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zaudio.c revision 1.16
      1  1.16  jmcneill /*	$NetBSD: zaudio.c,v 1.16 2011/11/23 23:07:30 jmcneill Exp $	*/
      2   1.1      ober /*	$OpenBSD: zaurus_audio.c,v 1.8 2005/08/18 13:23:02 robert Exp $	*/
      3   1.1      ober 
      4   1.1      ober /*
      5   1.1      ober  * Copyright (c) 2005 Christopher Pascoe <pascoe (at) openbsd.org>
      6   1.1      ober  *
      7   1.1      ober  * Permission to use, copy, modify, and distribute this software for any
      8   1.1      ober  * purpose with or without fee is hereby granted, provided that the above
      9   1.1      ober  * copyright notice and this permission notice appear in all copies.
     10   1.1      ober  *
     11   1.1      ober  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     12   1.1      ober  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     13   1.1      ober  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     14   1.1      ober  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     15   1.1      ober  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     16   1.1      ober  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     17   1.1      ober  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     18   1.1      ober  */
     19   1.1      ober 
     20  1.10    nonaka /*-
     21  1.10    nonaka  * Copyright (c) 2009 NONAKA Kimihiro <nonaka (at) netbsd.org>
     22  1.10    nonaka  * All rights reserved.
     23  1.10    nonaka  *
     24  1.10    nonaka  * Redistribution and use in source and binary forms, with or without
     25  1.10    nonaka  * modification, are permitted provided that the following conditions
     26  1.10    nonaka  * are met:
     27  1.10    nonaka  * 1. Redistributions of source code must retain the above copyright
     28  1.10    nonaka  *    notice, this list of conditions and the following disclaimer.
     29  1.10    nonaka  * 2. Redistributions in binary form must reproduce the above copyright
     30  1.10    nonaka  *    notice, this list of conditions and the following disclaimer in the
     31  1.10    nonaka  *    documentation and/or other materials provided with the distribution.
     32  1.10    nonaka  *
     33  1.10    nonaka  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     34  1.10    nonaka  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     35  1.10    nonaka  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     36  1.10    nonaka  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     37  1.10    nonaka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     38  1.10    nonaka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     39  1.10    nonaka  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     40  1.10    nonaka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     41  1.10    nonaka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     42  1.10    nonaka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     43  1.10    nonaka  * SUCH DAMAGE.
     44  1.10    nonaka  */
     45  1.10    nonaka 
     46   1.1      ober /*
     47   1.1      ober  * TODO:
     48   1.1      ober  *	- powerhooks (currently only works until first suspend)
     49   1.1      ober  */
     50   1.1      ober 
     51  1.13    nonaka #include "opt_zaudio.h"
     52  1.13    nonaka 
     53   1.1      ober #include <sys/cdefs.h>
     54  1.16  jmcneill __KERNEL_RCSID(0, "$NetBSD: zaudio.c,v 1.16 2011/11/23 23:07:30 jmcneill Exp $");
     55   1.1      ober 
     56   1.1      ober #include <sys/param.h>
     57   1.1      ober #include <sys/systm.h>
     58   1.1      ober #include <sys/callout.h>
     59   1.1      ober #include <sys/device.h>
     60  1.16  jmcneill #include <sys/kmem.h>
     61   1.1      ober #include <sys/kernel.h>
     62   1.1      ober #include <sys/audioio.h>
     63  1.13    nonaka #include <sys/mutex.h>
     64  1.13    nonaka #include <sys/intr.h>
     65  1.13    nonaka #include <sys/bus.h>
     66  1.13    nonaka 
     67  1.13    nonaka #include <dev/audio_if.h>
     68  1.13    nonaka #include <dev/mulaw.h>
     69  1.13    nonaka #include <dev/auconv.h>
     70   1.1      ober 
     71  1.13    nonaka #include <dev/i2c/i2cvar.h>
     72   1.1      ober 
     73   1.1      ober #include <arm/xscale/pxa2x0reg.h>
     74   1.1      ober #include <arm/xscale/pxa2x0var.h>
     75   1.1      ober #include <arm/xscale/pxa2x0_i2c.h>
     76   1.1      ober #include <arm/xscale/pxa2x0_i2s.h>
     77   1.1      ober #include <arm/xscale/pxa2x0_dmac.h>
     78   1.1      ober #include <arm/xscale/pxa2x0_gpio.h>
     79   1.1      ober 
     80  1.13    nonaka #include <zaurus/zaurus/zaurus_var.h>
     81   1.1      ober #include <zaurus/dev/wm8750reg.h>
     82   1.1      ober #include <zaurus/dev/scoopvar.h>
     83  1.13    nonaka #include <zaurus/dev/ioexpvar.h>
     84   1.1      ober 
     85   1.1      ober #define WM8750_ADDRESS  0x1B
     86   1.1      ober 
     87  1.13    nonaka /* GPIO pins */
     88  1.13    nonaka #define GPIO_HP_IN_C3000	116
     89   1.1      ober 
     90   1.1      ober #define ZAUDIO_OP_SPKR	0
     91   1.1      ober #define ZAUDIO_OP_HP	1
     92  1.10    nonaka #define ZAUDIO_OP_MIC	2
     93  1.10    nonaka #define ZAUDIO_OP_NUM	3
     94   1.1      ober 
     95   1.1      ober #define ZAUDIO_JACK_STATE_OUT	0
     96   1.1      ober #define ZAUDIO_JACK_STATE_IN	1
     97   1.1      ober #define ZAUDIO_JACK_STATE_INS	2
     98   1.1      ober #define ZAUDIO_JACK_STATE_REM	3
     99   1.1      ober 
    100   1.1      ober struct zaudio_volume {
    101  1.13    nonaka 	uint8_t	left;
    102  1.13    nonaka 	uint8_t	right;
    103   1.1      ober };
    104   1.1      ober 
    105   1.1      ober struct zaudio_softc {
    106   1.6    nonaka 	device_t		sc_dev;
    107  1.16  jmcneill 	kmutex_t		sc_lock;
    108  1.16  jmcneill 	kmutex_t		sc_intr_lock;
    109   1.1      ober 
    110   1.1      ober 	/* i2s device softc */
    111   1.1      ober 	/* NB: pxa2x0_i2s requires this to be the second struct member */
    112   1.1      ober 	struct pxa2x0_i2s_softc	sc_i2s;
    113   1.1      ober 
    114  1.13    nonaka 	i2c_tag_t		sc_i2c;
    115   1.1      ober 
    116   1.1      ober 	int			sc_playing;
    117  1.10    nonaka 	int			sc_recording;
    118   1.1      ober 
    119  1.10    nonaka 	struct zaudio_volume	sc_volume[ZAUDIO_OP_NUM];
    120  1.13    nonaka 	uint8_t			sc_unmute[ZAUDIO_OP_NUM];
    121  1.13    nonaka 	uint8_t			sc_unmute_toggle[ZAUDIO_OP_NUM];
    122   1.1      ober 
    123   1.1      ober 	int			sc_state;
    124   1.1      ober 	int			sc_icount;
    125   1.1      ober 	struct callout		sc_to;
    126   1.1      ober };
    127   1.1      ober 
    128  1.13    nonaka #define	UNMUTE(sc,op,val) sc->sc_unmute[op] = sc->sc_unmute_toggle[op] = val
    129  1.13    nonaka 
    130  1.13    nonaka static int	zaudio_match(device_t, cfdata_t, void *);
    131  1.13    nonaka static void	zaudio_attach(device_t, device_t, void *);
    132  1.13    nonaka 
    133   1.6    nonaka CFATTACH_DECL_NEW(zaudio, sizeof(struct zaudio_softc),
    134   1.7    nonaka     zaudio_match, zaudio_attach, NULL, NULL);
    135   1.1      ober 
    136  1.13    nonaka static bool	zaudio_suspend(device_t, const pmf_qual_t *);
    137  1.13    nonaka static bool	zaudio_resume(device_t, const pmf_qual_t *);
    138  1.13    nonaka static void	zaudio_volume_up(device_t);
    139  1.13    nonaka static void	zaudio_volume_down(device_t);
    140  1.13    nonaka static void	zaudio_volume_toggle(device_t);
    141  1.13    nonaka 
    142   1.2     peter static struct audio_device wm8750_device = {
    143   1.1      ober 	"WM8750",
    144   1.1      ober 	"1.0",
    145   1.1      ober 	"wm"
    146   1.1      ober };
    147   1.1      ober 
    148  1.10    nonaka static const struct audio_format zaudio_formats[] = {
    149  1.10    nonaka 	{
    150  1.10    nonaka 		.driver_data	= NULL,
    151  1.10    nonaka 		.mode		= AUMODE_PLAY | AUMODE_RECORD,
    152  1.10    nonaka 		.encoding	= AUDIO_ENCODING_SLINEAR_LE,
    153  1.10    nonaka 		.validbits	= 16,
    154  1.10    nonaka 		.precision	= 16,
    155  1.10    nonaka 		.channels	= 2,
    156  1.10    nonaka 		.channel_mask	= AUFMT_STEREO,
    157  1.10    nonaka 		.frequency_type	= 0,
    158  1.10    nonaka 		.frequency	= { 4000, 48000 }
    159  1.10    nonaka 	},
    160  1.10    nonaka 	{
    161  1.10    nonaka 		.driver_data	= NULL,
    162  1.10    nonaka 		.mode		= AUMODE_PLAY | AUMODE_RECORD,
    163  1.10    nonaka 		.encoding	= AUDIO_ENCODING_SLINEAR_LE,
    164  1.10    nonaka 		.validbits	= 16,
    165  1.10    nonaka 		.precision	= 16,
    166  1.10    nonaka 		.channels	= 1,
    167  1.10    nonaka 		.channel_mask	= AUFMT_MONAURAL,
    168  1.10    nonaka 		.frequency_type	= 0,
    169  1.10    nonaka 		.frequency	= { 4000, 48000 }
    170  1.10    nonaka 	},
    171  1.10    nonaka 	{
    172  1.10    nonaka 		.driver_data	= NULL,
    173  1.10    nonaka 		.mode		= AUMODE_PLAY | AUMODE_RECORD,
    174  1.10    nonaka 		.encoding	= AUDIO_ENCODING_ULINEAR_LE,
    175  1.10    nonaka 		.validbits	= 8,
    176  1.10    nonaka 		.precision	= 8,
    177  1.10    nonaka 		.channels	= 2,
    178  1.10    nonaka 		.channel_mask	= AUFMT_STEREO,
    179  1.10    nonaka 		.frequency_type	= 0,
    180  1.10    nonaka 		.frequency	= { 4000, 48000 }
    181  1.10    nonaka 	},
    182  1.10    nonaka 	{
    183  1.10    nonaka 		.driver_data	= NULL,
    184  1.10    nonaka 		.mode		= AUMODE_PLAY | AUMODE_RECORD,
    185  1.10    nonaka 		.encoding	= AUDIO_ENCODING_ULINEAR_LE,
    186  1.10    nonaka 		.validbits	= 8,
    187  1.10    nonaka 		.precision	= 8,
    188  1.10    nonaka 		.channels	= 1,
    189  1.10    nonaka 		.channel_mask	= AUFMT_MONAURAL,
    190  1.10    nonaka 		.frequency_type	= 0,
    191  1.10    nonaka 		.frequency	= { 4000, 48000 }
    192  1.10    nonaka 	},
    193   1.2     peter };
    194  1.10    nonaka static const int zaudio_nformats = (int)__arraycount(zaudio_formats);
    195   1.2     peter 
    196  1.10    nonaka static void zaudio_init(struct zaudio_softc *);
    197   1.2     peter static int zaudio_jack_intr(void *);
    198  1.10    nonaka static void zaudio_jack(void *);
    199  1.10    nonaka static void zaudio_standby(struct zaudio_softc *);
    200  1.10    nonaka static void zaudio_update_volume(struct zaudio_softc *, int);
    201  1.10    nonaka static void zaudio_update_mutes(struct zaudio_softc *, int);
    202  1.10    nonaka static void zaudio_play_setup(struct zaudio_softc *);
    203  1.10    nonaka /*static*/ void zaudio_record_setup(struct zaudio_softc *);
    204   1.2     peter static int zaudio_open(void *, int);
    205   1.2     peter static void zaudio_close(void *);
    206   1.2     peter static int zaudio_query_encoding(void *, struct audio_encoding *);
    207   1.2     peter static int zaudio_set_params(void *, int, int, audio_params_t *,
    208   1.2     peter     audio_params_t *, stream_filter_list_t *, stream_filter_list_t *);
    209   1.2     peter static int zaudio_round_blocksize(void *, int, int, const audio_params_t *);
    210   1.2     peter static int zaudio_start_output(void *, void *, int, void (*)(void *), void *);
    211   1.2     peter static int zaudio_start_input(void *, void *, int, void (*)(void *), void *);
    212   1.2     peter static int zaudio_halt_output(void *);
    213   1.2     peter static int zaudio_halt_input(void *);
    214   1.2     peter static int zaudio_getdev(void *, struct audio_device *);
    215   1.2     peter static int zaudio_set_port(void *, struct mixer_ctrl *);
    216   1.2     peter static int zaudio_get_port(void *, struct mixer_ctrl *);
    217   1.2     peter static int zaudio_query_devinfo(void *, struct mixer_devinfo *);
    218  1.16  jmcneill static void *zaudio_allocm(void *, int, size_t);
    219  1.16  jmcneill static void zaudio_freem(void  *, void *, size_t);
    220   1.2     peter static size_t zaudio_round_buffersize(void *, int, size_t);
    221   1.2     peter static paddr_t zaudio_mappage(void *, void *, off_t, int);
    222   1.2     peter static int zaudio_get_props(void *);
    223  1.16  jmcneill static void zaudio_get_locks(void *, kmutex_t **, kmutex_t **);
    224   1.1      ober 
    225   1.1      ober struct audio_hw_if wm8750_hw_if = {
    226   1.9    nonaka 	.open			= zaudio_open,
    227   1.9    nonaka 	.close			= zaudio_close,
    228   1.9    nonaka 	.drain			= NULL,
    229   1.9    nonaka 	.query_encoding		= zaudio_query_encoding,
    230   1.9    nonaka 	.set_params		= zaudio_set_params,
    231   1.9    nonaka 	.round_blocksize	= zaudio_round_blocksize,
    232   1.9    nonaka 	.commit_settings	= NULL,
    233   1.9    nonaka 	.init_output		= NULL,
    234   1.9    nonaka 	.init_input		= NULL,
    235   1.9    nonaka 	.start_output		= zaudio_start_output,
    236   1.9    nonaka 	.start_input		= zaudio_start_input,
    237   1.9    nonaka 	.halt_output		= zaudio_halt_output,
    238   1.9    nonaka 	.halt_input		= zaudio_halt_input,
    239   1.9    nonaka 	.speaker_ctl		= NULL,
    240   1.9    nonaka 	.getdev			= zaudio_getdev,
    241   1.9    nonaka 	.setfd			= NULL,
    242   1.9    nonaka 	.set_port		= zaudio_set_port,
    243   1.9    nonaka 	.get_port		= zaudio_get_port,
    244   1.9    nonaka 	.query_devinfo		= zaudio_query_devinfo,
    245   1.9    nonaka 	.allocm			= zaudio_allocm,
    246   1.9    nonaka 	.freem			= zaudio_freem,
    247   1.9    nonaka 	.round_buffersize	= zaudio_round_buffersize,
    248   1.9    nonaka 	.mappage		= zaudio_mappage,
    249   1.9    nonaka 	.get_props		= zaudio_get_props,
    250   1.9    nonaka 	.trigger_output		= NULL,
    251   1.9    nonaka 	.trigger_input		= NULL,
    252   1.9    nonaka 	.dev_ioctl		= NULL,
    253  1.16  jmcneill 	.get_locks		= zaudio_get_locks,
    254   1.1      ober };
    255   1.1      ober 
    256  1.10    nonaka static const uint16_t playback_regs[][2] = {
    257   1.1      ober 	/* Unmute DAC */
    258   1.1      ober 	{ ADCDACCTL_REG, 0x000 },
    259   1.1      ober 
    260   1.1      ober 	/* 16 bit audio words */
    261   1.1      ober 	{ AUDINT_REG, AUDINT_SET_FORMAT(2) },
    262   1.1      ober 
    263   1.1      ober 	/* Enable thermal protection, power */
    264   1.1      ober 	{ ADCTL1_REG, ADCTL1_TSDEN | ADCTL1_SET_VSEL(3) },
    265   1.1      ober 
    266   1.1      ober 	/* Enable speaker driver, DAC oversampling */
    267   1.1      ober 	{ ADCTL2_REG, ADCTL2_ROUT2INV | ADCTL2_DACOSR },
    268   1.1      ober 
    269   1.1      ober 	/* Set DAC voltage references */
    270   1.1      ober 	{ PWRMGMT1_REG, PWRMGMT1_SET_VMIDSEL(1) | PWRMGMT1_VREF },
    271   1.1      ober 
    272   1.1      ober 	/* Direct DACs to output mixers */
    273   1.1      ober 	{ LOUTMIX1_REG, LOUTMIX1_LD2LO },
    274  1.10    nonaka 	{ LOUTMIX2_REG, 0x000 },
    275  1.10    nonaka 	{ ROUTMIX1_REG, 0x000 },
    276   1.1      ober 	{ ROUTMIX2_REG, ROUTMIX2_RD2RO },
    277   1.1      ober 
    278   1.1      ober 	/* End of list */
    279   1.1      ober 	{ 0xffff, 0xffff }
    280   1.1      ober };
    281   1.1      ober 
    282  1.10    nonaka static const uint16_t record_regs[][2] = {
    283  1.10    nonaka 	/* Unmute DAC */
    284  1.10    nonaka 	{ ADCDACCTL_REG, 0x000 },
    285  1.10    nonaka 
    286  1.10    nonaka 	/* 16 bit audio words */
    287  1.10    nonaka 	{ AUDINT_REG, AUDINT_SET_FORMAT(2) },
    288  1.10    nonaka 
    289  1.10    nonaka 	/* Enable thermal protection, power, left DAC for both channel */
    290  1.10    nonaka 	{ ADCTL1_REG, ADCTL1_TSDEN | ADCTL1_SET_VSEL(3)
    291  1.10    nonaka 	              | ADCTL1_SET_DATSEL(1) },
    292  1.10    nonaka 
    293  1.10    nonaka 	/* Diffrential input select: LINPUT1-RINPUT1, stereo */
    294  1.10    nonaka 	{ ADCINPMODE_REG, 0x000 },
    295  1.10    nonaka 
    296  1.10    nonaka 	/* L-R differential, micboost 20dB */
    297  1.10    nonaka 	{ ADCLSPATH_REG, ADCLSPATH_SET_LINSEL(3) | ADCLSPATH_SET_LMICBOOST(2) },
    298  1.10    nonaka 	{ ADCRSPATH_REG, ADCRSPATH_SET_RINSEL(3) | ADCRSPATH_SET_RMICBOOST(2) },
    299  1.10    nonaka 
    300  1.10    nonaka 	/* End of list */
    301  1.10    nonaka 	{ 0xffff, 0xffff }
    302  1.10    nonaka };
    303  1.10    nonaka 
    304  1.13    nonaka static __inline int
    305  1.13    nonaka wm8750_write(struct zaudio_softc *sc, int reg, int val)
    306  1.13    nonaka {
    307  1.13    nonaka 	uint16_t tmp;
    308  1.13    nonaka 	uint8_t cmd;
    309  1.13    nonaka 	uint8_t data;
    310  1.13    nonaka 
    311  1.13    nonaka 	tmp = (reg << 9) | (val & 0x1ff);
    312  1.13    nonaka 	cmd = tmp >> 8;
    313  1.13    nonaka 	data = tmp;
    314  1.13    nonaka 	return iic_exec(sc->sc_i2c, I2C_OP_WRITE_WITH_STOP, WM8750_ADDRESS,
    315  1.13    nonaka 	    &cmd, 1, &data, 1, 0);
    316  1.13    nonaka }
    317  1.13    nonaka 
    318   1.1      ober static int
    319   1.6    nonaka zaudio_match(device_t parent, cfdata_t cf, void *aux)
    320   1.1      ober {
    321  1.13    nonaka 	struct i2c_attach_args *ia = aux;
    322   1.1      ober 
    323  1.13    nonaka 	if (ia->ia_name) {
    324  1.13    nonaka 		/* direct config - check name */
    325  1.13    nonaka 		if (strcmp(ia->ia_name, "zaudio") == 0)
    326  1.13    nonaka 			return 1;
    327  1.13    nonaka 	} else {
    328  1.13    nonaka 		/* indirect config - check typical address */
    329  1.13    nonaka 		if (ia->ia_addr == WM8750_ADDRESS)
    330  1.13    nonaka 			return 1;
    331  1.13    nonaka 	}
    332  1.13    nonaka 	return 0;
    333   1.1      ober }
    334   1.1      ober 
    335   1.1      ober static void
    336   1.6    nonaka zaudio_attach(device_t parent, device_t self, void *aux)
    337   1.1      ober {
    338   1.6    nonaka 	struct zaudio_softc *sc = device_private(self);
    339  1.13    nonaka 	struct i2c_attach_args *ia = aux;
    340  1.13    nonaka 	int error;
    341   1.1      ober 
    342   1.6    nonaka 	sc->sc_dev = self;
    343  1.13    nonaka 	sc->sc_i2c = ia->ia_tag;
    344  1.16  jmcneill 	mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_NONE);
    345  1.16  jmcneill 	mutex_init(&sc->sc_intr_lock, MUTEX_DEFAULT, IPL_SCHED);
    346   1.6    nonaka 
    347  1.13    nonaka 	aprint_normal(": I2S, WM8750 Audio\n");
    348   1.6    nonaka 	aprint_naive("\n");
    349   1.6    nonaka 
    350  1.13    nonaka 	sc->sc_i2s.sc_iot = &pxa2x0_bs_tag;
    351  1.13    nonaka 	sc->sc_i2s.sc_dmat = &pxa2x0_bus_dma_tag;
    352   1.1      ober 	sc->sc_i2s.sc_size = PXA2X0_I2S_SIZE;
    353  1.16  jmcneill 	sc->sc_i2s.sc_intr_lock = &sc->sc_intr_lock;
    354   1.1      ober 	if (pxa2x0_i2s_attach_sub(&sc->sc_i2s)) {
    355  1.13    nonaka 		aprint_error_dev(self, "unable to attach I2S\n");
    356   1.1      ober 		goto fail_i2s;
    357   1.1      ober 	}
    358   1.1      ober 
    359  1.13    nonaka 	/* Check for an I2C response from the wm8750 */
    360  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    361  1.13    nonaka 	error = wm8750_write(sc, RESET_REG, 0);
    362  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    363  1.13    nonaka 	if (error) {
    364  1.13    nonaka 		aprint_error_dev(self, "codec failed to respond\n");
    365   1.1      ober 		goto fail_i2c;
    366   1.1      ober 	}
    367   1.1      ober 	delay(100);
    368   1.1      ober 
    369   1.1      ober 	/* Speaker on, headphones off by default. */
    370  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_SPKR].left = 180;
    371  1.13    nonaka 	UNMUTE(sc, ZAUDIO_OP_SPKR, 1);
    372   1.1      ober 	sc->sc_volume[ZAUDIO_OP_HP].left = 180;
    373   1.1      ober 	sc->sc_volume[ZAUDIO_OP_HP].right = 180;
    374  1.13    nonaka 	UNMUTE(sc, ZAUDIO_OP_HP, 0);
    375  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_MIC].left = 180;
    376  1.13    nonaka 	UNMUTE(sc, ZAUDIO_OP_MIC, 0);
    377   1.1      ober 
    378   1.1      ober 	/* Configure headphone jack state change handling. */
    379   1.4        ad 	callout_init(&sc->sc_to, 0);
    380   1.1      ober 	callout_setfunc(&sc->sc_to, zaudio_jack, sc);
    381   1.1      ober 	pxa2x0_gpio_set_function(GPIO_HP_IN_C3000, GPIO_IN);
    382  1.10    nonaka 	(void) pxa2x0_gpio_intr_establish(GPIO_HP_IN_C3000, IST_EDGE_BOTH,
    383  1.10    nonaka 	    IPL_BIO, zaudio_jack_intr, sc);
    384   1.1      ober 
    385   1.1      ober 	zaudio_init(sc);
    386   1.1      ober 
    387  1.13    nonaka 	audio_attach_mi(&wm8750_hw_if, sc, self);
    388  1.13    nonaka 
    389  1.13    nonaka 	if (!pmf_device_register(self, zaudio_suspend, zaudio_resume))
    390  1.13    nonaka 		aprint_error_dev(self, "couldn't establish power handler\n");
    391  1.13    nonaka 	if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_UP,
    392  1.13    nonaka 	    zaudio_volume_up, true))
    393  1.13    nonaka 		aprint_error_dev(self, "couldn't register event handler\n");
    394  1.13    nonaka 	if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_DOWN,
    395  1.13    nonaka 	    zaudio_volume_down, true))
    396  1.13    nonaka 		aprint_error_dev(self, "couldn't register event handler\n");
    397  1.13    nonaka 	if (!pmf_event_register(self, PMFE_AUDIO_VOLUME_TOGGLE,
    398  1.13    nonaka 	    zaudio_volume_toggle, true))
    399  1.13    nonaka 		aprint_error_dev(self, "couldn't register event handler\n");
    400   1.1      ober 
    401   1.1      ober 	return;
    402   1.1      ober 
    403   1.1      ober fail_i2c:
    404   1.1      ober 	pxa2x0_i2s_detach_sub(&sc->sc_i2s);
    405   1.1      ober fail_i2s:
    406   1.7    nonaka 	pmf_device_deregister(self);
    407   1.1      ober }
    408   1.1      ober 
    409   1.7    nonaka static bool
    410  1.12    dyoung zaudio_suspend(device_t dv, const pmf_qual_t *qual)
    411   1.1      ober {
    412   1.7    nonaka 	struct zaudio_softc *sc = device_private(dv);
    413   1.1      ober 
    414   1.7    nonaka 	callout_stop(&sc->sc_to);
    415   1.7    nonaka 	zaudio_standby(sc);
    416   1.1      ober 
    417   1.7    nonaka 	return true;
    418   1.1      ober }
    419   1.1      ober 
    420   1.7    nonaka static bool
    421  1.12    dyoung zaudio_resume(device_t dv, const pmf_qual_t *qual)
    422   1.1      ober {
    423   1.7    nonaka 	struct zaudio_softc *sc = device_private(dv);
    424   1.1      ober 
    425   1.7    nonaka 	pxa2x0_i2s_init(&sc->sc_i2s);
    426   1.7    nonaka 	zaudio_init(sc);
    427   1.1      ober 
    428   1.7    nonaka 	return true;
    429   1.1      ober }
    430   1.1      ober 
    431  1.13    nonaka static __inline uint8_t
    432  1.13    nonaka vol_sadd(int vol, int stride)
    433  1.13    nonaka {
    434  1.13    nonaka 
    435  1.13    nonaka 	vol += stride;
    436  1.13    nonaka 	if (vol > 255)
    437  1.13    nonaka 		return 255;
    438  1.13    nonaka 	return (uint8_t)vol;
    439  1.13    nonaka }
    440  1.13    nonaka 
    441  1.13    nonaka #ifndef	ZAUDIO_VOLUME_STRIDE
    442  1.13    nonaka #define	ZAUDIO_VOLUME_STRIDE	8
    443  1.13    nonaka #endif
    444  1.13    nonaka 
    445  1.13    nonaka static void
    446  1.13    nonaka zaudio_volume_up(device_t dv)
    447  1.13    nonaka {
    448  1.13    nonaka 	struct zaudio_softc *sc = device_private(dv);
    449  1.13    nonaka 	int s;
    450  1.13    nonaka 
    451  1.13    nonaka 	s = splbio();
    452  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    453  1.13    nonaka 
    454  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_SPKR].left =
    455  1.13    nonaka 	    vol_sadd(sc->sc_volume[ZAUDIO_OP_SPKR].left, ZAUDIO_VOLUME_STRIDE);
    456  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_HP].left =
    457  1.13    nonaka 	    vol_sadd(sc->sc_volume[ZAUDIO_OP_HP].left, ZAUDIO_VOLUME_STRIDE);
    458  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_HP].right =
    459  1.13    nonaka 	    vol_sadd(sc->sc_volume[ZAUDIO_OP_HP].right, ZAUDIO_VOLUME_STRIDE);
    460  1.13    nonaka 
    461  1.13    nonaka 	zaudio_update_volume(sc, ZAUDIO_OP_SPKR);
    462  1.13    nonaka 	zaudio_update_volume(sc, ZAUDIO_OP_HP);
    463  1.13    nonaka 
    464  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    465  1.13    nonaka 	splx(s);
    466  1.13    nonaka }
    467  1.13    nonaka 
    468  1.13    nonaka static __inline uint8_t
    469  1.13    nonaka vol_ssub(int vol, int stride)
    470  1.13    nonaka {
    471  1.13    nonaka 
    472  1.13    nonaka 	vol -= stride;
    473  1.13    nonaka 	if (vol < 0)
    474  1.13    nonaka 		return 0;
    475  1.13    nonaka 	return (uint8_t)vol;
    476  1.13    nonaka }
    477  1.13    nonaka 
    478  1.13    nonaka static void
    479  1.13    nonaka zaudio_volume_down(device_t dv)
    480  1.13    nonaka {
    481  1.13    nonaka 	struct zaudio_softc *sc = device_private(dv);
    482  1.13    nonaka 	int s;
    483  1.13    nonaka 
    484  1.13    nonaka 	s = splbio();
    485  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    486  1.13    nonaka 
    487  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_SPKR].left =
    488  1.13    nonaka 	    vol_ssub(sc->sc_volume[ZAUDIO_OP_SPKR].left, ZAUDIO_VOLUME_STRIDE);
    489  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_HP].left =
    490  1.13    nonaka 	    vol_ssub(sc->sc_volume[ZAUDIO_OP_HP].left, ZAUDIO_VOLUME_STRIDE);
    491  1.13    nonaka 	sc->sc_volume[ZAUDIO_OP_HP].right =
    492  1.13    nonaka 	    vol_ssub(sc->sc_volume[ZAUDIO_OP_HP].right, ZAUDIO_VOLUME_STRIDE);
    493  1.13    nonaka 
    494  1.13    nonaka 	zaudio_update_volume(sc, ZAUDIO_OP_SPKR);
    495  1.13    nonaka 	zaudio_update_volume(sc, ZAUDIO_OP_HP);
    496  1.13    nonaka 
    497  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    498  1.13    nonaka 	splx(s);
    499  1.13    nonaka }
    500  1.13    nonaka 
    501  1.13    nonaka static void
    502  1.13    nonaka zaudio_volume_toggle(device_t dv)
    503  1.13    nonaka {
    504  1.13    nonaka 	struct zaudio_softc *sc = device_private(dv);
    505  1.13    nonaka 	int s;
    506  1.13    nonaka 
    507  1.13    nonaka 	s = splbio();
    508  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    509  1.13    nonaka 
    510  1.13    nonaka 	if (!sc->sc_unmute[ZAUDIO_OP_SPKR] && !sc->sc_unmute[ZAUDIO_OP_HP]) {
    511  1.13    nonaka 		sc->sc_unmute[ZAUDIO_OP_SPKR] =
    512  1.13    nonaka 		    sc->sc_unmute_toggle[ZAUDIO_OP_SPKR];
    513  1.13    nonaka 		sc->sc_unmute[ZAUDIO_OP_HP] =
    514  1.13    nonaka 		    sc->sc_unmute_toggle[ZAUDIO_OP_HP];
    515  1.13    nonaka 	} else {
    516  1.13    nonaka 		sc->sc_unmute[ZAUDIO_OP_SPKR] = 0;
    517  1.13    nonaka 		sc->sc_unmute[ZAUDIO_OP_HP] = 0;
    518  1.13    nonaka 	}
    519  1.13    nonaka 	zaudio_update_mutes(sc, 1);
    520  1.13    nonaka 
    521  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    522  1.13    nonaka 	splx(s);
    523  1.13    nonaka }
    524  1.13    nonaka 
    525  1.10    nonaka static void
    526   1.1      ober zaudio_init(struct zaudio_softc *sc)
    527   1.1      ober {
    528   1.2     peter 
    529  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    530   1.1      ober 
    531   1.1      ober 	/* Reset the codec */
    532   1.1      ober 	wm8750_write(sc, RESET_REG, 0);
    533   1.1      ober 	delay(100);
    534   1.1      ober 
    535   1.1      ober 	/* Switch to standby power only */
    536   1.1      ober 	wm8750_write(sc, PWRMGMT1_REG, PWRMGMT1_SET_VMIDSEL(2));
    537   1.1      ober 	wm8750_write(sc, PWRMGMT2_REG, 0);
    538   1.1      ober 
    539   1.1      ober 	/* Configure digital interface for I2S */
    540   1.1      ober 	wm8750_write(sc, AUDINT_REG, AUDINT_SET_FORMAT(2));
    541   1.1      ober 
    542   1.1      ober 	/* Initialise volume levels */
    543   1.1      ober 	zaudio_update_volume(sc, ZAUDIO_OP_SPKR);
    544   1.1      ober 	zaudio_update_volume(sc, ZAUDIO_OP_HP);
    545  1.10    nonaka 	zaudio_update_volume(sc, ZAUDIO_OP_MIC);
    546   1.1      ober 
    547  1.13    nonaka 	scoop_set_headphone(0);
    548  1.13    nonaka 	if (ZAURUS_ISC1000)
    549  1.13    nonaka 		ioexp_set_mic_bias(0);
    550  1.13    nonaka 	else
    551  1.13    nonaka 		scoop_set_mic_bias(0);
    552   1.1      ober 
    553  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    554   1.2     peter 
    555   1.1      ober 	/* Assume that the jack state has changed. */
    556   1.1      ober 	zaudio_jack(sc);
    557   1.1      ober }
    558   1.1      ober 
    559   1.2     peter static int
    560   1.1      ober zaudio_jack_intr(void *v)
    561   1.1      ober {
    562   1.1      ober 	struct zaudio_softc *sc = v;
    563   1.1      ober 
    564   1.1      ober 	if (!callout_active(&sc->sc_to))
    565   1.1      ober 		zaudio_jack(sc);
    566   1.1      ober 
    567   1.2     peter 	return 1;
    568   1.1      ober }
    569   1.1      ober 
    570  1.10    nonaka static void
    571   1.1      ober zaudio_jack(void *v)
    572   1.1      ober {
    573   1.1      ober 	struct zaudio_softc *sc = v;
    574   1.1      ober 
    575   1.1      ober 	switch (sc->sc_state) {
    576   1.1      ober 	case ZAUDIO_JACK_STATE_OUT:
    577   1.1      ober 		if (pxa2x0_gpio_get_bit(GPIO_HP_IN_C3000)) {
    578   1.1      ober 			sc->sc_state = ZAUDIO_JACK_STATE_INS;
    579   1.1      ober 			sc->sc_icount = 0;
    580   1.1      ober 		}
    581   1.1      ober 		break;
    582   1.2     peter 
    583   1.1      ober 	case ZAUDIO_JACK_STATE_INS:
    584   1.1      ober 		if (sc->sc_icount++ > 2) {
    585   1.1      ober 			if (pxa2x0_gpio_get_bit(GPIO_HP_IN_C3000)) {
    586   1.1      ober 				sc->sc_state = ZAUDIO_JACK_STATE_IN;
    587  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_SPKR, 0);
    588  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_HP, 1);
    589  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_MIC, 1);
    590   1.1      ober 				goto update_mutes;
    591   1.1      ober 			} else
    592   1.1      ober 				sc->sc_state = ZAUDIO_JACK_STATE_OUT;
    593   1.1      ober 		}
    594   1.1      ober 		break;
    595   1.2     peter 
    596   1.1      ober 	case ZAUDIO_JACK_STATE_IN:
    597   1.1      ober 		if (!pxa2x0_gpio_get_bit(GPIO_HP_IN_C3000)) {
    598   1.1      ober 			sc->sc_state = ZAUDIO_JACK_STATE_REM;
    599   1.1      ober 			sc->sc_icount = 0;
    600   1.1      ober 		}
    601   1.1      ober 		break;
    602   1.2     peter 
    603   1.1      ober 	case ZAUDIO_JACK_STATE_REM:
    604   1.1      ober 		if (sc->sc_icount++ > 2) {
    605   1.1      ober 			if (!pxa2x0_gpio_get_bit(GPIO_HP_IN_C3000)) {
    606   1.1      ober 				sc->sc_state = ZAUDIO_JACK_STATE_OUT;
    607  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_SPKR, 1);
    608  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_HP, 0);
    609  1.13    nonaka 				UNMUTE(sc, ZAUDIO_OP_MIC, 0);
    610   1.1      ober 				goto update_mutes;
    611   1.1      ober 			} else
    612   1.1      ober 				sc->sc_state = ZAUDIO_JACK_STATE_IN;
    613   1.1      ober 		}
    614   1.1      ober 		break;
    615   1.1      ober 	}
    616   1.1      ober 
    617   1.1      ober 	callout_schedule(&sc->sc_to, hz/4);
    618   1.2     peter 
    619   1.1      ober 	return;
    620   1.1      ober 
    621   1.1      ober update_mutes:
    622   1.1      ober 	callout_stop(&sc->sc_to);
    623   1.1      ober 
    624  1.10    nonaka 	if (sc->sc_playing || sc->sc_recording) {
    625  1.13    nonaka 		iic_acquire_bus(sc->sc_i2c, 0);
    626  1.10    nonaka 		if (sc->sc_playing)
    627  1.10    nonaka 			zaudio_update_mutes(sc, 1);
    628  1.10    nonaka 		if (sc->sc_recording)
    629  1.10    nonaka 			zaudio_update_mutes(sc, 2);
    630  1.13    nonaka 		iic_release_bus(sc->sc_i2c, 0);
    631   1.1      ober 	}
    632   1.1      ober }
    633   1.1      ober 
    634  1.10    nonaka static void
    635   1.1      ober zaudio_standby(struct zaudio_softc *sc)
    636   1.1      ober {
    637   1.2     peter 
    638  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    639   1.1      ober 
    640   1.1      ober 	/* Switch codec to standby power only */
    641   1.1      ober 	wm8750_write(sc, PWRMGMT1_REG, PWRMGMT1_SET_VMIDSEL(2));
    642   1.1      ober 	wm8750_write(sc, PWRMGMT2_REG, 0);
    643   1.1      ober 
    644  1.13    nonaka 	scoop_set_headphone(0);
    645  1.13    nonaka 	if (ZAURUS_ISC1000)
    646  1.13    nonaka 		ioexp_set_mic_bias(0);
    647  1.13    nonaka 	else
    648  1.13    nonaka 		scoop_set_mic_bias(0);
    649   1.2     peter 
    650  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    651   1.1      ober }
    652   1.1      ober 
    653  1.10    nonaka static void
    654   1.1      ober zaudio_update_volume(struct zaudio_softc *sc, int output)
    655   1.1      ober {
    656   1.2     peter 
    657   1.2     peter 	switch (output) {
    658   1.1      ober 	case ZAUDIO_OP_SPKR:
    659   1.1      ober 		wm8750_write(sc, LOUT2VOL_REG, LOUT2VOL_LO2VU | LOUT2VOL_LO2ZC |
    660  1.10    nonaka 		    LOUT2VOL_SET_LOUT2VOL(sc->sc_volume[ZAUDIO_OP_SPKR].left >> 1));
    661   1.1      ober 		wm8750_write(sc, ROUT2VOL_REG, ROUT2VOL_RO2VU | ROUT2VOL_RO2ZC |
    662  1.10    nonaka 		    ROUT2VOL_SET_ROUT2VOL(sc->sc_volume[ZAUDIO_OP_SPKR].left >> 1));
    663   1.1      ober 		break;
    664   1.2     peter 
    665   1.1      ober 	case ZAUDIO_OP_HP:
    666   1.1      ober 		wm8750_write(sc, LOUT1VOL_REG, LOUT1VOL_LO1VU | LOUT1VOL_LO1ZC |
    667  1.10    nonaka 		    LOUT1VOL_SET_LOUT1VOL(sc->sc_volume[ZAUDIO_OP_HP].left >> 1));
    668   1.1      ober 		wm8750_write(sc, ROUT1VOL_REG, ROUT1VOL_RO1VU | ROUT1VOL_RO1ZC |
    669  1.10    nonaka 		    ROUT1VOL_SET_ROUT1VOL(sc->sc_volume[ZAUDIO_OP_HP].right >> 1));
    670  1.10    nonaka 		break;
    671  1.10    nonaka 
    672  1.10    nonaka 	case ZAUDIO_OP_MIC:
    673  1.10    nonaka 		wm8750_write(sc, LINVOL_REG, LINVOL_LIVU |
    674  1.10    nonaka 		    LINVOL_SET_LINVOL(sc->sc_volume[ZAUDIO_OP_MIC].left >> 2));
    675  1.10    nonaka 		wm8750_write(sc, RINVOL_REG, RINVOL_RIVU |
    676  1.10    nonaka 		    RINVOL_SET_RINVOL(sc->sc_volume[ZAUDIO_OP_MIC].left >> 2));
    677   1.1      ober 		break;
    678   1.1      ober 	}
    679   1.1      ober }
    680   1.1      ober 
    681  1.10    nonaka static void
    682  1.10    nonaka zaudio_update_mutes(struct zaudio_softc *sc, int mask)
    683   1.1      ober {
    684   1.2     peter 	uint16_t val;
    685   1.1      ober 
    686  1.10    nonaka 	/* playback */
    687  1.10    nonaka 	if (mask & 1) {
    688  1.10    nonaka 		val = PWRMGMT2_DACL | PWRMGMT2_DACR;
    689  1.10    nonaka 		if (sc->sc_unmute[ZAUDIO_OP_SPKR])
    690  1.10    nonaka 			val |= PWRMGMT2_LOUT2 | PWRMGMT2_ROUT2;
    691  1.10    nonaka 		if (sc->sc_unmute[ZAUDIO_OP_HP])
    692  1.10    nonaka 			val |= PWRMGMT2_LOUT1 | PWRMGMT2_ROUT1;
    693  1.10    nonaka 		wm8750_write(sc, PWRMGMT2_REG, val);
    694  1.10    nonaka 		scoop_set_headphone(sc->sc_unmute[ZAUDIO_OP_HP]);
    695  1.10    nonaka 	}
    696   1.1      ober 
    697  1.10    nonaka 	/* record */
    698  1.10    nonaka 	if (mask & 2) {
    699  1.10    nonaka 		val = PWRMGMT1_SET_VMIDSEL(1) | PWRMGMT1_VREF;
    700  1.10    nonaka 		if (sc->sc_unmute[ZAUDIO_OP_MIC]) {
    701  1.10    nonaka 			val |= PWRMGMT1_AINL | PWRMGMT1_AINR
    702  1.10    nonaka 			       | PWRMGMT1_ADCL | PWRMGMT1_ADCR | PWRMGMT1_MICB;
    703  1.10    nonaka 		}
    704  1.10    nonaka 		wm8750_write(sc, PWRMGMT1_REG, val);
    705  1.13    nonaka 		if (ZAURUS_ISC1000)
    706  1.13    nonaka 			ioexp_set_mic_bias(sc->sc_unmute[ZAUDIO_OP_MIC]);
    707  1.13    nonaka 		else
    708  1.13    nonaka 			scoop_set_mic_bias(sc->sc_unmute[ZAUDIO_OP_MIC]);
    709  1.10    nonaka 	}
    710  1.10    nonaka }
    711  1.10    nonaka 
    712  1.10    nonaka static void
    713  1.10    nonaka zaudio_play_setup(struct zaudio_softc *sc)
    714  1.10    nonaka {
    715  1.10    nonaka 	int i;
    716   1.1      ober 
    717  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    718   1.1      ober 
    719  1.10    nonaka 	/* Program the codec with playback settings */
    720  1.10    nonaka 	for (i = 0; playback_regs[i][0] != 0xffff; i++) {
    721  1.10    nonaka 		wm8750_write(sc, playback_regs[i][0], playback_regs[i][1]);
    722  1.10    nonaka 	}
    723  1.10    nonaka 	zaudio_update_mutes(sc, 1);
    724   1.1      ober 
    725  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    726   1.1      ober }
    727   1.1      ober 
    728  1.10    nonaka /*static*/ void
    729  1.10    nonaka zaudio_record_setup(struct zaudio_softc *sc)
    730   1.1      ober {
    731   1.2     peter 	int i;
    732   1.1      ober 
    733  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    734   1.1      ober 
    735   1.1      ober 	/* Program the codec with playback settings */
    736  1.10    nonaka 	for (i = 0; record_regs[i][0] != 0xffff; i++) {
    737  1.10    nonaka 		wm8750_write(sc, record_regs[i][0], record_regs[i][1]);
    738   1.1      ober 	}
    739  1.10    nonaka 	zaudio_update_mutes(sc, 2);
    740   1.1      ober 
    741  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
    742   1.1      ober }
    743   1.1      ober 
    744   1.2     peter /*
    745   1.2     peter  * audio operation functions.
    746   1.2     peter  */
    747   1.2     peter static int
    748   1.1      ober zaudio_open(void *hdl, int flags)
    749   1.1      ober {
    750   1.1      ober 	struct zaudio_softc *sc = hdl;
    751   1.1      ober 
    752   1.1      ober 	/* Power on the I2S bus and codec */
    753   1.1      ober 	pxa2x0_i2s_open(&sc->sc_i2s);
    754   1.1      ober 
    755   1.1      ober 	return 0;
    756   1.1      ober }
    757   1.1      ober 
    758   1.2     peter static void
    759   1.1      ober zaudio_close(void *hdl)
    760   1.1      ober {
    761   1.1      ober 	struct zaudio_softc *sc = hdl;
    762   1.1      ober 
    763   1.1      ober 	/* Power off the I2S bus and codec */
    764   1.1      ober 	pxa2x0_i2s_close(&sc->sc_i2s);
    765   1.1      ober }
    766   1.1      ober 
    767   1.2     peter static int
    768   1.1      ober zaudio_query_encoding(void *hdl, struct audio_encoding *aep)
    769   1.1      ober {
    770   1.2     peter 
    771   1.1      ober 	switch (aep->index) {
    772   1.1      ober 	case 0:
    773   1.1      ober 		strlcpy(aep->name, AudioEulinear, sizeof(aep->name));
    774   1.1      ober 		aep->encoding = AUDIO_ENCODING_ULINEAR;
    775   1.1      ober 		aep->precision = 8;
    776   1.1      ober 		aep->flags = 0;
    777   1.2     peter 		break;
    778   1.2     peter 
    779   1.1      ober 	case 1:
    780   1.1      ober 		strlcpy(aep->name, AudioEmulaw, sizeof(aep->name));
    781   1.1      ober 		aep->encoding = AUDIO_ENCODING_ULAW;
    782   1.1      ober 		aep->precision = 8;
    783   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    784   1.2     peter 		break;
    785   1.2     peter 
    786   1.1      ober 	case 2:
    787   1.1      ober 		strlcpy(aep->name, AudioEalaw, sizeof(aep->name));
    788   1.1      ober 		aep->encoding = AUDIO_ENCODING_ALAW;
    789   1.1      ober 		aep->precision = 8;
    790   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    791   1.2     peter 		break;
    792   1.2     peter 
    793   1.1      ober 	case 3:
    794   1.1      ober 		strlcpy(aep->name, AudioEslinear, sizeof(aep->name));
    795   1.1      ober 		aep->encoding = AUDIO_ENCODING_SLINEAR;
    796   1.1      ober 		aep->precision = 8;
    797   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    798   1.2     peter 		break;
    799   1.2     peter 
    800   1.1      ober 	case 4:
    801   1.1      ober 		strlcpy(aep->name, AudioEslinear_le, sizeof(aep->name));
    802   1.1      ober 		aep->encoding = AUDIO_ENCODING_SLINEAR_LE;
    803   1.1      ober 		aep->precision = 16;
    804   1.1      ober 		aep->flags = 0;
    805   1.2     peter 		break;
    806   1.2     peter 
    807   1.1      ober 	case 5:
    808   1.1      ober 		strlcpy(aep->name, AudioEulinear_le, sizeof(aep->name));
    809   1.1      ober 		aep->encoding = AUDIO_ENCODING_ULINEAR_LE;
    810   1.1      ober 		aep->precision = 16;
    811   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    812   1.2     peter 		break;
    813   1.2     peter 
    814   1.1      ober 	case 6:
    815   1.1      ober 		strlcpy(aep->name, AudioEslinear_be, sizeof(aep->name));
    816   1.1      ober 		aep->encoding = AUDIO_ENCODING_SLINEAR_BE;
    817   1.1      ober 		aep->precision = 16;
    818   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    819   1.2     peter 		break;
    820   1.2     peter 
    821   1.1      ober 	case 7:
    822   1.1      ober 		strlcpy(aep->name, AudioEulinear_be, sizeof(aep->name));
    823   1.1      ober 		aep->encoding = AUDIO_ENCODING_ULINEAR_BE;
    824   1.1      ober 		aep->precision = 16;
    825   1.1      ober 		aep->flags = AUDIO_ENCODINGFLAG_EMULATED;
    826   1.2     peter 		break;
    827   1.2     peter 
    828   1.1      ober 	default:
    829   1.2     peter 		return EINVAL;
    830   1.1      ober 	}
    831   1.2     peter 
    832   1.2     peter 	return 0;
    833   1.1      ober }
    834   1.1      ober 
    835   1.2     peter static int
    836  1.13    nonaka zaudio_set_params(void *hdl, int setmode, int usemode, audio_params_t *play,
    837  1.13    nonaka     audio_params_t *rec, stream_filter_list_t *pfil, stream_filter_list_t *rfil)
    838   1.1      ober {
    839   1.1      ober 	struct zaudio_softc *sc = hdl;
    840   1.2     peter 	struct audio_params *p;
    841   1.2     peter 	stream_filter_list_t *fil;
    842   1.2     peter 	int mode, i;
    843   1.2     peter 
    844   1.2     peter 	if (play->sample_rate != rec->sample_rate &&
    845   1.2     peter 	    usemode == (AUMODE_PLAY | AUMODE_RECORD)) {
    846   1.2     peter 		if (setmode == AUMODE_PLAY) {
    847   1.2     peter 			rec->sample_rate = play->sample_rate;
    848   1.2     peter 			setmode |= AUMODE_RECORD;
    849   1.2     peter 		} else if (setmode == AUMODE_RECORD) {
    850   1.2     peter 			play->sample_rate = rec->sample_rate;
    851   1.2     peter 			setmode |= AUMODE_PLAY;
    852   1.2     peter 		} else
    853   1.2     peter 			return EINVAL;
    854   1.2     peter 	}
    855   1.2     peter 
    856   1.2     peter 	for (mode = AUMODE_RECORD; mode != -1;
    857   1.2     peter 	     mode = (mode == AUMODE_RECORD) ? AUMODE_PLAY : -1) {
    858   1.2     peter 		if ((setmode & mode) == 0)
    859   1.2     peter 			continue;
    860   1.2     peter 
    861   1.2     peter 		p = (mode == AUMODE_PLAY) ? play : rec;
    862   1.2     peter 
    863   1.2     peter 		if (p->sample_rate < 4000 || p->sample_rate > 48000 ||
    864   1.2     peter 		    (p->precision != 8 && p->precision != 16) ||
    865   1.2     peter 		    (p->channels != 1 && p->channels != 2))
    866   1.2     peter 			return EINVAL;
    867   1.2     peter 
    868   1.2     peter 		fil = (mode == AUMODE_PLAY) ? pfil : rfil;
    869  1.10    nonaka 		i = auconv_set_converter(zaudio_formats, zaudio_nformats,
    870   1.3   thorpej 					 mode, p, false, fil);
    871   1.2     peter 		if (i < 0)
    872   1.2     peter 			return EINVAL;
    873   1.2     peter 	}
    874   1.2     peter 
    875   1.2     peter 	if (setmode == AUMODE_RECORD)
    876   1.2     peter 		pxa2x0_i2s_setspeed(&sc->sc_i2s, &rec->sample_rate);
    877   1.2     peter 	else
    878   1.1      ober 		pxa2x0_i2s_setspeed(&sc->sc_i2s, &play->sample_rate);
    879   1.1      ober 
    880   1.2     peter 	return 0;
    881   1.2     peter }
    882   1.1      ober 
    883   1.2     peter static int
    884   1.2     peter zaudio_round_blocksize(void *hdl, int bs, int mode, const audio_params_t *param)
    885   1.2     peter {
    886   1.2     peter 	struct zaudio_softc *sc = hdl;
    887   1.1      ober 
    888   1.2     peter 	return pxa2x0_i2s_round_blocksize(&sc->sc_i2s, bs, mode, param);
    889   1.1      ober }
    890   1.1      ober 
    891   1.2     peter static int
    892   1.1      ober zaudio_halt_output(void *hdl)
    893   1.1      ober {
    894   1.1      ober 	struct zaudio_softc *sc = hdl;
    895   1.2     peter 	int rv;
    896   1.1      ober 
    897   1.2     peter 	rv = pxa2x0_i2s_halt_output(&sc->sc_i2s);
    898  1.10    nonaka 	if (!sc->sc_recording)
    899  1.10    nonaka 		zaudio_standby(sc);
    900   1.1      ober 	sc->sc_playing = 0;
    901   1.1      ober 
    902   1.2     peter 	return rv;
    903   1.1      ober }
    904   1.1      ober 
    905   1.2     peter static int
    906   1.1      ober zaudio_halt_input(void *hdl)
    907   1.1      ober {
    908   1.2     peter 	struct zaudio_softc *sc = hdl;
    909   1.2     peter 	int rv;
    910   1.2     peter 
    911   1.2     peter 	rv = pxa2x0_i2s_halt_input(&sc->sc_i2s);
    912  1.10    nonaka 	if (!sc->sc_playing)
    913  1.10    nonaka 		zaudio_standby(sc);
    914  1.10    nonaka 	sc->sc_recording = 0;
    915   1.1      ober 
    916   1.2     peter 	return rv;
    917   1.1      ober }
    918   1.1      ober 
    919   1.2     peter static int
    920   1.1      ober zaudio_getdev(void *hdl, struct audio_device *ret)
    921   1.1      ober {
    922   1.1      ober 
    923   1.1      ober 	*ret = wm8750_device;
    924   1.1      ober 	return 0;
    925   1.1      ober }
    926   1.1      ober 
    927   1.1      ober #define ZAUDIO_SPKR_LVL		0
    928   1.1      ober #define ZAUDIO_SPKR_MUTE	1
    929   1.1      ober #define ZAUDIO_HP_LVL		2
    930   1.1      ober #define ZAUDIO_HP_MUTE		3
    931  1.10    nonaka #define ZAUDIO_MIC_LVL		4
    932  1.10    nonaka #define ZAUDIO_MIC_MUTE		5
    933  1.10    nonaka #define ZAUDIO_RECORD_SOURCE	6
    934  1.10    nonaka #define ZAUDIO_OUTPUT_CLASS	7
    935  1.10    nonaka #define ZAUDIO_INPUT_CLASS	8
    936  1.10    nonaka #define ZAUDIO_RECORD_CLASS	9
    937   1.1      ober 
    938   1.2     peter static int
    939   1.1      ober zaudio_set_port(void *hdl, struct mixer_ctrl *mc)
    940   1.1      ober {
    941   1.1      ober 	struct zaudio_softc *sc = hdl;
    942   1.2     peter 	int error = EINVAL;
    943   1.2     peter 	int s;
    944   1.1      ober 
    945   1.1      ober 	s = splbio();
    946  1.13    nonaka 	iic_acquire_bus(sc->sc_i2c, 0);
    947   1.1      ober 
    948   1.1      ober 	switch (mc->dev) {
    949   1.1      ober 	case ZAUDIO_SPKR_LVL:
    950   1.1      ober 		if (mc->type != AUDIO_MIXER_VALUE)
    951   1.1      ober 			break;
    952   1.1      ober 		if (mc->un.value.num_channels == 1)
    953   1.1      ober 			sc->sc_volume[ZAUDIO_OP_SPKR].left =
    954   1.1      ober 			    mc->un.value.level[AUDIO_MIXER_LEVEL_MONO];
    955   1.1      ober 		else
    956   1.1      ober 			break;
    957   1.1      ober 		zaudio_update_volume(sc, ZAUDIO_OP_SPKR);
    958   1.1      ober 		error = 0;
    959   1.1      ober 		break;
    960   1.2     peter 
    961   1.1      ober 	case ZAUDIO_SPKR_MUTE:
    962   1.1      ober 		if (mc->type != AUDIO_MIXER_ENUM)
    963   1.1      ober 			break;
    964  1.13    nonaka 		UNMUTE(sc, ZAUDIO_OP_SPKR, mc->un.ord ? 1 : 0);
    965  1.10    nonaka 		zaudio_update_mutes(sc, 1);
    966   1.1      ober 		error = 0;
    967   1.1      ober 		break;
    968   1.2     peter 
    969   1.1      ober 	case ZAUDIO_HP_LVL:
    970   1.1      ober 		if (mc->type != AUDIO_MIXER_VALUE)
    971   1.1      ober 			break;
    972   1.1      ober 		if (mc->un.value.num_channels == 1) {
    973   1.1      ober 			sc->sc_volume[ZAUDIO_OP_HP].left =
    974   1.1      ober 			    mc->un.value.level[AUDIO_MIXER_LEVEL_MONO];
    975   1.1      ober 			sc->sc_volume[ZAUDIO_OP_HP].right =
    976   1.1      ober 			    mc->un.value.level[AUDIO_MIXER_LEVEL_MONO];
    977   1.1      ober 		} else if (mc->un.value.num_channels == 2) {
    978   1.1      ober 			sc->sc_volume[ZAUDIO_OP_HP].left =
    979   1.1      ober 			    mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT];
    980   1.1      ober 			sc->sc_volume[ZAUDIO_OP_HP].right =
    981   1.1      ober 			    mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT];
    982   1.1      ober 		}
    983   1.1      ober 		else
    984   1.1      ober 			break;
    985   1.1      ober 		zaudio_update_volume(sc, ZAUDIO_OP_HP);
    986   1.1      ober 		error = 0;
    987   1.1      ober 		break;
    988   1.2     peter 
    989   1.1      ober 	case ZAUDIO_HP_MUTE:
    990   1.1      ober 		if (mc->type != AUDIO_MIXER_ENUM)
    991   1.1      ober 			break;
    992  1.13    nonaka 		UNMUTE(sc, ZAUDIO_OP_HP, mc->un.ord ? 1 : 0);
    993  1.10    nonaka 		zaudio_update_mutes(sc, 1);
    994  1.10    nonaka 		error = 0;
    995  1.10    nonaka 		break;
    996  1.10    nonaka 
    997  1.10    nonaka 	case ZAUDIO_MIC_LVL:
    998  1.10    nonaka 		if (mc->type != AUDIO_MIXER_VALUE)
    999  1.10    nonaka 			break;
   1000  1.10    nonaka 		if (mc->un.value.num_channels == 1)
   1001  1.10    nonaka 			sc->sc_volume[ZAUDIO_OP_MIC].left =
   1002  1.10    nonaka 			    mc->un.value.level[AUDIO_MIXER_LEVEL_MONO];
   1003  1.10    nonaka 		else
   1004  1.10    nonaka 			break;
   1005  1.10    nonaka 		zaudio_update_volume(sc, ZAUDIO_OP_MIC);
   1006  1.10    nonaka 		error = 0;
   1007  1.10    nonaka 		break;
   1008  1.10    nonaka 
   1009  1.10    nonaka 	case ZAUDIO_MIC_MUTE:
   1010  1.10    nonaka 		if (mc->type != AUDIO_MIXER_ENUM)
   1011  1.10    nonaka 			break;
   1012  1.13    nonaka 		UNMUTE(sc, ZAUDIO_OP_MIC, mc->un.ord ? 1 : 0);
   1013  1.10    nonaka 		zaudio_update_mutes(sc, 2);
   1014  1.10    nonaka 		error = 0;
   1015  1.10    nonaka 		break;
   1016  1.10    nonaka 
   1017  1.10    nonaka 	case ZAUDIO_RECORD_SOURCE:
   1018  1.10    nonaka 		if (mc->type != AUDIO_MIXER_ENUM)
   1019  1.10    nonaka 			break;
   1020  1.10    nonaka 		if (mc->un.ord != 0)
   1021  1.10    nonaka 			break;
   1022  1.10    nonaka 		/* MIC only */
   1023   1.1      ober 		error = 0;
   1024   1.1      ober 		break;
   1025   1.1      ober 	}
   1026   1.1      ober 
   1027  1.13    nonaka 	iic_release_bus(sc->sc_i2c, 0);
   1028   1.1      ober 	splx(s);
   1029   1.1      ober 
   1030   1.1      ober 	return error;
   1031   1.1      ober }
   1032   1.1      ober 
   1033   1.2     peter static int
   1034   1.1      ober zaudio_get_port(void *hdl, struct mixer_ctrl *mc)
   1035   1.1      ober {
   1036   1.1      ober 	struct zaudio_softc *sc = hdl;
   1037   1.1      ober 	int error = EINVAL;
   1038   1.1      ober 
   1039   1.1      ober 	switch (mc->dev) {
   1040   1.1      ober 	case ZAUDIO_SPKR_LVL:
   1041   1.1      ober 		if (mc->type != AUDIO_MIXER_VALUE)
   1042   1.1      ober 			break;
   1043   1.1      ober 		if (mc->un.value.num_channels == 1)
   1044   1.1      ober 			mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
   1045   1.1      ober 			    sc->sc_volume[ZAUDIO_OP_SPKR].left;
   1046   1.1      ober 		else
   1047   1.1      ober 			break;
   1048   1.1      ober 		error = 0;
   1049   1.1      ober 		break;
   1050   1.2     peter 
   1051   1.1      ober 	case ZAUDIO_SPKR_MUTE:
   1052   1.1      ober 		if (mc->type != AUDIO_MIXER_ENUM)
   1053   1.1      ober 			break;
   1054   1.1      ober 		mc->un.ord = sc->sc_unmute[ZAUDIO_OP_SPKR] ? 1 : 0;
   1055   1.1      ober 		error = 0;
   1056   1.1      ober 		break;
   1057   1.2     peter 
   1058   1.1      ober 	case ZAUDIO_HP_LVL:
   1059   1.1      ober 		if (mc->type != AUDIO_MIXER_VALUE)
   1060   1.1      ober 			break;
   1061   1.1      ober 		if (mc->un.value.num_channels == 1)
   1062   1.1      ober 			mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
   1063   1.1      ober 			    sc->sc_volume[ZAUDIO_OP_HP].left;
   1064   1.1      ober 		else if (mc->un.value.num_channels == 2) {
   1065   1.1      ober 			mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] =
   1066   1.1      ober 			    sc->sc_volume[ZAUDIO_OP_HP].left;
   1067   1.1      ober 			mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] =
   1068   1.1      ober 			    sc->sc_volume[ZAUDIO_OP_HP].right;
   1069   1.1      ober 		}
   1070   1.1      ober 		else
   1071   1.1      ober 			break;
   1072   1.1      ober 		error = 0;
   1073   1.1      ober 		break;
   1074   1.2     peter 
   1075   1.1      ober 	case ZAUDIO_HP_MUTE:
   1076   1.1      ober 		if (mc->type != AUDIO_MIXER_ENUM)
   1077   1.1      ober 			break;
   1078   1.1      ober 		mc->un.ord = sc->sc_unmute[ZAUDIO_OP_HP] ? 1 : 0;
   1079   1.1      ober 		error = 0;
   1080   1.1      ober 		break;
   1081  1.10    nonaka 
   1082  1.10    nonaka 	case ZAUDIO_MIC_LVL:
   1083  1.10    nonaka 		if (mc->type != AUDIO_MIXER_VALUE)
   1084  1.10    nonaka 			break;
   1085  1.10    nonaka 		if (mc->un.value.num_channels == 1)
   1086  1.10    nonaka 			mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
   1087  1.10    nonaka 			    sc->sc_volume[ZAUDIO_OP_MIC].left;
   1088  1.10    nonaka 		else
   1089  1.10    nonaka 			break;
   1090  1.10    nonaka 		error = 0;
   1091  1.10    nonaka 		break;
   1092  1.10    nonaka 
   1093  1.10    nonaka 	case ZAUDIO_MIC_MUTE:
   1094  1.10    nonaka 		if (mc->type != AUDIO_MIXER_ENUM)
   1095  1.10    nonaka 			break;
   1096  1.10    nonaka 		mc->un.ord = sc->sc_unmute[ZAUDIO_OP_MIC] ? 1 : 0;
   1097  1.10    nonaka 		error = 0;
   1098  1.10    nonaka 		break;
   1099  1.10    nonaka 
   1100  1.10    nonaka 	case ZAUDIO_RECORD_SOURCE:
   1101  1.10    nonaka 		if (mc->type != AUDIO_MIXER_ENUM)
   1102  1.10    nonaka 			break;
   1103  1.10    nonaka 		mc->un.ord = 0; /* MIC only */
   1104  1.10    nonaka 		error = 0;
   1105  1.10    nonaka 		break;
   1106   1.1      ober 	}
   1107   1.1      ober 
   1108   1.1      ober 	return error;
   1109   1.1      ober }
   1110   1.1      ober 
   1111  1.10    nonaka /*ARGSUSED*/
   1112   1.2     peter static int
   1113   1.1      ober zaudio_query_devinfo(void *hdl, struct mixer_devinfo *di)
   1114   1.1      ober {
   1115   1.1      ober 
   1116   1.1      ober 	switch (di->index) {
   1117   1.1      ober 	case ZAUDIO_SPKR_LVL:
   1118   1.1      ober 		di->type = AUDIO_MIXER_VALUE;
   1119   1.1      ober 		di->mixer_class = ZAUDIO_OUTPUT_CLASS;
   1120   1.1      ober 		di->prev = AUDIO_MIXER_LAST;
   1121   1.1      ober 		di->next = ZAUDIO_SPKR_MUTE;
   1122  1.10    nonaka 		strlcpy(di->label.name, AudioNspeaker, sizeof(di->label.name));
   1123   1.1      ober 		strlcpy(di->un.v.units.name, AudioNvolume,
   1124   1.1      ober 		    sizeof(di->un.v.units.name));
   1125   1.1      ober 		di->un.v.num_channels = 1;
   1126   1.1      ober 		break;
   1127   1.2     peter 
   1128   1.1      ober 	case ZAUDIO_SPKR_MUTE:
   1129   1.1      ober 		di->type = AUDIO_MIXER_ENUM;
   1130   1.1      ober 		di->mixer_class = ZAUDIO_OUTPUT_CLASS;
   1131   1.1      ober 		di->prev = ZAUDIO_SPKR_LVL;
   1132   1.1      ober 		di->next = AUDIO_MIXER_LAST;
   1133   1.1      ober 		goto mute;
   1134   1.2     peter 
   1135   1.1      ober 	case ZAUDIO_HP_LVL:
   1136   1.1      ober 		di->type = AUDIO_MIXER_VALUE;
   1137   1.1      ober 		di->mixer_class = ZAUDIO_OUTPUT_CLASS;
   1138   1.1      ober 		di->prev = AUDIO_MIXER_LAST;
   1139   1.1      ober 		di->next = ZAUDIO_HP_MUTE;
   1140   1.1      ober 		strlcpy(di->label.name, AudioNheadphone,
   1141   1.1      ober 		    sizeof(di->label.name));
   1142   1.1      ober 		di->un.v.num_channels = 1;
   1143   1.1      ober 		strlcpy(di->un.v.units.name, AudioNvolume,
   1144   1.1      ober 		    sizeof(di->un.v.units.name));
   1145   1.1      ober 		break;
   1146   1.2     peter 
   1147   1.1      ober 	case ZAUDIO_HP_MUTE:
   1148   1.1      ober 		di->type = AUDIO_MIXER_ENUM;
   1149   1.1      ober 		di->mixer_class = ZAUDIO_OUTPUT_CLASS;
   1150   1.1      ober 		di->prev = ZAUDIO_HP_LVL;
   1151   1.1      ober 		di->next = AUDIO_MIXER_LAST;
   1152   1.1      ober mute:
   1153   1.1      ober 		strlcpy(di->label.name, AudioNmute, sizeof(di->label.name));
   1154   1.1      ober 		di->un.e.num_mem = 2;
   1155   1.1      ober 		strlcpy(di->un.e.member[0].label.name, AudioNon,
   1156   1.1      ober 		    sizeof(di->un.e.member[0].label.name));
   1157   1.1      ober 		di->un.e.member[0].ord = 0;
   1158   1.1      ober 		strlcpy(di->un.e.member[1].label.name, AudioNoff,
   1159   1.1      ober 		    sizeof(di->un.e.member[1].label.name));
   1160   1.1      ober 		di->un.e.member[1].ord = 1;
   1161   1.1      ober 		break;
   1162   1.2     peter 
   1163  1.10    nonaka 	case ZAUDIO_MIC_LVL:
   1164  1.10    nonaka 		di->type = AUDIO_MIXER_VALUE;
   1165  1.10    nonaka 		di->mixer_class = ZAUDIO_INPUT_CLASS;
   1166  1.10    nonaka 		di->prev = AUDIO_MIXER_LAST;
   1167  1.10    nonaka 		di->next = ZAUDIO_MIC_MUTE;
   1168  1.10    nonaka 		strlcpy(di->label.name, AudioNmicrophone,
   1169  1.10    nonaka 		    sizeof(di->label.name));
   1170  1.10    nonaka 		strlcpy(di->un.v.units.name, AudioNvolume,
   1171  1.10    nonaka 		    sizeof(di->un.v.units.name));
   1172  1.10    nonaka 		di->un.v.num_channels = 1;
   1173  1.10    nonaka 		break;
   1174  1.10    nonaka 
   1175  1.10    nonaka 	case ZAUDIO_MIC_MUTE:
   1176  1.10    nonaka 		di->type = AUDIO_MIXER_ENUM;
   1177  1.10    nonaka 		di->mixer_class = ZAUDIO_INPUT_CLASS;
   1178  1.10    nonaka 		di->prev = ZAUDIO_MIC_LVL;
   1179  1.10    nonaka 		di->next = AUDIO_MIXER_LAST;
   1180  1.10    nonaka 		goto mute;
   1181  1.10    nonaka 
   1182  1.10    nonaka 	case ZAUDIO_RECORD_SOURCE:
   1183  1.10    nonaka 		di->type = AUDIO_MIXER_ENUM;
   1184  1.10    nonaka 		di->mixer_class = ZAUDIO_RECORD_CLASS;
   1185  1.10    nonaka 		di->prev = AUDIO_MIXER_LAST;
   1186  1.10    nonaka 		di->next = AUDIO_MIXER_LAST;
   1187  1.10    nonaka 		strlcpy(di->label.name, AudioNsource, sizeof(di->label.name));
   1188  1.10    nonaka 		di->un.e.num_mem = 1;
   1189  1.10    nonaka 		strlcpy(di->un.e.member[0].label.name, AudioNmicrophone,
   1190  1.10    nonaka 		    sizeof(di->un.e.member[0].label.name));
   1191  1.10    nonaka 		di->un.e.member[0].ord = 0;
   1192  1.10    nonaka 		break;
   1193  1.10    nonaka 
   1194   1.1      ober 	case ZAUDIO_OUTPUT_CLASS:
   1195   1.1      ober 		di->type = AUDIO_MIXER_CLASS;
   1196   1.1      ober 		di->mixer_class = ZAUDIO_OUTPUT_CLASS;
   1197   1.1      ober 		di->prev = AUDIO_MIXER_LAST;
   1198   1.1      ober 		di->next = AUDIO_MIXER_LAST;
   1199  1.10    nonaka 		strlcpy(di->label.name, AudioCoutputs, sizeof(di->label.name));
   1200  1.10    nonaka 		break;
   1201  1.10    nonaka 
   1202  1.10    nonaka 	case ZAUDIO_INPUT_CLASS:
   1203  1.10    nonaka 		di->type = AUDIO_MIXER_CLASS;
   1204  1.10    nonaka 		di->mixer_class = ZAUDIO_INPUT_CLASS;
   1205  1.10    nonaka 		di->prev = AUDIO_MIXER_LAST;
   1206  1.10    nonaka 		di->next = AUDIO_MIXER_LAST;
   1207  1.10    nonaka 		strlcpy(di->label.name, AudioCinputs, sizeof(di->label.name));
   1208  1.10    nonaka 		break;
   1209  1.10    nonaka 
   1210  1.10    nonaka 	case ZAUDIO_RECORD_CLASS:
   1211  1.10    nonaka 		di->type = AUDIO_MIXER_CLASS;
   1212  1.10    nonaka 		di->mixer_class = ZAUDIO_RECORD_CLASS;
   1213  1.10    nonaka 		di->prev = AUDIO_MIXER_LAST;
   1214  1.10    nonaka 		di->next = AUDIO_MIXER_LAST;
   1215  1.10    nonaka 		strlcpy(di->label.name, AudioCinputs, sizeof(di->label.name));
   1216   1.1      ober 		break;
   1217   1.2     peter 
   1218   1.1      ober 	default:
   1219   1.1      ober 		return ENXIO;
   1220   1.1      ober 	}
   1221   1.1      ober 
   1222   1.1      ober 	return 0;
   1223   1.1      ober }
   1224   1.1      ober 
   1225   1.2     peter static void *
   1226  1.16  jmcneill zaudio_allocm(void *hdl, int direction, size_t size)
   1227   1.2     peter {
   1228   1.2     peter 	struct zaudio_softc *sc = hdl;
   1229   1.2     peter 
   1230  1.16  jmcneill 	return pxa2x0_i2s_allocm(&sc->sc_i2s, direction, size);
   1231   1.2     peter }
   1232   1.2     peter 
   1233   1.2     peter static void
   1234  1.16  jmcneill zaudio_freem(void *hdl, void *ptr, size_t size)
   1235   1.2     peter {
   1236   1.2     peter 	struct zaudio_softc *sc = hdl;
   1237   1.2     peter 
   1238  1.16  jmcneill 	return pxa2x0_i2s_freem(&sc->sc_i2s, ptr, size);
   1239   1.2     peter }
   1240   1.2     peter 
   1241   1.2     peter static size_t
   1242   1.2     peter zaudio_round_buffersize(void *hdl, int direction, size_t bufsize)
   1243   1.2     peter {
   1244   1.2     peter 	struct zaudio_softc *sc = hdl;
   1245   1.2     peter 
   1246   1.2     peter 	return pxa2x0_i2s_round_buffersize(&sc->sc_i2s, direction, bufsize);
   1247   1.2     peter }
   1248   1.2     peter 
   1249   1.2     peter static paddr_t
   1250   1.2     peter zaudio_mappage(void *hdl, void *mem, off_t off, int prot)
   1251   1.2     peter {
   1252   1.2     peter 	struct zaudio_softc *sc = hdl;
   1253   1.2     peter 
   1254   1.2     peter 	return pxa2x0_i2s_mappage(&sc->sc_i2s, mem, off, prot);
   1255   1.2     peter }
   1256   1.2     peter 
   1257   1.2     peter static int
   1258   1.1      ober zaudio_get_props(void *hdl)
   1259   1.1      ober {
   1260   1.2     peter 
   1261  1.10    nonaka 	return AUDIO_PROP_MMAP|AUDIO_PROP_INDEPENDENT;
   1262   1.1      ober }
   1263   1.1      ober 
   1264   1.2     peter static int
   1265   1.1      ober zaudio_start_output(void *hdl, void *block, int bsize, void (*intr)(void *),
   1266   1.1      ober     void *intrarg)
   1267   1.1      ober {
   1268   1.1      ober 	struct zaudio_softc *sc = hdl;
   1269   1.2     peter 	int rv;
   1270   1.1      ober 
   1271   1.1      ober 	/* Power up codec if we are not already playing. */
   1272   1.1      ober 	if (!sc->sc_playing) {
   1273   1.1      ober 		sc->sc_playing = 1;
   1274   1.1      ober 		zaudio_play_setup(sc);
   1275   1.1      ober 	}
   1276   1.1      ober 
   1277   1.1      ober 	/* Start DMA via I2S */
   1278   1.2     peter 	rv = pxa2x0_i2s_start_output(&sc->sc_i2s, block, bsize, intr, intrarg);
   1279   1.2     peter 	if (rv) {
   1280  1.10    nonaka 		if (!sc->sc_recording)
   1281  1.10    nonaka 			zaudio_standby(sc);
   1282   1.1      ober 		sc->sc_playing = 0;
   1283   1.1      ober 	}
   1284  1.16  jmcneill 
   1285   1.2     peter 	return rv;
   1286   1.1      ober }
   1287   1.1      ober 
   1288   1.2     peter static int
   1289   1.1      ober zaudio_start_input(void *hdl, void *block, int bsize, void (*intr)(void *),
   1290   1.1      ober     void *intrarg)
   1291   1.1      ober {
   1292  1.10    nonaka 	struct zaudio_softc *sc = hdl;
   1293  1.10    nonaka 	int rv;
   1294  1.10    nonaka 
   1295  1.10    nonaka 	/* Power up codec if we are not already recording. */
   1296  1.10    nonaka 	if (!sc->sc_recording) {
   1297  1.10    nonaka 		sc->sc_recording = 1;
   1298  1.10    nonaka 		zaudio_record_setup(sc);
   1299  1.10    nonaka 	}
   1300   1.2     peter 
   1301  1.10    nonaka 	/* Start DMA via I2S */
   1302  1.10    nonaka 	rv = pxa2x0_i2s_start_input(&sc->sc_i2s, block, bsize, intr, intrarg);
   1303  1.10    nonaka 	if (rv) {
   1304  1.10    nonaka 		if (!sc->sc_playing)
   1305  1.10    nonaka 			zaudio_standby(sc);
   1306  1.10    nonaka 		sc->sc_recording = 0;
   1307  1.10    nonaka 	}
   1308  1.10    nonaka 	return rv;
   1309   1.1      ober }
   1310  1.16  jmcneill 
   1311  1.16  jmcneill static void
   1312  1.16  jmcneill zaudio_get_locks(void *hdl, kmutex_t **intr, kmutex_t **thread)
   1313  1.16  jmcneill {
   1314  1.16  jmcneill 	struct zaudio_softc *sc = hdl;
   1315  1.16  jmcneill 
   1316  1.16  jmcneill 	*intr = &sc->sc_intr_lock;
   1317  1.16  jmcneill 	*thread = &sc->sc_lock;
   1318  1.16  jmcneill }
   1319