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snapper.c revision 1.20
      1  1.20  jmcneill /*	$NetBSD: snapper.c,v 1.20 2007/04/04 02:14:57 jmcneill Exp $	*/
      2   1.1     grant /*	Id: snapper.c,v 1.11 2002/10/31 17:42:13 tsubai Exp	*/
      3  1.14  macallan /*     Id: i2s.c,v 1.12 2005/01/15 14:32:35 tsubai Exp         */
      4   1.1     grant /*-
      5  1.14  macallan  * Copyright (c) 2002, 2003 Tsubai Masanari.  All rights reserved.
      6   1.1     grant  *
      7   1.1     grant  * Redistribution and use in source and binary forms, with or without
      8   1.1     grant  * modification, are permitted provided that the following conditions
      9   1.1     grant  * are met:
     10   1.1     grant  * 1. Redistributions of source code must retain the above copyright
     11   1.1     grant  *    notice, this list of conditions and the following disclaimer.
     12   1.1     grant  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1     grant  *    notice, this list of conditions and the following disclaimer in the
     14   1.1     grant  *    documentation and/or other materials provided with the distribution.
     15   1.1     grant  * 3. The name of the author may not be used to endorse or promote products
     16   1.1     grant  *    derived from this software without specific prior written permission.
     17   1.1     grant  *
     18   1.1     grant  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19   1.1     grant  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20   1.1     grant  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21   1.1     grant  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22   1.1     grant  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     23   1.1     grant  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     24   1.1     grant  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     25   1.1     grant  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     26   1.1     grant  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
     27   1.1     grant  * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     28   1.1     grant  */
     29   1.1     grant 
     30   1.1     grant /*
     31   1.1     grant  * Datasheet is available from
     32   1.1     grant  * http://www.ti.com/sc/docs/products/analog/tas3004.html
     33   1.1     grant  */
     34   1.1     grant 
     35   1.1     grant #include <sys/param.h>
     36   1.1     grant #include <sys/audioio.h>
     37   1.1     grant #include <sys/device.h>
     38   1.1     grant #include <sys/systm.h>
     39  1.19  jmcneill #include <sys/malloc.h>
     40   1.1     grant 
     41   1.1     grant #include <dev/auconv.h>
     42   1.1     grant #include <dev/audio_if.h>
     43   1.1     grant #include <dev/mulaw.h>
     44   1.1     grant #include <dev/ofw/openfirm.h>
     45   1.1     grant #include <macppc/dev/dbdma.h>
     46   1.1     grant 
     47   1.1     grant #include <uvm/uvm_extern.h>
     48   1.6  macallan #include <dev/i2c/i2cvar.h>
     49   1.1     grant 
     50   1.1     grant #include <machine/autoconf.h>
     51   1.1     grant #include <machine/pio.h>
     52   1.1     grant 
     53   1.6  macallan #include <macppc/dev/deqvar.h>
     54   1.6  macallan 
     55   1.1     grant #ifdef SNAPPER_DEBUG
     56   1.1     grant # define DPRINTF printf
     57   1.1     grant #else
     58   1.1     grant # define DPRINTF while (0) printf
     59   1.1     grant #endif
     60   1.1     grant 
     61   1.1     grant struct snapper_softc {
     62   1.1     grant 	struct device sc_dev;
     63   1.1     grant 	int sc_flags;
     64   1.1     grant 	int sc_node;
     65   1.1     grant 
     66   1.1     grant 	void (*sc_ointr)(void *);	/* dma completion intr handler */
     67   1.1     grant 	void *sc_oarg;			/* arg for sc_ointr() */
     68   1.1     grant 	int sc_opages;			/* # of output pages */
     69   1.1     grant 
     70   1.1     grant 	void (*sc_iintr)(void *);	/* dma completion intr handler */
     71   1.1     grant 	void *sc_iarg;			/* arg for sc_iintr() */
     72  1.10  macallan 	int sc_ipages;			/* # of input pages */
     73   1.1     grant 
     74   1.1     grant 	u_int sc_record_source;		/* recording source mask */
     75   1.1     grant 	u_int sc_output_mask;		/* output source mask */
     76   1.1     grant 
     77   1.1     grant 	u_char *sc_reg;
     78   1.6  macallan 	i2c_addr_t sc_deqaddr;
     79   1.6  macallan 	i2c_tag_t sc_i2c;
     80   1.1     grant 
     81  1.14  macallan 	int sc_rate;                    /* current sampling rate */
     82  1.14  macallan 	int sc_bitspersample;
     83  1.19  jmcneill 	int sc_swvol;
     84  1.14  macallan 
     85   1.1     grant 	u_int sc_vol_l;
     86   1.1     grant 	u_int sc_vol_r;
     87   1.6  macallan 	u_int sc_treble;
     88   1.6  macallan 	u_int sc_bass;
     89   1.6  macallan 	u_int mixer[6]; /* s1_l, s2_l, an_l, s1_r, s2_r, an_r */
     90   1.1     grant 
     91   1.1     grant 	dbdma_regmap_t *sc_odma;
     92   1.1     grant 	dbdma_regmap_t *sc_idma;
     93   1.5    briggs 	unsigned char	dbdma_cmdspace[sizeof(struct dbdma_command) * 40 + 15];
     94   1.5    briggs 	struct dbdma_command *sc_odmacmd;
     95   1.5    briggs 	struct dbdma_command *sc_idmacmd;
     96   1.1     grant };
     97   1.1     grant 
     98   1.1     grant int snapper_match(struct device *, struct cfdata *, void *);
     99   1.1     grant void snapper_attach(struct device *, struct device *, void *);
    100   1.1     grant void snapper_defer(struct device *);
    101   1.1     grant int snapper_intr(void *);
    102   1.1     grant void snapper_close(void *);
    103   1.1     grant int snapper_query_encoding(void *, struct audio_encoding *);
    104   1.3      kent int snapper_set_params(void *, int, int, audio_params_t *,
    105   1.3      kent     audio_params_t *, stream_filter_list_t *, stream_filter_list_t *);
    106   1.3      kent int snapper_round_blocksize(void *, int, int, const audio_params_t *);
    107   1.1     grant int snapper_halt_output(void *);
    108   1.1     grant int snapper_halt_input(void *);
    109   1.1     grant int snapper_getdev(void *, struct audio_device *);
    110   1.1     grant int snapper_set_port(void *, mixer_ctrl_t *);
    111   1.1     grant int snapper_get_port(void *, mixer_ctrl_t *);
    112   1.1     grant int snapper_query_devinfo(void *, mixer_devinfo_t *);
    113   1.1     grant size_t snapper_round_buffersize(void *, int, size_t);
    114   1.1     grant paddr_t snapper_mappage(void *, void *, off_t, int);
    115   1.1     grant int snapper_get_props(void *);
    116   1.1     grant int snapper_trigger_output(void *, void *, void *, int, void (*)(void *),
    117   1.3      kent     void *, const audio_params_t *);
    118   1.1     grant int snapper_trigger_input(void *, void *, void *, int, void (*)(void *),
    119   1.3      kent     void *, const audio_params_t *);
    120   1.1     grant void snapper_set_volume(struct snapper_softc *, int, int);
    121  1.14  macallan int snapper_set_rate(struct snapper_softc *);
    122   1.6  macallan void snapper_set_treble(struct snapper_softc *, int);
    123   1.6  macallan void snapper_set_bass(struct snapper_softc *, int);
    124   1.6  macallan void snapper_write_mixers(struct snapper_softc *);
    125   1.1     grant 
    126   1.1     grant int tas3004_write(struct snapper_softc *, u_int, const void *);
    127   1.1     grant static int gpio_read(char *);
    128   1.1     grant static void gpio_write(char *, int);
    129   1.1     grant void snapper_mute_speaker(struct snapper_softc *, int);
    130   1.1     grant void snapper_mute_headphone(struct snapper_softc *, int);
    131   1.1     grant int snapper_cint(void *);
    132   1.1     grant int tas3004_init(struct snapper_softc *);
    133   1.1     grant void snapper_init(struct snapper_softc *, int);
    134   1.1     grant 
    135  1.19  jmcneill struct snapper_codecvar {
    136  1.19  jmcneill 	stream_filter_t	base;
    137  1.19  jmcneill };
    138  1.19  jmcneill 
    139  1.19  jmcneill static stream_filter_t *snapper_factory
    140  1.19  jmcneill 	(int (*)(stream_fetcher_t *, audio_stream_t *, int));
    141  1.19  jmcneill static void snapper_dtor(stream_filter_t *);
    142  1.19  jmcneill 
    143  1.19  jmcneill 
    144  1.19  jmcneill /* XXX We can't access the hw device softc from our audio
    145  1.19  jmcneill  *     filter -- lame...
    146  1.19  jmcneill  */
    147  1.19  jmcneill static u_int snapper_vol_l = 128, snapper_vol_r = 128;
    148  1.19  jmcneill 
    149  1.19  jmcneill /* XXX why doesn't auconv define this? */
    150  1.19  jmcneill #define DEFINE_FILTER(name)	\
    151  1.19  jmcneill static int \
    152  1.19  jmcneill name##_fetch_to(stream_fetcher_t *, audio_stream_t *, int); \
    153  1.19  jmcneill stream_filter_t * name(struct audio_softc *, \
    154  1.19  jmcneill     const audio_params_t *, const audio_params_t *); \
    155  1.19  jmcneill stream_filter_t * \
    156  1.19  jmcneill name(struct audio_softc *sc, const audio_params_t *from, \
    157  1.19  jmcneill      const audio_params_t *to) \
    158  1.19  jmcneill { \
    159  1.19  jmcneill 	return snapper_factory(name##_fetch_to); \
    160  1.19  jmcneill } \
    161  1.19  jmcneill static int \
    162  1.19  jmcneill name##_fetch_to(stream_fetcher_t *self, audio_stream_t *dst, int max_used)
    163  1.19  jmcneill 
    164  1.19  jmcneill DEFINE_FILTER(snapper_volume)
    165  1.19  jmcneill {
    166  1.19  jmcneill 	stream_filter_t *this;
    167  1.20  jmcneill 	int16_t j;
    168  1.19  jmcneill 	int16_t *wp;
    169  1.19  jmcneill 	int m, err;
    170  1.19  jmcneill 
    171  1.19  jmcneill 	this = (stream_filter_t *)self;
    172  1.19  jmcneill 	max_used = (max_used + 1) & ~1;
    173  1.19  jmcneill 	if ((err = this->prev->fetch_to(this->prev, this->src, max_used)))
    174  1.19  jmcneill 		return err;
    175  1.19  jmcneill 	m = (dst->end - dst->start) & ~1;
    176  1.19  jmcneill 	m = min(m, max_used);
    177  1.19  jmcneill 	FILTER_LOOP_PROLOGUE(this->src, 2, dst, 2, m) {
    178  1.20  jmcneill 		j = (s[0] << 8 | s[1]);
    179  1.20  jmcneill 		wp = (int16_t *)d;
    180  1.20  jmcneill 		*wp = ((j * snapper_vol_l) / 255);
    181  1.19  jmcneill 	} FILTER_LOOP_EPILOGUE(this->src, dst);
    182  1.19  jmcneill 
    183  1.19  jmcneill 	return 0;
    184  1.19  jmcneill }
    185  1.19  jmcneill 
    186  1.19  jmcneill static stream_filter_t *
    187  1.19  jmcneill snapper_factory(int (*fetch_to)(stream_fetcher_t *, audio_stream_t *, int))
    188  1.19  jmcneill {
    189  1.19  jmcneill 	struct snapper_codecvar *this;
    190  1.19  jmcneill 
    191  1.19  jmcneill 	this = malloc(sizeof(*this), M_DEVBUF, M_WAITOK | M_ZERO);
    192  1.19  jmcneill 	this->base.base.fetch_to = fetch_to;
    193  1.19  jmcneill 	this->base.dtor = snapper_dtor;
    194  1.19  jmcneill 	this->base.set_fetcher = stream_filter_set_fetcher;
    195  1.19  jmcneill 	this->base.set_inputbuffer = stream_filter_set_inputbuffer;
    196  1.19  jmcneill 	return &this->base;
    197  1.19  jmcneill }
    198  1.19  jmcneill 
    199  1.19  jmcneill static void
    200  1.19  jmcneill snapper_dtor(stream_filter_t *this)
    201  1.19  jmcneill {
    202  1.19  jmcneill 	if (this != NULL)
    203  1.19  jmcneill 		free(this, M_DEVBUF);
    204  1.19  jmcneill }
    205  1.19  jmcneill 
    206   1.1     grant struct cfattach snapper_ca = {
    207   1.1     grant 	"snapper", {}, sizeof(struct snapper_softc),
    208   1.1     grant 	snapper_match, snapper_attach
    209   1.1     grant };
    210   1.1     grant 
    211   1.2      yamt const struct audio_hw_if snapper_hw_if = {
    212   1.3      kent 	NULL,			/* open */
    213   1.1     grant 	snapper_close,
    214   1.1     grant 	NULL,
    215   1.1     grant 	snapper_query_encoding,
    216   1.1     grant 	snapper_set_params,
    217   1.1     grant 	snapper_round_blocksize,
    218   1.1     grant 	NULL,
    219   1.1     grant 	NULL,
    220   1.1     grant 	NULL,
    221   1.1     grant 	NULL,
    222   1.1     grant 	NULL,
    223   1.1     grant 	snapper_halt_output,
    224   1.1     grant 	snapper_halt_input,
    225   1.1     grant 	NULL,
    226   1.1     grant 	snapper_getdev,
    227   1.1     grant 	NULL,
    228   1.1     grant 	snapper_set_port,
    229   1.1     grant 	snapper_get_port,
    230   1.1     grant 	snapper_query_devinfo,
    231   1.1     grant 	NULL,
    232   1.1     grant 	NULL,
    233   1.1     grant 	snapper_round_buffersize,
    234   1.1     grant 	snapper_mappage,
    235   1.1     grant 	snapper_get_props,
    236   1.1     grant 	snapper_trigger_output,
    237   1.1     grant 	snapper_trigger_input,
    238   1.1     grant 	NULL
    239   1.1     grant };
    240   1.1     grant 
    241   1.1     grant struct audio_device snapper_device = {
    242   1.1     grant 	"SNAPPER",
    243   1.1     grant 	"",
    244   1.1     grant 	"snapper"
    245   1.1     grant };
    246   1.1     grant 
    247   1.6  macallan const uint8_t snapper_basstab[] = {
    248   1.6  macallan 	0x96,	/* -18dB */
    249   1.6  macallan 	0x94,	/* -17dB */
    250   1.6  macallan 	0x92,	/* -16dB */
    251   1.6  macallan 	0x90,	/* -15dB */
    252   1.6  macallan 	0x8e,	/* -14dB */
    253   1.6  macallan 	0x8c,	/* -13dB */
    254   1.6  macallan 	0x8a,	/* -12dB */
    255   1.6  macallan 	0x88,	/* -11dB */
    256   1.6  macallan 	0x86,	/* -10dB */
    257   1.6  macallan 	0x84,	/* -9dB */
    258   1.6  macallan 	0x82,	/* -8dB */
    259   1.6  macallan 	0x80,	/* -7dB */
    260   1.6  macallan 	0x7e,	/* -6dB */
    261   1.6  macallan 	0x7c,	/* -5dB */
    262   1.6  macallan 	0x7a,	/* -4dB */
    263   1.6  macallan 	0x78,	/* -3dB */
    264   1.6  macallan 	0x76,	/* -2dB */
    265   1.6  macallan 	0x74,	/* -1dB */
    266   1.6  macallan 	0x72,	/* 0dB */
    267   1.6  macallan 	0x6f,	/* 1dB */
    268   1.6  macallan 	0x6d,	/* 2dB */
    269   1.6  macallan 	0x6a,	/* 3dB */
    270   1.6  macallan 	0x67,	/* 4dB */
    271   1.6  macallan 	0x65,	/* 5dB */
    272   1.6  macallan 	0x62,	/* 6dB */
    273   1.6  macallan 	0x5f,	/* 7dB */
    274   1.6  macallan 	0x5b,	/* 8dB */
    275   1.6  macallan 	0x55,	/* 9dB */
    276   1.6  macallan 	0x4f,	/* 10dB */
    277   1.6  macallan 	0x49,	/* 11dB */
    278   1.6  macallan 	0x43,	/* 12dB */
    279   1.6  macallan 	0x3b,	/* 13dB */
    280   1.6  macallan 	0x33,	/* 14dB */
    281   1.6  macallan 	0x29,	/* 15dB */
    282   1.6  macallan 	0x1e,	/* 16dB */
    283   1.6  macallan 	0x11,	/* 17dB */
    284   1.6  macallan 	0x01,	/* 18dB */
    285   1.6  macallan };
    286   1.6  macallan 
    287  1.10  macallan const uint8_t snapper_mixer_gain[178][3] = {
    288  1.10  macallan 	{ 0x7f, 0x17, 0xaf }, /* 18.0 dB */
    289  1.10  macallan 	{ 0x77, 0xfb, 0xaa }, /* 17.5 dB */
    290  1.10  macallan 	{ 0x71, 0x45, 0x75 }, /* 17.0 dB */
    291  1.10  macallan 	{ 0x6a, 0xef, 0x5d }, /* 16.5 dB */
    292  1.10  macallan 	{ 0x64, 0xf4, 0x03 }, /* 16.0 dB */
    293  1.10  macallan 	{ 0x5f, 0x4e, 0x52 }, /* 15.5 dB */
    294  1.10  macallan 	{ 0x59, 0xf9, 0x80 }, /* 15.0 dB */
    295  1.10  macallan 	{ 0x54, 0xf1, 0x06 }, /* 14.5 dB */
    296  1.10  macallan 	{ 0x50, 0x30, 0xa1 }, /* 14.0 dB */
    297  1.10  macallan 	{ 0x4b, 0xb4, 0x46 }, /* 13.5 dB */
    298  1.10  macallan 	{ 0x47, 0x78, 0x28 }, /* 13.0 dB */
    299  1.10  macallan 	{ 0x43, 0x78, 0xb0 }, /* 12.5 dB */
    300  1.10  macallan 	{ 0x3f, 0xb2, 0x78 }, /* 12.0 dB */
    301  1.10  macallan 	{ 0x3c, 0x22, 0x4c }, /* 11.5 dB */
    302  1.10  macallan 	{ 0x38, 0xc5, 0x28 }, /* 11.0 dB */
    303  1.10  macallan 	{ 0x35, 0x98, 0x2f }, /* 10.5 dB */
    304  1.10  macallan 	{ 0x32, 0x98, 0xb0 }, /* 10.0 dB */
    305  1.10  macallan 	{ 0x2f, 0xc4, 0x20 }, /* 9.5 dB */
    306  1.10  macallan 	{ 0x2d, 0x18, 0x18 }, /* 9.0 dB */
    307  1.10  macallan 	{ 0x2a, 0x92, 0x54 }, /* 8.5 dB */
    308  1.10  macallan 	{ 0x28, 0x30, 0xaf }, /* 8.0 dB */
    309  1.10  macallan 	{ 0x25, 0xf1, 0x25 }, /* 7.5 dB */
    310  1.10  macallan 	{ 0x23, 0xd1, 0xcd }, /* 7.0 dB */
    311  1.10  macallan 	{ 0x21, 0xd0, 0xd9 }, /* 6.5 dB */
    312  1.10  macallan 	{ 0x1f, 0xec, 0x98 }, /* 6.0 dB */
    313  1.10  macallan 	{ 0x1e, 0x23, 0x6d }, /* 5.5 dB */
    314  1.10  macallan 	{ 0x1c, 0x73, 0xd5 }, /* 5.0 dB */
    315  1.10  macallan 	{ 0x1a, 0xdc, 0x61 }, /* 4.5 dB */
    316  1.10  macallan 	{ 0x19, 0x5b, 0xb8 }, /* 4.0 dB */
    317  1.10  macallan 	{ 0x17, 0xf0, 0x94 }, /* 3.5 dB */
    318  1.10  macallan 	{ 0x16, 0x99, 0xc0 }, /* 3.0 dB */
    319  1.10  macallan 	{ 0x15, 0x56, 0x1a }, /* 2.5 dB */
    320  1.10  macallan 	{ 0x14, 0x24, 0x8e }, /* 2.0 dB */
    321  1.10  macallan 	{ 0x13, 0x04, 0x1a }, /* 1.5 dB */
    322  1.10  macallan 	{ 0x11, 0xf3, 0xc9 }, /* 1.0 dB */
    323  1.10  macallan 	{ 0x10, 0xf2, 0xb4 }, /* 0.5 dB */
    324  1.10  macallan 	{ 0x10, 0x00, 0x00 }, /* 0.0 dB */
    325  1.10  macallan 	{ 0x0f, 0x1a, 0xdf }, /* -0.5 dB */
    326  1.10  macallan 	{ 0x0e, 0x42, 0x90 }, /* -1.0 dB */
    327  1.10  macallan 	{ 0x0d, 0x76, 0x5a }, /* -1.5 dB */
    328  1.10  macallan 	{ 0x0c, 0xb5, 0x91 }, /* -2.0 dB */
    329  1.10  macallan 	{ 0x0b, 0xff, 0x91 }, /* -2.5 dB */
    330  1.10  macallan 	{ 0x0b, 0x53, 0xbe }, /* -3.0 dB */
    331  1.10  macallan 	{ 0x0a, 0xb1, 0x89 }, /* -3.5 dB */
    332  1.10  macallan 	{ 0x0a, 0x18, 0x66 }, /* -4.0 dB */
    333  1.10  macallan 	{ 0x09, 0x87, 0xd5 }, /* -4.5 dB */
    334  1.10  macallan 	{ 0x08, 0xff, 0x59 }, /* -5.0 dB */
    335  1.10  macallan 	{ 0x08, 0x7e, 0x80 }, /* -5.5 dB */
    336  1.10  macallan 	{ 0x08, 0x04, 0xdc }, /* -6.0 dB */
    337  1.10  macallan 	{ 0x07, 0x92, 0x07 }, /* -6.5 dB */
    338  1.10  macallan 	{ 0x07, 0x25, 0x9d }, /* -7.0 dB */
    339  1.10  macallan 	{ 0x06, 0xbf, 0x44 }, /* -7.5 dB */
    340  1.10  macallan 	{ 0x06, 0x5e, 0xa5 }, /* -8.0 dB */
    341  1.10  macallan 	{ 0x06, 0x03, 0x6e }, /* -8.5 dB */
    342  1.10  macallan 	{ 0x05, 0xad, 0x50 }, /* -9.0 dB */
    343  1.10  macallan 	{ 0x05, 0x5c, 0x04 }, /* -9.5 dB */
    344  1.10  macallan 	{ 0x05, 0x0f, 0x44 }, /* -10.0 dB */
    345  1.10  macallan 	{ 0x04, 0xc6, 0xd0 }, /* -10.5 dB */
    346  1.10  macallan 	{ 0x04, 0x82, 0x68 }, /* -11.0 dB */
    347  1.10  macallan 	{ 0x04, 0x41, 0xd5 }, /* -11.5 dB */
    348  1.10  macallan 	{ 0x04, 0x04, 0xde }, /* -12.0 dB */
    349  1.10  macallan 	{ 0x03, 0xcb, 0x50 }, /* -12.5 dB */
    350  1.10  macallan 	{ 0x03, 0x94, 0xfa }, /* -13.0 dB */
    351  1.10  macallan 	{ 0x03, 0x61, 0xaf }, /* -13.5 dB */
    352  1.10  macallan 	{ 0x03, 0x31, 0x42 }, /* -14.0 dB */
    353  1.10  macallan 	{ 0x03, 0x03, 0x8a }, /* -14.5 dB */
    354  1.10  macallan 	{ 0x02, 0xd8, 0x62 }, /* -15.0 dB */
    355  1.10  macallan 	{ 0x02, 0xaf, 0xa3 }, /* -15.5 dB */
    356  1.10  macallan 	{ 0x02, 0x89, 0x2c }, /* -16.0 dB */
    357  1.10  macallan 	{ 0x02, 0x64, 0xdb }, /* -16.5 dB */
    358  1.10  macallan 	{ 0x02, 0x42, 0x93 }, /* -17.0 dB */
    359  1.10  macallan 	{ 0x02, 0x22, 0x35 }, /* -17.5 dB */
    360  1.10  macallan 	{ 0x02, 0x03, 0xa7 }, /* -18.0 dB */
    361  1.10  macallan 	{ 0x01, 0xe6, 0xcf }, /* -18.5 dB */
    362  1.10  macallan 	{ 0x01, 0xcb, 0x94 }, /* -19.0 dB */
    363  1.10  macallan 	{ 0x01, 0xb1, 0xde }, /* -19.5 dB */
    364  1.10  macallan 	{ 0x01, 0x99, 0x99 }, /* -20.0 dB */
    365  1.10  macallan 	{ 0x01, 0x82, 0xaf }, /* -20.5 dB */
    366  1.10  macallan 	{ 0x01, 0x6d, 0x0e }, /* -21.0 dB */
    367  1.10  macallan 	{ 0x01, 0x58, 0xa2 }, /* -21.5 dB */
    368  1.10  macallan 	{ 0x01, 0x45, 0x5b }, /* -22.0 dB */
    369  1.10  macallan 	{ 0x01, 0x33, 0x28 }, /* -22.5 dB */
    370  1.10  macallan 	{ 0x01, 0x21, 0xf9 }, /* -23.0 dB */
    371  1.10  macallan 	{ 0x01, 0x11, 0xc0 }, /* -23.5 dB */
    372  1.10  macallan 	{ 0x01, 0x02, 0x70 }, /* -24.0 dB */
    373  1.10  macallan 	{ 0x00, 0xf3, 0xfb }, /* -24.5 dB */
    374  1.10  macallan 	{ 0x00, 0xe6, 0x55 }, /* -25.0 dB */
    375  1.10  macallan 	{ 0x00, 0xd9, 0x73 }, /* -25.5 dB */
    376  1.10  macallan 	{ 0x00, 0xcd, 0x49 }, /* -26.0 dB */
    377  1.10  macallan 	{ 0x00, 0xc1, 0xcd }, /* -26.5 dB */
    378  1.10  macallan 	{ 0x00, 0xb6, 0xf6 }, /* -27.0 dB */
    379  1.10  macallan 	{ 0x00, 0xac, 0xba }, /* -27.5 dB */
    380  1.10  macallan 	{ 0x00, 0xa3, 0x10 }, /* -28.0 dB */
    381  1.10  macallan 	{ 0x00, 0x99, 0xf1 }, /* -28.5 dB */
    382  1.10  macallan 	{ 0x00, 0x91, 0x54 }, /* -29.0 dB */
    383  1.10  macallan 	{ 0x00, 0x89, 0x33 }, /* -29.5 dB */
    384  1.10  macallan 	{ 0x00, 0x81, 0x86 }, /* -30.0 dB */
    385  1.10  macallan 	{ 0x00, 0x7a, 0x48 }, /* -30.5 dB */
    386  1.10  macallan 	{ 0x00, 0x73, 0x70 }, /* -31.0 dB */
    387  1.10  macallan 	{ 0x00, 0x6c, 0xfb }, /* -31.5 dB */
    388  1.10  macallan 	{ 0x00, 0x66, 0xe3 }, /* -32.0 dB */
    389  1.10  macallan 	{ 0x00, 0x61, 0x21 }, /* -32.5 dB */
    390  1.10  macallan 	{ 0x00, 0x5b, 0xb2 }, /* -33.0 dB */
    391  1.10  macallan 	{ 0x00, 0x56, 0x91 }, /* -33.5 dB */
    392  1.10  macallan 	{ 0x00, 0x51, 0xb9 }, /* -34.0 dB */
    393  1.10  macallan 	{ 0x00, 0x4d, 0x27 }, /* -34.5 dB */
    394  1.10  macallan 	{ 0x00, 0x48, 0xd6 }, /* -35.0 dB */
    395  1.10  macallan 	{ 0x00, 0x44, 0xc3 }, /* -35.5 dB */
    396  1.10  macallan 	{ 0x00, 0x40, 0xea }, /* -36.0 dB */
    397  1.10  macallan 	{ 0x00, 0x3d, 0x49 }, /* -36.5 dB */
    398  1.10  macallan 	{ 0x00, 0x39, 0xdb }, /* -37.0 dB */
    399  1.10  macallan 	{ 0x00, 0x36, 0x9e }, /* -37.5 dB */
    400  1.10  macallan 	{ 0x00, 0x33, 0x90 }, /* -38.0 dB */
    401  1.10  macallan 	{ 0x00, 0x30, 0xae }, /* -38.5 dB */
    402  1.10  macallan 	{ 0x00, 0x2d, 0xf5 }, /* -39.0 dB */
    403  1.10  macallan 	{ 0x00, 0x2b, 0x63 }, /* -39.5 dB */
    404  1.10  macallan 	{ 0x00, 0x28, 0xf5 }, /* -40.0 dB */
    405  1.10  macallan 	{ 0x00, 0x26, 0xab }, /* -40.5 dB */
    406  1.10  macallan 	{ 0x00, 0x24, 0x81 }, /* -41.0 dB */
    407  1.10  macallan 	{ 0x00, 0x22, 0x76 }, /* -41.5 dB */
    408  1.10  macallan 	{ 0x00, 0x20, 0x89 }, /* -42.0 dB */
    409  1.10  macallan 	{ 0x00, 0x1e, 0xb7 }, /* -42.5 dB */
    410  1.10  macallan 	{ 0x00, 0x1c, 0xff }, /* -43.0 dB */
    411  1.10  macallan 	{ 0x00, 0x1b, 0x60 }, /* -43.5 dB */
    412  1.10  macallan 	{ 0x00, 0x19, 0xd8 }, /* -44.0 dB */
    413  1.10  macallan 	{ 0x00, 0x18, 0x65 }, /* -44.5 dB */
    414  1.10  macallan 	{ 0x00, 0x17, 0x08 }, /* -45.0 dB */
    415  1.10  macallan 	{ 0x00, 0x15, 0xbe }, /* -45.5 dB */
    416  1.10  macallan 	{ 0x00, 0x14, 0x87 }, /* -46.0 dB */
    417  1.10  macallan 	{ 0x00, 0x13, 0x61 }, /* -46.5 dB */
    418  1.10  macallan 	{ 0x00, 0x12, 0x4b }, /* -47.0 dB */
    419  1.10  macallan 	{ 0x00, 0x11, 0x45 }, /* -47.5 dB */
    420  1.10  macallan 	{ 0x00, 0x10, 0x4e }, /* -48.0 dB */
    421  1.10  macallan 	{ 0x00, 0x0f, 0x64 }, /* -48.5 dB */
    422  1.10  macallan 	{ 0x00, 0x0e, 0x88 }, /* -49.0 dB */
    423  1.10  macallan 	{ 0x00, 0x0d, 0xb8 }, /* -49.5 dB */
    424  1.10  macallan 	{ 0x00, 0x0c, 0xf3 }, /* -50.0 dB */
    425  1.10  macallan 	{ 0x00, 0x0c, 0x3a }, /* -50.5 dB */
    426  1.10  macallan 	{ 0x00, 0x0b, 0x8b }, /* -51.0 dB */
    427  1.10  macallan 	{ 0x00, 0x0a, 0xe5 }, /* -51.5 dB */
    428  1.10  macallan 	{ 0x00, 0x0a, 0x49 }, /* -52.0 dB */
    429  1.10  macallan 	{ 0x00, 0x09, 0xb6 }, /* -52.5 dB */
    430  1.10  macallan 	{ 0x00, 0x09, 0x2b }, /* -53.0 dB */
    431  1.10  macallan 	{ 0x00, 0x08, 0xa8 }, /* -53.5 dB */
    432  1.10  macallan 	{ 0x00, 0x08, 0x2c }, /* -54.0 dB */
    433  1.10  macallan 	{ 0x00, 0x07, 0xb7 }, /* -54.5 dB */
    434  1.10  macallan 	{ 0x00, 0x07, 0x48 }, /* -55.0 dB */
    435  1.10  macallan 	{ 0x00, 0x06, 0xe0 }, /* -55.5 dB */
    436  1.10  macallan 	{ 0x00, 0x06, 0x7d }, /* -56.0 dB */
    437  1.10  macallan 	{ 0x00, 0x06, 0x20 }, /* -56.5 dB */
    438  1.10  macallan 	{ 0x00, 0x05, 0xc9 }, /* -57.0 dB */
    439  1.10  macallan 	{ 0x00, 0x05, 0x76 }, /* -57.5 dB */
    440  1.10  macallan 	{ 0x00, 0x05, 0x28 }, /* -58.0 dB */
    441  1.10  macallan 	{ 0x00, 0x04, 0xde }, /* -58.5 dB */
    442  1.10  macallan 	{ 0x00, 0x04, 0x98 }, /* -59.0 dB */
    443  1.10  macallan 	{ 0x00, 0x04, 0x56 }, /* -59.5 dB */
    444  1.10  macallan 	{ 0x00, 0x04, 0x18 }, /* -60.0 dB */
    445  1.10  macallan 	{ 0x00, 0x03, 0xdd }, /* -60.5 dB */
    446  1.10  macallan 	{ 0x00, 0x03, 0xa6 }, /* -61.0 dB */
    447  1.10  macallan 	{ 0x00, 0x03, 0x72 }, /* -61.5 dB */
    448  1.10  macallan 	{ 0x00, 0x03, 0x40 }, /* -62.0 dB */
    449  1.10  macallan 	{ 0x00, 0x03, 0x12 }, /* -62.5 dB */
    450  1.10  macallan 	{ 0x00, 0x02, 0xe6 }, /* -63.0 dB */
    451  1.10  macallan 	{ 0x00, 0x02, 0xbc }, /* -63.5 dB */
    452  1.10  macallan 	{ 0x00, 0x02, 0x95 }, /* -64.0 dB */
    453  1.10  macallan 	{ 0x00, 0x02, 0x70 }, /* -64.5 dB */
    454  1.10  macallan 	{ 0x00, 0x02, 0x4d }, /* -65.0 dB */
    455  1.10  macallan 	{ 0x00, 0x02, 0x2c }, /* -65.5 dB */
    456  1.10  macallan 	{ 0x00, 0x02, 0x0d }, /* -66.0 dB */
    457  1.10  macallan 	{ 0x00, 0x01, 0xf0 }, /* -66.5 dB */
    458  1.10  macallan 	{ 0x00, 0x01, 0xd4 }, /* -67.0 dB */
    459  1.10  macallan 	{ 0x00, 0x01, 0xba }, /* -67.5 dB */
    460  1.10  macallan 	{ 0x00, 0x01, 0xa1 }, /* -68.0 dB */
    461  1.10  macallan 	{ 0x00, 0x01, 0x8a }, /* -68.5 dB */
    462  1.10  macallan 	{ 0x00, 0x01, 0x74 }, /* -69.0 dB */
    463  1.10  macallan 	{ 0x00, 0x01, 0x5f }, /* -69.5 dB */
    464  1.10  macallan 	{ 0x00, 0x01, 0x4b }, /* -70.0 dB */
    465  1.10  macallan 	{ 0x00, 0x00, 0x00 }  /* Mute */
    466  1.10  macallan };
    467  1.10  macallan 
    468  1.14  macallan #define SNAPPER_NFORMATS	2
    469   1.3      kent static const struct audio_format snapper_formats[SNAPPER_NFORMATS] = {
    470   1.3      kent 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_BE, 16, 16,
    471  1.17  macallan 	 2, AUFMT_STEREO, 3, {32000, 44100, 48000}},
    472  1.14  macallan 	{NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_BE, 24, 24,
    473  1.17  macallan 	 2, AUFMT_STEREO, 3, {32000, 44100, 48000}},
    474   1.3      kent };
    475   1.3      kent 
    476   1.1     grant static u_char *amp_mute;
    477   1.1     grant static u_char *headphone_mute;
    478   1.1     grant static u_char *audio_hw_reset;
    479   1.1     grant static u_char *headphone_detect;
    480   1.1     grant static int headphone_detect_active;
    481   1.1     grant 
    482   1.1     grant 
    483   1.1     grant /* I2S registers */
    484   1.1     grant #define I2S_INT		0x00
    485   1.1     grant #define I2S_FORMAT	0x10
    486   1.1     grant #define I2S_FRAMECOUNT	0x40
    487   1.1     grant #define I2S_FRAMEMATCH	0x50
    488   1.1     grant #define I2S_WORDSIZE	0x60
    489   1.1     grant 
    490  1.14  macallan /* I2S_INT register definitions */
    491  1.14  macallan #define I2S_INT_CLKSTOPPEND 0x01000000  /* clock-stop interrupt pending */
    492  1.14  macallan 
    493  1.14  macallan /* FCR(0x3c) bits */
    494  1.14  macallan #define I2S0CLKEN      0x1000
    495  1.14  macallan #define I2S0EN         0x2000
    496  1.14  macallan #define I2S1CLKEN      0x080000
    497  1.14  macallan #define I2S1EN         0x100000
    498  1.14  macallan #define FCR3C_BITMASK "\020\25I2S1EN\24I2S1CLKEN\16I2S0EN\15I2S0CLKEN"
    499  1.14  macallan 
    500   1.1     grant /* TAS3004 registers */
    501   1.1     grant #define DEQ_MCR1	0x01	/* Main control register 1 (1byte) */
    502   1.1     grant #define DEQ_DRC		0x02	/* Dynamic range compression (6bytes?) */
    503   1.1     grant #define DEQ_VOLUME	0x04	/* Volume (6bytes) */
    504   1.1     grant #define DEQ_TREBLE	0x05	/* Treble control (1byte) */
    505   1.1     grant #define DEQ_BASS	0x06	/* Bass control (1byte) */
    506   1.1     grant #define DEQ_MIXER_L	0x07	/* Mixer left gain (9bytes) */
    507   1.1     grant #define DEQ_MIXER_R	0x08	/* Mixer right gain (9bytes) */
    508   1.1     grant #define DEQ_LB0		0x0a	/* Left biquad 0 (15bytes) */
    509   1.1     grant #define DEQ_LB1		0x0b	/* Left biquad 1 (15bytes) */
    510   1.1     grant #define DEQ_LB2		0x0c	/* Left biquad 2 (15bytes) */
    511   1.1     grant #define DEQ_LB3		0x0d	/* Left biquad 3 (15bytes) */
    512   1.1     grant #define DEQ_LB4		0x0e	/* Left biquad 4 (15bytes) */
    513   1.1     grant #define DEQ_LB5		0x0f	/* Left biquad 5 (15bytes) */
    514   1.1     grant #define DEQ_LB6		0x10	/* Left biquad 6 (15bytes) */
    515   1.1     grant #define DEQ_RB0		0x13	/* Right biquad 0 (15bytes) */
    516   1.1     grant #define DEQ_RB1		0x14	/* Right biquad 1 (15bytes) */
    517   1.1     grant #define DEQ_RB2		0x15	/* Right biquad 2 (15bytes) */
    518   1.1     grant #define DEQ_RB3		0x16	/* Right biquad 3 (15bytes) */
    519   1.1     grant #define DEQ_RB4		0x17	/* Right biquad 4 (15bytes) */
    520   1.1     grant #define DEQ_RB5		0x18	/* Right biquad 5 (15bytes) */
    521   1.1     grant #define DEQ_RB6		0x19	/* Right biquad 6 (15bytes) */
    522   1.1     grant #define DEQ_LLB		0x21	/* Left loudness biquad (15bytes) */
    523   1.1     grant #define DEQ_RLB		0x22	/* Right loudness biquad (15bytes) */
    524   1.1     grant #define DEQ_LLB_GAIN	0x23	/* Left loudness biquad gain (3bytes) */
    525   1.1     grant #define DEQ_RLB_GAIN	0x24	/* Right loudness biquad gain (3bytes) */
    526   1.1     grant #define DEQ_ACR		0x40	/* Analog control register (1byte) */
    527   1.1     grant #define DEQ_MCR2	0x43	/* Main control register 2 (1byte) */
    528   1.1     grant 
    529   1.1     grant #define DEQ_MCR1_FL	0x80	/* Fast load */
    530   1.1     grant #define DEQ_MCR1_SC	0x40	/* SCLK frequency */
    531   1.1     grant #define  DEQ_MCR1_SC_32	0x00	/*  32fs */
    532   1.1     grant #define  DEQ_MCR1_SC_64	0x40	/*  64fs */
    533   1.1     grant #define DEQ_MCR1_SM	0x30	/* Output serial port mode */
    534   1.1     grant #define  DEQ_MCR1_SM_L	0x00	/*  Left justified */
    535   1.1     grant #define  DEQ_MCR1_SM_R	0x10	/*  Right justified */
    536   1.1     grant #define  DEQ_MCR1_SM_I2S 0x20	/*  I2S */
    537   1.1     grant #define DEQ_MCR1_W	0x03	/* Serial port word length */
    538   1.1     grant #define  DEQ_MCR1_W_16	0x00	/*  16 bit */
    539   1.1     grant #define  DEQ_MCR1_W_18	0x01	/*  18 bit */
    540   1.1     grant #define  DEQ_MCR1_W_20	0x02	/*  20 bit */
    541  1.14  macallan #define  DEQ_MCR1_W_24	0x03	/*  20 bit */
    542   1.1     grant 
    543   1.1     grant #define DEQ_MCR2_DL	0x80	/* Download */
    544   1.1     grant #define DEQ_MCR2_AP	0x02	/* All pass mode */
    545   1.1     grant 
    546   1.1     grant #define DEQ_ACR_ADM	0x80	/* ADC output mode */
    547   1.1     grant #define DEQ_ACR_LRB	0x40	/* Select B input */
    548   1.1     grant #define DEQ_ACR_DM	0x0c	/* De-emphasis control */
    549   1.1     grant #define  DEQ_ACR_DM_OFF	0x00	/*  off */
    550   1.1     grant #define  DEQ_ACR_DM_48	0x04	/*  fs = 48kHz */
    551   1.1     grant #define  DEQ_ACR_DM_44	0x08	/*  fs = 44.1kHz */
    552   1.1     grant #define DEQ_ACR_INP	0x02	/* Analog input select */
    553   1.1     grant #define  DEQ_ACR_INP_A	0x00	/*  A */
    554   1.1     grant #define  DEQ_ACR_INP_B	0x02	/*  B */
    555   1.1     grant #define DEQ_ACR_APD	0x01	/* Analog power down */
    556   1.1     grant 
    557   1.1     grant struct tas3004_reg {
    558   1.1     grant 	u_char MCR1[1];
    559   1.1     grant 	u_char DRC[6];
    560   1.1     grant 	u_char VOLUME[6];
    561   1.1     grant 	u_char TREBLE[1];
    562   1.1     grant 	u_char BASS[1];
    563   1.1     grant 	u_char MIXER_L[9];
    564   1.1     grant 	u_char MIXER_R[9];
    565   1.1     grant 	u_char LB0[15];
    566   1.1     grant 	u_char LB1[15];
    567   1.1     grant 	u_char LB2[15];
    568   1.1     grant 	u_char LB3[15];
    569   1.1     grant 	u_char LB4[15];
    570   1.1     grant 	u_char LB5[15];
    571   1.1     grant 	u_char LB6[15];
    572   1.1     grant 	u_char RB0[15];
    573   1.1     grant 	u_char RB1[15];
    574   1.1     grant 	u_char RB2[15];
    575   1.1     grant 	u_char RB3[15];
    576   1.1     grant 	u_char RB4[15];
    577   1.1     grant 	u_char RB5[15];
    578   1.1     grant 	u_char RB6[15];
    579   1.1     grant 	u_char LLB[15];
    580   1.1     grant 	u_char RLB[15];
    581   1.1     grant 	u_char LLB_GAIN[3];
    582   1.1     grant 	u_char RLB_GAIN[3];
    583   1.1     grant 	u_char ACR[1];
    584   1.1     grant 	u_char MCR2[1];
    585   1.1     grant };
    586   1.1     grant 
    587   1.1     grant #define GPIO_OUTSEL	0xf0	/* Output select */
    588   1.1     grant 		/*	0x00	GPIO bit0 is output
    589   1.1     grant 			0x10	media-bay power
    590   1.1     grant 			0x20	reserved
    591   1.1     grant 			0x30	MPIC */
    592   1.1     grant 
    593   1.1     grant #define GPIO_ALTOE	0x08	/* Alternate output enable */
    594   1.1     grant 		/*	0x00	Use DDR
    595   1.1     grant 			0x08	Use output select */
    596   1.1     grant 
    597   1.1     grant #define GPIO_DDR	0x04	/* Data direction */
    598   1.1     grant #define GPIO_DDR_OUTPUT	0x04	/* Output */
    599   1.1     grant #define GPIO_DDR_INPUT	0x00	/* Input */
    600   1.1     grant 
    601   1.1     grant #define GPIO_LEVEL	0x02	/* Pin level (RO) */
    602   1.1     grant 
    603   1.1     grant #define	GPIO_DATA	0x01	/* Data */
    604   1.1     grant 
    605   1.1     grant int
    606   1.4      kent snapper_match(struct device *parent, struct cfdata *match, void *aux)
    607   1.1     grant {
    608   1.4      kent 	struct confargs *ca;
    609  1.10  macallan 	int soundbus, soundchip, soundcodec;
    610   1.1     grant 	char compat[32];
    611   1.1     grant 
    612   1.4      kent 	ca = aux;
    613   1.1     grant 	if (strcmp(ca->ca_name, "i2s") != 0)
    614   1.1     grant 		return 0;
    615   1.1     grant 
    616   1.1     grant 	if ((soundbus = OF_child(ca->ca_node)) == 0 ||
    617   1.1     grant 	    (soundchip = OF_child(soundbus)) == 0)
    618   1.1     grant 		return 0;
    619   1.1     grant 
    620   1.1     grant 	bzero(compat, sizeof compat);
    621   1.1     grant 	OF_getprop(soundchip, "compatible", compat, sizeof compat);
    622   1.1     grant 
    623  1.10  macallan 	if (strcmp(compat, "snapper") == 0)
    624  1.10  macallan 		return 1;
    625  1.18  jmcneill 
    626  1.18  jmcneill 	if (strcmp(compat, "AOAKeylargo") == 0)
    627  1.18  jmcneill 		return 1;
    628  1.20  jmcneill 
    629  1.20  jmcneill 	if (strcmp(compat, "AOAK2") == 0)
    630  1.20  jmcneill 		return 1;
    631  1.10  macallan 
    632  1.10  macallan 	if (OF_getprop(soundchip,"platform-tas-codec-ref",
    633  1.10  macallan 	    &soundcodec, sizeof soundcodec) == sizeof soundcodec)
    634  1.10  macallan 		return 1;
    635   1.1     grant 
    636  1.10  macallan 	return 0;
    637   1.1     grant }
    638   1.1     grant 
    639   1.1     grant void
    640   1.4      kent snapper_attach(struct device *parent, struct device *self, void *aux)
    641   1.1     grant {
    642   1.4      kent 	struct snapper_softc *sc;
    643   1.4      kent 	struct confargs *ca;
    644   1.5    briggs 	unsigned long v;
    645   1.1     grant 	int cirq, oirq, iirq, cirq_type, oirq_type, iirq_type;
    646   1.1     grant 	int soundbus, intr[6];
    647   1.1     grant 
    648   1.4      kent 	sc = (struct snapper_softc *)self;
    649   1.4      kent 	ca = aux;
    650   1.5    briggs 
    651   1.5    briggs 	v = (((unsigned long) &sc->dbdma_cmdspace[0]) + 0xf) & ~0xf;
    652   1.5    briggs 	sc->sc_odmacmd = (struct dbdma_command *) v;
    653   1.5    briggs 	sc->sc_idmacmd = sc->sc_odmacmd + 20;
    654   1.5    briggs 
    655   1.1     grant #ifdef DIAGNOSTIC
    656   1.1     grant 	if ((vaddr_t)sc->sc_odmacmd & 0x0f) {
    657   1.1     grant 		printf(": bad dbdma alignment\n");
    658   1.1     grant 		return;
    659   1.1     grant 	}
    660   1.1     grant #endif
    661   1.1     grant 
    662   1.1     grant 	ca->ca_reg[0] += ca->ca_baseaddr;
    663   1.1     grant 	ca->ca_reg[2] += ca->ca_baseaddr;
    664   1.1     grant 	ca->ca_reg[4] += ca->ca_baseaddr;
    665   1.1     grant 
    666   1.1     grant 	sc->sc_node = ca->ca_node;
    667   1.1     grant 	sc->sc_reg = (void *)ca->ca_reg[0];
    668   1.1     grant 	sc->sc_odma = (void *)ca->ca_reg[2];
    669   1.1     grant 	sc->sc_idma = (void *)ca->ca_reg[4];
    670   1.1     grant 
    671   1.1     grant 	soundbus = OF_child(ca->ca_node);
    672   1.1     grant 	OF_getprop(soundbus, "interrupts", intr, sizeof intr);
    673   1.1     grant 	cirq = intr[0];
    674   1.1     grant 	oirq = intr[2];
    675   1.1     grant 	iirq = intr[4];
    676   1.1     grant 	cirq_type = intr[1] ? IST_LEVEL : IST_EDGE;
    677   1.1     grant 	oirq_type = intr[3] ? IST_LEVEL : IST_EDGE;
    678   1.1     grant 	iirq_type = intr[5] ? IST_LEVEL : IST_EDGE;
    679   1.1     grant 
    680   1.1     grant 	/* intr_establish(cirq, cirq_type, IPL_AUDIO, snapper_intr, sc); */
    681   1.1     grant 	intr_establish(oirq, oirq_type, IPL_AUDIO, snapper_intr, sc);
    682  1.10  macallan 	intr_establish(iirq, iirq_type, IPL_AUDIO, snapper_intr, sc);
    683   1.1     grant 
    684   1.5    briggs 	printf(": irq %d,%d,%d\n", cirq, oirq, iirq);
    685   1.1     grant 
    686   1.1     grant 	config_interrupts(self, snapper_defer);
    687   1.1     grant }
    688   1.1     grant 
    689   1.1     grant void
    690   1.1     grant snapper_defer(struct device *dev)
    691   1.1     grant {
    692   1.4      kent 	struct snapper_softc *sc;
    693   1.1     grant 	struct device *dv;
    694   1.6  macallan 	struct deq_softc *deq;
    695   1.6  macallan 
    696   1.4      kent 	sc = (struct snapper_softc *)dev;
    697   1.6  macallan 	/*
    698   1.1     grant 	for (dv = alldevs.tqh_first; dv; dv=dv->dv_list.tqe_next)
    699   1.1     grant 		if (strncmp(dv->dv_xname, "ki2c", 4) == 0 &&
    700   1.9   thorpej 		    strncmp(device_parent(dv)->dv_xname, "obio", 4) == 0)
    701   1.1     grant 			sc->sc_i2c = dv;
    702   1.6  macallan 	*/
    703   1.6  macallan 	for (dv = alldevs.tqh_first; dv; dv=dv->dv_list.tqe_next)
    704   1.6  macallan 		if (strncmp(dv->dv_xname, "deq", 3) == 0 &&
    705   1.9   thorpej 		    strncmp(device_parent(dv)->dv_xname, "ki2c", 4) == 0) {
    706   1.6  macallan 		    	deq=(struct deq_softc *)dv;
    707   1.6  macallan 			sc->sc_i2c = deq->sc_i2c;
    708   1.6  macallan 			sc->sc_deqaddr=deq->sc_address;
    709   1.6  macallan 		}
    710   1.6  macallan 
    711  1.20  jmcneill 	/* If we don't find a codec, it's not the end of the world;
    712  1.20  jmcneill 	 * we can control the volume in software in this case.
    713  1.20  jmcneill 	 */
    714  1.19  jmcneill 	if (sc->sc_i2c == NULL) {
    715  1.20  jmcneill 		aprint_verbose("%s: software codec\n",
    716  1.19  jmcneill 		    sc->sc_dev.dv_xname);
    717  1.19  jmcneill 		sc->sc_swvol = 1;
    718  1.19  jmcneill 	} else
    719  1.19  jmcneill 		sc->sc_swvol = 0;
    720   1.4      kent 
    721   1.1     grant 	audio_attach_mi(&snapper_hw_if, sc, &sc->sc_dev);
    722   1.1     grant 
    723   1.1     grant 	/* ki2c_setmode(sc->sc_i2c, I2C_STDSUBMODE); */
    724   1.1     grant 	snapper_init(sc, sc->sc_node);
    725   1.1     grant }
    726   1.1     grant 
    727   1.1     grant int
    728   1.4      kent snapper_intr(void *v)
    729   1.1     grant {
    730   1.4      kent 	struct snapper_softc *sc;
    731   1.4      kent 	struct dbdma_command *cmd;
    732   1.4      kent 	int count;
    733   1.1     grant 	int status;
    734   1.1     grant 
    735   1.4      kent 	sc = v;
    736   1.4      kent 	cmd = sc->sc_odmacmd;
    737   1.4      kent 	count = sc->sc_opages;
    738   1.1     grant 	/* Fill used buffer(s). */
    739   1.1     grant 	while (count-- > 0) {
    740   1.1     grant 		if ((dbdma_ld16(&cmd->d_command) & 0x30) == 0x30) {
    741   1.1     grant 			status = dbdma_ld16(&cmd->d_status);
    742   1.1     grant 			cmd->d_status = 0;
    743   1.1     grant 			if (status)	/* status == 0x8400 */
    744   1.1     grant 				if (sc->sc_ointr)
    745   1.1     grant 					(*sc->sc_ointr)(sc->sc_oarg);
    746   1.1     grant 		}
    747   1.1     grant 		cmd++;
    748   1.1     grant 	}
    749   1.1     grant 
    750  1.10  macallan 	cmd = sc->sc_idmacmd;
    751  1.10  macallan 	count = sc->sc_ipages;
    752  1.10  macallan 	while (count-- > 0) {
    753  1.10  macallan 		if ((dbdma_ld16(&cmd->d_command) & 0x30) == 0x30) {
    754  1.10  macallan 			status = dbdma_ld16(&cmd->d_status);
    755  1.10  macallan 			cmd->d_status = 0;
    756  1.10  macallan 			if (status)	/* status == 0x8400 */
    757  1.10  macallan 				if (sc->sc_iintr)
    758  1.10  macallan 					(*sc->sc_iintr)(sc->sc_iarg);
    759  1.10  macallan 		}
    760  1.10  macallan 		cmd++;
    761  1.10  macallan 	}
    762  1.10  macallan 
    763  1.10  macallan 
    764   1.1     grant 	return 1;
    765   1.1     grant }
    766   1.1     grant 
    767   1.1     grant /*
    768   1.1     grant  * Close function is called at splaudio().
    769   1.1     grant  */
    770   1.1     grant void
    771   1.4      kent snapper_close(void *h)
    772   1.1     grant {
    773   1.4      kent 	struct snapper_softc *sc;
    774   1.1     grant 
    775   1.4      kent 	sc = h;
    776   1.1     grant 	snapper_halt_output(sc);
    777   1.1     grant 	snapper_halt_input(sc);
    778   1.1     grant 
    779   1.1     grant 	sc->sc_ointr = 0;
    780   1.1     grant 	sc->sc_iintr = 0;
    781   1.1     grant }
    782   1.1     grant 
    783   1.1     grant int
    784   1.4      kent snapper_query_encoding(void *h, struct audio_encoding *ae)
    785   1.1     grant {
    786   1.4      kent 
    787   1.1     grant 	ae->flags = AUDIO_ENCODINGFLAG_EMULATED;
    788   1.1     grant 	switch (ae->index) {
    789   1.1     grant 	case 0:
    790   1.1     grant 		strcpy(ae->name, AudioEslinear);
    791   1.1     grant 		ae->encoding = AUDIO_ENCODING_SLINEAR;
    792   1.1     grant 		ae->precision = 16;
    793   1.1     grant 		ae->flags = 0;
    794   1.1     grant 		return 0;
    795   1.1     grant 	case 1:
    796   1.1     grant 		strcpy(ae->name, AudioEslinear_be);
    797   1.1     grant 		ae->encoding = AUDIO_ENCODING_SLINEAR_BE;
    798   1.1     grant 		ae->precision = 16;
    799   1.1     grant 		ae->flags = 0;
    800   1.1     grant 		return 0;
    801   1.1     grant 	case 2:
    802   1.1     grant 		strcpy(ae->name, AudioEslinear_le);
    803   1.1     grant 		ae->encoding = AUDIO_ENCODING_SLINEAR_LE;
    804   1.1     grant 		ae->precision = 16;
    805   1.1     grant 		return 0;
    806   1.1     grant 	case 3:
    807   1.1     grant 		strcpy(ae->name, AudioEulinear_be);
    808   1.1     grant 		ae->encoding = AUDIO_ENCODING_ULINEAR_BE;
    809   1.1     grant 		ae->precision = 16;
    810   1.1     grant 		return 0;
    811   1.1     grant 	case 4:
    812   1.1     grant 		strcpy(ae->name, AudioEulinear_le);
    813   1.1     grant 		ae->encoding = AUDIO_ENCODING_ULINEAR_LE;
    814   1.1     grant 		ae->precision = 16;
    815   1.1     grant 		return 0;
    816   1.1     grant 	case 5:
    817   1.1     grant 		strcpy(ae->name, AudioEmulaw);
    818   1.1     grant 		ae->encoding = AUDIO_ENCODING_ULAW;
    819   1.1     grant 		ae->precision = 8;
    820   1.1     grant 		return 0;
    821   1.1     grant 	case 6:
    822   1.1     grant 		strcpy(ae->name, AudioEalaw);
    823   1.1     grant 		ae->encoding = AUDIO_ENCODING_ALAW;
    824   1.1     grant 		ae->precision = 8;
    825   1.1     grant 		return 0;
    826   1.1     grant 	default:
    827  1.10  macallan 		DPRINTF("snapper_query_encoding: invalid encoding %d\n", ae->index);
    828   1.1     grant 		return EINVAL;
    829   1.1     grant 	}
    830   1.1     grant }
    831   1.1     grant 
    832   1.1     grant int
    833   1.4      kent snapper_set_params(void *h, int setmode, int usemode,
    834   1.4      kent 		   audio_params_t *play, audio_params_t *rec,
    835   1.4      kent 		   stream_filter_list_t *pfil, stream_filter_list_t *rfil)
    836   1.1     grant {
    837   1.4      kent 	struct snapper_softc *sc;
    838   1.3      kent 	audio_params_t *p;
    839   1.3      kent 	stream_filter_list_t *fil;
    840   1.3      kent 	int mode;
    841   1.1     grant 
    842   1.4      kent 	sc = h;
    843   1.1     grant 	p = NULL;
    844   1.1     grant 
    845   1.1     grant 	/*
    846   1.1     grant 	 * This device only has one clock, so make the sample rates match.
    847   1.1     grant 	 */
    848   1.1     grant 	if (play->sample_rate != rec->sample_rate &&
    849   1.1     grant 	    usemode == (AUMODE_PLAY | AUMODE_RECORD)) {
    850   1.1     grant 		if (setmode == AUMODE_PLAY) {
    851   1.1     grant 			rec->sample_rate = play->sample_rate;
    852   1.1     grant 			setmode |= AUMODE_RECORD;
    853   1.1     grant 		} else if (setmode == AUMODE_RECORD) {
    854   1.1     grant 			play->sample_rate = rec->sample_rate;
    855   1.1     grant 			setmode |= AUMODE_PLAY;
    856   1.1     grant 		} else
    857   1.1     grant 			return EINVAL;
    858   1.1     grant 	}
    859   1.1     grant 
    860   1.1     grant 	for (mode = AUMODE_RECORD; mode != -1;
    861   1.1     grant 	     mode = mode == AUMODE_RECORD ? AUMODE_PLAY : -1) {
    862   1.1     grant 		if ((setmode & mode) == 0)
    863   1.1     grant 			continue;
    864   1.1     grant 
    865   1.1     grant 		p = mode == AUMODE_PLAY ? play : rec;
    866  1.10  macallan 		if (p->sample_rate < 4000 || p->sample_rate > 50000) {
    867  1.11  macallan 			DPRINTF("snapper_set_params: invalid rate %d\n",
    868  1.11  macallan 			    p->sample_rate);
    869   1.1     grant 			return EINVAL;
    870  1.10  macallan 		}
    871   1.1     grant 
    872   1.3      kent 		fil = mode == AUMODE_PLAY ? pfil : rfil;
    873   1.3      kent 		if (auconv_set_converter(snapper_formats, SNAPPER_NFORMATS,
    874  1.16   thorpej 					 mode, p, true, fil) < 0) {
    875  1.10  macallan 			DPRINTF("snapper_set_params: auconv_set_converter failed\n");
    876   1.1     grant 			return EINVAL;
    877  1.10  macallan 		}
    878  1.20  jmcneill 		if (sc->sc_swvol)
    879  1.20  jmcneill 			fil->append(fil, snapper_volume, p);
    880   1.3      kent 		if (fil->req_size > 0)
    881   1.3      kent 			p = &fil->filters[0].param;
    882   1.1     grant 	}
    883   1.1     grant 
    884   1.3      kent 	/* Set the speed. p points HW encoding. */
    885  1.14  macallan 	if (p) {
    886  1.14  macallan 		sc->sc_rate = p->sample_rate;
    887  1.14  macallan 		sc->sc_bitspersample = p->precision;
    888  1.14  macallan 	}
    889   1.1     grant 	return 0;
    890   1.1     grant }
    891   1.1     grant 
    892   1.1     grant int
    893   1.4      kent snapper_round_blocksize(void *h, int size, int mode,
    894   1.4      kent 			const audio_params_t *param)
    895   1.1     grant {
    896   1.4      kent 
    897   1.1     grant 	if (size < NBPG)
    898   1.1     grant 		size = NBPG;
    899   1.1     grant 	return size & ~PGOFSET;
    900   1.1     grant }
    901   1.1     grant 
    902   1.1     grant int
    903   1.4      kent snapper_halt_output(void *h)
    904   1.1     grant {
    905   1.4      kent 	struct snapper_softc *sc;
    906   1.1     grant 
    907   1.4      kent 	sc = h;
    908   1.1     grant 	dbdma_stop(sc->sc_odma);
    909   1.1     grant 	dbdma_reset(sc->sc_odma);
    910   1.1     grant 	return 0;
    911   1.1     grant }
    912   1.1     grant 
    913   1.1     grant int
    914   1.4      kent snapper_halt_input(void *h)
    915   1.1     grant {
    916   1.4      kent 	struct snapper_softc *sc;
    917   1.1     grant 
    918   1.4      kent 	sc = h;
    919   1.1     grant 	dbdma_stop(sc->sc_idma);
    920   1.1     grant 	dbdma_reset(sc->sc_idma);
    921   1.1     grant 	return 0;
    922   1.1     grant }
    923   1.1     grant 
    924   1.1     grant int
    925   1.4      kent snapper_getdev(void *h, struct audio_device *retp)
    926   1.1     grant {
    927   1.4      kent 
    928   1.1     grant 	*retp = snapper_device;
    929   1.1     grant 	return 0;
    930   1.1     grant }
    931   1.1     grant 
    932   1.1     grant enum {
    933   1.1     grant 	SNAPPER_MONITOR_CLASS,
    934   1.1     grant 	SNAPPER_OUTPUT_CLASS,
    935   1.1     grant 	SNAPPER_RECORD_CLASS,
    936   1.1     grant 	SNAPPER_OUTPUT_SELECT,
    937   1.1     grant 	SNAPPER_VOL_OUTPUT,
    938   1.6  macallan 	SNAPPER_DIGI1,
    939   1.6  macallan 	SNAPPER_DIGI2,
    940   1.6  macallan 	SNAPPER_ANALOG,
    941   1.1     grant 	SNAPPER_INPUT_SELECT,
    942   1.1     grant 	SNAPPER_VOL_INPUT,
    943   1.6  macallan 	SNAPPER_TREBLE,
    944   1.6  macallan 	SNAPPER_BASS,
    945   1.1     grant 	SNAPPER_ENUM_LAST
    946   1.1     grant };
    947   1.1     grant 
    948   1.1     grant int
    949   1.4      kent snapper_set_port(void *h, mixer_ctrl_t *mc)
    950   1.1     grant {
    951   1.4      kent 	struct snapper_softc *sc;
    952   1.1     grant 	int l, r;
    953  1.10  macallan 	u_char data;
    954   1.1     grant 
    955   1.1     grant 	DPRINTF("snapper_set_port dev = %d, type = %d\n", mc->dev, mc->type);
    956   1.4      kent 	sc = h;
    957   1.1     grant 	l = mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT];
    958   1.1     grant 	r = mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT];
    959   1.1     grant 
    960   1.1     grant 	switch (mc->dev) {
    961   1.1     grant 	case SNAPPER_OUTPUT_SELECT:
    962   1.1     grant 		/* No change necessary? */
    963   1.1     grant 		if (mc->un.mask == sc->sc_output_mask)
    964   1.1     grant 			return 0;
    965   1.1     grant 
    966   1.1     grant 		snapper_mute_speaker(sc, 1);
    967   1.1     grant 		snapper_mute_headphone(sc, 1);
    968   1.1     grant 		if (mc->un.mask & 1 << 0)
    969   1.1     grant 			snapper_mute_speaker(sc, 0);
    970   1.1     grant 		if (mc->un.mask & 1 << 1)
    971   1.1     grant 			snapper_mute_headphone(sc, 0);
    972   1.1     grant 
    973   1.1     grant 		sc->sc_output_mask = mc->un.mask;
    974   1.1     grant 		return 0;
    975   1.1     grant 
    976   1.1     grant 	case SNAPPER_VOL_OUTPUT:
    977   1.1     grant 		snapper_set_volume(sc, l, r);
    978   1.1     grant 		return 0;
    979   1.1     grant 
    980   1.1     grant 	case SNAPPER_INPUT_SELECT:
    981   1.1     grant 		/* no change necessary? */
    982   1.1     grant 		if (mc->un.mask == sc->sc_record_source)
    983   1.1     grant 			return 0;
    984   1.1     grant 		switch (mc->un.mask) {
    985  1.10  macallan 		case 1 << 0: /* microphone */
    986  1.10  macallan 			/* Select right channel of B input */
    987  1.10  macallan 			data = DEQ_ACR_ADM | DEQ_ACR_LRB | DEQ_ACR_INP_B;
    988  1.10  macallan 			tas3004_write(sc, DEQ_ACR, &data);
    989  1.10  macallan 			break;
    990  1.10  macallan 		case 1 << 1: /* line in */
    991  1.10  macallan 			/* Select both channels of A input */
    992  1.10  macallan 			data = 0;
    993  1.10  macallan 			tas3004_write(sc, DEQ_ACR, &data);
    994   1.1     grant 			break;
    995   1.1     grant 		default: /* invalid argument */
    996   1.1     grant 			return EINVAL;
    997   1.1     grant 		}
    998   1.1     grant 		sc->sc_record_source = mc->un.mask;
    999   1.1     grant 		return 0;
   1000   1.1     grant 
   1001   1.1     grant 	case SNAPPER_VOL_INPUT:
   1002   1.1     grant 		/* XXX TO BE DONE */
   1003   1.1     grant 		return 0;
   1004   1.1     grant 
   1005   1.6  macallan 	case SNAPPER_BASS:
   1006   1.6  macallan 		snapper_set_bass(sc,l);
   1007   1.6  macallan 		return 0;
   1008   1.6  macallan 	case SNAPPER_TREBLE:
   1009   1.6  macallan 		snapper_set_treble(sc,l);
   1010   1.6  macallan 		return 0;
   1011   1.6  macallan 	case SNAPPER_DIGI1:
   1012   1.6  macallan 		sc->mixer[0]=l;
   1013   1.6  macallan 		sc->mixer[3]=r;
   1014   1.6  macallan 		snapper_write_mixers(sc);
   1015   1.6  macallan 		return 0;
   1016   1.6  macallan 	case SNAPPER_DIGI2:
   1017   1.6  macallan 		sc->mixer[1]=l;
   1018   1.6  macallan 		sc->mixer[4]=r;
   1019   1.6  macallan 		snapper_write_mixers(sc);
   1020   1.6  macallan 		return 0;
   1021   1.6  macallan 	case SNAPPER_ANALOG:
   1022   1.6  macallan 		sc->mixer[2]=l;
   1023   1.6  macallan 		sc->mixer[5]=r;
   1024   1.6  macallan 		snapper_write_mixers(sc);
   1025   1.6  macallan 		return 0;
   1026   1.6  macallan 	}
   1027   1.1     grant 	return ENXIO;
   1028   1.1     grant }
   1029   1.1     grant 
   1030   1.1     grant int
   1031   1.4      kent snapper_get_port(void *h, mixer_ctrl_t *mc)
   1032   1.1     grant {
   1033   1.4      kent 	struct snapper_softc *sc;
   1034   1.1     grant 
   1035   1.1     grant 	DPRINTF("snapper_get_port dev = %d, type = %d\n", mc->dev, mc->type);
   1036   1.4      kent 	sc = h;
   1037   1.1     grant 	switch (mc->dev) {
   1038   1.1     grant 	case SNAPPER_OUTPUT_SELECT:
   1039   1.1     grant 		mc->un.mask = sc->sc_output_mask;
   1040   1.1     grant 		return 0;
   1041   1.1     grant 
   1042   1.1     grant 	case SNAPPER_VOL_OUTPUT:
   1043  1.19  jmcneill 		if (sc->sc_swvol) {
   1044  1.19  jmcneill 			mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = snapper_vol_l;
   1045  1.19  jmcneill 			mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = snapper_vol_r;
   1046  1.19  jmcneill 		} else {
   1047  1.19  jmcneill 			mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = sc->sc_vol_l;
   1048  1.19  jmcneill 			mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = sc->sc_vol_r;
   1049  1.19  jmcneill 		}
   1050   1.1     grant 		return 0;
   1051   1.1     grant 
   1052   1.1     grant 	case SNAPPER_INPUT_SELECT:
   1053   1.1     grant 		mc->un.mask = sc->sc_record_source;
   1054   1.1     grant 		return 0;
   1055   1.1     grant 
   1056   1.1     grant 	case SNAPPER_VOL_INPUT:
   1057   1.1     grant 		/* XXX TO BE DONE */
   1058   1.1     grant 		mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = 0;
   1059   1.1     grant 		mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = 0;
   1060   1.1     grant 		return 0;
   1061   1.6  macallan 	case SNAPPER_TREBLE:
   1062  1.11  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] = sc->sc_treble;
   1063   1.6  macallan 		return 0;
   1064   1.6  macallan 	case SNAPPER_BASS:
   1065  1.11  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_MONO] = sc->sc_bass;
   1066   1.6  macallan 		return 0;
   1067   1.6  macallan 	case SNAPPER_DIGI1:
   1068   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = sc->mixer[0];
   1069   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = sc->mixer[3];
   1070   1.6  macallan 		return 0;
   1071   1.6  macallan 	case SNAPPER_DIGI2:
   1072   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = sc->mixer[1];
   1073   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = sc->mixer[4];
   1074   1.6  macallan 		return 0;
   1075   1.6  macallan 	case SNAPPER_ANALOG:
   1076   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = sc->mixer[2];
   1077   1.6  macallan 		mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = sc->mixer[5];
   1078   1.6  macallan 		return 0;
   1079   1.1     grant 	default:
   1080   1.1     grant 		return ENXIO;
   1081   1.1     grant 	}
   1082   1.1     grant 
   1083   1.1     grant 	return 0;
   1084   1.1     grant }
   1085   1.1     grant 
   1086   1.1     grant int
   1087   1.4      kent snapper_query_devinfo(void *h, mixer_devinfo_t *dip)
   1088   1.1     grant {
   1089   1.1     grant 	switch (dip->index) {
   1090   1.1     grant 
   1091   1.1     grant 	case SNAPPER_OUTPUT_SELECT:
   1092   1.1     grant 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1093   1.1     grant 		strcpy(dip->label.name, AudioNoutput);
   1094   1.1     grant 		dip->type = AUDIO_MIXER_SET;
   1095   1.1     grant 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1096   1.1     grant 		dip->un.s.num_mem = 2;
   1097   1.1     grant 		strcpy(dip->un.s.member[0].label.name, AudioNspeaker);
   1098   1.1     grant 		dip->un.s.member[0].mask = 1 << 0;
   1099   1.1     grant 		strcpy(dip->un.s.member[1].label.name, AudioNheadphone);
   1100   1.1     grant 		dip->un.s.member[1].mask = 1 << 1;
   1101   1.1     grant 		return 0;
   1102   1.1     grant 
   1103   1.1     grant 	case SNAPPER_VOL_OUTPUT:
   1104   1.1     grant 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1105   1.1     grant 		strcpy(dip->label.name, AudioNmaster);
   1106   1.1     grant 		dip->type = AUDIO_MIXER_VALUE;
   1107   1.1     grant 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1108   1.1     grant 		dip->un.v.num_channels = 2;
   1109   1.1     grant 		strcpy(dip->un.v.units.name, AudioNvolume);
   1110   1.1     grant 		return 0;
   1111   1.1     grant 
   1112   1.1     grant 	case SNAPPER_INPUT_SELECT:
   1113   1.1     grant 		dip->mixer_class = SNAPPER_RECORD_CLASS;
   1114   1.1     grant 		strcpy(dip->label.name, AudioNsource);
   1115   1.1     grant 		dip->type = AUDIO_MIXER_SET;
   1116   1.1     grant 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1117  1.10  macallan 		dip->un.s.num_mem = 2;
   1118  1.10  macallan 		strcpy(dip->un.s.member[0].label.name, AudioNmicrophone);
   1119   1.1     grant 		dip->un.s.member[0].mask = 1 << 0;
   1120  1.10  macallan 		strcpy(dip->un.s.member[1].label.name, AudioNline);
   1121   1.1     grant 		dip->un.s.member[1].mask = 1 << 1;
   1122   1.1     grant 		return 0;
   1123   1.1     grant 
   1124   1.1     grant 	case SNAPPER_VOL_INPUT:
   1125   1.1     grant 		dip->mixer_class = SNAPPER_RECORD_CLASS;
   1126   1.1     grant 		strcpy(dip->label.name, AudioNrecord);
   1127   1.1     grant 		dip->type = AUDIO_MIXER_VALUE;
   1128   1.1     grant 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1129   1.1     grant 		dip->un.v.num_channels = 2;
   1130   1.1     grant 		strcpy(dip->un.v.units.name, AudioNvolume);
   1131   1.1     grant 		return 0;
   1132   1.1     grant 
   1133   1.1     grant 	case SNAPPER_MONITOR_CLASS:
   1134   1.1     grant 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1135   1.1     grant 		strcpy(dip->label.name, AudioCmonitor);
   1136   1.1     grant 		dip->type = AUDIO_MIXER_CLASS;
   1137   1.1     grant 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1138   1.1     grant 		return 0;
   1139   1.1     grant 
   1140   1.1     grant 	case SNAPPER_OUTPUT_CLASS:
   1141   1.1     grant 		dip->mixer_class = SNAPPER_OUTPUT_CLASS;
   1142   1.1     grant 		strcpy(dip->label.name, AudioCoutputs);
   1143   1.1     grant 		dip->type = AUDIO_MIXER_CLASS;
   1144   1.1     grant 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1145   1.1     grant 		return 0;
   1146   1.1     grant 
   1147   1.1     grant 	case SNAPPER_RECORD_CLASS:
   1148   1.1     grant 		dip->mixer_class = SNAPPER_RECORD_CLASS;
   1149   1.1     grant 		strcpy(dip->label.name, AudioCrecord);
   1150   1.1     grant 		dip->type = AUDIO_MIXER_CLASS;
   1151   1.1     grant 		dip->next = dip->prev = AUDIO_MIXER_LAST;
   1152   1.1     grant 		return 0;
   1153   1.6  macallan 
   1154   1.6  macallan 	case SNAPPER_TREBLE:
   1155   1.6  macallan 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1156   1.6  macallan 		strcpy(dip->label.name, AudioNtreble);
   1157   1.6  macallan 		dip->type = AUDIO_MIXER_VALUE;
   1158   1.6  macallan 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1159   1.6  macallan 		dip->un.v.num_channels = 1;
   1160   1.6  macallan 		return 0;
   1161   1.6  macallan 
   1162   1.6  macallan 	case SNAPPER_BASS:
   1163   1.6  macallan 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1164   1.6  macallan 		strcpy(dip->label.name, AudioNbass);
   1165   1.6  macallan 		dip->type = AUDIO_MIXER_VALUE;
   1166   1.6  macallan 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1167   1.6  macallan 		dip->un.v.num_channels = 1;
   1168   1.6  macallan 		return 0;
   1169   1.6  macallan 
   1170   1.6  macallan 	case SNAPPER_DIGI1:
   1171   1.6  macallan 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1172   1.6  macallan 		strcpy(dip->label.name, AudioNdac);
   1173   1.6  macallan 		dip->type = AUDIO_MIXER_VALUE;
   1174   1.6  macallan 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1175   1.6  macallan 		dip->un.v.num_channels = 2;
   1176   1.6  macallan 		return 0;
   1177   1.6  macallan 	case SNAPPER_DIGI2:
   1178   1.6  macallan 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1179  1.10  macallan 		strcpy(dip->label.name, AudioNline);
   1180   1.6  macallan 		dip->type = AUDIO_MIXER_VALUE;
   1181   1.6  macallan 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1182   1.6  macallan 		dip->un.v.num_channels = 2;
   1183   1.6  macallan 		return 0;
   1184   1.6  macallan 	case SNAPPER_ANALOG:
   1185   1.6  macallan 		dip->mixer_class = SNAPPER_MONITOR_CLASS;
   1186  1.10  macallan 		strcpy(dip->label.name, AudioNmicrophone);
   1187   1.6  macallan 		dip->type = AUDIO_MIXER_VALUE;
   1188   1.6  macallan 		dip->prev = dip->next = AUDIO_MIXER_LAST;
   1189   1.6  macallan 		dip->un.v.num_channels = 2;
   1190   1.6  macallan 		return 0;
   1191   1.1     grant 	}
   1192   1.1     grant 
   1193   1.1     grant 	return ENXIO;
   1194   1.1     grant }
   1195   1.1     grant 
   1196   1.1     grant size_t
   1197   1.4      kent snapper_round_buffersize(void *h, int dir, size_t size)
   1198   1.1     grant {
   1199   1.4      kent 
   1200   1.1     grant 	if (size > 65536)
   1201   1.1     grant 		size = 65536;
   1202   1.1     grant 	return size;
   1203   1.1     grant }
   1204   1.1     grant 
   1205   1.1     grant paddr_t
   1206   1.4      kent snapper_mappage(void *h, void *mem, off_t off, int prot)
   1207   1.1     grant {
   1208   1.4      kent 
   1209   1.1     grant 	if (off < 0)
   1210   1.1     grant 		return -1;
   1211   1.1     grant 	return -1;	/* XXX */
   1212   1.1     grant }
   1213   1.1     grant 
   1214   1.1     grant int
   1215   1.4      kent snapper_get_props(void *h)
   1216   1.1     grant {
   1217   1.1     grant 	return AUDIO_PROP_FULLDUPLEX /* | AUDIO_PROP_MMAP */;
   1218   1.1     grant }
   1219   1.1     grant 
   1220   1.1     grant int
   1221   1.4      kent snapper_trigger_output(void *h, void *start, void *end, int bsize,
   1222   1.4      kent 		       void (*intr)(void *), void *arg,
   1223   1.4      kent 		       const audio_params_t *param)
   1224   1.1     grant {
   1225   1.4      kent 	struct snapper_softc *sc;
   1226   1.4      kent 	struct dbdma_command *cmd;
   1227   1.1     grant 	vaddr_t va;
   1228   1.1     grant 	int i, len, intmode;
   1229  1.14  macallan 	int res;
   1230   1.1     grant 
   1231   1.1     grant 	DPRINTF("trigger_output %p %p 0x%x\n", start, end, bsize);
   1232   1.4      kent 	sc = h;
   1233  1.14  macallan 
   1234  1.14  macallan 	if ((res = snapper_set_rate(sc)) != 0)
   1235  1.14  macallan 		return res;
   1236  1.14  macallan 
   1237   1.4      kent 	cmd = sc->sc_odmacmd;
   1238   1.1     grant 	sc->sc_ointr = intr;
   1239   1.1     grant 	sc->sc_oarg = arg;
   1240   1.1     grant 	sc->sc_opages = ((char *)end - (char *)start) / NBPG;
   1241   1.1     grant 
   1242   1.1     grant #ifdef DIAGNOSTIC
   1243   1.1     grant 	if (sc->sc_opages > 16)
   1244   1.1     grant 		panic("snapper_trigger_output");
   1245   1.1     grant #endif
   1246   1.1     grant 
   1247   1.1     grant 	va = (vaddr_t)start;
   1248   1.1     grant 	len = 0;
   1249   1.1     grant 	for (i = sc->sc_opages; i > 0; i--) {
   1250   1.1     grant 		len += NBPG;
   1251   1.1     grant 		if (len < bsize)
   1252   1.1     grant 			intmode = 0;
   1253   1.1     grant 		else {
   1254   1.1     grant 			len = 0;
   1255   1.1     grant 			intmode = DBDMA_INT_ALWAYS;
   1256   1.1     grant 		}
   1257   1.1     grant 
   1258   1.4      kent 		DBDMA_BUILD(cmd, DBDMA_CMD_OUT_MORE, 0, NBPG, vtophys(va),
   1259   1.4      kent 		    intmode, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER);
   1260   1.1     grant 		cmd++;
   1261   1.1     grant 		va += NBPG;
   1262   1.1     grant 	}
   1263   1.1     grant 
   1264   1.1     grant 	DBDMA_BUILD(cmd, DBDMA_CMD_NOP, 0, 0,
   1265   1.4      kent 	    0/*vtophys((vaddr_t)sc->sc_odmacmd)*/, 0, DBDMA_WAIT_NEVER,
   1266   1.4      kent 	    DBDMA_BRANCH_ALWAYS);
   1267   1.1     grant 
   1268   1.1     grant 	dbdma_st32(&cmd->d_cmddep, vtophys((vaddr_t)sc->sc_odmacmd));
   1269   1.1     grant 
   1270   1.1     grant 	dbdma_start(sc->sc_odma, sc->sc_odmacmd);
   1271   1.1     grant 
   1272   1.1     grant 	return 0;
   1273   1.1     grant }
   1274   1.1     grant 
   1275   1.1     grant int
   1276   1.4      kent snapper_trigger_input(void *h, void *start, void *end, int bsize,
   1277   1.4      kent 		      void (*intr)(void *), void *arg,
   1278   1.4      kent 		      const audio_params_t *param)
   1279   1.1     grant {
   1280  1.10  macallan 	struct snapper_softc *sc;
   1281  1.10  macallan 	struct dbdma_command *cmd;
   1282  1.10  macallan 	vaddr_t va;
   1283  1.10  macallan 	int i, len, intmode;
   1284  1.14  macallan 	int res;
   1285  1.10  macallan 
   1286  1.10  macallan 	DPRINTF("trigger_input %p %p 0x%x\n", start, end, bsize);
   1287  1.10  macallan 	sc = h;
   1288  1.14  macallan 
   1289  1.14  macallan 	if ((res = snapper_set_rate(sc)) != 0)
   1290  1.14  macallan 		return res;
   1291  1.14  macallan 
   1292  1.10  macallan 	cmd = sc->sc_idmacmd;
   1293  1.10  macallan 	sc->sc_iintr = intr;
   1294  1.10  macallan 	sc->sc_iarg = arg;
   1295  1.10  macallan 	sc->sc_ipages = ((char *)end - (char *)start) / NBPG;
   1296  1.10  macallan 
   1297  1.10  macallan #ifdef DIAGNOSTIC
   1298  1.10  macallan 	if (sc->sc_ipages > 16)
   1299  1.10  macallan 		panic("snapper_trigger_input");
   1300  1.10  macallan #endif
   1301  1.10  macallan 
   1302  1.10  macallan 	va = (vaddr_t)start;
   1303  1.10  macallan 	len = 0;
   1304  1.10  macallan 	for (i = sc->sc_ipages; i > 0; i--) {
   1305  1.10  macallan 		len += NBPG;
   1306  1.10  macallan 		if (len < bsize)
   1307  1.10  macallan 			intmode = 0;
   1308  1.10  macallan 		else {
   1309  1.10  macallan 			len = 0;
   1310  1.10  macallan 			intmode = DBDMA_INT_ALWAYS;
   1311  1.10  macallan 		}
   1312  1.10  macallan 
   1313  1.10  macallan 		DBDMA_BUILD(cmd, DBDMA_CMD_IN_MORE, 0, NBPG, vtophys(va),
   1314  1.10  macallan 		    intmode, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER);
   1315  1.10  macallan 		cmd++;
   1316  1.10  macallan 		va += NBPG;
   1317  1.10  macallan 	}
   1318  1.10  macallan 
   1319  1.10  macallan 	DBDMA_BUILD(cmd, DBDMA_CMD_NOP, 0, 0,
   1320  1.10  macallan 	    0/*vtophys((vaddr_t)sc->sc_odmacmd)*/, 0, DBDMA_WAIT_NEVER,
   1321  1.10  macallan 	    DBDMA_BRANCH_ALWAYS);
   1322  1.10  macallan 
   1323  1.10  macallan 	dbdma_st32(&cmd->d_cmddep, vtophys((vaddr_t)sc->sc_idmacmd));
   1324   1.4      kent 
   1325  1.10  macallan 	dbdma_start(sc->sc_idma, sc->sc_idmacmd);
   1326  1.10  macallan 
   1327  1.10  macallan 	return 0;
   1328   1.1     grant }
   1329   1.1     grant 
   1330   1.1     grant void
   1331   1.4      kent snapper_set_volume(struct snapper_softc *sc, int left, int right)
   1332   1.1     grant {
   1333  1.12  macallan 	u_char regs[6];
   1334  1.12  macallan 	int l, r;
   1335  1.19  jmcneill 
   1336  1.19  jmcneill 	if (sc->sc_swvol) {
   1337  1.19  jmcneill 		snapper_vol_l = left;
   1338  1.19  jmcneill 		snapper_vol_r = right;
   1339  1.19  jmcneill 		return;
   1340  1.19  jmcneill 	}
   1341  1.19  jmcneill 
   1342  1.12  macallan 	/*
   1343  1.12  macallan 	 * for some insane reason the gain table for master volume and the
   1344  1.12  macallan 	 * mixer channels is almost identical - just shifted by 4 bits
   1345  1.12  macallan 	 * so we use the mixer_gain table and bit-twiddle it...
   1346  1.12  macallan 	 */
   1347  1.12  macallan 	if ((left >= 0) && (left < 256) && (right >= 0) && (right < 256)) {
   1348  1.12  macallan 		l = 177 - (left * 177 / 255);
   1349  1.12  macallan 		regs[0] =  (snapper_mixer_gain[l][0] >> 4);
   1350  1.12  macallan 		regs[1] = ((snapper_mixer_gain[l][0] & 0x0f) << 4) |
   1351  1.12  macallan 			   (snapper_mixer_gain[l][1] >> 4);
   1352  1.12  macallan 		regs[2] = ((snapper_mixer_gain[l][1] & 0x0f) << 4) |
   1353  1.12  macallan 			   (snapper_mixer_gain[l][2] >> 4);
   1354  1.12  macallan 
   1355  1.12  macallan 		r = 177 - (right * 177 / 255);
   1356  1.12  macallan 		regs[3] =  (snapper_mixer_gain[r][0] >> 4);
   1357  1.12  macallan 		regs[4] = ((snapper_mixer_gain[r][0] & 0x0f) << 4) |
   1358  1.12  macallan 			   (snapper_mixer_gain[r][1] >> 4);
   1359  1.12  macallan 		regs[5] = ((snapper_mixer_gain[r][1] & 0x0f) << 4) |
   1360  1.12  macallan 			   (snapper_mixer_gain[r][2] >> 4);
   1361   1.1     grant 
   1362  1.12  macallan 		tas3004_write(sc, DEQ_VOLUME, regs);
   1363  1.12  macallan 
   1364  1.12  macallan 		sc->sc_vol_l = left;
   1365  1.12  macallan 		sc->sc_vol_r = right;
   1366   1.1     grant 
   1367  1.12  macallan 		DPRINTF("%d %02x %02x %02x : %d %02x %02x %02x\n", l, regs[0],
   1368  1.12  macallan 		    regs[1], regs[2], r, regs[3], regs[4], regs[5]);
   1369  1.12  macallan 	}
   1370   1.6  macallan }
   1371   1.6  macallan 
   1372   1.6  macallan void snapper_set_treble(struct snapper_softc *sc, int stuff)
   1373   1.6  macallan {
   1374   1.6  macallan 	uint8_t reg;
   1375  1.11  macallan 	if ((stuff >= 0) && (stuff <= 255) && (sc->sc_treble != stuff)) {
   1376  1.11  macallan 		reg = snapper_basstab[(stuff >> 3) + 2];
   1377  1.11  macallan 		sc->sc_treble = stuff;
   1378  1.11  macallan 		tas3004_write(sc, DEQ_TREBLE, &reg);
   1379   1.6  macallan 	}
   1380   1.6  macallan }
   1381   1.1     grant 
   1382   1.6  macallan void snapper_set_bass(struct snapper_softc *sc, int stuff)
   1383   1.6  macallan {
   1384   1.6  macallan 	uint8_t reg;
   1385  1.11  macallan 	if ((stuff >= 0) && (stuff <= 255) && (stuff != sc->sc_bass)) {
   1386  1.11  macallan 		reg = snapper_basstab[(stuff >> 3) + 2];
   1387  1.11  macallan 		sc->sc_bass = stuff;
   1388  1.11  macallan 		tas3004_write(sc, DEQ_BASS, &reg);
   1389   1.6  macallan 	}
   1390   1.6  macallan }
   1391   1.6  macallan 
   1392   1.6  macallan void snapper_write_mixers(struct snapper_softc *sc)
   1393   1.6  macallan {
   1394   1.6  macallan 	uint8_t regs[9] = {0, 0, 0, 0, 0, 0, 0, 0, 0};
   1395  1.10  macallan 	int i;
   1396  1.10  macallan 
   1397  1.10  macallan 	/* Left channel of SDIN1 */
   1398  1.10  macallan 	i = 177 - (sc->mixer[0] * 177 / 255);
   1399  1.10  macallan 	regs[0] = snapper_mixer_gain[i][0];
   1400  1.10  macallan 	regs[1] = snapper_mixer_gain[i][1];
   1401  1.10  macallan 	regs[2] = snapper_mixer_gain[i][2];
   1402  1.10  macallan 
   1403  1.10  macallan 	/* Left channel of SDIN2 */
   1404  1.10  macallan 	i = 177 - (sc->mixer[1] * 177 / 255);
   1405  1.10  macallan 	regs[3] = snapper_mixer_gain[i][0];
   1406  1.10  macallan 	regs[4] = snapper_mixer_gain[i][1];
   1407  1.10  macallan 	regs[5] = snapper_mixer_gain[i][2];
   1408  1.10  macallan 
   1409  1.10  macallan 	/* Left channel of analog input */
   1410  1.10  macallan 	i = 177 - (sc->mixer[2] * 177 / 255);
   1411  1.10  macallan 	regs[6] = snapper_mixer_gain[i][0];
   1412  1.10  macallan 	regs[7] = snapper_mixer_gain[i][1];
   1413  1.10  macallan 	regs[8] = snapper_mixer_gain[i][2];
   1414  1.10  macallan 
   1415   1.6  macallan 	tas3004_write(sc, DEQ_MIXER_L, regs);
   1416  1.10  macallan 
   1417  1.10  macallan 	/* Right channel of SDIN1 */
   1418  1.10  macallan 	i = 177 - (sc->mixer[3] * 177 / 255);
   1419  1.10  macallan 	regs[0] = snapper_mixer_gain[i][0];
   1420  1.10  macallan 	regs[1] = snapper_mixer_gain[i][1];
   1421  1.10  macallan 	regs[2] = snapper_mixer_gain[i][2];
   1422  1.10  macallan 
   1423  1.10  macallan 	/* Right channel of SDIN2 */
   1424  1.10  macallan 	i = 177 - (sc->mixer[4] * 177 / 255);
   1425  1.10  macallan 	regs[3] = snapper_mixer_gain[i][0];
   1426  1.10  macallan 	regs[4] = snapper_mixer_gain[i][1];
   1427  1.10  macallan 	regs[5] = snapper_mixer_gain[i][2];
   1428  1.10  macallan 
   1429  1.10  macallan 	/* Right channel of analog input */
   1430  1.10  macallan 	i = 177 - (sc->mixer[5] * 177 / 255);
   1431  1.10  macallan 	regs[6] = snapper_mixer_gain[i][0];
   1432  1.10  macallan 	regs[7] = snapper_mixer_gain[i][1];
   1433  1.10  macallan 	regs[8] = snapper_mixer_gain[i][2];
   1434  1.10  macallan 
   1435   1.6  macallan 	tas3004_write(sc, DEQ_MIXER_R, regs);
   1436   1.1     grant }
   1437   1.1     grant 
   1438   1.1     grant #define CLKSRC_49MHz	0x80000000	/* Use 49152000Hz Osc. */
   1439   1.1     grant #define CLKSRC_45MHz	0x40000000	/* Use 45158400Hz Osc. */
   1440   1.1     grant #define CLKSRC_18MHz	0x00000000	/* Use 18432000Hz Osc. */
   1441   1.1     grant #define MCLK_DIV	0x1f000000	/* MCLK = SRC / DIV */
   1442   1.1     grant #define  MCLK_DIV1	0x14000000	/*  MCLK = SRC */
   1443   1.1     grant #define  MCLK_DIV3	0x13000000	/*  MCLK = SRC / 3 */
   1444   1.1     grant #define  MCLK_DIV5	0x12000000	/*  MCLK = SRC / 5 */
   1445   1.1     grant #define SCLK_DIV	0x00f00000	/* SCLK = MCLK / DIV */
   1446   1.1     grant #define  SCLK_DIV1	0x00800000
   1447   1.1     grant #define  SCLK_DIV3	0x00900000
   1448   1.1     grant #define SCLK_MASTER	0x00080000	/* Master mode */
   1449   1.1     grant #define SCLK_SLAVE	0x00000000	/* Slave mode */
   1450   1.1     grant #define SERIAL_FORMAT	0x00070000
   1451   1.1     grant #define  SERIAL_SONY	0x00000000
   1452   1.1     grant #define  SERIAL_64x	0x00010000
   1453   1.1     grant #define  SERIAL_32x	0x00020000
   1454   1.1     grant #define  SERIAL_DAV	0x00040000
   1455   1.1     grant #define  SERIAL_SILICON	0x00050000
   1456   1.1     grant 
   1457  1.13  jmcneill /*
   1458  1.13  jmcneill  * rate = fs = LRCLK
   1459  1.13  jmcneill  * SCLK = 64*LRCLK (I2S)
   1460  1.13  jmcneill  * MCLK = 256fs (typ. -- changeable)
   1461  1.13  jmcneill  *
   1462  1.13  jmcneill  * MCLK = clksrc / mdiv
   1463  1.13  jmcneill  * SCLK = MCLK / sdiv
   1464  1.13  jmcneill  * rate = SCLK / 64    ( = LRCLK = fs)
   1465  1.13  jmcneill  */
   1466   1.1     grant 
   1467   1.1     grant int
   1468  1.14  macallan snapper_set_rate(struct snapper_softc *sc)
   1469   1.1     grant {
   1470  1.14  macallan 	u_int reg = 0, x;
   1471  1.14  macallan 	u_int rate = sc->sc_rate;
   1472  1.14  macallan 	uint32_t wordsize, ows;
   1473   1.1     grant 	int MCLK;
   1474   1.1     grant 	int clksrc, mdiv, sdiv;
   1475   1.1     grant 	int mclk_fs;
   1476  1.14  macallan 	int timo;
   1477  1.14  macallan 	uint8_t mcr1;
   1478   1.1     grant 
   1479   1.1     grant 	switch (rate) {
   1480   1.1     grant 	case 44100:
   1481   1.1     grant 		clksrc = 45158400;		/* 45MHz */
   1482   1.1     grant 		reg = CLKSRC_45MHz;
   1483   1.1     grant 		mclk_fs = 256;
   1484   1.1     grant 		break;
   1485   1.1     grant 
   1486  1.14  macallan 	case 32000:
   1487   1.1     grant 	case 48000:
   1488   1.1     grant 		clksrc = 49152000;		/* 49MHz */
   1489   1.1     grant 		reg = CLKSRC_49MHz;
   1490   1.1     grant 		mclk_fs = 256;
   1491   1.1     grant 		break;
   1492   1.1     grant 
   1493   1.1     grant 	default:
   1494  1.10  macallan 		DPRINTF("snapper_set_rate: invalid rate %u\n", rate);
   1495   1.1     grant 		return EINVAL;
   1496   1.1     grant 	}
   1497   1.1     grant 
   1498   1.1     grant 	MCLK = rate * mclk_fs;
   1499  1.13  jmcneill 	mdiv = clksrc / MCLK;			/* 4 */
   1500  1.13  jmcneill 	sdiv = mclk_fs / 64;			/* 4 */
   1501   1.1     grant 
   1502   1.1     grant 	switch (mdiv) {
   1503   1.1     grant 	case 1:
   1504   1.1     grant 		reg |= MCLK_DIV1;
   1505   1.1     grant 		break;
   1506   1.1     grant 	case 3:
   1507   1.1     grant 		reg |= MCLK_DIV3;
   1508   1.1     grant 		break;
   1509   1.1     grant 	case 5:
   1510   1.1     grant 		reg |= MCLK_DIV5;
   1511   1.1     grant 		break;
   1512   1.1     grant 	default:
   1513   1.1     grant 		reg |= ((mdiv / 2 - 1) << 24) & 0x1f000000;
   1514   1.1     grant 		break;
   1515   1.1     grant 	}
   1516   1.1     grant 
   1517   1.1     grant 	switch (sdiv) {
   1518   1.1     grant 	case 1:
   1519   1.1     grant 		reg |= SCLK_DIV1;
   1520   1.1     grant 		break;
   1521   1.1     grant 	case 3:
   1522   1.1     grant 		reg |= SCLK_DIV3;
   1523   1.1     grant 		break;
   1524   1.1     grant 	default:
   1525   1.1     grant 		reg |= ((sdiv / 2 - 1) << 20) & 0x00f00000;
   1526   1.1     grant 		break;
   1527   1.1     grant 	}
   1528   1.1     grant 
   1529   1.1     grant 	reg |= SCLK_MASTER;	/* XXX master mode */
   1530   1.1     grant 
   1531   1.1     grant 	reg |= SERIAL_64x;
   1532   1.1     grant 
   1533   1.1     grant 	/* stereo input and output */
   1534  1.14  macallan 
   1535  1.14  macallan 	DPRINTF("precision: %d\n", sc->sc_bitspersample);
   1536  1.14  macallan 	switch(sc->sc_bitspersample) {
   1537  1.14  macallan 		case 16:
   1538  1.14  macallan 			wordsize = 0x02000200;
   1539  1.14  macallan 			mcr1 = DEQ_MCR1_SC_64 | DEQ_MCR1_SM_I2S | DEQ_MCR1_W_16;
   1540  1.14  macallan 			break;
   1541  1.14  macallan 		case 24:
   1542  1.14  macallan 			wordsize = 0x03000300;
   1543  1.14  macallan 			mcr1 = DEQ_MCR1_SC_64 | DEQ_MCR1_SM_I2S | DEQ_MCR1_W_24;
   1544  1.14  macallan 			break;
   1545  1.14  macallan 		default:
   1546  1.14  macallan 			printf("%s: unsupported sample size %d\n",
   1547  1.14  macallan 			    sc->sc_dev.dv_xname, sc->sc_bitspersample);
   1548  1.14  macallan 			return EINVAL;
   1549  1.14  macallan 	}
   1550  1.14  macallan 
   1551  1.14  macallan 	ows = in32rb(sc->sc_reg + I2S_WORDSIZE);
   1552   1.1     grant 	DPRINTF("I2SSetDataWordSizeReg 0x%08x -> 0x%08x\n",
   1553  1.14  macallan 	    ows, wordsize);
   1554  1.14  macallan 	if (ows != wordsize) {
   1555  1.14  macallan 		out32rb(sc->sc_reg + I2S_WORDSIZE, wordsize);
   1556  1.14  macallan 		tas3004_write(sc, DEQ_MCR1, &mcr1);
   1557  1.14  macallan 	}
   1558  1.14  macallan 
   1559  1.14  macallan 	x = in32rb(sc->sc_reg + I2S_FORMAT);
   1560  1.14  macallan 	if (x == reg)
   1561  1.14  macallan 		return 0;        /* No change; do nothing. */
   1562   1.1     grant 
   1563   1.1     grant 	DPRINTF("I2SSetSerialFormatReg 0x%x -> 0x%x\n",
   1564   1.1     grant 	    in32rb(sc->sc_reg + I2S_FORMAT), reg);
   1565  1.14  macallan 
   1566  1.14  macallan 	/* Clear CLKSTOPPEND. */
   1567  1.14  macallan 	out32rb(sc->sc_reg + I2S_INT, I2S_INT_CLKSTOPPEND);
   1568  1.14  macallan 
   1569  1.14  macallan 	x = in32rb(0x8000003c);                /* FCR */
   1570  1.14  macallan 	x &= ~I2S0CLKEN;                /* XXX I2S0 */
   1571  1.14  macallan 	out32rb(0x8000003c, x);
   1572  1.14  macallan 
   1573  1.14  macallan 	/* Wait until clock is stopped. */
   1574  1.14  macallan 	for (timo = 1000; timo > 0; timo--) {
   1575  1.14  macallan 		if (in32rb(sc->sc_reg + I2S_INT) & I2S_INT_CLKSTOPPEND)
   1576  1.14  macallan 			goto done;
   1577  1.14  macallan 		delay(1);
   1578  1.14  macallan 	}
   1579  1.14  macallan 	DPRINTF("snapper_set_rate: timeout\n");
   1580  1.14  macallan done:
   1581   1.1     grant 	out32rb(sc->sc_reg + I2S_FORMAT, reg);
   1582   1.1     grant 
   1583  1.14  macallan 	x = in32rb(0x8000003c);
   1584  1.14  macallan 	x |= I2S0CLKEN;
   1585  1.14  macallan 	out32rb(0x8000003c, x);
   1586  1.14  macallan 
   1587   1.1     grant 	return 0;
   1588   1.1     grant }
   1589   1.1     grant 
   1590   1.1     grant const struct tas3004_reg tas3004_initdata = {
   1591  1.14  macallan 	{ DEQ_MCR1_SC_64 | DEQ_MCR1_SM_I2S | DEQ_MCR1_W_16 },	/* MCR1 */
   1592   1.1     grant 	{ 1, 0, 0, 0, 0, 0 },					/* DRC */
   1593   1.1     grant 	{ 0, 0, 0, 0, 0, 0 },					/* VOLUME */
   1594   1.1     grant 	{ 0x72 },						/* TREBLE */
   1595   1.1     grant 	{ 0x72 },						/* BASS */
   1596   1.1     grant 	{ 0x10, 0x00, 0x00, 0, 0, 0, 0, 0, 0 },			/* MIXER_L */
   1597   1.1     grant 	{ 0x10, 0x00, 0x00, 0, 0, 0, 0, 0, 0 },			/* MIXER_R */
   1598   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1599   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1600   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1601   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1602   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1603   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1604   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1605   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1606   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1607   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1608   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1609   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1610   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1611   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1612   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1613   1.1     grant 	{ 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },	/* BIQUAD */
   1614   1.1     grant 	{ 0, 0, 0 },						/* LLB_GAIN */
   1615   1.1     grant 	{ 0, 0, 0 },						/* RLB_GAIN */
   1616  1.10  macallan 	{ DEQ_ACR_ADM | DEQ_ACR_LRB | DEQ_ACR_INP_B },		/* ACR - right channel of input B is the microphone */
   1617   1.6  macallan 	{ 2 }							/* MCR2 - AllPass mode since we don't use the equalizer anyway */
   1618   1.1     grant };
   1619   1.1     grant 
   1620   1.1     grant const char tas3004_regsize[] = {
   1621   1.1     grant 	0,					/* 0x00 */
   1622   1.1     grant 	sizeof tas3004_initdata.MCR1,		/* 0x01 */
   1623   1.1     grant 	sizeof tas3004_initdata.DRC,		/* 0x02 */
   1624   1.1     grant 	0,					/* 0x03 */
   1625   1.1     grant 	sizeof tas3004_initdata.VOLUME,		/* 0x04 */
   1626   1.1     grant 	sizeof tas3004_initdata.TREBLE,		/* 0x05 */
   1627   1.1     grant 	sizeof tas3004_initdata.BASS,		/* 0x06 */
   1628   1.1     grant 	sizeof tas3004_initdata.MIXER_L,	/* 0x07 */
   1629   1.1     grant 	sizeof tas3004_initdata.MIXER_R,	/* 0x08 */
   1630   1.1     grant 	0,					/* 0x09 */
   1631   1.1     grant 	sizeof tas3004_initdata.LB0,		/* 0x0a */
   1632   1.1     grant 	sizeof tas3004_initdata.LB1,		/* 0x0b */
   1633   1.1     grant 	sizeof tas3004_initdata.LB2,		/* 0x0c */
   1634   1.1     grant 	sizeof tas3004_initdata.LB3,		/* 0x0d */
   1635   1.1     grant 	sizeof tas3004_initdata.LB4,		/* 0x0e */
   1636   1.1     grant 	sizeof tas3004_initdata.LB5,		/* 0x0f */
   1637   1.1     grant 	sizeof tas3004_initdata.LB6,		/* 0x10 */
   1638   1.1     grant 	0,					/* 0x11 */
   1639   1.1     grant 	0,					/* 0x12 */
   1640   1.1     grant 	sizeof tas3004_initdata.RB0,		/* 0x13 */
   1641   1.1     grant 	sizeof tas3004_initdata.RB1,		/* 0x14 */
   1642   1.1     grant 	sizeof tas3004_initdata.RB2,		/* 0x15 */
   1643   1.1     grant 	sizeof tas3004_initdata.RB3,		/* 0x16 */
   1644   1.1     grant 	sizeof tas3004_initdata.RB4,		/* 0x17 */
   1645   1.1     grant 	sizeof tas3004_initdata.RB5,		/* 0x18 */
   1646   1.1     grant 	sizeof tas3004_initdata.RB6,		/* 0x19 */
   1647   1.1     grant 	0,0,0,0, 0,0,
   1648   1.1     grant 	0,					/* 0x20 */
   1649   1.1     grant 	sizeof tas3004_initdata.LLB,		/* 0x21 */
   1650   1.1     grant 	sizeof tas3004_initdata.RLB,		/* 0x22 */
   1651   1.1     grant 	sizeof tas3004_initdata.LLB_GAIN,	/* 0x23 */
   1652   1.1     grant 	sizeof tas3004_initdata.RLB_GAIN,	/* 0x24 */
   1653   1.1     grant 	0,0,0,0, 0,0,0,0, 0,0,0,
   1654   1.1     grant 	0,0,0,0, 0,0,0,0, 0,0,0,0, 0,0,0,0,
   1655   1.1     grant 	sizeof tas3004_initdata.ACR,		/* 0x40 */
   1656   1.1     grant 	0,					/* 0x41 */
   1657   1.1     grant 	0,					/* 0x42 */
   1658   1.1     grant 	sizeof tas3004_initdata.MCR2		/* 0x43 */
   1659   1.1     grant };
   1660   1.1     grant 
   1661   1.1     grant int
   1662   1.4      kent tas3004_write(struct snapper_softc *sc, u_int reg, const void *data)
   1663   1.1     grant {
   1664   1.1     grant 	int size;
   1665   1.6  macallan 	static char regblock[sizeof(struct tas3004_reg)+1];
   1666  1.18  jmcneill 
   1667  1.18  jmcneill 	if (sc->sc_i2c == NULL)
   1668  1.18  jmcneill 		return 0;
   1669  1.10  macallan 
   1670   1.1     grant 	KASSERT(reg < sizeof tas3004_regsize);
   1671   1.1     grant 	size = tas3004_regsize[reg];
   1672   1.1     grant 	KASSERT(size > 0);
   1673   1.1     grant 
   1674  1.14  macallan 	DPRINTF("reg: %x, %d %d\n", reg, size, ((const char*)data)[0]);
   1675  1.14  macallan 
   1676   1.6  macallan 	regblock[0] = reg;
   1677   1.6  macallan 	memcpy(&regblock[1], data, size);
   1678   1.6  macallan 	iic_acquire_bus(sc->sc_i2c, 0);
   1679  1.10  macallan 	iic_exec(sc->sc_i2c, I2C_OP_WRITE, sc->sc_deqaddr, regblock, size + 1,
   1680   1.6  macallan 	    NULL, 0, 0);
   1681   1.6  macallan 	iic_release_bus(sc->sc_i2c, 0);
   1682   1.6  macallan 
   1683   1.1     grant 	return 0;
   1684   1.1     grant }
   1685   1.1     grant 
   1686   1.1     grant int
   1687   1.4      kent gpio_read(char *addr)
   1688   1.1     grant {
   1689   1.4      kent 
   1690   1.1     grant 	if (*addr & GPIO_DATA)
   1691   1.1     grant 		return 1;
   1692   1.1     grant 	return 0;
   1693   1.1     grant }
   1694   1.1     grant 
   1695   1.1     grant void
   1696   1.4      kent gpio_write(char *addr, int val)
   1697   1.1     grant {
   1698   1.4      kent 	u_int data;
   1699   1.1     grant 
   1700   1.4      kent 	data = GPIO_DDR_OUTPUT;
   1701   1.1     grant 	if (val)
   1702   1.1     grant 		data |= GPIO_DATA;
   1703   1.1     grant 	*addr = data;
   1704   1.8     perry 	__asm volatile ("eieio");
   1705   1.1     grant }
   1706   1.1     grant 
   1707   1.1     grant #define headphone_active 0	/* XXX OF */
   1708   1.1     grant #define amp_active 0		/* XXX OF */
   1709   1.1     grant 
   1710   1.1     grant void
   1711   1.4      kent snapper_mute_speaker(struct snapper_softc *sc, int mute)
   1712   1.1     grant {
   1713   1.1     grant 	u_int x;
   1714   1.1     grant 
   1715   1.1     grant 	DPRINTF("ampmute %d --> ", gpio_read(amp_mute));
   1716   1.1     grant 
   1717   1.1     grant 	if (mute)
   1718   1.1     grant 		x = amp_active;		/* mute */
   1719   1.1     grant 	else
   1720   1.1     grant 		x = !amp_active;	/* unmute */
   1721   1.1     grant 	if (x != gpio_read(amp_mute))
   1722   1.1     grant 		gpio_write(amp_mute, x);
   1723   1.1     grant 
   1724   1.1     grant 	DPRINTF("%d\n", gpio_read(amp_mute));
   1725   1.1     grant }
   1726   1.1     grant 
   1727   1.1     grant void
   1728   1.4      kent snapper_mute_headphone(struct snapper_softc *sc, int mute)
   1729   1.1     grant {
   1730   1.1     grant 	u_int x;
   1731   1.1     grant 
   1732   1.1     grant 	DPRINTF("headphonemute %d --> ", gpio_read(headphone_mute));
   1733   1.1     grant 
   1734   1.1     grant 	if (mute)
   1735   1.1     grant 		x = headphone_active;	/* mute */
   1736   1.1     grant 	else
   1737   1.1     grant 		x = !headphone_active;	/* unmute */
   1738   1.1     grant 	if (x != gpio_read(headphone_mute))
   1739   1.1     grant 		gpio_write(headphone_mute, x);
   1740   1.1     grant 
   1741   1.1     grant 	DPRINTF("%d\n", gpio_read(headphone_mute));
   1742   1.1     grant }
   1743   1.1     grant 
   1744   1.1     grant int
   1745   1.4      kent snapper_cint(void *v)
   1746   1.1     grant {
   1747   1.4      kent 	struct snapper_softc *sc;
   1748   1.1     grant 	u_int sense;
   1749   1.1     grant 
   1750   1.4      kent 	sc = v;
   1751   1.1     grant 	sense = *headphone_detect;
   1752   1.1     grant 	DPRINTF("headphone detect = 0x%x\n", sense);
   1753   1.1     grant 
   1754   1.1     grant 	if (((sense & 0x02) >> 1) == headphone_detect_active) {
   1755   1.1     grant 		DPRINTF("headphone is inserted\n");
   1756   1.1     grant 		snapper_mute_speaker(sc, 1);
   1757   1.1     grant 		snapper_mute_headphone(sc, 0);
   1758   1.1     grant 		sc->sc_output_mask = 1 << 1;
   1759   1.1     grant 	} else {
   1760   1.1     grant 		DPRINTF("headphone is NOT inserted\n");
   1761   1.1     grant 		snapper_mute_speaker(sc, 0);
   1762   1.1     grant 		snapper_mute_headphone(sc, 1);
   1763   1.1     grant 		sc->sc_output_mask = 1 << 0;
   1764   1.1     grant 	}
   1765   1.1     grant 
   1766   1.1     grant 	return 1;
   1767   1.1     grant }
   1768   1.1     grant 
   1769   1.1     grant #define reset_active 0	/* XXX OF */
   1770   1.1     grant 
   1771   1.1     grant #define DEQ_WRITE(sc, reg, addr) \
   1772   1.1     grant 	if (tas3004_write(sc, reg, addr)) goto err
   1773   1.1     grant 
   1774   1.1     grant int
   1775   1.4      kent tas3004_init(struct snapper_softc *sc)
   1776   1.1     grant {
   1777   1.1     grant 
   1778   1.1     grant 	/* No reset port.  Nothing to do. */
   1779   1.1     grant 	if (audio_hw_reset == NULL)
   1780   1.1     grant 		goto noreset;
   1781   1.1     grant 
   1782   1.1     grant 	/* Reset TAS3004. */
   1783   1.1     grant 	gpio_write(audio_hw_reset, !reset_active);	/* Negate RESET */
   1784   1.1     grant 	delay(100000);				/* XXX Really needed? */
   1785   1.1     grant 
   1786   1.1     grant 	gpio_write(audio_hw_reset, reset_active);	/* Assert RESET */
   1787   1.1     grant 	delay(1);
   1788   1.1     grant 
   1789   1.1     grant 	gpio_write(audio_hw_reset, !reset_active);	/* Negate RESET */
   1790   1.1     grant 	delay(10000);
   1791   1.1     grant 
   1792   1.1     grant noreset:
   1793   1.1     grant 	DEQ_WRITE(sc, DEQ_LB0, tas3004_initdata.LB0);
   1794   1.1     grant 	DEQ_WRITE(sc, DEQ_LB1, tas3004_initdata.LB1);
   1795   1.1     grant 	DEQ_WRITE(sc, DEQ_LB2, tas3004_initdata.LB2);
   1796   1.1     grant 	DEQ_WRITE(sc, DEQ_LB3, tas3004_initdata.LB3);
   1797   1.1     grant 	DEQ_WRITE(sc, DEQ_LB4, tas3004_initdata.LB4);
   1798   1.1     grant 	DEQ_WRITE(sc, DEQ_LB5, tas3004_initdata.LB5);
   1799   1.1     grant 	DEQ_WRITE(sc, DEQ_LB6, tas3004_initdata.LB6);
   1800   1.1     grant 	DEQ_WRITE(sc, DEQ_RB0, tas3004_initdata.RB0);
   1801   1.1     grant 	DEQ_WRITE(sc, DEQ_RB1, tas3004_initdata.RB1);
   1802   1.1     grant 	DEQ_WRITE(sc, DEQ_RB1, tas3004_initdata.RB1);
   1803   1.1     grant 	DEQ_WRITE(sc, DEQ_RB2, tas3004_initdata.RB2);
   1804   1.1     grant 	DEQ_WRITE(sc, DEQ_RB3, tas3004_initdata.RB3);
   1805   1.1     grant 	DEQ_WRITE(sc, DEQ_RB4, tas3004_initdata.RB4);
   1806   1.1     grant 	DEQ_WRITE(sc, DEQ_RB5, tas3004_initdata.RB5);
   1807   1.1     grant 	DEQ_WRITE(sc, DEQ_MCR1, tas3004_initdata.MCR1);
   1808   1.1     grant 	DEQ_WRITE(sc, DEQ_MCR2, tas3004_initdata.MCR2);
   1809   1.1     grant 	DEQ_WRITE(sc, DEQ_DRC, tas3004_initdata.DRC);
   1810   1.1     grant 	DEQ_WRITE(sc, DEQ_VOLUME, tas3004_initdata.VOLUME);
   1811   1.1     grant 	DEQ_WRITE(sc, DEQ_TREBLE, tas3004_initdata.TREBLE);
   1812   1.1     grant 	DEQ_WRITE(sc, DEQ_BASS, tas3004_initdata.BASS);
   1813   1.1     grant 	DEQ_WRITE(sc, DEQ_MIXER_L, tas3004_initdata.MIXER_L);
   1814   1.1     grant 	DEQ_WRITE(sc, DEQ_MIXER_R, tas3004_initdata.MIXER_R);
   1815   1.1     grant 	DEQ_WRITE(sc, DEQ_LLB, tas3004_initdata.LLB);
   1816   1.1     grant 	DEQ_WRITE(sc, DEQ_RLB, tas3004_initdata.RLB);
   1817   1.1     grant 	DEQ_WRITE(sc, DEQ_LLB_GAIN, tas3004_initdata.LLB_GAIN);
   1818   1.1     grant 	DEQ_WRITE(sc, DEQ_RLB_GAIN, tas3004_initdata.RLB_GAIN);
   1819   1.1     grant 	DEQ_WRITE(sc, DEQ_ACR, tas3004_initdata.ACR);
   1820   1.1     grant 
   1821   1.1     grant 	return 0;
   1822   1.1     grant err:
   1823   1.1     grant 	printf("tas3004_init: error\n");
   1824   1.1     grant 	return -1;
   1825   1.1     grant }
   1826   1.1     grant 
   1827   1.1     grant void
   1828   1.4      kent snapper_init(struct snapper_softc *sc, int node)
   1829   1.1     grant {
   1830   1.1     grant 	int gpio;
   1831   1.4      kent 	int headphone_detect_intr, headphone_detect_intrtype;
   1832   1.1     grant #ifdef SNAPPER_DEBUG
   1833   1.1     grant 	char fcr[32];
   1834   1.1     grant 
   1835   1.1     grant 	bitmask_snprintf(in32rb(0x8000003c), FCR3C_BITMASK, fcr, sizeof fcr);
   1836   1.1     grant 	printf("FCR(0x3c) 0x%s\n", fcr);
   1837   1.1     grant #endif
   1838   1.4      kent 	headphone_detect_intr = -1;
   1839   1.1     grant 
   1840   1.1     grant 	gpio = getnodebyname(OF_parent(node), "gpio");
   1841   1.1     grant 	DPRINTF(" /gpio 0x%x\n", gpio);
   1842   1.1     grant 	gpio = OF_child(gpio);
   1843   1.1     grant 	while (gpio) {
   1844   1.1     grant 		char name[64], audio_gpio[64];
   1845   1.1     grant 		int intr[2];
   1846   1.1     grant 		char *addr;
   1847   1.1     grant 
   1848   1.1     grant 		bzero(name, sizeof name);
   1849   1.1     grant 		bzero(audio_gpio, sizeof audio_gpio);
   1850   1.1     grant 		addr = 0;
   1851   1.1     grant 		OF_getprop(gpio, "name", name, sizeof name);
   1852   1.1     grant 		OF_getprop(gpio, "audio-gpio", audio_gpio, sizeof audio_gpio);
   1853   1.1     grant 		OF_getprop(gpio, "AAPL,address", &addr, sizeof addr);
   1854  1.10  macallan 		DPRINTF(" 0x%x %s %s\n", gpio, name, audio_gpio);
   1855   1.1     grant 
   1856   1.1     grant 		/* gpio5 */
   1857   1.1     grant 		if (strcmp(audio_gpio, "headphone-mute") == 0)
   1858   1.1     grant 			headphone_mute = addr;
   1859   1.1     grant 		/* gpio6 */
   1860   1.1     grant 		if (strcmp(audio_gpio, "amp-mute") == 0)
   1861   1.1     grant 			amp_mute = addr;
   1862   1.1     grant 		/* extint-gpio15 */
   1863   1.1     grant 		if (strcmp(audio_gpio, "headphone-detect") == 0) {
   1864   1.1     grant 			headphone_detect = addr;
   1865   1.1     grant 			OF_getprop(gpio, "audio-gpio-active-state",
   1866   1.1     grant 			    &headphone_detect_active, 4);
   1867   1.1     grant 			OF_getprop(gpio, "interrupts", intr, 8);
   1868   1.1     grant 			headphone_detect_intr = intr[0];
   1869   1.1     grant 			headphone_detect_intrtype = intr[1];
   1870   1.1     grant 		}
   1871   1.1     grant 		/* gpio11 (keywest-11) */
   1872   1.1     grant 		if (strcmp(audio_gpio, "audio-hw-reset") == 0)
   1873   1.1     grant 			audio_hw_reset = addr;
   1874   1.1     grant 		gpio = OF_peer(gpio);
   1875   1.1     grant 	}
   1876   1.1     grant 	DPRINTF(" headphone-mute %p\n", headphone_mute);
   1877   1.1     grant 	DPRINTF(" amp-mute %p\n", amp_mute);
   1878   1.1     grant 	DPRINTF(" headphone-detect %p\n", headphone_detect);
   1879   1.1     grant 	DPRINTF(" headphone-detect active %x\n", headphone_detect_active);
   1880   1.1     grant 	DPRINTF(" headphone-detect intr %x\n", headphone_detect_intr);
   1881   1.1     grant 	DPRINTF(" audio-hw-reset %p\n", audio_hw_reset);
   1882   1.1     grant 
   1883   1.1     grant 	if (headphone_detect_intr != -1)
   1884   1.1     grant 		intr_establish(headphone_detect_intr, IST_EDGE, IPL_AUDIO,
   1885   1.1     grant 		    snapper_cint, sc);
   1886   1.1     grant 
   1887  1.14  macallan 	sc->sc_rate = 44100;	/* default rate */
   1888  1.14  macallan 	sc->sc_bitspersample = 16;
   1889   1.1     grant 
   1890   1.1     grant 	/* Enable headphone interrupt? */
   1891   1.1     grant 	*headphone_detect |= 0x80;
   1892   1.8     perry 	__asm volatile ("eieio");
   1893   1.1     grant 
   1894   1.1     grant 	/* i2c_set_port(port); */
   1895   1.1     grant 
   1896   1.1     grant 	if (tas3004_init(sc))
   1897   1.1     grant 		return;
   1898   1.1     grant 
   1899   1.1     grant 	/* Update headphone status. */
   1900   1.1     grant 	snapper_cint(sc);
   1901   1.1     grant 
   1902  1.14  macallan 	snapper_set_volume(sc, 128, 128);
   1903   1.6  macallan 
   1904   1.6  macallan 	sc->sc_bass = 128;
   1905   1.6  macallan 	sc->sc_treble = 128;
   1906  1.10  macallan 
   1907  1.10  macallan 	/* Record source defaults to microphone.  This reflects the
   1908  1.10  macallan 	 * default value for the ACR (see tas3004_initdata).
   1909  1.10  macallan 	 */
   1910  1.10  macallan 	sc->sc_record_source = 1 << 0;
   1911   1.6  macallan 
   1912   1.6  macallan 	/* We mute the analog input for now */
   1913   1.6  macallan 	sc->mixer[0] = 80;
   1914   1.6  macallan 	sc->mixer[1] = 80;
   1915   1.6  macallan 	sc->mixer[2] = 0;
   1916   1.6  macallan 	sc->mixer[3] = 80;
   1917   1.6  macallan 	sc->mixer[4] = 80;
   1918   1.6  macallan 	sc->mixer[5] = 0;
   1919   1.6  macallan 	snapper_write_mixers(sc);
   1920   1.1     grant }
   1921