2.2 christos mutex_exit(proc_lock);
5823 1.16.2.2 christos }
5824 1.16.2.2 christos }
5825 1.16.2.2 christos }
5826 1.16.2.2 christos mutex_exit(sc->sc_intr_lock);
5827 1.16.2.2 christos
5828 1.16.2.2 christos /*
5829 1.16.2.2 christos * Notify for select/poll when someone become writable.
5830 1.16.2.2 christos * It needs sc_lock (and not sc_intr_lock).
5831 1.16.2.2 christos */
5832 1.16.2.2 christos if (found) {
5833 1.16.2.2 christos TRACE(4, "selnotify");
5834 1.16.2.2 christos selnotify(&sc->sc_wsel, 0, NOTE_SUBMIT);
5835 1.16.2.2 christos KNOTE(&sc->sc_wsel.sel_klist, 0);
5836 1.16.2.2 christos }
5837 1.16.2.2 christos
5838 1.16.2.2 christos /* Notify to audio_write() that outbuf available. */
5839 1.16.2.2 christos cv_broadcast(&sc->sc_pmixer->outcv);
5840 1.16.2.2 christos
5841 1.16.2.2 christos mutex_exit(sc->sc_lock);
5842 1.16.2.2 christos }
5843 1.16.2.2 christos
5844 1.16.2.2 christos /*
5845 1.16.2.2 christos * Check (and convert) the format *p came from userland.
5846 1.16.2.2 christos * If successful, it writes back the converted format to *p if necessary
5847 1.16.2.2 christos * and returns 0. Otherwise returns errno (*p may change even this case).
5848 1.16.2.2 christos */
5849 1.16.2.2 christos static int
5850 1.16.2.2 christos audio_check_params(audio_format2_t *p)
5851 1.16.2.2 christos {
5852 1.16.2.2 christos
5853 1.16.2.2 christos /* Convert obsoleted AUDIO_ENCODING_PCM* */
5854 1.16.2.2 christos /* XXX Is this conversion right? */
5855 1.16.2.2 christos if (p->encoding == AUDIO_ENCODING_PCM16) {
5856 1.16.2.2 christos if (p->precision == 8)
5857 1.16.2.2 christos p->encoding = AUDIO_ENCODING_ULINEAR;
5858 1.16.2.2 christos else
5859 1.16.2.2 christos p->encoding = AUDIO_ENCODING_SLINEAR;
5860 1.16.2.2 christos } else if (p->encoding == AUDIO_ENCODING_PCM8) {
5861 1.16.2.2 christos if (p->precision == 8)
5862 1.16.2.2 christos p->encoding = AUDIO_ENCODING_ULINEAR;
5863 1.16.2.2 christos else
5864 1.16.2.2 christos return EINVAL;
5865 1.16.2.2 christos }
5866 1.16.2.2 christos
5867 1.16.2.2 christos /*
5868 1.16.2.2 christos * Convert obsoleted AUDIO_ENCODING_[SU]LINEAR without endianness
5869 1.16.2.2 christos * suffix.
5870 1.16.2.2 christos */
5871 1.16.2.2 christos if (p->encoding == AUDIO_ENCODING_SLINEAR)
5872 1.16.2.2 christos p->encoding = AUDIO_ENCODING_SLINEAR_NE;
5873 1.16.2.2 christos if (p->encoding == AUDIO_ENCODING_ULINEAR)
5874 1.16.2.2 christos p->encoding = AUDIO_ENCODING_ULINEAR_NE;
5875 1.16.2.2 christos
5876 1.16.2.2 christos switch (p->encoding) {
5877 1.16.2.2 christos case AUDIO_ENCODING_ULAW:
5878 1.16.2.2 christos case AUDIO_ENCODING_ALAW:
5879 1.16.2.2 christos if (p->precision != 8)
5880 1.16.2.2 christos return EINVAL;
5881 1.16.2.2 christos break;
5882 1.16.2.2 christos case AUDIO_ENCODING_ADPCM:
5883 1.16.2.2 christos if (p->precision != 4 && p->precision != 8)
5884 1.16.2.2 christos return EINVAL;
5885 1.16.2.2 christos break;
5886 1.16.2.2 christos case AUDIO_ENCODING_SLINEAR_LE:
5887 1.16.2.2 christos case AUDIO_ENCODING_SLINEAR_BE:
5888 1.16.2.2 christos case AUDIO_ENCODING_ULINEAR_LE:
5889 1.16.2.2 christos case AUDIO_ENCODING_ULINEAR_BE:
5890 1.16.2.2 christos if (p->precision != 8 && p->precision != 16 &&
5891 1.16.2.2 christos p->precision != 24 && p->precision != 32)
5892 1.16.2.2 christos return EINVAL;
5893 1.16.2.2 christos
5894 1.16.2.2 christos /* 8bit format does not have endianness. */
5895 1.16.2.2 christos if (p->precision == 8) {
5896 1.16.2.2 christos if (p->encoding == AUDIO_ENCODING_SLINEAR_OE)
5897 1.16.2.2 christos p->encoding = AUDIO_ENCODING_SLINEAR_NE;
5898 1.16.2.2 christos if (p->encoding == AUDIO_ENCODING_ULINEAR_OE)
5899 1.16.2.2 christos p->encoding = AUDIO_ENCODING_ULINEAR_NE;
5900 1.16.2.2 christos }
5901 1.16.2.2 christos
5902 1.16.2.2 christos if (p->precision > p->stride)
5903 1.16.2.2 christos return EINVAL;
5904 1.16.2.2 christos break;
5905 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L1_STREAM:
5906 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L1_PACKETS:
5907 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L1_SYSTEM:
5908 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L2_STREAM:
5909 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L2_PACKETS:
5910 1.16.2.2 christos case AUDIO_ENCODING_MPEG_L2_SYSTEM:
5911 1.16.2.2 christos case AUDIO_ENCODING_AC3:
5912 1.16.2.2 christos break;
5913 1.16.2.2 christos default:
5914 1.16.2.2 christos return EINVAL;
5915 1.16.2.2 christos }
5916 1.16.2.2 christos
5917 1.16.2.2 christos /* sanity check # of channels*/
5918 1.16.2.2 christos if (p->channels < 1 || p->channels > AUDIO_MAX_CHANNELS)
5919 1.16.2.2 christos return EINVAL;
5920 1.16.2.2 christos
5921 1.16.2.2 christos return 0;
5922 1.16.2.2 christos }
5923 1.16.2.2 christos
5924 1.16.2.2 christos /*
5925 1.16.2.2 christos * Initialize playback and record mixers.
5926 1.16.2.2 christos * mode (AUMODE_{PLAY,RECORD}) indicates the mixer to be initalized.
5927 1.16.2.2 christos * phwfmt and rhwfmt indicate the hardware format. pfil and rfil indicate
5928 1.16.2.2 christos * the filter registration information. These four must not be NULL.
5929 1.16.2.2 christos * If successful returns 0. Otherwise returns errno.
5930 1.16.2.2 christos * Must be called with sc_lock held.
5931 1.16.2.2 christos * Must not be called if there are any tracks.
5932 1.16.2.2 christos * Caller should check that the initialization succeed by whether
5933 1.16.2.2 christos * sc_[pr]mixer is not NULL.
5934 1.16.2.2 christos */
5935 1.16.2.2 christos static int
5936 1.16.2.2 christos audio_mixers_init(struct audio_softc *sc, int mode,
5937 1.16.2.2 christos const audio_format2_t *phwfmt, const audio_format2_t *rhwfmt,
5938 1.16.2.2 christos const audio_filter_reg_t *pfil, const audio_filter_reg_t *rfil)
5939 1.16.2.2 christos {
5940 1.16.2.2 christos int error;
5941 1.16.2.2 christos
5942 1.16.2.2 christos KASSERT(phwfmt != NULL);
5943 1.16.2.2 christos KASSERT(rhwfmt != NULL);
5944 1.16.2.2 christos KASSERT(pfil != NULL);
5945 1.16.2.2 christos KASSERT(rfil != NULL);
5946 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
5947 1.16.2.2 christos
5948 1.16.2.2 christos if ((mode & AUMODE_PLAY)) {
5949 1.16.2.2 christos if (sc->sc_pmixer) {
5950 1.16.2.2 christos audio_mixer_destroy(sc, sc->sc_pmixer);
5951 1.16.2.2 christos kmem_free(sc->sc_pmixer, sizeof(*sc->sc_pmixer));
5952 1.16.2.2 christos }
5953 1.16.2.2 christos sc->sc_pmixer = kmem_zalloc(sizeof(*sc->sc_pmixer), KM_SLEEP);
5954 1.16.2.2 christos error = audio_mixer_init(sc, AUMODE_PLAY, phwfmt, pfil);
5955 1.16.2.2 christos if (error) {
5956 1.16.2.2 christos aprint_error_dev(sc->sc_dev,
5957 1.16.2.2 christos "configuring playback mode failed\n");
5958 1.16.2.2 christos kmem_free(sc->sc_pmixer, sizeof(*sc->sc_pmixer));
5959 1.16.2.2 christos sc->sc_pmixer = NULL;
5960 1.16.2.2 christos return error;
5961 1.16.2.2 christos }
5962 1.16.2.2 christos }
5963 1.16.2.2 christos if ((mode & AUMODE_RECORD)) {
5964 1.16.2.2 christos if (sc->sc_rmixer) {
5965 1.16.2.2 christos audio_mixer_destroy(sc, sc->sc_rmixer);
5966 1.16.2.2 christos kmem_free(sc->sc_rmixer, sizeof(*sc->sc_rmixer));
5967 1.16.2.2 christos }
5968 1.16.2.2 christos sc->sc_rmixer = kmem_zalloc(sizeof(*sc->sc_rmixer), KM_SLEEP);
5969 1.16.2.2 christos error = audio_mixer_init(sc, AUMODE_RECORD, rhwfmt, rfil);
5970 1.16.2.2 christos if (error) {
5971 1.16.2.2 christos aprint_error_dev(sc->sc_dev,
5972 1.16.2.2 christos "configuring record mode failed\n");
5973 1.16.2.2 christos kmem_free(sc->sc_rmixer, sizeof(*sc->sc_rmixer));
5974 1.16.2.2 christos sc->sc_rmixer = NULL;
5975 1.16.2.2 christos return error;
5976 1.16.2.2 christos }
5977 1.16.2.2 christos }
5978 1.16.2.2 christos
5979 1.16.2.2 christos return 0;
5980 1.16.2.2 christos }
5981 1.16.2.2 christos
5982 1.16.2.2 christos /*
5983 1.16.2.2 christos * Select a frequency.
5984 1.16.2.2 christos * Prioritize 48kHz and 44.1kHz. Otherwise choose the highest one.
5985 1.16.2.2 christos * XXX Better algorithm?
5986 1.16.2.2 christos */
5987 1.16.2.2 christos static int
5988 1.16.2.2 christos audio_select_freq(const struct audio_format *fmt)
5989 1.16.2.2 christos {
5990 1.16.2.2 christos int freq;
5991 1.16.2.2 christos int high;
5992 1.16.2.2 christos int low;
5993 1.16.2.2 christos int j;
5994 1.16.2.2 christos
5995 1.16.2.2 christos if (fmt->frequency_type == 0) {
5996 1.16.2.2 christos low = fmt->frequency[0];
5997 1.16.2.2 christos high = fmt->frequency[1];
5998 1.16.2.2 christos freq = 48000;
5999 1.16.2.2 christos if (low <= freq && freq <= high) {
6000 1.16.2.2 christos return freq;
6001 1.16.2.2 christos }
6002 1.16.2.2 christos freq = 44100;
6003 1.16.2.2 christos if (low <= freq && freq <= high) {
6004 1.16.2.2 christos return freq;
6005 1.16.2.2 christos }
6006 1.16.2.2 christos return high;
6007 1.16.2.2 christos } else {
6008 1.16.2.2 christos for (j = 0; j < fmt->frequency_type; j++) {
6009 1.16.2.2 christos if (fmt->frequency[j] == 48000) {
6010 1.16.2.2 christos return fmt->frequency[j];
6011 1.16.2.2 christos }
6012 1.16.2.2 christos }
6013 1.16.2.2 christos high = 0;
6014 1.16.2.2 christos for (j = 0; j < fmt->frequency_type; j++) {
6015 1.16.2.2 christos if (fmt->frequency[j] == 44100) {
6016 1.16.2.2 christos return fmt->frequency[j];
6017 1.16.2.2 christos }
6018 1.16.2.2 christos if (fmt->frequency[j] > high) {
6019 1.16.2.2 christos high = fmt->frequency[j];
6020 1.16.2.2 christos }
6021 1.16.2.2 christos }
6022 1.16.2.2 christos return high;
6023 1.16.2.2 christos }
6024 1.16.2.2 christos }
6025 1.16.2.2 christos
6026 1.16.2.2 christos /*
6027 1.16.2.2 christos * Probe playback and/or recording format (depending on *modep).
6028 1.16.2.2 christos * *modep is an in-out parameter. It indicates the direction to configure
6029 1.16.2.2 christos * as an argument, and the direction configured is written back as out
6030 1.16.2.2 christos * parameter.
6031 1.16.2.2 christos * If successful, probed hardware format is stored into *phwfmt, *rhwfmt
6032 1.16.2.2 christos * depending on *modep, and return 0. Otherwise it returns errno.
6033 1.16.2.2 christos * Must be called with sc_lock held.
6034 1.16.2.2 christos */
6035 1.16.2.2 christos static int
6036 1.16.2.2 christos audio_hw_probe(struct audio_softc *sc, int is_indep, int *modep,
6037 1.16.2.2 christos audio_format2_t *phwfmt, audio_format2_t *rhwfmt)
6038 1.16.2.2 christos {
6039 1.16.2.2 christos audio_format2_t fmt;
6040 1.16.2.2 christos int mode;
6041 1.16.2.2 christos int error = 0;
6042 1.16.2.2 christos
6043 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6044 1.16.2.2 christos
6045 1.16.2.2 christos mode = *modep;
6046 1.16.2.2 christos KASSERTMSG((mode & (AUMODE_PLAY | AUMODE_RECORD)) != 0,
6047 1.16.2.2 christos "invalid mode = %x", mode);
6048 1.16.2.2 christos
6049 1.16.2.2 christos if (is_indep) {
6050 1.16.2.2 christos int errorp = 0, errorr = 0;
6051 1.16.2.2 christos
6052 1.16.2.2 christos /* On independent devices, probe separately. */
6053 1.16.2.2 christos if ((mode & AUMODE_PLAY) != 0) {
6054 1.16.2.2 christos errorp = audio_hw_probe_fmt(sc, phwfmt, AUMODE_PLAY);
6055 1.16.2.2 christos if (errorp)
6056 1.16.2.2 christos mode &= ~AUMODE_PLAY;
6057 1.16.2.2 christos }
6058 1.16.2.2 christos if ((mode & AUMODE_RECORD) != 0) {
6059 1.16.2.2 christos errorr = audio_hw_probe_fmt(sc, rhwfmt, AUMODE_RECORD);
6060 1.16.2.2 christos if (errorr)
6061 1.16.2.2 christos mode &= ~AUMODE_RECORD;
6062 1.16.2.2 christos }
6063 1.16.2.2 christos
6064 1.16.2.2 christos /* Return error if both play and record probes failed. */
6065 1.16.2.2 christos if (errorp && errorr)
6066 1.16.2.2 christos error = errorp;
6067 1.16.2.2 christos } else {
6068 1.16.2.2 christos /* On non independent devices, probe simultaneously. */
6069 1.16.2.2 christos error = audio_hw_probe_fmt(sc, &fmt, mode);
6070 1.16.2.2 christos if (error) {
6071 1.16.2.2 christos mode = 0;
6072 1.16.2.2 christos } else {
6073 1.16.2.2 christos *phwfmt = fmt;
6074 1.16.2.2 christos *rhwfmt = fmt;
6075 1.16.2.2 christos }
6076 1.16.2.2 christos }
6077 1.16.2.2 christos
6078 1.16.2.2 christos *modep = mode;
6079 1.16.2.2 christos return error;
6080 1.16.2.2 christos }
6081 1.16.2.2 christos
6082 1.16.2.2 christos /*
6083 1.16.2.2 christos * Choose the most preferred hardware format.
6084 1.16.2.2 christos * If successful, it will store the chosen format into *cand and return 0.
6085 1.16.2.2 christos * Otherwise, return errno.
6086 1.16.2.2 christos * Must be called with sc_lock held.
6087 1.16.2.2 christos */
6088 1.16.2.2 christos static int
6089 1.16.2.2 christos audio_hw_probe_fmt(struct audio_softc *sc, audio_format2_t *cand, int mode)
6090 1.16.2.2 christos {
6091 1.16.2.2 christos audio_format_query_t query;
6092 1.16.2.2 christos int cand_score;
6093 1.16.2.2 christos int score;
6094 1.16.2.2 christos int i;
6095 1.16.2.2 christos int error;
6096 1.16.2.2 christos
6097 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6098 1.16.2.2 christos
6099 1.16.2.2 christos /*
6100 1.16.2.2 christos * Score each formats and choose the highest one.
6101 1.16.2.2 christos *
6102 1.16.2.2 christos * +---- priority(0-3)
6103 1.16.2.2 christos * |+--- encoding/precision
6104 1.16.2.2 christos * ||+-- channels
6105 1.16.2.2 christos * score = 0x000000PEC
6106 1.16.2.2 christos */
6107 1.16.2.2 christos
6108 1.16.2.2 christos cand_score = 0;
6109 1.16.2.2 christos for (i = 0; ; i++) {
6110 1.16.2.2 christos memset(&query, 0, sizeof(query));
6111 1.16.2.2 christos query.index = i;
6112 1.16.2.2 christos
6113 1.16.2.2 christos error = sc->hw_if->query_format(sc->hw_hdl, &query);
6114 1.16.2.2 christos if (error == EINVAL)
6115 1.16.2.2 christos break;
6116 1.16.2.2 christos if (error)
6117 1.16.2.2 christos return error;
6118 1.16.2.2 christos
6119 1.16.2.2 christos #if defined(AUDIO_DEBUG)
6120 1.16.2.2 christos DPRINTF(1, "fmt[%d] %c%c pri=%d %s,%d/%dbit,%dch,", i,
6121 1.16.2.2 christos (query.fmt.mode & AUMODE_PLAY) ? 'P' : '-',
6122 1.16.2.2 christos (query.fmt.mode & AUMODE_RECORD) ? 'R' : '-',
6123 1.16.2.2 christos query.fmt.priority,
6124 1.16.2.2 christos audio_encoding_name(query.fmt.encoding),
6125 1.16.2.2 christos query.fmt.validbits,
6126 1.16.2.2 christos query.fmt.precision,
6127 1.16.2.2 christos query.fmt.channels);
6128 1.16.2.2 christos if (query.fmt.frequency_type == 0) {
6129 1.16.2.2 christos DPRINTF(1, "{%d-%d",
6130 1.16.2.2 christos query.fmt.frequency[0], query.fmt.frequency[1]);
6131 1.16.2.2 christos } else {
6132 1.16.2.2 christos int j;
6133 1.16.2.2 christos for (j = 0; j < query.fmt.frequency_type; j++) {
6134 1.16.2.2 christos DPRINTF(1, "%c%d",
6135 1.16.2.2 christos (j == 0) ? '{' : ',',
6136 1.16.2.2 christos query.fmt.frequency[j]);
6137 1.16.2.2 christos }
6138 1.16.2.2 christos }
6139 1.16.2.2 christos DPRINTF(1, "}\n");
6140 1.16.2.2 christos #endif
6141 1.16.2.2 christos
6142 1.16.2.2 christos if ((query.fmt.mode & mode) == 0) {
6143 1.16.2.2 christos DPRINTF(1, "fmt[%d] skip; mode not match %d\n", i,
6144 1.16.2.2 christos mode);
6145 1.16.2.2 christos continue;
6146 1.16.2.2 christos }
6147 1.16.2.2 christos
6148 1.16.2.2 christos if (query.fmt.priority < 0) {
6149 1.16.2.2 christos DPRINTF(1, "fmt[%d] skip; unsupported encoding\n", i);
6150 1.16.2.2 christos continue;
6151 1.16.2.2 christos }
6152 1.16.2.2 christos
6153 1.16.2.2 christos /* Score */
6154 1.16.2.2 christos score = (query.fmt.priority & 3) * 0x100;
6155 1.16.2.2 christos if (query.fmt.encoding == AUDIO_ENCODING_SLINEAR_NE &&
6156 1.16.2.2 christos query.fmt.validbits == AUDIO_INTERNAL_BITS &&
6157 1.16.2.2 christos query.fmt.precision == AUDIO_INTERNAL_BITS) {
6158 1.16.2.2 christos score += 0x20;
6159 1.16.2.2 christos } else if (query.fmt.encoding == AUDIO_ENCODING_SLINEAR_OE &&
6160 1.16.2.2 christos query.fmt.validbits == AUDIO_INTERNAL_BITS &&
6161 1.16.2.2 christos query.fmt.precision == AUDIO_INTERNAL_BITS) {
6162 1.16.2.2 christos score += 0x10;
6163 1.16.2.2 christos }
6164 1.16.2.2 christos score += query.fmt.channels;
6165 1.16.2.2 christos
6166 1.16.2.2 christos if (score < cand_score) {
6167 1.16.2.2 christos DPRINTF(1, "fmt[%d] skip; score 0x%x < 0x%x\n", i,
6168 1.16.2.2 christos score, cand_score);
6169 1.16.2.2 christos continue;
6170 1.16.2.2 christos }
6171 1.16.2.2 christos
6172 1.16.2.2 christos /* Update candidate */
6173 1.16.2.2 christos cand_score = score;
6174 1.16.2.2 christos cand->encoding = query.fmt.encoding;
6175 1.16.2.2 christos cand->precision = query.fmt.validbits;
6176 1.16.2.2 christos cand->stride = query.fmt.precision;
6177 1.16.2.2 christos cand->channels = query.fmt.channels;
6178 1.16.2.2 christos cand->sample_rate = audio_select_freq(&query.fmt);
6179 1.16.2.2 christos DPRINTF(1, "fmt[%d] candidate (score=0x%x)"
6180 1.16.2.2 christos " pri=%d %s,%d/%d,%dch,%dHz\n", i,
6181 1.16.2.2 christos cand_score, query.fmt.priority,
6182 1.16.2.2 christos audio_encoding_name(query.fmt.encoding),
6183 1.16.2.2 christos cand->precision, cand->stride,
6184 1.16.2.2 christos cand->channels, cand->sample_rate);
6185 1.16.2.2 christos }
6186 1.16.2.2 christos
6187 1.16.2.2 christos if (cand_score == 0) {
6188 1.16.2.2 christos DPRINTF(1, "%s no fmt\n", __func__);
6189 1.16.2.2 christos return ENXIO;
6190 1.16.2.2 christos }
6191 1.16.2.2 christos DPRINTF(1, "%s selected: %s,%d/%d,%dch,%dHz\n", __func__,
6192 1.16.2.2 christos audio_encoding_name(cand->encoding),
6193 1.16.2.2 christos cand->precision, cand->stride, cand->channels, cand->sample_rate);
6194 1.16.2.2 christos return 0;
6195 1.16.2.2 christos }
6196 1.16.2.2 christos
6197 1.16.2.2 christos /*
6198 1.16.2.2 christos * Validate fmt with query_format.
6199 1.16.2.2 christos * If fmt is included in the result of query_format, returns 0.
6200 1.16.2.2 christos * Otherwise returns EINVAL.
6201 1.16.2.2 christos * Must be called with sc_lock held.
6202 1.16.2.2 christos */
6203 1.16.2.2 christos static int
6204 1.16.2.2 christos audio_hw_validate_format(struct audio_softc *sc, int mode,
6205 1.16.2.2 christos const audio_format2_t *fmt)
6206 1.16.2.2 christos {
6207 1.16.2.2 christos audio_format_query_t query;
6208 1.16.2.2 christos struct audio_format *q;
6209 1.16.2.2 christos int index;
6210 1.16.2.2 christos int error;
6211 1.16.2.2 christos int j;
6212 1.16.2.2 christos
6213 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6214 1.16.2.2 christos
6215 1.16.2.2 christos /*
6216 1.16.2.2 christos * If query_format is not supported by hardware driver,
6217 1.16.2.2 christos * a rough check instead will be performed.
6218 1.16.2.2 christos * XXX This will gone in the future.
6219 1.16.2.2 christos */
6220 1.16.2.2 christos if (sc->hw_if->query_format == NULL) {
6221 1.16.2.2 christos if (fmt->encoding != AUDIO_ENCODING_SLINEAR_NE)
6222 1.16.2.2 christos return EINVAL;
6223 1.16.2.2 christos if (fmt->precision != AUDIO_INTERNAL_BITS)
6224 1.16.2.2 christos return EINVAL;
6225 1.16.2.2 christos if (fmt->stride != AUDIO_INTERNAL_BITS)
6226 1.16.2.2 christos return EINVAL;
6227 1.16.2.2 christos return 0;
6228 1.16.2.2 christos }
6229 1.16.2.2 christos
6230 1.16.2.2 christos for (index = 0; ; index++) {
6231 1.16.2.2 christos query.index = index;
6232 1.16.2.2 christos error = sc->hw_if->query_format(sc->hw_hdl, &query);
6233 1.16.2.2 christos if (error == EINVAL)
6234 1.16.2.2 christos break;
6235 1.16.2.2 christos if (error)
6236 1.16.2.2 christos return error;
6237 1.16.2.2 christos
6238 1.16.2.2 christos q = &query.fmt;
6239 1.16.2.2 christos /*
6240 1.16.2.2 christos * Note that fmt is audio_format2_t (precision/stride) but
6241 1.16.2.2 christos * q is audio_format_t (validbits/precision).
6242 1.16.2.2 christos */
6243 1.16.2.2 christos if ((q->mode & mode) == 0) {
6244 1.16.2.2 christos continue;
6245 1.16.2.2 christos }
6246 1.16.2.2 christos if (fmt->encoding != q->encoding) {
6247 1.16.2.2 christos continue;
6248 1.16.2.2 christos }
6249 1.16.2.2 christos if (fmt->precision != q->validbits) {
6250 1.16.2.2 christos continue;
6251 1.16.2.2 christos }
6252 1.16.2.2 christos if (fmt->stride != q->precision) {
6253 1.16.2.2 christos continue;
6254 1.16.2.2 christos }
6255 1.16.2.2 christos if (fmt->channels != q->channels) {
6256 1.16.2.2 christos continue;
6257 1.16.2.2 christos }
6258 1.16.2.2 christos if (q->frequency_type == 0) {
6259 1.16.2.2 christos if (fmt->sample_rate < q->frequency[0] ||
6260 1.16.2.2 christos fmt->sample_rate > q->frequency[1]) {
6261 1.16.2.2 christos continue;
6262 1.16.2.2 christos }
6263 1.16.2.2 christos } else {
6264 1.16.2.2 christos for (j = 0; j < q->frequency_type; j++) {
6265 1.16.2.2 christos if (fmt->sample_rate == q->frequency[j])
6266 1.16.2.2 christos break;
6267 1.16.2.2 christos }
6268 1.16.2.2 christos if (j == query.fmt.frequency_type) {
6269 1.16.2.2 christos continue;
6270 1.16.2.2 christos }
6271 1.16.2.2 christos }
6272 1.16.2.2 christos
6273 1.16.2.2 christos /* Matched. */
6274 1.16.2.2 christos return 0;
6275 1.16.2.2 christos }
6276 1.16.2.2 christos
6277 1.16.2.2 christos return EINVAL;
6278 1.16.2.2 christos }
6279 1.16.2.2 christos
6280 1.16.2.2 christos /*
6281 1.16.2.2 christos * Set track mixer's format depending on ai->mode.
6282 1.16.2.2 christos * If AUMODE_PLAY is set in ai->mode, it set up the playback mixer
6283 1.16.2.2 christos * with ai.play.{channels, sample_rate}.
6284 1.16.2.2 christos * If AUMODE_RECORD is set in ai->mode, it set up the recording mixer
6285 1.16.2.2 christos * with ai.record.{channels, sample_rate}.
6286 1.16.2.2 christos * All other fields in ai are ignored.
6287 1.16.2.2 christos * If successful returns 0. Otherwise returns errno.
6288 1.16.2.2 christos * This function does not roll back even if it fails.
6289 1.16.2.2 christos * Must be called with sc_lock held.
6290 1.16.2.2 christos */
6291 1.16.2.2 christos static int
6292 1.16.2.2 christos audio_mixers_set_format(struct audio_softc *sc, const struct audio_info *ai)
6293 1.16.2.2 christos {
6294 1.16.2.2 christos audio_format2_t phwfmt;
6295 1.16.2.2 christos audio_format2_t rhwfmt;
6296 1.16.2.2 christos audio_filter_reg_t pfil;
6297 1.16.2.2 christos audio_filter_reg_t rfil;
6298 1.16.2.2 christos int mode;
6299 1.16.2.2 christos int props;
6300 1.16.2.2 christos int error;
6301 1.16.2.2 christos
6302 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6303 1.16.2.2 christos
6304 1.16.2.2 christos /*
6305 1.16.2.2 christos * Even when setting either one of playback and recording,
6306 1.16.2.2 christos * both must be halted.
6307 1.16.2.2 christos */
6308 1.16.2.2 christos if (sc->sc_popens + sc->sc_ropens > 0)
6309 1.16.2.2 christos return EBUSY;
6310 1.16.2.2 christos
6311 1.16.2.2 christos if (!SPECIFIED(ai->mode) || ai->mode == 0)
6312 1.16.2.2 christos return ENOTTY;
6313 1.16.2.2 christos
6314 1.16.2.2 christos /* Only channels and sample_rate are changeable. */
6315 1.16.2.2 christos mode = ai->mode;
6316 1.16.2.2 christos if ((mode & AUMODE_PLAY)) {
6317 1.16.2.2 christos phwfmt.encoding = ai->play.encoding;
6318 1.16.2.2 christos phwfmt.precision = ai->play.precision;
6319 1.16.2.2 christos phwfmt.stride = ai->play.precision;
6320 1.16.2.2 christos phwfmt.channels = ai->play.channels;
6321 1.16.2.2 christos phwfmt.sample_rate = ai->play.sample_rate;
6322 1.16.2.2 christos }
6323 1.16.2.2 christos if ((mode & AUMODE_RECORD)) {
6324 1.16.2.2 christos rhwfmt.encoding = ai->record.encoding;
6325 1.16.2.2 christos rhwfmt.precision = ai->record.precision;
6326 1.16.2.2 christos rhwfmt.stride = ai->record.precision;
6327 1.16.2.2 christos rhwfmt.channels = ai->record.channels;
6328 1.16.2.2 christos rhwfmt.sample_rate = ai->record.sample_rate;
6329 1.16.2.2 christos }
6330 1.16.2.2 christos
6331 1.16.2.2 christos /* On non-independent devices, use the same format for both. */
6332 1.16.2.2 christos props = audio_get_props(sc);
6333 1.16.2.2 christos if ((props & AUDIO_PROP_INDEPENDENT) == 0) {
6334 1.16.2.2 christos if (mode == AUMODE_RECORD) {
6335 1.16.2.2 christos phwfmt = rhwfmt;
6336 1.16.2.2 christos } else {
6337 1.16.2.2 christos rhwfmt = phwfmt;
6338 1.16.2.2 christos }
6339 1.16.2.2 christos mode = AUMODE_PLAY | AUMODE_RECORD;
6340 1.16.2.2 christos }
6341 1.16.2.2 christos
6342 1.16.2.2 christos /* Then, unset the direction not exist on the hardware. */
6343 1.16.2.2 christos if ((props & AUDIO_PROP_PLAYBACK) == 0)
6344 1.16.2.2 christos mode &= ~AUMODE_PLAY;
6345 1.16.2.2 christos if ((props & AUDIO_PROP_CAPTURE) == 0)
6346 1.16.2.2 christos mode &= ~AUMODE_RECORD;
6347 1.16.2.2 christos
6348 1.16.2.2 christos /* debug */
6349 1.16.2.2 christos if ((mode & AUMODE_PLAY)) {
6350 1.16.2.2 christos TRACE(1, "play=%s/%d/%d/%dch/%dHz",
6351 1.16.2.2 christos audio_encoding_name(phwfmt.encoding),
6352 1.16.2.2 christos phwfmt.precision,
6353 1.16.2.2 christos phwfmt.stride,
6354 1.16.2.2 christos phwfmt.channels,
6355 1.16.2.2 christos phwfmt.sample_rate);
6356 1.16.2.2 christos }
6357 1.16.2.2 christos if ((mode & AUMODE_RECORD)) {
6358 1.16.2.2 christos TRACE(1, "rec =%s/%d/%d/%dch/%dHz",
6359 1.16.2.2 christos audio_encoding_name(rhwfmt.encoding),
6360 1.16.2.2 christos rhwfmt.precision,
6361 1.16.2.2 christos rhwfmt.stride,
6362 1.16.2.2 christos rhwfmt.channels,
6363 1.16.2.2 christos rhwfmt.sample_rate);
6364 1.16.2.2 christos }
6365 1.16.2.2 christos
6366 1.16.2.2 christos /* Check the format */
6367 1.16.2.2 christos if ((mode & AUMODE_PLAY)) {
6368 1.16.2.2 christos if (audio_hw_validate_format(sc, AUMODE_PLAY, &phwfmt)) {
6369 1.16.2.2 christos TRACE(1, "invalid format");
6370 1.16.2.2 christos return EINVAL;
6371 1.16.2.2 christos }
6372 1.16.2.2 christos }
6373 1.16.2.2 christos if ((mode & AUMODE_RECORD)) {
6374 1.16.2.2 christos if (audio_hw_validate_format(sc, AUMODE_RECORD, &rhwfmt)) {
6375 1.16.2.2 christos TRACE(1, "invalid format");
6376 1.16.2.2 christos return EINVAL;
6377 1.16.2.2 christos }
6378 1.16.2.2 christos }
6379 1.16.2.2 christos
6380 1.16.2.2 christos /* Configure the mixers. */
6381 1.16.2.2 christos memset(&pfil, 0, sizeof(pfil));
6382 1.16.2.2 christos memset(&rfil, 0, sizeof(rfil));
6383 1.16.2.2 christos error = audio_hw_set_format(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
6384 1.16.2.2 christos if (error)
6385 1.16.2.2 christos return error;
6386 1.16.2.2 christos
6387 1.16.2.2 christos error = audio_mixers_init(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
6388 1.16.2.2 christos if (error)
6389 1.16.2.2 christos return error;
6390 1.16.2.2 christos
6391 1.16.2.2 christos return 0;
6392 1.16.2.2 christos }
6393 1.16.2.2 christos
6394 1.16.2.2 christos /*
6395 1.16.2.2 christos * Store current mixers format into *ai.
6396 1.16.2.2 christos */
6397 1.16.2.2 christos static void
6398 1.16.2.2 christos audio_mixers_get_format(struct audio_softc *sc, struct audio_info *ai)
6399 1.16.2.2 christos {
6400 1.16.2.2 christos /*
6401 1.16.2.2 christos * There is no stride information in audio_info but it doesn't matter.
6402 1.16.2.2 christos * trackmixer always treats stride and precision as the same.
6403 1.16.2.2 christos */
6404 1.16.2.2 christos AUDIO_INITINFO(ai);
6405 1.16.2.2 christos ai->mode = 0;
6406 1.16.2.2 christos if (sc->sc_pmixer) {
6407 1.16.2.2 christos audio_format2_t *fmt = &sc->sc_pmixer->track_fmt;
6408 1.16.2.2 christos ai->play.encoding = fmt->encoding;
6409 1.16.2.2 christos ai->play.precision = fmt->precision;
6410 1.16.2.2 christos ai->play.channels = fmt->channels;
6411 1.16.2.2 christos ai->play.sample_rate = fmt->sample_rate;
6412 1.16.2.2 christos ai->mode |= AUMODE_PLAY;
6413 1.16.2.2 christos }
6414 1.16.2.2 christos if (sc->sc_rmixer) {
6415 1.16.2.2 christos audio_format2_t *fmt = &sc->sc_rmixer->track_fmt;
6416 1.16.2.2 christos ai->record.encoding = fmt->encoding;
6417 1.16.2.2 christos ai->record.precision = fmt->precision;
6418 1.16.2.2 christos ai->record.channels = fmt->channels;
6419 1.16.2.2 christos ai->record.sample_rate = fmt->sample_rate;
6420 1.16.2.2 christos ai->mode |= AUMODE_RECORD;
6421 1.16.2.2 christos }
6422 1.16.2.2 christos }
6423 1.16.2.2 christos
6424 1.16.2.2 christos /*
6425 1.16.2.2 christos * audio_info details:
6426 1.16.2.2 christos *
6427 1.16.2.2 christos * ai.{play,record}.sample_rate (R/W)
6428 1.16.2.2 christos * ai.{play,record}.encoding (R/W)
6429 1.16.2.2 christos * ai.{play,record}.precision (R/W)
6430 1.16.2.2 christos * ai.{play,record}.channels (R/W)
6431 1.16.2.2 christos * These specify the playback or recording format.
6432 1.16.2.2 christos * Ignore members within an inactive track.
6433 1.16.2.2 christos *
6434 1.16.2.2 christos * ai.mode (R/W)
6435 1.16.2.2 christos * It specifies the playback or recording mode, AUMODE_*.
6436 1.16.2.2 christos * Currently, a mode change operation by ai.mode after opening is
6437 1.16.2.2 christos * prohibited. In addition, AUMODE_PLAY_ALL no longer makes sense.
6438 1.16.2.2 christos * However, it's possible to get or to set for backward compatibility.
6439 1.16.2.2 christos *
6440 1.16.2.2 christos * ai.{hiwat,lowat} (R/W)
6441 1.16.2.2 christos * These specify the high water mark and low water mark for playback
6442 1.16.2.2 christos * track. The unit is block.
6443 1.16.2.2 christos *
6444 1.16.2.2 christos * ai.{play,record}.gain (R/W)
6445 1.16.2.2 christos * It specifies the HW mixer volume in 0-255.
6446 1.16.2.2 christos * It is historical reason that the gain is connected to HW mixer.
6447 1.16.2.2 christos *
6448 1.16.2.2 christos * ai.{play,record}.balance (R/W)
6449 1.16.2.2 christos * It specifies the left-right balance of HW mixer in 0-64.
6450 1.16.2.2 christos * 32 means the center.
6451 1.16.2.2 christos * It is historical reason that the balance is connected to HW mixer.
6452 1.16.2.2 christos *
6453 1.16.2.2 christos * ai.{play,record}.port (R/W)
6454 1.16.2.2 christos * It specifies the input/output port of HW mixer.
6455 1.16.2.2 christos *
6456 1.16.2.2 christos * ai.monitor_gain (R/W)
6457 1.16.2.2 christos * It specifies the recording monitor gain(?) of HW mixer.
6458 1.16.2.2 christos *
6459 1.16.2.2 christos * ai.{play,record}.pause (R/W)
6460 1.16.2.2 christos * Non-zero means the track is paused.
6461 1.16.2.2 christos *
6462 1.16.2.2 christos * ai.play.seek (R/-)
6463 1.16.2.2 christos * It indicates the number of bytes written but not processed.
6464 1.16.2.2 christos * ai.record.seek (R/-)
6465 1.16.2.2 christos * It indicates the number of bytes to be able to read.
6466 1.16.2.2 christos *
6467 1.16.2.2 christos * ai.{play,record}.avail_ports (R/-)
6468 1.16.2.2 christos * Mixer info.
6469 1.16.2.2 christos *
6470 1.16.2.2 christos * ai.{play,record}.buffer_size (R/-)
6471 1.16.2.2 christos * It indicates the buffer size in bytes. Internally it means usrbuf.
6472 1.16.2.2 christos *
6473 1.16.2.2 christos * ai.{play,record}.samples (R/-)
6474 1.16.2.2 christos * It indicates the total number of bytes played or recorded.
6475 1.16.2.2 christos *
6476 1.16.2.2 christos * ai.{play,record}.eof (R/-)
6477 1.16.2.2 christos * It indicates the number of times reached EOF(?).
6478 1.16.2.2 christos *
6479 1.16.2.2 christos * ai.{play,record}.error (R/-)
6480 1.16.2.2 christos * Non-zero indicates overflow/underflow has occured.
6481 1.16.2.2 christos *
6482 1.16.2.2 christos * ai.{play,record}.waiting (R/-)
6483 1.16.2.2 christos * Non-zero indicates that other process waits to open.
6484 1.16.2.2 christos * It will never happen anymore.
6485 1.16.2.2 christos *
6486 1.16.2.2 christos * ai.{play,record}.open (R/-)
6487 1.16.2.2 christos * Non-zero indicates the direction is opened by this process(?).
6488 1.16.2.2 christos * XXX Is this better to indicate that "the device is opened by
6489 1.16.2.2 christos * at least one process"?
6490 1.16.2.2 christos *
6491 1.16.2.2 christos * ai.{play,record}.active (R/-)
6492 1.16.2.2 christos * Non-zero indicates that I/O is currently active.
6493 1.16.2.2 christos *
6494 1.16.2.2 christos * ai.blocksize (R/-)
6495 1.16.2.2 christos * It indicates the block size in bytes.
6496 1.16.2.2 christos * XXX The blocksize of playback and recording may be different.
6497 1.16.2.2 christos */
6498 1.16.2.2 christos
6499 1.16.2.2 christos /*
6500 1.16.2.2 christos * Pause consideration:
6501 1.16.2.2 christos *
6502 1.16.2.2 christos * The introduction of these two behavior makes pause/unpause operation
6503 1.16.2.2 christos * simple.
6504 1.16.2.2 christos * 1. The first read/write access of the first track makes mixer start.
6505 1.16.2.2 christos * 2. A pause of the last track doesn't make mixer stop.
6506 1.16.2.2 christos */
6507 1.16.2.2 christos
6508 1.16.2.2 christos /*
6509 1.16.2.2 christos * Set both track's parameters within a file depending on ai.
6510 1.16.2.2 christos * Update sc_sound_[pr]* if set.
6511 1.16.2.2 christos * Must be called with sc_lock and sc_exlock held.
6512 1.16.2.2 christos */
6513 1.16.2.2 christos static int
6514 1.16.2.2 christos audio_file_setinfo(struct audio_softc *sc, audio_file_t *file,
6515 1.16.2.2 christos const struct audio_info *ai)
6516 1.16.2.2 christos {
6517 1.16.2.2 christos const struct audio_prinfo *pi;
6518 1.16.2.2 christos const struct audio_prinfo *ri;
6519 1.16.2.2 christos audio_track_t *ptrack;
6520 1.16.2.2 christos audio_track_t *rtrack;
6521 1.16.2.2 christos audio_format2_t pfmt;
6522 1.16.2.2 christos audio_format2_t rfmt;
6523 1.16.2.2 christos int pchanges;
6524 1.16.2.2 christos int rchanges;
6525 1.16.2.2 christos int mode;
6526 1.16.2.2 christos struct audio_info saved_ai;
6527 1.16.2.2 christos audio_format2_t saved_pfmt;
6528 1.16.2.2 christos audio_format2_t saved_rfmt;
6529 1.16.2.2 christos int error;
6530 1.16.2.2 christos
6531 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6532 1.16.2.2 christos KASSERT(sc->sc_exlock);
6533 1.16.2.2 christos
6534 1.16.2.2 christos pi = &ai->play;
6535 1.16.2.2 christos ri = &ai->record;
6536 1.16.2.2 christos pchanges = 0;
6537 1.16.2.2 christos rchanges = 0;
6538 1.16.2.2 christos
6539 1.16.2.2 christos ptrack = file->ptrack;
6540 1.16.2.2 christos rtrack = file->rtrack;
6541 1.16.2.2 christos
6542 1.16.2.2 christos #if defined(AUDIO_DEBUG)
6543 1.16.2.2 christos if (audiodebug >= 2) {
6544 1.16.2.2 christos char buf[256];
6545 1.16.2.2 christos char p[64];
6546 1.16.2.2 christos int buflen;
6547 1.16.2.2 christos int plen;
6548 1.16.2.2 christos #define SPRINTF(var, fmt...) do { \
6549 1.16.2.2 christos var##len += snprintf(var + var##len, sizeof(var) - var##len, fmt); \
6550 1.16.2.2 christos } while (0)
6551 1.16.2.2 christos
6552 1.16.2.2 christos buflen = 0;
6553 1.16.2.2 christos plen = 0;
6554 1.16.2.2 christos if (SPECIFIED(pi->encoding))
6555 1.16.2.2 christos SPRINTF(p, "/%s", audio_encoding_name(pi->encoding));
6556 1.16.2.2 christos if (SPECIFIED(pi->precision))
6557 1.16.2.2 christos SPRINTF(p, "/%dbit", pi->precision);
6558 1.16.2.2 christos if (SPECIFIED(pi->channels))
6559 1.16.2.2 christos SPRINTF(p, "/%dch", pi->channels);
6560 1.16.2.2 christos if (SPECIFIED(pi->sample_rate))
6561 1.16.2.2 christos SPRINTF(p, "/%dHz", pi->sample_rate);
6562 1.16.2.2 christos if (plen > 0)
6563 1.16.2.2 christos SPRINTF(buf, ",play.param=%s", p + 1);
6564 1.16.2.2 christos
6565 1.16.2.2 christos plen = 0;
6566 1.16.2.2 christos if (SPECIFIED(ri->encoding))
6567 1.16.2.2 christos SPRINTF(p, "/%s", audio_encoding_name(ri->encoding));
6568 1.16.2.2 christos if (SPECIFIED(ri->precision))
6569 1.16.2.2 christos SPRINTF(p, "/%dbit", ri->precision);
6570 1.16.2.2 christos if (SPECIFIED(ri->channels))
6571 1.16.2.2 christos SPRINTF(p, "/%dch", ri->channels);
6572 1.16.2.2 christos if (SPECIFIED(ri->sample_rate))
6573 1.16.2.2 christos SPRINTF(p, "/%dHz", ri->sample_rate);
6574 1.16.2.2 christos if (plen > 0)
6575 1.16.2.2 christos SPRINTF(buf, ",record.param=%s", p + 1);
6576 1.16.2.2 christos
6577 1.16.2.2 christos if (SPECIFIED(ai->mode))
6578 1.16.2.2 christos SPRINTF(buf, ",mode=%d", ai->mode);
6579 1.16.2.2 christos if (SPECIFIED(ai->hiwat))
6580 1.16.2.2 christos SPRINTF(buf, ",hiwat=%d", ai->hiwat);
6581 1.16.2.2 christos if (SPECIFIED(ai->lowat))
6582 1.16.2.2 christos SPRINTF(buf, ",lowat=%d", ai->lowat);
6583 1.16.2.2 christos if (SPECIFIED(ai->play.gain))
6584 1.16.2.2 christos SPRINTF(buf, ",play.gain=%d", ai->play.gain);
6585 1.16.2.2 christos if (SPECIFIED(ai->record.gain))
6586 1.16.2.2 christos SPRINTF(buf, ",record.gain=%d", ai->record.gain);
6587 1.16.2.2 christos if (SPECIFIED_CH(ai->play.balance))
6588 1.16.2.2 christos SPRINTF(buf, ",play.balance=%d", ai->play.balance);
6589 1.16.2.2 christos if (SPECIFIED_CH(ai->record.balance))
6590 1.16.2.2 christos SPRINTF(buf, ",record.balance=%d", ai->record.balance);
6591 1.16.2.2 christos if (SPECIFIED(ai->play.port))
6592 1.16.2.2 christos SPRINTF(buf, ",play.port=%d", ai->play.port);
6593 1.16.2.2 christos if (SPECIFIED(ai->record.port))
6594 1.16.2.2 christos SPRINTF(buf, ",record.port=%d", ai->record.port);
6595 1.16.2.2 christos if (SPECIFIED(ai->monitor_gain))
6596 1.16.2.2 christos SPRINTF(buf, ",monitor_gain=%d", ai->monitor_gain);
6597 1.16.2.2 christos if (SPECIFIED_CH(ai->play.pause))
6598 1.16.2.2 christos SPRINTF(buf, ",play.pause=%d", ai->play.pause);
6599 1.16.2.2 christos if (SPECIFIED_CH(ai->record.pause))
6600 1.16.2.2 christos SPRINTF(buf, ",record.pause=%d", ai->record.pause);
6601 1.16.2.2 christos
6602 1.16.2.2 christos if (buflen > 0)
6603 1.16.2.2 christos TRACE(2, "specified %s", buf + 1);
6604 1.16.2.2 christos }
6605 1.16.2.2 christos #endif
6606 1.16.2.2 christos
6607 1.16.2.2 christos AUDIO_INITINFO(&saved_ai);
6608 1.16.2.2 christos /* XXX shut up gcc */
6609 1.16.2.2 christos memset(&saved_pfmt, 0, sizeof(saved_pfmt));
6610 1.16.2.2 christos memset(&saved_rfmt, 0, sizeof(saved_rfmt));
6611 1.16.2.2 christos
6612 1.16.2.2 christos /* Set default value and save current parameters */
6613 1.16.2.2 christos if (ptrack) {
6614 1.16.2.2 christos pfmt = ptrack->usrbuf.fmt;
6615 1.16.2.2 christos saved_pfmt = ptrack->usrbuf.fmt;
6616 1.16.2.2 christos saved_ai.play.pause = ptrack->is_pause;
6617 1.16.2.2 christos }
6618 1.16.2.2 christos if (rtrack) {
6619 1.16.2.2 christos rfmt = rtrack->usrbuf.fmt;
6620 1.16.2.2 christos saved_rfmt = rtrack->usrbuf.fmt;
6621 1.16.2.2 christos saved_ai.record.pause = rtrack->is_pause;
6622 1.16.2.2 christos }
6623 1.16.2.2 christos saved_ai.mode = file->mode;
6624 1.16.2.2 christos
6625 1.16.2.2 christos /* Overwrite if specified */
6626 1.16.2.2 christos mode = file->mode;
6627 1.16.2.2 christos if (SPECIFIED(ai->mode)) {
6628 1.16.2.2 christos /*
6629 1.16.2.2 christos * Setting ai->mode no longer does anything because it's
6630 1.16.2.2 christos * prohibited to change playback/recording mode after open
6631 1.16.2.2 christos * and AUMODE_PLAY_ALL is obsoleted. However, it still
6632 1.16.2.2 christos * keeps the state of AUMODE_PLAY_ALL itself for backward
6633 1.16.2.2 christos * compatibility.
6634 1.16.2.2 christos * In the internal, only file->mode has the state of
6635 1.16.2.2 christos * AUMODE_PLAY_ALL flag and track->mode in both track does
6636 1.16.2.2 christos * not have.
6637 1.16.2.2 christos */
6638 1.16.2.2 christos if ((file->mode & AUMODE_PLAY)) {
6639 1.16.2.2 christos mode = (file->mode & (AUMODE_PLAY | AUMODE_RECORD))
6640 1.16.2.2 christos | (ai->mode & AUMODE_PLAY_ALL);
6641 1.16.2.2 christos }
6642 1.16.2.2 christos }
6643 1.16.2.2 christos
6644 1.16.2.2 christos if (ptrack) {
6645 1.16.2.2 christos pchanges = audio_track_setinfo_check(&pfmt, pi);
6646 1.16.2.2 christos if (pchanges == -1) {
6647 1.16.2.2 christos #if defined(AUDIO_DEBUG)
6648 1.16.2.2 christos char fmtbuf[64];
6649 1.16.2.2 christos audio_format2_tostr(fmtbuf, sizeof(fmtbuf), &pfmt);
6650 1.16.2.2 christos TRACET(1, ptrack, "check play.params failed: %s",
6651 1.16.2.2 christos fmtbuf);
6652 1.16.2.2 christos #endif
6653 1.16.2.2 christos return EINVAL;
6654 1.16.2.2 christos }
6655 1.16.2.2 christos if (SPECIFIED(ai->mode))
6656 1.16.2.2 christos pchanges = 1;
6657 1.16.2.2 christos }
6658 1.16.2.2 christos if (rtrack) {
6659 1.16.2.2 christos rchanges = audio_track_setinfo_check(&rfmt, ri);
6660 1.16.2.2 christos if (rchanges == -1) {
6661 1.16.2.2 christos #if defined(AUDIO_DEBUG)
6662 1.16.2.2 christos char fmtbuf[64];
6663 1.16.2.2 christos audio_format2_tostr(fmtbuf, sizeof(fmtbuf), &rfmt);
6664 1.16.2.2 christos TRACET(1, rtrack, "check record.params failed: %s",
6665 1.16.2.2 christos fmtbuf);
6666 1.16.2.2 christos #endif
6667 1.16.2.2 christos return EINVAL;
6668 1.16.2.2 christos }
6669 1.16.2.2 christos if (SPECIFIED(ai->mode))
6670 1.16.2.2 christos rchanges = 1;
6671 1.16.2.2 christos }
6672 1.16.2.2 christos
6673 1.16.2.2 christos /*
6674 1.16.2.2 christos * Even when setting either one of playback and recording,
6675 1.16.2.2 christos * both track must be halted.
6676 1.16.2.2 christos */
6677 1.16.2.2 christos if (pchanges || rchanges) {
6678 1.16.2.2 christos audio_file_clear(sc, file);
6679 1.16.2.2 christos #if defined(AUDIO_DEBUG)
6680 1.16.2.2 christos char fmtbuf[64];
6681 1.16.2.2 christos if (pchanges) {
6682 1.16.2.2 christos audio_format2_tostr(fmtbuf, sizeof(fmtbuf), &pfmt);
6683 1.16.2.2 christos DPRINTF(1, "audio track#%d play mode: %s\n",
6684 1.16.2.2 christos ptrack->id, fmtbuf);
6685 1.16.2.2 christos }
6686 1.16.2.2 christos if (rchanges) {
6687 1.16.2.2 christos audio_format2_tostr(fmtbuf, sizeof(fmtbuf), &rfmt);
6688 1.16.2.2 christos DPRINTF(1, "audio track#%d rec mode: %s\n",
6689 1.16.2.2 christos rtrack->id, fmtbuf);
6690 1.16.2.2 christos }
6691 1.16.2.2 christos #endif
6692 1.16.2.2 christos }
6693 1.16.2.2 christos
6694 1.16.2.2 christos /* Set mixer parameters */
6695 1.16.2.2 christos error = audio_hw_setinfo(sc, ai, &saved_ai);
6696 1.16.2.2 christos if (error)
6697 1.16.2.2 christos goto abort1;
6698 1.16.2.2 christos
6699 1.16.2.2 christos /* Set to track and update sticky parameters */
6700 1.16.2.2 christos error = 0;
6701 1.16.2.2 christos file->mode = mode;
6702 1.16.2.2 christos if (ptrack) {
6703 1.16.2.2 christos if (SPECIFIED_CH(pi->pause)) {
6704 1.16.2.2 christos ptrack->is_pause = pi->pause;
6705 1.16.2.2 christos sc->sc_sound_ppause = pi->pause;
6706 1.16.2.2 christos }
6707 1.16.2.2 christos if (pchanges) {
6708 1.16.2.2 christos audio_track_lock_enter(ptrack);
6709 1.16.2.2 christos error = audio_track_set_format(ptrack, &pfmt);
6710 1.16.2.2 christos audio_track_lock_exit(ptrack);
6711 1.16.2.2 christos if (error) {
6712 1.16.2.2 christos TRACET(1, ptrack, "set play.params failed");
6713 1.16.2.2 christos goto abort2;
6714 1.16.2.2 christos }
6715 1.16.2.2 christos sc->sc_sound_pparams = pfmt;
6716 1.16.2.2 christos }
6717 1.16.2.2 christos /* Change water marks after initializing the buffers. */
6718 1.16.2.2 christos if (SPECIFIED(ai->hiwat) || SPECIFIED(ai->lowat))
6719 1.16.2.2 christos audio_track_setinfo_water(ptrack, ai);
6720 1.16.2.2 christos }
6721 1.16.2.2 christos if (rtrack) {
6722 1.16.2.2 christos if (SPECIFIED_CH(ri->pause)) {
6723 1.16.2.2 christos rtrack->is_pause = ri->pause;
6724 1.16.2.2 christos sc->sc_sound_rpause = ri->pause;
6725 1.16.2.2 christos }
6726 1.16.2.2 christos if (rchanges) {
6727 1.16.2.2 christos audio_track_lock_enter(rtrack);
6728 1.16.2.2 christos error = audio_track_set_format(rtrack, &rfmt);
6729 1.16.2.2 christos audio_track_lock_exit(rtrack);
6730 1.16.2.2 christos if (error) {
6731 1.16.2.2 christos TRACET(1, rtrack, "set record.params failed");
6732 1.16.2.2 christos goto abort3;
6733 1.16.2.2 christos }
6734 1.16.2.2 christos sc->sc_sound_rparams = rfmt;
6735 1.16.2.2 christos }
6736 1.16.2.2 christos }
6737 1.16.2.2 christos
6738 1.16.2.2 christos return 0;
6739 1.16.2.2 christos
6740 1.16.2.2 christos /* Rollback */
6741 1.16.2.2 christos abort3:
6742 1.16.2.2 christos if (error != ENOMEM) {
6743 1.16.2.2 christos rtrack->is_pause = saved_ai.record.pause;
6744 1.16.2.2 christos audio_track_lock_enter(rtrack);
6745 1.16.2.2 christos audio_track_set_format(rtrack, &saved_rfmt);
6746 1.16.2.2 christos audio_track_lock_exit(rtrack);
6747 1.16.2.2 christos }
6748 1.16.2.2 christos abort2:
6749 1.16.2.2 christos if (ptrack && error != ENOMEM) {
6750 1.16.2.2 christos ptrack->is_pause = saved_ai.play.pause;
6751 1.16.2.2 christos audio_track_lock_enter(ptrack);
6752 1.16.2.2 christos audio_track_set_format(ptrack, &saved_pfmt);
6753 1.16.2.2 christos audio_track_lock_exit(ptrack);
6754 1.16.2.2 christos sc->sc_sound_pparams = saved_pfmt;
6755 1.16.2.2 christos sc->sc_sound_ppause = saved_ai.play.pause;
6756 1.16.2.2 christos }
6757 1.16.2.2 christos file->mode = saved_ai.mode;
6758 1.16.2.2 christos abort1:
6759 1.16.2.2 christos audio_hw_setinfo(sc, &saved_ai, NULL);
6760 1.16.2.2 christos
6761 1.16.2.2 christos return error;
6762 1.16.2.2 christos }
6763 1.16.2.2 christos
6764 1.16.2.2 christos /*
6765 1.16.2.2 christos * Write SPECIFIED() parameters within info back to fmt.
6766 1.16.2.2 christos * Return value of 1 indicates that fmt is modified.
6767 1.16.2.2 christos * Return value of 0 indicates that fmt is not modified.
6768 1.16.2.2 christos * Return value of -1 indicates that error EINVAL has occurred.
6769 1.16.2.2 christos */
6770 1.16.2.2 christos static int
6771 1.16.2.2 christos audio_track_setinfo_check(audio_format2_t *fmt, const struct audio_prinfo *info)
6772 1.16.2.2 christos {
6773 1.16.2.2 christos int changes;
6774 1.16.2.2 christos
6775 1.16.2.2 christos changes = 0;
6776 1.16.2.2 christos if (SPECIFIED(info->sample_rate)) {
6777 1.16.2.2 christos if (info->sample_rate < AUDIO_MIN_FREQUENCY)
6778 1.16.2.2 christos return -1;
6779 1.16.2.2 christos if (info->sample_rate > AUDIO_MAX_FREQUENCY)
6780 1.16.2.2 christos return -1;
6781 1.16.2.2 christos fmt->sample_rate = info->sample_rate;
6782 1.16.2.2 christos changes = 1;
6783 1.16.2.2 christos }
6784 1.16.2.2 christos if (SPECIFIED(info->encoding)) {
6785 1.16.2.2 christos fmt->encoding = info->encoding;
6786 1.16.2.2 christos changes = 1;
6787 1.16.2.2 christos }
6788 1.16.2.2 christos if (SPECIFIED(info->precision)) {
6789 1.16.2.2 christos fmt->precision = info->precision;
6790 1.16.2.2 christos /* we don't have API to specify stride */
6791 1.16.2.2 christos fmt->stride = info->precision;
6792 1.16.2.2 christos changes = 1;
6793 1.16.2.2 christos }
6794 1.16.2.2 christos if (SPECIFIED(info->channels)) {
6795 1.16.2.2 christos fmt->channels = info->channels;
6796 1.16.2.2 christos changes = 1;
6797 1.16.2.2 christos }
6798 1.16.2.2 christos
6799 1.16.2.2 christos if (changes) {
6800 1.16.2.2 christos if (audio_check_params(fmt) != 0)
6801 1.16.2.2 christos return -1;
6802 1.16.2.2 christos }
6803 1.16.2.2 christos
6804 1.16.2.2 christos return changes;
6805 1.16.2.2 christos }
6806 1.16.2.2 christos
6807 1.16.2.2 christos /*
6808 1.16.2.2 christos * Change water marks for playback track if specfied.
6809 1.16.2.2 christos */
6810 1.16.2.2 christos static void
6811 1.16.2.2 christos audio_track_setinfo_water(audio_track_t *track, const struct audio_info *ai)
6812 1.16.2.2 christos {
6813 1.16.2.2 christos u_int blks;
6814 1.16.2.2 christos u_int maxblks;
6815 1.16.2.2 christos u_int blksize;
6816 1.16.2.2 christos
6817 1.16.2.2 christos KASSERT(audio_track_is_playback(track));
6818 1.16.2.2 christos
6819 1.16.2.2 christos blksize = track->usrbuf_blksize;
6820 1.16.2.2 christos maxblks = track->usrbuf.capacity / blksize;
6821 1.16.2.2 christos
6822 1.16.2.2 christos if (SPECIFIED(ai->hiwat)) {
6823 1.16.2.2 christos blks = ai->hiwat;
6824 1.16.2.2 christos if (blks > maxblks)
6825 1.16.2.2 christos blks = maxblks;
6826 1.16.2.2 christos if (blks < 2)
6827 1.16.2.2 christos blks = 2;
6828 1.16.2.2 christos track->usrbuf_usedhigh = blks * blksize;
6829 1.16.2.2 christos }
6830 1.16.2.2 christos if (SPECIFIED(ai->lowat)) {
6831 1.16.2.2 christos blks = ai->lowat;
6832 1.16.2.2 christos if (blks > maxblks - 1)
6833 1.16.2.2 christos blks = maxblks - 1;
6834 1.16.2.2 christos track->usrbuf_usedlow = blks * blksize;
6835 1.16.2.2 christos }
6836 1.16.2.2 christos if (SPECIFIED(ai->hiwat) || SPECIFIED(ai->lowat)) {
6837 1.16.2.2 christos if (track->usrbuf_usedlow > track->usrbuf_usedhigh - blksize) {
6838 1.16.2.2 christos track->usrbuf_usedlow = track->usrbuf_usedhigh -
6839 1.16.2.2 christos blksize;
6840 1.16.2.2 christos }
6841 1.16.2.2 christos }
6842 1.16.2.2 christos }
6843 1.16.2.2 christos
6844 1.16.2.2 christos /*
6845 1.16.2.2 christos * Set hardware part of *ai.
6846 1.16.2.2 christos * The parameters handled here are *.port, *.gain, *.balance and monitor_gain.
6847 1.16.2.2 christos * If oldai is specified, previous parameters are stored.
6848 1.16.2.2 christos * This function itself does not roll back if error occurred.
6849 1.16.2.2 christos * Must be called with sc_lock and sc_exlock held.
6850 1.16.2.2 christos */
6851 1.16.2.2 christos static int
6852 1.16.2.2 christos audio_hw_setinfo(struct audio_softc *sc, const struct audio_info *newai,
6853 1.16.2.2 christos struct audio_info *oldai)
6854 1.16.2.2 christos {
6855 1.16.2.2 christos const struct audio_prinfo *newpi;
6856 1.16.2.2 christos const struct audio_prinfo *newri;
6857 1.16.2.2 christos struct audio_prinfo *oldpi;
6858 1.16.2.2 christos struct audio_prinfo *oldri;
6859 1.16.2.2 christos u_int pgain;
6860 1.16.2.2 christos u_int rgain;
6861 1.16.2.2 christos u_char pbalance;
6862 1.16.2.2 christos u_char rbalance;
6863 1.16.2.2 christos int error;
6864 1.16.2.2 christos
6865 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
6866 1.16.2.2 christos KASSERT(sc->sc_exlock);
6867 1.16.2.2 christos
6868 1.16.2.2 christos /* XXX shut up gcc */
6869 1.16.2.2 christos oldpi = NULL;
6870 1.16.2.2 christos oldri = NULL;
6871 1.16.2.2 christos
6872 1.16.2.2 christos newpi = &newai->play;
6873 1.16.2.2 christos newri = &newai->record;
6874 1.16.2.2 christos if (oldai) {
6875 1.16.2.2 christos oldpi = &oldai->play;
6876 1.16.2.2 christos oldri = &oldai->record;
6877 1.16.2.2 christos }
6878 1.16.2.2 christos error = 0;
6879 1.16.2.2 christos
6880 1.16.2.2 christos /*
6881 1.16.2.2 christos * It looks like unnecessary to halt HW mixers to set HW mixers.
6882 1.16.2.2 christos * mixer_ioctl(MIXER_WRITE) also doesn't halt.
6883 1.16.2.2 christos */
6884 1.16.2.2 christos
6885 1.16.2.2 christos if (SPECIFIED(newpi->port)) {
6886 1.16.2.2 christos if (oldai)
6887 1.16.2.2 christos oldpi->port = au_get_port(sc, &sc->sc_outports);
6888 1.16.2.2 christos error = au_set_port(sc, &sc->sc_outports, newpi->port);
6889 1.16.2.2 christos if (error) {
6890 1.16.2.2 christos device_printf(sc->sc_dev,
6891 1.16.2.2 christos "setting play.port=%d failed with %d\n",
6892 1.16.2.2 christos newpi->port, error);
6893 1.16.2.2 christos goto abort;
6894 1.16.2.2 christos }
6895 1.16.2.2 christos }
6896 1.16.2.2 christos if (SPECIFIED(newri->port)) {
6897 1.16.2.2 christos if (oldai)
6898 1.16.2.2 christos oldri->port = au_get_port(sc, &sc->sc_inports);
6899 1.16.2.2 christos error = au_set_port(sc, &sc->sc_inports, newri->port);
6900 1.16.2.2 christos if (error) {
6901 1.16.2.2 christos device_printf(sc->sc_dev,
6902 1.16.2.2 christos "setting record.port=%d failed with %d\n",
6903 1.16.2.2 christos newri->port, error);
6904 1.16.2.2 christos goto abort;
6905 1.16.2.2 christos }
6906 1.16.2.2 christos }
6907 1.16.2.2 christos
6908 1.16.2.2 christos /* Backup play.{gain,balance} */
6909 1.16.2.2 christos if (SPECIFIED(newpi->gain) || SPECIFIED_CH(newpi->balance)) {
6910 1.16.2.2 christos au_get_gain(sc, &sc->sc_outports, &pgain, &pbalance);
6911 1.16.2.2 christos if (oldai) {
6912 1.16.2.2 christos oldpi->gain = pgain;
6913 1.16.2.2 christos oldpi->balance = pbalance;
6914 1.16.2.2 christos }
6915 1.16.2.2 christos }
6916 1.16.2.2 christos /* Backup record.{gain,balance} */
6917 1.16.2.2 christos if (SPECIFIED(newri->gain) || SPECIFIED_CH(newri->balance)) {
6918 1.16.2.2 christos au_get_gain(sc, &sc->sc_inports, &rgain, &rbalance);
6919 1.16.2.2 christos if (oldai) {
6920 1.16.2.2 christos oldri->gain = rgain;
6921 1.16.2.2 christos oldri->balance = rbalance;
6922 1.16.2.2 christos }
6923 1.16.2.2 christos }
6924 1.16.2.2 christos if (SPECIFIED(newpi->gain)) {
6925 1.16.2.2 christos error = au_set_gain(sc, &sc->sc_outports,
6926 1.16.2.2 christos newpi->gain, pbalance);
6927 1.16.2.2 christos if (error) {
6928 1.16.2.2 christos device_printf(sc->sc_dev,
6929 1.16.2.2 christos "setting play.gain=%d failed with %d\n",
6930 1.16.2.2 christos newpi->gain, error);
6931 1.16.2.2 christos goto abort;
6932 1.16.2.2 christos }
6933 1.16.2.2 christos }
6934 1.16.2.2 christos if (SPECIFIED(newri->gain)) {
6935 1.16.2.2 christos error = au_set_gain(sc, &sc->sc_inports,
6936 1.16.2.2 christos newri->gain, rbalance);
6937 1.16.2.2 christos if (error) {
6938 1.16.2.2 christos device_printf(sc->sc_dev,
6939 1.16.2.2 christos "setting record.gain=%d failed with %d\n",
6940 1.16.2.2 christos newri->gain, error);
6941 1.16.2.2 christos goto abort;
6942 1.16.2.2 christos }
6943 1.16.2.2 christos }
6944 1.16.2.2 christos if (SPECIFIED_CH(newpi->balance)) {
6945 1.16.2.2 christos error = au_set_gain(sc, &sc->sc_outports,
6946 1.16.2.2 christos pgain, newpi->balance);
6947 1.16.2.2 christos if (error) {
6948 1.16.2.2 christos device_printf(sc->sc_dev,
6949 1.16.2.2 christos "setting play.balance=%d failed with %d\n",
6950 1.16.2.2 christos newpi->balance, error);
6951 1.16.2.2 christos goto abort;
6952 1.16.2.2 christos }
6953 1.16.2.2 christos }
6954 1.16.2.2 christos if (SPECIFIED_CH(newri->balance)) {
6955 1.16.2.2 christos error = au_set_gain(sc, &sc->sc_inports,
6956 1.16.2.2 christos rgain, newri->balance);
6957 1.16.2.2 christos if (error) {
6958 1.16.2.2 christos device_printf(sc->sc_dev,
6959 1.16.2.2 christos "setting record.balance=%d failed with %d\n",
6960 1.16.2.2 christos newri->balance, error);
6961 1.16.2.2 christos goto abort;
6962 1.16.2.2 christos }
6963 1.16.2.2 christos }
6964 1.16.2.2 christos
6965 1.16.2.2 christos if (SPECIFIED(newai->monitor_gain) && sc->sc_monitor_port != -1) {
6966 1.16.2.2 christos if (oldai)
6967 1.16.2.2 christos oldai->monitor_gain = au_get_monitor_gain(sc);
6968 1.16.2.2 christos error = au_set_monitor_gain(sc, newai->monitor_gain);
6969 1.16.2.2 christos if (error) {
6970 1.16.2.2 christos device_printf(sc->sc_dev,
6971 1.16.2.2 christos "setting monitor_gain=%d failed with %d\n",
6972 1.16.2.2 christos newai->monitor_gain, error);
6973 1.16.2.2 christos goto abort;
6974 1.16.2.2 christos }
6975 1.16.2.2 christos }
6976 1.16.2.2 christos
6977 1.16.2.2 christos /* XXX TODO */
6978 1.16.2.2 christos /* sc->sc_ai = *ai; */
6979 1.16.2.2 christos
6980 1.16.2.2 christos error = 0;
6981 1.16.2.2 christos abort:
6982 1.16.2.2 christos return error;
6983 1.16.2.2 christos }
6984 1.16.2.2 christos
6985 1.16.2.2 christos /*
6986 1.16.2.2 christos * Setup the hardware with mixer format phwfmt, rhwfmt.
6987 1.16.2.2 christos * The arguments have following restrictions:
6988 1.16.2.2 christos * - setmode is the direction you want to set, AUMODE_PLAY or AUMODE_RECORD,
6989 1.16.2.2 christos * or both.
6990 1.16.2.2 christos * - phwfmt and rhwfmt must not be NULL regardless of setmode.
6991 1.16.2.2 christos * - On non-independent devices, phwfmt and rhwfmt must have the same
6992 1.16.2.2 christos * parameters.
6993 1.16.2.2 christos * - pfil and rfil must be zero-filled.
6994 1.16.2.2 christos * If successful,
6995 1.16.2.2 christos * - phwfmt, rhwfmt will be overwritten by hardware format.
6996 1.16.2.2 christos * - pfil, rfil will be filled with filter information specified by the
6997 1.16.2.2 christos * hardware driver.
6998 1.16.2.2 christos * and then returns 0. Otherwise returns errno.
6999 1.16.2.2 christos * Must be called with sc_lock held.
7000 1.16.2.2 christos */
7001 1.16.2.2 christos static int
7002 1.16.2.2 christos audio_hw_set_format(struct audio_softc *sc, int setmode,
7003 1.16.2.2 christos audio_format2_t *phwfmt, audio_format2_t *rhwfmt,
7004 1.16.2.2 christos audio_filter_reg_t *pfil, audio_filter_reg_t *rfil)
7005 1.16.2.2 christos {
7006 1.16.2.2 christos audio_params_t pp, rp;
7007 1.16.2.2 christos int error;
7008 1.16.2.2 christos
7009 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7010 1.16.2.2 christos KASSERT(phwfmt != NULL);
7011 1.16.2.2 christos KASSERT(rhwfmt != NULL);
7012 1.16.2.2 christos
7013 1.16.2.2 christos pp = format2_to_params(phwfmt);
7014 1.16.2.2 christos rp = format2_to_params(rhwfmt);
7015 1.16.2.2 christos
7016 1.16.2.2 christos error = sc->hw_if->set_format(sc->hw_hdl, setmode,
7017 1.16.2.2 christos &pp, &rp, pfil, rfil);
7018 1.16.2.2 christos if (error) {
7019 1.16.2.2 christos device_printf(sc->sc_dev,
7020 1.16.2.2 christos "set_format failed with %d\n", error);
7021 1.16.2.2 christos return error;
7022 1.16.2.2 christos }
7023 1.16.2.2 christos
7024 1.16.2.2 christos if (sc->hw_if->commit_settings) {
7025 1.16.2.2 christos error = sc->hw_if->commit_settings(sc->hw_hdl);
7026 1.16.2.2 christos if (error) {
7027 1.16.2.2 christos device_printf(sc->sc_dev,
7028 1.16.2.2 christos "commit_settings failed with %d\n", error);
7029 1.16.2.2 christos return error;
7030 1.16.2.2 christos }
7031 1.16.2.2 christos }
7032 1.16.2.2 christos
7033 1.16.2.2 christos return 0;
7034 1.16.2.2 christos }
7035 1.16.2.2 christos
7036 1.16.2.2 christos /*
7037 1.16.2.2 christos * Fill audio_info structure. If need_mixerinfo is true, it will also
7038 1.16.2.2 christos * fill the hardware mixer information.
7039 1.16.2.2 christos * Must be called with sc_lock held.
7040 1.16.2.2 christos * Must be called with sc_exlock held, in addition, if need_mixerinfo is
7041 1.16.2.2 christos * true.
7042 1.16.2.2 christos */
7043 1.16.2.2 christos static int
7044 1.16.2.2 christos audiogetinfo(struct audio_softc *sc, struct audio_info *ai, int need_mixerinfo,
7045 1.16.2.2 christos audio_file_t *file)
7046 1.16.2.2 christos {
7047 1.16.2.2 christos struct audio_prinfo *ri, *pi;
7048 1.16.2.2 christos audio_track_t *track;
7049 1.16.2.2 christos audio_track_t *ptrack;
7050 1.16.2.2 christos audio_track_t *rtrack;
7051 1.16.2.2 christos int gain;
7052 1.16.2.2 christos
7053 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7054 1.16.2.2 christos
7055 1.16.2.2 christos ri = &ai->record;
7056 1.16.2.2 christos pi = &ai->play;
7057 1.16.2.2 christos ptrack = file->ptrack;
7058 1.16.2.2 christos rtrack = file->rtrack;
7059 1.16.2.2 christos
7060 1.16.2.2 christos memset(ai, 0, sizeof(*ai));
7061 1.16.2.2 christos
7062 1.16.2.2 christos if (ptrack) {
7063 1.16.2.2 christos pi->sample_rate = ptrack->usrbuf.fmt.sample_rate;
7064 1.16.2.2 christos pi->channels = ptrack->usrbuf.fmt.channels;
7065 1.16.2.2 christos pi->precision = ptrack->usrbuf.fmt.precision;
7066 1.16.2.2 christos pi->encoding = ptrack->usrbuf.fmt.encoding;
7067 1.16.2.2 christos } else {
7068 1.16.2.2 christos /* Set default parameters if the track is not available. */
7069 1.16.2.2 christos if (ISDEVAUDIO(file->dev)) {
7070 1.16.2.2 christos pi->sample_rate = audio_default.sample_rate;
7071 1.16.2.2 christos pi->channels = audio_default.channels;
7072 1.16.2.2 christos pi->precision = audio_default.precision;
7073 1.16.2.2 christos pi->encoding = audio_default.encoding;
7074 1.16.2.2 christos } else {
7075 1.16.2.2 christos pi->sample_rate = sc->sc_sound_pparams.sample_rate;
7076 1.16.2.2 christos pi->channels = sc->sc_sound_pparams.channels;
7077 1.16.2.2 christos pi->precision = sc->sc_sound_pparams.precision;
7078 1.16.2.2 christos pi->encoding = sc->sc_sound_pparams.encoding;
7079 1.16.2.2 christos }
7080 1.16.2.2 christos }
7081 1.16.2.2 christos if (rtrack) {
7082 1.16.2.2 christos ri->sample_rate = rtrack->usrbuf.fmt.sample_rate;
7083 1.16.2.2 christos ri->channels = rtrack->usrbuf.fmt.channels;
7084 1.16.2.2 christos ri->precision = rtrack->usrbuf.fmt.precision;
7085 1.16.2.2 christos ri->encoding = rtrack->usrbuf.fmt.encoding;
7086 1.16.2.2 christos } else {
7087 1.16.2.2 christos /* Set default parameters if the track is not available. */
7088 1.16.2.2 christos if (ISDEVAUDIO(file->dev)) {
7089 1.16.2.2 christos ri->sample_rate = audio_default.sample_rate;
7090 1.16.2.2 christos ri->channels = audio_default.channels;
7091 1.16.2.2 christos ri->precision = audio_default.precision;
7092 1.16.2.2 christos ri->encoding = audio_default.encoding;
7093 1.16.2.2 christos } else {
7094 1.16.2.2 christos ri->sample_rate = sc->sc_sound_rparams.sample_rate;
7095 1.16.2.2 christos ri->channels = sc->sc_sound_rparams.channels;
7096 1.16.2.2 christos ri->precision = sc->sc_sound_rparams.precision;
7097 1.16.2.2 christos ri->encoding = sc->sc_sound_rparams.encoding;
7098 1.16.2.2 christos }
7099 1.16.2.2 christos }
7100 1.16.2.2 christos
7101 1.16.2.2 christos if (ptrack) {
7102 1.16.2.2 christos pi->seek = ptrack->usrbuf.used;
7103 1.16.2.2 christos pi->samples = ptrack->usrbuf_stamp;
7104 1.16.2.2 christos pi->eof = ptrack->eofcounter;
7105 1.16.2.2 christos pi->pause = ptrack->is_pause;
7106 1.16.2.2 christos pi->error = (ptrack->dropframes != 0) ? 1 : 0;
7107 1.16.2.2 christos pi->waiting = 0; /* open never hangs */
7108 1.16.2.2 christos pi->open = 1;
7109 1.16.2.2 christos pi->active = sc->sc_pbusy;
7110 1.16.2.2 christos pi->buffer_size = ptrack->usrbuf.capacity;
7111 1.16.2.2 christos }
7112 1.16.2.2 christos if (rtrack) {
7113 1.16.2.2 christos ri->seek = rtrack->usrbuf.used;
7114 1.16.2.2 christos ri->samples = rtrack->usrbuf_stamp;
7115 1.16.2.2 christos ri->eof = 0;
7116 1.16.2.2 christos ri->pause = rtrack->is_pause;
7117 1.16.2.2 christos ri->error = (rtrack->dropframes != 0) ? 1 : 0;
7118 1.16.2.2 christos ri->waiting = 0; /* open never hangs */
7119 1.16.2.2 christos ri->open = 1;
7120 1.16.2.2 christos ri->active = sc->sc_rbusy;
7121 1.16.2.2 christos ri->buffer_size = rtrack->usrbuf.capacity;
7122 1.16.2.2 christos }
7123 1.16.2.2 christos
7124 1.16.2.2 christos /*
7125 1.16.2.2 christos * XXX There may be different number of channels between playback
7126 1.16.2.2 christos * and recording, so that blocksize also may be different.
7127 1.16.2.2 christos * But struct audio_info has an united blocksize...
7128 1.16.2.2 christos * Here, I use play info precedencely if ptrack is available,
7129 1.16.2.2 christos * otherwise record info.
7130 1.16.2.2 christos *
7131 1.16.2.2 christos * XXX hiwat/lowat is a playback-only parameter. What should I
7132 1.16.2.2 christos * return for a record-only descriptor?
7133 1.16.2.2 christos */
7134 1.16.2.2 christos track = ptrack ? ptrack : rtrack;
7135 1.16.2.2 christos if (track) {
7136 1.16.2.2 christos ai->blocksize = track->usrbuf_blksize;
7137 1.16.2.2 christos ai->hiwat = track->usrbuf_usedhigh / track->usrbuf_blksize;
7138 1.16.2.2 christos ai->lowat = track->usrbuf_usedlow / track->usrbuf_blksize;
7139 1.16.2.2 christos }
7140 1.16.2.2 christos ai->mode = file->mode;
7141 1.16.2.2 christos
7142 1.16.2.2 christos if (need_mixerinfo) {
7143 1.16.2.2 christos KASSERT(sc->sc_exlock);
7144 1.16.2.2 christos
7145 1.16.2.2 christos pi->port = au_get_port(sc, &sc->sc_outports);
7146 1.16.2.2 christos ri->port = au_get_port(sc, &sc->sc_inports);
7147 1.16.2.2 christos
7148 1.16.2.2 christos pi->avail_ports = sc->sc_outports.allports;
7149 1.16.2.2 christos ri->avail_ports = sc->sc_inports.allports;
7150 1.16.2.2 christos
7151 1.16.2.2 christos au_get_gain(sc, &sc->sc_outports, &pi->gain, &pi->balance);
7152 1.16.2.2 christos au_get_gain(sc, &sc->sc_inports, &ri->gain, &ri->balance);
7153 1.16.2.2 christos
7154 1.16.2.2 christos if (sc->sc_monitor_port != -1) {
7155 1.16.2.2 christos gain = au_get_monitor_gain(sc);
7156 1.16.2.2 christos if (gain != -1)
7157 1.16.2.2 christos ai->monitor_gain = gain;
7158 1.16.2.2 christos }
7159 1.16.2.2 christos }
7160 1.16.2.2 christos
7161 1.16.2.2 christos return 0;
7162 1.16.2.2 christos }
7163 1.16.2.2 christos
7164 1.16.2.2 christos /*
7165 1.16.2.2 christos * Must be called with sc_lock held.
7166 1.16.2.2 christos */
7167 1.16.2.2 christos static int
7168 1.16.2.2 christos audio_get_props(struct audio_softc *sc)
7169 1.16.2.2 christos {
7170 1.16.2.2 christos const struct audio_hw_if *hw;
7171 1.16.2.2 christos int props;
7172 1.16.2.2 christos
7173 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7174 1.16.2.2 christos
7175 1.16.2.2 christos hw = sc->hw_if;
7176 1.16.2.2 christos props = hw->get_props(sc->hw_hdl);
7177 1.16.2.2 christos
7178 1.16.2.2 christos /* MMAP is now supported by upper layer. */
7179 1.16.2.2 christos props |= AUDIO_PROP_MMAP;
7180 1.16.2.2 christos
7181 1.16.2.2 christos return props;
7182 1.16.2.2 christos }
7183 1.16.2.2 christos
7184 1.16.2.2 christos /*
7185 1.16.2.2 christos * Return true if playback is configured.
7186 1.16.2.2 christos * This function can be used after audioattach.
7187 1.16.2.2 christos */
7188 1.16.2.2 christos static bool
7189 1.16.2.2 christos audio_can_playback(struct audio_softc *sc)
7190 1.16.2.2 christos {
7191 1.16.2.2 christos
7192 1.16.2.2 christos return (sc->sc_pmixer != NULL);
7193 1.16.2.2 christos }
7194 1.16.2.2 christos
7195 1.16.2.2 christos /*
7196 1.16.2.2 christos * Return true if recording is configured.
7197 1.16.2.2 christos * This function can be used after audioattach.
7198 1.16.2.2 christos */
7199 1.16.2.2 christos static bool
7200 1.16.2.2 christos audio_can_capture(struct audio_softc *sc)
7201 1.16.2.2 christos {
7202 1.16.2.2 christos
7203 1.16.2.2 christos return (sc->sc_rmixer != NULL);
7204 1.16.2.2 christos }
7205 1.16.2.2 christos
7206 1.16.2.2 christos /*
7207 1.16.2.2 christos * Get the afp->index'th item from the valid one of format[].
7208 1.16.2.2 christos * If found, stores it to afp->fmt and returns 0. Otherwise return EINVAL.
7209 1.16.2.2 christos *
7210 1.16.2.2 christos * This is common routines for query_format.
7211 1.16.2.2 christos * If your hardware driver has struct audio_format[], the simplest case
7212 1.16.2.2 christos * you can write your query_format interface as follows:
7213 1.16.2.2 christos *
7214 1.16.2.2 christos * struct audio_format foo_format[] = { ... };
7215 1.16.2.2 christos *
7216 1.16.2.2 christos * int
7217 1.16.2.2 christos * foo_query_format(void *hdl, audio_format_query_t *afp)
7218 1.16.2.2 christos * {
7219 1.16.2.2 christos * return audio_query_format(foo_format, __arraycount(foo_format), afp);
7220 1.16.2.2 christos * }
7221 1.16.2.2 christos */
7222 1.16.2.2 christos int
7223 1.16.2.2 christos audio_query_format(const struct audio_format *format, int nformats,
7224 1.16.2.2 christos audio_format_query_t *afp)
7225 1.16.2.2 christos {
7226 1.16.2.2 christos const struct audio_format *f;
7227 1.16.2.2 christos int idx;
7228 1.16.2.2 christos int i;
7229 1.16.2.2 christos
7230 1.16.2.2 christos idx = 0;
7231 1.16.2.2 christos for (i = 0; i < nformats; i++) {
7232 1.16.2.2 christos f = &format[i];
7233 1.16.2.2 christos if (!AUFMT_IS_VALID(f))
7234 1.16.2.2 christos continue;
7235 1.16.2.2 christos if (afp->index == idx) {
7236 1.16.2.2 christos afp->fmt = *f;
7237 1.16.2.2 christos return 0;
7238 1.16.2.2 christos }
7239 1.16.2.2 christos idx++;
7240 1.16.2.2 christos }
7241 1.16.2.2 christos return EINVAL;
7242 1.16.2.2 christos }
7243 1.16.2.2 christos
7244 1.16.2.2 christos /*
7245 1.16.2.2 christos * This function is provided for the hardware driver's set_format() to
7246 1.16.2.2 christos * find index matches with 'param' from array of audio_format_t 'formats'.
7247 1.16.2.2 christos * 'mode' is either of AUMODE_PLAY or AUMODE_RECORD.
7248 1.16.2.2 christos * It returns the matched index and never fails. Because param passed to
7249 1.16.2.2 christos * set_format() is selected from query_format().
7250 1.16.2.2 christos * This function will be an alternative to auconv_set_converter() to
7251 1.16.2.2 christos * find index.
7252 1.16.2.2 christos */
7253 1.16.2.2 christos int
7254 1.16.2.2 christos audio_indexof_format(const struct audio_format *formats, int nformats,
7255 1.16.2.2 christos int mode, const audio_params_t *param)
7256 1.16.2.2 christos {
7257 1.16.2.2 christos const struct audio_format *f;
7258 1.16.2.2 christos int index;
7259 1.16.2.2 christos int j;
7260 1.16.2.2 christos
7261 1.16.2.2 christos for (index = 0; index < nformats; index++) {
7262 1.16.2.2 christos f = &formats[index];
7263 1.16.2.2 christos
7264 1.16.2.2 christos if (!AUFMT_IS_VALID(f))
7265 1.16.2.2 christos continue;
7266 1.16.2.2 christos if ((f->mode & mode) == 0)
7267 1.16.2.2 christos continue;
7268 1.16.2.2 christos if (f->encoding != param->encoding)
7269 1.16.2.2 christos continue;
7270 1.16.2.2 christos if (f->validbits != param->precision)
7271 1.16.2.2 christos continue;
7272 1.16.2.2 christos if (f->channels != param->channels)
7273 1.16.2.2 christos continue;
7274 1.16.2.2 christos
7275 1.16.2.2 christos if (f->frequency_type == 0) {
7276 1.16.2.2 christos if (param->sample_rate < f->frequency[0] ||
7277 1.16.2.2 christos param->sample_rate > f->frequency[1])
7278 1.16.2.2 christos continue;
7279 1.16.2.2 christos } else {
7280 1.16.2.2 christos for (j = 0; j < f->frequency_type; j++) {
7281 1.16.2.2 christos if (param->sample_rate == f->frequency[j])
7282 1.16.2.2 christos break;
7283 1.16.2.2 christos }
7284 1.16.2.2 christos if (j == f->frequency_type)
7285 1.16.2.2 christos continue;
7286 1.16.2.2 christos }
7287 1.16.2.2 christos
7288 1.16.2.2 christos /* Then, matched */
7289 1.16.2.2 christos return index;
7290 1.16.2.2 christos }
7291 1.16.2.2 christos
7292 1.16.2.2 christos /* Not matched. This should not be happened. */
7293 1.16.2.2 christos panic("%s: cannot find matched format\n", __func__);
7294 1.16.2.2 christos }
7295 1.16.2.2 christos
7296 1.16.2.2 christos /*
7297 1.16.2.2 christos * Get or set software master volume: 0..256
7298 1.16.2.2 christos * XXX It's for debug.
7299 1.16.2.2 christos */
7300 1.16.2.2 christos static int
7301 1.16.2.2 christos audio_sysctl_volume(SYSCTLFN_ARGS)
7302 1.16.2.2 christos {
7303 1.16.2.2 christos struct sysctlnode node;
7304 1.16.2.2 christos struct audio_softc *sc;
7305 1.16.2.2 christos int t, error;
7306 1.16.2.2 christos
7307 1.16.2.2 christos node = *rnode;
7308 1.16.2.2 christos sc = node.sysctl_data;
7309 1.16.2.2 christos
7310 1.16.2.2 christos if (sc->sc_pmixer)
7311 1.16.2.2 christos t = sc->sc_pmixer->volume;
7312 1.16.2.2 christos else
7313 1.16.2.2 christos t = -1;
7314 1.16.2.2 christos node.sysctl_data = &t;
7315 1.16.2.2 christos error = sysctl_lookup(SYSCTLFN_CALL(&node));
7316 1.16.2.2 christos if (error || newp == NULL)
7317 1.16.2.2 christos return error;
7318 1.16.2.2 christos
7319 1.16.2.2 christos if (sc->sc_pmixer == NULL)
7320 1.16.2.2 christos return EINVAL;
7321 1.16.2.2 christos if (t < 0)
7322 1.16.2.2 christos return EINVAL;
7323 1.16.2.2 christos
7324 1.16.2.2 christos sc->sc_pmixer->volume = t;
7325 1.16.2.2 christos return 0;
7326 1.16.2.2 christos }
7327 1.16.2.2 christos
7328 1.16.2.2 christos /*
7329 1.16.2.2 christos * Get or set hardware blocksize in msec.
7330 1.16.2.2 christos * XXX It's for debug.
7331 1.16.2.2 christos */
7332 1.16.2.2 christos static int
7333 1.16.2.2 christos audio_sysctl_blk_ms(SYSCTLFN_ARGS)
7334 1.16.2.2 christos {
7335 1.16.2.2 christos struct sysctlnode node;
7336 1.16.2.2 christos struct audio_softc *sc;
7337 1.16.2.2 christos audio_format2_t phwfmt;
7338 1.16.2.2 christos audio_format2_t rhwfmt;
7339 1.16.2.2 christos audio_filter_reg_t pfil;
7340 1.16.2.2 christos audio_filter_reg_t rfil;
7341 1.16.2.2 christos int t;
7342 1.16.2.2 christos int old_blk_ms;
7343 1.16.2.2 christos int mode;
7344 1.16.2.2 christos int error;
7345 1.16.2.2 christos
7346 1.16.2.2 christos node = *rnode;
7347 1.16.2.2 christos sc = node.sysctl_data;
7348 1.16.2.2 christos
7349 1.16.2.2 christos mutex_enter(sc->sc_lock);
7350 1.16.2.2 christos
7351 1.16.2.2 christos old_blk_ms = sc->sc_blk_ms;
7352 1.16.2.2 christos t = old_blk_ms;
7353 1.16.2.2 christos node.sysctl_data = &t;
7354 1.16.2.2 christos error = sysctl_lookup(SYSCTLFN_CALL(&node));
7355 1.16.2.2 christos if (error || newp == NULL)
7356 1.16.2.2 christos goto abort;
7357 1.16.2.2 christos
7358 1.16.2.2 christos if (t < 0) {
7359 1.16.2.2 christos error = EINVAL;
7360 1.16.2.2 christos goto abort;
7361 1.16.2.2 christos }
7362 1.16.2.2 christos
7363 1.16.2.2 christos if (sc->sc_popens + sc->sc_ropens > 0) {
7364 1.16.2.2 christos error = EBUSY;
7365 1.16.2.2 christos goto abort;
7366 1.16.2.2 christos }
7367 1.16.2.2 christos sc->sc_blk_ms = t;
7368 1.16.2.2 christos mode = 0;
7369 1.16.2.2 christos if (sc->sc_pmixer) {
7370 1.16.2.2 christos mode |= AUMODE_PLAY;
7371 1.16.2.2 christos phwfmt = sc->sc_pmixer->hwbuf.fmt;
7372 1.16.2.2 christos }
7373 1.16.2.2 christos if (sc->sc_rmixer) {
7374 1.16.2.2 christos mode |= AUMODE_RECORD;
7375 1.16.2.2 christos rhwfmt = sc->sc_rmixer->hwbuf.fmt;
7376 1.16.2.2 christos }
7377 1.16.2.2 christos
7378 1.16.2.2 christos /* re-init hardware */
7379 1.16.2.2 christos memset(&pfil, 0, sizeof(pfil));
7380 1.16.2.2 christos memset(&rfil, 0, sizeof(rfil));
7381 1.16.2.2 christos error = audio_hw_set_format(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
7382 1.16.2.2 christos if (error) {
7383 1.16.2.2 christos goto abort;
7384 1.16.2.2 christos }
7385 1.16.2.2 christos
7386 1.16.2.2 christos /* re-init track mixer */
7387 1.16.2.2 christos error = audio_mixers_init(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
7388 1.16.2.2 christos if (error) {
7389 1.16.2.2 christos /* Rollback */
7390 1.16.2.2 christos sc->sc_blk_ms = old_blk_ms;
7391 1.16.2.2 christos audio_mixers_init(sc, mode, &phwfmt, &rhwfmt, &pfil, &rfil);
7392 1.16.2.2 christos goto abort;
7393 1.16.2.2 christos }
7394 1.16.2.2 christos error = 0;
7395 1.16.2.2 christos abort:
7396 1.16.2.2 christos mutex_exit(sc->sc_lock);
7397 1.16.2.2 christos return error;
7398 1.16.2.2 christos }
7399 1.16.2.2 christos
7400 1.16.2.2 christos /*
7401 1.16.2.2 christos * Get or set multiuser mode.
7402 1.16.2.2 christos */
7403 1.16.2.2 christos static int
7404 1.16.2.2 christos audio_sysctl_multiuser(SYSCTLFN_ARGS)
7405 1.16.2.2 christos {
7406 1.16.2.2 christos struct sysctlnode node;
7407 1.16.2.2 christos struct audio_softc *sc;
7408 1.16.2.2 christos bool t;
7409 1.16.2.2 christos int error;
7410 1.16.2.2 christos
7411 1.16.2.2 christos node = *rnode;
7412 1.16.2.2 christos sc = node.sysctl_data;
7413 1.16.2.2 christos
7414 1.16.2.2 christos mutex_enter(sc->sc_lock);
7415 1.16.2.2 christos
7416 1.16.2.2 christos t = sc->sc_multiuser;
7417 1.16.2.2 christos node.sysctl_data = &t;
7418 1.16.2.2 christos error = sysctl_lookup(SYSCTLFN_CALL(&node));
7419 1.16.2.2 christos if (error || newp == NULL)
7420 1.16.2.2 christos goto abort;
7421 1.16.2.2 christos
7422 1.16.2.2 christos sc->sc_multiuser = t;
7423 1.16.2.2 christos error = 0;
7424 1.16.2.2 christos abort:
7425 1.16.2.2 christos mutex_exit(sc->sc_lock);
7426 1.16.2.2 christos return error;
7427 1.16.2.2 christos }
7428 1.16.2.2 christos
7429 1.16.2.2 christos #if defined(AUDIO_DEBUG)
7430 1.16.2.2 christos /*
7431 1.16.2.2 christos * Get or set debug verbose level. (0..4)
7432 1.16.2.2 christos * XXX It's for debug.
7433 1.16.2.2 christos * XXX It is not separated per device.
7434 1.16.2.2 christos */
7435 1.16.2.2 christos static int
7436 1.16.2.2 christos audio_sysctl_debug(SYSCTLFN_ARGS)
7437 1.16.2.2 christos {
7438 1.16.2.2 christos struct sysctlnode node;
7439 1.16.2.2 christos int t;
7440 1.16.2.2 christos int error;
7441 1.16.2.2 christos
7442 1.16.2.2 christos node = *rnode;
7443 1.16.2.2 christos t = audiodebug;
7444 1.16.2.2 christos node.sysctl_data = &t;
7445 1.16.2.2 christos error = sysctl_lookup(SYSCTLFN_CALL(&node));
7446 1.16.2.2 christos if (error || newp == NULL)
7447 1.16.2.2 christos return error;
7448 1.16.2.2 christos
7449 1.16.2.2 christos if (t < 0 || t > 4)
7450 1.16.2.2 christos return EINVAL;
7451 1.16.2.2 christos audiodebug = t;
7452 1.16.2.2 christos printf("audio: audiodebug = %d\n", audiodebug);
7453 1.16.2.2 christos return 0;
7454 1.16.2.2 christos }
7455 1.16.2.2 christos #endif /* AUDIO_DEBUG */
7456 1.16.2.2 christos
7457 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
7458 1.16.2.2 christos static void
7459 1.16.2.2 christos audio_idle(void *arg)
7460 1.16.2.2 christos {
7461 1.16.2.2 christos device_t dv = arg;
7462 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
7463 1.16.2.2 christos
7464 1.16.2.2 christos #ifdef PNP_DEBUG
7465 1.16.2.2 christos extern int pnp_debug_idle;
7466 1.16.2.2 christos if (pnp_debug_idle)
7467 1.16.2.2 christos printf("%s: idle handler called\n", device_xname(dv));
7468 1.16.2.2 christos #endif
7469 1.16.2.2 christos
7470 1.16.2.2 christos sc->sc_idle = true;
7471 1.16.2.2 christos
7472 1.16.2.2 christos /* XXX joerg Make pmf_device_suspend handle children? */
7473 1.16.2.2 christos if (!pmf_device_suspend(dv, PMF_Q_SELF))
7474 1.16.2.2 christos return;
7475 1.16.2.2 christos
7476 1.16.2.2 christos if (!pmf_device_suspend(sc->hw_dev, PMF_Q_SELF))
7477 1.16.2.2 christos pmf_device_resume(dv, PMF_Q_SELF);
7478 1.16.2.2 christos }
7479 1.16.2.2 christos
7480 1.16.2.2 christos static void
7481 1.16.2.2 christos audio_activity(device_t dv, devactive_t type)
7482 1.16.2.2 christos {
7483 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
7484 1.16.2.2 christos
7485 1.16.2.2 christos if (type != DVA_SYSTEM)
7486 1.16.2.2 christos return;
7487 1.16.2.2 christos
7488 1.16.2.2 christos callout_schedule(&sc->sc_idle_counter, audio_idle_timeout * hz);
7489 1.16.2.2 christos
7490 1.16.2.2 christos sc->sc_idle = false;
7491 1.16.2.2 christos if (!device_is_active(dv)) {
7492 1.16.2.2 christos /* XXX joerg How to deal with a failing resume... */
7493 1.16.2.2 christos pmf_device_resume(sc->hw_dev, PMF_Q_SELF);
7494 1.16.2.2 christos pmf_device_resume(dv, PMF_Q_SELF);
7495 1.16.2.2 christos }
7496 1.16.2.2 christos }
7497 1.16.2.2 christos #endif
7498 1.16.2.2 christos
7499 1.16.2.2 christos static bool
7500 1.16.2.2 christos audio_suspend(device_t dv, const pmf_qual_t *qual)
7501 1.16.2.2 christos {
7502 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
7503 1.16.2.2 christos int error;
7504 1.16.2.2 christos
7505 1.16.2.2 christos error = audio_enter_exclusive(sc);
7506 1.16.2.2 christos if (error)
7507 1.16.2.2 christos return error;
7508 1.16.2.2 christos audio_mixer_capture(sc);
7509 1.16.2.2 christos
7510 1.16.2.2 christos /* Halts mixers but don't clear busy flag for resume */
7511 1.16.2.2 christos if (sc->sc_pbusy) {
7512 1.16.2.2 christos audio_pmixer_halt(sc);
7513 1.16.2.2 christos sc->sc_pbusy = true;
7514 1.16.2.2 christos }
7515 1.16.2.2 christos if (sc->sc_rbusy) {
7516 1.16.2.2 christos audio_rmixer_halt(sc);
7517 1.16.2.2 christos sc->sc_rbusy = true;
7518 1.16.2.2 christos }
7519 1.16.2.2 christos
7520 1.16.2.2 christos #ifdef AUDIO_PM_IDLE
7521 1.16.2.2 christos callout_halt(&sc->sc_idle_counter, sc->sc_lock);
7522 1.16.2.2 christos #endif
7523 1.16.2.2 christos audio_exit_exclusive(sc);
7524 1.16.2.2 christos
7525 1.16.2.2 christos return true;
7526 1.16.2.2 christos }
7527 1.16.2.2 christos
7528 1.16.2.2 christos static bool
7529 1.16.2.2 christos audio_resume(device_t dv, const pmf_qual_t *qual)
7530 1.16.2.2 christos {
7531 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
7532 1.16.2.2 christos struct audio_info ai;
7533 1.16.2.2 christos int error;
7534 1.16.2.2 christos
7535 1.16.2.2 christos error = audio_enter_exclusive(sc);
7536 1.16.2.2 christos if (error)
7537 1.16.2.2 christos return error;
7538 1.16.2.2 christos
7539 1.16.2.2 christos audio_mixer_restore(sc);
7540 1.16.2.2 christos /* XXX ? */
7541 1.16.2.2 christos AUDIO_INITINFO(&ai);
7542 1.16.2.2 christos audio_hw_setinfo(sc, &ai, NULL);
7543 1.16.2.2 christos
7544 1.16.2.2 christos if (sc->sc_pbusy)
7545 1.16.2.2 christos audio_pmixer_start(sc, true);
7546 1.16.2.2 christos if (sc->sc_rbusy)
7547 1.16.2.2 christos audio_rmixer_start(sc);
7548 1.16.2.2 christos
7549 1.16.2.2 christos audio_exit_exclusive(sc);
7550 1.16.2.2 christos
7551 1.16.2.2 christos return true;
7552 1.16.2.2 christos }
7553 1.16.2.2 christos
7554 1.16.2.2 christos #if defined(AUDIO_DEBUG)
7555 1.16.2.2 christos static void
7556 1.16.2.2 christos audio_format2_tostr(char *buf, size_t bufsize, const audio_format2_t *fmt)
7557 1.16.2.2 christos {
7558 1.16.2.2 christos int n;
7559 1.16.2.2 christos
7560 1.16.2.2 christos n = 0;
7561 1.16.2.2 christos n += snprintf(buf + n, bufsize - n, "%s",
7562 1.16.2.2 christos audio_encoding_name(fmt->encoding));
7563 1.16.2.2 christos if (fmt->precision == fmt->stride) {
7564 1.16.2.2 christos n += snprintf(buf + n, bufsize - n, " %dbit", fmt->precision);
7565 1.16.2.2 christos } else {
7566 1.16.2.2 christos n += snprintf(buf + n, bufsize - n, " %d/%dbit",
7567 1.16.2.2 christos fmt->precision, fmt->stride);
7568 1.16.2.2 christos }
7569 1.16.2.2 christos
7570 1.16.2.2 christos snprintf(buf + n, bufsize - n, " %uch %uHz",
7571 1.16.2.2 christos fmt->channels, fmt->sample_rate);
7572 1.16.2.2 christos }
7573 1.16.2.2 christos #endif
7574 1.16.2.2 christos
7575 1.16.2.2 christos #if defined(AUDIO_DEBUG)
7576 1.16.2.2 christos static void
7577 1.16.2.2 christos audio_print_format2(const char *s, const audio_format2_t *fmt)
7578 1.16.2.2 christos {
7579 1.16.2.2 christos char fmtstr[64];
7580 1.16.2.2 christos
7581 1.16.2.2 christos audio_format2_tostr(fmtstr, sizeof(fmtstr), fmt);
7582 1.16.2.2 christos printf("%s %s\n", s, fmtstr);
7583 1.16.2.2 christos }
7584 1.16.2.2 christos #endif
7585 1.16.2.2 christos
7586 1.16.2.2 christos #ifdef DIAGNOSTIC
7587 1.16.2.2 christos void
7588 1.16.2.2 christos audio_diagnostic_format2(const char *func, const audio_format2_t *fmt)
7589 1.16.2.2 christos {
7590 1.16.2.2 christos
7591 1.16.2.2 christos KASSERTMSG(fmt, "%s: fmt == NULL", func);
7592 1.16.2.2 christos
7593 1.16.2.2 christos /* XXX MSM6258 vs(4) only has 4bit stride format. */
7594 1.16.2.2 christos if (fmt->encoding == AUDIO_ENCODING_ADPCM) {
7595 1.16.2.2 christos KASSERTMSG(fmt->stride == 4 || fmt->stride == 8,
7596 1.16.2.2 christos "%s: stride(%d) is invalid", func, fmt->stride);
7597 1.16.2.2 christos } else {
7598 1.16.2.2 christos KASSERTMSG(fmt->stride % NBBY == 0,
7599 1.16.2.2 christos "%s: stride(%d) is invalid", func, fmt->stride);
7600 1.16.2.2 christos }
7601 1.16.2.2 christos KASSERTMSG(fmt->precision <= fmt->stride,
7602 1.16.2.2 christos "%s: precision(%d) <= stride(%d)",
7603 1.16.2.2 christos func, fmt->precision, fmt->stride);
7604 1.16.2.2 christos KASSERTMSG(1 <= fmt->channels && fmt->channels <= AUDIO_MAX_CHANNELS,
7605 1.16.2.2 christos "%s: channels(%d) is out of range",
7606 1.16.2.2 christos func, fmt->channels);
7607 1.16.2.2 christos
7608 1.16.2.2 christos /* XXX No check for encodings? */
7609 1.16.2.2 christos }
7610 1.16.2.2 christos
7611 1.16.2.2 christos void
7612 1.16.2.2 christos audio_diagnostic_filter_arg(const char *func, const audio_filter_arg_t *arg)
7613 1.16.2.2 christos {
7614 1.16.2.2 christos
7615 1.16.2.2 christos KASSERT(arg != NULL);
7616 1.16.2.2 christos KASSERT(arg->src != NULL);
7617 1.16.2.2 christos KASSERT(arg->dst != NULL);
7618 1.16.2.2 christos DIAGNOSTIC_format2(arg->srcfmt);
7619 1.16.2.2 christos DIAGNOSTIC_format2(arg->dstfmt);
7620 1.16.2.2 christos KASSERTMSG(arg->count > 0,
7621 1.16.2.2 christos "%s: count(%d) is out of range", func, arg->count);
7622 1.16.2.2 christos }
7623 1.16.2.2 christos
7624 1.16.2.2 christos void
7625 1.16.2.2 christos audio_diagnostic_ring(const char *func, const audio_ring_t *ring)
7626 1.16.2.2 christos {
7627 1.16.2.2 christos
7628 1.16.2.2 christos KASSERTMSG(ring, "%s: ring == NULL", func);
7629 1.16.2.2 christos DIAGNOSTIC_format2(&ring->fmt);
7630 1.16.2.2 christos KASSERTMSG(0 <= ring->capacity && ring->capacity < INT_MAX / 2,
7631 1.16.2.2 christos "%s: capacity(%d) is out of range", func, ring->capacity);
7632 1.16.2.2 christos KASSERTMSG(0 <= ring->used && ring->used <= ring->capacity,
7633 1.16.2.2 christos "%s: used(%d) is out of range (capacity:%d)",
7634 1.16.2.2 christos func, ring->used, ring->capacity);
7635 1.16.2.2 christos if (ring->capacity == 0) {
7636 1.16.2.2 christos KASSERTMSG(ring->mem == NULL,
7637 1.16.2.2 christos "%s: capacity == 0 but mem != NULL", func);
7638 1.16.2.2 christos } else {
7639 1.16.2.2 christos KASSERTMSG(ring->mem != NULL,
7640 1.16.2.2 christos "%s: capacity != 0 but mem == NULL", func);
7641 1.16.2.2 christos KASSERTMSG(0 <= ring->head && ring->head < ring->capacity,
7642 1.16.2.2 christos "%s: head(%d) is out of range (capacity:%d)",
7643 1.16.2.2 christos func, ring->head, ring->capacity);
7644 1.16.2.2 christos }
7645 1.16.2.2 christos }
7646 1.16.2.2 christos #endif /* DIAGNOSTIC */
7647 1.16.2.2 christos
7648 1.16.2.2 christos
7649 1.16.2.2 christos /*
7650 1.16.2.2 christos * Mixer driver
7651 1.16.2.2 christos */
7652 1.16.2.2 christos int
7653 1.16.2.2 christos mixer_open(dev_t dev, struct audio_softc *sc, int flags, int ifmt,
7654 1.16.2.2 christos struct lwp *l)
7655 1.16.2.2 christos {
7656 1.16.2.2 christos struct file *fp;
7657 1.16.2.2 christos audio_file_t *af;
7658 1.16.2.2 christos int error, fd;
7659 1.16.2.2 christos
7660 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7661 1.16.2.2 christos
7662 1.16.2.2 christos TRACE(1, "flags=0x%x", flags);
7663 1.16.2.2 christos
7664 1.16.2.2 christos error = fd_allocfile(&fp, &fd);
7665 1.16.2.2 christos if (error)
7666 1.16.2.2 christos return error;
7667 1.16.2.2 christos
7668 1.16.2.2 christos af = kmem_zalloc(sizeof(*af), KM_SLEEP);
7669 1.16.2.2 christos af->sc = sc;
7670 1.16.2.2 christos af->dev = dev;
7671 1.16.2.2 christos
7672 1.16.2.2 christos error = fd_clone(fp, fd, flags, &audio_fileops, af);
7673 1.16.2.2 christos KASSERT(error == EMOVEFD);
7674 1.16.2.2 christos
7675 1.16.2.2 christos return error;
7676 1.16.2.2 christos }
7677 1.16.2.2 christos
7678 1.16.2.2 christos /*
7679 1.16.2.2 christos * Remove a process from those to be signalled on mixer activity.
7680 1.16.2.2 christos * Must be called with sc_lock held.
7681 1.16.2.2 christos */
7682 1.16.2.2 christos static void
7683 1.16.2.2 christos mixer_remove(struct audio_softc *sc)
7684 1.16.2.2 christos {
7685 1.16.2.2 christos struct mixer_asyncs **pm, *m;
7686 1.16.2.2 christos pid_t pid;
7687 1.16.2.2 christos
7688 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7689 1.16.2.2 christos
7690 1.16.2.2 christos pid = curproc->p_pid;
7691 1.16.2.2 christos for (pm = &sc->sc_async_mixer; *pm; pm = &(*pm)->next) {
7692 1.16.2.2 christos if ((*pm)->pid == pid) {
7693 1.16.2.2 christos m = *pm;
7694 1.16.2.2 christos *pm = m->next;
7695 1.16.2.2 christos kmem_free(m, sizeof(*m));
7696 1.16.2.2 christos return;
7697 1.16.2.2 christos }
7698 1.16.2.2 christos }
7699 1.16.2.2 christos }
7700 1.16.2.2 christos
7701 1.16.2.2 christos /*
7702 1.16.2.2 christos * Signal all processes waiting for the mixer.
7703 1.16.2.2 christos * Must be called with sc_lock held.
7704 1.16.2.2 christos */
7705 1.16.2.2 christos static void
7706 1.16.2.2 christos mixer_signal(struct audio_softc *sc)
7707 1.16.2.2 christos {
7708 1.16.2.2 christos struct mixer_asyncs *m;
7709 1.16.2.2 christos proc_t *p;
7710 1.16.2.2 christos
7711 1.16.2.2 christos for (m = sc->sc_async_mixer; m; m = m->next) {
7712 1.16.2.2 christos mutex_enter(proc_lock);
7713 1.16.2.2 christos if ((p = proc_find(m->pid)) != NULL)
7714 1.16.2.2 christos psignal(p, SIGIO);
7715 1.16.2.2 christos mutex_exit(proc_lock);
7716 1.16.2.2 christos }
7717 1.16.2.2 christos }
7718 1.16.2.2 christos
7719 1.16.2.2 christos /*
7720 1.16.2.2 christos * Close a mixer device
7721 1.16.2.2 christos */
7722 1.16.2.2 christos int
7723 1.16.2.2 christos mixer_close(struct audio_softc *sc, audio_file_t *file)
7724 1.16.2.2 christos {
7725 1.16.2.2 christos
7726 1.16.2.2 christos mutex_enter(sc->sc_lock);
7727 1.16.2.2 christos TRACE(1, "");
7728 1.16.2.2 christos mixer_remove(sc);
7729 1.16.2.2 christos mutex_exit(sc->sc_lock);
7730 1.16.2.2 christos
7731 1.16.2.2 christos return 0;
7732 1.16.2.2 christos }
7733 1.16.2.2 christos
7734 1.16.2.2 christos int
7735 1.16.2.2 christos mixer_ioctl(struct audio_softc *sc, u_long cmd, void *addr, int flag,
7736 1.16.2.2 christos struct lwp *l)
7737 1.16.2.2 christos {
7738 1.16.2.2 christos struct mixer_asyncs *ma;
7739 1.16.2.2 christos mixer_devinfo_t *mi;
7740 1.16.2.2 christos mixer_ctrl_t *mc;
7741 1.16.2.2 christos int error;
7742 1.16.2.2 christos
7743 1.16.2.2 christos KASSERT(!mutex_owned(sc->sc_lock));
7744 1.16.2.2 christos
7745 1.16.2.2 christos TRACE(2, "(%lu,'%c',%lu)",
7746 1.16.2.2 christos IOCPARM_LEN(cmd), (char)IOCGROUP(cmd), cmd & 0xff);
7747 1.16.2.2 christos error = EINVAL;
7748 1.16.2.2 christos
7749 1.16.2.2 christos /* we can return cached values if we are sleeping */
7750 1.16.2.2 christos if (cmd != AUDIO_MIXER_READ) {
7751 1.16.2.2 christos mutex_enter(sc->sc_lock);
7752 1.16.2.2 christos device_active(sc->sc_dev, DVA_SYSTEM);
7753 1.16.2.2 christos mutex_exit(sc->sc_lock);
7754 1.16.2.2 christos }
7755 1.16.2.2 christos
7756 1.16.2.2 christos switch (cmd) {
7757 1.16.2.2 christos case FIOASYNC:
7758 1.16.2.2 christos if (*(int *)addr) {
7759 1.16.2.2 christos ma = kmem_alloc(sizeof(struct mixer_asyncs), KM_SLEEP);
7760 1.16.2.2 christos } else {
7761 1.16.2.2 christos ma = NULL;
7762 1.16.2.2 christos }
7763 1.16.2.2 christos mixer_remove(sc); /* remove old entry */
7764 1.16.2.2 christos if (ma != NULL) {
7765 1.16.2.2 christos ma->next = sc->sc_async_mixer;
7766 1.16.2.2 christos ma->pid = curproc->p_pid;
7767 1.16.2.2 christos sc->sc_async_mixer = ma;
7768 1.16.2.2 christos }
7769 1.16.2.2 christos error = 0;
7770 1.16.2.2 christos break;
7771 1.16.2.2 christos
7772 1.16.2.2 christos case AUDIO_GETDEV:
7773 1.16.2.2 christos TRACE(2, "AUDIO_GETDEV");
7774 1.16.2.2 christos error = audio_enter_exclusive(sc);
7775 1.16.2.2 christos if (error)
7776 1.16.2.2 christos break;
7777 1.16.2.2 christos error = sc->hw_if->getdev(sc->hw_hdl, (audio_device_t *)addr);
7778 1.16.2.2 christos audio_exit_exclusive(sc);
7779 1.16.2.2 christos break;
7780 1.16.2.2 christos
7781 1.16.2.2 christos case AUDIO_MIXER_DEVINFO:
7782 1.16.2.2 christos TRACE(2, "AUDIO_MIXER_DEVINFO");
7783 1.16.2.2 christos mi = (mixer_devinfo_t *)addr;
7784 1.16.2.2 christos
7785 1.16.2.2 christos mi->un.v.delta = 0; /* default */
7786 1.16.2.2 christos mutex_enter(sc->sc_lock);
7787 1.16.2.2 christos error = audio_query_devinfo(sc, mi);
7788 1.16.2.2 christos mutex_exit(sc->sc_lock);
7789 1.16.2.2 christos break;
7790 1.16.2.2 christos
7791 1.16.2.2 christos case AUDIO_MIXER_READ:
7792 1.16.2.2 christos TRACE(2, "AUDIO_MIXER_READ");
7793 1.16.2.2 christos mc = (mixer_ctrl_t *)addr;
7794 1.16.2.2 christos
7795 1.16.2.2 christos error = audio_enter_exclusive(sc);
7796 1.16.2.2 christos if (error)
7797 1.16.2.2 christos break;
7798 1.16.2.2 christos if (device_is_active(sc->hw_dev))
7799 1.16.2.2 christos error = audio_get_port(sc, mc);
7800 1.16.2.2 christos else if (mc->dev < 0 || mc->dev >= sc->sc_nmixer_states)
7801 1.16.2.2 christos error = ENXIO;
7802 1.16.2.2 christos else {
7803 1.16.2.2 christos int dev = mc->dev;
7804 1.16.2.2 christos memcpy(mc, &sc->sc_mixer_state[dev],
7805 1.16.2.2 christos sizeof(mixer_ctrl_t));
7806 1.16.2.2 christos error = 0;
7807 1.16.2.2 christos }
7808 1.16.2.2 christos audio_exit_exclusive(sc);
7809 1.16.2.2 christos break;
7810 1.16.2.2 christos
7811 1.16.2.2 christos case AUDIO_MIXER_WRITE:
7812 1.16.2.2 christos TRACE(2, "AUDIO_MIXER_WRITE");
7813 1.16.2.2 christos error = audio_enter_exclusive(sc);
7814 1.16.2.2 christos if (error)
7815 1.16.2.2 christos break;
7816 1.16.2.2 christos error = audio_set_port(sc, (mixer_ctrl_t *)addr);
7817 1.16.2.2 christos if (error) {
7818 1.16.2.2 christos audio_exit_exclusive(sc);
7819 1.16.2.2 christos break;
7820 1.16.2.2 christos }
7821 1.16.2.2 christos
7822 1.16.2.2 christos if (sc->hw_if->commit_settings) {
7823 1.16.2.2 christos error = sc->hw_if->commit_settings(sc->hw_hdl);
7824 1.16.2.2 christos if (error) {
7825 1.16.2.2 christos audio_exit_exclusive(sc);
7826 1.16.2.2 christos break;
7827 1.16.2.2 christos }
7828 1.16.2.2 christos }
7829 1.16.2.2 christos mixer_signal(sc);
7830 1.16.2.2 christos audio_exit_exclusive(sc);
7831 1.16.2.2 christos break;
7832 1.16.2.2 christos
7833 1.16.2.2 christos default:
7834 1.16.2.2 christos if (sc->hw_if->dev_ioctl) {
7835 1.16.2.2 christos error = audio_enter_exclusive(sc);
7836 1.16.2.2 christos if (error)
7837 1.16.2.2 christos break;
7838 1.16.2.2 christos error = sc->hw_if->dev_ioctl(sc->hw_hdl,
7839 1.16.2.2 christos cmd, addr, flag, l);
7840 1.16.2.2 christos audio_exit_exclusive(sc);
7841 1.16.2.2 christos } else
7842 1.16.2.2 christos error = EINVAL;
7843 1.16.2.2 christos break;
7844 1.16.2.2 christos }
7845 1.16.2.2 christos TRACE(2, "(%lu,'%c',%lu) result %d",
7846 1.16.2.2 christos IOCPARM_LEN(cmd), (char)IOCGROUP(cmd), cmd & 0xff, error);
7847 1.16.2.2 christos return error;
7848 1.16.2.2 christos }
7849 1.16.2.2 christos
7850 1.16.2.2 christos /*
7851 1.16.2.2 christos * Must be called with sc_lock held.
7852 1.16.2.2 christos */
7853 1.16.2.2 christos int
7854 1.16.2.2 christos au_portof(struct audio_softc *sc, char *name, int class)
7855 1.16.2.2 christos {
7856 1.16.2.2 christos mixer_devinfo_t mi;
7857 1.16.2.2 christos
7858 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7859 1.16.2.2 christos
7860 1.16.2.2 christos for (mi.index = 0; audio_query_devinfo(sc, &mi) == 0; mi.index++) {
7861 1.16.2.2 christos if (mi.mixer_class == class && strcmp(mi.label.name, name) == 0)
7862 1.16.2.2 christos return mi.index;
7863 1.16.2.2 christos }
7864 1.16.2.2 christos return -1;
7865 1.16.2.2 christos }
7866 1.16.2.2 christos
7867 1.16.2.2 christos /*
7868 1.16.2.2 christos * Must be called with sc_lock held.
7869 1.16.2.2 christos */
7870 1.16.2.2 christos void
7871 1.16.2.2 christos au_setup_ports(struct audio_softc *sc, struct au_mixer_ports *ports,
7872 1.16.2.2 christos mixer_devinfo_t *mi, const struct portname *tbl)
7873 1.16.2.2 christos {
7874 1.16.2.2 christos int i, j;
7875 1.16.2.2 christos
7876 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7877 1.16.2.2 christos
7878 1.16.2.2 christos ports->index = mi->index;
7879 1.16.2.2 christos if (mi->type == AUDIO_MIXER_ENUM) {
7880 1.16.2.2 christos ports->isenum = true;
7881 1.16.2.2 christos for(i = 0; tbl[i].name; i++)
7882 1.16.2.2 christos for(j = 0; j < mi->un.e.num_mem; j++)
7883 1.16.2.2 christos if (strcmp(mi->un.e.member[j].label.name,
7884 1.16.2.2 christos tbl[i].name) == 0) {
7885 1.16.2.2 christos ports->allports |= tbl[i].mask;
7886 1.16.2.2 christos ports->aumask[ports->nports] = tbl[i].mask;
7887 1.16.2.2 christos ports->misel[ports->nports] =
7888 1.16.2.2 christos mi->un.e.member[j].ord;
7889 1.16.2.2 christos ports->miport[ports->nports] =
7890 1.16.2.2 christos au_portof(sc, mi->un.e.member[j].label.name,
7891 1.16.2.2 christos mi->mixer_class);
7892 1.16.2.2 christos if (ports->mixerout != -1 &&
7893 1.16.2.2 christos ports->miport[ports->nports] != -1)
7894 1.16.2.2 christos ports->isdual = true;
7895 1.16.2.2 christos ++ports->nports;
7896 1.16.2.2 christos }
7897 1.16.2.2 christos } else if (mi->type == AUDIO_MIXER_SET) {
7898 1.16.2.2 christos for(i = 0; tbl[i].name; i++)
7899 1.16.2.2 christos for(j = 0; j < mi->un.s.num_mem; j++)
7900 1.16.2.2 christos if (strcmp(mi->un.s.member[j].label.name,
7901 1.16.2.2 christos tbl[i].name) == 0) {
7902 1.16.2.2 christos ports->allports |= tbl[i].mask;
7903 1.16.2.2 christos ports->aumask[ports->nports] = tbl[i].mask;
7904 1.16.2.2 christos ports->misel[ports->nports] =
7905 1.16.2.2 christos mi->un.s.member[j].mask;
7906 1.16.2.2 christos ports->miport[ports->nports] =
7907 1.16.2.2 christos au_portof(sc, mi->un.s.member[j].label.name,
7908 1.16.2.2 christos mi->mixer_class);
7909 1.16.2.2 christos ++ports->nports;
7910 1.16.2.2 christos }
7911 1.16.2.2 christos }
7912 1.16.2.2 christos }
7913 1.16.2.2 christos
7914 1.16.2.2 christos /*
7915 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
7916 1.16.2.2 christos */
7917 1.16.2.2 christos int
7918 1.16.2.2 christos au_set_lr_value(struct audio_softc *sc, mixer_ctrl_t *ct, int l, int r)
7919 1.16.2.2 christos {
7920 1.16.2.2 christos
7921 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7922 1.16.2.2 christos KASSERT(sc->sc_exlock);
7923 1.16.2.2 christos
7924 1.16.2.2 christos ct->type = AUDIO_MIXER_VALUE;
7925 1.16.2.2 christos ct->un.value.num_channels = 2;
7926 1.16.2.2 christos ct->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = l;
7927 1.16.2.2 christos ct->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = r;
7928 1.16.2.2 christos if (audio_set_port(sc, ct) == 0)
7929 1.16.2.2 christos return 0;
7930 1.16.2.2 christos ct->un.value.num_channels = 1;
7931 1.16.2.2 christos ct->un.value.level[AUDIO_MIXER_LEVEL_MONO] = (l+r)/2;
7932 1.16.2.2 christos return audio_set_port(sc, ct);
7933 1.16.2.2 christos }
7934 1.16.2.2 christos
7935 1.16.2.2 christos /*
7936 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
7937 1.16.2.2 christos */
7938 1.16.2.2 christos int
7939 1.16.2.2 christos au_get_lr_value(struct audio_softc *sc, mixer_ctrl_t *ct, int *l, int *r)
7940 1.16.2.2 christos {
7941 1.16.2.2 christos int error;
7942 1.16.2.2 christos
7943 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7944 1.16.2.2 christos KASSERT(sc->sc_exlock);
7945 1.16.2.2 christos
7946 1.16.2.2 christos ct->un.value.num_channels = 2;
7947 1.16.2.2 christos if (audio_get_port(sc, ct) == 0) {
7948 1.16.2.2 christos *l = ct->un.value.level[AUDIO_MIXER_LEVEL_LEFT];
7949 1.16.2.2 christos *r = ct->un.value.level[AUDIO_MIXER_LEVEL_RIGHT];
7950 1.16.2.2 christos } else {
7951 1.16.2.2 christos ct->un.value.num_channels = 1;
7952 1.16.2.2 christos error = audio_get_port(sc, ct);
7953 1.16.2.2 christos if (error)
7954 1.16.2.2 christos return error;
7955 1.16.2.2 christos *r = *l = ct->un.value.level[AUDIO_MIXER_LEVEL_MONO];
7956 1.16.2.2 christos }
7957 1.16.2.2 christos return 0;
7958 1.16.2.2 christos }
7959 1.16.2.2 christos
7960 1.16.2.2 christos /*
7961 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
7962 1.16.2.2 christos */
7963 1.16.2.2 christos int
7964 1.16.2.2 christos au_set_gain(struct audio_softc *sc, struct au_mixer_ports *ports,
7965 1.16.2.2 christos int gain, int balance)
7966 1.16.2.2 christos {
7967 1.16.2.2 christos mixer_ctrl_t ct;
7968 1.16.2.2 christos int i, error;
7969 1.16.2.2 christos int l, r;
7970 1.16.2.2 christos u_int mask;
7971 1.16.2.2 christos int nset;
7972 1.16.2.2 christos
7973 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
7974 1.16.2.2 christos KASSERT(sc->sc_exlock);
7975 1.16.2.2 christos
7976 1.16.2.2 christos if (balance == AUDIO_MID_BALANCE) {
7977 1.16.2.2 christos l = r = gain;
7978 1.16.2.2 christos } else if (balance < AUDIO_MID_BALANCE) {
7979 1.16.2.2 christos l = gain;
7980 1.16.2.2 christos r = (balance * gain) / AUDIO_MID_BALANCE;
7981 1.16.2.2 christos } else {
7982 1.16.2.2 christos r = gain;
7983 1.16.2.2 christos l = ((AUDIO_RIGHT_BALANCE - balance) * gain)
7984 1.16.2.2 christos / AUDIO_MID_BALANCE;
7985 1.16.2.2 christos }
7986 1.16.2.2 christos TRACE(2, "gain=%d balance=%d, l=%d r=%d", gain, balance, l, r);
7987 1.16.2.2 christos
7988 1.16.2.2 christos if (ports->index == -1) {
7989 1.16.2.2 christos usemaster:
7990 1.16.2.2 christos if (ports->master == -1)
7991 1.16.2.2 christos return 0; /* just ignore it silently */
7992 1.16.2.2 christos ct.dev = ports->master;
7993 1.16.2.2 christos error = au_set_lr_value(sc, &ct, l, r);
7994 1.16.2.2 christos } else {
7995 1.16.2.2 christos ct.dev = ports->index;
7996 1.16.2.2 christos if (ports->isenum) {
7997 1.16.2.2 christos ct.type = AUDIO_MIXER_ENUM;
7998 1.16.2.2 christos error = audio_get_port(sc, &ct);
7999 1.16.2.2 christos if (error)
8000 1.16.2.2 christos return error;
8001 1.16.2.2 christos if (ports->isdual) {
8002 1.16.2.2 christos if (ports->cur_port == -1)
8003 1.16.2.2 christos ct.dev = ports->master;
8004 1.16.2.2 christos else
8005 1.16.2.2 christos ct.dev = ports->miport[ports->cur_port];
8006 1.16.2.2 christos error = au_set_lr_value(sc, &ct, l, r);
8007 1.16.2.2 christos } else {
8008 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8009 1.16.2.2 christos if (ports->misel[i] == ct.un.ord) {
8010 1.16.2.2 christos ct.dev = ports->miport[i];
8011 1.16.2.2 christos if (ct.dev == -1 ||
8012 1.16.2.2 christos au_set_lr_value(sc, &ct, l, r))
8013 1.16.2.2 christos goto usemaster;
8014 1.16.2.2 christos else
8015 1.16.2.2 christos break;
8016 1.16.2.2 christos }
8017 1.16.2.2 christos }
8018 1.16.2.2 christos } else {
8019 1.16.2.2 christos ct.type = AUDIO_MIXER_SET;
8020 1.16.2.2 christos error = audio_get_port(sc, &ct);
8021 1.16.2.2 christos if (error)
8022 1.16.2.2 christos return error;
8023 1.16.2.2 christos mask = ct.un.mask;
8024 1.16.2.2 christos nset = 0;
8025 1.16.2.2 christos for(i = 0; i < ports->nports; i++) {
8026 1.16.2.2 christos if (ports->misel[i] & mask) {
8027 1.16.2.2 christos ct.dev = ports->miport[i];
8028 1.16.2.2 christos if (ct.dev != -1 &&
8029 1.16.2.2 christos au_set_lr_value(sc, &ct, l, r) == 0)
8030 1.16.2.2 christos nset++;
8031 1.16.2.2 christos }
8032 1.16.2.2 christos }
8033 1.16.2.2 christos if (nset == 0)
8034 1.16.2.2 christos goto usemaster;
8035 1.16.2.2 christos }
8036 1.16.2.2 christos }
8037 1.16.2.2 christos if (!error)
8038 1.16.2.2 christos mixer_signal(sc);
8039 1.16.2.2 christos return error;
8040 1.16.2.2 christos }
8041 1.16.2.2 christos
8042 1.16.2.2 christos /*
8043 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8044 1.16.2.2 christos */
8045 1.16.2.2 christos void
8046 1.16.2.2 christos au_get_gain(struct audio_softc *sc, struct au_mixer_ports *ports,
8047 1.16.2.2 christos u_int *pgain, u_char *pbalance)
8048 1.16.2.2 christos {
8049 1.16.2.2 christos mixer_ctrl_t ct;
8050 1.16.2.2 christos int i, l, r, n;
8051 1.16.2.2 christos int lgain, rgain;
8052 1.16.2.2 christos
8053 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8054 1.16.2.2 christos KASSERT(sc->sc_exlock);
8055 1.16.2.2 christos
8056 1.16.2.2 christos lgain = AUDIO_MAX_GAIN / 2;
8057 1.16.2.2 christos rgain = AUDIO_MAX_GAIN / 2;
8058 1.16.2.2 christos if (ports->index == -1) {
8059 1.16.2.2 christos usemaster:
8060 1.16.2.2 christos if (ports->master == -1)
8061 1.16.2.2 christos goto bad;
8062 1.16.2.2 christos ct.dev = ports->master;
8063 1.16.2.2 christos ct.type = AUDIO_MIXER_VALUE;
8064 1.16.2.2 christos if (au_get_lr_value(sc, &ct, &lgain, &rgain))
8065 1.16.2.2 christos goto bad;
8066 1.16.2.2 christos } else {
8067 1.16.2.2 christos ct.dev = ports->index;
8068 1.16.2.2 christos if (ports->isenum) {
8069 1.16.2.2 christos ct.type = AUDIO_MIXER_ENUM;
8070 1.16.2.2 christos if (audio_get_port(sc, &ct))
8071 1.16.2.2 christos goto bad;
8072 1.16.2.2 christos ct.type = AUDIO_MIXER_VALUE;
8073 1.16.2.2 christos if (ports->isdual) {
8074 1.16.2.2 christos if (ports->cur_port == -1)
8075 1.16.2.2 christos ct.dev = ports->master;
8076 1.16.2.2 christos else
8077 1.16.2.2 christos ct.dev = ports->miport[ports->cur_port];
8078 1.16.2.2 christos au_get_lr_value(sc, &ct, &lgain, &rgain);
8079 1.16.2.2 christos } else {
8080 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8081 1.16.2.2 christos if (ports->misel[i] == ct.un.ord) {
8082 1.16.2.2 christos ct.dev = ports->miport[i];
8083 1.16.2.2 christos if (ct.dev == -1 ||
8084 1.16.2.2 christos au_get_lr_value(sc, &ct,
8085 1.16.2.2 christos &lgain, &rgain))
8086 1.16.2.2 christos goto usemaster;
8087 1.16.2.2 christos else
8088 1.16.2.2 christos break;
8089 1.16.2.2 christos }
8090 1.16.2.2 christos }
8091 1.16.2.2 christos } else {
8092 1.16.2.2 christos ct.type = AUDIO_MIXER_SET;
8093 1.16.2.2 christos if (audio_get_port(sc, &ct))
8094 1.16.2.2 christos goto bad;
8095 1.16.2.2 christos ct.type = AUDIO_MIXER_VALUE;
8096 1.16.2.2 christos lgain = rgain = n = 0;
8097 1.16.2.2 christos for(i = 0; i < ports->nports; i++) {
8098 1.16.2.2 christos if (ports->misel[i] & ct.un.mask) {
8099 1.16.2.2 christos ct.dev = ports->miport[i];
8100 1.16.2.2 christos if (ct.dev == -1 ||
8101 1.16.2.2 christos au_get_lr_value(sc, &ct, &l, &r))
8102 1.16.2.2 christos goto usemaster;
8103 1.16.2.2 christos else {
8104 1.16.2.2 christos lgain += l;
8105 1.16.2.2 christos rgain += r;
8106 1.16.2.2 christos n++;
8107 1.16.2.2 christos }
8108 1.16.2.2 christos }
8109 1.16.2.2 christos }
8110 1.16.2.2 christos if (n != 0) {
8111 1.16.2.2 christos lgain /= n;
8112 1.16.2.2 christos rgain /= n;
8113 1.16.2.2 christos }
8114 1.16.2.2 christos }
8115 1.16.2.2 christos }
8116 1.16.2.2 christos bad:
8117 1.16.2.2 christos if (lgain == rgain) { /* handles lgain==rgain==0 */
8118 1.16.2.2 christos *pgain = lgain;
8119 1.16.2.2 christos *pbalance = AUDIO_MID_BALANCE;
8120 1.16.2.2 christos } else if (lgain < rgain) {
8121 1.16.2.2 christos *pgain = rgain;
8122 1.16.2.2 christos /* balance should be > AUDIO_MID_BALANCE */
8123 1.16.2.2 christos *pbalance = AUDIO_RIGHT_BALANCE -
8124 1.16.2.2 christos (AUDIO_MID_BALANCE * lgain) / rgain;
8125 1.16.2.2 christos } else /* lgain > rgain */ {
8126 1.16.2.2 christos *pgain = lgain;
8127 1.16.2.2 christos /* balance should be < AUDIO_MID_BALANCE */
8128 1.16.2.2 christos *pbalance = (AUDIO_MID_BALANCE * rgain) / lgain;
8129 1.16.2.2 christos }
8130 1.16.2.2 christos }
8131 1.16.2.2 christos
8132 1.16.2.2 christos /*
8133 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8134 1.16.2.2 christos */
8135 1.16.2.2 christos int
8136 1.16.2.2 christos au_set_port(struct audio_softc *sc, struct au_mixer_ports *ports, u_int port)
8137 1.16.2.2 christos {
8138 1.16.2.2 christos mixer_ctrl_t ct;
8139 1.16.2.2 christos int i, error, use_mixerout;
8140 1.16.2.2 christos
8141 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8142 1.16.2.2 christos KASSERT(sc->sc_exlock);
8143 1.16.2.2 christos
8144 1.16.2.2 christos use_mixerout = 1;
8145 1.16.2.2 christos if (port == 0) {
8146 1.16.2.2 christos if (ports->allports == 0)
8147 1.16.2.2 christos return 0; /* Allow this special case. */
8148 1.16.2.2 christos else if (ports->isdual) {
8149 1.16.2.2 christos if (ports->cur_port == -1) {
8150 1.16.2.2 christos return 0;
8151 1.16.2.2 christos } else {
8152 1.16.2.2 christos port = ports->aumask[ports->cur_port];
8153 1.16.2.2 christos ports->cur_port = -1;
8154 1.16.2.2 christos use_mixerout = 0;
8155 1.16.2.2 christos }
8156 1.16.2.2 christos }
8157 1.16.2.2 christos }
8158 1.16.2.2 christos if (ports->index == -1)
8159 1.16.2.2 christos return EINVAL;
8160 1.16.2.2 christos ct.dev = ports->index;
8161 1.16.2.2 christos if (ports->isenum) {
8162 1.16.2.2 christos if (port & (port-1))
8163 1.16.2.2 christos return EINVAL; /* Only one port allowed */
8164 1.16.2.2 christos ct.type = AUDIO_MIXER_ENUM;
8165 1.16.2.2 christos error = EINVAL;
8166 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8167 1.16.2.2 christos if (ports->aumask[i] == port) {
8168 1.16.2.2 christos if (ports->isdual && use_mixerout) {
8169 1.16.2.2 christos ct.un.ord = ports->mixerout;
8170 1.16.2.2 christos ports->cur_port = i;
8171 1.16.2.2 christos } else {
8172 1.16.2.2 christos ct.un.ord = ports->misel[i];
8173 1.16.2.2 christos }
8174 1.16.2.2 christos error = audio_set_port(sc, &ct);
8175 1.16.2.2 christos break;
8176 1.16.2.2 christos }
8177 1.16.2.2 christos } else {
8178 1.16.2.2 christos ct.type = AUDIO_MIXER_SET;
8179 1.16.2.2 christos ct.un.mask = 0;
8180 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8181 1.16.2.2 christos if (ports->aumask[i] & port)
8182 1.16.2.2 christos ct.un.mask |= ports->misel[i];
8183 1.16.2.2 christos if (port != 0 && ct.un.mask == 0)
8184 1.16.2.2 christos error = EINVAL;
8185 1.16.2.2 christos else
8186 1.16.2.2 christos error = audio_set_port(sc, &ct);
8187 1.16.2.2 christos }
8188 1.16.2.2 christos if (!error)
8189 1.16.2.2 christos mixer_signal(sc);
8190 1.16.2.2 christos return error;
8191 1.16.2.2 christos }
8192 1.16.2.2 christos
8193 1.16.2.2 christos /*
8194 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8195 1.16.2.2 christos */
8196 1.16.2.2 christos int
8197 1.16.2.2 christos au_get_port(struct audio_softc *sc, struct au_mixer_ports *ports)
8198 1.16.2.2 christos {
8199 1.16.2.2 christos mixer_ctrl_t ct;
8200 1.16.2.2 christos int i, aumask;
8201 1.16.2.2 christos
8202 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8203 1.16.2.2 christos KASSERT(sc->sc_exlock);
8204 1.16.2.2 christos
8205 1.16.2.2 christos if (ports->index == -1)
8206 1.16.2.2 christos return 0;
8207 1.16.2.2 christos ct.dev = ports->index;
8208 1.16.2.2 christos ct.type = ports->isenum ? AUDIO_MIXER_ENUM : AUDIO_MIXER_SET;
8209 1.16.2.2 christos if (audio_get_port(sc, &ct))
8210 1.16.2.2 christos return 0;
8211 1.16.2.2 christos aumask = 0;
8212 1.16.2.2 christos if (ports->isenum) {
8213 1.16.2.2 christos if (ports->isdual && ports->cur_port != -1) {
8214 1.16.2.2 christos if (ports->mixerout == ct.un.ord)
8215 1.16.2.2 christos aumask = ports->aumask[ports->cur_port];
8216 1.16.2.2 christos else
8217 1.16.2.2 christos ports->cur_port = -1;
8218 1.16.2.2 christos }
8219 1.16.2.2 christos if (aumask == 0)
8220 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8221 1.16.2.2 christos if (ports->misel[i] == ct.un.ord)
8222 1.16.2.2 christos aumask = ports->aumask[i];
8223 1.16.2.2 christos } else {
8224 1.16.2.2 christos for(i = 0; i < ports->nports; i++)
8225 1.16.2.2 christos if (ct.un.mask & ports->misel[i])
8226 1.16.2.2 christos aumask |= ports->aumask[i];
8227 1.16.2.2 christos }
8228 1.16.2.2 christos return aumask;
8229 1.16.2.2 christos }
8230 1.16.2.2 christos
8231 1.16.2.2 christos /*
8232 1.16.2.2 christos * It returns 0 if success, otherwise errno.
8233 1.16.2.2 christos * Must be called only if sc->sc_monitor_port != -1.
8234 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8235 1.16.2.2 christos */
8236 1.16.2.2 christos static int
8237 1.16.2.2 christos au_set_monitor_gain(struct audio_softc *sc, int monitor_gain)
8238 1.16.2.2 christos {
8239 1.16.2.2 christos mixer_ctrl_t ct;
8240 1.16.2.2 christos
8241 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8242 1.16.2.2 christos KASSERT(sc->sc_exlock);
8243 1.16.2.2 christos
8244 1.16.2.2 christos ct.dev = sc->sc_monitor_port;
8245 1.16.2.2 christos ct.type = AUDIO_MIXER_VALUE;
8246 1.16.2.2 christos ct.un.value.num_channels = 1;
8247 1.16.2.2 christos ct.un.value.level[AUDIO_MIXER_LEVEL_MONO] = monitor_gain;
8248 1.16.2.2 christos return audio_set_port(sc, &ct);
8249 1.16.2.2 christos }
8250 1.16.2.2 christos
8251 1.16.2.2 christos /*
8252 1.16.2.2 christos * It returns monitor gain if success, otherwise -1.
8253 1.16.2.2 christos * Must be called only if sc->sc_monitor_port != -1.
8254 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8255 1.16.2.2 christos */
8256 1.16.2.2 christos static int
8257 1.16.2.2 christos au_get_monitor_gain(struct audio_softc *sc)
8258 1.16.2.2 christos {
8259 1.16.2.2 christos mixer_ctrl_t ct;
8260 1.16.2.2 christos
8261 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8262 1.16.2.2 christos KASSERT(sc->sc_exlock);
8263 1.16.2.2 christos
8264 1.16.2.2 christos ct.dev = sc->sc_monitor_port;
8265 1.16.2.2 christos ct.type = AUDIO_MIXER_VALUE;
8266 1.16.2.2 christos ct.un.value.num_channels = 1;
8267 1.16.2.2 christos if (audio_get_port(sc, &ct))
8268 1.16.2.2 christos return -1;
8269 1.16.2.2 christos return ct.un.value.level[AUDIO_MIXER_LEVEL_MONO];
8270 1.16.2.2 christos }
8271 1.16.2.2 christos
8272 1.16.2.2 christos /*
8273 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8274 1.16.2.2 christos */
8275 1.16.2.2 christos static int
8276 1.16.2.2 christos audio_set_port(struct audio_softc *sc, mixer_ctrl_t *mc)
8277 1.16.2.2 christos {
8278 1.16.2.2 christos
8279 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8280 1.16.2.2 christos KASSERT(sc->sc_exlock);
8281 1.16.2.2 christos
8282 1.16.2.2 christos return sc->hw_if->set_port(sc->hw_hdl, mc);
8283 1.16.2.2 christos }
8284 1.16.2.2 christos
8285 1.16.2.2 christos /*
8286 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8287 1.16.2.2 christos */
8288 1.16.2.2 christos static int
8289 1.16.2.2 christos audio_get_port(struct audio_softc *sc, mixer_ctrl_t *mc)
8290 1.16.2.2 christos {
8291 1.16.2.2 christos
8292 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8293 1.16.2.2 christos KASSERT(sc->sc_exlock);
8294 1.16.2.2 christos
8295 1.16.2.2 christos return sc->hw_if->get_port(sc->hw_hdl, mc);
8296 1.16.2.2 christos }
8297 1.16.2.2 christos
8298 1.16.2.2 christos /*
8299 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8300 1.16.2.2 christos */
8301 1.16.2.2 christos static void
8302 1.16.2.2 christos audio_mixer_capture(struct audio_softc *sc)
8303 1.16.2.2 christos {
8304 1.16.2.2 christos mixer_devinfo_t mi;
8305 1.16.2.2 christos mixer_ctrl_t *mc;
8306 1.16.2.2 christos
8307 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8308 1.16.2.2 christos KASSERT(sc->sc_exlock);
8309 1.16.2.2 christos
8310 1.16.2.2 christos for (mi.index = 0;; mi.index++) {
8311 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) != 0)
8312 1.16.2.2 christos break;
8313 1.16.2.2 christos KASSERT(mi.index < sc->sc_nmixer_states);
8314 1.16.2.2 christos if (mi.type == AUDIO_MIXER_CLASS)
8315 1.16.2.2 christos continue;
8316 1.16.2.2 christos mc = &sc->sc_mixer_state[mi.index];
8317 1.16.2.2 christos mc->dev = mi.index;
8318 1.16.2.2 christos mc->type = mi.type;
8319 1.16.2.2 christos mc->un.value.num_channels = mi.un.v.num_channels;
8320 1.16.2.2 christos (void)audio_get_port(sc, mc);
8321 1.16.2.2 christos }
8322 1.16.2.2 christos
8323 1.16.2.2 christos return;
8324 1.16.2.2 christos }
8325 1.16.2.2 christos
8326 1.16.2.2 christos /*
8327 1.16.2.2 christos * Must be called with sc_lock && sc_exlock held.
8328 1.16.2.2 christos */
8329 1.16.2.2 christos static void
8330 1.16.2.2 christos audio_mixer_restore(struct audio_softc *sc)
8331 1.16.2.2 christos {
8332 1.16.2.2 christos mixer_devinfo_t mi;
8333 1.16.2.2 christos mixer_ctrl_t *mc;
8334 1.16.2.2 christos
8335 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8336 1.16.2.2 christos KASSERT(sc->sc_exlock);
8337 1.16.2.2 christos
8338 1.16.2.2 christos for (mi.index = 0; ; mi.index++) {
8339 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) != 0)
8340 1.16.2.2 christos break;
8341 1.16.2.2 christos if (mi.type == AUDIO_MIXER_CLASS)
8342 1.16.2.2 christos continue;
8343 1.16.2.2 christos mc = &sc->sc_mixer_state[mi.index];
8344 1.16.2.2 christos (void)audio_set_port(sc, mc);
8345 1.16.2.2 christos }
8346 1.16.2.2 christos if (sc->hw_if->commit_settings)
8347 1.16.2.2 christos sc->hw_if->commit_settings(sc->hw_hdl);
8348 1.16.2.2 christos
8349 1.16.2.2 christos return;
8350 1.16.2.2 christos }
8351 1.16.2.2 christos
8352 1.16.2.2 christos static void
8353 1.16.2.2 christos audio_volume_down(device_t dv)
8354 1.16.2.2 christos {
8355 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
8356 1.16.2.2 christos mixer_devinfo_t mi;
8357 1.16.2.2 christos int newgain;
8358 1.16.2.2 christos u_int gain;
8359 1.16.2.2 christos u_char balance;
8360 1.16.2.2 christos
8361 1.16.2.2 christos if (audio_enter_exclusive(sc) != 0)
8362 1.16.2.2 christos return;
8363 1.16.2.2 christos if (sc->sc_outports.index == -1 && sc->sc_outports.master != -1) {
8364 1.16.2.2 christos mi.index = sc->sc_outports.master;
8365 1.16.2.2 christos mi.un.v.delta = 0;
8366 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) == 0) {
8367 1.16.2.2 christos au_get_gain(sc, &sc->sc_outports, &gain, &balance);
8368 1.16.2.2 christos newgain = gain - mi.un.v.delta;
8369 1.16.2.2 christos if (newgain < AUDIO_MIN_GAIN)
8370 1.16.2.2 christos newgain = AUDIO_MIN_GAIN;
8371 1.16.2.2 christos au_set_gain(sc, &sc->sc_outports, newgain, balance);
8372 1.16.2.2 christos }
8373 1.16.2.2 christos }
8374 1.16.2.2 christos audio_exit_exclusive(sc);
8375 1.16.2.2 christos }
8376 1.16.2.2 christos
8377 1.16.2.2 christos static void
8378 1.16.2.2 christos audio_volume_up(device_t dv)
8379 1.16.2.2 christos {
8380 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
8381 1.16.2.2 christos mixer_devinfo_t mi;
8382 1.16.2.2 christos u_int gain, newgain;
8383 1.16.2.2 christos u_char balance;
8384 1.16.2.2 christos
8385 1.16.2.2 christos if (audio_enter_exclusive(sc) != 0)
8386 1.16.2.2 christos return;
8387 1.16.2.2 christos if (sc->sc_outports.index == -1 && sc->sc_outports.master != -1) {
8388 1.16.2.2 christos mi.index = sc->sc_outports.master;
8389 1.16.2.2 christos mi.un.v.delta = 0;
8390 1.16.2.2 christos if (audio_query_devinfo(sc, &mi) == 0) {
8391 1.16.2.2 christos au_get_gain(sc, &sc->sc_outports, &gain, &balance);
8392 1.16.2.2 christos newgain = gain + mi.un.v.delta;
8393 1.16.2.2 christos if (newgain > AUDIO_MAX_GAIN)
8394 1.16.2.2 christos newgain = AUDIO_MAX_GAIN;
8395 1.16.2.2 christos au_set_gain(sc, &sc->sc_outports, newgain, balance);
8396 1.16.2.2 christos }
8397 1.16.2.2 christos }
8398 1.16.2.2 christos audio_exit_exclusive(sc);
8399 1.16.2.2 christos }
8400 1.16.2.2 christos
8401 1.16.2.2 christos static void
8402 1.16.2.2 christos audio_volume_toggle(device_t dv)
8403 1.16.2.2 christos {
8404 1.16.2.2 christos struct audio_softc *sc = device_private(dv);
8405 1.16.2.2 christos u_int gain, newgain;
8406 1.16.2.2 christos u_char balance;
8407 1.16.2.2 christos
8408 1.16.2.2 christos if (audio_enter_exclusive(sc) != 0)
8409 1.16.2.2 christos return;
8410 1.16.2.2 christos au_get_gain(sc, &sc->sc_outports, &gain, &balance);
8411 1.16.2.2 christos if (gain != 0) {
8412 1.16.2.2 christos sc->sc_lastgain = gain;
8413 1.16.2.2 christos newgain = 0;
8414 1.16.2.2 christos } else
8415 1.16.2.2 christos newgain = sc->sc_lastgain;
8416 1.16.2.2 christos au_set_gain(sc, &sc->sc_outports, newgain, balance);
8417 1.16.2.2 christos audio_exit_exclusive(sc);
8418 1.16.2.2 christos }
8419 1.16.2.2 christos
8420 1.16.2.2 christos static int
8421 1.16.2.2 christos audio_query_devinfo(struct audio_softc *sc, mixer_devinfo_t *di)
8422 1.16.2.2 christos {
8423 1.16.2.2 christos
8424 1.16.2.2 christos KASSERT(mutex_owned(sc->sc_lock));
8425 1.16.2.2 christos
8426 1.16.2.2 christos return sc->hw_if->query_devinfo(sc->hw_hdl, di);
8427 1.16.2.2 christos }
8428 1.16.2.2 christos
8429 1.16.2.2 christos #endif /* NAUDIO > 0 */
8430 1.16.2.2 christos
8431 1.16.2.2 christos #if NAUDIO == 0 && (NMIDI > 0 || NMIDIBUS > 0)
8432 1.16.2.2 christos #include <sys/param.h>
8433 1.16.2.2 christos #include <sys/systm.h>
8434 1.16.2.2 christos #include <sys/device.h>
8435 1.16.2.2 christos #include <sys/audioio.h>
8436 1.16.2.2 christos #include <dev/audio/audio_if.h>
8437 1.16.2.2 christos #endif
8438 1.16.2.2 christos
8439 1.16.2.2 christos #if NAUDIO > 0 || (NMIDI > 0 || NMIDIBUS > 0)
8440 1.16.2.2 christos int
8441 1.16.2.2 christos audioprint(void *aux, const char *pnp)
8442 1.16.2.2 christos {
8443 1.16.2.2 christos struct audio_attach_args *arg;
8444 1.16.2.2 christos const char *type;
8445 1.16.2.2 christos
8446 1.16.2.2 christos if (pnp != NULL) {
8447 1.16.2.2 christos arg = aux;
8448 1.16.2.2 christos switch (arg->type) {
8449 1.16.2.2 christos case AUDIODEV_TYPE_AUDIO:
8450 1.16.2.2 christos type = "audio";
8451 1.16.2.2 christos break;
8452 1.16.2.2 christos case AUDIODEV_TYPE_MIDI:
8453 1.16.2.2 christos type = "midi";
8454 1.16.2.2 christos break;
8455 1.16.2.2 christos case AUDIODEV_TYPE_OPL:
8456 1.16.2.2 christos type = "opl";
8457 1.16.2.2 christos break;
8458 1.16.2.2 christos case AUDIODEV_TYPE_MPU:
8459 1.16.2.2 christos type = "mpu";
8460 1.16.2.2 christos break;
8461 1.16.2.2 christos default:
8462 1.16.2.2 christos panic("audioprint: unknown type %d", arg->type);
8463 1.16.2.2 christos }
8464 1.16.2.2 christos aprint_normal("%s at %s", type, pnp);
8465 1.16.2.2 christos }
8466 1.16.2.2 christos return UNCONF;
8467 1.16.2.2 christos }
8468 1.16.2.2 christos
8469 1.16.2.2 christos #endif /* NAUDIO > 0 || (NMIDI > 0 || NMIDIBUS > 0) */
8470 1.16.2.2 christos
8471 1.16.2.2 christos #ifdef _MODULE
8472 1.16.2.2 christos
8473 1.16.2.2 christos devmajor_t audio_bmajor = -1, audio_cmajor = -1;
8474 1.16.2.2 christos
8475 1.16.2.2 christos #include "ioconf.c"
8476 1.16.2.2 christos
8477 1.16.2.2 christos #endif
8478 1.16.2.2 christos
8479 1.16.2.2 christos MODULE(MODULE_CLASS_DRIVER, audio, NULL);
8480 1.16.2.2 christos
8481 1.16.2.2 christos static int
8482 1.16.2.2 christos audio_modcmd(modcmd_t cmd, void *arg)
8483 1.16.2.2 christos {
8484 1.16.2.2 christos int error = 0;
8485 1.16.2.2 christos
8486 1.16.2.2 christos #ifdef _MODULE
8487 1.16.2.2 christos switch (cmd) {
8488 1.16.2.2 christos case MODULE_CMD_INIT:
8489 1.16.2.2 christos error = devsw_attach(audio_cd.cd_name, NULL, &audio_bmajor,
8490 1.16.2.2 christos &audio_cdevsw, &audio_cmajor);
8491 1.16.2.2 christos if (error)
8492 1.16.2.2 christos break;
8493 1.16.2.2 christos
8494 1.16.2.2 christos error = config_init_component(cfdriver_ioconf_audio,
8495 1.16.2.2 christos cfattach_ioconf_audio, cfdata_ioconf_audio);
8496 1.16.2.2 christos if (error) {
8497 1.16.2.2 christos devsw_detach(NULL, &audio_cdevsw);
8498 1.16.2.2 christos }
8499 1.16.2.2 christos break;
8500 1.16.2.2 christos case MODULE_CMD_FINI:
8501 1.16.2.2 christos devsw_detach(NULL, &audio_cdevsw);
8502 1.16.2.2 christos error = config_fini_component(cfdriver_ioconf_audio,
8503 1.16.2.2 christos cfattach_ioconf_audio, cfdata_ioconf_audio);
8504 1.16.2.2 christos if (error)
8505 1.16.2.2 christos devsw_attach(audio_cd.cd_name, NULL, &audio_bmajor,
8506 1.16.2.2 christos &audio_cdevsw, &audio_cmajor);
8507 1.16.2.2 christos break;
8508 1.16.2.2 christos default:
8509 1.16.2.2 christos error = ENOTTY;
8510 1.16.2.2 christos break;
8511 1.16.2.2 christos }
8512 1.16.2.2 christos #endif
8513 1.16.2.2 christos
8514 1.16.2.2 christos return error;
8515 1.16.2.2 christos }
8516