pad.c revision 1.29 1 1.29 nat /* $NetBSD: pad.c,v 1.29 2017/05/27 10:02:26 nat Exp $ */
2 1.1 jmcneill
3 1.1 jmcneill /*-
4 1.1 jmcneill * Copyright (c) 2007 Jared D. McNeill <jmcneill (at) invisible.ca>
5 1.1 jmcneill * All rights reserved.
6 1.1 jmcneill *
7 1.1 jmcneill * Redistribution and use in source and binary forms, with or without
8 1.1 jmcneill * modification, are permitted provided that the following conditions
9 1.1 jmcneill * are met:
10 1.1 jmcneill * 1. Redistributions of source code must retain the above copyright
11 1.1 jmcneill * notice, this list of conditions and the following disclaimer.
12 1.1 jmcneill * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 jmcneill * notice, this list of conditions and the following disclaimer in the
14 1.1 jmcneill * documentation and/or other materials provided with the distribution.
15 1.1 jmcneill *
16 1.1 jmcneill * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
17 1.1 jmcneill * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.1 jmcneill * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.1 jmcneill * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
20 1.1 jmcneill * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 1.1 jmcneill * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 1.1 jmcneill * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 1.1 jmcneill * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 1.1 jmcneill * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 1.1 jmcneill * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26 1.1 jmcneill * POSSIBILITY OF SUCH DAMAGE.
27 1.1 jmcneill */
28 1.1 jmcneill
29 1.1 jmcneill #include <sys/cdefs.h>
30 1.29 nat __KERNEL_RCSID(0, "$NetBSD: pad.c,v 1.29 2017/05/27 10:02:26 nat Exp $");
31 1.1 jmcneill
32 1.1 jmcneill #include <sys/types.h>
33 1.1 jmcneill #include <sys/param.h>
34 1.1 jmcneill #include <sys/conf.h>
35 1.1 jmcneill #include <sys/buf.h>
36 1.1 jmcneill #include <sys/kmem.h>
37 1.1 jmcneill #include <sys/kernel.h>
38 1.1 jmcneill #include <sys/device.h>
39 1.1 jmcneill #include <sys/proc.h>
40 1.1 jmcneill #include <sys/condvar.h>
41 1.1 jmcneill #include <sys/select.h>
42 1.1 jmcneill #include <sys/audioio.h>
43 1.5 dyoung #include <sys/vnode.h>
44 1.13 ahoka #include <sys/module.h>
45 1.17 jmcneill #include <sys/atomic.h>
46 1.24 nat #include <sys/time.h>
47 1.1 jmcneill
48 1.1 jmcneill #include <dev/audio_if.h>
49 1.1 jmcneill #include <dev/audiovar.h>
50 1.1 jmcneill #include <dev/auconv.h>
51 1.22 jmcneill #include <dev/auvolconv.h>
52 1.1 jmcneill
53 1.2 jmcneill #include <dev/pad/padvar.h>
54 1.2 jmcneill
55 1.1 jmcneill #define PADUNIT(x) minor(x)
56 1.1 jmcneill
57 1.1 jmcneill extern struct cfdriver pad_cd;
58 1.1 jmcneill
59 1.1 jmcneill typedef struct pad_block {
60 1.1 jmcneill uint8_t *pb_ptr;
61 1.1 jmcneill int pb_len;
62 1.1 jmcneill } pad_block_t;
63 1.1 jmcneill
64 1.2 jmcneill enum {
65 1.2 jmcneill PAD_OUTPUT_CLASS,
66 1.2 jmcneill PAD_INPUT_CLASS,
67 1.2 jmcneill PAD_OUTPUT_MASTER_VOLUME,
68 1.2 jmcneill PAD_INPUT_DAC_VOLUME,
69 1.2 jmcneill PAD_ENUM_LAST,
70 1.2 jmcneill };
71 1.1 jmcneill
72 1.10 christos static int pad_match(device_t, cfdata_t, void *);
73 1.5 dyoung static void pad_attach(device_t, device_t, void *);
74 1.5 dyoung static int pad_detach(device_t, int);
75 1.5 dyoung static void pad_childdet(device_t, device_t);
76 1.1 jmcneill
77 1.26 nat static int pad_audio_open(void *, int);
78 1.1 jmcneill static int pad_query_encoding(void *, struct audio_encoding *);
79 1.1 jmcneill static int pad_set_params(void *, int, int,
80 1.1 jmcneill audio_params_t *, audio_params_t *,
81 1.1 jmcneill stream_filter_list_t *, stream_filter_list_t *);
82 1.1 jmcneill static int pad_start_output(void *, void *, int,
83 1.1 jmcneill void (*)(void *), void *);
84 1.1 jmcneill static int pad_start_input(void *, void *, int,
85 1.1 jmcneill void (*)(void *), void *);
86 1.1 jmcneill static int pad_halt_output(void *);
87 1.1 jmcneill static int pad_halt_input(void *);
88 1.1 jmcneill static int pad_getdev(void *, struct audio_device *);
89 1.1 jmcneill static int pad_set_port(void *, mixer_ctrl_t *);
90 1.1 jmcneill static int pad_get_port(void *, mixer_ctrl_t *);
91 1.1 jmcneill static int pad_query_devinfo(void *, mixer_devinfo_t *);
92 1.1 jmcneill static int pad_get_props(void *);
93 1.1 jmcneill static int pad_round_blocksize(void *, int, int, const audio_params_t *);
94 1.17 jmcneill static void pad_get_locks(void *, kmutex_t **, kmutex_t **);
95 1.1 jmcneill
96 1.22 jmcneill static stream_filter_t *pad_swvol_filter_le(struct audio_softc *,
97 1.22 jmcneill const audio_params_t *, const audio_params_t *);
98 1.22 jmcneill static stream_filter_t *pad_swvol_filter_be(struct audio_softc *,
99 1.22 jmcneill const audio_params_t *, const audio_params_t *);
100 1.22 jmcneill static void pad_swvol_dtor(stream_filter_t *);
101 1.22 jmcneill
102 1.1 jmcneill static const struct audio_hw_if pad_hw_if = {
103 1.26 nat .open = pad_audio_open,
104 1.1 jmcneill .query_encoding = pad_query_encoding,
105 1.1 jmcneill .set_params = pad_set_params,
106 1.1 jmcneill .start_output = pad_start_output,
107 1.1 jmcneill .start_input = pad_start_input,
108 1.1 jmcneill .halt_output = pad_halt_output,
109 1.1 jmcneill .halt_input = pad_halt_input,
110 1.1 jmcneill .getdev = pad_getdev,
111 1.1 jmcneill .set_port = pad_set_port,
112 1.1 jmcneill .get_port = pad_get_port,
113 1.1 jmcneill .query_devinfo = pad_query_devinfo,
114 1.1 jmcneill .get_props = pad_get_props,
115 1.1 jmcneill .round_blocksize = pad_round_blocksize,
116 1.17 jmcneill .get_locks = pad_get_locks,
117 1.1 jmcneill };
118 1.1 jmcneill
119 1.1 jmcneill #define PAD_NFORMATS 1
120 1.1 jmcneill static const struct audio_format pad_formats[PAD_NFORMATS] = {
121 1.1 jmcneill { NULL, AUMODE_PLAY|AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 16, 16,
122 1.1 jmcneill 2, AUFMT_STEREO, 1, { 44100 } },
123 1.1 jmcneill };
124 1.1 jmcneill
125 1.1 jmcneill extern void padattach(int);
126 1.1 jmcneill
127 1.25 msaitoh static int pad_add_block(pad_softc_t *, uint8_t *, int);
128 1.25 msaitoh static int pad_get_block(pad_softc_t *, pad_block_t *, int);
129 1.1 jmcneill
130 1.1 jmcneill dev_type_open(pad_open);
131 1.1 jmcneill dev_type_close(pad_close);
132 1.1 jmcneill dev_type_read(pad_read);
133 1.1 jmcneill
134 1.1 jmcneill const struct cdevsw pad_cdevsw = {
135 1.1 jmcneill .d_open = pad_open,
136 1.1 jmcneill .d_close = pad_close,
137 1.1 jmcneill .d_read = pad_read,
138 1.1 jmcneill .d_write = nowrite,
139 1.1 jmcneill .d_ioctl = noioctl,
140 1.1 jmcneill .d_stop = nostop,
141 1.1 jmcneill .d_tty = notty,
142 1.1 jmcneill .d_poll = nopoll,
143 1.1 jmcneill .d_mmap = nommap,
144 1.1 jmcneill .d_kqfilter = nokqfilter,
145 1.21 dholland .d_discard = nodiscard,
146 1.17 jmcneill .d_flag = D_OTHER | D_MPSAFE,
147 1.1 jmcneill };
148 1.1 jmcneill
149 1.10 christos CFATTACH_DECL2_NEW(pad, sizeof(pad_softc_t), pad_match, pad_attach, pad_detach,
150 1.5 dyoung NULL, NULL, pad_childdet);
151 1.1 jmcneill
152 1.1 jmcneill void
153 1.1 jmcneill padattach(int n)
154 1.1 jmcneill {
155 1.1 jmcneill int i, err;
156 1.10 christos cfdata_t cf;
157 1.1 jmcneill
158 1.11 ad aprint_debug("pad: requested %d units\n", n);
159 1.1 jmcneill
160 1.1 jmcneill err = config_cfattach_attach(pad_cd.cd_name, &pad_ca);
161 1.1 jmcneill if (err) {
162 1.1 jmcneill aprint_error("%s: couldn't register cfattach: %d\n",
163 1.1 jmcneill pad_cd.cd_name, err);
164 1.1 jmcneill config_cfdriver_detach(&pad_cd);
165 1.1 jmcneill return;
166 1.1 jmcneill }
167 1.1 jmcneill
168 1.1 jmcneill for (i = 0; i < n; i++) {
169 1.17 jmcneill cf = kmem_alloc(sizeof(struct cfdata), KM_SLEEP);
170 1.1 jmcneill if (cf == NULL) {
171 1.1 jmcneill aprint_error("%s: couldn't allocate cfdata\n",
172 1.1 jmcneill pad_cd.cd_name);
173 1.1 jmcneill continue;
174 1.1 jmcneill }
175 1.1 jmcneill cf->cf_name = pad_cd.cd_name;
176 1.1 jmcneill cf->cf_atname = pad_cd.cd_name;
177 1.1 jmcneill cf->cf_unit = i;
178 1.1 jmcneill cf->cf_fstate = FSTATE_STAR;
179 1.1 jmcneill
180 1.1 jmcneill (void)config_attach_pseudo(cf);
181 1.1 jmcneill }
182 1.1 jmcneill
183 1.1 jmcneill return;
184 1.1 jmcneill }
185 1.1 jmcneill
186 1.1 jmcneill static int
187 1.1 jmcneill pad_add_block(pad_softc_t *sc, uint8_t *blk, int blksize)
188 1.1 jmcneill {
189 1.1 jmcneill int l;
190 1.1 jmcneill
191 1.16 jmcneill if (sc->sc_open == 0)
192 1.16 jmcneill return EIO;
193 1.16 jmcneill
194 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
195 1.17 jmcneill
196 1.1 jmcneill if (sc->sc_buflen + blksize > PAD_BUFSIZE)
197 1.1 jmcneill return ENOBUFS;
198 1.1 jmcneill
199 1.1 jmcneill if (sc->sc_wpos + blksize <= PAD_BUFSIZE)
200 1.1 jmcneill memcpy(sc->sc_audiobuf + sc->sc_wpos, blk, blksize);
201 1.1 jmcneill else {
202 1.1 jmcneill l = PAD_BUFSIZE - sc->sc_wpos;
203 1.1 jmcneill memcpy(sc->sc_audiobuf + sc->sc_wpos, blk, l);
204 1.1 jmcneill memcpy(sc->sc_audiobuf, blk + l, blksize - l);
205 1.1 jmcneill }
206 1.1 jmcneill
207 1.1 jmcneill sc->sc_wpos += blksize;
208 1.1 jmcneill if (sc->sc_wpos > PAD_BUFSIZE)
209 1.1 jmcneill sc->sc_wpos -= PAD_BUFSIZE;
210 1.1 jmcneill
211 1.1 jmcneill sc->sc_buflen += blksize;
212 1.1 jmcneill
213 1.1 jmcneill return 0;
214 1.1 jmcneill }
215 1.1 jmcneill
216 1.1 jmcneill static int
217 1.1 jmcneill pad_get_block(pad_softc_t *sc, pad_block_t *pb, int blksize)
218 1.1 jmcneill {
219 1.1 jmcneill int l;
220 1.1 jmcneill
221 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
222 1.1 jmcneill KASSERT(pb != NULL);
223 1.1 jmcneill
224 1.1 jmcneill if (sc->sc_buflen < blksize)
225 1.1 jmcneill return ERESTART;
226 1.1 jmcneill
227 1.1 jmcneill pb->pb_ptr = (sc->sc_audiobuf + sc->sc_rpos);
228 1.1 jmcneill if (sc->sc_rpos + blksize < PAD_BUFSIZE) {
229 1.1 jmcneill pb->pb_len = blksize;
230 1.1 jmcneill sc->sc_rpos += blksize;
231 1.1 jmcneill } else {
232 1.1 jmcneill l = PAD_BUFSIZE - sc->sc_rpos;
233 1.1 jmcneill pb->pb_len = l;
234 1.1 jmcneill sc->sc_rpos = 0;
235 1.1 jmcneill }
236 1.1 jmcneill sc->sc_buflen -= pb->pb_len;
237 1.1 jmcneill
238 1.1 jmcneill return 0;
239 1.1 jmcneill }
240 1.1 jmcneill
241 1.1 jmcneill static int
242 1.10 christos pad_match(device_t parent, cfdata_t data, void *opaque)
243 1.1 jmcneill {
244 1.17 jmcneill
245 1.1 jmcneill return 1;
246 1.1 jmcneill }
247 1.1 jmcneill
248 1.1 jmcneill static void
249 1.5 dyoung pad_childdet(device_t self, device_t child)
250 1.1 jmcneill {
251 1.5 dyoung pad_softc_t *sc = device_private(self);
252 1.5 dyoung
253 1.5 dyoung sc->sc_audiodev = NULL;
254 1.5 dyoung }
255 1.1 jmcneill
256 1.5 dyoung static void
257 1.5 dyoung pad_attach(device_t parent, device_t self, void *opaque)
258 1.5 dyoung {
259 1.5 dyoung pad_softc_t *sc = device_private(self);
260 1.1 jmcneill
261 1.1 jmcneill aprint_normal_dev(self, "outputs: 44100Hz, 16-bit, stereo\n");
262 1.1 jmcneill
263 1.10 christos sc->sc_dev = self;
264 1.1 jmcneill sc->sc_open = 0;
265 1.1 jmcneill if (auconv_create_encodings(pad_formats, PAD_NFORMATS,
266 1.1 jmcneill &sc->sc_encodings) != 0) {
267 1.1 jmcneill aprint_error_dev(self, "couldn't create encodings\n");
268 1.1 jmcneill return;
269 1.1 jmcneill }
270 1.1 jmcneill
271 1.1 jmcneill cv_init(&sc->sc_condvar, device_xname(self));
272 1.17 jmcneill mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_NONE);
273 1.17 jmcneill mutex_init(&sc->sc_intr_lock, MUTEX_DEFAULT, IPL_NONE);
274 1.1 jmcneill
275 1.2 jmcneill sc->sc_swvol = 255;
276 1.1 jmcneill sc->sc_buflen = 0;
277 1.1 jmcneill sc->sc_rpos = sc->sc_wpos = 0;
278 1.10 christos sc->sc_audiodev = (void *)audio_attach_mi(&pad_hw_if, sc, sc->sc_dev);
279 1.1 jmcneill
280 1.4 jmcneill if (!pmf_device_register(self, NULL, NULL))
281 1.4 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
282 1.4 jmcneill
283 1.1 jmcneill return;
284 1.1 jmcneill }
285 1.1 jmcneill
286 1.5 dyoung static int
287 1.5 dyoung pad_detach(device_t self, int flags)
288 1.5 dyoung {
289 1.5 dyoung pad_softc_t *sc = device_private(self);
290 1.5 dyoung int cmaj, mn, rc;
291 1.5 dyoung
292 1.5 dyoung cmaj = cdevsw_lookup_major(&pad_cdevsw);
293 1.5 dyoung mn = device_unit(self);
294 1.5 dyoung vdevgone(cmaj, mn, mn, VCHR);
295 1.5 dyoung
296 1.5 dyoung if ((rc = config_detach_children(self, flags)) != 0)
297 1.5 dyoung return rc;
298 1.5 dyoung
299 1.5 dyoung pmf_device_deregister(self);
300 1.5 dyoung
301 1.17 jmcneill mutex_destroy(&sc->sc_lock);
302 1.17 jmcneill mutex_destroy(&sc->sc_intr_lock);
303 1.5 dyoung cv_destroy(&sc->sc_condvar);
304 1.5 dyoung
305 1.5 dyoung auconv_delete_encodings(sc->sc_encodings);
306 1.5 dyoung
307 1.5 dyoung return 0;
308 1.5 dyoung }
309 1.5 dyoung
310 1.1 jmcneill int
311 1.1 jmcneill pad_open(dev_t dev, int flags, int fmt, struct lwp *l)
312 1.1 jmcneill {
313 1.1 jmcneill pad_softc_t *sc;
314 1.1 jmcneill
315 1.8 tsutsui sc = device_lookup_private(&pad_cd, PADUNIT(dev));
316 1.1 jmcneill if (sc == NULL)
317 1.12 dyoung return ENXIO;
318 1.1 jmcneill
319 1.17 jmcneill if (atomic_swap_uint(&sc->sc_open, 1) != 0) {
320 1.1 jmcneill return EBUSY;
321 1.1 jmcneill }
322 1.24 nat
323 1.24 nat getmicrotime(&sc->sc_last);
324 1.29 nat sc->sc_bytes_count = 0;
325 1.29 nat sc->sc_remainder = 0;
326 1.1 jmcneill
327 1.1 jmcneill return 0;
328 1.1 jmcneill }
329 1.1 jmcneill
330 1.1 jmcneill int
331 1.1 jmcneill pad_close(dev_t dev, int flags, int fmt, struct lwp *l)
332 1.1 jmcneill {
333 1.1 jmcneill pad_softc_t *sc;
334 1.1 jmcneill
335 1.8 tsutsui sc = device_lookup_private(&pad_cd, PADUNIT(dev));
336 1.1 jmcneill if (sc == NULL)
337 1.12 dyoung return ENXIO;
338 1.1 jmcneill
339 1.1 jmcneill KASSERT(sc->sc_open > 0);
340 1.17 jmcneill sc->sc_open = 0;
341 1.1 jmcneill
342 1.1 jmcneill return 0;
343 1.1 jmcneill }
344 1.1 jmcneill
345 1.29 nat #define PAD_BYTES_PER_SEC (44100 * sizeof(int16_t) * 2)
346 1.29 nat #define TIMENEXTREAD (PAD_BLKSIZE * 1000000 / PAD_BYTES_PER_SEC)
347 1.29 nat #define BYTESTOSLEEP (PAD_BLKSIZE)
348 1.24 nat
349 1.1 jmcneill int
350 1.1 jmcneill pad_read(dev_t dev, struct uio *uio, int flags)
351 1.1 jmcneill {
352 1.24 nat struct timeval now;
353 1.24 nat uint64_t nowusec, lastusec;
354 1.1 jmcneill pad_softc_t *sc;
355 1.1 jmcneill pad_block_t pb;
356 1.1 jmcneill void (*intr)(void *);
357 1.1 jmcneill void *intrarg;
358 1.24 nat int err, wait_ticks;
359 1.1 jmcneill
360 1.8 tsutsui sc = device_lookup_private(&pad_cd, PADUNIT(dev));
361 1.1 jmcneill if (sc == NULL)
362 1.12 dyoung return ENXIO;
363 1.1 jmcneill
364 1.1 jmcneill err = 0;
365 1.1 jmcneill
366 1.27 nat while (uio->uio_resid > 0 && !err) {
367 1.27 nat mutex_enter(&sc->sc_lock);
368 1.27 nat intr = sc->sc_intr;
369 1.27 nat intrarg = sc->sc_intrarg;
370 1.1 jmcneill
371 1.24 nat getmicrotime(&now);
372 1.24 nat nowusec = (now.tv_sec * 1000000) + now.tv_usec;
373 1.24 nat lastusec = (sc->sc_last.tv_sec * 1000000) +
374 1.24 nat sc->sc_last.tv_usec;
375 1.29 nat if (lastusec + TIMENEXTREAD > nowusec &&
376 1.29 nat sc->sc_bytes_count >= BYTESTOSLEEP) {
377 1.29 nat sc->sc_remainder +=
378 1.29 nat ((lastusec + TIMENEXTREAD) - nowusec);
379 1.29 nat
380 1.29 nat wait_ticks = (hz * sc->sc_remainder) / 1000000;
381 1.24 nat if (wait_ticks > 0) {
382 1.29 nat sc->sc_remainder -= wait_ticks * 1000000 / hz;
383 1.24 nat kpause("padwait", TRUE, wait_ticks,
384 1.28 nat &sc->sc_lock);
385 1.24 nat }
386 1.29 nat
387 1.29 nat sc->sc_bytes_count -= BYTESTOSLEEP;
388 1.29 nat getmicrotime(&sc->sc_last);
389 1.29 nat } else if (sc->sc_bytes_count >= BYTESTOSLEEP) {
390 1.29 nat sc->sc_bytes_count -= BYTESTOSLEEP;
391 1.29 nat getmicrotime(&sc->sc_last);
392 1.29 nat } else if (lastusec + TIMENEXTREAD <= nowusec) {
393 1.29 nat getmicrotime(&sc->sc_last);
394 1.29 nat sc->sc_remainder = 0;
395 1.28 nat }
396 1.29 nat
397 1.1 jmcneill err = pad_get_block(sc, &pb, min(uio->uio_resid, PAD_BLKSIZE));
398 1.17 jmcneill if (!err) {
399 1.17 jmcneill mutex_exit(&sc->sc_lock);
400 1.1 jmcneill err = uiomove(pb.pb_ptr, pb.pb_len, uio);
401 1.17 jmcneill continue;
402 1.17 jmcneill }
403 1.1 jmcneill
404 1.17 jmcneill if (intr) {
405 1.17 jmcneill mutex_enter(&sc->sc_intr_lock);
406 1.24 nat kpreempt_disable();
407 1.17 jmcneill (*intr)(intrarg);
408 1.24 nat kpreempt_enable();
409 1.17 jmcneill mutex_exit(&sc->sc_intr_lock);
410 1.1 jmcneill intr = sc->sc_intr;
411 1.1 jmcneill intrarg = sc->sc_intrarg;
412 1.1 jmcneill err = 0;
413 1.27 nat mutex_exit(&sc->sc_lock);
414 1.17 jmcneill continue;
415 1.17 jmcneill }
416 1.17 jmcneill err = cv_wait_sig(&sc->sc_condvar, &sc->sc_lock);
417 1.27 nat if (err != 0) {
418 1.27 nat mutex_exit(&sc->sc_lock);
419 1.24 nat break;
420 1.27 nat }
421 1.24 nat
422 1.27 nat mutex_exit(&sc->sc_lock);
423 1.1 jmcneill }
424 1.1 jmcneill
425 1.1 jmcneill return err;
426 1.1 jmcneill }
427 1.1 jmcneill
428 1.1 jmcneill static int
429 1.26 nat pad_audio_open(void *opaque, int flags)
430 1.26 nat {
431 1.26 nat pad_softc_t *sc;
432 1.26 nat sc = opaque;
433 1.26 nat
434 1.26 nat if (sc->sc_open == 0)
435 1.26 nat return EIO;
436 1.26 nat
437 1.26 nat getmicrotime(&sc->sc_last);
438 1.29 nat sc->sc_remainder = 0;
439 1.29 nat
440 1.26 nat return 0;
441 1.26 nat }
442 1.26 nat
443 1.26 nat static int
444 1.1 jmcneill pad_query_encoding(void *opaque, struct audio_encoding *ae)
445 1.1 jmcneill {
446 1.1 jmcneill pad_softc_t *sc;
447 1.1 jmcneill
448 1.1 jmcneill sc = (pad_softc_t *)opaque;
449 1.1 jmcneill
450 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
451 1.17 jmcneill
452 1.1 jmcneill return auconv_query_encoding(sc->sc_encodings, ae);
453 1.1 jmcneill }
454 1.1 jmcneill
455 1.1 jmcneill static int
456 1.1 jmcneill pad_set_params(void *opaque, int setmode, int usemode,
457 1.1 jmcneill audio_params_t *play, audio_params_t *rec,
458 1.1 jmcneill stream_filter_list_t *pfil, stream_filter_list_t *rfil)
459 1.1 jmcneill {
460 1.20 christos pad_softc_t *sc __diagused;
461 1.1 jmcneill
462 1.1 jmcneill sc = (pad_softc_t *)opaque;
463 1.1 jmcneill
464 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
465 1.17 jmcneill
466 1.1 jmcneill if (auconv_set_converter(pad_formats, PAD_NFORMATS, AUMODE_PLAY,
467 1.1 jmcneill play, true, pfil) < 0)
468 1.1 jmcneill return EINVAL;
469 1.1 jmcneill if (auconv_set_converter(pad_formats, PAD_NFORMATS, AUMODE_RECORD,
470 1.1 jmcneill rec, true, rfil) < 0)
471 1.1 jmcneill return EINVAL;
472 1.1 jmcneill
473 1.2 jmcneill if (pfil->req_size > 0)
474 1.2 jmcneill play = &pfil->filters[0].param;
475 1.2 jmcneill switch (play->encoding) {
476 1.2 jmcneill case AUDIO_ENCODING_SLINEAR_LE:
477 1.2 jmcneill if (play->precision == 16 && play->validbits == 16)
478 1.22 jmcneill pfil->prepend(pfil, pad_swvol_filter_le, play);
479 1.2 jmcneill break;
480 1.2 jmcneill case AUDIO_ENCODING_SLINEAR_BE:
481 1.2 jmcneill if (play->precision == 16 && play->validbits == 16)
482 1.22 jmcneill pfil->prepend(pfil, pad_swvol_filter_be, play);
483 1.2 jmcneill break;
484 1.2 jmcneill default:
485 1.2 jmcneill break;
486 1.2 jmcneill }
487 1.2 jmcneill
488 1.1 jmcneill return 0;
489 1.1 jmcneill }
490 1.1 jmcneill
491 1.1 jmcneill static int
492 1.1 jmcneill pad_start_output(void *opaque, void *block, int blksize,
493 1.1 jmcneill void (*intr)(void *), void *intrarg)
494 1.1 jmcneill {
495 1.1 jmcneill pad_softc_t *sc;
496 1.1 jmcneill int err;
497 1.1 jmcneill
498 1.1 jmcneill sc = (pad_softc_t *)opaque;
499 1.1 jmcneill
500 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
501 1.26 nat if (!sc->sc_open)
502 1.26 nat return EIO;
503 1.1 jmcneill
504 1.1 jmcneill sc->sc_intr = intr;
505 1.1 jmcneill sc->sc_intrarg = intrarg;
506 1.1 jmcneill sc->sc_blksize = blksize;
507 1.1 jmcneill
508 1.1 jmcneill err = pad_add_block(sc, block, blksize);
509 1.1 jmcneill
510 1.17 jmcneill cv_broadcast(&sc->sc_condvar);
511 1.1 jmcneill
512 1.1 jmcneill return err;
513 1.1 jmcneill }
514 1.1 jmcneill
515 1.1 jmcneill static int
516 1.1 jmcneill pad_start_input(void *opaque, void *block, int blksize,
517 1.1 jmcneill void (*intr)(void *), void *intrarg)
518 1.1 jmcneill {
519 1.20 christos pad_softc_t *sc __diagused;
520 1.17 jmcneill
521 1.17 jmcneill sc = (pad_softc_t *)opaque;
522 1.17 jmcneill
523 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
524 1.17 jmcneill
525 1.17 jmcneill return EOPNOTSUPP;
526 1.1 jmcneill }
527 1.1 jmcneill
528 1.1 jmcneill static int
529 1.1 jmcneill pad_halt_output(void *opaque)
530 1.1 jmcneill {
531 1.1 jmcneill pad_softc_t *sc;
532 1.1 jmcneill
533 1.1 jmcneill sc = (pad_softc_t *)opaque;
534 1.17 jmcneill
535 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
536 1.17 jmcneill
537 1.1 jmcneill sc->sc_intr = NULL;
538 1.1 jmcneill sc->sc_intrarg = NULL;
539 1.1 jmcneill sc->sc_buflen = 0;
540 1.1 jmcneill sc->sc_rpos = sc->sc_wpos = 0;
541 1.1 jmcneill
542 1.1 jmcneill return 0;
543 1.1 jmcneill }
544 1.1 jmcneill
545 1.1 jmcneill static int
546 1.1 jmcneill pad_halt_input(void *opaque)
547 1.1 jmcneill {
548 1.20 christos pad_softc_t *sc __diagused;
549 1.17 jmcneill
550 1.17 jmcneill sc = (pad_softc_t *)opaque;
551 1.17 jmcneill
552 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
553 1.17 jmcneill
554 1.1 jmcneill return 0;
555 1.1 jmcneill }
556 1.1 jmcneill
557 1.1 jmcneill static int
558 1.1 jmcneill pad_getdev(void *opaque, struct audio_device *ret)
559 1.1 jmcneill {
560 1.16 jmcneill strlcpy(ret->name, "Virtual Audio", sizeof(ret->name));
561 1.16 jmcneill strlcpy(ret->version, osrelease, sizeof(ret->version));
562 1.16 jmcneill strlcpy(ret->config, "pad", sizeof(ret->config));
563 1.1 jmcneill
564 1.1 jmcneill return 0;
565 1.1 jmcneill }
566 1.1 jmcneill
567 1.1 jmcneill static int
568 1.1 jmcneill pad_set_port(void *opaque, mixer_ctrl_t *mc)
569 1.1 jmcneill {
570 1.2 jmcneill pad_softc_t *sc;
571 1.2 jmcneill
572 1.2 jmcneill sc = (pad_softc_t *)opaque;
573 1.2 jmcneill
574 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
575 1.17 jmcneill
576 1.2 jmcneill switch (mc->dev) {
577 1.2 jmcneill case PAD_OUTPUT_MASTER_VOLUME:
578 1.2 jmcneill case PAD_INPUT_DAC_VOLUME:
579 1.2 jmcneill sc->sc_swvol = mc->un.value.level[AUDIO_MIXER_LEVEL_MONO];
580 1.2 jmcneill return 0;
581 1.2 jmcneill }
582 1.2 jmcneill
583 1.1 jmcneill return ENXIO;
584 1.1 jmcneill }
585 1.1 jmcneill
586 1.1 jmcneill static int
587 1.1 jmcneill pad_get_port(void *opaque, mixer_ctrl_t *mc)
588 1.1 jmcneill {
589 1.2 jmcneill pad_softc_t *sc;
590 1.2 jmcneill
591 1.2 jmcneill sc = (pad_softc_t *)opaque;
592 1.2 jmcneill
593 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
594 1.17 jmcneill
595 1.2 jmcneill switch (mc->dev) {
596 1.2 jmcneill case PAD_OUTPUT_MASTER_VOLUME:
597 1.2 jmcneill case PAD_INPUT_DAC_VOLUME:
598 1.2 jmcneill mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] = sc->sc_swvol;
599 1.2 jmcneill return 0;
600 1.2 jmcneill }
601 1.2 jmcneill
602 1.1 jmcneill return ENXIO;
603 1.1 jmcneill }
604 1.1 jmcneill
605 1.1 jmcneill static int
606 1.1 jmcneill pad_query_devinfo(void *opaque, mixer_devinfo_t *di)
607 1.1 jmcneill {
608 1.20 christos pad_softc_t *sc __diagused;
609 1.2 jmcneill
610 1.2 jmcneill sc = (pad_softc_t *)opaque;
611 1.2 jmcneill
612 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
613 1.17 jmcneill
614 1.2 jmcneill switch (di->index) {
615 1.2 jmcneill case PAD_OUTPUT_CLASS:
616 1.2 jmcneill di->mixer_class = PAD_OUTPUT_CLASS;
617 1.2 jmcneill strcpy(di->label.name, AudioCoutputs);
618 1.2 jmcneill di->type = AUDIO_MIXER_CLASS;
619 1.2 jmcneill di->next = di->prev = AUDIO_MIXER_LAST;
620 1.2 jmcneill return 0;
621 1.2 jmcneill case PAD_INPUT_CLASS:
622 1.2 jmcneill di->mixer_class = PAD_INPUT_CLASS;
623 1.2 jmcneill strcpy(di->label.name, AudioCinputs);
624 1.2 jmcneill di->type = AUDIO_MIXER_CLASS;
625 1.2 jmcneill di->next = di->prev = AUDIO_MIXER_LAST;
626 1.2 jmcneill return 0;
627 1.2 jmcneill case PAD_OUTPUT_MASTER_VOLUME:
628 1.2 jmcneill di->mixer_class = PAD_OUTPUT_CLASS;
629 1.2 jmcneill strcpy(di->label.name, AudioNmaster);
630 1.2 jmcneill di->type = AUDIO_MIXER_VALUE;
631 1.2 jmcneill di->next = di->prev = AUDIO_MIXER_LAST;
632 1.2 jmcneill di->un.v.num_channels = 1;
633 1.2 jmcneill strcpy(di->un.v.units.name, AudioNvolume);
634 1.2 jmcneill return 0;
635 1.2 jmcneill case PAD_INPUT_DAC_VOLUME:
636 1.2 jmcneill di->mixer_class = PAD_INPUT_CLASS;
637 1.2 jmcneill strcpy(di->label.name, AudioNdac);
638 1.2 jmcneill di->type = AUDIO_MIXER_VALUE;
639 1.2 jmcneill di->next = di->prev = AUDIO_MIXER_LAST;
640 1.2 jmcneill di->un.v.num_channels = 1;
641 1.2 jmcneill strcpy(di->un.v.units.name, AudioNvolume);
642 1.2 jmcneill return 0;
643 1.2 jmcneill }
644 1.2 jmcneill
645 1.1 jmcneill return ENXIO;
646 1.1 jmcneill }
647 1.1 jmcneill
648 1.1 jmcneill static int
649 1.1 jmcneill pad_get_props(void *opaque)
650 1.1 jmcneill {
651 1.20 christos pad_softc_t *sc __diagused;
652 1.17 jmcneill
653 1.17 jmcneill sc = (pad_softc_t *)opaque;
654 1.17 jmcneill
655 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
656 1.17 jmcneill
657 1.1 jmcneill return 0;
658 1.1 jmcneill }
659 1.1 jmcneill
660 1.1 jmcneill static int
661 1.1 jmcneill pad_round_blocksize(void *opaque, int blksize, int mode,
662 1.1 jmcneill const audio_params_t *p)
663 1.1 jmcneill {
664 1.20 christos pad_softc_t *sc __diagused;
665 1.17 jmcneill
666 1.17 jmcneill sc = (pad_softc_t *)opaque;
667 1.17 jmcneill KASSERT(mutex_owned(&sc->sc_lock));
668 1.17 jmcneill
669 1.1 jmcneill return PAD_BLKSIZE;
670 1.1 jmcneill }
671 1.13 ahoka
672 1.17 jmcneill static void
673 1.17 jmcneill pad_get_locks(void *opaque, kmutex_t **intr, kmutex_t **thread)
674 1.17 jmcneill {
675 1.17 jmcneill pad_softc_t *sc;
676 1.17 jmcneill
677 1.17 jmcneill sc = (pad_softc_t *)opaque;
678 1.17 jmcneill
679 1.17 jmcneill *intr = &sc->sc_intr_lock;
680 1.17 jmcneill *thread = &sc->sc_lock;
681 1.17 jmcneill }
682 1.17 jmcneill
683 1.22 jmcneill static stream_filter_t *
684 1.22 jmcneill pad_swvol_filter_le(struct audio_softc *asc,
685 1.22 jmcneill const audio_params_t *from, const audio_params_t *to)
686 1.22 jmcneill {
687 1.22 jmcneill auvolconv_filter_t *this;
688 1.22 jmcneill device_t dev = audio_get_device(asc);
689 1.22 jmcneill struct pad_softc *sc = device_private(dev);
690 1.22 jmcneill
691 1.22 jmcneill this = kmem_alloc(sizeof(auvolconv_filter_t), KM_SLEEP);
692 1.22 jmcneill this->base.base.fetch_to = auvolconv_slinear16_le_fetch_to;
693 1.22 jmcneill this->base.dtor = pad_swvol_dtor;
694 1.22 jmcneill this->base.set_fetcher = stream_filter_set_fetcher;
695 1.22 jmcneill this->base.set_inputbuffer = stream_filter_set_inputbuffer;
696 1.22 jmcneill this->vol = &sc->sc_swvol;
697 1.22 jmcneill
698 1.22 jmcneill return (stream_filter_t *)this;
699 1.22 jmcneill }
700 1.22 jmcneill
701 1.22 jmcneill static stream_filter_t *
702 1.22 jmcneill pad_swvol_filter_be(struct audio_softc *asc,
703 1.22 jmcneill const audio_params_t *from, const audio_params_t *to)
704 1.22 jmcneill {
705 1.22 jmcneill auvolconv_filter_t *this;
706 1.22 jmcneill device_t dev = audio_get_device(asc);
707 1.22 jmcneill struct pad_softc *sc = device_private(dev);
708 1.22 jmcneill
709 1.22 jmcneill this = kmem_alloc(sizeof(auvolconv_filter_t), KM_SLEEP);
710 1.22 jmcneill this->base.base.fetch_to = auvolconv_slinear16_be_fetch_to;
711 1.22 jmcneill this->base.dtor = pad_swvol_dtor;
712 1.22 jmcneill this->base.set_fetcher = stream_filter_set_fetcher;
713 1.22 jmcneill this->base.set_inputbuffer = stream_filter_set_inputbuffer;
714 1.22 jmcneill this->vol = &sc->sc_swvol;
715 1.22 jmcneill
716 1.22 jmcneill return (stream_filter_t *)this;
717 1.22 jmcneill }
718 1.22 jmcneill
719 1.22 jmcneill static void
720 1.22 jmcneill pad_swvol_dtor(stream_filter_t *this)
721 1.22 jmcneill {
722 1.22 jmcneill if (this)
723 1.22 jmcneill kmem_free(this, sizeof(auvolconv_filter_t));
724 1.22 jmcneill }
725 1.22 jmcneill
726 1.13 ahoka #ifdef _MODULE
727 1.13 ahoka
728 1.13 ahoka MODULE(MODULE_CLASS_DRIVER, pad, NULL);
729 1.13 ahoka
730 1.13 ahoka static const struct cfiattrdata audiobuscf_iattrdata = {
731 1.13 ahoka "audiobus", 0, { { NULL, NULL, 0 }, }
732 1.13 ahoka };
733 1.13 ahoka static const struct cfiattrdata * const pad_attrs[] = {
734 1.13 ahoka &audiobuscf_iattrdata, NULL
735 1.13 ahoka };
736 1.13 ahoka
737 1.13 ahoka CFDRIVER_DECL(pad, DV_DULL, pad_attrs);
738 1.13 ahoka extern struct cfattach pad_ca;
739 1.13 ahoka static int padloc[] = { -1, -1 };
740 1.13 ahoka
741 1.13 ahoka static struct cfdata pad_cfdata[] = {
742 1.13 ahoka {
743 1.13 ahoka .cf_name = "pad",
744 1.13 ahoka .cf_atname = "pad",
745 1.13 ahoka .cf_unit = 0,
746 1.13 ahoka .cf_fstate = FSTATE_STAR,
747 1.13 ahoka .cf_loc = padloc,
748 1.13 ahoka .cf_flags = 0,
749 1.13 ahoka .cf_pspec = NULL,
750 1.13 ahoka },
751 1.14 pooka { NULL, NULL, 0, 0, NULL, 0, NULL }
752 1.13 ahoka };
753 1.13 ahoka
754 1.13 ahoka static int
755 1.13 ahoka pad_modcmd(modcmd_t cmd, void *arg)
756 1.13 ahoka {
757 1.13 ahoka devmajor_t cmajor = NODEVMAJOR, bmajor = NODEVMAJOR;
758 1.19 agc int error;
759 1.13 ahoka
760 1.13 ahoka switch (cmd) {
761 1.13 ahoka case MODULE_CMD_INIT:
762 1.13 ahoka error = config_cfdriver_attach(&pad_cd);
763 1.13 ahoka if (error) {
764 1.13 ahoka return error;
765 1.13 ahoka }
766 1.13 ahoka
767 1.13 ahoka error = config_cfattach_attach(pad_cd.cd_name, &pad_ca);
768 1.13 ahoka if (error) {
769 1.13 ahoka config_cfdriver_detach(&pad_cd);
770 1.13 ahoka aprint_error("%s: unable to register cfattach\n",
771 1.13 ahoka pad_cd.cd_name);
772 1.13 ahoka
773 1.13 ahoka return error;
774 1.13 ahoka }
775 1.13 ahoka
776 1.13 ahoka error = config_cfdata_attach(pad_cfdata, 1);
777 1.13 ahoka if (error) {
778 1.13 ahoka config_cfattach_detach(pad_cd.cd_name, &pad_ca);
779 1.13 ahoka config_cfdriver_detach(&pad_cd);
780 1.13 ahoka aprint_error("%s: unable to register cfdata\n",
781 1.13 ahoka pad_cd.cd_name);
782 1.13 ahoka
783 1.13 ahoka return error;
784 1.13 ahoka }
785 1.13 ahoka
786 1.25 msaitoh error = devsw_attach(pad_cd.cd_name, NULL, &bmajor,
787 1.25 msaitoh &pad_cdevsw, &cmajor);
788 1.13 ahoka if (error) {
789 1.13 ahoka error = config_cfdata_detach(pad_cfdata);
790 1.13 ahoka if (error) {
791 1.13 ahoka return error;
792 1.13 ahoka }
793 1.13 ahoka config_cfattach_detach(pad_cd.cd_name, &pad_ca);
794 1.13 ahoka config_cfdriver_detach(&pad_cd);
795 1.13 ahoka aprint_error("%s: unable to register devsw\n",
796 1.13 ahoka pad_cd.cd_name);
797 1.13 ahoka
798 1.13 ahoka return error;
799 1.13 ahoka }
800 1.13 ahoka
801 1.13 ahoka (void)config_attach_pseudo(pad_cfdata);
802 1.13 ahoka
803 1.13 ahoka return 0;
804 1.13 ahoka case MODULE_CMD_FINI:
805 1.13 ahoka error = config_cfdata_detach(pad_cfdata);
806 1.13 ahoka if (error) {
807 1.13 ahoka return error;
808 1.13 ahoka }
809 1.13 ahoka
810 1.13 ahoka config_cfattach_detach(pad_cd.cd_name, &pad_ca);
811 1.13 ahoka config_cfdriver_detach(&pad_cd);
812 1.13 ahoka devsw_detach(NULL, &pad_cdevsw);
813 1.13 ahoka
814 1.13 ahoka return 0;
815 1.13 ahoka default:
816 1.13 ahoka return ENOTTY;
817 1.13 ahoka }
818 1.13 ahoka }
819 1.13 ahoka
820 1.13 ahoka #endif
821