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aucc.c revision 1.37
      1  1.37      kent /*	$NetBSD: aucc.c,v 1.37 2005/01/15 15:19:51 kent Exp $ */
      2  1.20  augustss 
      3   1.1        is /*
      4  1.24        is  * Copyright (c) 1999 Bernardo Innocenti
      5  1.24        is  * All rights reserved.
      6  1.24        is  *
      7   1.1        is  * Copyright (c) 1997 Stephan Thesing
      8   1.1        is  * All rights reserved.
      9   1.1        is  *
     10   1.1        is  * Redistribution and use in source and binary forms, with or without
     11   1.1        is  * modification, are permitted provided that the following conditions
     12   1.1        is  * are met:
     13   1.1        is  * 1. Redistributions of source code must retain the above copyright
     14   1.1        is  *    notice, this list of conditions and the following disclaimer.
     15   1.1        is  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1        is  *    notice, this list of conditions and the following disclaimer in the
     17   1.1        is  *    documentation and/or other materials provided with the distribution.
     18   1.1        is  * 3. All advertising materials mentioning features or use of this software
     19   1.1        is  *    must display the following acknowledgement:
     20   1.1        is  *      This product includes software developed by Stephan Thesing.
     21   1.1        is  * 4. The name of the author may not be used to endorse or promote products
     22   1.1        is  *    derived from this software without specific prior written permission
     23   1.1        is  *
     24   1.1        is  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     25   1.1        is  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     26   1.1        is  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     27   1.1        is  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     28   1.1        is  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     29   1.1        is  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     30   1.1        is  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     31   1.1        is  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     32   1.1        is  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     33   1.1        is  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     34   1.1        is  */
     35   1.1        is 
     36  1.24        is /* TODO:
     37  1.24        is  *
     38  1.33       wiz  * - mu-law -> 14bit conversion
     39  1.24        is  * - channel allocation is wrong for 14bit mono
     40  1.24        is  * - convert the... err... conversion routines to 68k asm for best performance
     41  1.29   aymeric  * 	XXX: NO. aucc audio is limited by chipmem speed, anyway. You dont
     42  1.24        is  *	want to make life difficult for amigappc work.
     43  1.24        is  *		-is
     44  1.24        is  *
     45  1.33       wiz  * - rely on auconv.c routines for mu-law/A-law conversions
     46  1.24        is  * - perhaps use a calibration table for better 14bit output
     47  1.24        is  * - set 31KHz AGA video mode to allow 44.1KHz even if grfcc is missing
     48  1.24        is  *	in the kernel
     49  1.24        is  * - 14bit output requires maximum volume
     50  1.24        is  */
     51  1.24        is 
     52   1.1        is #include "aucc.h"
     53   1.1        is #if NAUCC > 0
     54  1.30   aymeric 
     55  1.30   aymeric #include <sys/cdefs.h>
     56  1.37      kent __KERNEL_RCSID(0, "$NetBSD: aucc.c,v 1.37 2005/01/15 15:19:51 kent Exp $");
     57   1.5        is 
     58   1.1        is #include <sys/param.h>
     59   1.1        is #include <sys/systm.h>
     60   1.1        is #include <sys/errno.h>
     61   1.1        is #include <sys/ioctl.h>
     62   1.1        is #include <sys/device.h>
     63   1.1        is #include <sys/proc.h>
     64   1.1        is #include <machine/cpu.h>
     65   1.1        is 
     66   1.1        is #include <sys/audioio.h>
     67   1.1        is #include <dev/audio_if.h>
     68   1.1        is #include <amiga/amiga/cc.h>
     69   1.1        is #include <amiga/amiga/custom.h>
     70   1.1        is #include <amiga/amiga/device.h>
     71   1.1        is #include <amiga/dev/auccvar.h>
     72  1.27        is 
     73  1.27        is #include "opt_lev6_defer.h"
     74   1.1        is 
     75   1.7        is 
     76   1.7        is #ifdef LEV6_DEFER
     77   1.7        is #define AUCC_MAXINT 3
     78   1.7        is #define AUCC_ALLINTF (INTF_AUD0|INTF_AUD1|INTF_AUD2)
     79   1.7        is #else
     80   1.7        is #define AUCC_MAXINT 4
     81   1.7        is #define AUCC_ALLINTF (INTF_AUD0|INTF_AUD1|INTF_AUD2|INTF_AUD3)
     82   1.7        is #endif
     83   1.7        is /* this unconditionally; we may use AUD3 as slave channel with LEV6_DEFER */
     84   1.7        is #define AUCC_ALLDMAF (DMAF_AUD0|DMAF_AUD1|DMAF_AUD2|DMAF_AUD3)
     85   1.7        is 
     86   1.1        is #ifdef AUDIO_DEBUG
     87  1.29   aymeric /*extern printf(const char *,...);*/
     88   1.1        is int     auccdebug = 1;
     89   1.1        is #define DPRINTF(x)      if (auccdebug) printf x
     90   1.1        is #else
     91   1.1        is #define DPRINTF(x)
     92   1.1        is #endif
     93   1.1        is 
     94   1.1        is #ifdef splaudio
     95   1.1        is #undef splaudio
     96   1.1        is #endif
     97   1.1        is 
     98   1.1        is #define splaudio() spl4();
     99   1.1        is 
    100   1.1        is /* clock frequency.. */
    101  1.29   aymeric extern int eclockfreq;
    102   1.1        is 
    103   1.1        is 
    104   1.1        is /* hw audio ch */
    105   1.1        is extern struct audio_channel channel[4];
    106   1.1        is 
    107   1.1        is 
    108   1.1        is /*
    109   1.1        is  * Software state.
    110   1.1        is  */
    111   1.1        is struct aucc_softc {
    112   1.1        is 	struct	device sc_dev;		/* base device */
    113   1.1        is 
    114   1.1        is 	int	sc_open;		/* single use device */
    115   1.1        is 	aucc_data_t sc_channel[4];	/* per channel freq, ... */
    116   1.1        is 	u_int	sc_encoding;		/* encoding AUDIO_ENCODING_.*/
    117   1.1        is 	int	sc_channels;		/* # of channels used */
    118  1.24        is 	int	sc_precision;		/* 8 or 16 bits */
    119  1.24        is 	int	sc_14bit;		/* 14bit output enabled */
    120   1.1        is 
    121   1.1        is 	int	sc_intrcnt;		/* interrupt count */
    122  1.37      kent 	int	sc_channelmask;		/* which channels are used ? */
    123  1.29   aymeric 	void (*sc_decodefunc)(u_char **, u_char *, int);
    124  1.24        is 				/* pointer to format conversion routine */
    125   1.1        is };
    126   1.1        is 
    127   1.1        is /* interrupt interfaces */
    128  1.29   aymeric void aucc_inthdl(int);
    129   1.1        is 
    130   1.1        is /* forward declarations */
    131  1.29   aymeric static int init_aucc(struct aucc_softc *);
    132  1.29   aymeric static u_int freqtoper(u_int);
    133  1.29   aymeric static u_int pertofreq(u_int);
    134   1.1        is 
    135   1.1        is /* autoconfiguration driver */
    136  1.29   aymeric void	auccattach(struct device *, struct device *, void *);
    137  1.29   aymeric int	auccmatch(struct device *, struct cfdata *, void *);
    138   1.1        is 
    139  1.32   thorpej CFATTACH_DECL(aucc, sizeof(struct aucc_softc),
    140  1.32   thorpej     auccmatch, auccattach, NULL, NULL);
    141   1.1        is 
    142   1.1        is struct audio_device aucc_device = {
    143   1.1        is 	"Amiga-audio",
    144  1.24        is 	"2.0",
    145   1.1        is 	"aucc"
    146   1.1        is };
    147   1.1        is 
    148   1.1        is 
    149  1.37      kent struct aucc_softc *aucc = NULL;
    150   1.1        is 
    151   1.1        is 
    152  1.33       wiz unsigned char mulaw_to_lin[] = {
    153   1.2        is 	0x82, 0x86, 0x8a, 0x8e, 0x92, 0x96, 0x9a, 0x9e,
    154   1.2        is 	0xa2, 0xa6, 0xaa, 0xae, 0xb2, 0xb6, 0xba, 0xbe,
    155   1.2        is 	0xc1, 0xc3, 0xc5, 0xc7, 0xc9, 0xcb, 0xcd, 0xcf,
    156   1.2        is 	0xd1, 0xd3, 0xd5, 0xd7, 0xd9, 0xdb, 0xdd, 0xdf,
    157   1.2        is 	0xe1, 0xe2, 0xe3, 0xe4, 0xe5, 0xe6, 0xe7, 0xe8,
    158   1.2        is 	0xe9, 0xea, 0xeb, 0xec, 0xed, 0xee, 0xef, 0xf0,
    159   1.2        is 	0xf0, 0xf1, 0xf1, 0xf2, 0xf2, 0xf3, 0xf3, 0xf4,
    160   1.2        is 	0xf4, 0xf5, 0xf5, 0xf6, 0xf6, 0xf7, 0xf7, 0xf8,
    161   1.2        is 	0xf8, 0xf8, 0xf9, 0xf9, 0xf9, 0xf9, 0xfa, 0xfa,
    162   1.2        is 	0xfa, 0xfa, 0xfb, 0xfb, 0xfb, 0xfb, 0xfc, 0xfc,
    163   1.2        is 	0xfc, 0xfc, 0xfc, 0xfc, 0xfd, 0xfd, 0xfd, 0xfd,
    164   1.2        is 	0xfd, 0xfd, 0xfd, 0xfd, 0xfe, 0xfe, 0xfe, 0xfe,
    165   1.2        is 	0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe,
    166   1.2        is 	0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    167   1.2        is 	0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    168   1.2        is 	0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00,
    169   1.2        is 	0x7d, 0x79, 0x75, 0x71, 0x6d, 0x69, 0x65, 0x61,
    170   1.2        is 	0x5d, 0x59, 0x55, 0x51, 0x4d, 0x49, 0x45, 0x41,
    171   1.2        is 	0x3e, 0x3c, 0x3a, 0x38, 0x36, 0x34, 0x32, 0x30,
    172   1.2        is 	0x2e, 0x2c, 0x2a, 0x28, 0x26, 0x24, 0x22, 0x20,
    173   1.2        is 	0x1e, 0x1d, 0x1c, 0x1b, 0x1a, 0x19, 0x18, 0x17,
    174   1.2        is 	0x16, 0x15, 0x14, 0x13, 0x12, 0x11, 0x10, 0x0f,
    175   1.2        is 	0x0f, 0x0e, 0x0e, 0x0d, 0x0d, 0x0c, 0x0c, 0x0b,
    176   1.2        is 	0x0b, 0x0a, 0x0a, 0x09, 0x09, 0x08, 0x08, 0x07,
    177   1.2        is 	0x07, 0x07, 0x06, 0x06, 0x06, 0x06, 0x05, 0x05,
    178   1.2        is 	0x05, 0x05, 0x04, 0x04, 0x04, 0x04, 0x03, 0x03,
    179   1.2        is 	0x03, 0x03, 0x03, 0x03, 0x02, 0x02, 0x02, 0x02,
    180   1.2        is 	0x02, 0x02, 0x02, 0x02, 0x01, 0x01, 0x01, 0x01,
    181   1.2        is 	0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01,
    182   1.2        is 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
    183   1.2        is 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
    184   1.2        is 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
    185   1.1        is };
    186   1.1        is 
    187   1.1        is /*
    188   1.1        is  * Define our interface to the higher level audio driver.
    189   1.1        is  */
    190  1.29   aymeric int	aucc_open(void *, int);
    191  1.29   aymeric void	aucc_close(void *);
    192  1.36      kent int	aucc_set_out_sr(void *, u_int);
    193  1.29   aymeric int	aucc_query_encoding(void *, struct audio_encoding *);
    194  1.36      kent int	aucc_round_blocksize(void *, int, int, const audio_params_t *);
    195  1.29   aymeric int	aucc_commit_settings(void *);
    196  1.29   aymeric int	aucc_start_output(void *, void *, int, void (*)(void *), void *);
    197  1.29   aymeric int	aucc_start_input(void *, void *, int, void (*)(void *), void *);
    198  1.29   aymeric int	aucc_halt_output(void *);
    199  1.29   aymeric int	aucc_halt_input(void *);
    200  1.29   aymeric int	aucc_getdev(void *, struct audio_device *);
    201  1.29   aymeric int	aucc_set_port(void *, mixer_ctrl_t *);
    202  1.29   aymeric int	aucc_get_port(void *, mixer_ctrl_t *);
    203  1.29   aymeric int	aucc_query_devinfo(void *, mixer_devinfo_t *);
    204  1.29   aymeric void	aucc_encode(int, int, int, int, u_char *, u_short **);
    205  1.36      kent int	aucc_set_params(void *, int, int, audio_params_t *, audio_params_t *,
    206  1.36      kent 			stream_filter_list_t *, stream_filter_list_t *);
    207  1.29   aymeric int	aucc_get_props(void *);
    208  1.29   aymeric 
    209  1.29   aymeric 
    210  1.29   aymeric static void aucc_decode_slinear8_1ch(u_char **, u_char *, int);
    211  1.29   aymeric static void aucc_decode_slinear8_2ch(u_char **, u_char *, int);
    212  1.29   aymeric static void aucc_decode_slinear8_3ch(u_char **, u_char *, int);
    213  1.29   aymeric static void aucc_decode_slinear8_4ch(u_char **, u_char *, int);
    214  1.29   aymeric 
    215  1.29   aymeric static void aucc_decode_ulinear8_1ch(u_char **, u_char *, int);
    216  1.29   aymeric static void aucc_decode_ulinear8_2ch(u_char **, u_char *, int);
    217  1.29   aymeric static void aucc_decode_ulinear8_3ch(u_char **, u_char *, int);
    218  1.29   aymeric static void aucc_decode_ulinear8_4ch(u_char **, u_char *, int);
    219  1.29   aymeric 
    220  1.33       wiz static void aucc_decode_mulaw_1ch(u_char **, u_char *, int);
    221  1.33       wiz static void aucc_decode_mulaw_2ch(u_char **, u_char *, int);
    222  1.33       wiz static void aucc_decode_mulaw_3ch(u_char **, u_char *, int);
    223  1.33       wiz static void aucc_decode_mulaw_4ch(u_char **, u_char *, int);
    224  1.29   aymeric 
    225  1.29   aymeric static void aucc_decode_slinear16_1ch(u_char **, u_char *, int);
    226  1.29   aymeric static void aucc_decode_slinear16_2ch(u_char **, u_char *, int);
    227  1.29   aymeric static void aucc_decode_slinear16_3ch(u_char **, u_char *, int);
    228  1.29   aymeric static void aucc_decode_slinear16_4ch(u_char **, u_char *, int);
    229  1.29   aymeric 
    230  1.29   aymeric static void aucc_decode_slinear16sw_1ch(u_char **, u_char *, int);
    231  1.29   aymeric static void aucc_decode_slinear16sw_2ch(u_char **, u_char *, int);
    232  1.29   aymeric static void aucc_decode_slinear16sw_3ch(u_char **, u_char *, int);
    233  1.29   aymeric static void aucc_decode_slinear16sw_4ch(u_char **, u_char *, int);
    234  1.24        is 
    235  1.24        is 
    236  1.24        is 
    237  1.35      yamt const struct audio_hw_if sa_hw_if = {
    238   1.1        is 	aucc_open,
    239   1.1        is 	aucc_close,
    240   1.1        is 	NULL,
    241   1.1        is 	aucc_query_encoding,
    242   1.1        is 	aucc_set_params,
    243   1.1        is 	aucc_round_blocksize,
    244   1.1        is 	aucc_commit_settings,
    245  1.14  augustss 	NULL,
    246  1.14  augustss 	NULL,
    247   1.1        is 	aucc_start_output,
    248   1.1        is 	aucc_start_input,
    249   1.1        is 	aucc_halt_output,
    250   1.1        is 	aucc_halt_input,
    251   1.1        is 	NULL,
    252   1.1        is 	aucc_getdev,
    253  1.13  augustss 	NULL,
    254   1.1        is 	aucc_set_port,
    255   1.1        is 	aucc_get_port,
    256   1.1        is 	aucc_query_devinfo,
    257  1.14  augustss 	NULL,
    258  1.14  augustss 	NULL,
    259  1.14  augustss 	NULL,
    260  1.15  augustss 	NULL,
    261  1.16  augustss 	aucc_get_props,
    262  1.28  augustss 	NULL,
    263  1.28  augustss 	NULL,
    264  1.28  augustss 	NULL,
    265   1.1        is };
    266   1.1        is 
    267   1.1        is /* autoconfig routines */
    268   1.1        is 
    269   1.1        is int
    270  1.29   aymeric auccmatch(struct device *pdp, struct cfdata *cfp, void *aux)
    271   1.1        is {
    272  1.25    kleink 	static int aucc_matched = 0;
    273  1.25    kleink 
    274  1.25    kleink 	if (!matchname((char *)aux, "aucc") ||
    275   1.1        is #ifdef DRACO
    276  1.25    kleink 	    is_draco() ||
    277   1.1        is #endif
    278  1.25    kleink 	    aucc_matched)
    279  1.25    kleink 		return 0;
    280   1.1        is 
    281  1.25    kleink 	aucc_matched = 1;
    282  1.25    kleink 	return 1;
    283   1.1        is }
    284   1.1        is 
    285   1.1        is /*
    286   1.1        is  * Audio chip found.
    287   1.1        is  */
    288   1.1        is void
    289  1.29   aymeric auccattach(struct device *parent, struct device *self, void *args)
    290   1.1        is {
    291  1.37      kent 	struct aucc_softc *sc;
    292  1.37      kent 	int i;
    293   1.1        is 
    294  1.37      kent 	sc = (struct aucc_softc *)self;
    295   1.1        is 	printf("\n");
    296   1.1        is 
    297  1.37      kent 	if ((i=init_aucc(sc))) {
    298   1.1        is 		printf("audio: no chipmem\n");
    299   1.1        is 		return;
    300   1.1        is 	}
    301   1.1        is 
    302  1.23  augustss 	audio_attach_mi(&sa_hw_if, sc, &sc->sc_dev);
    303   1.1        is }
    304   1.1        is 
    305   1.1        is 
    306   1.1        is static int
    307  1.29   aymeric init_aucc(struct aucc_softc *sc)
    308   1.1        is {
    309  1.37      kent 	int i, err;
    310   1.1        is 
    311  1.37      kent 	err = 0;
    312   1.1        is 	/* init values per channel */
    313  1.37      kent 	for (i = 0; i < 4; i++) {
    314  1.37      kent 		sc->sc_channel[i].nd_freq = 8000;
    315  1.37      kent 		sc->sc_channel[i].nd_per = freqtoper(8000);
    316  1.37      kent 		sc->sc_channel[i].nd_busy = 0;
    317  1.37      kent 		sc->sc_channel[i].nd_dma = alloc_chipmem(AUDIO_BUF_SIZE*2);
    318  1.37      kent 		if (sc->sc_channel[i].nd_dma == NULL)
    319  1.37      kent 			err = 1;
    320  1.37      kent 		sc->sc_channel[i].nd_dmalength = 0;
    321  1.37      kent 		sc->sc_channel[i].nd_volume = 64;
    322  1.37      kent 		sc->sc_channel[i].nd_intr = NULL;
    323  1.37      kent 		sc->sc_channel[i].nd_intrdata = NULL;
    324  1.37      kent 		sc->sc_channel[i].nd_doublebuf = 0;
    325  1.34       wiz 		DPRINTF(("DMA buffer for channel %d is %p\n", i,
    326   1.1        is 		    sc->sc_channel[i].nd_dma));
    327   1.1        is 	}
    328   1.1        is 
    329   1.1        is 	if (err) {
    330  1.37      kent 		for (i = 0; i < 4; i++)
    331   1.1        is 			if (sc->sc_channel[i].nd_dma)
    332   1.1        is 				free_chipmem(sc->sc_channel[i].nd_dma);
    333   1.1        is 	}
    334   1.1        is 
    335  1.37      kent 	sc->sc_channels = 1;
    336  1.37      kent 	sc->sc_channelmask = 0xf;
    337  1.37      kent 	sc->sc_precision = 8;
    338  1.24        is 	sc->sc_14bit = 0;
    339  1.37      kent 	sc->sc_encoding = AUDIO_ENCODING_ULAW;
    340  1.33       wiz 	sc->sc_decodefunc = aucc_decode_mulaw_1ch;
    341   1.1        is 
    342  1.34       wiz 	/* clear interrupts and DMA: */
    343   1.7        is 	custom.intena = AUCC_ALLINTF;
    344  1.24        is 	custom.dmacon = AUCC_ALLDMAF;
    345   1.1        is 
    346   1.1        is 	return err;
    347   1.1        is }
    348   1.1        is 
    349   1.1        is int
    350  1.29   aymeric aucc_open(void *addr, int flags)
    351   1.1        is {
    352  1.37      kent 	struct aucc_softc *sc;
    353  1.16  augustss 	int i;
    354   1.1        is 
    355  1.37      kent 	sc = addr;
    356  1.16  augustss 	DPRINTF(("sa_open: unit %p\n",sc));
    357   1.1        is 
    358   1.1        is 	if (sc->sc_open)
    359  1.37      kent 		return EBUSY;
    360   1.1        is 	sc->sc_open = 1;
    361  1.37      kent 	for (i = 0; i < AUCC_MAXINT; i++) {
    362  1.37      kent 		sc->sc_channel[i].nd_intr = NULL;
    363  1.37      kent 		sc->sc_channel[i].nd_intrdata = NULL;
    364   1.1        is 	}
    365  1.37      kent 	aucc = sc;
    366  1.37      kent 	sc->sc_channelmask = 0xf;
    367   1.1        is 
    368   1.1        is 	DPRINTF(("saopen: ok -> sc=0x%p\n",sc));
    369   1.1        is 
    370  1.37      kent 	return 0;
    371   1.1        is }
    372   1.1        is 
    373   1.1        is void
    374  1.29   aymeric aucc_close(void *addr)
    375   1.1        is {
    376  1.37      kent 	struct aucc_softc *sc;
    377   1.1        is 
    378  1.37      kent 	sc = addr;
    379   1.1        is 	DPRINTF(("sa_close: sc=0x%p\n", sc));
    380   1.1        is 	/*
    381   1.1        is 	 * halt i/o, clear open flag, and done.
    382   1.1        is 	 */
    383   1.1        is 	aucc_halt_output(sc);
    384   1.1        is 	sc->sc_open = 0;
    385   1.1        is 
    386   1.1        is 	DPRINTF(("sa_close: closed.\n"));
    387   1.1        is }
    388   1.1        is 
    389   1.1        is int
    390  1.36      kent aucc_set_out_sr(void *addr, u_int sr)
    391   1.1        is {
    392  1.37      kent 	struct aucc_softc *sc;
    393   1.1        is 	u_long per;
    394  1.37      kent 	int i;
    395   1.1        is 
    396  1.37      kent 	sc = addr;
    397  1.37      kent 	per = freqtoper(sr);
    398  1.37      kent 	if (per > 0xffff)
    399   1.1        is 		return EINVAL;
    400  1.37      kent 	sr = pertofreq(per);
    401   1.1        is 
    402  1.37      kent 	for (i = 0; i < 4; i++) {
    403  1.37      kent 		sc->sc_channel[i].nd_freq = sr;
    404  1.37      kent 		sc->sc_channel[i].nd_per = per;
    405   1.1        is 	}
    406   1.1        is 
    407  1.37      kent 	return 0;
    408   1.1        is }
    409   1.1        is 
    410   1.1        is int
    411  1.29   aymeric aucc_query_encoding(void *addr, struct audio_encoding *fp)
    412   1.1        is {
    413  1.37      kent 
    414  1.24        is 	switch (fp->index) {
    415  1.37      kent 	case 0:
    416  1.37      kent 		strcpy(fp->name, AudioEslinear);
    417  1.37      kent 		fp->encoding = AUDIO_ENCODING_SLINEAR;
    418  1.37      kent 		fp->precision = 8;
    419  1.37      kent 		fp->flags = 0;
    420  1.37      kent 		break;
    421  1.37      kent 	case 1:
    422  1.37      kent 		strcpy(fp->name, AudioEmulaw);
    423  1.37      kent 		fp->encoding = AUDIO_ENCODING_ULAW;
    424  1.37      kent 		fp->precision = 8;
    425  1.37      kent 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    426  1.37      kent 		break;
    427  1.29   aymeric 
    428  1.37      kent 	case 2:
    429  1.37      kent 		strcpy(fp->name, AudioEulinear);
    430  1.37      kent 		fp->encoding = AUDIO_ENCODING_ULINEAR;
    431  1.37      kent 		fp->precision = 8;
    432  1.37      kent 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    433  1.37      kent 		break;
    434  1.24        is 
    435  1.37      kent 	case 3:
    436  1.37      kent 		strcpy(fp->name, AudioEslinear);
    437  1.37      kent 		fp->encoding = AUDIO_ENCODING_SLINEAR;
    438  1.37      kent 		fp->precision = 16;
    439  1.37      kent 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    440  1.37      kent 		break;
    441  1.24        is 
    442  1.37      kent 	case 4:
    443  1.37      kent 		strcpy(fp->name, AudioEslinear_be);
    444  1.37      kent 		fp->encoding = AUDIO_ENCODING_SLINEAR_BE;
    445  1.37      kent 		fp->precision = 16;
    446  1.37      kent 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    447  1.37      kent 		break;
    448  1.24        is 
    449  1.37      kent 	case 5:
    450  1.37      kent 		strcpy(fp->name, AudioEslinear_le);
    451  1.37      kent 		fp->encoding = AUDIO_ENCODING_SLINEAR_LE;
    452  1.37      kent 		fp->precision = 16;
    453  1.37      kent 		fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
    454  1.37      kent 		break;
    455   1.3        is 
    456  1.37      kent 	default:
    457  1.37      kent 		return EINVAL;
    458  1.37      kent 		/*NOTREACHED*/
    459   1.1        is 	}
    460  1.37      kent 	return 0;
    461   1.1        is }
    462   1.1        is 
    463   1.1        is int
    464  1.36      kent aucc_set_params(void *addr, int setmode, int usemode,
    465  1.36      kent 		audio_params_t *p, audio_params_t *r,
    466  1.36      kent 		stream_filter_list_t *pfil, stream_filter_list_t *rfil)
    467   1.1        is {
    468  1.37      kent 	struct aucc_softc *sc;
    469   1.8        is 
    470  1.37      kent 	sc = addr;
    471  1.18  augustss 	/* if (setmode & AUMODE_RECORD)
    472   1.8        is 		return 0 ENXIO*/;
    473   1.8        is 
    474   1.9        is #ifdef AUCCDEBUG
    475  1.24        is 	printf("aucc_set_params(setmode 0x%x, usemode 0x%x, "
    476  1.37      kent 	       "enc %u, bits %u, chn %u, sr %u)\n", setmode, usemode,
    477  1.37      kent 	       p->encoding, p->precision, p->channels, p->sample_rate);
    478  1.24        is #endif
    479  1.24        is 
    480  1.24        is 	switch (p->precision) {
    481  1.24        is 	case 8:
    482  1.24        is 		switch (p->encoding) {
    483  1.24        is 		case AUDIO_ENCODING_ULAW:
    484  1.24        is 			switch (p->channels) {
    485  1.24        is 			case 1:
    486  1.33       wiz 				sc->sc_decodefunc = aucc_decode_mulaw_1ch;
    487  1.24        is 				break;
    488  1.24        is 			case 2:
    489  1.33       wiz 				sc->sc_decodefunc = aucc_decode_mulaw_2ch;
    490  1.24        is 				break;
    491  1.24        is 			case 3:
    492  1.33       wiz 				sc->sc_decodefunc = aucc_decode_mulaw_3ch;
    493  1.24        is 				break;
    494  1.24        is 			case 4:
    495  1.33       wiz 				sc->sc_decodefunc = aucc_decode_mulaw_4ch;
    496  1.24        is 				break;
    497  1.24        is 			default:
    498  1.24        is 				return EINVAL;
    499  1.24        is 			}
    500  1.24        is 			break;
    501  1.24        is 
    502  1.24        is 		case AUDIO_ENCODING_SLINEAR:
    503  1.24        is 		case AUDIO_ENCODING_SLINEAR_BE:
    504  1.24        is 		case AUDIO_ENCODING_SLINEAR_LE:
    505  1.24        is 			switch (p->channels) {
    506  1.24        is 			case 1:
    507  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear8_1ch;
    508  1.24        is 				break;
    509  1.24        is 			case 2:
    510  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear8_2ch;
    511  1.24        is 				break;
    512  1.24        is 			case 3:
    513  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear8_3ch;
    514  1.24        is 				break;
    515  1.24        is 			case 4:
    516  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear8_4ch;
    517  1.24        is 				break;
    518  1.24        is 			default:
    519  1.24        is 				return EINVAL;
    520  1.24        is 			}
    521  1.24        is 			break;
    522  1.24        is 
    523  1.24        is 		case AUDIO_ENCODING_ULINEAR:
    524  1.24        is 		case AUDIO_ENCODING_ULINEAR_BE:
    525  1.24        is 		case AUDIO_ENCODING_ULINEAR_LE:
    526  1.24        is 			switch (p->channels) {
    527  1.24        is 			case 1:
    528  1.24        is 				sc->sc_decodefunc = aucc_decode_ulinear8_1ch;
    529  1.24        is 				break;
    530  1.24        is 			case 2:
    531  1.24        is 				sc->sc_decodefunc = aucc_decode_ulinear8_2ch;
    532  1.24        is 				break;
    533  1.24        is 			case 3:
    534  1.24        is 				sc->sc_decodefunc = aucc_decode_ulinear8_3ch;
    535  1.24        is 				break;
    536  1.24        is 			case 4:
    537  1.24        is 				sc->sc_decodefunc = aucc_decode_ulinear8_4ch;
    538  1.24        is 				break;
    539  1.24        is 			default:
    540  1.24        is 				return EINVAL;
    541  1.24        is 			}
    542  1.24        is 			break;
    543  1.24        is 
    544  1.24        is 		default:
    545  1.24        is 			return EINVAL;
    546  1.24        is 		}
    547  1.24        is 		break;
    548  1.24        is 
    549  1.24        is 	case 16:
    550  1.24        is 		switch (p->encoding) {
    551  1.24        is #if BYTE_ORDER == BIG_ENDIAN
    552  1.24        is 		case AUDIO_ENCODING_SLINEAR:
    553  1.24        is #endif
    554  1.24        is 		case AUDIO_ENCODING_SLINEAR_BE:
    555  1.24        is 			switch (p->channels) {
    556  1.24        is 			case 1:
    557  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16_1ch;
    558  1.24        is 				break;
    559  1.24        is 
    560  1.24        is 			case 2:
    561  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16_2ch;
    562  1.24        is 				break;
    563  1.24        is 			case 3:
    564  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16_3ch;
    565  1.24        is 				break;
    566  1.24        is 			case 4:
    567  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16_4ch;
    568  1.24        is 				break;
    569  1.24        is 			default:
    570  1.24        is 				return EINVAL;
    571  1.24        is 			}
    572  1.24        is 			break;
    573  1.24        is 
    574  1.24        is #if BYTE_ORDER == LITTLE_ENDIAN
    575  1.24        is 		case AUDIO_ENCODING_SLINEAR:
    576   1.9        is #endif
    577  1.24        is 		case AUDIO_ENCODING_SLINEAR_LE:
    578  1.24        is 			switch (p->channels) {
    579  1.24        is 			case 1:
    580  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16sw_1ch;
    581  1.24        is 				break;
    582  1.24        is 			case 2:
    583  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16sw_2ch;
    584  1.24        is 				break;
    585  1.24        is 			case 3:
    586  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16sw_3ch;
    587  1.24        is 				break;
    588  1.24        is 			case 4:
    589  1.24        is 				sc->sc_decodefunc = aucc_decode_slinear16sw_4ch;
    590  1.24        is 				break;
    591  1.24        is 			default:
    592  1.24        is 				return EINVAL;
    593  1.24        is 			}
    594  1.24        is 			break;
    595   1.4        is 
    596  1.24        is 		default:
    597  1.24        is 			return EINVAL;
    598  1.24        is 		}
    599  1.24        is 		break;
    600   1.8        is 
    601   1.1        is 	default:
    602   1.1        is 		return EINVAL;
    603   1.1        is 	}
    604   1.1        is 
    605   1.8        is 	sc->sc_encoding = p->encoding;
    606  1.24        is 	sc->sc_precision = p->precision;
    607  1.24        is 	sc->sc_14bit = ((p->precision == 16) && (p->channels <= 2));
    608  1.24        is 	sc->sc_channels = sc->sc_14bit ? (p->channels * 2) : p->channels;
    609   1.8        is 
    610   1.8        is 	return aucc_set_out_sr(addr, p->sample_rate);
    611   1.1        is }
    612   1.1        is 
    613   1.1        is int
    614  1.36      kent aucc_round_blocksize(void *addr, int blk,
    615  1.36      kent 		     int mode, const audio_params_t *param)
    616   1.1        is {
    617  1.37      kent 
    618  1.24        is 	/* round up to even size */
    619  1.24        is 	return blk > AUDIO_BUF_SIZE ? AUDIO_BUF_SIZE : blk;
    620   1.1        is }
    621   1.1        is 
    622   1.1        is int
    623  1.29   aymeric aucc_commit_settings(void *addr)
    624   1.1        is {
    625  1.37      kent 	struct aucc_softc *sc;
    626  1.37      kent 	int i;
    627   1.1        is 
    628   1.1        is 	DPRINTF(("sa_commit.\n"));
    629   1.1        is 
    630  1.37      kent 	sc = addr;
    631  1.37      kent 	for (i = 0; i < 4; i++) {
    632  1.37      kent 		custom.aud[i].vol = sc->sc_channel[i].nd_volume;
    633  1.37      kent 		custom.aud[i].per = sc->sc_channel[i].nd_per;
    634   1.1        is 	}
    635   1.1        is 
    636   1.1        is 	DPRINTF(("commit done\n"));
    637   1.1        is 
    638  1.37      kent 	return 0;
    639   1.1        is }
    640   1.1        is 
    641   1.1        is static int masks[4] = {1,3,7,15}; /* masks for n first channels */
    642   1.1        is static int masks2[4] = {1,2,4,8};
    643   1.1        is 
    644   1.1        is int
    645  1.29   aymeric aucc_start_output(void *addr, void *p, int cc, void (*intr)(void *), void *arg)
    646   1.1        is {
    647   1.8        is 	struct aucc_softc *sc;
    648   1.8        is 	int mask;
    649  1.24        is 	int i, j, k, len;
    650  1.24        is 	u_char *dmap[4];
    651   1.8        is 
    652   1.1        is 
    653   1.8        is 	sc = addr;
    654   1.8        is 	mask = sc->sc_channelmask;
    655   1.1        is 
    656   1.8        is 	dmap[0] = dmap[1] = dmap[2] = dmap[3] = NULL;
    657   1.1        is 
    658   1.1        is 	DPRINTF(("sa_start_output: cc=%d %p (%p)\n", cc, intr, arg));
    659   1.1        is 
    660  1.10        is 	if (sc->sc_channels > 1)
    661  1.24        is 		mask &= masks[sc->sc_channels - 1];
    662  1.10        is 		/* we use first sc_channels channels */
    663  1.24        is 	if (mask == 0) /* active and used channels are disjoint */
    664   1.1        is 		return EINVAL;
    665   1.1        is 
    666  1.37      kent 	for (i = 0; i < 4; i++) {
    667  1.24        is 		/* channels available ? */
    668  1.24        is 		if ((masks2[i] & mask) && (sc->sc_channel[i].nd_busy))
    669   1.1        is 			return EBUSY; /* channel is busy */
    670  1.24        is 		if (channel[i].isaudio == -1)
    671   1.1        is 			return EBUSY; /* system uses them */
    672   1.1        is 	}
    673   1.1        is 
    674   1.1        is 	/* enable interrupt on 1st channel */
    675  1.24        is 	for (i = j = 0; i < AUCC_MAXINT; i++) {
    676  1.24        is 		if (masks2[i] & mask) {
    677   1.1        is 			DPRINTF(("first channel is %d\n",i));
    678  1.37      kent 			j = i;
    679  1.37      kent 			sc->sc_channel[i].nd_intr = intr;
    680  1.37      kent 			sc->sc_channel[i].nd_intrdata = arg;
    681   1.1        is 			break;
    682   1.1        is 		}
    683   1.1        is 	}
    684   1.1        is 
    685   1.8        is 	DPRINTF(("dmap is %p %p %p %p, mask=0x%x\n", dmap[0], dmap[1],
    686  1.37      kent 		 dmap[2], dmap[3], mask));
    687   1.8        is 
    688  1.34       wiz 	/* disable ints, DMA for channels, until all parameters set */
    689   1.8        is 	/* XXX dont disable DMA! custom.dmacon=mask;*/
    690  1.24        is 	custom.intreq = mask << INTB_AUD0;
    691  1.24        is 	custom.intena = mask << INTB_AUD0;
    692   1.1        is 
    693  1.34       wiz 	/* copy data to DMA buffer */
    694  1.29   aymeric 
    695   1.8        is 	if (sc->sc_channels == 1) {
    696   1.8        is 		dmap[0] =
    697   1.8        is 		dmap[1] =
    698   1.8        is 		dmap[2] =
    699  1.24        is 		dmap[3] = (u_char *)sc->sc_channel[j].nd_dma;
    700  1.37      kent 	} else {
    701  1.37      kent 		for (k = 0; k < 4; k++) {
    702  1.24        is 			if (masks2[k+j] & mask)
    703  1.24        is 				dmap[k] = (u_char *)sc->sc_channel[k+j].nd_dma;
    704   1.8        is 		}
    705   1.8        is 	}
    706   1.8        is 
    707   1.8        is 	sc->sc_channel[j].nd_doublebuf ^= 1;
    708   1.8        is 	if (sc->sc_channel[j].nd_doublebuf) {
    709  1.24        is 		dmap[0] += AUDIO_BUF_SIZE;
    710  1.24        is 		dmap[1] += AUDIO_BUF_SIZE;
    711  1.24        is 		dmap[2] += AUDIO_BUF_SIZE;
    712  1.24        is 		dmap[3] += AUDIO_BUF_SIZE;
    713   1.8        is 	}
    714   1.1        is 
    715  1.37      kent 	/*
    716  1.37      kent 	 * compute output length in bytes per channel.
    717  1.24        is 	 * divide by two only for 16bit->8bit conversion.
    718  1.24        is 	 */
    719  1.24        is 	len = cc / sc->sc_channels;
    720  1.24        is 	if (!sc->sc_14bit && (sc->sc_precision == 16))
    721  1.24        is 		len /= 2;
    722  1.24        is 
    723  1.24        is 	/* call audio decoding routine */
    724  1.24        is 	sc->sc_decodefunc (dmap, (u_char *)p, len);
    725   1.1        is 
    726  1.34       wiz 	/* DMA buffers: we use same buffer 4 all channels
    727  1.34       wiz 	 * write DMA location and length
    728  1.24        is 	 */
    729  1.24        is 	for (i = k = 0; i < 4; i++) {
    730   1.8        is 		if (masks2[i] & mask) {
    731   1.1        is 			DPRINTF(("turning channel %d on\n",i));
    732  1.24        is 			/* sc->sc_channel[i].nd_busy=1; */
    733  1.24        is 			channel[i].isaudio = 1;
    734  1.24        is 			channel[i].play_count = 1;
    735  1.24        is 			channel[i].handler = NULL;
    736  1.24        is 			custom.aud[i].per = sc->sc_channel[i].nd_per;
    737  1.24        is 			if (sc->sc_14bit && (i > 1))
    738  1.24        is 				custom.aud[i].vol = 1;
    739  1.24        is 			else
    740  1.24        is 				custom.aud[i].vol = sc->sc_channel[i].nd_volume;
    741   1.8        is 			custom.aud[i].lc = PREP_DMA_MEM(dmap[k++]);
    742  1.24        is 			custom.aud[i].len = len / 2;
    743  1.24        is 			sc->sc_channel[i].nd_mask = mask;
    744   1.1        is 			DPRINTF(("per is %d, vol is %d, len is %d\n",\
    745   1.8        is 			    sc->sc_channel[i].nd_per,
    746  1.24        is 			    sc->sc_channel[i].nd_volume, len));
    747   1.1        is 		}
    748   1.1        is 	}
    749   1.1        is 
    750  1.37      kent 	channel[j].handler = aucc_inthdl;
    751   1.1        is 
    752   1.1        is 	/* enable ints */
    753  1.24        is 	custom.intena = INTF_SETCLR | INTF_INTEN | (masks2[j] << INTB_AUD0);
    754   1.1        is 
    755  1.24        is 	DPRINTF(("enabled ints: 0x%x\n", (masks2[j] << INTB_AUD0)));
    756   1.1        is 
    757  1.34       wiz 	/* enable DMA */
    758  1.24        is 	custom.dmacon = DMAF_SETCLR | DMAF_MASTER | mask;
    759   1.1        is 
    760  1.34       wiz 	DPRINTF(("enabled DMA, mask=0x%x\n",mask));
    761   1.1        is 
    762  1.37      kent 	return 0;
    763   1.1        is }
    764   1.1        is 
    765   1.1        is /* ARGSUSED */
    766   1.1        is int
    767  1.29   aymeric aucc_start_input(void *addr, void *p, int cc, void (*intr)(void *), void *arg)
    768   1.1        is {
    769   1.1        is 
    770   1.1        is 	return ENXIO; /* no input */
    771   1.1        is }
    772   1.1        is 
    773   1.1        is int
    774  1.29   aymeric aucc_halt_output(void *addr)
    775   1.1        is {
    776  1.37      kent 	struct aucc_softc *sc;
    777  1.37      kent 	int i;
    778   1.1        is 
    779   1.1        is 	/* XXX only halt, if input is also halted ?? */
    780  1.37      kent 	sc = addr;
    781  1.34       wiz 	/* stop DMA, etc */
    782   1.7        is 	custom.intena = AUCC_ALLINTF;
    783   1.7        is 	custom.dmacon = AUCC_ALLDMAF;
    784   1.1        is 	/* mark every busy unit idle */
    785  1.37      kent 	for (i = 0; i < 4; i++) {
    786  1.37      kent 		sc->sc_channel[i].nd_busy = sc->sc_channel[i].nd_mask = 0;
    787  1.37      kent 		channel[i].isaudio = 0;
    788  1.37      kent 		channel[i].play_count = 0;
    789   1.1        is 	}
    790   1.1        is 
    791  1.37      kent 	return 0;
    792   1.1        is }
    793   1.1        is 
    794   1.1        is int
    795  1.29   aymeric aucc_halt_input(void *addr)
    796   1.1        is {
    797  1.37      kent 
    798   1.1        is 	/* no input */
    799   1.1        is 	return ENXIO;
    800   1.1        is }
    801   1.1        is 
    802   1.1        is int
    803  1.29   aymeric aucc_getdev(void *addr, struct audio_device *retp)
    804   1.1        is {
    805  1.37      kent 
    806  1.37      kent 	*retp = aucc_device;
    807  1.37      kent 	return 0;
    808   1.1        is }
    809   1.1        is 
    810   1.1        is int
    811  1.29   aymeric aucc_set_port(void *addr, mixer_ctrl_t *cp)
    812   1.1        is {
    813  1.37      kent 	struct aucc_softc *sc;
    814  1.37      kent 	int i,j;
    815   1.1        is 
    816   1.1        is 	DPRINTF(("aucc_set_port: port=%d", cp->dev));
    817  1.37      kent 	sc = addr;
    818   1.1        is 	switch (cp->type) {
    819   1.1        is 	case AUDIO_MIXER_SET:
    820  1.37      kent 		if (cp->dev != AUCC_CHANNELS)
    821   1.1        is 			return EINVAL;
    822  1.37      kent 		i = cp->un.mask;
    823  1.37      kent 		if ((i < 1) || (i > 15))
    824   1.1        is 			return EINVAL;
    825  1.24        is 
    826  1.37      kent 		sc->sc_channelmask = i;
    827   1.1        is 		break;
    828   1.1        is 
    829   1.1        is 	case AUDIO_MIXER_VALUE:
    830  1.37      kent 		i = cp->un.value.num_channels;
    831  1.37      kent 		if ((i < 1) || (i > 4))
    832   1.1        is 			return EINVAL;
    833   1.1        is 
    834  1.10        is #ifdef __XXXwhatsthat
    835  1.37      kent 		if (cp->dev != AUCC_VOLUME)
    836   1.1        is 			return EINVAL;
    837  1.10        is #endif
    838   1.1        is 
    839   1.1        is 		/* set volume for channel 0..i-1 */
    840  1.21        is 
    841  1.21        is 		/* evil workaround for xanim bug, IMO */
    842  1.21        is 		if ((sc->sc_channels == 1) && (i == 2)) {
    843  1.29   aymeric 			sc->sc_channel[0].nd_volume =
    844  1.29   aymeric 			    sc->sc_channel[3].nd_volume =
    845  1.37      kent 			    cp->un.value.level[0] >> 2;
    846  1.29   aymeric 			sc->sc_channel[1].nd_volume =
    847  1.29   aymeric 			    sc->sc_channel[2].nd_volume =
    848  1.37      kent 			    cp->un.value.level[1] >> 2;
    849  1.37      kent 		} else if (i > 1) {
    850  1.37      kent 			for (j = 0; j < i; j++)
    851  1.37      kent 				sc->sc_channel[j].nd_volume =
    852  1.37      kent 				    cp->un.value.level[j] >> 2;
    853  1.21        is 		} else if (sc->sc_channels > 1)
    854  1.37      kent 			for (j = 0; j < sc->sc_channels; j++)
    855  1.37      kent 				sc->sc_channel[j].nd_volume =
    856  1.37      kent 				    cp->un.value.level[0] >> 2;
    857  1.10        is 		else
    858  1.37      kent 			for (j = 0; j < 4; j++)
    859  1.37      kent 				sc->sc_channel[j].nd_volume =
    860  1.37      kent 				    cp->un.value.level[0] >> 2;
    861  1.10        is 		break;
    862   1.1        is 
    863   1.1        is 	default:
    864   1.1        is 		return EINVAL;
    865   1.1        is 		break;
    866   1.1        is 	}
    867   1.1        is 	return 0;
    868   1.1        is }
    869   1.1        is 
    870   1.1        is 
    871   1.1        is int
    872  1.29   aymeric aucc_get_port(void *addr, mixer_ctrl_t *cp)
    873   1.1        is {
    874  1.37      kent 	struct aucc_softc *sc;
    875  1.37      kent 	int i,j;
    876   1.1        is 
    877   1.1        is 	DPRINTF(("aucc_get_port: port=%d", cp->dev));
    878  1.37      kent 	sc = addr;
    879   1.1        is 	switch (cp->type) {
    880   1.1        is 	case AUDIO_MIXER_SET:
    881  1.37      kent 		if (cp->dev != AUCC_CHANNELS)
    882   1.1        is 			return EINVAL;
    883  1.37      kent 		cp->un.mask = sc->sc_channelmask;
    884   1.1        is 		break;
    885   1.1        is 
    886   1.1        is 	case AUDIO_MIXER_VALUE:
    887   1.1        is 		i = cp->un.value.num_channels;
    888  1.37      kent 		if ((i < 1) || (i > 4))
    889   1.1        is 			return EINVAL;
    890   1.1        is 
    891  1.37      kent 		for (j = 0; j < i; j++)
    892  1.10        is 			cp->un.value.level[j] =
    893  1.37      kent 			    (sc->sc_channel[j].nd_volume << 2) +
    894  1.37      kent 			    (sc->sc_channel[j].nd_volume >> 4);
    895   1.1        is 		break;
    896   1.1        is 
    897   1.1        is 	default:
    898   1.1        is 		return EINVAL;
    899   1.1        is 	}
    900   1.1        is 	return 0;
    901   1.1        is }
    902   1.1        is 
    903  1.16  augustss 
    904  1.16  augustss int
    905  1.29   aymeric aucc_get_props(void *addr)
    906  1.16  augustss {
    907  1.16  augustss 	return 0;
    908  1.16  augustss }
    909   1.1        is 
    910   1.1        is int
    911  1.29   aymeric aucc_query_devinfo(void *addr, register mixer_devinfo_t *dip)
    912   1.1        is {
    913  1.37      kent 	int i;
    914   1.1        is 
    915   1.1        is 	switch(dip->index) {
    916   1.1        is 	case AUCC_CHANNELS:
    917   1.1        is 		dip->type = AUDIO_MIXER_SET;
    918   1.1        is 		dip->mixer_class = AUCC_OUTPUT_CLASS;
    919   1.1        is 		dip->prev = dip->next = AUDIO_MIXER_LAST;
    920  1.37      kent 		strcpy(dip->label.name, AudioNspeaker);
    921  1.37      kent 		for (i = 0; i < 16; i++) {
    922   1.1        is 			sprintf(dip->un.s.member[i].label.name,
    923   1.1        is 			    "channelmask%d", i);
    924   1.1        is 			dip->un.s.member[i].mask = i;
    925   1.1        is 		}
    926   1.1        is 		dip->un.s.num_mem = 16;
    927   1.1        is 		break;
    928   1.1        is 
    929   1.1        is 	case AUCC_VOLUME:
    930   1.1        is 		dip->type = AUDIO_MIXER_VALUE;
    931   1.1        is 		dip->mixer_class = AUCC_OUTPUT_CLASS;
    932   1.1        is 		dip->prev = dip->next = AUDIO_MIXER_LAST;
    933  1.20  augustss 		strcpy(dip->label.name, AudioNmaster);
    934   1.1        is 		dip->un.v.num_channels = 4;
    935   1.1        is 		strcpy(dip->un.v.units.name, AudioNvolume);
    936   1.1        is 		break;
    937   1.1        is 
    938   1.1        is 	case AUCC_OUTPUT_CLASS:
    939   1.1        is 		dip->type = AUDIO_MIXER_CLASS;
    940   1.1        is 		dip->mixer_class = AUCC_OUTPUT_CLASS;
    941   1.1        is 		dip->next = dip->prev = AUDIO_MIXER_LAST;
    942  1.19   mycroft 		strcpy(dip->label.name, AudioCoutputs);
    943   1.1        is 		break;
    944  1.20  augustss 
    945   1.1        is 	default:
    946   1.1        is 		return ENXIO;
    947   1.1        is 	}
    948   1.1        is 
    949   1.1        is 	DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name));
    950   1.1        is 
    951  1.37      kent 	return 0;
    952   1.1        is }
    953   1.1        is 
    954   1.1        is /* audio int handler */
    955   1.1        is void
    956   1.1        is aucc_inthdl(int ch)
    957   1.1        is {
    958  1.37      kent 	int i;
    959  1.37      kent 	int mask;
    960   1.1        is 
    961  1.37      kent 	mask = aucc->sc_channel[ch].nd_mask;
    962  1.37      kent 	/*
    963  1.37      kent 	 * for all channels in this maskgroup:
    964  1.37      kent 	 * disable DMA, int
    965  1.37      kent 	 * mark idle
    966  1.37      kent 	 */
    967  1.37      kent 	DPRINTF(("inthandler called, channel %d, mask 0x%x\n", ch, mask));
    968   1.1        is 
    969  1.37      kent 	custom.intreq = mask << INTB_AUD0; /* clear request */
    970  1.24        is 	/*
    971  1.24        is 	 * XXX: maybe we can leave ints and/or DMA on,
    972  1.24        is 	 * if another sample has to be played?
    973  1.24        is 	 */
    974  1.37      kent 	custom.intena = mask << INTB_AUD0;
    975   1.1        is 	/*
    976  1.29   aymeric 	 * XXX custom.dmacon=mask; NO!!!
    977  1.29   aymeric 	 */
    978  1.37      kent 	for (i = 0; i < 4; i++) {
    979  1.37      kent 		if (masks2[i] && mask) {
    980   1.1        is 			DPRINTF(("marking channel %d idle\n",i));
    981  1.37      kent 			aucc->sc_channel[i].nd_busy = 0;
    982  1.37      kent 			aucc->sc_channel[i].nd_mask = 0;
    983  1.37      kent 			channel[i].isaudio = channel[i].play_count = 0;
    984   1.1        is 		}
    985   1.1        is 	}
    986   1.1        is 
    987   1.1        is 	/* call handler */
    988   1.1        is 	if (aucc->sc_channel[ch].nd_intr) {
    989   1.1        is 		DPRINTF(("calling %p\n",aucc->sc_channel[ch].nd_intr));
    990  1.24        is 		(*(aucc->sc_channel[ch].nd_intr))
    991  1.24        is 		    (aucc->sc_channel[ch].nd_intrdata);
    992  1.37      kent 	} else
    993  1.24        is 		DPRINTF(("zero int handler\n"));
    994   1.1        is 	DPRINTF(("ints done\n"));
    995   1.1        is }
    996   1.1        is 
    997   1.1        is /* transform frequency to period, adjust bounds */
    998   1.1        is static u_int
    999  1.29   aymeric freqtoper(u_int freq)
   1000  1.29   aymeric {
   1001  1.37      kent 	u_int per;
   1002  1.29   aymeric 
   1003  1.37      kent 	per = eclockfreq * 5 / freq;
   1004  1.37      kent 	if (per < 124)
   1005  1.37      kent 		per = 124;   /* must have at least 124 ticks between samples */
   1006   1.1        is 
   1007   1.1        is 	return per;
   1008   1.1        is }
   1009   1.1        is 
   1010   1.1        is /* transform period to frequency */
   1011   1.1        is static u_int
   1012  1.29   aymeric pertofreq(u_int per)
   1013  1.29   aymeric {
   1014  1.24        is 
   1015  1.37      kent 	return eclockfreq * 5 / per;
   1016  1.24        is }
   1017  1.24        is 
   1018  1.29   aymeric static void
   1019  1.29   aymeric aucc_decode_slinear8_1ch(u_char **dmap, u_char *p, int i)
   1020  1.29   aymeric {
   1021  1.37      kent 	memcpy(dmap[0], p, i);
   1022  1.24        is }
   1023  1.24        is 
   1024  1.29   aymeric static void
   1025  1.29   aymeric aucc_decode_slinear8_2ch(u_char **dmap, u_char *p, int i)
   1026  1.29   aymeric {
   1027  1.37      kent 	u_char *ch0;
   1028  1.37      kent 	u_char *ch1;
   1029  1.24        is 
   1030  1.37      kent 	ch0 = dmap[0];
   1031  1.37      kent 	ch1 = dmap[1];
   1032  1.24        is 	while (i--) {
   1033  1.24        is 		*ch0++ = *p++;
   1034  1.24        is 		*ch1++ = *p++;
   1035  1.24        is 	}
   1036  1.24        is }
   1037  1.24        is 
   1038  1.29   aymeric static void
   1039  1.29   aymeric aucc_decode_slinear8_3ch(u_char **dmap, u_char *p, int i)
   1040  1.29   aymeric {
   1041  1.37      kent 	u_char *ch0;
   1042  1.37      kent 	u_char *ch1;
   1043  1.37      kent 	u_char *ch2;
   1044  1.37      kent 
   1045  1.37      kent 	ch0 = dmap[0];
   1046  1.37      kent 	ch1 = dmap[1];
   1047  1.37      kent 	ch2 = dmap[2];
   1048  1.24        is 	while (i--) {
   1049  1.24        is 		*ch0++ = *p++;
   1050  1.24        is 		*ch1++ = *p++;
   1051  1.24        is 		*ch2++ = *p++;
   1052  1.24        is 	}
   1053  1.24        is }
   1054  1.24        is 
   1055  1.29   aymeric static void
   1056  1.29   aymeric aucc_decode_slinear8_4ch(u_char **dmap, u_char *p, int i)
   1057  1.29   aymeric {
   1058  1.37      kent 	u_char *ch0;
   1059  1.37      kent 	u_char *ch1;
   1060  1.37      kent 	u_char *ch2;
   1061  1.37      kent 	u_char *ch3;
   1062  1.37      kent 
   1063  1.37      kent 	ch0 = dmap[0];
   1064  1.37      kent 	ch1 = dmap[1];
   1065  1.37      kent 	ch2 = dmap[2];
   1066  1.37      kent 	ch3 = dmap[3];
   1067  1.24        is 	while (i--) {
   1068  1.24        is 		*ch0++ = *p++;
   1069  1.24        is 		*ch1++ = *p++;
   1070  1.24        is 		*ch2++ = *p++;
   1071  1.24        is 		*ch3++ = *p++;
   1072  1.24        is 	}
   1073  1.24        is }
   1074  1.24        is 
   1075  1.24        is static void
   1076  1.29   aymeric aucc_decode_ulinear8_1ch(u_char **dmap, u_char *p, int i)
   1077  1.24        is {
   1078  1.37      kent 	u_char *ch0;
   1079  1.24        is 
   1080  1.37      kent 	ch0 = dmap[0];
   1081  1.24        is 	while (i--)
   1082  1.24        is 		*ch0++ = *p++ - 128;
   1083  1.24        is }
   1084  1.24        is 
   1085  1.24        is static void
   1086  1.29   aymeric aucc_decode_ulinear8_2ch(u_char **dmap, u_char *p, int i)
   1087   1.1        is {
   1088  1.37      kent 	u_char *ch0;
   1089  1.37      kent 	u_char *ch1;
   1090  1.24        is 
   1091  1.37      kent 	ch0 = dmap[0];
   1092  1.37      kent 	ch1 = dmap[1];
   1093  1.24        is 	while (i--) {
   1094  1.24        is 		*ch0++ = *p++ - 128;
   1095  1.24        is 		*ch1++ = *p++ - 128;
   1096  1.24        is 	}
   1097  1.24        is }
   1098  1.24        is 
   1099  1.24        is static void
   1100  1.29   aymeric aucc_decode_ulinear8_3ch(u_char **dmap, u_char *p, int i)
   1101  1.24        is {
   1102  1.37      kent 	u_char *ch0;
   1103  1.37      kent 	u_char *ch1;
   1104  1.37      kent 	u_char *ch2;
   1105  1.37      kent 
   1106  1.37      kent 	ch0 = dmap[0];
   1107  1.37      kent 	ch1 = dmap[1];
   1108  1.37      kent 	ch2 = dmap[2];
   1109  1.24        is 	while (i--) {
   1110  1.24        is 		*ch0++ = *p++ - 128;
   1111  1.24        is 		*ch1++ = *p++ - 128;
   1112  1.24        is 		*ch2++ = *p++ - 128;
   1113  1.24        is 	}
   1114  1.24        is }
   1115  1.24        is 
   1116  1.24        is static void
   1117  1.29   aymeric aucc_decode_ulinear8_4ch(u_char **dmap, u_char *p, int i)
   1118  1.24        is {
   1119  1.37      kent 	u_char *ch0;
   1120  1.37      kent 	u_char *ch1;
   1121  1.37      kent 	u_char *ch2;
   1122  1.37      kent 	u_char *ch3;
   1123  1.37      kent 
   1124  1.37      kent 	ch0 = dmap[0];
   1125  1.37      kent 	ch1 = dmap[1];
   1126  1.37      kent 	ch2 = dmap[2];
   1127  1.37      kent 	ch3 = dmap[3];
   1128  1.24        is 	while (i--) {
   1129  1.24        is 		*ch0++ = *p++ - 128;
   1130  1.24        is 		*ch1++ = *p++ - 128;
   1131  1.24        is 		*ch2++ = *p++ - 128;
   1132  1.24        is 		*ch3++ = *p++ - 128;
   1133  1.24        is 	}
   1134  1.24        is }
   1135  1.24        is 
   1136  1.24        is 
   1137  1.24        is static void
   1138  1.33       wiz aucc_decode_mulaw_1ch(u_char **dmap, u_char *p, int i)
   1139  1.24        is {
   1140  1.37      kent 	u_char *ch0;
   1141  1.24        is 
   1142  1.37      kent 	ch0 = dmap[0];
   1143  1.24        is 	while (i--)
   1144  1.33       wiz 		*ch0++ = mulaw_to_lin[*p++];
   1145  1.24        is }
   1146  1.24        is 
   1147  1.24        is static void
   1148  1.33       wiz aucc_decode_mulaw_2ch(u_char **dmap, u_char *p, int i)
   1149  1.24        is {
   1150  1.37      kent 	u_char *ch0;
   1151  1.37      kent 	u_char *ch1;
   1152  1.24        is 
   1153  1.37      kent 	ch0 = dmap[0];
   1154  1.37      kent 	ch1 = dmap[1];
   1155  1.24        is 	while (i--) {
   1156  1.33       wiz 		*ch0++ = mulaw_to_lin[*p++];
   1157  1.33       wiz 		*ch1++ = mulaw_to_lin[*p++];
   1158  1.24        is 	}
   1159  1.24        is }
   1160   1.1        is 
   1161  1.24        is static void
   1162  1.33       wiz aucc_decode_mulaw_3ch(u_char **dmap, u_char *p, int i)
   1163  1.24        is {
   1164  1.37      kent 	u_char *ch0;
   1165  1.37      kent 	u_char *ch1;
   1166  1.37      kent 	u_char *ch2;
   1167  1.37      kent 
   1168  1.37      kent 	ch0 = dmap[0];
   1169  1.37      kent 	ch1 = dmap[1];
   1170  1.37      kent 	ch2 = dmap[2];
   1171  1.24        is 	while (i--) {
   1172  1.33       wiz 		*ch0++ = mulaw_to_lin[*p++];
   1173  1.33       wiz 		*ch1++ = mulaw_to_lin[*p++];
   1174  1.33       wiz 		*ch2++ = mulaw_to_lin[*p++];
   1175  1.24        is 	}
   1176  1.24        is }
   1177   1.1        is 
   1178  1.24        is static void
   1179  1.33       wiz aucc_decode_mulaw_4ch(u_char **dmap, u_char *p, int i)
   1180  1.24        is {
   1181  1.37      kent 	u_char *ch0;
   1182  1.37      kent 	u_char *ch1;
   1183  1.37      kent 	u_char *ch2;
   1184  1.37      kent 	u_char *ch3;
   1185  1.37      kent 
   1186  1.37      kent 	ch0 = dmap[0];
   1187  1.37      kent 	ch1 = dmap[1];
   1188  1.37      kent 	ch2 = dmap[2];
   1189  1.37      kent 	ch3 = dmap[3];
   1190  1.24        is 	while (i--) {
   1191  1.33       wiz 		*ch0++ = mulaw_to_lin[*p++];
   1192  1.33       wiz 		*ch1++ = mulaw_to_lin[*p++];
   1193  1.33       wiz 		*ch2++ = mulaw_to_lin[*p++];
   1194  1.33       wiz 		*ch3++ = mulaw_to_lin[*p++];
   1195  1.24        is 	}
   1196   1.1        is }
   1197   1.1        is 
   1198   1.1        is 
   1199  1.24        is /* 14bit output */
   1200  1.24        is static void
   1201  1.29   aymeric aucc_decode_slinear16_1ch(u_char **dmap, u_char *p, int i)
   1202  1.24        is {
   1203  1.37      kent 	u_char *ch0;
   1204  1.37      kent 	u_char *ch3;
   1205  1.24        is 
   1206  1.37      kent 	ch0 = dmap[0];
   1207  1.37      kent 	ch3 = dmap[1];		/* XXX should be 3 */
   1208  1.24        is 	while (i--) {
   1209  1.24        is 		*ch0++ = *p++;
   1210  1.24        is 		*ch3++ = *p++ >> 2;
   1211  1.24        is 	}
   1212  1.24        is }
   1213   1.1        is 
   1214  1.24        is /* 14bit stereo output */
   1215  1.24        is static void
   1216  1.29   aymeric aucc_decode_slinear16_2ch(u_char **dmap, u_char *p, int i)
   1217  1.24        is {
   1218  1.37      kent 	u_char *ch0;
   1219  1.37      kent 	u_char *ch1;
   1220  1.37      kent 	u_char *ch2;
   1221  1.37      kent 	u_char *ch3;
   1222  1.37      kent 
   1223  1.37      kent 	ch0 = dmap[0];
   1224  1.37      kent 	ch1 = dmap[1];
   1225  1.37      kent 	ch2 = dmap[2];
   1226  1.37      kent 	ch3 = dmap[3];
   1227  1.24        is 	while (i--) {
   1228  1.24        is 		*ch0++ = *p++;
   1229  1.24        is 		*ch3++ = *p++ >> 2;
   1230  1.24        is 		*ch1++ = *p++;
   1231  1.24        is 		*ch2++ = *p++ >> 2;
   1232  1.24        is 	}
   1233  1.24        is }
   1234  1.24        is 
   1235  1.24        is static void
   1236  1.29   aymeric aucc_decode_slinear16_3ch(u_char **dmap, u_char *p, int i)
   1237  1.24        is {
   1238  1.37      kent 	u_char *ch0;
   1239  1.37      kent 	u_char *ch1;
   1240  1.37      kent 	u_char *ch2;
   1241  1.37      kent 
   1242  1.37      kent 	ch0 = dmap[0];
   1243  1.37      kent 	ch1 = dmap[1];
   1244  1.37      kent 	ch2 = dmap[2];
   1245  1.24        is 	while (i--) {
   1246  1.24        is 		*ch0++ = *p++; p++;
   1247  1.24        is 		*ch1++ = *p++; p++;
   1248  1.24        is 		*ch2++ = *p++; p++;
   1249  1.24        is 	}
   1250  1.24        is }
   1251  1.24        is 
   1252  1.24        is static void
   1253  1.29   aymeric aucc_decode_slinear16_4ch(u_char **dmap, u_char *p, int i)
   1254   1.1        is {
   1255  1.37      kent 	u_char *ch0;
   1256  1.37      kent 	u_char *ch1;
   1257  1.37      kent 	u_char *ch2;
   1258  1.37      kent 	u_char *ch3;
   1259  1.37      kent 
   1260  1.37      kent 	ch0 = dmap[0];
   1261  1.37      kent 	ch1 = dmap[1];
   1262  1.37      kent 	ch2 = dmap[2];
   1263  1.37      kent 	ch3 = dmap[3];
   1264  1.24        is 	while (i--) {
   1265  1.24        is 		*ch0++ = *p++; p++;
   1266  1.24        is 		*ch1++ = *p++; p++;
   1267  1.24        is 		*ch2++ = *p++; p++;
   1268  1.24        is 		*ch3++ = *p++; p++;
   1269  1.24        is 	}
   1270  1.24        is }
   1271   1.8        is 
   1272  1.24        is /* 14bit output, swap bytes */
   1273  1.24        is static void
   1274  1.29   aymeric aucc_decode_slinear16sw_1ch(u_char **dmap, u_char *p, int i)
   1275  1.24        is {
   1276  1.37      kent 	u_char *ch0;
   1277  1.37      kent 	u_char *ch3;
   1278   1.1        is 
   1279  1.37      kent 	ch0 = dmap[0];
   1280  1.37      kent 	ch3 = dmap[1];		/* XXX should be 3 */
   1281  1.24        is 	while (i--) {
   1282  1.24        is 		*ch3++ = *p++ >> 2;
   1283  1.24        is 		*ch0++ = *p++;
   1284  1.24        is 	}
   1285  1.24        is }
   1286   1.1        is 
   1287  1.24        is static void
   1288  1.29   aymeric aucc_decode_slinear16sw_2ch(u_char **dmap, u_char *p, int i)
   1289  1.24        is {
   1290  1.37      kent 	u_char *ch0;
   1291  1.37      kent 	u_char *ch1;
   1292  1.37      kent 	u_char *ch2;
   1293  1.37      kent 	u_char *ch3;
   1294  1.37      kent 
   1295  1.37      kent 	ch0 = dmap[0];
   1296  1.37      kent 	ch1 = dmap[1];
   1297  1.37      kent 	ch2 = dmap[2];
   1298  1.37      kent 	ch3 = dmap[3];
   1299  1.24        is 	while (i--) {
   1300  1.24        is 		*ch3++ = *p++ >> 2;
   1301  1.24        is 		*ch0++ = *p++;
   1302  1.24        is 		*ch2++ = *p++ >> 2;
   1303  1.24        is 		*ch1++ = *p++;
   1304  1.24        is 	}
   1305  1.24        is }
   1306   1.1        is 
   1307  1.24        is static void
   1308  1.29   aymeric aucc_decode_slinear16sw_3ch(u_char **dmap, u_char *p, int i)
   1309  1.24        is {
   1310  1.37      kent 	u_char *ch0;
   1311  1.37      kent 	u_char *ch1;
   1312  1.37      kent 	u_char *ch2;
   1313  1.37      kent 
   1314  1.37      kent 	ch0 = dmap[0];
   1315  1.37      kent 	ch1 = dmap[1];
   1316  1.37      kent 	ch2 = dmap[2];
   1317  1.24        is 	while (i--) {
   1318  1.24        is 		p++; *ch0++ = *p++;
   1319  1.24        is 		p++; *ch1++ = *p++;
   1320  1.24        is 		p++; *ch2++ = *p++;
   1321   1.1        is 	}
   1322  1.24        is }
   1323   1.1        is 
   1324  1.24        is static void
   1325  1.29   aymeric aucc_decode_slinear16sw_4ch(u_char **dmap, u_char *p, int i)
   1326  1.24        is {
   1327  1.37      kent 	u_char *ch0;
   1328  1.37      kent 	u_char *ch1;
   1329  1.37      kent 	u_char *ch2;
   1330  1.37      kent 	u_char *ch3;
   1331  1.37      kent 
   1332  1.37      kent 	ch0 = dmap[0];
   1333  1.37      kent 	ch1 = dmap[1];
   1334  1.37      kent 	ch2 = dmap[2];
   1335  1.37      kent 	ch3 = dmap[3];
   1336  1.24        is 	while (i--) {
   1337  1.24        is 		p++; *ch0++ = *p++;
   1338  1.24        is 		p++; *ch1++ = *p++;
   1339  1.24        is 		p++; *ch2++ = *p++;
   1340  1.24        is 		p++; *ch3++ = *p++;
   1341  1.24        is 	}
   1342   1.1        is }
   1343  1.24        is 
   1344   1.1        is 
   1345   1.1        is #endif /* NAUCC > 0 */
   1346