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eso.c revision 1.56
      1  1.56    cegger /*	$NetBSD: eso.c,v 1.56 2009/05/12 08:23:00 cegger Exp $	*/
      2   1.1    kleink 
      3   1.1    kleink /*
      4  1.34    kleink  * Copyright (c) 1999, 2000, 2004 Klaus J. Klein
      5   1.1    kleink  * All rights reserved.
      6   1.1    kleink  *
      7   1.1    kleink  * Redistribution and use in source and binary forms, with or without
      8   1.1    kleink  * modification, are permitted provided that the following conditions
      9   1.1    kleink  * are met:
     10   1.1    kleink  * 1. Redistributions of source code must retain the above copyright
     11   1.1    kleink  *    notice, this list of conditions and the following disclaimer.
     12   1.1    kleink  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1    kleink  *    notice, this list of conditions and the following disclaimer in the
     14   1.1    kleink  *    documentation and/or other materials provided with the distribution.
     15   1.1    kleink  * 3. The name of the author may not be used to endorse or promote products
     16   1.1    kleink  *    derived from this software without specific prior written permission.
     17   1.1    kleink  *
     18   1.1    kleink  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19   1.1    kleink  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20   1.1    kleink  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21   1.1    kleink  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22   1.1    kleink  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     23   1.1    kleink  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     24   1.1    kleink  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     25   1.1    kleink  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     26   1.1    kleink  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     27   1.1    kleink  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     28   1.1    kleink  * SUCH DAMAGE.
     29   1.1    kleink  */
     30   1.1    kleink 
     31   1.1    kleink /*
     32   1.1    kleink  * ESS Technology Inc. Solo-1 PCI AudioDrive (ES1938/1946) device driver.
     33   1.1    kleink  */
     34  1.23     lukem 
     35  1.23     lukem #include <sys/cdefs.h>
     36  1.56    cegger __KERNEL_RCSID(0, "$NetBSD: eso.c,v 1.56 2009/05/12 08:23:00 cegger Exp $");
     37   1.1    kleink 
     38   1.5    kleink #include "mpu.h"
     39   1.5    kleink 
     40   1.1    kleink #include <sys/param.h>
     41   1.1    kleink #include <sys/systm.h>
     42   1.1    kleink #include <sys/kernel.h>
     43   1.1    kleink #include <sys/malloc.h>
     44   1.1    kleink #include <sys/device.h>
     45  1.49    kleink #include <sys/queue.h>
     46   1.1    kleink #include <sys/proc.h>
     47   1.1    kleink 
     48   1.1    kleink #include <dev/pci/pcidevs.h>
     49   1.1    kleink #include <dev/pci/pcivar.h>
     50   1.1    kleink 
     51   1.1    kleink #include <sys/audioio.h>
     52   1.1    kleink #include <dev/audio_if.h>
     53   1.1    kleink #include <dev/midi_if.h>
     54   1.1    kleink 
     55   1.1    kleink #include <dev/mulaw.h>
     56   1.1    kleink #include <dev/auconv.h>
     57   1.1    kleink 
     58   1.2  augustss #include <dev/ic/mpuvar.h>
     59   1.1    kleink #include <dev/ic/i8237reg.h>
     60   1.1    kleink #include <dev/pci/esoreg.h>
     61   1.1    kleink #include <dev/pci/esovar.h>
     62   1.1    kleink 
     63  1.51        ad #include <sys/bus.h>
     64  1.51        ad #include <sys/intr.h>
     65   1.1    kleink 
     66  1.35    kleink /*
     67  1.35    kleink  * XXX Work around the 24-bit implementation limit of the Audio 1 DMA
     68  1.35    kleink  * XXX engine by allocating through the ISA DMA tag.
     69  1.35    kleink  */
     70  1.35    kleink #if defined(amd64) || defined(i386)
     71  1.35    kleink #include "isa.h"
     72  1.35    kleink #if NISA > 0
     73  1.35    kleink #include <dev/isa/isavar.h>
     74  1.35    kleink #endif
     75  1.35    kleink #endif
     76  1.35    kleink 
     77   1.1    kleink #if defined(AUDIO_DEBUG) || defined(DEBUG)
     78   1.1    kleink #define DPRINTF(x) printf x
     79   1.1    kleink #else
     80   1.1    kleink #define DPRINTF(x)
     81   1.1    kleink #endif
     82   1.1    kleink 
     83   1.1    kleink struct eso_dma {
     84   1.8    kleink 	bus_dma_tag_t		ed_dmat;
     85   1.1    kleink 	bus_dmamap_t		ed_map;
     86  1.50  christos 	void *			ed_kva;
     87   1.1    kleink 	bus_dma_segment_t	ed_segs[1];
     88   1.1    kleink 	int			ed_nsegs;
     89   1.1    kleink 	size_t			ed_size;
     90  1.49    kleink 	SLIST_ENTRY(eso_dma)	ed_slist;
     91   1.1    kleink };
     92   1.1    kleink 
     93  1.49    kleink #define KVADDR(dma)	((void *)(dma)->ed_kva)
     94   1.1    kleink #define DMAADDR(dma)	((dma)->ed_map->dm_segs[0].ds_addr)
     95   1.1    kleink 
     96   1.1    kleink /* Autoconfiguration interface */
     97  1.55    cegger static int eso_match(device_t, cfdata_t, void *);
     98  1.55    cegger static void eso_attach(device_t, device_t, void *);
     99  1.55    cegger static void eso_defer(device_t);
    100  1.39      kent static int eso_print(void *, const char *);
    101   1.1    kleink 
    102  1.26   thorpej CFATTACH_DECL(eso, sizeof (struct eso_softc),
    103  1.27   thorpej     eso_match, eso_attach, NULL, NULL);
    104   1.1    kleink 
    105   1.1    kleink /* PCI interface */
    106  1.39      kent static int eso_intr(void *);
    107   1.1    kleink 
    108   1.1    kleink /* MI audio layer interface */
    109  1.39      kent static int	eso_query_encoding(void *, struct audio_encoding *);
    110  1.39      kent static int	eso_set_params(void *, int, int, audio_params_t *,
    111  1.38      kent 		    audio_params_t *, stream_filter_list_t *,
    112  1.39      kent 		    stream_filter_list_t *);
    113  1.39      kent static int	eso_round_blocksize(void *, int, int, const audio_params_t *);
    114  1.39      kent static int	eso_halt_output(void *);
    115  1.39      kent static int	eso_halt_input(void *);
    116  1.39      kent static int	eso_getdev(void *, struct audio_device *);
    117  1.39      kent static int	eso_set_port(void *, mixer_ctrl_t *);
    118  1.39      kent static int	eso_get_port(void *, mixer_ctrl_t *);
    119  1.39      kent static int	eso_query_devinfo(void *, mixer_devinfo_t *);
    120  1.39      kent static void *	eso_allocm(void *, int, size_t, struct malloc_type *, int);
    121  1.39      kent static void	eso_freem(void *, void *, struct malloc_type *);
    122  1.39      kent static size_t	eso_round_buffersize(void *, int, size_t);
    123  1.39      kent static paddr_t	eso_mappage(void *, void *, off_t, int);
    124  1.39      kent static int	eso_get_props(void *);
    125  1.39      kent static int	eso_trigger_output(void *, void *, void *, int,
    126  1.39      kent 		    void (*)(void *), void *, const audio_params_t *);
    127  1.39      kent static int	eso_trigger_input(void *, void *, void *, int,
    128  1.39      kent 		    void (*)(void *), void *, const audio_params_t *);
    129   1.1    kleink 
    130  1.37      yamt static const struct audio_hw_if eso_hw_if = {
    131  1.38      kent 	NULL,			/* open */
    132  1.38      kent 	NULL,			/* close */
    133   1.1    kleink 	NULL,			/* drain */
    134   1.1    kleink 	eso_query_encoding,
    135   1.1    kleink 	eso_set_params,
    136   1.1    kleink 	eso_round_blocksize,
    137   1.1    kleink 	NULL,			/* commit_settings */
    138   1.1    kleink 	NULL,			/* init_output */
    139   1.1    kleink 	NULL,			/* init_input */
    140   1.1    kleink 	NULL,			/* start_output */
    141   1.1    kleink 	NULL,			/* start_input */
    142   1.1    kleink 	eso_halt_output,
    143   1.1    kleink 	eso_halt_input,
    144   1.1    kleink 	NULL,			/* speaker_ctl */
    145   1.1    kleink 	eso_getdev,
    146   1.1    kleink 	NULL,			/* setfd */
    147   1.1    kleink 	eso_set_port,
    148   1.1    kleink 	eso_get_port,
    149   1.1    kleink 	eso_query_devinfo,
    150   1.1    kleink 	eso_allocm,
    151   1.1    kleink 	eso_freem,
    152   1.1    kleink 	eso_round_buffersize,
    153   1.1    kleink 	eso_mappage,
    154   1.1    kleink 	eso_get_props,
    155   1.1    kleink 	eso_trigger_output,
    156  1.22  augustss 	eso_trigger_input,
    157  1.22  augustss 	NULL,			/* dev_ioctl */
    158  1.43  christos 	NULL,			/* powerstate */
    159   1.1    kleink };
    160   1.1    kleink 
    161   1.1    kleink static const char * const eso_rev2model[] = {
    162   1.1    kleink 	"ES1938",
    163  1.13    kleink 	"ES1946",
    164  1.13    kleink 	"ES1946 Revision E"
    165   1.1    kleink };
    166   1.1    kleink 
    167  1.40    kleink #define ESO_NFORMATS	8
    168  1.38      kent static const struct audio_format eso_formats[ESO_NFORMATS] = {
    169  1.40    kleink 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 16, 16,
    170  1.38      kent 	 2, AUFMT_STEREO, 0, {ESO_MINRATE, ESO_MAXRATE}},
    171  1.40    kleink 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 16, 16,
    172  1.40    kleink 	 1, AUFMT_MONAURAL, 0, {ESO_MINRATE, ESO_MAXRATE}},
    173  1.40    kleink 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 16, 16,
    174  1.38      kent 	 2, AUFMT_STEREO, 0, {ESO_MINRATE, ESO_MAXRATE}},
    175  1.40    kleink 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 16, 16,
    176  1.40    kleink 	 1, AUFMT_MONAURAL, 0, {ESO_MINRATE, ESO_MAXRATE}},
    177  1.40    kleink 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 8, 8,
    178  1.38      kent 	 2, AUFMT_STEREO, 0, {ESO_MINRATE, ESO_MAXRATE}},
    179  1.38      kent 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 8, 8,
    180  1.40    kleink 	 1, AUFMT_MONAURAL, 0, {ESO_MINRATE, ESO_MAXRATE}},
    181  1.38      kent 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 8, 8,
    182  1.38      kent 	 2, AUFMT_STEREO, 0, {ESO_MINRATE, ESO_MAXRATE}},
    183  1.38      kent 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 8, 8,
    184  1.40    kleink 	 1, AUFMT_MONAURAL, 0, {ESO_MINRATE, ESO_MAXRATE}}
    185  1.38      kent };
    186  1.38      kent 
    187   1.1    kleink 
    188   1.1    kleink /*
    189   1.1    kleink  * Utility routines
    190   1.1    kleink  */
    191   1.1    kleink /* Register access etc. */
    192  1.39      kent static uint8_t	eso_read_ctlreg(struct eso_softc *, uint8_t);
    193  1.39      kent static uint8_t	eso_read_mixreg(struct eso_softc *, uint8_t);
    194  1.39      kent static uint8_t	eso_read_rdr(struct eso_softc *);
    195  1.39      kent static void	eso_reload_master_vol(struct eso_softc *);
    196  1.39      kent static int	eso_reset(struct eso_softc *);
    197  1.39      kent static void	eso_set_gain(struct eso_softc *, unsigned int);
    198  1.39      kent static int	eso_set_recsrc(struct eso_softc *, unsigned int);
    199  1.39      kent static int	eso_set_monooutsrc(struct eso_softc *, unsigned int);
    200  1.39      kent static int	eso_set_monoinbypass(struct eso_softc *, unsigned int);
    201  1.39      kent static int	eso_set_preamp(struct eso_softc *, unsigned int);
    202  1.39      kent static void	eso_write_cmd(struct eso_softc *, uint8_t);
    203  1.39      kent static void	eso_write_ctlreg(struct eso_softc *, uint8_t, uint8_t);
    204  1.39      kent static void	eso_write_mixreg(struct eso_softc *, uint8_t, uint8_t);
    205   1.1    kleink /* DMA memory allocation */
    206  1.39      kent static int	eso_allocmem(struct eso_softc *, size_t, size_t, size_t,
    207  1.39      kent 		    int, int, struct eso_dma *);
    208  1.39      kent static void	eso_freemem(struct eso_dma *);
    209  1.50  christos static struct eso_dma *	eso_kva2dma(const struct eso_softc *, const void *);
    210   1.1    kleink 
    211   1.1    kleink 
    212   1.1    kleink static int
    213  1.55    cegger eso_match(device_t parent, cfdata_t match, void *aux)
    214   1.1    kleink {
    215  1.39      kent 	struct pci_attach_args *pa;
    216   1.1    kleink 
    217  1.39      kent 	pa = aux;
    218   1.1    kleink 	if (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_ESSTECH &&
    219   1.1    kleink 	    PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_ESSTECH_SOLO1)
    220  1.39      kent 		return 1;
    221   1.1    kleink 
    222  1.39      kent 	return 0;
    223   1.1    kleink }
    224   1.1    kleink 
    225   1.1    kleink static void
    226  1.55    cegger eso_attach(device_t parent, device_t self, void *aux)
    227   1.1    kleink {
    228  1.39      kent 	struct eso_softc *sc;
    229  1.39      kent 	struct pci_attach_args *pa;
    230   1.1    kleink 	struct audio_attach_args aa;
    231   1.1    kleink 	pci_intr_handle_t ih;
    232   1.1    kleink 	bus_addr_t vcbase;
    233   1.1    kleink 	const char *intrstring;
    234   1.1    kleink 	int idx;
    235   1.5    kleink 	uint8_t a2mode, mvctl;
    236   1.1    kleink 
    237  1.56    cegger 	sc = device_private(self);
    238  1.39      kent 	pa = aux;
    239  1.29   thorpej 	aprint_naive(": Audio controller\n");
    240  1.29   thorpej 
    241   1.1    kleink 	sc->sc_revision = PCI_REVISION(pa->pa_class);
    242   1.1    kleink 
    243  1.29   thorpej 	aprint_normal(": ESS Solo-1 PCI AudioDrive ");
    244   1.9       cgd 	if (sc->sc_revision <
    245   1.1    kleink 	    sizeof (eso_rev2model) / sizeof (eso_rev2model[0]))
    246  1.29   thorpej 		aprint_normal("%s\n", eso_rev2model[sc->sc_revision]);
    247   1.1    kleink 	else
    248  1.29   thorpej 		aprint_normal("(unknown rev. 0x%02x)\n", sc->sc_revision);
    249   1.1    kleink 
    250   1.1    kleink 	/* Map I/O registers. */
    251   1.1    kleink 	if (pci_mapreg_map(pa, ESO_PCI_BAR_IO, PCI_MAPREG_TYPE_IO, 0,
    252   1.1    kleink 	    &sc->sc_iot, &sc->sc_ioh, NULL, NULL)) {
    253  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't map I/O space\n");
    254   1.1    kleink 		return;
    255   1.1    kleink 	}
    256   1.1    kleink 	if (pci_mapreg_map(pa, ESO_PCI_BAR_SB, PCI_MAPREG_TYPE_IO, 0,
    257   1.1    kleink 	    &sc->sc_sb_iot, &sc->sc_sb_ioh, NULL, NULL)) {
    258  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't map SB I/O space\n");
    259   1.1    kleink 		return;
    260   1.1    kleink 	}
    261   1.1    kleink 	if (pci_mapreg_map(pa, ESO_PCI_BAR_VC, PCI_MAPREG_TYPE_IO, 0,
    262   1.1    kleink 	    &sc->sc_dmac_iot, &sc->sc_dmac_ioh, &vcbase, &sc->sc_vcsize)) {
    263  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't map VC I/O space\n");
    264   1.1    kleink 		/* Don't bail out yet: we can map it later, see below. */
    265   1.1    kleink 		vcbase = 0;
    266   1.1    kleink 		sc->sc_vcsize = 0x10; /* From the data sheet. */
    267   1.1    kleink 	}
    268   1.1    kleink 	if (pci_mapreg_map(pa, ESO_PCI_BAR_MPU, PCI_MAPREG_TYPE_IO, 0,
    269   1.3  augustss 	    &sc->sc_mpu_iot, &sc->sc_mpu_ioh, NULL, NULL)) {
    270  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't map MPU I/O space\n");
    271   1.1    kleink 		return;
    272   1.1    kleink 	}
    273   1.1    kleink 	if (pci_mapreg_map(pa, ESO_PCI_BAR_GAME, PCI_MAPREG_TYPE_IO, 0,
    274   1.1    kleink 	    &sc->sc_game_iot, &sc->sc_game_ioh, NULL, NULL)) {
    275  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't map Game I/O space\n");
    276   1.1    kleink 		return;
    277   1.1    kleink 	}
    278   1.1    kleink 
    279   1.1    kleink 	sc->sc_dmat = pa->pa_dmat;
    280  1.49    kleink 	SLIST_INIT(&sc->sc_dmas);
    281   1.1    kleink 	sc->sc_dmac_configured = 0;
    282   1.1    kleink 
    283   1.1    kleink 	/* Enable bus mastering. */
    284   1.1    kleink 	pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG,
    285   1.1    kleink 	    pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG) |
    286   1.1    kleink 	    PCI_COMMAND_MASTER_ENABLE);
    287   1.1    kleink 
    288   1.1    kleink 	/* Reset the device; bail out upon failure. */
    289   1.1    kleink 	if (eso_reset(sc) != 0) {
    290  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "can't reset\n");
    291   1.1    kleink 		return;
    292   1.1    kleink 	}
    293  1.39      kent 
    294   1.1    kleink 	/* Select the DMA/IRQ policy: DDMA, ISA IRQ emulation disabled. */
    295   1.1    kleink 	pci_conf_write(pa->pa_pc, pa->pa_tag, ESO_PCI_S1C,
    296   1.1    kleink 	    pci_conf_read(pa->pa_pc, pa->pa_tag, ESO_PCI_S1C) &
    297   1.1    kleink 	    ~(ESO_PCI_S1C_IRQP_MASK | ESO_PCI_S1C_DMAP_MASK));
    298   1.1    kleink 
    299   1.5    kleink 	/* Enable the relevant (DMA) interrupts. */
    300   1.1    kleink 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, ESO_IO_IRQCTL,
    301  1.14    kleink 	    ESO_IO_IRQCTL_A1IRQ | ESO_IO_IRQCTL_A2IRQ | ESO_IO_IRQCTL_HVIRQ |
    302  1.14    kleink 	    ESO_IO_IRQCTL_MPUIRQ);
    303  1.39      kent 
    304   1.1    kleink 	/* Set up A1's sample rate generator for new-style parameters. */
    305   1.1    kleink 	a2mode = eso_read_mixreg(sc, ESO_MIXREG_A2MODE);
    306   1.1    kleink 	a2mode |= ESO_MIXREG_A2MODE_NEWA1 | ESO_MIXREG_A2MODE_ASYNC;
    307   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2MODE, a2mode);
    308  1.39      kent 
    309  1.31    kleink 	/* Slave Master Volume to Hardware Volume Control Counter, unmask IRQ.*/
    310  1.14    kleink 	mvctl = eso_read_mixreg(sc, ESO_MIXREG_MVCTL);
    311  1.14    kleink 	mvctl &= ~ESO_MIXREG_MVCTL_SPLIT;
    312  1.14    kleink 	mvctl |= ESO_MIXREG_MVCTL_HVIRQM;
    313  1.14    kleink 	eso_write_mixreg(sc, ESO_MIXREG_MVCTL, mvctl);
    314  1.14    kleink 
    315   1.1    kleink 	/* Set mixer regs to something reasonable, needs work. */
    316  1.12    kleink 	sc->sc_recmon = sc->sc_spatializer = sc->sc_mvmute = 0;
    317  1.34    kleink 	eso_set_monooutsrc(sc, ESO_MIXREG_MPM_MOMUTE);
    318  1.34    kleink 	eso_set_monoinbypass(sc, 0);
    319  1.34    kleink 	eso_set_preamp(sc, 1);
    320   1.1    kleink 	for (idx = 0; idx < ESO_NGAINDEVS; idx++) {
    321   1.1    kleink 		int v;
    322  1.39      kent 
    323   1.1    kleink 		switch (idx) {
    324  1.39      kent 		case ESO_MIC_PLAY_VOL:
    325   1.1    kleink 		case ESO_LINE_PLAY_VOL:
    326   1.1    kleink 		case ESO_CD_PLAY_VOL:
    327   1.1    kleink 		case ESO_MONO_PLAY_VOL:
    328   1.1    kleink 		case ESO_AUXB_PLAY_VOL:
    329   1.1    kleink 		case ESO_DAC_REC_VOL:
    330   1.1    kleink 		case ESO_LINE_REC_VOL:
    331   1.1    kleink 		case ESO_SYNTH_REC_VOL:
    332   1.1    kleink 		case ESO_CD_REC_VOL:
    333   1.1    kleink 		case ESO_MONO_REC_VOL:
    334   1.1    kleink 		case ESO_AUXB_REC_VOL:
    335   1.1    kleink 		case ESO_SPATIALIZER:
    336   1.1    kleink 			v = 0;
    337   1.1    kleink 			break;
    338   1.1    kleink 		case ESO_MASTER_VOL:
    339   1.1    kleink 			v = ESO_GAIN_TO_6BIT(AUDIO_MAX_GAIN / 2);
    340   1.1    kleink 			break;
    341   1.1    kleink 		default:
    342   1.1    kleink 			v = ESO_GAIN_TO_4BIT(AUDIO_MAX_GAIN / 2);
    343   1.1    kleink 			break;
    344   1.1    kleink 		}
    345   1.1    kleink 		sc->sc_gain[idx][ESO_LEFT] = sc->sc_gain[idx][ESO_RIGHT] = v;
    346   1.1    kleink 		eso_set_gain(sc, idx);
    347   1.1    kleink 	}
    348   1.1    kleink 	eso_set_recsrc(sc, ESO_MIXREG_ERS_MIC);
    349  1.39      kent 
    350   1.1    kleink 	/* Map and establish the interrupt. */
    351  1.20  sommerfe 	if (pci_intr_map(pa, &ih)) {
    352  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "couldn't map interrupt\n");
    353   1.1    kleink 		return;
    354   1.1    kleink 	}
    355   1.1    kleink 	intrstring = pci_intr_string(pa->pa_pc, ih);
    356   1.1    kleink 	sc->sc_ih  = pci_intr_establish(pa->pa_pc, ih, IPL_AUDIO, eso_intr, sc);
    357   1.1    kleink 	if (sc->sc_ih == NULL) {
    358  1.53    cegger 		aprint_error_dev(&sc->sc_dev, "couldn't establish interrupt");
    359   1.1    kleink 		if (intrstring != NULL)
    360  1.29   thorpej 			aprint_normal(" at %s", intrstring);
    361  1.29   thorpej 		aprint_normal("\n");
    362   1.1    kleink 		return;
    363   1.1    kleink 	}
    364  1.53    cegger 	aprint_normal_dev(&sc->sc_dev, "interrupting at %s\n",
    365  1.29   thorpej 	    intrstring);
    366   1.1    kleink 
    367   1.1    kleink 	/*
    368   1.1    kleink 	 * Set up the DDMA Control register; a suitable I/O region has been
    369   1.1    kleink 	 * supposedly mapped in the VC base address register.
    370   1.1    kleink 	 *
    371   1.1    kleink 	 * The Solo-1 has an ... interesting silicon bug that causes it to
    372   1.1    kleink 	 * not respond to I/O space accesses to the Audio 1 DMA controller
    373   1.1    kleink 	 * if the latter's mapping base address is aligned on a 1K boundary.
    374   1.1    kleink 	 * As a consequence, it is quite possible for the mapping provided
    375   1.1    kleink 	 * in the VC BAR to be useless.  To work around this, we defer this
    376   1.1    kleink 	 * part until all autoconfiguration on our parent bus is completed
    377   1.1    kleink 	 * and then try to map it ourselves in fulfillment of the constraint.
    378  1.39      kent 	 *
    379   1.1    kleink 	 * According to the register map we may write to the low 16 bits
    380   1.1    kleink 	 * only, but experimenting has shown we're safe.
    381   1.1    kleink 	 * -kjk
    382   1.1    kleink 	 */
    383   1.1    kleink 	if (ESO_VALID_DDMAC_BASE(vcbase)) {
    384   1.1    kleink 		pci_conf_write(pa->pa_pc, pa->pa_tag, ESO_PCI_DDMAC,
    385   1.1    kleink 		    vcbase | ESO_PCI_DDMAC_DE);
    386   1.1    kleink 		sc->sc_dmac_configured = 1;
    387   1.1    kleink 
    388  1.53    cegger 		aprint_normal_dev(&sc->sc_dev,
    389  1.53    cegger 		    "mapping Audio 1 DMA using VC I/O space at 0x%lx\n",
    390  1.53    cegger 		    (unsigned long)vcbase);
    391   1.1    kleink 	} else {
    392   1.1    kleink 		DPRINTF(("%s: VC I/O space at 0x%lx not suitable, deferring\n",
    393  1.53    cegger 		    device_xname(&sc->sc_dev), (unsigned long)vcbase));
    394   1.1    kleink 		sc->sc_pa = *pa;
    395   1.1    kleink 		config_defer(self, eso_defer);
    396   1.1    kleink 	}
    397  1.39      kent 
    398   1.1    kleink 	audio_attach_mi(&eso_hw_if, sc, &sc->sc_dev);
    399   1.1    kleink 
    400   1.1    kleink 	aa.type = AUDIODEV_TYPE_OPL;
    401   1.1    kleink 	aa.hwif = NULL;
    402   1.1    kleink 	aa.hdl = NULL;
    403   1.1    kleink 	(void)config_found(&sc->sc_dev, &aa, audioprint);
    404   1.1    kleink 
    405   1.3  augustss 	aa.type = AUDIODEV_TYPE_MPU;
    406   1.3  augustss 	aa.hwif = NULL;
    407   1.3  augustss 	aa.hdl = NULL;
    408   1.3  augustss 	sc->sc_mpudev = config_found(&sc->sc_dev, &aa, audioprint);
    409   1.5    kleink 	if (sc->sc_mpudev != NULL) {
    410   1.5    kleink 		/* Unmask the MPU irq. */
    411   1.5    kleink 		mvctl = eso_read_mixreg(sc, ESO_MIXREG_MVCTL);
    412   1.5    kleink 		mvctl |= ESO_MIXREG_MVCTL_MPUIRQM;
    413   1.5    kleink 		eso_write_mixreg(sc, ESO_MIXREG_MVCTL, mvctl);
    414   1.5    kleink 	}
    415  1.24    kleink 
    416  1.24    kleink 	aa.type = AUDIODEV_TYPE_AUX;
    417  1.24    kleink 	aa.hwif = NULL;
    418  1.24    kleink 	aa.hdl = NULL;
    419  1.24    kleink 	(void)config_found(&sc->sc_dev, &aa, eso_print);
    420   1.1    kleink }
    421   1.1    kleink 
    422   1.1    kleink static void
    423  1.55    cegger eso_defer(device_t self)
    424   1.1    kleink {
    425  1.39      kent 	struct eso_softc *sc;
    426  1.39      kent 	struct pci_attach_args *pa;
    427   1.1    kleink 	bus_addr_t addr, start;
    428   1.1    kleink 
    429  1.56    cegger 	sc = device_private(self);
    430  1.39      kent 	pa = &sc->sc_pa;
    431  1.53    cegger 	aprint_normal_dev(&sc->sc_dev, "");
    432   1.1    kleink 
    433   1.1    kleink 	/*
    434   1.1    kleink 	 * This is outright ugly, but since we must not make assumptions
    435   1.1    kleink 	 * on the underlying allocator's behaviour it's the most straight-
    436   1.1    kleink 	 * forward way to implement it.  Note that we skip over the first
    437   1.1    kleink 	 * 1K region, which is typically occupied by an attached ISA bus.
    438   1.1    kleink 	 */
    439   1.1    kleink 	for (start = 0x0400; start < 0xffff; start += 0x0400) {
    440   1.1    kleink 		if (bus_space_alloc(sc->sc_iot,
    441   1.1    kleink 		    start + sc->sc_vcsize, start + 0x0400 - 1,
    442   1.1    kleink 		    sc->sc_vcsize, sc->sc_vcsize, 0, 0, &addr,
    443   1.1    kleink 		    &sc->sc_dmac_ioh) != 0)
    444   1.1    kleink 			continue;
    445   1.1    kleink 
    446   1.1    kleink 		pci_conf_write(pa->pa_pc, pa->pa_tag, ESO_PCI_DDMAC,
    447   1.1    kleink 		    addr | ESO_PCI_DDMAC_DE);
    448   1.1    kleink 		sc->sc_dmac_iot = sc->sc_iot;
    449   1.1    kleink 		sc->sc_dmac_configured = 1;
    450  1.29   thorpej 		aprint_normal("mapping Audio 1 DMA using I/O space at 0x%lx\n",
    451   1.1    kleink 		    (unsigned long)addr);
    452   1.1    kleink 
    453   1.1    kleink 		return;
    454   1.1    kleink 	}
    455  1.39      kent 
    456  1.29   thorpej 	aprint_error("can't map Audio 1 DMA into I/O space\n");
    457  1.24    kleink }
    458  1.24    kleink 
    459  1.24    kleink /* ARGSUSED */
    460  1.24    kleink static int
    461  1.45  christos eso_print(void *aux, const char *pnp)
    462  1.24    kleink {
    463  1.24    kleink 
    464  1.24    kleink 	/* Only joys can attach via this; easy. */
    465  1.24    kleink 	if (pnp)
    466  1.28   thorpej 		aprint_normal("joy at %s:", pnp);
    467  1.24    kleink 
    468  1.39      kent 	return UNCONF;
    469   1.1    kleink }
    470   1.1    kleink 
    471   1.1    kleink static void
    472  1.39      kent eso_write_cmd(struct eso_softc *sc, uint8_t cmd)
    473   1.1    kleink {
    474   1.1    kleink 	int i;
    475   1.1    kleink 
    476   1.1    kleink 	/* Poll for busy indicator to become clear. */
    477   1.1    kleink 	for (i = 0; i < ESO_WDR_TIMEOUT; i++) {
    478   1.1    kleink 		if ((bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_RSR)
    479   1.1    kleink 		    & ESO_SB_RSR_BUSY) == 0) {
    480   1.1    kleink 			bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh,
    481   1.1    kleink 			    ESO_SB_WDR, cmd);
    482   1.1    kleink 			return;
    483   1.1    kleink 		} else {
    484   1.1    kleink 			delay(10);
    485   1.1    kleink 		}
    486   1.1    kleink 	}
    487   1.1    kleink 
    488  1.53    cegger 	printf("%s: WDR timeout\n", device_xname(&sc->sc_dev));
    489   1.1    kleink 	return;
    490   1.1    kleink }
    491   1.1    kleink 
    492   1.1    kleink /* Write to a controller register */
    493   1.1    kleink static void
    494  1.39      kent eso_write_ctlreg(struct eso_softc *sc, uint8_t reg, uint8_t val)
    495   1.1    kleink {
    496   1.1    kleink 
    497   1.1    kleink 	/* DPRINTF(("ctlreg 0x%02x = 0x%02x\n", reg, val)); */
    498  1.39      kent 
    499   1.1    kleink 	eso_write_cmd(sc, reg);
    500   1.1    kleink 	eso_write_cmd(sc, val);
    501   1.1    kleink }
    502   1.1    kleink 
    503   1.1    kleink /* Read out the Read Data Register */
    504   1.1    kleink static uint8_t
    505  1.39      kent eso_read_rdr(struct eso_softc *sc)
    506   1.1    kleink {
    507   1.1    kleink 	int i;
    508   1.1    kleink 
    509   1.1    kleink 	for (i = 0; i < ESO_RDR_TIMEOUT; i++) {
    510   1.1    kleink 		if (bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh,
    511   1.1    kleink 		    ESO_SB_RBSR) & ESO_SB_RBSR_RDAV) {
    512   1.1    kleink 			return (bus_space_read_1(sc->sc_sb_iot,
    513   1.1    kleink 			    sc->sc_sb_ioh, ESO_SB_RDR));
    514   1.1    kleink 		} else {
    515   1.1    kleink 			delay(10);
    516   1.1    kleink 		}
    517   1.1    kleink 	}
    518   1.1    kleink 
    519  1.53    cegger 	printf("%s: RDR timeout\n", device_xname(&sc->sc_dev));
    520   1.1    kleink 	return (-1);
    521   1.1    kleink }
    522   1.1    kleink 
    523   1.1    kleink static uint8_t
    524  1.39      kent eso_read_ctlreg(struct eso_softc *sc, uint8_t reg)
    525   1.1    kleink {
    526   1.1    kleink 
    527   1.1    kleink 	eso_write_cmd(sc, ESO_CMD_RCR);
    528   1.1    kleink 	eso_write_cmd(sc, reg);
    529  1.39      kent 	return eso_read_rdr(sc);
    530   1.1    kleink }
    531   1.1    kleink 
    532   1.1    kleink static void
    533  1.39      kent eso_write_mixreg(struct eso_softc *sc, uint8_t reg, uint8_t val)
    534   1.1    kleink {
    535   1.1    kleink 	int s;
    536   1.1    kleink 
    537   1.1    kleink 	/* DPRINTF(("mixreg 0x%02x = 0x%02x\n", reg, val)); */
    538  1.39      kent 
    539   1.1    kleink 	s = splaudio();
    540   1.1    kleink 	bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_MIXERADDR, reg);
    541   1.1    kleink 	bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_MIXERDATA, val);
    542   1.1    kleink 	splx(s);
    543   1.1    kleink }
    544   1.1    kleink 
    545   1.1    kleink static uint8_t
    546  1.39      kent eso_read_mixreg(struct eso_softc *sc, uint8_t reg)
    547   1.1    kleink {
    548   1.1    kleink 	int s;
    549   1.1    kleink 	uint8_t val;
    550   1.1    kleink 
    551   1.1    kleink 	s = splaudio();
    552   1.1    kleink 	bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_MIXERADDR, reg);
    553   1.1    kleink 	val = bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_MIXERDATA);
    554   1.1    kleink 	splx(s);
    555  1.39      kent 
    556  1.39      kent 	return val;
    557   1.1    kleink }
    558   1.1    kleink 
    559   1.1    kleink static int
    560  1.39      kent eso_intr(void *hdl)
    561   1.1    kleink {
    562  1.52   xtraeme 	struct eso_softc *sc = hdl;
    563  1.52   xtraeme #if NMPU > 0
    564  1.52   xtraeme 	struct mpu_softc *sc_mpu = device_private(sc->sc_mpudev);
    565  1.52   xtraeme #endif
    566   1.1    kleink 	uint8_t irqctl;
    567   1.1    kleink 
    568   1.1    kleink 	irqctl = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ESO_IO_IRQCTL);
    569   1.1    kleink 
    570   1.1    kleink 	/* If it wasn't ours, that's all she wrote. */
    571   1.5    kleink 	if ((irqctl & (ESO_IO_IRQCTL_A1IRQ | ESO_IO_IRQCTL_A2IRQ |
    572  1.14    kleink 	    ESO_IO_IRQCTL_HVIRQ | ESO_IO_IRQCTL_MPUIRQ)) == 0)
    573  1.39      kent 		return 0;
    574  1.39      kent 
    575   1.1    kleink 	if (irqctl & ESO_IO_IRQCTL_A1IRQ) {
    576   1.1    kleink 		/* Clear interrupt. */
    577   1.1    kleink 		(void)bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh,
    578   1.1    kleink 		    ESO_SB_RBSR);
    579  1.39      kent 
    580   1.1    kleink 		if (sc->sc_rintr)
    581   1.1    kleink 			sc->sc_rintr(sc->sc_rarg);
    582   1.1    kleink 		else
    583   1.1    kleink 			wakeup(&sc->sc_rintr);
    584   1.1    kleink 	}
    585   1.1    kleink 
    586   1.1    kleink 	if (irqctl & ESO_IO_IRQCTL_A2IRQ) {
    587   1.1    kleink 		/*
    588   1.1    kleink 		 * Clear the A2 IRQ latch: the cached value reflects the
    589   1.1    kleink 		 * current DAC settings with the IRQ latch bit not set.
    590   1.1    kleink 		 */
    591   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_A2C2, sc->sc_a2c2);
    592   1.1    kleink 
    593   1.1    kleink 		if (sc->sc_pintr)
    594   1.1    kleink 			sc->sc_pintr(sc->sc_parg);
    595   1.1    kleink 		else
    596   1.1    kleink 			wakeup(&sc->sc_pintr);
    597   1.1    kleink 	}
    598   1.1    kleink 
    599  1.14    kleink 	if (irqctl & ESO_IO_IRQCTL_HVIRQ) {
    600  1.14    kleink 		/* Clear interrupt. */
    601  1.14    kleink 		eso_write_mixreg(sc, ESO_MIXREG_CHVIR, ESO_MIXREG_CHVIR_CHVIR);
    602  1.14    kleink 
    603  1.14    kleink 		/*
    604  1.14    kleink 		 * Raise a flag to cause a lazy update of the in-softc gain
    605  1.14    kleink 		 * values the next time the software mixer is read to keep
    606  1.14    kleink 		 * interrupt service cost low.  ~0 cannot occur otherwise
    607  1.14    kleink 		 * as the master volume has a precision of 6 bits only.
    608  1.14    kleink 		 */
    609  1.14    kleink 		sc->sc_gain[ESO_MASTER_VOL][ESO_LEFT] = (uint8_t)~0;
    610  1.14    kleink 	}
    611  1.14    kleink 
    612   1.5    kleink #if NMPU > 0
    613  1.52   xtraeme 	if ((irqctl & ESO_IO_IRQCTL_MPUIRQ) && sc_mpu != NULL)
    614  1.52   xtraeme 		mpu_intr(sc_mpu);
    615   1.1    kleink #endif
    616  1.39      kent 
    617  1.39      kent 	return 1;
    618   1.1    kleink }
    619   1.1    kleink 
    620   1.1    kleink /* Perform a software reset, including DMA FIFOs. */
    621   1.1    kleink static int
    622  1.39      kent eso_reset(struct eso_softc *sc)
    623   1.1    kleink {
    624   1.1    kleink 	int i;
    625   1.1    kleink 
    626   1.1    kleink 	bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_RESET,
    627   1.1    kleink 	    ESO_SB_RESET_SW | ESO_SB_RESET_FIFO);
    628   1.1    kleink 	/* `Delay' suggested in the data sheet. */
    629   1.1    kleink 	(void)bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_STATUS);
    630   1.1    kleink 	bus_space_write_1(sc->sc_sb_iot, sc->sc_sb_ioh, ESO_SB_RESET, 0);
    631   1.1    kleink 
    632   1.1    kleink 	/* Wait for reset to take effect. */
    633   1.1    kleink 	for (i = 0; i < ESO_RESET_TIMEOUT; i++) {
    634   1.1    kleink 		/* Poll for data to become available. */
    635   1.1    kleink 		if ((bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh,
    636   1.1    kleink 		    ESO_SB_RBSR) & ESO_SB_RBSR_RDAV) != 0 &&
    637   1.1    kleink 		    bus_space_read_1(sc->sc_sb_iot, sc->sc_sb_ioh,
    638   1.1    kleink 			ESO_SB_RDR) == ESO_SB_RDR_RESETMAGIC) {
    639   1.1    kleink 
    640   1.1    kleink 			/* Activate Solo-1 extension commands. */
    641   1.1    kleink 			eso_write_cmd(sc, ESO_CMD_EXTENB);
    642   1.1    kleink 			/* Reset mixer registers. */
    643   1.1    kleink 			eso_write_mixreg(sc, ESO_MIXREG_RESET,
    644   1.1    kleink 			    ESO_MIXREG_RESET_RESET);
    645   1.1    kleink 
    646  1.39      kent 			return 0;
    647   1.1    kleink 		} else {
    648   1.1    kleink 			delay(1000);
    649   1.1    kleink 		}
    650   1.1    kleink 	}
    651  1.39      kent 
    652  1.53    cegger 	printf("%s: reset timeout\n", device_xname(&sc->sc_dev));
    653  1.39      kent 	return -1;
    654   1.1    kleink }
    655   1.1    kleink 
    656   1.1    kleink static int
    657  1.45  christos eso_query_encoding(void *hdl, struct audio_encoding *fp)
    658   1.1    kleink {
    659  1.39      kent 
    660   1.1    kleink 	switch (fp->index) {
    661   1.1    kleink 	case 0:
    662   1.1    kleink 		strcpy(fp->name, AudioEulinear);
    663   1.1    kleink 		fp->encoding = AUDIO_ENCODING_ULINEAR;
    664   1.1    kleink 		fp->precision = 8;
    665   1.1    kleink 		fp->flags = 0;
    666   1.1    kleink 		break;
    667   1.1    kleink 	case 1:
    668   1.1    kleink 		strcpy(fp->name, AudioEmulaw);
    669   1.1    kleink 		fp->encoding = AUDIO_ENCODING_ULAW;
    670   1.1    kleink 		fp->precision = 8;
    671   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    672   1.1    kleink 		break;
    673   1.1    kleink 	case 2:
    674   1.1    kleink 		strcpy(fp->name, AudioEalaw);
    675   1.1    kleink 		fp->encoding = AUDIO_ENCODING_ALAW;
    676   1.1    kleink 		fp->precision = 8;
    677   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    678   1.1    kleink 		break;
    679   1.1    kleink 	case 3:
    680   1.1    kleink 		strcpy(fp->name, AudioEslinear);
    681   1.1    kleink 		fp->encoding = AUDIO_ENCODING_SLINEAR;
    682   1.1    kleink 		fp->precision = 8;
    683   1.1    kleink 		fp->flags = 0;
    684   1.1    kleink 		break;
    685   1.1    kleink 	case 4:
    686   1.1    kleink 		strcpy(fp->name, AudioEslinear_le);
    687   1.1    kleink 		fp->encoding = AUDIO_ENCODING_SLINEAR_LE;
    688   1.1    kleink 		fp->precision = 16;
    689   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    690   1.1    kleink 		break;
    691   1.1    kleink 	case 5:
    692   1.1    kleink 		strcpy(fp->name, AudioEulinear_le);
    693   1.1    kleink 		fp->encoding = AUDIO_ENCODING_ULINEAR_LE;
    694   1.1    kleink 		fp->precision = 16;
    695   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    696   1.1    kleink 		break;
    697   1.1    kleink 	case 6:
    698   1.1    kleink 		strcpy(fp->name, AudioEslinear_be);
    699   1.1    kleink 		fp->encoding = AUDIO_ENCODING_SLINEAR_BE;
    700   1.1    kleink 		fp->precision = 16;
    701   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    702   1.1    kleink 		break;
    703   1.1    kleink 	case 7:
    704   1.1    kleink 		strcpy(fp->name, AudioEulinear_be);
    705   1.1    kleink 		fp->encoding = AUDIO_ENCODING_ULINEAR_BE;
    706   1.1    kleink 		fp->precision = 16;
    707   1.1    kleink 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    708   1.1    kleink 		break;
    709   1.1    kleink 	default:
    710  1.39      kent 		return EINVAL;
    711   1.1    kleink 	}
    712   1.1    kleink 
    713  1.39      kent 	return 0;
    714   1.1    kleink }
    715   1.1    kleink 
    716   1.1    kleink static int
    717  1.45  christos eso_set_params(void *hdl, int setmode, int usemode,
    718  1.44  christos     audio_params_t *play, audio_params_t *rec, stream_filter_list_t *pfil,
    719  1.44  christos     stream_filter_list_t *rfil)
    720   1.1    kleink {
    721  1.39      kent 	struct eso_softc *sc;
    722   1.1    kleink 	struct audio_params *p;
    723  1.38      kent 	stream_filter_list_t *fil;
    724  1.47  christos 	int mode, r[2], rd[2], ar[2], clk;
    725   1.1    kleink 	unsigned int srg, fltdiv;
    726  1.38      kent 	int i;
    727  1.38      kent 
    728  1.39      kent 	sc = hdl;
    729  1.38      kent 	for (mode = AUMODE_RECORD; mode != -1;
    730   1.1    kleink 	     mode = mode == AUMODE_RECORD ? AUMODE_PLAY : -1) {
    731   1.1    kleink 		if ((setmode & mode) == 0)
    732   1.1    kleink 			continue;
    733   1.1    kleink 
    734   1.1    kleink 		p = (mode == AUMODE_PLAY) ? play : rec;
    735   1.1    kleink 
    736   1.1    kleink 		if (p->sample_rate < ESO_MINRATE ||
    737   1.1    kleink 		    p->sample_rate > ESO_MAXRATE ||
    738   1.1    kleink 		    (p->precision != 8 && p->precision != 16) ||
    739   1.1    kleink 		    (p->channels != 1 && p->channels != 2))
    740  1.39      kent 			return EINVAL;
    741   1.1    kleink 
    742   1.1    kleink 		/*
    743   1.1    kleink 		 * We'll compute both possible sample rate dividers and pick
    744   1.1    kleink 		 * the one with the least error.
    745   1.1    kleink 		 */
    746   1.1    kleink #define ABS(x) ((x) < 0 ? -(x) : (x))
    747   1.1    kleink 		r[0] = ESO_CLK0 /
    748   1.1    kleink 		    (128 - (rd[0] = 128 - ESO_CLK0 / p->sample_rate));
    749   1.1    kleink 		r[1] = ESO_CLK1 /
    750   1.1    kleink 		    (128 - (rd[1] = 128 - ESO_CLK1 / p->sample_rate));
    751   1.1    kleink 
    752  1.47  christos 		ar[0] = p->sample_rate - r[0];
    753  1.47  christos 		ar[1] = p->sample_rate - r[1];
    754  1.47  christos 		clk = ABS(ar[0]) > ABS(ar[1]) ? 1 : 0;
    755   1.1    kleink 		srg = rd[clk] | (clk == 1 ? ESO_CLK1_SELECT : 0x00);
    756   1.1    kleink 
    757   1.1    kleink 		/* Roll-off frequency of 87%, as in the ES1888 driver. */
    758   1.6    kleink 		fltdiv = 256 - 200279L / r[clk];
    759   1.1    kleink 
    760   1.1    kleink 		/* Update to reflect the possibly inexact rate. */
    761   1.1    kleink 		p->sample_rate = r[clk];
    762  1.38      kent 
    763  1.38      kent 		fil = (mode == AUMODE_PLAY) ? pfil : rfil;
    764  1.38      kent 		i = auconv_set_converter(eso_formats, ESO_NFORMATS,
    765  1.38      kent 					 mode, p, FALSE, fil);
    766  1.38      kent 		if (i < 0)
    767  1.38      kent 			return EINVAL;
    768   1.1    kleink 		if (mode == AUMODE_RECORD) {
    769   1.1    kleink 			/* Audio 1 */
    770   1.1    kleink 			DPRINTF(("A1 srg 0x%02x fdiv 0x%02x\n", srg, fltdiv));
    771   1.1    kleink 			eso_write_ctlreg(sc, ESO_CTLREG_SRG, srg);
    772   1.1    kleink 			eso_write_ctlreg(sc, ESO_CTLREG_FLTDIV, fltdiv);
    773   1.1    kleink 		} else {
    774   1.1    kleink 			/* Audio 2 */
    775   1.1    kleink 			DPRINTF(("A2 srg 0x%02x fdiv 0x%02x\n", srg, fltdiv));
    776   1.1    kleink 			eso_write_mixreg(sc, ESO_MIXREG_A2SRG, srg);
    777   1.1    kleink 			eso_write_mixreg(sc, ESO_MIXREG_A2FLTDIV, fltdiv);
    778   1.1    kleink 		}
    779   1.1    kleink #undef ABS
    780   1.1    kleink 
    781   1.1    kleink 	}
    782   1.1    kleink 
    783  1.39      kent 	return 0;
    784   1.1    kleink }
    785   1.1    kleink 
    786   1.1    kleink static int
    787  1.45  christos eso_round_blocksize(void *hdl, int blk, int mode,
    788  1.45  christos     const audio_params_t *param)
    789   1.1    kleink {
    790   1.1    kleink 
    791  1.39      kent 	return blk & -32;	/* keep good alignment; at least 16 req'd */
    792   1.1    kleink }
    793   1.1    kleink 
    794   1.1    kleink static int
    795  1.39      kent eso_halt_output(void *hdl)
    796   1.1    kleink {
    797  1.39      kent 	struct eso_softc *sc;
    798   1.1    kleink 	int error, s;
    799  1.39      kent 
    800  1.39      kent 	sc = hdl;
    801  1.53    cegger 	DPRINTF(("%s: halt_output\n", device_xname(&sc->sc_dev)));
    802   1.1    kleink 
    803   1.1    kleink 	/*
    804   1.1    kleink 	 * Disable auto-initialize DMA, allowing the FIFO to drain and then
    805   1.1    kleink 	 * stop.  The interrupt callback pointer is cleared at this
    806   1.1    kleink 	 * point so that an outstanding FIFO interrupt for the remaining data
    807   1.1    kleink 	 * will be acknowledged without further processing.
    808   1.1    kleink 	 *
    809   1.1    kleink 	 * This does not immediately `abort' an operation in progress (c.f.
    810   1.1    kleink 	 * audio(9)) but is the method to leave the FIFO behind in a clean
    811   1.1    kleink 	 * state with the least hair.  (Besides, that item needs to be
    812   1.1    kleink 	 * rephrased for trigger_*()-based DMA environments.)
    813   1.1    kleink 	 */
    814   1.1    kleink 	s = splaudio();
    815   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2C1,
    816   1.1    kleink 	    ESO_MIXREG_A2C1_FIFOENB | ESO_MIXREG_A2C1_DMAENB);
    817   1.1    kleink 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, ESO_IO_A2DMAM,
    818   1.1    kleink 	    ESO_IO_A2DMAM_DMAENB);
    819   1.1    kleink 
    820   1.1    kleink 	sc->sc_pintr = NULL;
    821  1.18    kleink 	error = tsleep(&sc->sc_pintr, PCATCH | PWAIT, "esoho", sc->sc_pdrain);
    822   1.1    kleink 	splx(s);
    823  1.39      kent 
    824   1.1    kleink 	/* Shut down DMA completely. */
    825   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2C1, 0);
    826   1.1    kleink 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, ESO_IO_A2DMAM, 0);
    827  1.39      kent 
    828  1.39      kent 	return error == EWOULDBLOCK ? 0 : error;
    829   1.1    kleink }
    830   1.1    kleink 
    831   1.1    kleink static int
    832  1.39      kent eso_halt_input(void *hdl)
    833   1.1    kleink {
    834  1.39      kent 	struct eso_softc *sc;
    835   1.1    kleink 	int error, s;
    836  1.39      kent 
    837  1.39      kent 	sc = hdl;
    838  1.53    cegger 	DPRINTF(("%s: halt_input\n", device_xname(&sc->sc_dev)));
    839   1.1    kleink 
    840   1.1    kleink 	/* Just like eso_halt_output(), but for Audio 1. */
    841   1.1    kleink 	s = splaudio();
    842   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1C2,
    843   1.1    kleink 	    ESO_CTLREG_A1C2_READ | ESO_CTLREG_A1C2_ADC |
    844   1.1    kleink 	    ESO_CTLREG_A1C2_DMAENB);
    845   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_MODE,
    846   1.1    kleink 	    DMA37MD_WRITE | DMA37MD_DEMAND);
    847   1.1    kleink 
    848   1.1    kleink 	sc->sc_rintr = NULL;
    849  1.18    kleink 	error = tsleep(&sc->sc_rintr, PCATCH | PWAIT, "esohi", sc->sc_rdrain);
    850   1.1    kleink 	splx(s);
    851   1.1    kleink 
    852   1.1    kleink 	/* Shut down DMA completely. */
    853   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1C2,
    854   1.1    kleink 	    ESO_CTLREG_A1C2_READ | ESO_CTLREG_A1C2_ADC);
    855   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_MASK,
    856   1.1    kleink 	    ESO_DMAC_MASK_MASK);
    857   1.1    kleink 
    858  1.39      kent 	return error == EWOULDBLOCK ? 0 : error;
    859   1.1    kleink }
    860   1.1    kleink 
    861   1.1    kleink static int
    862  1.39      kent eso_getdev(void *hdl, struct audio_device *retp)
    863   1.1    kleink {
    864  1.39      kent 	struct eso_softc *sc;
    865   1.1    kleink 
    866  1.39      kent 	sc = hdl;
    867   1.1    kleink 	strncpy(retp->name, "ESS Solo-1", sizeof (retp->name));
    868   1.1    kleink 	snprintf(retp->version, sizeof (retp->version), "0x%02x",
    869   1.1    kleink 	    sc->sc_revision);
    870   1.9       cgd 	if (sc->sc_revision <
    871   1.1    kleink 	    sizeof (eso_rev2model) / sizeof (eso_rev2model[0]))
    872   1.1    kleink 		strncpy(retp->config, eso_rev2model[sc->sc_revision],
    873   1.1    kleink 		    sizeof (retp->config));
    874   1.1    kleink 	else
    875   1.1    kleink 		strncpy(retp->config, "unknown", sizeof (retp->config));
    876  1.39      kent 
    877  1.39      kent 	return 0;
    878   1.1    kleink }
    879   1.1    kleink 
    880   1.1    kleink static int
    881  1.39      kent eso_set_port(void *hdl, mixer_ctrl_t *cp)
    882   1.1    kleink {
    883  1.39      kent 	struct eso_softc *sc;
    884   1.1    kleink 	unsigned int lgain, rgain;
    885   1.1    kleink 	uint8_t tmp;
    886  1.39      kent 
    887  1.39      kent 	sc = hdl;
    888   1.1    kleink 	switch (cp->dev) {
    889   1.1    kleink 	case ESO_DAC_PLAY_VOL:
    890   1.1    kleink 	case ESO_MIC_PLAY_VOL:
    891   1.1    kleink 	case ESO_LINE_PLAY_VOL:
    892   1.1    kleink 	case ESO_SYNTH_PLAY_VOL:
    893   1.1    kleink 	case ESO_CD_PLAY_VOL:
    894   1.1    kleink 	case ESO_AUXB_PLAY_VOL:
    895   1.1    kleink 	case ESO_RECORD_VOL:
    896   1.1    kleink 	case ESO_DAC_REC_VOL:
    897   1.1    kleink 	case ESO_MIC_REC_VOL:
    898   1.1    kleink 	case ESO_LINE_REC_VOL:
    899   1.1    kleink 	case ESO_SYNTH_REC_VOL:
    900   1.1    kleink 	case ESO_CD_REC_VOL:
    901   1.1    kleink 	case ESO_AUXB_REC_VOL:
    902   1.1    kleink 		if (cp->type != AUDIO_MIXER_VALUE)
    903  1.39      kent 			return EINVAL;
    904  1.39      kent 
    905   1.1    kleink 		/*
    906   1.1    kleink 		 * Stereo-capable mixer ports: if we get a single-channel
    907   1.1    kleink 		 * gain value passed in, then we duplicate it to both left
    908   1.1    kleink 		 * and right channels.
    909   1.1    kleink 		 */
    910   1.1    kleink 		switch (cp->un.value.num_channels) {
    911   1.1    kleink 		case 1:
    912   1.1    kleink 			lgain = rgain = ESO_GAIN_TO_4BIT(
    913   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
    914   1.1    kleink 			break;
    915   1.1    kleink 		case 2:
    916   1.1    kleink 			lgain = ESO_GAIN_TO_4BIT(
    917   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT]);
    918   1.1    kleink 			rgain = ESO_GAIN_TO_4BIT(
    919   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT]);
    920   1.1    kleink 			break;
    921   1.1    kleink 		default:
    922  1.39      kent 			return EINVAL;
    923   1.1    kleink 		}
    924   1.1    kleink 
    925   1.1    kleink 		sc->sc_gain[cp->dev][ESO_LEFT] = lgain;
    926   1.1    kleink 		sc->sc_gain[cp->dev][ESO_RIGHT] = rgain;
    927   1.1    kleink 		eso_set_gain(sc, cp->dev);
    928   1.1    kleink 		break;
    929   1.1    kleink 
    930   1.1    kleink 	case ESO_MASTER_VOL:
    931   1.1    kleink 		if (cp->type != AUDIO_MIXER_VALUE)
    932  1.39      kent 			return EINVAL;
    933   1.1    kleink 
    934   1.1    kleink 		/* Like above, but a precision of 6 bits. */
    935   1.1    kleink 		switch (cp->un.value.num_channels) {
    936   1.1    kleink 		case 1:
    937   1.1    kleink 			lgain = rgain = ESO_GAIN_TO_6BIT(
    938   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
    939   1.1    kleink 			break;
    940   1.1    kleink 		case 2:
    941   1.1    kleink 			lgain = ESO_GAIN_TO_6BIT(
    942   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT]);
    943   1.1    kleink 			rgain = ESO_GAIN_TO_6BIT(
    944   1.1    kleink 			    cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT]);
    945   1.1    kleink 			break;
    946   1.1    kleink 		default:
    947  1.39      kent 			return EINVAL;
    948   1.1    kleink 		}
    949   1.1    kleink 
    950   1.1    kleink 		sc->sc_gain[cp->dev][ESO_LEFT] = lgain;
    951   1.1    kleink 		sc->sc_gain[cp->dev][ESO_RIGHT] = rgain;
    952   1.1    kleink 		eso_set_gain(sc, cp->dev);
    953   1.1    kleink 		break;
    954   1.1    kleink 
    955   1.1    kleink 	case ESO_SPATIALIZER:
    956   1.1    kleink 		if (cp->type != AUDIO_MIXER_VALUE ||
    957   1.1    kleink 		    cp->un.value.num_channels != 1)
    958  1.39      kent 			return EINVAL;
    959   1.1    kleink 
    960   1.1    kleink 		sc->sc_gain[cp->dev][ESO_LEFT] =
    961   1.1    kleink 		    sc->sc_gain[cp->dev][ESO_RIGHT] =
    962   1.1    kleink 		    ESO_GAIN_TO_6BIT(
    963   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
    964   1.1    kleink 		eso_set_gain(sc, cp->dev);
    965   1.1    kleink 		break;
    966  1.39      kent 
    967   1.1    kleink 	case ESO_MONO_PLAY_VOL:
    968   1.1    kleink 	case ESO_MONO_REC_VOL:
    969   1.1    kleink 		if (cp->type != AUDIO_MIXER_VALUE ||
    970   1.1    kleink 		    cp->un.value.num_channels != 1)
    971  1.39      kent 			return EINVAL;
    972   1.1    kleink 
    973   1.1    kleink 		sc->sc_gain[cp->dev][ESO_LEFT] =
    974   1.1    kleink 		    sc->sc_gain[cp->dev][ESO_RIGHT] =
    975   1.1    kleink 		    ESO_GAIN_TO_4BIT(
    976   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
    977   1.1    kleink 		eso_set_gain(sc, cp->dev);
    978   1.1    kleink 		break;
    979  1.39      kent 
    980   1.1    kleink 	case ESO_PCSPEAKER_VOL:
    981   1.1    kleink 		if (cp->type != AUDIO_MIXER_VALUE ||
    982   1.1    kleink 		    cp->un.value.num_channels != 1)
    983  1.39      kent 			return EINVAL;
    984   1.1    kleink 
    985   1.1    kleink 		sc->sc_gain[cp->dev][ESO_LEFT] =
    986   1.1    kleink 		    sc->sc_gain[cp->dev][ESO_RIGHT] =
    987   1.1    kleink 		    ESO_GAIN_TO_3BIT(
    988   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
    989   1.1    kleink 		eso_set_gain(sc, cp->dev);
    990   1.1    kleink 		break;
    991   1.1    kleink 
    992   1.1    kleink 	case ESO_SPATIALIZER_ENABLE:
    993   1.1    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
    994  1.39      kent 			return EINVAL;
    995   1.1    kleink 
    996   1.1    kleink 		sc->sc_spatializer = (cp->un.ord != 0);
    997   1.1    kleink 
    998   1.1    kleink 		tmp = eso_read_mixreg(sc, ESO_MIXREG_SPAT);
    999   1.1    kleink 		if (sc->sc_spatializer)
   1000   1.1    kleink 			tmp |= ESO_MIXREG_SPAT_ENB;
   1001   1.1    kleink 		else
   1002   1.1    kleink 			tmp &= ~ESO_MIXREG_SPAT_ENB;
   1003   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_SPAT,
   1004   1.1    kleink 		    tmp | ESO_MIXREG_SPAT_RSTREL);
   1005   1.1    kleink 		break;
   1006  1.12    kleink 
   1007  1.12    kleink 	case ESO_MASTER_MUTE:
   1008  1.12    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1009  1.39      kent 			return EINVAL;
   1010  1.12    kleink 
   1011  1.12    kleink 		sc->sc_mvmute = (cp->un.ord != 0);
   1012  1.12    kleink 
   1013  1.12    kleink 		if (sc->sc_mvmute) {
   1014  1.12    kleink 			eso_write_mixreg(sc, ESO_MIXREG_LMVM,
   1015  1.12    kleink 			    eso_read_mixreg(sc, ESO_MIXREG_LMVM) |
   1016  1.12    kleink 			    ESO_MIXREG_LMVM_MUTE);
   1017  1.12    kleink 			eso_write_mixreg(sc, ESO_MIXREG_RMVM,
   1018  1.12    kleink 			    eso_read_mixreg(sc, ESO_MIXREG_RMVM) |
   1019  1.12    kleink 			    ESO_MIXREG_RMVM_MUTE);
   1020  1.39      kent 		} else {
   1021  1.12    kleink 			eso_write_mixreg(sc, ESO_MIXREG_LMVM,
   1022  1.12    kleink 			    eso_read_mixreg(sc, ESO_MIXREG_LMVM) &
   1023  1.12    kleink 			    ~ESO_MIXREG_LMVM_MUTE);
   1024  1.12    kleink 			eso_write_mixreg(sc, ESO_MIXREG_RMVM,
   1025  1.12    kleink 			    eso_read_mixreg(sc, ESO_MIXREG_RMVM) &
   1026  1.12    kleink 			    ~ESO_MIXREG_RMVM_MUTE);
   1027  1.12    kleink 		}
   1028  1.12    kleink 		break;
   1029  1.39      kent 
   1030   1.1    kleink 	case ESO_MONOOUT_SOURCE:
   1031   1.1    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1032  1.39      kent 			return EINVAL;
   1033   1.1    kleink 
   1034  1.39      kent 		return eso_set_monooutsrc(sc, cp->un.ord);
   1035  1.34    kleink 
   1036  1.34    kleink 	case ESO_MONOIN_BYPASS:
   1037  1.34    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1038  1.39      kent 			return EINVAL;
   1039  1.34    kleink 
   1040  1.34    kleink 		return (eso_set_monoinbypass(sc, cp->un.ord));
   1041  1.34    kleink 
   1042   1.1    kleink 	case ESO_RECORD_MONITOR:
   1043   1.1    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1044  1.39      kent 			return EINVAL;
   1045   1.1    kleink 
   1046   1.1    kleink 		sc->sc_recmon = (cp->un.ord != 0);
   1047  1.39      kent 
   1048   1.1    kleink 		tmp = eso_read_ctlreg(sc, ESO_CTLREG_ACTL);
   1049   1.1    kleink 		if (sc->sc_recmon)
   1050   1.1    kleink 			tmp |= ESO_CTLREG_ACTL_RECMON;
   1051   1.1    kleink 		else
   1052   1.1    kleink 			tmp &= ~ESO_CTLREG_ACTL_RECMON;
   1053   1.1    kleink 		eso_write_ctlreg(sc, ESO_CTLREG_ACTL, tmp);
   1054   1.1    kleink 		break;
   1055   1.1    kleink 
   1056   1.1    kleink 	case ESO_RECORD_SOURCE:
   1057   1.1    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1058  1.39      kent 			return EINVAL;
   1059   1.1    kleink 
   1060  1.39      kent 		return eso_set_recsrc(sc, cp->un.ord);
   1061   1.1    kleink 
   1062   1.1    kleink 	case ESO_MIC_PREAMP:
   1063   1.1    kleink 		if (cp->type != AUDIO_MIXER_ENUM)
   1064  1.39      kent 			return EINVAL;
   1065  1.39      kent 
   1066  1.39      kent 		return eso_set_preamp(sc, cp->un.ord);
   1067   1.1    kleink 
   1068   1.1    kleink 	default:
   1069  1.39      kent 		return EINVAL;
   1070   1.1    kleink 	}
   1071  1.39      kent 
   1072  1.39      kent 	return 0;
   1073   1.1    kleink }
   1074   1.1    kleink 
   1075   1.1    kleink static int
   1076  1.39      kent eso_get_port(void *hdl, mixer_ctrl_t *cp)
   1077   1.1    kleink {
   1078  1.39      kent 	struct eso_softc *sc;
   1079   1.1    kleink 
   1080  1.39      kent 	sc = hdl;
   1081   1.1    kleink 	switch (cp->dev) {
   1082  1.14    kleink 	case ESO_MASTER_VOL:
   1083  1.14    kleink 		/* Reload from mixer after hardware volume control use. */
   1084  1.14    kleink 		if (sc->sc_gain[cp->dev][ESO_LEFT] == (uint8_t)~0)
   1085  1.14    kleink 			eso_reload_master_vol(sc);
   1086  1.14    kleink 		/* FALLTHROUGH */
   1087   1.1    kleink 	case ESO_DAC_PLAY_VOL:
   1088   1.1    kleink 	case ESO_MIC_PLAY_VOL:
   1089   1.1    kleink 	case ESO_LINE_PLAY_VOL:
   1090   1.1    kleink 	case ESO_SYNTH_PLAY_VOL:
   1091   1.1    kleink 	case ESO_CD_PLAY_VOL:
   1092   1.1    kleink 	case ESO_AUXB_PLAY_VOL:
   1093   1.1    kleink 	case ESO_RECORD_VOL:
   1094   1.1    kleink 	case ESO_DAC_REC_VOL:
   1095   1.1    kleink 	case ESO_MIC_REC_VOL:
   1096   1.1    kleink 	case ESO_LINE_REC_VOL:
   1097   1.1    kleink 	case ESO_SYNTH_REC_VOL:
   1098   1.1    kleink 	case ESO_CD_REC_VOL:
   1099   1.1    kleink 	case ESO_AUXB_REC_VOL:
   1100   1.1    kleink 		/*
   1101   1.1    kleink 		 * Stereo-capable ports: if a single-channel query is made,
   1102   1.1    kleink 		 * just return the left channel's value (since single-channel
   1103   1.1    kleink 		 * settings themselves are applied to both channels).
   1104   1.1    kleink 		 */
   1105   1.1    kleink 		switch (cp->un.value.num_channels) {
   1106   1.1    kleink 		case 1:
   1107   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
   1108   1.1    kleink 			    sc->sc_gain[cp->dev][ESO_LEFT];
   1109   1.1    kleink 			break;
   1110   1.1    kleink 		case 2:
   1111   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT] =
   1112   1.1    kleink 			    sc->sc_gain[cp->dev][ESO_LEFT];
   1113   1.1    kleink 			cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] =
   1114   1.1    kleink 			    sc->sc_gain[cp->dev][ESO_RIGHT];
   1115   1.1    kleink 			break;
   1116   1.1    kleink 		default:
   1117  1.39      kent 			return EINVAL;
   1118   1.1    kleink 		}
   1119   1.1    kleink 		break;
   1120  1.39      kent 
   1121   1.1    kleink 	case ESO_MONO_PLAY_VOL:
   1122   1.1    kleink 	case ESO_PCSPEAKER_VOL:
   1123   1.1    kleink 	case ESO_MONO_REC_VOL:
   1124   1.1    kleink 	case ESO_SPATIALIZER:
   1125   1.1    kleink 		if (cp->un.value.num_channels != 1)
   1126  1.39      kent 			return EINVAL;
   1127   1.1    kleink 		cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
   1128   1.1    kleink 		    sc->sc_gain[cp->dev][ESO_LEFT];
   1129   1.1    kleink 		break;
   1130   1.1    kleink 
   1131   1.1    kleink 	case ESO_RECORD_MONITOR:
   1132   1.1    kleink 		cp->un.ord = sc->sc_recmon;
   1133   1.1    kleink 		break;
   1134  1.39      kent 
   1135   1.1    kleink 	case ESO_RECORD_SOURCE:
   1136   1.1    kleink 		cp->un.ord = sc->sc_recsrc;
   1137   1.1    kleink 		break;
   1138   1.1    kleink 
   1139   1.1    kleink 	case ESO_MONOOUT_SOURCE:
   1140   1.1    kleink 		cp->un.ord = sc->sc_monooutsrc;
   1141   1.1    kleink 		break;
   1142  1.34    kleink 
   1143  1.34    kleink 	case ESO_MONOIN_BYPASS:
   1144  1.34    kleink 		cp->un.ord = sc->sc_monoinbypass;
   1145  1.34    kleink 		break;
   1146  1.39      kent 
   1147   1.1    kleink 	case ESO_SPATIALIZER_ENABLE:
   1148   1.1    kleink 		cp->un.ord = sc->sc_spatializer;
   1149   1.1    kleink 		break;
   1150  1.39      kent 
   1151   1.1    kleink 	case ESO_MIC_PREAMP:
   1152   1.1    kleink 		cp->un.ord = sc->sc_preamp;
   1153   1.1    kleink 		break;
   1154   1.1    kleink 
   1155  1.12    kleink 	case ESO_MASTER_MUTE:
   1156  1.14    kleink 		/* Reload from mixer after hardware volume control use. */
   1157  1.48    kleink 		if (sc->sc_gain[ESO_MASTER_VOL][ESO_LEFT] == (uint8_t)~0)
   1158  1.48    kleink 			eso_reload_master_vol(sc);
   1159  1.12    kleink 		cp->un.ord = sc->sc_mvmute;
   1160  1.12    kleink 		break;
   1161  1.12    kleink 
   1162   1.1    kleink 	default:
   1163  1.39      kent 		return EINVAL;
   1164   1.1    kleink 	}
   1165   1.1    kleink 
   1166  1.39      kent 	return 0;
   1167   1.1    kleink }
   1168   1.1    kleink 
   1169   1.1    kleink static int
   1170  1.45  christos eso_query_devinfo(void *hdl, mixer_devinfo_t *dip)
   1171   1.1    kleink {
   1172   1.1    kleink 
   1173   1.1    kleink 	switch (dip->index) {
   1174   1.1    kleink 	case ESO_DAC_PLAY_VOL:
   1175   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1176   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1177   1.1    kleink 		strcpy(dip->label.name, AudioNdac);
   1178   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1179   1.1    kleink 		dip->un.v.num_channels = 2;
   1180   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1181   1.1    kleink 		break;
   1182   1.1    kleink 	case ESO_MIC_PLAY_VOL:
   1183   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1184   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1185   1.1    kleink 		strcpy(dip->label.name, AudioNmicrophone);
   1186   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1187   1.1    kleink 		dip->un.v.num_channels = 2;
   1188   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1189   1.1    kleink 		break;
   1190   1.1    kleink 	case ESO_LINE_PLAY_VOL:
   1191   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1192   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1193   1.1    kleink 		strcpy(dip->label.name, AudioNline);
   1194   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1195   1.1    kleink 		dip->un.v.num_channels = 2;
   1196   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1197   1.1    kleink 		break;
   1198   1.1    kleink 	case ESO_SYNTH_PLAY_VOL:
   1199   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1200   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1201   1.1    kleink 		strcpy(dip->label.name, AudioNfmsynth);
   1202   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1203   1.1    kleink 		dip->un.v.num_channels = 2;
   1204   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1205   1.1    kleink 		break;
   1206   1.1    kleink 	case ESO_MONO_PLAY_VOL:
   1207   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1208   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1209   1.1    kleink 		strcpy(dip->label.name, "mono_in");
   1210   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1211   1.1    kleink 		dip->un.v.num_channels = 1;
   1212   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1213   1.1    kleink 		break;
   1214   1.1    kleink 	case ESO_CD_PLAY_VOL:
   1215   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1216   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1217   1.1    kleink 		strcpy(dip->label.name, AudioNcd);
   1218   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1219   1.1    kleink 		dip->un.v.num_channels = 2;
   1220   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1221   1.1    kleink 		break;
   1222   1.1    kleink 	case ESO_AUXB_PLAY_VOL:
   1223   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1224   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1225   1.1    kleink 		strcpy(dip->label.name, "auxb");
   1226   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1227   1.1    kleink 		dip->un.v.num_channels = 2;
   1228   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1229   1.1    kleink 		break;
   1230   1.1    kleink 
   1231   1.1    kleink 	case ESO_MIC_PREAMP:
   1232   1.1    kleink 		dip->mixer_class = ESO_MICROPHONE_CLASS;
   1233   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1234   1.1    kleink 		strcpy(dip->label.name, AudioNpreamp);
   1235   1.1    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1236   1.1    kleink 		dip->un.e.num_mem = 2;
   1237   1.1    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
   1238   1.1    kleink 		dip->un.e.member[0].ord = 0;
   1239   1.1    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNon);
   1240   1.1    kleink 		dip->un.e.member[1].ord = 1;
   1241   1.1    kleink 		break;
   1242   1.1    kleink 	case ESO_MICROPHONE_CLASS:
   1243   1.1    kleink 		dip->mixer_class = ESO_MICROPHONE_CLASS;
   1244   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1245   1.1    kleink 		strcpy(dip->label.name, AudioNmicrophone);
   1246   1.1    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1247   1.1    kleink 		break;
   1248  1.39      kent 
   1249   1.1    kleink 	case ESO_INPUT_CLASS:
   1250   1.1    kleink 		dip->mixer_class = ESO_INPUT_CLASS;
   1251   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1252   1.1    kleink 		strcpy(dip->label.name, AudioCinputs);
   1253   1.1    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1254   1.1    kleink 		break;
   1255  1.39      kent 
   1256   1.1    kleink 	case ESO_MASTER_VOL:
   1257   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1258  1.12    kleink 		dip->prev = AUDIO_MIXER_LAST;
   1259  1.12    kleink 		dip->next = ESO_MASTER_MUTE;
   1260   1.1    kleink 		strcpy(dip->label.name, AudioNmaster);
   1261   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1262   1.1    kleink 		dip->un.v.num_channels = 2;
   1263   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1264   1.1    kleink 		break;
   1265  1.12    kleink 	case ESO_MASTER_MUTE:
   1266  1.12    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1267  1.12    kleink 		dip->prev = ESO_MASTER_VOL;
   1268  1.12    kleink 		dip->next = AUDIO_MIXER_LAST;
   1269  1.12    kleink 		strcpy(dip->label.name, AudioNmute);
   1270  1.12    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1271  1.12    kleink 		dip->un.e.num_mem = 2;
   1272  1.12    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
   1273  1.12    kleink 		dip->un.e.member[0].ord = 0;
   1274  1.12    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNon);
   1275  1.12    kleink 		dip->un.e.member[1].ord = 1;
   1276  1.12    kleink 		break;
   1277  1.12    kleink 
   1278   1.1    kleink 	case ESO_PCSPEAKER_VOL:
   1279   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1280   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1281   1.1    kleink 		strcpy(dip->label.name, "pc_speaker");
   1282   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1283   1.1    kleink 		dip->un.v.num_channels = 1;
   1284   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1285   1.1    kleink 		break;
   1286   1.1    kleink 	case ESO_MONOOUT_SOURCE:
   1287   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1288   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1289   1.1    kleink 		strcpy(dip->label.name, "mono_out");
   1290   1.1    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1291   1.1    kleink 		dip->un.e.num_mem = 3;
   1292   1.1    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNmute);
   1293   1.1    kleink 		dip->un.e.member[0].ord = ESO_MIXREG_MPM_MOMUTE;
   1294   1.1    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNdac);
   1295   1.1    kleink 		dip->un.e.member[1].ord = ESO_MIXREG_MPM_MOA2R;
   1296   1.1    kleink 		strcpy(dip->un.e.member[2].label.name, AudioNmixerout);
   1297   1.1    kleink 		dip->un.e.member[2].ord = ESO_MIXREG_MPM_MOREC;
   1298   1.1    kleink 		break;
   1299  1.34    kleink 
   1300  1.34    kleink 	case ESO_MONOIN_BYPASS:
   1301  1.34    kleink 		dip->mixer_class = ESO_MONOIN_CLASS;
   1302  1.34    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1303  1.34    kleink 		strcpy(dip->label.name, "bypass");
   1304  1.34    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1305  1.34    kleink 		dip->un.e.num_mem = 2;
   1306  1.34    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
   1307  1.34    kleink 		dip->un.e.member[0].ord = 0;
   1308  1.34    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNon);
   1309  1.34    kleink 		dip->un.e.member[1].ord = 1;
   1310  1.34    kleink 		break;
   1311  1.34    kleink 	case ESO_MONOIN_CLASS:
   1312  1.34    kleink 		dip->mixer_class = ESO_MONOIN_CLASS;
   1313  1.34    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1314  1.34    kleink 		strcpy(dip->label.name, "mono_in");
   1315  1.34    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1316  1.34    kleink 		break;
   1317  1.34    kleink 
   1318   1.1    kleink 	case ESO_SPATIALIZER:
   1319   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1320   1.1    kleink 		dip->prev = AUDIO_MIXER_LAST;
   1321   1.1    kleink 		dip->next = ESO_SPATIALIZER_ENABLE;
   1322   1.1    kleink 		strcpy(dip->label.name, AudioNspatial);
   1323   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1324   1.1    kleink 		dip->un.v.num_channels = 1;
   1325   1.1    kleink 		strcpy(dip->un.v.units.name, "level");
   1326   1.1    kleink 		break;
   1327   1.1    kleink 	case ESO_SPATIALIZER_ENABLE:
   1328   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1329   1.1    kleink 		dip->prev = ESO_SPATIALIZER;
   1330   1.1    kleink 		dip->next = AUDIO_MIXER_LAST;
   1331   1.1    kleink 		strcpy(dip->label.name, "enable");
   1332   1.1    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1333   1.1    kleink 		dip->un.e.num_mem = 2;
   1334   1.1    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
   1335   1.1    kleink 		dip->un.e.member[0].ord = 0;
   1336   1.1    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNon);
   1337   1.1    kleink 		dip->un.e.member[1].ord = 1;
   1338   1.1    kleink 		break;
   1339  1.39      kent 
   1340   1.1    kleink 	case ESO_OUTPUT_CLASS:
   1341   1.1    kleink 		dip->mixer_class = ESO_OUTPUT_CLASS;
   1342   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1343   1.1    kleink 		strcpy(dip->label.name, AudioCoutputs);
   1344   1.1    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1345   1.1    kleink 		break;
   1346   1.1    kleink 
   1347   1.1    kleink 	case ESO_RECORD_MONITOR:
   1348   1.1    kleink 		dip->mixer_class = ESO_MONITOR_CLASS;
   1349   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1350   1.1    kleink 		strcpy(dip->label.name, AudioNmute);
   1351   1.1    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1352   1.1    kleink 		dip->un.e.num_mem = 2;
   1353   1.1    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNoff);
   1354   1.1    kleink 		dip->un.e.member[0].ord = 0;
   1355   1.1    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNon);
   1356   1.1    kleink 		dip->un.e.member[1].ord = 1;
   1357   1.1    kleink 		break;
   1358   1.1    kleink 	case ESO_MONITOR_CLASS:
   1359   1.1    kleink 		dip->mixer_class = ESO_MONITOR_CLASS;
   1360   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1361   1.1    kleink 		strcpy(dip->label.name, AudioCmonitor);
   1362   1.1    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1363   1.1    kleink 		break;
   1364   1.1    kleink 
   1365   1.1    kleink 	case ESO_RECORD_VOL:
   1366   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1367   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1368   1.1    kleink 		strcpy(dip->label.name, AudioNrecord);
   1369   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1370   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1371   1.1    kleink 		break;
   1372   1.1    kleink 	case ESO_RECORD_SOURCE:
   1373   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1374   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1375   1.1    kleink 		strcpy(dip->label.name, AudioNsource);
   1376   1.1    kleink 		dip->type = AUDIO_MIXER_ENUM;
   1377   1.1    kleink 		dip->un.e.num_mem = 4;
   1378   1.1    kleink 		strcpy(dip->un.e.member[0].label.name, AudioNmicrophone);
   1379   1.1    kleink 		dip->un.e.member[0].ord = ESO_MIXREG_ERS_MIC;
   1380   1.1    kleink 		strcpy(dip->un.e.member[1].label.name, AudioNline);
   1381   1.1    kleink 		dip->un.e.member[1].ord = ESO_MIXREG_ERS_LINE;
   1382   1.1    kleink 		strcpy(dip->un.e.member[2].label.name, AudioNcd);
   1383   1.1    kleink 		dip->un.e.member[2].ord = ESO_MIXREG_ERS_CD;
   1384   1.1    kleink 		strcpy(dip->un.e.member[3].label.name, AudioNmixerout);
   1385   1.1    kleink 		dip->un.e.member[3].ord = ESO_MIXREG_ERS_MIXER;
   1386   1.1    kleink 		break;
   1387   1.1    kleink 	case ESO_DAC_REC_VOL:
   1388   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1389   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1390   1.1    kleink 		strcpy(dip->label.name, AudioNdac);
   1391   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1392   1.1    kleink 		dip->un.v.num_channels = 2;
   1393   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1394   1.1    kleink 		break;
   1395   1.1    kleink 	case ESO_MIC_REC_VOL:
   1396   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1397   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1398   1.1    kleink 		strcpy(dip->label.name, AudioNmicrophone);
   1399   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1400   1.1    kleink 		dip->un.v.num_channels = 2;
   1401   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1402   1.1    kleink 		break;
   1403   1.1    kleink 	case ESO_LINE_REC_VOL:
   1404   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1405   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1406   1.1    kleink 		strcpy(dip->label.name, AudioNline);
   1407   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1408   1.1    kleink 		dip->un.v.num_channels = 2;
   1409   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1410   1.1    kleink 		break;
   1411   1.1    kleink 	case ESO_SYNTH_REC_VOL:
   1412   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1413   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1414   1.1    kleink 		strcpy(dip->label.name, AudioNfmsynth);
   1415   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1416   1.1    kleink 		dip->un.v.num_channels = 2;
   1417   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1418   1.1    kleink 		break;
   1419   1.1    kleink 	case ESO_MONO_REC_VOL:
   1420   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1421   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1422   1.1    kleink 		strcpy(dip->label.name, "mono_in");
   1423   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1424   1.1    kleink 		dip->un.v.num_channels = 1; /* No lies */
   1425   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1426   1.1    kleink 		break;
   1427   1.1    kleink 	case ESO_CD_REC_VOL:
   1428   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1429   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1430   1.1    kleink 		strcpy(dip->label.name, AudioNcd);
   1431   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1432   1.1    kleink 		dip->un.v.num_channels = 2;
   1433   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1434   1.1    kleink 		break;
   1435   1.1    kleink 	case ESO_AUXB_REC_VOL:
   1436   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1437   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1438   1.1    kleink 		strcpy(dip->label.name, "auxb");
   1439   1.1    kleink 		dip->type = AUDIO_MIXER_VALUE;
   1440   1.1    kleink 		dip->un.v.num_channels = 2;
   1441   1.1    kleink 		strcpy(dip->un.v.units.name, AudioNvolume);
   1442   1.1    kleink 		break;
   1443   1.1    kleink 	case ESO_RECORD_CLASS:
   1444   1.1    kleink 		dip->mixer_class = ESO_RECORD_CLASS;
   1445   1.1    kleink 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1446   1.1    kleink 		strcpy(dip->label.name, AudioCrecord);
   1447   1.1    kleink 		dip->type = AUDIO_MIXER_CLASS;
   1448   1.1    kleink 		break;
   1449  1.39      kent 
   1450   1.1    kleink 	default:
   1451  1.39      kent 		return ENXIO;
   1452   1.1    kleink 	}
   1453   1.1    kleink 
   1454  1.39      kent 	return 0;
   1455   1.1    kleink }
   1456   1.1    kleink 
   1457   1.1    kleink static int
   1458  1.45  christos eso_allocmem(struct eso_softc *sc, size_t size, size_t align,
   1459  1.44  christos     size_t boundary, int flags, int direction, struct eso_dma *ed)
   1460   1.1    kleink {
   1461   1.1    kleink 	int error, wait;
   1462   1.1    kleink 
   1463   1.1    kleink 	wait = (flags & M_NOWAIT) ? BUS_DMA_NOWAIT : BUS_DMA_WAITOK;
   1464   1.1    kleink 	ed->ed_size = size;
   1465  1.39      kent 
   1466   1.8    kleink 	error = bus_dmamem_alloc(ed->ed_dmat, ed->ed_size, align, boundary,
   1467   1.1    kleink 	    ed->ed_segs, sizeof (ed->ed_segs) / sizeof (ed->ed_segs[0]),
   1468   1.1    kleink 	    &ed->ed_nsegs, wait);
   1469   1.1    kleink 	if (error)
   1470   1.1    kleink 		goto out;
   1471   1.1    kleink 
   1472   1.8    kleink 	error = bus_dmamem_map(ed->ed_dmat, ed->ed_segs, ed->ed_nsegs,
   1473  1.49    kleink 	    ed->ed_size, &ed->ed_kva, wait | BUS_DMA_COHERENT);
   1474   1.1    kleink 	if (error)
   1475   1.1    kleink 		goto free;
   1476   1.1    kleink 
   1477   1.8    kleink 	error = bus_dmamap_create(ed->ed_dmat, ed->ed_size, 1, ed->ed_size, 0,
   1478   1.1    kleink 	    wait, &ed->ed_map);
   1479   1.1    kleink 	if (error)
   1480   1.1    kleink 		goto unmap;
   1481   1.1    kleink 
   1482  1.49    kleink 	error = bus_dmamap_load(ed->ed_dmat, ed->ed_map, ed->ed_kva,
   1483  1.21    kleink 	    ed->ed_size, NULL, wait |
   1484  1.21    kleink 	    (direction == AUMODE_RECORD) ? BUS_DMA_READ : BUS_DMA_WRITE);
   1485   1.1    kleink 	if (error)
   1486   1.1    kleink 		goto destroy;
   1487   1.1    kleink 
   1488  1.39      kent 	return 0;
   1489   1.1    kleink 
   1490   1.1    kleink  destroy:
   1491   1.8    kleink 	bus_dmamap_destroy(ed->ed_dmat, ed->ed_map);
   1492   1.1    kleink  unmap:
   1493  1.49    kleink 	bus_dmamem_unmap(ed->ed_dmat, ed->ed_kva, ed->ed_size);
   1494   1.1    kleink  free:
   1495   1.8    kleink 	bus_dmamem_free(ed->ed_dmat, ed->ed_segs, ed->ed_nsegs);
   1496   1.1    kleink  out:
   1497  1.39      kent 	return error;
   1498   1.1    kleink }
   1499   1.1    kleink 
   1500   1.1    kleink static void
   1501  1.39      kent eso_freemem(struct eso_dma *ed)
   1502   1.1    kleink {
   1503   1.1    kleink 
   1504   1.8    kleink 	bus_dmamap_unload(ed->ed_dmat, ed->ed_map);
   1505   1.8    kleink 	bus_dmamap_destroy(ed->ed_dmat, ed->ed_map);
   1506  1.49    kleink 	bus_dmamem_unmap(ed->ed_dmat, ed->ed_kva, ed->ed_size);
   1507   1.8    kleink 	bus_dmamem_free(ed->ed_dmat, ed->ed_segs, ed->ed_nsegs);
   1508   1.1    kleink }
   1509  1.39      kent 
   1510  1.49    kleink static struct eso_dma *
   1511  1.50  christos eso_kva2dma(const struct eso_softc *sc, const void *kva)
   1512  1.49    kleink {
   1513  1.49    kleink 	struct eso_dma *p;
   1514  1.49    kleink 
   1515  1.49    kleink 	SLIST_FOREACH(p, &sc->sc_dmas, ed_slist) {
   1516  1.49    kleink 		if (KVADDR(p) == kva)
   1517  1.49    kleink 			return p;
   1518  1.49    kleink 	}
   1519  1.49    kleink 
   1520  1.49    kleink 	panic("%s: kva2dma: bad kva: %p", sc->sc_dev.dv_xname, kva);
   1521  1.49    kleink 	/* NOTREACHED */
   1522  1.49    kleink }
   1523  1.49    kleink 
   1524   1.1    kleink static void *
   1525  1.39      kent eso_allocm(void *hdl, int direction, size_t size, struct malloc_type *type,
   1526  1.39      kent     int flags)
   1527   1.1    kleink {
   1528  1.39      kent 	struct eso_softc *sc;
   1529   1.1    kleink 	struct eso_dma *ed;
   1530   1.1    kleink 	size_t boundary;
   1531   1.1    kleink 	int error;
   1532   1.1    kleink 
   1533  1.39      kent 	sc = hdl;
   1534  1.33    kleink 	if ((ed = malloc(sizeof (*ed), type, flags)) == NULL)
   1535  1.39      kent 		return NULL;
   1536   1.1    kleink 
   1537   1.1    kleink 	/*
   1538   1.1    kleink 	 * Apparently the Audio 1 DMA controller's current address
   1539   1.1    kleink 	 * register can't roll over a 64K address boundary, so we have to
   1540  1.32    kleink 	 * take care of that ourselves.  Similarly, the Audio 2 DMA
   1541  1.32    kleink 	 * controller needs a 1M address boundary.
   1542   1.1    kleink 	 */
   1543   1.1    kleink 	if (direction == AUMODE_RECORD)
   1544   1.1    kleink 		boundary = 0x10000;
   1545   1.1    kleink 	else
   1546  1.32    kleink 		boundary = 0x100000;
   1547   1.1    kleink 
   1548  1.35    kleink 	/*
   1549  1.35    kleink 	 * XXX Work around allocation problems for Audio 1, which
   1550  1.35    kleink 	 * XXX implements the 24 low address bits only, with
   1551  1.35    kleink 	 * XXX machine-specific DMA tag use.
   1552  1.35    kleink 	 */
   1553   1.8    kleink #ifdef alpha
   1554   1.8    kleink 	/*
   1555  1.35    kleink 	 * XXX Force allocation through the (ISA) SGMAP.
   1556   1.8    kleink 	 */
   1557   1.8    kleink 	if (direction == AUMODE_RECORD)
   1558   1.8    kleink 		ed->ed_dmat = alphabus_dma_get_tag(sc->sc_dmat, ALPHA_BUS_ISA);
   1559   1.8    kleink 	else
   1560  1.35    kleink #elif defined(amd64) || defined(i386)
   1561  1.35    kleink 	/*
   1562  1.35    kleink 	 * XXX Force allocation through the ISA DMA tag.
   1563  1.35    kleink 	 */
   1564  1.35    kleink 	if (direction == AUMODE_RECORD)
   1565  1.35    kleink 		ed->ed_dmat = &isa_bus_dma_tag;
   1566  1.35    kleink 	else
   1567   1.8    kleink #endif
   1568   1.8    kleink 		ed->ed_dmat = sc->sc_dmat;
   1569   1.8    kleink 
   1570  1.21    kleink 	error = eso_allocmem(sc, size, 32, boundary, flags, direction, ed);
   1571   1.1    kleink 	if (error) {
   1572   1.1    kleink 		free(ed, type);
   1573  1.39      kent 		return NULL;
   1574   1.1    kleink 	}
   1575  1.49    kleink 	SLIST_INSERT_HEAD(&sc->sc_dmas, ed, ed_slist);
   1576   1.1    kleink 
   1577  1.39      kent 	return KVADDR(ed);
   1578   1.1    kleink }
   1579   1.1    kleink 
   1580   1.1    kleink static void
   1581  1.39      kent eso_freem(void *hdl, void *addr, struct malloc_type *type)
   1582   1.1    kleink {
   1583  1.39      kent 	struct eso_softc *sc;
   1584  1.49    kleink 	struct eso_dma *p;
   1585   1.1    kleink 
   1586  1.39      kent 	sc = hdl;
   1587  1.49    kleink 	p = eso_kva2dma(sc, addr);
   1588  1.49    kleink 
   1589  1.49    kleink 	SLIST_REMOVE(&sc->sc_dmas, p, eso_dma, ed_slist);
   1590  1.49    kleink 	eso_freemem(p);
   1591  1.49    kleink 	free(p, type);
   1592   1.1    kleink }
   1593   1.1    kleink 
   1594   1.1    kleink static size_t
   1595  1.45  christos eso_round_buffersize(void *hdl, int direction, size_t bufsize)
   1596   1.1    kleink {
   1597  1.16    kleink 	size_t maxsize;
   1598   1.1    kleink 
   1599  1.16    kleink 	/*
   1600  1.17       cjs 	 * The playback DMA buffer size on the Solo-1 is limited to 0xfff0
   1601  1.17       cjs 	 * bytes.  This is because IO_A2DMAC is a two byte value
   1602  1.17       cjs 	 * indicating the literal byte count, and the 4 least significant
   1603  1.17       cjs 	 * bits are read-only.  Zero is not used as a special case for
   1604  1.17       cjs 	 * 0x10000.
   1605  1.16    kleink 	 *
   1606  1.17       cjs 	 * For recording, DMAC_DMAC is the byte count - 1, so 0x10000 can
   1607  1.17       cjs 	 * be represented.
   1608  1.16    kleink 	 */
   1609  1.17       cjs 	maxsize = (direction == AUMODE_PLAY) ? 0xfff0 : 0x10000;
   1610  1.16    kleink 
   1611  1.16    kleink 	if (bufsize > maxsize)
   1612  1.16    kleink 		bufsize = maxsize;
   1613   1.1    kleink 
   1614  1.39      kent 	return bufsize;
   1615   1.1    kleink }
   1616   1.1    kleink 
   1617  1.19    simonb static paddr_t
   1618  1.39      kent eso_mappage(void *hdl, void *addr, off_t offs, int prot)
   1619   1.1    kleink {
   1620  1.39      kent 	struct eso_softc *sc;
   1621   1.1    kleink 	struct eso_dma *ed;
   1622   1.1    kleink 
   1623  1.39      kent 	sc = hdl;
   1624   1.1    kleink 	if (offs < 0)
   1625  1.39      kent 		return -1;
   1626  1.49    kleink 	ed = eso_kva2dma(sc, addr);
   1627  1.39      kent 
   1628  1.39      kent 	return bus_dmamem_mmap(ed->ed_dmat, ed->ed_segs, ed->ed_nsegs,
   1629  1.39      kent 	    offs, prot, BUS_DMA_WAITOK);
   1630   1.1    kleink }
   1631   1.1    kleink 
   1632   1.1    kleink /* ARGSUSED */
   1633   1.1    kleink static int
   1634  1.45  christos eso_get_props(void *hdl)
   1635   1.1    kleink {
   1636   1.1    kleink 
   1637  1.39      kent 	return AUDIO_PROP_MMAP | AUDIO_PROP_INDEPENDENT |
   1638  1.39      kent 	    AUDIO_PROP_FULLDUPLEX;
   1639   1.1    kleink }
   1640   1.1    kleink 
   1641   1.1    kleink static int
   1642  1.39      kent eso_trigger_output(void *hdl, void *start, void *end, int blksize,
   1643  1.39      kent     void (*intr)(void *), void *arg, const audio_params_t *param)
   1644   1.1    kleink {
   1645  1.39      kent 	struct eso_softc *sc;
   1646   1.1    kleink 	struct eso_dma *ed;
   1647   1.1    kleink 	uint8_t a2c1;
   1648  1.39      kent 
   1649  1.39      kent 	sc = hdl;
   1650   1.1    kleink 	DPRINTF((
   1651   1.1    kleink 	    "%s: trigger_output: start %p, end %p, blksize %d, intr %p(%p)\n",
   1652  1.53    cegger 	    device_xname(&sc->sc_dev), start, end, blksize, intr, arg));
   1653  1.38      kent 	DPRINTF(("%s: param: rate %u, encoding %u, precision %u, channels %u\n",
   1654  1.53    cegger 	    device_xname(&sc->sc_dev), param->sample_rate, param->encoding,
   1655  1.38      kent 	    param->precision, param->channels));
   1656  1.39      kent 
   1657   1.1    kleink 	/* Find DMA buffer. */
   1658  1.49    kleink 	ed = eso_kva2dma(sc, start);
   1659  1.35    kleink 	DPRINTF(("%s: dmaaddr %lx\n",
   1660  1.53    cegger 	    device_xname(&sc->sc_dev), (unsigned long)DMAADDR(ed)));
   1661  1.39      kent 
   1662   1.1    kleink 	sc->sc_pintr = intr;
   1663   1.1    kleink 	sc->sc_parg = arg;
   1664   1.1    kleink 
   1665  1.18    kleink 	/* Compute drain timeout. */
   1666  1.39      kent 	sc->sc_pdrain = (blksize * NBBY * hz) /
   1667  1.18    kleink 	    (param->sample_rate * param->channels *
   1668  1.38      kent 	     param->precision) + 2;	/* slop */
   1669  1.18    kleink 
   1670   1.1    kleink 	/* DMA transfer count (in `words'!) reload using 2's complement. */
   1671   1.1    kleink 	blksize = -(blksize >> 1);
   1672   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2TCRLO, blksize & 0xff);
   1673   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2TCRHI, blksize >> 8);
   1674   1.1    kleink 
   1675   1.1    kleink 	/* Update DAC to reflect DMA count and audio parameters. */
   1676   1.1    kleink 	/* Note: we cache A2C2 in order to avoid r/m/w at interrupt time. */
   1677  1.38      kent 	if (param->precision == 16)
   1678   1.1    kleink 		sc->sc_a2c2 |= ESO_MIXREG_A2C2_16BIT;
   1679   1.1    kleink 	else
   1680   1.1    kleink 		sc->sc_a2c2 &= ~ESO_MIXREG_A2C2_16BIT;
   1681   1.1    kleink 	if (param->channels == 2)
   1682   1.1    kleink 		sc->sc_a2c2 |= ESO_MIXREG_A2C2_STEREO;
   1683   1.1    kleink 	else
   1684   1.1    kleink 		sc->sc_a2c2 &= ~ESO_MIXREG_A2C2_STEREO;
   1685   1.1    kleink 	if (param->encoding == AUDIO_ENCODING_SLINEAR_BE ||
   1686   1.1    kleink 	    param->encoding == AUDIO_ENCODING_SLINEAR_LE)
   1687   1.1    kleink 		sc->sc_a2c2 |= ESO_MIXREG_A2C2_SIGNED;
   1688   1.1    kleink 	else
   1689   1.1    kleink 		sc->sc_a2c2 &= ~ESO_MIXREG_A2C2_SIGNED;
   1690   1.1    kleink 	/* Unmask IRQ. */
   1691   1.1    kleink 	sc->sc_a2c2 |= ESO_MIXREG_A2C2_IRQM;
   1692   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2C2, sc->sc_a2c2);
   1693  1.39      kent 
   1694   1.1    kleink 	/* Set up DMA controller. */
   1695   1.1    kleink 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, ESO_IO_A2DMAA,
   1696  1.10       leo 	    DMAADDR(ed));
   1697   1.1    kleink 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, ESO_IO_A2DMAC,
   1698  1.10       leo 	    (uint8_t *)end - (uint8_t *)start);
   1699   1.1    kleink 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, ESO_IO_A2DMAM,
   1700   1.1    kleink 	    ESO_IO_A2DMAM_DMAENB | ESO_IO_A2DMAM_AUTO);
   1701  1.39      kent 
   1702   1.1    kleink 	/* Start DMA. */
   1703   1.1    kleink 	a2c1 = eso_read_mixreg(sc, ESO_MIXREG_A2C1);
   1704   1.1    kleink 	a2c1 &= ~ESO_MIXREG_A2C1_RESV0; /* Paranoia? XXX bit 5 */
   1705   1.1    kleink 	a2c1 |= ESO_MIXREG_A2C1_FIFOENB | ESO_MIXREG_A2C1_DMAENB |
   1706   1.1    kleink 	    ESO_MIXREG_A2C1_AUTO;
   1707   1.1    kleink 	eso_write_mixreg(sc, ESO_MIXREG_A2C1, a2c1);
   1708  1.39      kent 
   1709  1.39      kent 	return 0;
   1710   1.1    kleink }
   1711   1.1    kleink 
   1712   1.1    kleink static int
   1713  1.39      kent eso_trigger_input(void *hdl, void *start, void *end, int blksize,
   1714  1.39      kent     void (*intr)(void *), void *arg, const audio_params_t *param)
   1715   1.1    kleink {
   1716  1.39      kent 	struct eso_softc *sc;
   1717   1.1    kleink 	struct eso_dma *ed;
   1718   1.1    kleink 	uint8_t actl, a1c1;
   1719   1.1    kleink 
   1720  1.39      kent 	sc = hdl;
   1721   1.1    kleink 	DPRINTF((
   1722   1.1    kleink 	    "%s: trigger_input: start %p, end %p, blksize %d, intr %p(%p)\n",
   1723  1.53    cegger 	    device_xname(&sc->sc_dev), start, end, blksize, intr, arg));
   1724  1.38      kent 	DPRINTF(("%s: param: rate %u, encoding %u, precision %u, channels %u\n",
   1725  1.53    cegger 	    device_xname(&sc->sc_dev), param->sample_rate, param->encoding,
   1726  1.38      kent 	    param->precision, param->channels));
   1727   1.1    kleink 
   1728   1.1    kleink 	/*
   1729   1.1    kleink 	 * If we failed to configure the Audio 1 DMA controller, bail here
   1730   1.1    kleink 	 * while retaining availability of the DAC direction (in Audio 2).
   1731   1.1    kleink 	 */
   1732   1.1    kleink 	if (!sc->sc_dmac_configured)
   1733  1.39      kent 		return EIO;
   1734   1.1    kleink 
   1735   1.1    kleink 	/* Find DMA buffer. */
   1736  1.49    kleink 	ed = eso_kva2dma(sc, start);
   1737  1.35    kleink 	DPRINTF(("%s: dmaaddr %lx\n",
   1738  1.53    cegger 	    device_xname(&sc->sc_dev), (unsigned long)DMAADDR(ed)));
   1739   1.1    kleink 
   1740   1.1    kleink 	sc->sc_rintr = intr;
   1741   1.1    kleink 	sc->sc_rarg = arg;
   1742  1.18    kleink 
   1743  1.18    kleink 	/* Compute drain timeout. */
   1744  1.39      kent 	sc->sc_rdrain = (blksize * NBBY * hz) /
   1745  1.18    kleink 	    (param->sample_rate * param->channels *
   1746  1.38      kent 	     param->precision) + 2;	/* slop */
   1747   1.1    kleink 
   1748   1.1    kleink 	/* Set up ADC DMA converter parameters. */
   1749   1.1    kleink 	actl = eso_read_ctlreg(sc, ESO_CTLREG_ACTL);
   1750   1.1    kleink 	if (param->channels == 2) {
   1751   1.1    kleink 		actl &= ~ESO_CTLREG_ACTL_MONO;
   1752   1.1    kleink 		actl |= ESO_CTLREG_ACTL_STEREO;
   1753   1.1    kleink 	} else {
   1754   1.1    kleink 		actl &= ~ESO_CTLREG_ACTL_STEREO;
   1755   1.1    kleink 		actl |= ESO_CTLREG_ACTL_MONO;
   1756   1.1    kleink 	}
   1757   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_ACTL, actl);
   1758   1.1    kleink 
   1759   1.1    kleink 	/* Set up Transfer Type: maybe move to attach time? */
   1760   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1TT, ESO_CTLREG_A1TT_DEMAND4);
   1761   1.1    kleink 
   1762   1.1    kleink 	/* DMA transfer count reload using 2's complement. */
   1763   1.1    kleink 	blksize = -blksize;
   1764   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1TCRLO, blksize & 0xff);
   1765   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1TCRHI, blksize >> 8);
   1766   1.1    kleink 
   1767   1.1    kleink 	/* Set up and enable Audio 1 DMA FIFO. */
   1768   1.1    kleink 	a1c1 = ESO_CTLREG_A1C1_RESV1 | ESO_CTLREG_A1C1_FIFOENB;
   1769  1.38      kent 	if (param->precision == 16)
   1770   1.1    kleink 		a1c1 |= ESO_CTLREG_A1C1_16BIT;
   1771   1.1    kleink 	if (param->channels == 2)
   1772   1.1    kleink 		a1c1 |= ESO_CTLREG_A1C1_STEREO;
   1773   1.1    kleink 	else
   1774   1.1    kleink 		a1c1 |= ESO_CTLREG_A1C1_MONO;
   1775   1.1    kleink 	if (param->encoding == AUDIO_ENCODING_SLINEAR_BE ||
   1776   1.1    kleink 	    param->encoding == AUDIO_ENCODING_SLINEAR_LE)
   1777   1.1    kleink 		a1c1 |= ESO_CTLREG_A1C1_SIGNED;
   1778   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1C1, a1c1);
   1779   1.1    kleink 
   1780   1.1    kleink 	/* Set up ADC IRQ/DRQ parameters. */
   1781   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_LAIC,
   1782   1.1    kleink 	    ESO_CTLREG_LAIC_PINENB | ESO_CTLREG_LAIC_EXTENB);
   1783   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_DRQCTL,
   1784   1.1    kleink 	    ESO_CTLREG_DRQCTL_ENB1 | ESO_CTLREG_DRQCTL_EXTENB);
   1785   1.1    kleink 
   1786   1.1    kleink 	/* Set up and enable DMA controller. */
   1787   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_CLEAR, 0);
   1788   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_MASK,
   1789   1.1    kleink 	    ESO_DMAC_MASK_MASK);
   1790   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_MODE,
   1791   1.1    kleink 	    DMA37MD_WRITE | DMA37MD_LOOP | DMA37MD_DEMAND);
   1792   1.1    kleink 	bus_space_write_4(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_DMAA,
   1793  1.10       leo 	    DMAADDR(ed));
   1794   1.1    kleink 	bus_space_write_2(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_DMAC,
   1795  1.10       leo 	    (uint8_t *)end - (uint8_t *)start - 1);
   1796   1.1    kleink 	bus_space_write_1(sc->sc_dmac_iot, sc->sc_dmac_ioh, ESO_DMAC_MASK, 0);
   1797   1.1    kleink 
   1798   1.1    kleink 	/* Start DMA. */
   1799   1.1    kleink 	eso_write_ctlreg(sc, ESO_CTLREG_A1C2,
   1800   1.1    kleink 	    ESO_CTLREG_A1C2_DMAENB | ESO_CTLREG_A1C2_READ |
   1801   1.1    kleink 	    ESO_CTLREG_A1C2_AUTO | ESO_CTLREG_A1C2_ADC);
   1802   1.1    kleink 
   1803  1.39      kent 	return 0;
   1804   1.1    kleink }
   1805   1.1    kleink 
   1806  1.34    kleink /*
   1807  1.34    kleink  * Mixer utility functions.
   1808  1.34    kleink  */
   1809  1.34    kleink static int
   1810  1.39      kent eso_set_recsrc(struct eso_softc *sc, unsigned int recsrc)
   1811  1.34    kleink {
   1812  1.34    kleink 	mixer_devinfo_t di;
   1813  1.34    kleink 	int i;
   1814  1.34    kleink 
   1815  1.34    kleink 	di.index = ESO_RECORD_SOURCE;
   1816  1.34    kleink 	if (eso_query_devinfo(sc, &di) != 0)
   1817  1.34    kleink 		panic("eso_set_recsrc: eso_query_devinfo failed");
   1818  1.34    kleink 
   1819  1.34    kleink 	for (i = 0; i < di.un.e.num_mem; i++) {
   1820  1.34    kleink 		if (recsrc == di.un.e.member[i].ord) {
   1821  1.34    kleink 			eso_write_mixreg(sc, ESO_MIXREG_ERS, recsrc);
   1822  1.34    kleink 			sc->sc_recsrc = recsrc;
   1823  1.39      kent 			return 0;
   1824  1.34    kleink 		}
   1825  1.34    kleink 	}
   1826  1.34    kleink 
   1827  1.39      kent 	return EINVAL;
   1828  1.34    kleink }
   1829  1.34    kleink 
   1830   1.1    kleink static int
   1831  1.39      kent eso_set_monooutsrc(struct eso_softc *sc, unsigned int monooutsrc)
   1832   1.7    kleink {
   1833   1.7    kleink 	mixer_devinfo_t di;
   1834   1.7    kleink 	int i;
   1835   1.7    kleink 	uint8_t mpm;
   1836   1.7    kleink 
   1837   1.7    kleink 	di.index = ESO_MONOOUT_SOURCE;
   1838   1.7    kleink 	if (eso_query_devinfo(sc, &di) != 0)
   1839   1.7    kleink 		panic("eso_set_monooutsrc: eso_query_devinfo failed");
   1840   1.7    kleink 
   1841   1.7    kleink 	for (i = 0; i < di.un.e.num_mem; i++) {
   1842   1.7    kleink 		if (monooutsrc == di.un.e.member[i].ord) {
   1843   1.7    kleink 			mpm = eso_read_mixreg(sc, ESO_MIXREG_MPM);
   1844   1.7    kleink 			mpm &= ~ESO_MIXREG_MPM_MOMASK;
   1845   1.7    kleink 			mpm |= monooutsrc;
   1846   1.7    kleink 			eso_write_mixreg(sc, ESO_MIXREG_MPM, mpm);
   1847   1.7    kleink 			sc->sc_monooutsrc = monooutsrc;
   1848  1.39      kent 			return 0;
   1849   1.7    kleink 		}
   1850   1.7    kleink 	}
   1851   1.7    kleink 
   1852  1.39      kent 	return EINVAL;
   1853   1.7    kleink }
   1854   1.7    kleink 
   1855   1.7    kleink static int
   1856  1.39      kent eso_set_monoinbypass(struct eso_softc *sc, unsigned int monoinbypass)
   1857   1.1    kleink {
   1858   1.7    kleink 	mixer_devinfo_t di;
   1859   1.7    kleink 	int i;
   1860  1.34    kleink 	uint8_t mpm;
   1861   1.1    kleink 
   1862  1.34    kleink 	di.index = ESO_MONOIN_BYPASS;
   1863   1.7    kleink 	if (eso_query_devinfo(sc, &di) != 0)
   1864  1.34    kleink 		panic("eso_set_monoinbypass: eso_query_devinfo failed");
   1865   1.7    kleink 
   1866   1.7    kleink 	for (i = 0; i < di.un.e.num_mem; i++) {
   1867  1.34    kleink 		if (monoinbypass == di.un.e.member[i].ord) {
   1868  1.34    kleink 			mpm = eso_read_mixreg(sc, ESO_MIXREG_MPM);
   1869  1.34    kleink 			mpm &= ~(ESO_MIXREG_MPM_MOMASK | ESO_MIXREG_MPM_RESV0);
   1870  1.34    kleink 			mpm |= (monoinbypass ? ESO_MIXREG_MPM_MIBYPASS : 0);
   1871  1.34    kleink 			eso_write_mixreg(sc, ESO_MIXREG_MPM, mpm);
   1872  1.34    kleink 			sc->sc_monoinbypass = monoinbypass;
   1873  1.39      kent 			return 0;
   1874   1.7    kleink 		}
   1875   1.7    kleink 	}
   1876  1.39      kent 
   1877  1.39      kent 	return EINVAL;
   1878  1.34    kleink }
   1879  1.34    kleink 
   1880  1.34    kleink static int
   1881  1.39      kent eso_set_preamp(struct eso_softc *sc, unsigned int preamp)
   1882  1.34    kleink {
   1883  1.34    kleink 	mixer_devinfo_t di;
   1884  1.34    kleink 	int i;
   1885  1.34    kleink 	uint8_t mpm;
   1886  1.34    kleink 
   1887  1.34    kleink 	di.index = ESO_MIC_PREAMP;
   1888  1.34    kleink 	if (eso_query_devinfo(sc, &di) != 0)
   1889  1.34    kleink 		panic("eso_set_preamp: eso_query_devinfo failed");
   1890   1.7    kleink 
   1891  1.34    kleink 	for (i = 0; i < di.un.e.num_mem; i++) {
   1892  1.34    kleink 		if (preamp == di.un.e.member[i].ord) {
   1893  1.34    kleink 			mpm = eso_read_mixreg(sc, ESO_MIXREG_MPM);
   1894  1.34    kleink 			mpm &= ~(ESO_MIXREG_MPM_PREAMP | ESO_MIXREG_MPM_RESV0);
   1895  1.34    kleink 			mpm |= (preamp ? ESO_MIXREG_MPM_PREAMP : 0);
   1896  1.34    kleink 			eso_write_mixreg(sc, ESO_MIXREG_MPM, mpm);
   1897  1.34    kleink 			sc->sc_preamp = preamp;
   1898  1.39      kent 			return 0;
   1899  1.34    kleink 		}
   1900  1.34    kleink 	}
   1901  1.39      kent 
   1902  1.39      kent 	return EINVAL;
   1903  1.14    kleink }
   1904  1.14    kleink 
   1905  1.14    kleink /*
   1906  1.14    kleink  * Reload Master Volume and Mute values in softc from mixer; used when
   1907  1.14    kleink  * those have previously been invalidated by use of hardware volume controls.
   1908  1.14    kleink  */
   1909  1.14    kleink static void
   1910  1.39      kent eso_reload_master_vol(struct eso_softc *sc)
   1911  1.14    kleink {
   1912  1.14    kleink 	uint8_t mv;
   1913  1.14    kleink 
   1914  1.14    kleink 	mv = eso_read_mixreg(sc, ESO_MIXREG_LMVM);
   1915  1.14    kleink 	sc->sc_gain[ESO_MASTER_VOL][ESO_LEFT] =
   1916  1.14    kleink 	    (mv & ~ESO_MIXREG_LMVM_MUTE) << 2;
   1917  1.14    kleink 	mv = eso_read_mixreg(sc, ESO_MIXREG_LMVM);
   1918  1.14    kleink 	sc->sc_gain[ESO_MASTER_VOL][ESO_RIGHT] =
   1919  1.14    kleink 	    (mv & ~ESO_MIXREG_RMVM_MUTE) << 2;
   1920  1.14    kleink 	/* Currently both channels are muted simultaneously; either is OK. */
   1921  1.14    kleink 	sc->sc_mvmute = (mv & ESO_MIXREG_RMVM_MUTE) != 0;
   1922   1.1    kleink }
   1923   1.1    kleink 
   1924   1.1    kleink static void
   1925  1.39      kent eso_set_gain(struct eso_softc *sc, unsigned int port)
   1926   1.1    kleink {
   1927   1.1    kleink 	uint8_t mixreg, tmp;
   1928   1.1    kleink 
   1929   1.1    kleink 	switch (port) {
   1930   1.1    kleink 	case ESO_DAC_PLAY_VOL:
   1931   1.1    kleink 		mixreg = ESO_MIXREG_PVR_A2;
   1932   1.1    kleink 		break;
   1933   1.1    kleink 	case ESO_MIC_PLAY_VOL:
   1934   1.1    kleink 		mixreg = ESO_MIXREG_PVR_MIC;
   1935   1.1    kleink 		break;
   1936   1.1    kleink 	case ESO_LINE_PLAY_VOL:
   1937   1.1    kleink 		mixreg = ESO_MIXREG_PVR_LINE;
   1938   1.1    kleink 		break;
   1939   1.1    kleink 	case ESO_SYNTH_PLAY_VOL:
   1940   1.1    kleink 		mixreg = ESO_MIXREG_PVR_SYNTH;
   1941   1.1    kleink 		break;
   1942   1.1    kleink 	case ESO_CD_PLAY_VOL:
   1943   1.1    kleink 		mixreg = ESO_MIXREG_PVR_CD;
   1944   1.1    kleink 		break;
   1945   1.1    kleink 	case ESO_AUXB_PLAY_VOL:
   1946   1.1    kleink 		mixreg = ESO_MIXREG_PVR_AUXB;
   1947   1.1    kleink 		break;
   1948  1.39      kent 
   1949   1.1    kleink 	case ESO_DAC_REC_VOL:
   1950   1.1    kleink 		mixreg = ESO_MIXREG_RVR_A2;
   1951   1.1    kleink 		break;
   1952   1.1    kleink 	case ESO_MIC_REC_VOL:
   1953   1.1    kleink 		mixreg = ESO_MIXREG_RVR_MIC;
   1954   1.1    kleink 		break;
   1955   1.1    kleink 	case ESO_LINE_REC_VOL:
   1956   1.1    kleink 		mixreg = ESO_MIXREG_RVR_LINE;
   1957   1.1    kleink 		break;
   1958   1.1    kleink 	case ESO_SYNTH_REC_VOL:
   1959   1.1    kleink 		mixreg = ESO_MIXREG_RVR_SYNTH;
   1960   1.1    kleink 		break;
   1961   1.1    kleink 	case ESO_CD_REC_VOL:
   1962   1.1    kleink 		mixreg = ESO_MIXREG_RVR_CD;
   1963   1.1    kleink 		break;
   1964   1.1    kleink 	case ESO_AUXB_REC_VOL:
   1965   1.1    kleink 		mixreg = ESO_MIXREG_RVR_AUXB;
   1966   1.1    kleink 		break;
   1967   1.1    kleink 	case ESO_MONO_PLAY_VOL:
   1968   1.1    kleink 		mixreg = ESO_MIXREG_PVR_MONO;
   1969   1.1    kleink 		break;
   1970   1.1    kleink 	case ESO_MONO_REC_VOL:
   1971   1.1    kleink 		mixreg = ESO_MIXREG_RVR_MONO;
   1972   1.1    kleink 		break;
   1973  1.39      kent 
   1974   1.1    kleink 	case ESO_PCSPEAKER_VOL:
   1975   1.1    kleink 		/* Special case - only 3-bit, mono, and reserved bits. */
   1976   1.1    kleink 		tmp = eso_read_mixreg(sc, ESO_MIXREG_PCSVR);
   1977   1.1    kleink 		tmp &= ESO_MIXREG_PCSVR_RESV;
   1978   1.1    kleink 		/* Map bits 7:5 -> 2:0. */
   1979   1.1    kleink 		tmp |= (sc->sc_gain[port][ESO_LEFT] >> 5);
   1980   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_PCSVR, tmp);
   1981   1.1    kleink 		return;
   1982   1.1    kleink 
   1983   1.1    kleink 	case ESO_MASTER_VOL:
   1984   1.1    kleink 		/* Special case - separate regs, and 6-bit precision. */
   1985  1.12    kleink 		/* Map bits 7:2 -> 5:0, reflect mute settings. */
   1986   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_LMVM,
   1987  1.12    kleink 		    (sc->sc_gain[port][ESO_LEFT] >> 2) |
   1988  1.12    kleink 		    (sc->sc_mvmute ? ESO_MIXREG_LMVM_MUTE : 0x00));
   1989   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_RMVM,
   1990  1.12    kleink 		    (sc->sc_gain[port][ESO_RIGHT] >> 2) |
   1991  1.12    kleink 		    (sc->sc_mvmute ? ESO_MIXREG_RMVM_MUTE : 0x00));
   1992   1.1    kleink 		return;
   1993   1.1    kleink 
   1994   1.1    kleink 	case ESO_SPATIALIZER:
   1995   1.1    kleink 		/* Special case - only `mono', and higher precision. */
   1996   1.1    kleink 		eso_write_mixreg(sc, ESO_MIXREG_SPATLVL,
   1997   1.1    kleink 		    sc->sc_gain[port][ESO_LEFT]);
   1998   1.1    kleink 		return;
   1999  1.39      kent 
   2000   1.1    kleink 	case ESO_RECORD_VOL:
   2001   1.1    kleink 		/* Very Special case, controller register. */
   2002   1.1    kleink 		eso_write_ctlreg(sc, ESO_CTLREG_RECLVL,ESO_4BIT_GAIN_TO_STEREO(
   2003   1.1    kleink 		   sc->sc_gain[port][ESO_LEFT], sc->sc_gain[port][ESO_RIGHT]));
   2004   1.1    kleink 		return;
   2005   1.1    kleink 
   2006   1.1    kleink 	default:
   2007  1.39      kent #ifdef DIAGNOSTIC
   2008   1.1    kleink 		panic("eso_set_gain: bad port %u", port);
   2009   1.1    kleink 		/* NOTREACHED */
   2010   1.1    kleink #else
   2011   1.1    kleink 		return;
   2012  1.39      kent #endif
   2013  1.39      kent 	}
   2014   1.1    kleink 
   2015   1.1    kleink 	eso_write_mixreg(sc, mixreg, ESO_4BIT_GAIN_TO_STEREO(
   2016   1.1    kleink 	    sc->sc_gain[port][ESO_LEFT], sc->sc_gain[port][ESO_RIGHT]));
   2017   1.1    kleink }
   2018