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bktr_audio.c revision 1.1.1.5
      1  1.1.1.5  wiz /* $SourceForge: bktr_audio.c,v 1.6 2003/03/11 23:11:20 thomasklausner Exp $ */
      2      1.1  wiz 
      3  1.1.1.5  wiz /*	$NetBSD: bktr_audio.c,v 1.1.1.5 2003/03/12 00:02:19 wiz Exp $	*/
      4  1.1.1.5  wiz /* $FreeBSD: src/sys/dev/bktr/bktr_audio.c,v 1.8 2000/10/31 13:09:56 roger Exp$ */
      5      1.1  wiz /*
      6      1.1  wiz  * This is part of the Driver for Video Capture Cards (Frame grabbers)
      7      1.1  wiz  * and TV Tuner cards using the Brooktree Bt848, Bt848A, Bt849A, Bt878, Bt879
      8      1.1  wiz  * chipset.
      9      1.1  wiz  * Copyright Roger Hardiman and Amancio Hasty.
     10      1.1  wiz  *
     11      1.1  wiz  * bktr_audio : This deals with controlling the audio on TV cards,
     12      1.1  wiz  *                controlling the Audio Multiplexer (audio source selector).
     13      1.1  wiz  *                controlling any MSP34xx stereo audio decoders.
     14  1.1.1.5  wiz  *                controlling any DPL35xx dolby surroud sound audio decoders.
     15      1.1  wiz  *                initialising TDA98xx audio devices.
     16      1.1  wiz  *
     17      1.1  wiz  */
     18      1.1  wiz 
     19      1.1  wiz /*
     20      1.1  wiz  * 1. Redistributions of source code must retain the
     21      1.1  wiz  * Copyright (c) 1997 Amancio Hasty, 1999 Roger Hardiman
     22      1.1  wiz  * All rights reserved.
     23      1.1  wiz  *
     24      1.1  wiz  * Redistribution and use in source and binary forms, with or without
     25      1.1  wiz  * modification, are permitted provided that the following conditions
     26      1.1  wiz  * are met:
     27      1.1  wiz  * 1. Redistributions of source code must retain the above copyright
     28      1.1  wiz  *    notice, this list of conditions and the following disclaimer.
     29      1.1  wiz  * 2. Redistributions in binary form must reproduce the above copyright
     30      1.1  wiz  *    notice, this list of conditions and the following disclaimer in the
     31      1.1  wiz  *    documentation and/or other materials provided with the distribution.
     32      1.1  wiz  * 3. All advertising materials mentioning features or use of this software
     33      1.1  wiz  *    must display the following acknowledgement:
     34      1.1  wiz  *      This product includes software developed by Amancio Hasty and
     35      1.1  wiz  *      Roger Hardiman
     36      1.1  wiz  * 4. The name of the author may not be used to endorse or promote products
     37      1.1  wiz  *    derived from this software without specific prior written permission.
     38      1.1  wiz  *
     39      1.1  wiz  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     40      1.1  wiz  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     41      1.1  wiz  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     42      1.1  wiz  * DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
     43      1.1  wiz  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     44      1.1  wiz  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     45      1.1  wiz  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     46      1.1  wiz  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
     47      1.1  wiz  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     48      1.1  wiz  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     49      1.1  wiz  * POSSIBILITY OF SUCH DAMAGE.
     50      1.1  wiz  */
     51      1.1  wiz 
     52      1.1  wiz #include <sys/param.h>
     53      1.1  wiz #include <sys/systm.h>
     54      1.1  wiz #include <sys/kernel.h>
     55      1.1  wiz #include <sys/vnode.h>
     56      1.1  wiz 
     57      1.1  wiz #ifdef __FreeBSD__
     58  1.1.1.3  wiz 
     59  1.1.1.3  wiz #if (__FreeBSD_version < 500000)
     60  1.1.1.3  wiz #include <machine/clock.h>              /* for DELAY */
     61  1.1.1.3  wiz #endif
     62  1.1.1.3  wiz 
     63      1.1  wiz #include <pci/pcivar.h>
     64      1.1  wiz 
     65      1.1  wiz #if (__FreeBSD_version >=300000)
     66      1.1  wiz #include <machine/bus_memio.h>		/* for bus space */
     67      1.1  wiz #include <machine/bus.h>
     68      1.1  wiz #include <sys/bus.h>
     69      1.1  wiz #endif
     70  1.1.1.2  wiz #endif
     71      1.1  wiz 
     72      1.1  wiz #ifdef __NetBSD__
     73  1.1.1.5  wiz #include <sys/cdefs.h>
     74  1.1.1.5  wiz __KERNEL_RCSID(0, "$NetBSD: bktr_audio.c,v 1.1.1.5 2003/03/12 00:02:19 wiz Exp $");
     75  1.1.1.5  wiz 
     76  1.1.1.2  wiz #include <sys/proc.h>
     77  1.1.1.2  wiz #include <dev/ic/bt8xx.h>	/* NetBSD location of .h files */
     78  1.1.1.2  wiz #include <dev/pci/bktr/bktr_reg.h>
     79  1.1.1.2  wiz #include <dev/pci/bktr/bktr_core.h>
     80  1.1.1.2  wiz #include <dev/pci/bktr/bktr_tuner.h>
     81  1.1.1.2  wiz #include <dev/pci/bktr/bktr_card.h>
     82  1.1.1.2  wiz #include <dev/pci/bktr/bktr_audio.h>
     83      1.1  wiz #else
     84      1.1  wiz #include <machine/ioctl_meteor.h>	/* Traditional location of .h files */
     85      1.1  wiz #include <machine/ioctl_bt848.h>        /* extensions to ioctl_meteor.h */
     86      1.1  wiz #include <dev/bktr/bktr_reg.h>
     87      1.1  wiz #include <dev/bktr/bktr_core.h>
     88      1.1  wiz #include <dev/bktr/bktr_tuner.h>
     89      1.1  wiz #include <dev/bktr/bktr_card.h>
     90      1.1  wiz #include <dev/bktr/bktr_audio.h>
     91  1.1.1.2  wiz #endif
     92      1.1  wiz 
     93      1.1  wiz /*
     94      1.1  wiz  * Prototypes for the GV_BCTV specific functions.
     95      1.1  wiz  */
     96  1.1.1.5  wiz void    set_bctv_audio(bktr_ptr_t bktr);
     97  1.1.1.5  wiz void    bctv_gpio_write(bktr_ptr_t bktr, int port, int val);
     98  1.1.1.5  wiz /*int   bctv_gpio_read(bktr_ptr_t bktr, int port);*/ /* Not used */
     99      1.1  wiz 
    100      1.1  wiz 
    101      1.1  wiz 
    102      1.1  wiz /*
    103      1.1  wiz  * init_audio_devices
    104      1.1  wiz  * Reset any MSP34xx or TDA98xx audio devices.
    105      1.1  wiz  */
    106  1.1.1.5  wiz void init_audio_devices(bktr_ptr_t bktr) {
    107      1.1  wiz 
    108      1.1  wiz         /* enable stereo if appropriate on TDA audio chip */
    109  1.1.1.5  wiz         if (bktr->card.dbx)
    110  1.1.1.5  wiz                 init_BTSC(bktr);
    111  1.1.1.5  wiz 
    112      1.1  wiz         /* reset the MSP34xx stereo audio chip */
    113  1.1.1.5  wiz         if (bktr->card.msp3400c)
    114  1.1.1.5  wiz                 msp_dpl_reset(bktr, bktr->msp_addr);
    115      1.1  wiz 
    116      1.1  wiz         /* reset the DPL35xx dolby audio chip */
    117  1.1.1.5  wiz         if (bktr->card.dpl3518a)
    118  1.1.1.5  wiz                 msp_dpl_reset(bktr, bktr->dpl_addr);
    119      1.1  wiz 
    120      1.1  wiz }
    121      1.1  wiz 
    122      1.1  wiz 
    123      1.1  wiz /*
    124  1.1.1.5  wiz  *
    125      1.1  wiz  */
    126      1.1  wiz #define AUDIOMUX_DISCOVER_NOT
    127      1.1  wiz int
    128  1.1.1.5  wiz set_audio(bktr_ptr_t bktr, int cmd)
    129      1.1  wiz {
    130      1.1  wiz 	u_long		temp;
    131      1.1  wiz 	volatile u_char	idx;
    132      1.1  wiz 
    133  1.1.1.5  wiz #if defined(AUDIOMUX_DISCOVER)
    134  1.1.1.5  wiz 	if (cmd >= 200)
    135      1.1  wiz 		cmd -= 200;
    136      1.1  wiz 	else
    137      1.1  wiz #endif /* AUDIOMUX_DISCOVER */
    138      1.1  wiz 
    139      1.1  wiz 	/* check for existance of audio MUXes */
    140  1.1.1.5  wiz 	if (!bktr->card.audiomuxs[4])
    141  1.1.1.5  wiz 		return(-1);
    142      1.1  wiz 
    143      1.1  wiz 	switch (cmd) {
    144      1.1  wiz 	case AUDIO_TUNER:
    145      1.1  wiz #ifdef BKTR_REVERSEMUTE
    146      1.1  wiz 		bktr->audio_mux_select = 3;
    147      1.1  wiz #else
    148      1.1  wiz 		bktr->audio_mux_select = 0;
    149      1.1  wiz #endif
    150      1.1  wiz 
    151  1.1.1.5  wiz 		if (bktr->reverse_mute)
    152      1.1  wiz 		      bktr->audio_mux_select = 0;
    153  1.1.1.5  wiz 		else
    154      1.1  wiz 		    bktr->audio_mux_select = 3;
    155      1.1  wiz 
    156      1.1  wiz 		break;
    157      1.1  wiz 	case AUDIO_EXTERN:
    158      1.1  wiz 		bktr->audio_mux_select = 1;
    159      1.1  wiz 		break;
    160      1.1  wiz 	case AUDIO_INTERN:
    161      1.1  wiz 		bktr->audio_mux_select = 2;
    162      1.1  wiz 		break;
    163      1.1  wiz 	case AUDIO_MUTE:
    164      1.1  wiz 		bktr->audio_mute_state = TRUE;	/* set mute */
    165      1.1  wiz 		break;
    166      1.1  wiz 	case AUDIO_UNMUTE:
    167      1.1  wiz 		bktr->audio_mute_state = FALSE;	/* clear mute */
    168      1.1  wiz 		break;
    169      1.1  wiz 	default:
    170  1.1.1.2  wiz 		printf("%s: audio cmd error %02x\n", bktr_name(bktr),
    171  1.1.1.2  wiz 		       cmd);
    172  1.1.1.5  wiz 		return(-1);
    173      1.1  wiz 	}
    174      1.1  wiz 
    175      1.1  wiz 
    176      1.1  wiz 	/* Most cards have a simple audio multiplexer to select the
    177      1.1  wiz 	 * audio source. The I/O_GV card has a more advanced multiplexer
    178      1.1  wiz 	 * and requires special handling.
    179      1.1  wiz 	 */
    180  1.1.1.5  wiz         if (bktr->bt848_card == CARD_IO_GV) {
    181  1.1.1.5  wiz                 set_bctv_audio(bktr);
    182  1.1.1.5  wiz                 return(0);
    183      1.1  wiz 	}
    184      1.1  wiz 
    185      1.1  wiz 	/* Proceed with the simpler audio multiplexer code for the majority
    186      1.1  wiz 	 * of Bt848 cards.
    187      1.1  wiz 	 */
    188      1.1  wiz 
    189      1.1  wiz 	/*
    190      1.1  wiz 	 * Leave the upper bits of the GPIO port alone in case they control
    191      1.1  wiz 	 * something like the dbx or teletext chips.  This doesn't guarantee
    192      1.1  wiz 	 * success, but follows the rule of least astonishment.
    193      1.1  wiz 	 */
    194      1.1  wiz 
    195  1.1.1.5  wiz 	if (bktr->audio_mute_state == TRUE) {
    196      1.1  wiz #ifdef BKTR_REVERSEMUTE
    197      1.1  wiz 		idx = 0;
    198      1.1  wiz #else
    199      1.1  wiz 		idx = 3;
    200      1.1  wiz #endif
    201      1.1  wiz 
    202  1.1.1.5  wiz 		if (bktr->reverse_mute)
    203      1.1  wiz 		  idx  = 3;
    204  1.1.1.5  wiz 		else
    205      1.1  wiz 		  idx  = 0;
    206      1.1  wiz 
    207      1.1  wiz 	}
    208      1.1  wiz 	else
    209      1.1  wiz 		idx = bktr->audio_mux_select;
    210      1.1  wiz 
    211  1.1.1.4  wiz 
    212      1.1  wiz 	temp = INL(bktr, BKTR_GPIO_DATA) & ~bktr->card.gpio_mux_bits;
    213  1.1.1.5  wiz #if defined(AUDIOMUX_DISCOVER)
    214      1.1  wiz 	OUTL(bktr, BKTR_GPIO_DATA, temp | (cmd & 0xff));
    215  1.1.1.2  wiz 	printf("%s: cmd: %d audio mux %x temp %x \n", bktr_name(bktr),
    216  1.1.1.5  wiz 	  	cmd, bktr->card.audiomuxs[idx], temp);
    217      1.1  wiz #else
    218  1.1.1.5  wiz 	OUTL(bktr, BKTR_GPIO_DATA, temp | bktr->card.audiomuxs[idx]);
    219      1.1  wiz #endif /* AUDIOMUX_DISCOVER */
    220      1.1  wiz 
    221  1.1.1.4  wiz 
    222  1.1.1.4  wiz 
    223  1.1.1.4  wiz 	/* Some new Hauppauge cards do not have an audio mux */
    224  1.1.1.4  wiz 	/* Instead we use the MSP34xx chip to select TV audio, Line-In */
    225  1.1.1.4  wiz 	/* FM Radio and Mute */
    226  1.1.1.4  wiz 	/* Examples of this are the Hauppauge 44xxx MSP34xx models */
    227  1.1.1.4  wiz 	/* It is ok to drive both the mux and the MSP34xx chip. */
    228  1.1.1.4  wiz 	/* If there is no mux, the MSP does the switching of the audio source */
    229  1.1.1.4  wiz 	/* If there is a mux, it does the switching of the audio source */
    230  1.1.1.4  wiz 
    231  1.1.1.4  wiz 	if ((bktr->card.msp3400c) && (bktr->audio_mux_present == 0)) {
    232  1.1.1.4  wiz 
    233  1.1.1.5  wiz 	  if (bktr->audio_mute_state == TRUE) {
    234  1.1.1.4  wiz 		 msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000, 0x0000); /* volume to MUTE */
    235  1.1.1.4  wiz 	  } else {
    236  1.1.1.4  wiz 		 if(bktr->audio_mux_select == 0) { /* TV Tuner */
    237  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000, 0x7300); /* 0 db volume */
    238  1.1.1.4  wiz 		    if (bktr->msp_source_selected != 0) msp_autodetect(bktr);  /* setup TV audio mode */
    239  1.1.1.4  wiz 		    bktr->msp_source_selected = 0;
    240  1.1.1.4  wiz 		 }
    241  1.1.1.4  wiz 		 if(bktr->audio_mux_select == 1) { /* Line In */
    242  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000, 0x7300); /* 0 db volume */
    243  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000d, 0x1900); /* scart prescale */
    244  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008, 0x0220); /* SCART | STEREO */
    245  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0013, 0x0000); /* DSP In = SC1_IN_L/R */
    246  1.1.1.4  wiz 		    bktr->msp_source_selected = 1;
    247  1.1.1.4  wiz 		 }
    248  1.1.1.4  wiz 
    249  1.1.1.4  wiz 		 if(bktr->audio_mux_select == 2) { /* FM Radio */
    250  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000, 0x7300); /* 0 db volume */
    251  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000d, 0x1900); /* scart prescale */
    252  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008, 0x0220); /* SCART | STEREO */
    253  1.1.1.4  wiz 		    msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0013, 0x0200); /* DSP In = SC2_IN_L/R */
    254  1.1.1.4  wiz 		    bktr->msp_source_selected = 2;
    255  1.1.1.4  wiz 		 }
    256  1.1.1.4  wiz 	  }
    257  1.1.1.4  wiz 	}
    258  1.1.1.4  wiz 
    259  1.1.1.4  wiz 
    260  1.1.1.5  wiz 	return(0);
    261      1.1  wiz }
    262      1.1  wiz 
    263      1.1  wiz 
    264      1.1  wiz /*
    265  1.1.1.5  wiz  *
    266      1.1  wiz  */
    267      1.1  wiz void
    268  1.1.1.5  wiz temp_mute(bktr_ptr_t bktr, int flag)
    269      1.1  wiz {
    270      1.1  wiz 	static int	muteState = FALSE;
    271      1.1  wiz 
    272  1.1.1.5  wiz 	if (flag == TRUE) {
    273      1.1  wiz 		muteState = bktr->audio_mute_state;
    274  1.1.1.5  wiz 		set_audio(bktr, AUDIO_MUTE);		/* prevent 'click' */
    275      1.1  wiz 	}
    276      1.1  wiz 	else {
    277  1.1.1.5  wiz 		tsleep(BKTR_SLEEP, PZERO, "tuning", hz/8);
    278  1.1.1.5  wiz 		if (muteState == FALSE)
    279  1.1.1.5  wiz 			set_audio(bktr, AUDIO_UNMUTE);
    280      1.1  wiz 	}
    281      1.1  wiz }
    282      1.1  wiz 
    283      1.1  wiz /* address of BTSC/SAP decoder chip */
    284      1.1  wiz #define TDA9850_WADDR           0xb6
    285      1.1  wiz #define TDA9850_RADDR           0xb7
    286      1.1  wiz 
    287      1.1  wiz 
    288      1.1  wiz /* registers in the TDA9850 BTSC/dbx chip */
    289      1.1  wiz #define CON1ADDR                0x04
    290      1.1  wiz #define CON2ADDR                0x05
    291  1.1.1.5  wiz #define CON3ADDR                0x06
    292      1.1  wiz #define CON4ADDR                0x07
    293  1.1.1.5  wiz #define ALI1ADDR                0x08
    294      1.1  wiz #define ALI2ADDR                0x09
    295      1.1  wiz #define ALI3ADDR                0x0a
    296      1.1  wiz 
    297      1.1  wiz /*
    298      1.1  wiz  * initialise the dbx chip
    299      1.1  wiz  * taken from the Linux bttv driver TDA9850 initialisation code
    300      1.1  wiz  */
    301  1.1.1.5  wiz void
    302  1.1.1.5  wiz init_BTSC(bktr_ptr_t bktr)
    303      1.1  wiz {
    304      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, CON1ADDR, 0x08); /* noise threshold st */
    305      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, CON2ADDR, 0x08); /* noise threshold sap */
    306      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, CON3ADDR, 0x40); /* stereo mode */
    307      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, CON4ADDR, 0x07); /* 0 dB input gain? */
    308      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, ALI1ADDR, 0x10); /* wideband alignment? */
    309      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, ALI2ADDR, 0x10); /* spectral alignment? */
    310      1.1  wiz     i2cWrite(bktr, TDA9850_WADDR, ALI3ADDR, 0x03);
    311      1.1  wiz }
    312      1.1  wiz 
    313      1.1  wiz /*
    314      1.1  wiz  * setup the dbx chip
    315      1.1  wiz  * XXX FIXME: alot of work to be done here, this merely unmutes it.
    316      1.1  wiz  */
    317      1.1  wiz int
    318  1.1.1.5  wiz set_BTSC(bktr_ptr_t bktr, int control)
    319      1.1  wiz {
    320  1.1.1.5  wiz 	return(i2cWrite(bktr, TDA9850_WADDR, CON3ADDR, control));
    321      1.1  wiz }
    322      1.1  wiz 
    323      1.1  wiz /*
    324      1.1  wiz  * CARD_GV_BCTV specific functions.
    325      1.1  wiz  */
    326      1.1  wiz 
    327      1.1  wiz #define BCTV_AUDIO_MAIN              0x10    /* main audio program */
    328      1.1  wiz #define BCTV_AUDIO_SUB               0x20    /* sub audio program */
    329      1.1  wiz #define BCTV_AUDIO_BOTH              0x30    /* main(L) + sub(R) program */
    330      1.1  wiz 
    331      1.1  wiz #define BCTV_GPIO_REG0          1
    332      1.1  wiz #define BCTV_GPIO_REG1          3
    333      1.1  wiz 
    334      1.1  wiz #define BCTV_GR0_AUDIO_MODE     3
    335      1.1  wiz #define BCTV_GR0_AUDIO_MAIN     0       /* main program */
    336      1.1  wiz #define BCTV_GR0_AUDIO_SUB      3       /* sub program */
    337      1.1  wiz #define BCTV_GR0_AUDIO_BOTH     1       /* main(L) + sub(R) */
    338      1.1  wiz #define BCTV_GR0_AUDIO_MUTE     4       /* audio mute */
    339      1.1  wiz #define BCTV_GR0_AUDIO_MONO     8       /* force mono */
    340      1.1  wiz 
    341      1.1  wiz void
    342  1.1.1.5  wiz set_bctv_audio(bktr_ptr_t bktr)
    343      1.1  wiz {
    344      1.1  wiz         int data;
    345      1.1  wiz 
    346      1.1  wiz         switch (bktr->audio_mux_select) {
    347      1.1  wiz         case 1:         /* external */
    348      1.1  wiz         case 2:         /* internal */
    349      1.1  wiz                 bctv_gpio_write(bktr, BCTV_GPIO_REG1, 0);
    350      1.1  wiz                 break;
    351      1.1  wiz         default:        /* tuner */
    352      1.1  wiz                 bctv_gpio_write(bktr, BCTV_GPIO_REG1, 1);
    353      1.1  wiz                 break;
    354      1.1  wiz         }
    355      1.1  wiz /*      switch (bktr->audio_sap_select) { */
    356      1.1  wiz         switch (BCTV_AUDIO_BOTH) {
    357      1.1  wiz         case BCTV_AUDIO_SUB:
    358      1.1  wiz                 data = BCTV_GR0_AUDIO_SUB;
    359      1.1  wiz                 break;
    360      1.1  wiz         case BCTV_AUDIO_BOTH:
    361      1.1  wiz                 data = BCTV_GR0_AUDIO_BOTH;
    362      1.1  wiz                 break;
    363      1.1  wiz         case BCTV_AUDIO_MAIN:
    364      1.1  wiz         default:
    365      1.1  wiz                 data = BCTV_GR0_AUDIO_MAIN;
    366      1.1  wiz                 break;
    367      1.1  wiz         }
    368      1.1  wiz         if (bktr->audio_mute_state == TRUE)
    369      1.1  wiz                 data |= BCTV_GR0_AUDIO_MUTE;
    370      1.1  wiz 
    371      1.1  wiz         bctv_gpio_write(bktr, BCTV_GPIO_REG0, data);
    372      1.1  wiz 
    373      1.1  wiz         return;
    374      1.1  wiz }
    375      1.1  wiz 
    376      1.1  wiz /* gpio_data bit assignment */
    377      1.1  wiz #define BCTV_GPIO_ADDR_MASK     0x000300
    378      1.1  wiz #define BCTV_GPIO_WE            0x000400
    379      1.1  wiz #define BCTV_GPIO_OE            0x000800
    380      1.1  wiz #define BCTV_GPIO_VAL_MASK      0x00f000
    381      1.1  wiz 
    382      1.1  wiz #define BCTV_GPIO_PORT_MASK     3
    383      1.1  wiz #define BCTV_GPIO_ADDR_SHIFT    8
    384      1.1  wiz #define BCTV_GPIO_VAL_SHIFT     12
    385      1.1  wiz 
    386      1.1  wiz /* gpio_out_en value for read/write */
    387      1.1  wiz #define BCTV_GPIO_OUT_RMASK     0x000f00
    388      1.1  wiz #define BCTV_GPIO_OUT_WMASK     0x00ff00
    389      1.1  wiz 
    390      1.1  wiz #define BCTV_BITS       100
    391      1.1  wiz 
    392      1.1  wiz void
    393  1.1.1.5  wiz bctv_gpio_write(bktr_ptr_t bktr, int port, int val)
    394      1.1  wiz {
    395      1.1  wiz         u_long data, outbits;
    396      1.1  wiz 
    397      1.1  wiz         port &= BCTV_GPIO_PORT_MASK;
    398      1.1  wiz         switch (port) {
    399      1.1  wiz         case 1:
    400      1.1  wiz         case 3:
    401      1.1  wiz                 data = ((val << BCTV_GPIO_VAL_SHIFT) & BCTV_GPIO_VAL_MASK) |
    402      1.1  wiz                        ((port << BCTV_GPIO_ADDR_SHIFT) & BCTV_GPIO_ADDR_MASK) |
    403      1.1  wiz                        BCTV_GPIO_WE | BCTV_GPIO_OE;
    404      1.1  wiz                 outbits = BCTV_GPIO_OUT_WMASK;
    405      1.1  wiz                 break;
    406      1.1  wiz         default:
    407      1.1  wiz                 return;
    408      1.1  wiz         }
    409      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, 0);
    410      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data);
    411      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, outbits);
    412      1.1  wiz         DELAY(BCTV_BITS);
    413      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data & ~BCTV_GPIO_WE);
    414      1.1  wiz         DELAY(BCTV_BITS);
    415      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data);
    416      1.1  wiz         DELAY(BCTV_BITS);
    417      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, ~0);
    418      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, 0);
    419      1.1  wiz }
    420      1.1  wiz 
    421      1.1  wiz /* Not yet used
    422      1.1  wiz int
    423  1.1.1.5  wiz bctv_gpio_read(bktr_ptr_t bktr, int port)
    424      1.1  wiz {
    425      1.1  wiz         u_long data, outbits, ret;
    426      1.1  wiz 
    427      1.1  wiz         port &= BCTV_GPIO_PORT_MASK;
    428      1.1  wiz         switch (port) {
    429      1.1  wiz         case 1:
    430      1.1  wiz         case 3:
    431      1.1  wiz                 data = ((port << BCTV_GPIO_ADDR_SHIFT) & BCTV_GPIO_ADDR_MASK) |
    432      1.1  wiz                        BCTV_GPIO_WE | BCTV_GPIO_OE;
    433      1.1  wiz                 outbits = BCTV_GPIO_OUT_RMASK;
    434      1.1  wiz                 break;
    435      1.1  wiz         default:
    436  1.1.1.5  wiz                 return(-1);
    437      1.1  wiz         }
    438      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, 0);
    439      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data);
    440      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, outbits);
    441      1.1  wiz         DELAY(BCTV_BITS);
    442      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data & ~BCTV_GPIO_OE);
    443      1.1  wiz         DELAY(BCTV_BITS);
    444      1.1  wiz         ret = INL(bktr, BKTR_GPIO_DATA);
    445      1.1  wiz         DELAY(BCTV_BITS);
    446      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, data);
    447      1.1  wiz         DELAY(BCTV_BITS);
    448      1.1  wiz         OUTL(bktr, BKTR_GPIO_DATA, ~0);
    449      1.1  wiz         OUTL(bktr, BKTR_GPIO_OUT_EN, 0);
    450  1.1.1.5  wiz         return((ret & BCTV_GPIO_VAL_MASK) >> BCTV_GPIO_VAL_SHIFT);
    451      1.1  wiz }
    452      1.1  wiz */
    453      1.1  wiz 
    454      1.1  wiz /*
    455      1.1  wiz  * setup the MSP34xx Stereo Audio Chip
    456      1.1  wiz  * This uses the Auto Configuration Option on MSP3410D and MSP3415D chips
    457      1.1  wiz  * and DBX mode selection for MSP3430G chips.
    458      1.1  wiz  * For MSP3400C support, the full programming sequence is required and is
    459      1.1  wiz  * not yet supported.
    460      1.1  wiz  */
    461      1.1  wiz 
    462      1.1  wiz /* Read the MSP version string */
    463  1.1.1.5  wiz void msp_read_id(bktr_ptr_t bktr) {
    464      1.1  wiz     int rev1=0, rev2=0;
    465      1.1  wiz     rev1 = msp_dpl_read(bktr, bktr->msp_addr, 0x12, 0x001e);
    466      1.1  wiz     rev2 = msp_dpl_read(bktr, bktr->msp_addr, 0x12, 0x001f);
    467      1.1  wiz 
    468      1.1  wiz     sprintf(bktr->msp_version_string, "34%02d%c-%c%d",
    469      1.1  wiz       (rev2>>8)&0xff, (rev1&0xff)+'@', ((rev1>>8)&0xff)+'@', rev2&0x1f);
    470      1.1  wiz 
    471      1.1  wiz }
    472      1.1  wiz 
    473      1.1  wiz 
    474      1.1  wiz /* Configure the MSP chip to Auto-detect the audio format.
    475      1.1  wiz  * For the MSP3430G, we use fast autodetect mode
    476      1.1  wiz  * For the MSP3410/3415 there are two schemes for this
    477      1.1  wiz  *  a) Fast autodetection - the chip is put into autodetect mode, and the function
    478      1.1  wiz  *     returns immediatly. This works in most cases and is the Default Mode.
    479  1.1.1.5  wiz  *  b) Slow mode. The function sets the MSP3410/3415 chip, then waits for feedback from
    480      1.1  wiz  *     the chip and re-programs it if needed.
    481      1.1  wiz  */
    482  1.1.1.5  wiz void msp_autodetect(bktr_ptr_t bktr) {
    483      1.1  wiz   int auto_detect, loops;
    484      1.1  wiz   int stereo;
    485      1.1  wiz 
    486      1.1  wiz   /* MSP3430G - countries with mono and DBX stereo */
    487  1.1.1.5  wiz   if (strncmp("3430G", bktr->msp_version_string, 5) == 0) {
    488      1.1  wiz 
    489      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0030,0x2003);/* Enable Auto format detection */
    490      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0020,0x0020);/* Standard Select Reg. = BTSC-Stereo*/
    491      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000E,0x2403);/* darned if I know */
    492      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0320);/* Source select = (St or A) */
    493      1.1  wiz 					                     /* & Ch. Matrix = St */
    494      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000,0x7300);/* Set volume to 0db gain */
    495      1.1  wiz   }
    496      1.1  wiz 
    497      1.1  wiz 
    498  1.1.1.5  wiz   /* MSP3415D SPECIAL CASE Use the Tuner's Mono audio output for the MSP */
    499  1.1.1.4  wiz   /* (for Hauppauge 44xxx card with Tuner Type 0x2a) */
    500  1.1.1.5  wiz   else if (((strncmp("3415D", bktr->msp_version_string, 5) == 0)
    501  1.1.1.4  wiz                &&(bktr->msp_use_mono_source == 1)
    502  1.1.1.5  wiz )
    503  1.1.1.5  wiz            || (bktr->slow_msp_audio == 2)) {
    504  1.1.1.4  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000, 0x7300); /* 0 db volume */
    505  1.1.1.4  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000d, 0x1900); /* scart prescale */
    506  1.1.1.4  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008, 0x0220); /* SCART | STEREO */
    507  1.1.1.4  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0013, 0x0100); /* DSP In = MONO IN */
    508  1.1.1.4  wiz   }
    509  1.1.1.4  wiz 
    510  1.1.1.4  wiz 
    511      1.1  wiz   /* MSP3410/MSP3415 - countries with mono, stereo using 2 FM channels and NICAM */
    512      1.1  wiz   /* FAST sound scheme */
    513  1.1.1.4  wiz   else if (bktr->slow_msp_audio == 0) {
    514      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000,0x7300);/* Set volume to 0db gain */
    515  1.1.1.4  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0000);/* Spkr Source = default(FM/AM) */
    516      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0020,0x0001);/* Enable Auto format detection */
    517      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0021,0x0001);/* Auto selection of NICAM/MONO mode */
    518      1.1  wiz   }
    519      1.1  wiz 
    520      1.1  wiz 
    521      1.1  wiz   /* MSP3410/MSP3415 - European Countries where the fast MSP3410/3415 programming fails */
    522      1.1  wiz   /* SLOW sound scheme */
    523  1.1.1.5  wiz   else if (bktr->slow_msp_audio == 1) {
    524      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0000,0x7300);/* Set volume to 0db gain */
    525      1.1  wiz     msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0020,0x0001);/* Enable Auto format detection */
    526  1.1.1.5  wiz 
    527      1.1  wiz     /* wait for 0.5s max for terrestrial sound autodetection */
    528      1.1  wiz     loops = 10;
    529      1.1  wiz     do {
    530      1.1  wiz       DELAY(100000);
    531      1.1  wiz       auto_detect = msp_dpl_read(bktr, bktr->msp_addr, 0x10, 0x007e);
    532      1.1  wiz       loops++;
    533      1.1  wiz     } while (auto_detect > 0xff && loops < 50);
    534  1.1.1.2  wiz     if (bootverbose)printf ("%s: Result of autodetect after %dms: %d\n",
    535  1.1.1.2  wiz 			    bktr_name(bktr), loops*10, auto_detect);
    536      1.1  wiz 
    537      1.1  wiz     /* Now set the audio baseband processing */
    538      1.1  wiz     switch (auto_detect) {
    539      1.1  wiz     case 0:                    /* no TV sound standard detected */
    540      1.1  wiz       break;
    541      1.1  wiz     case 2:                    /* M Dual FM */
    542      1.1  wiz       break;
    543      1.1  wiz     case 3:                    /* B/G Dual FM; German stereo */
    544      1.1  wiz       /* Read the stereo detection value from DSP reg 0x0018 */
    545      1.1  wiz       DELAY(20000);
    546      1.1  wiz       stereo = msp_dpl_read(bktr, bktr->msp_addr, 0x12, 0x0018);
    547  1.1.1.2  wiz       if (bootverbose)printf ("%s: Stereo reg 0x18 a: %d\n",
    548  1.1.1.2  wiz 			      bktr_name(bktr), stereo);
    549      1.1  wiz       DELAY(20000);
    550      1.1  wiz       stereo = msp_dpl_read(bktr, bktr->msp_addr, 0x12, 0x0018);
    551  1.1.1.2  wiz       if (bootverbose)printf ("%s: Stereo reg 0x18 b: %d\n",
    552  1.1.1.5  wiz 			      bktr_name(bktr), stereo);
    553  1.1.1.5  wiz       DELAY(20000);
    554      1.1  wiz       stereo = msp_dpl_read(bktr, bktr->msp_addr, 0x12, 0x0018);
    555  1.1.1.2  wiz       if (bootverbose)printf ("%s: Stereo reg 0x18 c: %d\n",
    556  1.1.1.2  wiz 			      bktr_name(bktr), stereo);
    557      1.1  wiz       if (stereo > 0x0100 && stereo < 0x8000) { /* Seems to be stereo */
    558      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0020);/* Loudspeaker set stereo*/
    559      1.1  wiz         /*
    560      1.1  wiz           set spatial effect strength to 50% enlargement
    561      1.1  wiz           set spatial effect mode b, stereo basewidth enlargment only
    562      1.1  wiz         */
    563      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0005,0x3f28);
    564      1.1  wiz       } else if (stereo > 0x8000) {    /* bilingual mode */
    565  1.1.1.2  wiz         if (bootverbose) printf ("%s: Bilingual mode detected\n",
    566  1.1.1.2  wiz 				 bktr_name(bktr));
    567      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0000);/* Loudspeaker */
    568      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0005,0x0000);/* all spatial effects off */
    569      1.1  wiz        } else {                 /* must be mono */
    570      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0030);/* Loudspeaker */
    571      1.1  wiz         /*
    572      1.1  wiz           set spatial effect strength to 50% enlargement
    573      1.1  wiz           set spatial effect mode a, stereo basewidth enlargment
    574      1.1  wiz           and pseudo stereo effect with automatic high-pass filter
    575      1.1  wiz         */
    576      1.1  wiz         msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0005,0x3f08);
    577      1.1  wiz       }
    578      1.1  wiz #if 0
    579      1.1  wiz        /* The reset value for Channel matrix mode is FM/AM and SOUNDA/LEFT */
    580      1.1  wiz        /* We would like STEREO instead val: 0x0020 */
    581      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0008,0x0020);/* Loudspeaker */
    582      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0009,0x0020);/* Headphone */
    583      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000a,0x0020);/* SCART1 */
    584      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0041,0x0020);/* SCART2 */
    585      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000b,0x0020);/* I2S */
    586      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000c,0x0020);/* Quasi-Peak Detector Source */
    587      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x000e,0x0001);
    588      1.1  wiz #endif
    589      1.1  wiz       break;
    590      1.1  wiz     case 8:                    /* B/G FM NICAM */
    591      1.1  wiz        msp_dpl_write(bktr, bktr->msp_addr, 0x10, 0x0021,0x0001);/* Auto selection of NICAM/MONO mode */
    592      1.1  wiz        break;
    593      1.1  wiz      case 9:                    /* L_AM NICAM or D/K*/
    594      1.1  wiz      case 10:                   /* i-FM NICAM */
    595      1.1  wiz        break;
    596      1.1  wiz      default:
    597  1.1.1.2  wiz        if (bootverbose) printf ("%s: Unknown autodetection result value: %d\n",
    598  1.1.1.5  wiz 				bktr_name(bktr), auto_detect);
    599      1.1  wiz      }
    600      1.1  wiz 
    601      1.1  wiz   }
    602      1.1  wiz 
    603      1.1  wiz 
    604  1.1.1.5  wiz   /* uncomment the following line to enable the MSP34xx 1KHz Tone Generator */
    605      1.1  wiz   /* turn your speaker volume down low before trying this */
    606      1.1  wiz   /* msp_dpl_write(bktr, bktr->msp_addr, 0x12, 0x0014, 0x7f40); */
    607      1.1  wiz }
    608      1.1  wiz 
    609      1.1  wiz /* Read the DPL version string */
    610  1.1.1.5  wiz void dpl_read_id(bktr_ptr_t bktr) {
    611      1.1  wiz     int rev1=0, rev2=0;
    612      1.1  wiz     rev1 = msp_dpl_read(bktr, bktr->dpl_addr, 0x12, 0x001e);
    613      1.1  wiz     rev2 = msp_dpl_read(bktr, bktr->dpl_addr, 0x12, 0x001f);
    614      1.1  wiz 
    615      1.1  wiz     sprintf(bktr->dpl_version_string, "34%02d%c-%c%d",
    616      1.1  wiz       ((rev2>>8)&0xff)-1, (rev1&0xff)+'@', ((rev1>>8)&0xff)+'@', rev2&0x1f);
    617      1.1  wiz }
    618      1.1  wiz 
    619      1.1  wiz /* Configure the DPL chip to Auto-detect the audio format */
    620  1.1.1.5  wiz void dpl_autodetect(bktr_ptr_t bktr) {
    621      1.1  wiz 
    622      1.1  wiz     /* The following are empiric values tried from the DPL35xx data sheet */
    623      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x000c,0x0320);	/* quasi peak detector source dolby
    624      1.1  wiz 								lr 0x03xx; quasi peak detector matrix
    625      1.1  wiz 								stereo 0xXX20 */
    626      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0040,0x0060);	/* Surround decoder mode;
    627      1.1  wiz 								ADAPTIVE/3D-PANORAMA, that means two
    628      1.1  wiz 								speakers and no center speaker, all
    629      1.1  wiz 								channels L/R/C/S mixed to L and R */
    630      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0041,0x0620);	/* surround source matrix;I2S2/STEREO*/
    631      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0042,0x1F00);	/* surround delay 31ms max */
    632      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0043,0x0000);	/* automatic surround input balance */
    633      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0044,0x4000);	/* surround spatial effect 50%
    634      1.1  wiz 								recommended*/
    635      1.1  wiz     msp_dpl_write(bktr, bktr->dpl_addr, 0x12, 0x0045,0x5400);	/* surround panorama effect 66%
    636      1.1  wiz 								recommended with PANORAMA mode
    637      1.1  wiz 								in 0x0040 set to panorama */
    638      1.1  wiz }
    639      1.1  wiz 
    640