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cs4231.c revision 1.21.4.1
      1  1.21.4.1    yamt /*	$NetBSD: cs4231.c,v 1.21.4.1 2008/05/16 02:24:03 yamt 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  *
     19       1.1     mrg  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1     mrg  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1     mrg  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1     mrg  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1     mrg  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1     mrg  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1     mrg  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1     mrg  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1     mrg  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1     mrg  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1     mrg  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1     mrg  */
     31       1.6   lukem 
     32       1.6   lukem #include <sys/cdefs.h>
     33  1.21.4.1    yamt __KERNEL_RCSID(0, "$NetBSD: cs4231.c,v 1.21.4.1 2008/05/16 02:24:03 yamt Exp $");
     34       1.1     mrg 
     35       1.1     mrg #include "audio.h"
     36       1.1     mrg #if NAUDIO > 0
     37       1.1     mrg 
     38       1.1     mrg #include <sys/param.h>
     39       1.1     mrg #include <sys/systm.h>
     40       1.1     mrg #include <sys/errno.h>
     41       1.1     mrg #include <sys/device.h>
     42       1.1     mrg #include <sys/malloc.h>
     43       1.1     mrg 
     44       1.1     mrg #include <machine/autoconf.h>
     45  1.21.4.1    yamt #include <machine/bus.h>
     46      1.19      ad #include <sys/cpu.h>
     47       1.1     mrg 
     48       1.1     mrg #include <sys/audioio.h>
     49       1.1     mrg #include <dev/audio_if.h>
     50       1.1     mrg 
     51       1.1     mrg #include <dev/ic/ad1848reg.h>
     52       1.1     mrg #include <dev/ic/cs4231reg.h>
     53       1.1     mrg #include <dev/ic/ad1848var.h>
     54       1.1     mrg #include <dev/ic/cs4231var.h>
     55       1.1     mrg 
     56       1.1     mrg /*---*/
     57       1.1     mrg #define CSAUDIO_DAC_LVL		0
     58       1.1     mrg #define CSAUDIO_LINE_IN_LVL	1
     59       1.1     mrg #define CSAUDIO_MONO_LVL	2
     60       1.1     mrg #define CSAUDIO_CD_LVL		3
     61      1.10  martin #define CSAUDIO_OUTPUT_LVL	4
     62       1.1     mrg #define CSAUDIO_OUT_LVL		5
     63       1.1     mrg #define CSAUDIO_LINE_IN_MUTE	6
     64       1.1     mrg #define CSAUDIO_DAC_MUTE	7
     65       1.1     mrg #define CSAUDIO_CD_MUTE		8
     66       1.1     mrg #define CSAUDIO_MONO_MUTE	9
     67      1.10  martin #define CSAUDIO_OUTPUT_MUTE	10
     68      1.10  martin #define CSAUDIO_OUT_MUTE	11
     69      1.10  martin #define CSAUDIO_REC_LVL		12
     70      1.10  martin #define CSAUDIO_RECORD_SOURCE	13
     71      1.10  martin 
     72      1.10  martin #define CSAUDIO_INPUT_CLASS	14
     73      1.10  martin #define CSAUDIO_MONITOR_CLASS	15
     74      1.10  martin #define CSAUDIO_RECORD_CLASS	16
     75       1.1     mrg 
     76       1.1     mrg #ifdef AUDIO_DEBUG
     77       1.9  martin int     cs4231_debug = 0;
     78       1.7     uwe #define DPRINTF(x)      if (cs4231_debug) printf x
     79       1.1     mrg #else
     80       1.1     mrg #define DPRINTF(x)
     81       1.1     mrg #endif
     82       1.1     mrg 
     83       1.1     mrg struct audio_device cs4231_device = {
     84       1.1     mrg 	"cs4231",
     85       1.1     mrg 	"x",
     86       1.1     mrg 	"audio"
     87       1.1     mrg };
     88       1.1     mrg 
     89       1.1     mrg 
     90       1.7     uwe /* ad1848 sc_{read,write}reg */
     91       1.7     uwe static int	cs4231_read(struct ad1848_softc *, int);
     92       1.7     uwe static void	cs4231_write(struct ad1848_softc *, int, int);
     93       1.1     mrg 
     94       1.1     mrg int
     95      1.17    kent cs4231_read(struct ad1848_softc	*sc, int index)
     96       1.1     mrg {
     97       1.7     uwe 
     98       1.1     mrg 	return bus_space_read_1(sc->sc_iot, sc->sc_ioh, (index << 2));
     99       1.1     mrg }
    100       1.1     mrg 
    101       1.1     mrg void
    102      1.17    kent cs4231_write(struct ad1848_softc *sc, int index, int value)
    103       1.1     mrg {
    104       1.7     uwe 
    105       1.1     mrg 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, (index << 2), value);
    106       1.1     mrg }
    107       1.1     mrg 
    108       1.1     mrg 
    109       1.1     mrg void
    110      1.17    kent cs4231_common_attach(struct cs4231_softc *sc, bus_space_handle_t ioh)
    111       1.1     mrg {
    112       1.1     mrg 	char *buf;
    113       1.1     mrg 	int reg;
    114       1.1     mrg 
    115       1.7     uwe 	sc->sc_ad1848.parent = sc;
    116       1.7     uwe 	sc->sc_ad1848.sc_iot = sc->sc_bustag;
    117       1.7     uwe 	sc->sc_ad1848.sc_ioh = ioh;
    118       1.7     uwe 	sc->sc_ad1848.sc_readreg = cs4231_read;
    119       1.7     uwe 	sc->sc_ad1848.sc_writereg = cs4231_write;
    120       1.7     uwe 
    121       1.7     uwe 	sc->sc_playback.t_name = "playback";
    122       1.7     uwe 	sc->sc_capture.t_name = "capture";
    123       1.7     uwe 
    124       1.7     uwe 	evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR,
    125       1.7     uwe 			     NULL,
    126      1.21  cegger 			     device_xname(&sc->sc_ad1848.sc_dev), "total");
    127       1.7     uwe 
    128       1.7     uwe 	evcnt_attach_dynamic(&sc->sc_playback.t_intrcnt, EVCNT_TYPE_INTR,
    129       1.7     uwe 			     &sc->sc_intrcnt,
    130      1.21  cegger 			     device_xname(&sc->sc_ad1848.sc_dev), "playback");
    131       1.7     uwe 
    132       1.7     uwe 	evcnt_attach_dynamic(&sc->sc_playback.t_ierrcnt, EVCNT_TYPE_INTR,
    133       1.7     uwe 			     &sc->sc_intrcnt,
    134      1.21  cegger 			     device_xname(&sc->sc_ad1848.sc_dev), "perrors");
    135       1.7     uwe 
    136       1.7     uwe 	evcnt_attach_dynamic(&sc->sc_capture.t_intrcnt, EVCNT_TYPE_INTR,
    137       1.7     uwe 			     &sc->sc_intrcnt,
    138      1.21  cegger 			     device_xname(&sc->sc_ad1848.sc_dev), "capture");
    139       1.7     uwe 
    140       1.7     uwe 	evcnt_attach_dynamic(&sc->sc_capture.t_ierrcnt, EVCNT_TYPE_INTR,
    141       1.7     uwe 			     &sc->sc_intrcnt,
    142      1.21  cegger 			     device_xname(&sc->sc_ad1848.sc_dev), "cerrors");
    143       1.7     uwe 
    144       1.7     uwe 	/* put chip in native mode to access (extended) ID register */
    145       1.1     mrg 	reg = ad_read(&sc->sc_ad1848, SP_MISC_INFO);
    146       1.1     mrg 	ad_write(&sc->sc_ad1848, SP_MISC_INFO, reg | MODE2);
    147       1.1     mrg 
    148       1.7     uwe 	/* read version numbers from I25 */
    149       1.1     mrg 	reg = ad_read(&sc->sc_ad1848, CS_VERSION_ID);
    150       1.1     mrg 	switch (reg & (CS_VERSION_NUMBER | CS_VERSION_CHIPID)) {
    151       1.1     mrg 	case 0xa0:
    152       1.1     mrg 		sc->sc_ad1848.chip_name = "CS4231A";
    153       1.1     mrg 		break;
    154       1.1     mrg 	case 0x80:
    155       1.1     mrg 		sc->sc_ad1848.chip_name = "CS4231";
    156       1.1     mrg 		break;
    157       1.1     mrg 	case 0x82:
    158       1.1     mrg 		sc->sc_ad1848.chip_name = "CS4232";
    159       1.1     mrg 		break;
    160  1.21.4.1    yamt 	case 0xa2:
    161  1.21.4.1    yamt 		sc->sc_ad1848.chip_name = "CS4232C";
    162  1.21.4.1    yamt 		break;
    163       1.1     mrg 	default:
    164       1.1     mrg 		if ((buf = malloc(32, M_TEMP, M_NOWAIT)) != NULL) {
    165      1.14  itojun 			snprintf(buf, 32, "unknown rev: %x/%x",
    166      1.14  itojun 			    reg&0xe0, reg&7);
    167       1.1     mrg 			sc->sc_ad1848.chip_name = buf;
    168       1.1     mrg 		}
    169       1.1     mrg 	}
    170       1.7     uwe 
    171       1.7     uwe 	sc->sc_ad1848.mode = 2;	/* put ad1848 driver in `MODE 2' mode */
    172       1.7     uwe 	ad1848_attach(&sc->sc_ad1848);
    173       1.1     mrg }
    174       1.1     mrg 
    175       1.1     mrg void *
    176      1.17    kent cs4231_malloc(void *addr, int direction, size_t size,
    177      1.17    kent     struct malloc_type *pool, int flags)
    178       1.1     mrg {
    179      1.17    kent 	struct cs4231_softc *sc;
    180      1.17    kent 	bus_dma_tag_t dmatag;
    181       1.1     mrg 	struct cs_dma *p;
    182       1.1     mrg 
    183      1.17    kent 	sc = addr;
    184      1.17    kent 	dmatag = sc->sc_dmatag;
    185       1.1     mrg 	p = malloc(sizeof(*p), pool, flags);
    186       1.1     mrg 	if (p == NULL)
    187      1.17    kent 		return NULL;
    188       1.1     mrg 
    189       1.4      pk 	/* Allocate a DMA map */
    190       1.4      pk 	if (bus_dmamap_create(dmatag, size, 1, size, 0,
    191      1.17    kent 	    BUS_DMA_NOWAIT, &p->dmamap) != 0)
    192       1.4      pk 		goto fail1;
    193       1.4      pk 
    194       1.4      pk 	/* Allocate DMA memory */
    195       1.1     mrg 	p->size = size;
    196       1.4      pk 	if (bus_dmamem_alloc(dmatag, size, 64*1024, 0,
    197      1.17    kent 	    p->segs, sizeof(p->segs)/sizeof(p->segs[0]),
    198      1.17    kent 	    &p->nsegs, BUS_DMA_NOWAIT) != 0)
    199       1.4      pk 		goto fail2;
    200       1.4      pk 
    201       1.4      pk 	/* Map DMA memory into kernel space */
    202      1.17    kent 	if (bus_dmamem_map(dmatag, p->segs, p->nsegs, p->size,
    203      1.17    kent 	    &p->addr, BUS_DMA_NOWAIT|BUS_DMA_COHERENT) != 0)
    204       1.4      pk 		goto fail3;
    205       1.4      pk 
    206       1.4      pk 	/* Load the buffer */
    207       1.4      pk 	if (bus_dmamap_load(dmatag, p->dmamap,
    208      1.17    kent 	    p->addr, size, NULL, BUS_DMA_NOWAIT) != 0)
    209       1.4      pk 		goto fail4;
    210       1.1     mrg 
    211       1.1     mrg 	p->next = sc->sc_dmas;
    212       1.1     mrg 	sc->sc_dmas = p;
    213      1.17    kent 	return p->addr;
    214       1.4      pk 
    215       1.4      pk fail4:
    216       1.4      pk 	bus_dmamem_unmap(dmatag, p->addr, p->size);
    217       1.4      pk fail3:
    218       1.4      pk 	bus_dmamem_free(dmatag, p->segs, p->nsegs);
    219       1.4      pk fail2:
    220       1.4      pk 	bus_dmamap_destroy(dmatag, p->dmamap);
    221       1.4      pk fail1:
    222       1.4      pk 	free(p, pool);
    223      1.17    kent 	return NULL;
    224       1.1     mrg }
    225       1.1     mrg 
    226       1.1     mrg void
    227      1.17    kent cs4231_free(void *addr, void *ptr, struct malloc_type *pool)
    228       1.1     mrg {
    229      1.17    kent 	struct cs4231_softc *sc;
    230      1.17    kent 	bus_dma_tag_t dmatag;
    231       1.1     mrg 	struct cs_dma *p, **pp;
    232       1.1     mrg 
    233      1.17    kent 	sc = addr;
    234      1.17    kent 	dmatag = sc->sc_dmatag;
    235       1.1     mrg 	for (pp = &sc->sc_dmas; (p = *pp) != NULL; pp = &(*pp)->next) {
    236       1.1     mrg 		if (p->addr != ptr)
    237       1.1     mrg 			continue;
    238       1.4      pk 		bus_dmamap_unload(dmatag, p->dmamap);
    239       1.4      pk 		bus_dmamem_unmap(dmatag, p->addr, p->size);
    240       1.4      pk 		bus_dmamem_free(dmatag, p->segs, p->nsegs);
    241       1.4      pk 		bus_dmamap_destroy(dmatag, p->dmamap);
    242       1.1     mrg 		*pp = p->next;
    243       1.1     mrg 		free(p, pool);
    244       1.1     mrg 		return;
    245       1.1     mrg 	}
    246       1.1     mrg 	printf("cs4231_free: rogue pointer\n");
    247       1.1     mrg }
    248       1.1     mrg 
    249       1.7     uwe 
    250       1.7     uwe /*
    251       1.7     uwe  * Set up transfer and return DMA address and byte count in paddr and psize
    252      1.12     wiz  * for bus dependent trigger_{in,out}put to load into the DMA controller.
    253       1.7     uwe  */
    254       1.7     uwe int
    255      1.17    kent cs4231_transfer_init(
    256      1.17    kent 	struct cs4231_softc *sc,
    257      1.17    kent 	struct cs_transfer *t,
    258      1.17    kent 	bus_addr_t *paddr,
    259      1.17    kent 	bus_size_t *psize,
    260      1.17    kent 	void *start, void *end,
    261      1.17    kent 	int blksize,
    262      1.17    kent 	void (*intr)(void *),
    263      1.17    kent 	void *arg)
    264       1.7     uwe {
    265       1.7     uwe 	struct cs_dma *p;
    266       1.7     uwe 	vsize_t n;
    267       1.7     uwe 
    268       1.7     uwe 	if (t->t_active) {
    269       1.7     uwe 		printf("%s: %s already running\n",
    270      1.21  cegger 		       device_xname(&sc->sc_ad1848.sc_dev), t->t_name);
    271      1.17    kent 		return EINVAL;
    272       1.7     uwe 	}
    273       1.7     uwe 
    274       1.7     uwe 	t->t_intr = intr;
    275       1.7     uwe 	t->t_arg = arg;
    276       1.7     uwe 
    277       1.7     uwe 	for (p = sc->sc_dmas; p != NULL && p->addr != start; p = p->next)
    278       1.7     uwe 		continue;
    279       1.7     uwe 	if (p == NULL) {
    280       1.7     uwe 		printf("%s: bad %s addr %p\n",
    281      1.21  cegger 		       device_xname(&sc->sc_ad1848.sc_dev), t->t_name, start);
    282      1.17    kent 		return EINVAL;
    283       1.7     uwe 	}
    284       1.7     uwe 
    285       1.7     uwe 	n = (char *)end - (char *)start;
    286       1.7     uwe 
    287       1.7     uwe 	t->t_dma = p;		/* the DMA memory segment */
    288       1.7     uwe 	t->t_segsz = n;		/* size of DMA segment */
    289       1.7     uwe 	t->t_blksz = blksize;	/* do transfers in blksize chunks */
    290       1.7     uwe 
    291       1.7     uwe 	if (n > t->t_blksz)
    292       1.7     uwe 		n = t->t_blksz;
    293       1.7     uwe 
    294       1.7     uwe 	t->t_cnt = n;
    295       1.7     uwe 
    296      1.12     wiz 	/* for caller to load into DMA controller */
    297       1.7     uwe 	*paddr = t->t_dma->dmamap->dm_segs[0].ds_addr;
    298       1.7     uwe 	*psize = n;
    299       1.7     uwe 
    300       1.7     uwe 	DPRINTF(("%s: init %s: [%p..%p] %lu bytes %lu blocks;"
    301      1.12     wiz 		 " DMA at 0x%lx count %lu\n",
    302      1.21  cegger 		 device_xname(&sc->sc_ad1848.sc_dev), t->t_name,
    303       1.7     uwe 		 start, end, (u_long)t->t_segsz, (u_long)t->t_blksz,
    304       1.7     uwe 		 (u_long)*paddr, (u_long)*psize));
    305       1.7     uwe 
    306       1.7     uwe 	t->t_active = 1;
    307      1.17    kent 	return 0;
    308       1.7     uwe }
    309       1.7     uwe 
    310       1.7     uwe /*
    311       1.7     uwe  * Compute next DMA address/counter, update transfer status.
    312       1.7     uwe  */
    313       1.7     uwe void
    314      1.17    kent cs4231_transfer_advance(struct cs_transfer *t, bus_addr_t *paddr,
    315      1.17    kent     bus_size_t *psize)
    316       1.7     uwe {
    317       1.7     uwe 	bus_addr_t dmabase, nextaddr;
    318       1.7     uwe 	bus_size_t togo;
    319       1.7     uwe 
    320       1.7     uwe 	dmabase = t->t_dma->dmamap->dm_segs[0].ds_addr;
    321       1.7     uwe 
    322       1.7     uwe 	togo = t->t_segsz - t->t_cnt;
    323       1.7     uwe 	if (togo == 0) {	/* roll over */
    324       1.7     uwe 		nextaddr = dmabase;
    325       1.7     uwe 		t->t_cnt = togo = t->t_blksz;
    326       1.7     uwe 	} else {
    327       1.7     uwe 		nextaddr = dmabase + t->t_cnt;
    328       1.7     uwe 		if (togo > t->t_blksz)
    329       1.7     uwe 			togo = t->t_blksz;
    330       1.7     uwe 		t->t_cnt += togo;
    331       1.7     uwe 	}
    332       1.7     uwe 
    333      1.12     wiz 	/* for caller to load into DMA controller */
    334       1.7     uwe 	*paddr = nextaddr;
    335       1.7     uwe 	*psize = togo;
    336       1.7     uwe }
    337       1.7     uwe 
    338       1.7     uwe 
    339       1.1     mrg int
    340      1.17    kent cs4231_open(void *addr, int flags)
    341       1.1     mrg {
    342      1.17    kent 	struct cs4231_softc *sc;
    343       1.1     mrg 
    344      1.17    kent 	sc = addr;
    345       1.1     mrg 	DPRINTF(("sa_open: unit %p\n", sc));
    346       1.1     mrg 
    347       1.7     uwe 	sc->sc_playback.t_active = 0;
    348       1.7     uwe 	sc->sc_playback.t_intr = NULL;
    349       1.7     uwe 	sc->sc_playback.t_arg = NULL;
    350       1.7     uwe 
    351       1.7     uwe 	sc->sc_capture.t_active = 0;
    352       1.7     uwe 	sc->sc_capture.t_intr = NULL;
    353       1.7     uwe 	sc->sc_capture.t_arg = NULL;
    354       1.7     uwe 
    355       1.7     uwe 	/* no interrupts from ad1848 */
    356       1.1     mrg 	ad_write(&sc->sc_ad1848, SP_PIN_CONTROL, 0);
    357       1.1     mrg 	ad1848_reset(&sc->sc_ad1848);
    358       1.1     mrg 
    359       1.7     uwe 	DPRINTF(("sa_open: ok -> sc=%p\n", sc));
    360      1.17    kent 	return 0;
    361       1.1     mrg }
    362       1.1     mrg 
    363       1.1     mrg void
    364      1.17    kent cs4231_close(void *addr)
    365       1.1     mrg {
    366       1.1     mrg 
    367      1.16  petrov 	DPRINTF(("sa_close: sc=%p\n", addr));
    368       1.7     uwe 
    369       1.7     uwe 	/* audio(9) already called halt methods */
    370       1.1     mrg 
    371       1.1     mrg 	DPRINTF(("sa_close: closed.\n"));
    372       1.1     mrg }
    373       1.1     mrg 
    374       1.1     mrg int
    375      1.17    kent cs4231_getdev(void *addr, struct audio_device *retp)
    376       1.1     mrg {
    377       1.7     uwe 
    378      1.17    kent 	*retp = cs4231_device;
    379      1.17    kent 	return 0;
    380       1.1     mrg }
    381       1.1     mrg 
    382      1.20  martin static const ad1848_devmap_t csmapping[] = {
    383       1.1     mrg 	{ CSAUDIO_DAC_LVL, AD1848_KIND_LVL, AD1848_AUX1_CHANNEL },
    384      1.17    kent 	{ CSAUDIO_LINE_IN_LVL, AD1848_KIND_LVL, AD1848_LINE_CHANNEL },
    385       1.1     mrg 	{ CSAUDIO_MONO_LVL, AD1848_KIND_LVL, AD1848_MONO_CHANNEL },
    386       1.1     mrg 	{ CSAUDIO_CD_LVL, AD1848_KIND_LVL, AD1848_AUX2_CHANNEL },
    387      1.10  martin 	{ CSAUDIO_OUTPUT_LVL, AD1848_KIND_LVL, AD1848_MONITOR_CHANNEL },
    388       1.1     mrg 	{ CSAUDIO_OUT_LVL, AD1848_KIND_LVL, AD1848_DAC_CHANNEL },
    389       1.1     mrg 	{ CSAUDIO_DAC_MUTE, AD1848_KIND_MUTE, AD1848_AUX1_CHANNEL },
    390       1.1     mrg 	{ CSAUDIO_LINE_IN_MUTE, AD1848_KIND_MUTE, AD1848_LINE_CHANNEL },
    391       1.1     mrg 	{ CSAUDIO_MONO_MUTE, AD1848_KIND_MUTE, AD1848_MONO_CHANNEL },
    392       1.1     mrg 	{ CSAUDIO_CD_MUTE, AD1848_KIND_MUTE, AD1848_AUX2_CHANNEL },
    393      1.10  martin 	{ CSAUDIO_OUTPUT_MUTE, AD1848_KIND_MUTE, AD1848_MONITOR_CHANNEL },
    394      1.10  martin 	{ CSAUDIO_OUT_MUTE, AD1848_KIND_MUTE, AD1848_OUT_CHANNEL },
    395       1.1     mrg 	{ CSAUDIO_REC_LVL, AD1848_KIND_RECORDGAIN, -1 },
    396       1.1     mrg 	{ CSAUDIO_RECORD_SOURCE, AD1848_KIND_RECORDSOURCE, -1 }
    397       1.1     mrg };
    398       1.1     mrg 
    399       1.1     mrg static int nummap = sizeof(csmapping) / sizeof(csmapping[0]);
    400       1.1     mrg 
    401       1.1     mrg 
    402       1.1     mrg int
    403      1.17    kent cs4231_set_port(void *addr, mixer_ctrl_t *cp)
    404       1.1     mrg {
    405      1.17    kent 	struct ad1848_softc *ac;
    406       1.1     mrg 
    407       1.1     mrg 	DPRINTF(("cs4231_set_port: port=%d", cp->dev));
    408      1.17    kent 	ac = addr;
    409      1.17    kent 	return ad1848_mixer_set_port(ac, csmapping, nummap, cp);
    410       1.1     mrg }
    411       1.1     mrg 
    412       1.1     mrg int
    413      1.17    kent cs4231_get_port(void *addr, mixer_ctrl_t *cp)
    414       1.1     mrg {
    415      1.17    kent 	struct ad1848_softc *ac;
    416       1.1     mrg 
    417       1.1     mrg 	DPRINTF(("cs4231_get_port: port=%d", cp->dev));
    418      1.17    kent 	ac = addr;
    419      1.17    kent 	return ad1848_mixer_get_port(ac, csmapping, nummap, cp);
    420       1.1     mrg }
    421       1.1     mrg 
    422       1.1     mrg int
    423      1.17    kent cs4231_get_props(void *addr)
    424       1.1     mrg {
    425       1.7     uwe 
    426      1.17    kent 	return AUDIO_PROP_FULLDUPLEX;
    427       1.1     mrg }
    428       1.1     mrg 
    429       1.1     mrg int
    430      1.17    kent cs4231_query_devinfo(void *addr, mixer_devinfo_t *dip)
    431       1.1     mrg {
    432       1.1     mrg 
    433       1.1     mrg 	switch(dip->index) {
    434       1.1     mrg 
    435       1.1     mrg 	case CSAUDIO_DAC_LVL:		/*  dacout */
    436       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    437       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    438       1.1     mrg 		dip->prev = AUDIO_MIXER_LAST;
    439       1.1     mrg 		dip->next = CSAUDIO_DAC_MUTE;
    440       1.1     mrg 		strcpy(dip->label.name, AudioNdac);
    441       1.1     mrg 		dip->un.v.num_channels = 2;
    442       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    443       1.1     mrg 		break;
    444       1.1     mrg 
    445       1.1     mrg 	case CSAUDIO_LINE_IN_LVL:	/* line */
    446       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    447       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    448       1.1     mrg 		dip->prev = AUDIO_MIXER_LAST;
    449       1.1     mrg 		dip->next = CSAUDIO_LINE_IN_MUTE;
    450       1.1     mrg 		strcpy(dip->label.name, AudioNline);
    451       1.1     mrg 		dip->un.v.num_channels = 2;
    452       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    453       1.1     mrg 		break;
    454       1.1     mrg 
    455       1.7     uwe 	case CSAUDIO_MONO_LVL:	/* mono/microphone mixer */
    456       1.7     uwe 		dip->type = AUDIO_MIXER_VALUE;
    457       1.7     uwe 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    458       1.7     uwe 		dip->prev = AUDIO_MIXER_LAST;
    459       1.7     uwe 		dip->next = CSAUDIO_MONO_MUTE;
    460       1.7     uwe 		strcpy(dip->label.name, AudioNmicrophone);
    461       1.7     uwe 		dip->un.v.num_channels = 1;
    462       1.7     uwe 		strcpy(dip->un.v.units.name, AudioNvolume);
    463       1.7     uwe 		break;
    464       1.7     uwe 
    465       1.1     mrg 	case CSAUDIO_CD_LVL:		/* cd */
    466       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    467       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    468       1.1     mrg 		dip->prev = AUDIO_MIXER_LAST;
    469       1.1     mrg 		dip->next = CSAUDIO_CD_MUTE;
    470       1.1     mrg 		strcpy(dip->label.name, AudioNcd);
    471       1.1     mrg 		dip->un.v.num_channels = 2;
    472       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    473       1.1     mrg 		break;
    474       1.1     mrg 
    475       1.1     mrg 
    476      1.10  martin 	case CSAUDIO_OUTPUT_LVL:	/* monitor level */
    477       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    478       1.1     mrg 		dip->mixer_class = CSAUDIO_MONITOR_CLASS;
    479      1.10  martin 		dip->next = CSAUDIO_OUTPUT_MUTE;
    480       1.1     mrg 		dip->prev = AUDIO_MIXER_LAST;
    481       1.1     mrg 		strcpy(dip->label.name, AudioNmonitor);
    482       1.1     mrg 		dip->un.v.num_channels = 1;
    483       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    484       1.1     mrg 		break;
    485       1.1     mrg 
    486       1.8  martin 	case CSAUDIO_OUT_LVL:		/* cs4231 output volume */
    487       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    488       1.1     mrg 		dip->mixer_class = CSAUDIO_MONITOR_CLASS;
    489      1.10  martin 		dip->next = dip->prev = AUDIO_MIXER_LAST;
    490       1.8  martin 		strcpy(dip->label.name, AudioNmaster);
    491       1.1     mrg 		dip->un.v.num_channels = 2;
    492       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    493       1.1     mrg 		break;
    494       1.1     mrg 
    495      1.10  martin 	case CSAUDIO_OUT_MUTE: /* mute built-in speaker */
    496      1.10  martin 		dip->mixer_class = CSAUDIO_MONITOR_CLASS;
    497      1.10  martin 		dip->type = AUDIO_MIXER_ENUM;
    498      1.10  martin 		dip->prev = CSAUDIO_MONITOR_CLASS;
    499      1.10  martin 		dip->next = AUDIO_MIXER_LAST;
    500      1.10  martin 		strcpy(dip->label.name, AudioNmono);
    501      1.10  martin 		/* names reversed, this is a "mute" value used as "mono enabled" */
    502      1.10  martin 		dip->un.e.num_mem = 2;
    503      1.10  martin 		strcpy(dip->un.e.member[0].label.name, AudioNon);
    504      1.10  martin 		dip->un.e.member[0].ord = 0;
    505      1.10  martin 		strcpy(dip->un.e.member[1].label.name, AudioNoff);
    506      1.10  martin 		dip->un.e.member[1].ord = 1;
    507      1.10  martin 		break;
    508      1.10  martin 
    509       1.1     mrg 	case CSAUDIO_LINE_IN_MUTE:
    510       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    511       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    512       1.1     mrg 		dip->prev = CSAUDIO_LINE_IN_LVL;
    513       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    514       1.1     mrg 		goto mute;
    515      1.17    kent 
    516       1.1     mrg 	case CSAUDIO_DAC_MUTE:
    517       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    518       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    519       1.1     mrg 		dip->prev = CSAUDIO_DAC_LVL;
    520       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    521       1.1     mrg 		goto mute;
    522       1.1     mrg 
    523       1.1     mrg 	case CSAUDIO_CD_MUTE:
    524       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    525       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    526       1.1     mrg 		dip->prev = CSAUDIO_CD_LVL;
    527       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    528       1.1     mrg 		goto mute;
    529      1.17    kent 
    530       1.1     mrg 	case CSAUDIO_MONO_MUTE:
    531       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    532       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    533       1.1     mrg 		dip->prev = CSAUDIO_MONO_LVL;
    534       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    535       1.1     mrg 		goto mute;
    536       1.1     mrg 
    537      1.10  martin 	case CSAUDIO_OUTPUT_MUTE:
    538       1.7     uwe 		dip->mixer_class = CSAUDIO_MONITOR_CLASS;
    539       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    540      1.10  martin 		dip->prev = CSAUDIO_OUTPUT_LVL;
    541       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    542       1.1     mrg 	mute:
    543       1.1     mrg 		strcpy(dip->label.name, AudioNmute);
    544       1.1     mrg 		dip->un.e.num_mem = 2;
    545       1.1     mrg 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
    546       1.1     mrg 		dip->un.e.member[0].ord = 0;
    547       1.1     mrg 		strcpy(dip->un.e.member[1].label.name, AudioNon);
    548       1.1     mrg 		dip->un.e.member[1].ord = 1;
    549       1.1     mrg 		break;
    550      1.17    kent 
    551       1.1     mrg 	case CSAUDIO_REC_LVL:	/* record level */
    552       1.1     mrg 		dip->type = AUDIO_MIXER_VALUE;
    553       1.1     mrg 		dip->mixer_class = CSAUDIO_RECORD_CLASS;
    554       1.1     mrg 		dip->prev = AUDIO_MIXER_LAST;
    555       1.1     mrg 		dip->next = CSAUDIO_RECORD_SOURCE;
    556       1.1     mrg 		strcpy(dip->label.name, AudioNrecord);
    557       1.1     mrg 		dip->un.v.num_channels = 2;
    558       1.1     mrg 		strcpy(dip->un.v.units.name, AudioNvolume);
    559       1.1     mrg 		break;
    560       1.1     mrg 
    561       1.1     mrg 	case CSAUDIO_RECORD_SOURCE:
    562       1.1     mrg 		dip->mixer_class = CSAUDIO_RECORD_CLASS;
    563       1.1     mrg 		dip->type = AUDIO_MIXER_ENUM;
    564       1.1     mrg 		dip->prev = CSAUDIO_REC_LVL;
    565       1.1     mrg 		dip->next = AUDIO_MIXER_LAST;
    566       1.1     mrg 		strcpy(dip->label.name, AudioNsource);
    567       1.1     mrg 		dip->un.e.num_mem = 4;
    568       1.1     mrg 		strcpy(dip->un.e.member[0].label.name, AudioNoutput);
    569       1.1     mrg 		dip->un.e.member[0].ord = DAC_IN_PORT;
    570       1.1     mrg 		strcpy(dip->un.e.member[1].label.name, AudioNmicrophone);
    571       1.1     mrg 		dip->un.e.member[1].ord = MIC_IN_PORT;
    572       1.1     mrg 		strcpy(dip->un.e.member[2].label.name, AudioNdac);
    573       1.1     mrg 		dip->un.e.member[2].ord = AUX1_IN_PORT;
    574       1.1     mrg 		strcpy(dip->un.e.member[3].label.name, AudioNline);
    575       1.1     mrg 		dip->un.e.member[3].ord = LINE_IN_PORT;
    576       1.1     mrg 		break;
    577       1.1     mrg 
    578       1.1     mrg 	case CSAUDIO_INPUT_CLASS:		/* input class descriptor */
    579       1.1     mrg 		dip->type = AUDIO_MIXER_CLASS;
    580       1.1     mrg 		dip->mixer_class = CSAUDIO_INPUT_CLASS;
    581       1.1     mrg 		dip->next = dip->prev = AUDIO_MIXER_LAST;
    582       1.1     mrg 		strcpy(dip->label.name, AudioCinputs);
    583       1.1     mrg 		break;
    584       1.1     mrg 
    585      1.10  martin 	case CSAUDIO_MONITOR_CLASS:		/* output class descriptor */
    586       1.1     mrg 		dip->type = AUDIO_MIXER_CLASS;
    587       1.1     mrg 		dip->mixer_class = CSAUDIO_MONITOR_CLASS;
    588       1.1     mrg 		dip->next = dip->prev = AUDIO_MIXER_LAST;
    589       1.1     mrg 		strcpy(dip->label.name, AudioCmonitor);
    590       1.1     mrg 		break;
    591      1.10  martin 
    592       1.1     mrg 	case CSAUDIO_RECORD_CLASS:		/* record source class */
    593       1.1     mrg 		dip->type = AUDIO_MIXER_CLASS;
    594       1.1     mrg 		dip->mixer_class = CSAUDIO_RECORD_CLASS;
    595       1.1     mrg 		dip->next = dip->prev = AUDIO_MIXER_LAST;
    596       1.1     mrg 		strcpy(dip->label.name, AudioCrecord);
    597       1.1     mrg 		break;
    598       1.1     mrg 
    599       1.1     mrg 	default:
    600       1.1     mrg 		return ENXIO;
    601       1.1     mrg 		/*NOTREACHED*/
    602       1.1     mrg 	}
    603       1.1     mrg 	DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name));
    604       1.1     mrg 
    605      1.17    kent 	return 0;
    606       1.1     mrg }
    607       1.1     mrg 
    608       1.1     mrg #endif /* NAUDIO > 0 */
    609