cs4231.c revision 1.20 1 1.20 martin /* $NetBSD: cs4231.c,v 1.20 2007/12/11 00:21:51 martin Exp $ */
2 1.1 mrg
3 1.1 mrg /*-
4 1.1 mrg * Copyright (c) 1998, 1999 The NetBSD Foundation, Inc.
5 1.1 mrg * All rights reserved.
6 1.1 mrg *
7 1.1 mrg * This code is derived from software contributed to The NetBSD Foundation
8 1.1 mrg * by Paul Kranenburg.
9 1.1 mrg *
10 1.1 mrg * Redistribution and use in source and binary forms, with or without
11 1.1 mrg * modification, are permitted provided that the following conditions
12 1.1 mrg * are met:
13 1.1 mrg * 1. Redistributions of source code must retain the above copyright
14 1.1 mrg * notice, this list of conditions and the following disclaimer.
15 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 mrg * notice, this list of conditions and the following disclaimer in the
17 1.1 mrg * documentation and/or other materials provided with the distribution.
18 1.1 mrg * 3. All advertising materials mentioning features or use of this software
19 1.1 mrg * must display the following acknowledgement:
20 1.1 mrg * This product includes software developed by the NetBSD
21 1.1 mrg * Foundation, Inc. and its contributors.
22 1.1 mrg * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 mrg * contributors may be used to endorse or promote products derived
24 1.1 mrg * from this software without specific prior written permission.
25 1.1 mrg *
26 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 mrg * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 mrg * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 mrg * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 mrg * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 mrg * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 mrg * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 mrg * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 mrg * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 mrg * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 mrg * POSSIBILITY OF SUCH DAMAGE.
37 1.1 mrg */
38 1.6 lukem
39 1.6 lukem #include <sys/cdefs.h>
40 1.20 martin __KERNEL_RCSID(0, "$NetBSD: cs4231.c,v 1.20 2007/12/11 00:21:51 martin Exp $");
41 1.1 mrg
42 1.1 mrg #include "audio.h"
43 1.1 mrg #if NAUDIO > 0
44 1.1 mrg
45 1.1 mrg #include <sys/param.h>
46 1.1 mrg #include <sys/systm.h>
47 1.1 mrg #include <sys/errno.h>
48 1.1 mrg #include <sys/device.h>
49 1.1 mrg #include <sys/malloc.h>
50 1.1 mrg
51 1.1 mrg #include <machine/autoconf.h>
52 1.19 ad #include <sys/cpu.h>
53 1.1 mrg
54 1.1 mrg #include <sys/audioio.h>
55 1.1 mrg #include <dev/audio_if.h>
56 1.1 mrg
57 1.1 mrg #include <dev/ic/ad1848reg.h>
58 1.1 mrg #include <dev/ic/cs4231reg.h>
59 1.1 mrg #include <dev/ic/ad1848var.h>
60 1.1 mrg #include <dev/ic/cs4231var.h>
61 1.1 mrg
62 1.1 mrg /*---*/
63 1.1 mrg #define CSAUDIO_DAC_LVL 0
64 1.1 mrg #define CSAUDIO_LINE_IN_LVL 1
65 1.1 mrg #define CSAUDIO_MONO_LVL 2
66 1.1 mrg #define CSAUDIO_CD_LVL 3
67 1.10 martin #define CSAUDIO_OUTPUT_LVL 4
68 1.1 mrg #define CSAUDIO_OUT_LVL 5
69 1.1 mrg #define CSAUDIO_LINE_IN_MUTE 6
70 1.1 mrg #define CSAUDIO_DAC_MUTE 7
71 1.1 mrg #define CSAUDIO_CD_MUTE 8
72 1.1 mrg #define CSAUDIO_MONO_MUTE 9
73 1.10 martin #define CSAUDIO_OUTPUT_MUTE 10
74 1.10 martin #define CSAUDIO_OUT_MUTE 11
75 1.10 martin #define CSAUDIO_REC_LVL 12
76 1.10 martin #define CSAUDIO_RECORD_SOURCE 13
77 1.10 martin
78 1.10 martin #define CSAUDIO_INPUT_CLASS 14
79 1.10 martin #define CSAUDIO_MONITOR_CLASS 15
80 1.10 martin #define CSAUDIO_RECORD_CLASS 16
81 1.1 mrg
82 1.1 mrg #ifdef AUDIO_DEBUG
83 1.9 martin int cs4231_debug = 0;
84 1.7 uwe #define DPRINTF(x) if (cs4231_debug) printf x
85 1.1 mrg #else
86 1.1 mrg #define DPRINTF(x)
87 1.1 mrg #endif
88 1.1 mrg
89 1.1 mrg struct audio_device cs4231_device = {
90 1.1 mrg "cs4231",
91 1.1 mrg "x",
92 1.1 mrg "audio"
93 1.1 mrg };
94 1.1 mrg
95 1.1 mrg
96 1.7 uwe /* ad1848 sc_{read,write}reg */
97 1.7 uwe static int cs4231_read(struct ad1848_softc *, int);
98 1.7 uwe static void cs4231_write(struct ad1848_softc *, int, int);
99 1.1 mrg
100 1.1 mrg int
101 1.17 kent cs4231_read(struct ad1848_softc *sc, int index)
102 1.1 mrg {
103 1.7 uwe
104 1.1 mrg return bus_space_read_1(sc->sc_iot, sc->sc_ioh, (index << 2));
105 1.1 mrg }
106 1.1 mrg
107 1.1 mrg void
108 1.17 kent cs4231_write(struct ad1848_softc *sc, int index, int value)
109 1.1 mrg {
110 1.7 uwe
111 1.1 mrg bus_space_write_1(sc->sc_iot, sc->sc_ioh, (index << 2), value);
112 1.1 mrg }
113 1.1 mrg
114 1.1 mrg
115 1.1 mrg void
116 1.17 kent cs4231_common_attach(struct cs4231_softc *sc, bus_space_handle_t ioh)
117 1.1 mrg {
118 1.1 mrg char *buf;
119 1.1 mrg int reg;
120 1.1 mrg
121 1.7 uwe sc->sc_ad1848.parent = sc;
122 1.7 uwe sc->sc_ad1848.sc_iot = sc->sc_bustag;
123 1.7 uwe sc->sc_ad1848.sc_ioh = ioh;
124 1.7 uwe sc->sc_ad1848.sc_readreg = cs4231_read;
125 1.7 uwe sc->sc_ad1848.sc_writereg = cs4231_write;
126 1.7 uwe
127 1.7 uwe sc->sc_playback.t_name = "playback";
128 1.7 uwe sc->sc_capture.t_name = "capture";
129 1.7 uwe
130 1.7 uwe evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR,
131 1.7 uwe NULL,
132 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, "total");
133 1.7 uwe
134 1.7 uwe evcnt_attach_dynamic(&sc->sc_playback.t_intrcnt, EVCNT_TYPE_INTR,
135 1.7 uwe &sc->sc_intrcnt,
136 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, "playback");
137 1.7 uwe
138 1.7 uwe evcnt_attach_dynamic(&sc->sc_playback.t_ierrcnt, EVCNT_TYPE_INTR,
139 1.7 uwe &sc->sc_intrcnt,
140 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, "perrors");
141 1.7 uwe
142 1.7 uwe evcnt_attach_dynamic(&sc->sc_capture.t_intrcnt, EVCNT_TYPE_INTR,
143 1.7 uwe &sc->sc_intrcnt,
144 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, "capture");
145 1.7 uwe
146 1.7 uwe evcnt_attach_dynamic(&sc->sc_capture.t_ierrcnt, EVCNT_TYPE_INTR,
147 1.7 uwe &sc->sc_intrcnt,
148 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, "cerrors");
149 1.7 uwe
150 1.7 uwe /* put chip in native mode to access (extended) ID register */
151 1.1 mrg reg = ad_read(&sc->sc_ad1848, SP_MISC_INFO);
152 1.1 mrg ad_write(&sc->sc_ad1848, SP_MISC_INFO, reg | MODE2);
153 1.1 mrg
154 1.7 uwe /* read version numbers from I25 */
155 1.1 mrg reg = ad_read(&sc->sc_ad1848, CS_VERSION_ID);
156 1.1 mrg switch (reg & (CS_VERSION_NUMBER | CS_VERSION_CHIPID)) {
157 1.1 mrg case 0xa0:
158 1.1 mrg sc->sc_ad1848.chip_name = "CS4231A";
159 1.1 mrg break;
160 1.1 mrg case 0x80:
161 1.1 mrg sc->sc_ad1848.chip_name = "CS4231";
162 1.1 mrg break;
163 1.1 mrg case 0x82:
164 1.1 mrg sc->sc_ad1848.chip_name = "CS4232";
165 1.1 mrg break;
166 1.1 mrg default:
167 1.1 mrg if ((buf = malloc(32, M_TEMP, M_NOWAIT)) != NULL) {
168 1.14 itojun snprintf(buf, 32, "unknown rev: %x/%x",
169 1.14 itojun reg&0xe0, reg&7);
170 1.1 mrg sc->sc_ad1848.chip_name = buf;
171 1.1 mrg }
172 1.1 mrg }
173 1.7 uwe
174 1.7 uwe sc->sc_ad1848.mode = 2; /* put ad1848 driver in `MODE 2' mode */
175 1.7 uwe ad1848_attach(&sc->sc_ad1848);
176 1.1 mrg }
177 1.1 mrg
178 1.1 mrg void *
179 1.17 kent cs4231_malloc(void *addr, int direction, size_t size,
180 1.17 kent struct malloc_type *pool, int flags)
181 1.1 mrg {
182 1.17 kent struct cs4231_softc *sc;
183 1.17 kent bus_dma_tag_t dmatag;
184 1.1 mrg struct cs_dma *p;
185 1.1 mrg
186 1.17 kent sc = addr;
187 1.17 kent dmatag = sc->sc_dmatag;
188 1.1 mrg p = malloc(sizeof(*p), pool, flags);
189 1.1 mrg if (p == NULL)
190 1.17 kent return NULL;
191 1.1 mrg
192 1.4 pk /* Allocate a DMA map */
193 1.4 pk if (bus_dmamap_create(dmatag, size, 1, size, 0,
194 1.17 kent BUS_DMA_NOWAIT, &p->dmamap) != 0)
195 1.4 pk goto fail1;
196 1.4 pk
197 1.4 pk /* Allocate DMA memory */
198 1.1 mrg p->size = size;
199 1.4 pk if (bus_dmamem_alloc(dmatag, size, 64*1024, 0,
200 1.17 kent p->segs, sizeof(p->segs)/sizeof(p->segs[0]),
201 1.17 kent &p->nsegs, BUS_DMA_NOWAIT) != 0)
202 1.4 pk goto fail2;
203 1.4 pk
204 1.4 pk /* Map DMA memory into kernel space */
205 1.17 kent if (bus_dmamem_map(dmatag, p->segs, p->nsegs, p->size,
206 1.17 kent &p->addr, BUS_DMA_NOWAIT|BUS_DMA_COHERENT) != 0)
207 1.4 pk goto fail3;
208 1.4 pk
209 1.4 pk /* Load the buffer */
210 1.4 pk if (bus_dmamap_load(dmatag, p->dmamap,
211 1.17 kent p->addr, size, NULL, BUS_DMA_NOWAIT) != 0)
212 1.4 pk goto fail4;
213 1.1 mrg
214 1.1 mrg p->next = sc->sc_dmas;
215 1.1 mrg sc->sc_dmas = p;
216 1.17 kent return p->addr;
217 1.4 pk
218 1.4 pk fail4:
219 1.4 pk bus_dmamem_unmap(dmatag, p->addr, p->size);
220 1.4 pk fail3:
221 1.4 pk bus_dmamem_free(dmatag, p->segs, p->nsegs);
222 1.4 pk fail2:
223 1.4 pk bus_dmamap_destroy(dmatag, p->dmamap);
224 1.4 pk fail1:
225 1.4 pk free(p, pool);
226 1.17 kent return NULL;
227 1.1 mrg }
228 1.1 mrg
229 1.1 mrg void
230 1.17 kent cs4231_free(void *addr, void *ptr, struct malloc_type *pool)
231 1.1 mrg {
232 1.17 kent struct cs4231_softc *sc;
233 1.17 kent bus_dma_tag_t dmatag;
234 1.1 mrg struct cs_dma *p, **pp;
235 1.1 mrg
236 1.17 kent sc = addr;
237 1.17 kent dmatag = sc->sc_dmatag;
238 1.1 mrg for (pp = &sc->sc_dmas; (p = *pp) != NULL; pp = &(*pp)->next) {
239 1.1 mrg if (p->addr != ptr)
240 1.1 mrg continue;
241 1.4 pk bus_dmamap_unload(dmatag, p->dmamap);
242 1.4 pk bus_dmamem_unmap(dmatag, p->addr, p->size);
243 1.4 pk bus_dmamem_free(dmatag, p->segs, p->nsegs);
244 1.4 pk bus_dmamap_destroy(dmatag, p->dmamap);
245 1.1 mrg *pp = p->next;
246 1.1 mrg free(p, pool);
247 1.1 mrg return;
248 1.1 mrg }
249 1.1 mrg printf("cs4231_free: rogue pointer\n");
250 1.1 mrg }
251 1.1 mrg
252 1.7 uwe
253 1.7 uwe /*
254 1.7 uwe * Set up transfer and return DMA address and byte count in paddr and psize
255 1.12 wiz * for bus dependent trigger_{in,out}put to load into the DMA controller.
256 1.7 uwe */
257 1.7 uwe int
258 1.17 kent cs4231_transfer_init(
259 1.17 kent struct cs4231_softc *sc,
260 1.17 kent struct cs_transfer *t,
261 1.17 kent bus_addr_t *paddr,
262 1.17 kent bus_size_t *psize,
263 1.17 kent void *start, void *end,
264 1.17 kent int blksize,
265 1.17 kent void (*intr)(void *),
266 1.17 kent void *arg)
267 1.7 uwe {
268 1.7 uwe struct cs_dma *p;
269 1.7 uwe vsize_t n;
270 1.7 uwe
271 1.7 uwe if (t->t_active) {
272 1.7 uwe printf("%s: %s already running\n",
273 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, t->t_name);
274 1.17 kent return EINVAL;
275 1.7 uwe }
276 1.7 uwe
277 1.7 uwe t->t_intr = intr;
278 1.7 uwe t->t_arg = arg;
279 1.7 uwe
280 1.7 uwe for (p = sc->sc_dmas; p != NULL && p->addr != start; p = p->next)
281 1.7 uwe continue;
282 1.7 uwe if (p == NULL) {
283 1.7 uwe printf("%s: bad %s addr %p\n",
284 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, t->t_name, start);
285 1.17 kent return EINVAL;
286 1.7 uwe }
287 1.7 uwe
288 1.7 uwe n = (char *)end - (char *)start;
289 1.7 uwe
290 1.7 uwe t->t_dma = p; /* the DMA memory segment */
291 1.7 uwe t->t_segsz = n; /* size of DMA segment */
292 1.7 uwe t->t_blksz = blksize; /* do transfers in blksize chunks */
293 1.7 uwe
294 1.7 uwe if (n > t->t_blksz)
295 1.7 uwe n = t->t_blksz;
296 1.7 uwe
297 1.7 uwe t->t_cnt = n;
298 1.7 uwe
299 1.12 wiz /* for caller to load into DMA controller */
300 1.7 uwe *paddr = t->t_dma->dmamap->dm_segs[0].ds_addr;
301 1.7 uwe *psize = n;
302 1.7 uwe
303 1.7 uwe DPRINTF(("%s: init %s: [%p..%p] %lu bytes %lu blocks;"
304 1.12 wiz " DMA at 0x%lx count %lu\n",
305 1.7 uwe sc->sc_ad1848.sc_dev.dv_xname, t->t_name,
306 1.7 uwe start, end, (u_long)t->t_segsz, (u_long)t->t_blksz,
307 1.7 uwe (u_long)*paddr, (u_long)*psize));
308 1.7 uwe
309 1.7 uwe t->t_active = 1;
310 1.17 kent return 0;
311 1.7 uwe }
312 1.7 uwe
313 1.7 uwe /*
314 1.7 uwe * Compute next DMA address/counter, update transfer status.
315 1.7 uwe */
316 1.7 uwe void
317 1.17 kent cs4231_transfer_advance(struct cs_transfer *t, bus_addr_t *paddr,
318 1.17 kent bus_size_t *psize)
319 1.7 uwe {
320 1.7 uwe bus_addr_t dmabase, nextaddr;
321 1.7 uwe bus_size_t togo;
322 1.7 uwe
323 1.7 uwe dmabase = t->t_dma->dmamap->dm_segs[0].ds_addr;
324 1.7 uwe
325 1.7 uwe togo = t->t_segsz - t->t_cnt;
326 1.7 uwe if (togo == 0) { /* roll over */
327 1.7 uwe nextaddr = dmabase;
328 1.7 uwe t->t_cnt = togo = t->t_blksz;
329 1.7 uwe } else {
330 1.7 uwe nextaddr = dmabase + t->t_cnt;
331 1.7 uwe if (togo > t->t_blksz)
332 1.7 uwe togo = t->t_blksz;
333 1.7 uwe t->t_cnt += togo;
334 1.7 uwe }
335 1.7 uwe
336 1.12 wiz /* for caller to load into DMA controller */
337 1.7 uwe *paddr = nextaddr;
338 1.7 uwe *psize = togo;
339 1.7 uwe }
340 1.7 uwe
341 1.7 uwe
342 1.1 mrg int
343 1.17 kent cs4231_open(void *addr, int flags)
344 1.1 mrg {
345 1.17 kent struct cs4231_softc *sc;
346 1.1 mrg
347 1.17 kent sc = addr;
348 1.1 mrg DPRINTF(("sa_open: unit %p\n", sc));
349 1.1 mrg
350 1.7 uwe sc->sc_playback.t_active = 0;
351 1.7 uwe sc->sc_playback.t_intr = NULL;
352 1.7 uwe sc->sc_playback.t_arg = NULL;
353 1.7 uwe
354 1.7 uwe sc->sc_capture.t_active = 0;
355 1.7 uwe sc->sc_capture.t_intr = NULL;
356 1.7 uwe sc->sc_capture.t_arg = NULL;
357 1.7 uwe
358 1.7 uwe /* no interrupts from ad1848 */
359 1.1 mrg ad_write(&sc->sc_ad1848, SP_PIN_CONTROL, 0);
360 1.1 mrg ad1848_reset(&sc->sc_ad1848);
361 1.1 mrg
362 1.7 uwe DPRINTF(("sa_open: ok -> sc=%p\n", sc));
363 1.17 kent return 0;
364 1.1 mrg }
365 1.1 mrg
366 1.1 mrg void
367 1.17 kent cs4231_close(void *addr)
368 1.1 mrg {
369 1.1 mrg
370 1.16 petrov DPRINTF(("sa_close: sc=%p\n", addr));
371 1.7 uwe
372 1.7 uwe /* audio(9) already called halt methods */
373 1.1 mrg
374 1.1 mrg DPRINTF(("sa_close: closed.\n"));
375 1.1 mrg }
376 1.1 mrg
377 1.1 mrg int
378 1.17 kent cs4231_getdev(void *addr, struct audio_device *retp)
379 1.1 mrg {
380 1.7 uwe
381 1.17 kent *retp = cs4231_device;
382 1.17 kent return 0;
383 1.1 mrg }
384 1.1 mrg
385 1.20 martin static const ad1848_devmap_t csmapping[] = {
386 1.1 mrg { CSAUDIO_DAC_LVL, AD1848_KIND_LVL, AD1848_AUX1_CHANNEL },
387 1.17 kent { CSAUDIO_LINE_IN_LVL, AD1848_KIND_LVL, AD1848_LINE_CHANNEL },
388 1.1 mrg { CSAUDIO_MONO_LVL, AD1848_KIND_LVL, AD1848_MONO_CHANNEL },
389 1.1 mrg { CSAUDIO_CD_LVL, AD1848_KIND_LVL, AD1848_AUX2_CHANNEL },
390 1.10 martin { CSAUDIO_OUTPUT_LVL, AD1848_KIND_LVL, AD1848_MONITOR_CHANNEL },
391 1.1 mrg { CSAUDIO_OUT_LVL, AD1848_KIND_LVL, AD1848_DAC_CHANNEL },
392 1.1 mrg { CSAUDIO_DAC_MUTE, AD1848_KIND_MUTE, AD1848_AUX1_CHANNEL },
393 1.1 mrg { CSAUDIO_LINE_IN_MUTE, AD1848_KIND_MUTE, AD1848_LINE_CHANNEL },
394 1.1 mrg { CSAUDIO_MONO_MUTE, AD1848_KIND_MUTE, AD1848_MONO_CHANNEL },
395 1.1 mrg { CSAUDIO_CD_MUTE, AD1848_KIND_MUTE, AD1848_AUX2_CHANNEL },
396 1.10 martin { CSAUDIO_OUTPUT_MUTE, AD1848_KIND_MUTE, AD1848_MONITOR_CHANNEL },
397 1.10 martin { CSAUDIO_OUT_MUTE, AD1848_KIND_MUTE, AD1848_OUT_CHANNEL },
398 1.1 mrg { CSAUDIO_REC_LVL, AD1848_KIND_RECORDGAIN, -1 },
399 1.1 mrg { CSAUDIO_RECORD_SOURCE, AD1848_KIND_RECORDSOURCE, -1 }
400 1.1 mrg };
401 1.1 mrg
402 1.1 mrg static int nummap = sizeof(csmapping) / sizeof(csmapping[0]);
403 1.1 mrg
404 1.1 mrg
405 1.1 mrg int
406 1.17 kent cs4231_set_port(void *addr, mixer_ctrl_t *cp)
407 1.1 mrg {
408 1.17 kent struct ad1848_softc *ac;
409 1.1 mrg
410 1.1 mrg DPRINTF(("cs4231_set_port: port=%d", cp->dev));
411 1.17 kent ac = addr;
412 1.17 kent return ad1848_mixer_set_port(ac, csmapping, nummap, cp);
413 1.1 mrg }
414 1.1 mrg
415 1.1 mrg int
416 1.17 kent cs4231_get_port(void *addr, mixer_ctrl_t *cp)
417 1.1 mrg {
418 1.17 kent struct ad1848_softc *ac;
419 1.1 mrg
420 1.1 mrg DPRINTF(("cs4231_get_port: port=%d", cp->dev));
421 1.17 kent ac = addr;
422 1.17 kent return ad1848_mixer_get_port(ac, csmapping, nummap, cp);
423 1.1 mrg }
424 1.1 mrg
425 1.1 mrg int
426 1.17 kent cs4231_get_props(void *addr)
427 1.1 mrg {
428 1.7 uwe
429 1.17 kent return AUDIO_PROP_FULLDUPLEX;
430 1.1 mrg }
431 1.1 mrg
432 1.1 mrg int
433 1.17 kent cs4231_query_devinfo(void *addr, mixer_devinfo_t *dip)
434 1.1 mrg {
435 1.1 mrg
436 1.1 mrg switch(dip->index) {
437 1.1 mrg
438 1.1 mrg case CSAUDIO_DAC_LVL: /* dacout */
439 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
440 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
441 1.1 mrg dip->prev = AUDIO_MIXER_LAST;
442 1.1 mrg dip->next = CSAUDIO_DAC_MUTE;
443 1.1 mrg strcpy(dip->label.name, AudioNdac);
444 1.1 mrg dip->un.v.num_channels = 2;
445 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
446 1.1 mrg break;
447 1.1 mrg
448 1.1 mrg case CSAUDIO_LINE_IN_LVL: /* line */
449 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
450 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
451 1.1 mrg dip->prev = AUDIO_MIXER_LAST;
452 1.1 mrg dip->next = CSAUDIO_LINE_IN_MUTE;
453 1.1 mrg strcpy(dip->label.name, AudioNline);
454 1.1 mrg dip->un.v.num_channels = 2;
455 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
456 1.1 mrg break;
457 1.1 mrg
458 1.7 uwe case CSAUDIO_MONO_LVL: /* mono/microphone mixer */
459 1.7 uwe dip->type = AUDIO_MIXER_VALUE;
460 1.7 uwe dip->mixer_class = CSAUDIO_INPUT_CLASS;
461 1.7 uwe dip->prev = AUDIO_MIXER_LAST;
462 1.7 uwe dip->next = CSAUDIO_MONO_MUTE;
463 1.7 uwe strcpy(dip->label.name, AudioNmicrophone);
464 1.7 uwe dip->un.v.num_channels = 1;
465 1.7 uwe strcpy(dip->un.v.units.name, AudioNvolume);
466 1.7 uwe break;
467 1.7 uwe
468 1.1 mrg case CSAUDIO_CD_LVL: /* cd */
469 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
470 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
471 1.1 mrg dip->prev = AUDIO_MIXER_LAST;
472 1.1 mrg dip->next = CSAUDIO_CD_MUTE;
473 1.1 mrg strcpy(dip->label.name, AudioNcd);
474 1.1 mrg dip->un.v.num_channels = 2;
475 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
476 1.1 mrg break;
477 1.1 mrg
478 1.1 mrg
479 1.10 martin case CSAUDIO_OUTPUT_LVL: /* monitor level */
480 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
481 1.1 mrg dip->mixer_class = CSAUDIO_MONITOR_CLASS;
482 1.10 martin dip->next = CSAUDIO_OUTPUT_MUTE;
483 1.1 mrg dip->prev = AUDIO_MIXER_LAST;
484 1.1 mrg strcpy(dip->label.name, AudioNmonitor);
485 1.1 mrg dip->un.v.num_channels = 1;
486 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
487 1.1 mrg break;
488 1.1 mrg
489 1.8 martin case CSAUDIO_OUT_LVL: /* cs4231 output volume */
490 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
491 1.1 mrg dip->mixer_class = CSAUDIO_MONITOR_CLASS;
492 1.10 martin dip->next = dip->prev = AUDIO_MIXER_LAST;
493 1.8 martin strcpy(dip->label.name, AudioNmaster);
494 1.1 mrg dip->un.v.num_channels = 2;
495 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
496 1.1 mrg break;
497 1.1 mrg
498 1.10 martin case CSAUDIO_OUT_MUTE: /* mute built-in speaker */
499 1.10 martin dip->mixer_class = CSAUDIO_MONITOR_CLASS;
500 1.10 martin dip->type = AUDIO_MIXER_ENUM;
501 1.10 martin dip->prev = CSAUDIO_MONITOR_CLASS;
502 1.10 martin dip->next = AUDIO_MIXER_LAST;
503 1.10 martin strcpy(dip->label.name, AudioNmono);
504 1.10 martin /* names reversed, this is a "mute" value used as "mono enabled" */
505 1.10 martin dip->un.e.num_mem = 2;
506 1.10 martin strcpy(dip->un.e.member[0].label.name, AudioNon);
507 1.10 martin dip->un.e.member[0].ord = 0;
508 1.10 martin strcpy(dip->un.e.member[1].label.name, AudioNoff);
509 1.10 martin dip->un.e.member[1].ord = 1;
510 1.10 martin break;
511 1.10 martin
512 1.1 mrg case CSAUDIO_LINE_IN_MUTE:
513 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
514 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
515 1.1 mrg dip->prev = CSAUDIO_LINE_IN_LVL;
516 1.1 mrg dip->next = AUDIO_MIXER_LAST;
517 1.1 mrg goto mute;
518 1.17 kent
519 1.1 mrg case CSAUDIO_DAC_MUTE:
520 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
521 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
522 1.1 mrg dip->prev = CSAUDIO_DAC_LVL;
523 1.1 mrg dip->next = AUDIO_MIXER_LAST;
524 1.1 mrg goto mute;
525 1.1 mrg
526 1.1 mrg case CSAUDIO_CD_MUTE:
527 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
528 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
529 1.1 mrg dip->prev = CSAUDIO_CD_LVL;
530 1.1 mrg dip->next = AUDIO_MIXER_LAST;
531 1.1 mrg goto mute;
532 1.17 kent
533 1.1 mrg case CSAUDIO_MONO_MUTE:
534 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
535 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
536 1.1 mrg dip->prev = CSAUDIO_MONO_LVL;
537 1.1 mrg dip->next = AUDIO_MIXER_LAST;
538 1.1 mrg goto mute;
539 1.1 mrg
540 1.10 martin case CSAUDIO_OUTPUT_MUTE:
541 1.7 uwe dip->mixer_class = CSAUDIO_MONITOR_CLASS;
542 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
543 1.10 martin dip->prev = CSAUDIO_OUTPUT_LVL;
544 1.1 mrg dip->next = AUDIO_MIXER_LAST;
545 1.1 mrg mute:
546 1.1 mrg strcpy(dip->label.name, AudioNmute);
547 1.1 mrg dip->un.e.num_mem = 2;
548 1.1 mrg strcpy(dip->un.e.member[0].label.name, AudioNoff);
549 1.1 mrg dip->un.e.member[0].ord = 0;
550 1.1 mrg strcpy(dip->un.e.member[1].label.name, AudioNon);
551 1.1 mrg dip->un.e.member[1].ord = 1;
552 1.1 mrg break;
553 1.17 kent
554 1.1 mrg case CSAUDIO_REC_LVL: /* record level */
555 1.1 mrg dip->type = AUDIO_MIXER_VALUE;
556 1.1 mrg dip->mixer_class = CSAUDIO_RECORD_CLASS;
557 1.1 mrg dip->prev = AUDIO_MIXER_LAST;
558 1.1 mrg dip->next = CSAUDIO_RECORD_SOURCE;
559 1.1 mrg strcpy(dip->label.name, AudioNrecord);
560 1.1 mrg dip->un.v.num_channels = 2;
561 1.1 mrg strcpy(dip->un.v.units.name, AudioNvolume);
562 1.1 mrg break;
563 1.1 mrg
564 1.1 mrg case CSAUDIO_RECORD_SOURCE:
565 1.1 mrg dip->mixer_class = CSAUDIO_RECORD_CLASS;
566 1.1 mrg dip->type = AUDIO_MIXER_ENUM;
567 1.1 mrg dip->prev = CSAUDIO_REC_LVL;
568 1.1 mrg dip->next = AUDIO_MIXER_LAST;
569 1.1 mrg strcpy(dip->label.name, AudioNsource);
570 1.1 mrg dip->un.e.num_mem = 4;
571 1.1 mrg strcpy(dip->un.e.member[0].label.name, AudioNoutput);
572 1.1 mrg dip->un.e.member[0].ord = DAC_IN_PORT;
573 1.1 mrg strcpy(dip->un.e.member[1].label.name, AudioNmicrophone);
574 1.1 mrg dip->un.e.member[1].ord = MIC_IN_PORT;
575 1.1 mrg strcpy(dip->un.e.member[2].label.name, AudioNdac);
576 1.1 mrg dip->un.e.member[2].ord = AUX1_IN_PORT;
577 1.1 mrg strcpy(dip->un.e.member[3].label.name, AudioNline);
578 1.1 mrg dip->un.e.member[3].ord = LINE_IN_PORT;
579 1.1 mrg break;
580 1.1 mrg
581 1.1 mrg case CSAUDIO_INPUT_CLASS: /* input class descriptor */
582 1.1 mrg dip->type = AUDIO_MIXER_CLASS;
583 1.1 mrg dip->mixer_class = CSAUDIO_INPUT_CLASS;
584 1.1 mrg dip->next = dip->prev = AUDIO_MIXER_LAST;
585 1.1 mrg strcpy(dip->label.name, AudioCinputs);
586 1.1 mrg break;
587 1.1 mrg
588 1.10 martin case CSAUDIO_MONITOR_CLASS: /* output class descriptor */
589 1.1 mrg dip->type = AUDIO_MIXER_CLASS;
590 1.1 mrg dip->mixer_class = CSAUDIO_MONITOR_CLASS;
591 1.1 mrg dip->next = dip->prev = AUDIO_MIXER_LAST;
592 1.1 mrg strcpy(dip->label.name, AudioCmonitor);
593 1.1 mrg break;
594 1.10 martin
595 1.1 mrg case CSAUDIO_RECORD_CLASS: /* record source class */
596 1.1 mrg dip->type = AUDIO_MIXER_CLASS;
597 1.1 mrg dip->mixer_class = CSAUDIO_RECORD_CLASS;
598 1.1 mrg dip->next = dip->prev = AUDIO_MIXER_LAST;
599 1.1 mrg strcpy(dip->label.name, AudioCrecord);
600 1.1 mrg break;
601 1.1 mrg
602 1.1 mrg default:
603 1.1 mrg return ENXIO;
604 1.1 mrg /*NOTREACHED*/
605 1.1 mrg }
606 1.1 mrg DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name));
607 1.1 mrg
608 1.17 kent return 0;
609 1.1 mrg }
610 1.1 mrg
611 1.1 mrg #endif /* NAUDIO > 0 */
612