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|
/*
* Support for VIA 82Cxxx Audio Codecs
* Copyright 1999,2000 Jeff Garzik <jgarzik@mandrakesoft.com>
*
* Distributed under the GNU GENERAL PUBLIC LICENSE (GPL) Version 2.
* See the "COPYING" file distributed with this software for more info.
*
* Documentation for this driver available as
* linux/Documentation/sound/via82cxxx.txt.
*
* Since the mixer is called from the OSS glue the kernel lock is always held
* on our AC97 mixing
*/
#define VIA_VERSION "1.1.2.1"
#include <linux/module.h>
#include <linux/config.h>
#include <linux/delay.h>
#include <linux/errno.h>
#include <linux/fs.h>
#include <linux/kernel.h>
#include <linux/pci.h>
#include <linux/init.h>
#include <linux/proc_fs.h>
#include <asm/io.h>
#include "sound_config.h"
#include "soundmodule.h"
#include "sb.h"
#include "ac97.h"
#ifndef SOUND_LOCK
#define SOUND_LOCK do {} while (0)
#define SOUND_LOCK_END do {} while (0)
#endif
#define VIA_DEBUG 0 /* define to 1 to enable debugging output and checks */
#if VIA_DEBUG
/* note: prints function name for you */
#define DPRINTK(fmt, args...) printk(KERN_DEBUG "%s: " fmt, __FUNCTION__ , ## args)
#else
#define DPRINTK(fmt, args...)
#endif
#define VIA_NDEBUG 0 /* define to 1 to disable lightweight runtime checks */
#if VIA_NDEBUG
#define assert(expr)
#else
#define assert(expr) \
if(!(expr)) { \
printk( "Assertion failed! %s,%s,%s,line=%d\n", \
#expr,__FILE__,__FUNCTION__,__LINE__); \
}
#endif
#define arraysize(x) (sizeof(x)/sizeof(*(x)))
#define MAX_CARDS 2
#define LINE_SIZE 10
#define VIA_CARD_NAME "VIA 82Cxxx Audio driver " VIA_VERSION
#define VIA_MODULE_NAME "via_audio"
#define PFX VIA_MODULE_NAME ": "
#define VIA_COUNTER_LIMIT 100000
/* 82C686 function 5 (audio codec) PCI configuration registers */
#define VIA_FUNC_ENABLE 0x42
#define VIA_PNP_CONTROL 0x43
#define VIA_AC97_CTRL 0x80
/* PCI configuration register bits and masks */
#define VIA_CR40_AC97_READY 0x01
#define VIA_CR40_AC97_LOW_POWER 0x02
#define VIA_CR40_SECONDARY_READY 0x04
#define VIA_CR41_ACLINK_ENABLE 0x80
#define VIA_CR42_SB_ENABLE 0x01
#define VIA_CR42_MIDI_ENABLE 0x02
#define VIA_CR42_FM_ENABLE 0x04
#define VIA_CR42_GAME_ENABLE 0x08
#define VIA_CR44_SECOND_CODEC_SUPPORT (1 << 6)
#define VIA_CR44_AC_LINK_ACCESS (1 << 7)
#define VIA_CR80_FIRST_CODEC 0
#define VIA_CR80_SECOND_CODEC (1 << 30)
#define VIA_CR80_FIRST_CODEC_VALID (1 << 25)
#define VIA_CR80_SECOND_CODEC_VALID (1 << 27)
#define VIA_CR80_BUSY (1 << 24)
#define VIA_CR80_READ_MODE (1 << 23)
#define VIA_CR80_WRITE_MODE 0
#define VIA_CR80_REG_IDX(idx) (((idx) & 0x7E) << 16)
struct via_info {
struct address_info sb_data;
struct address_info opl3_data;
struct pci_dev *pdev;
struct ac97_hwint ac97;
int mixer_oss_dev;
int have_ac97;
};
static struct via_info cards [MAX_CARDS];
static unsigned num_cards = 0;
static const struct {
int revision;
const char *rev_name;
} via_chip_revs[] __initdata = {
{ 0x10, "A" },
{ 0x11, "B" },
{ 0x12, "C" },
{ 0x13, "D" },
{ 0x14, "E" },
{ 0x20, "H" },
};
static inline void via_ac97_write32 (struct pci_dev *pdev, int port, u32 data)
{
struct resource *rsrc = &pdev->resource[0];
outw ((u16)data,rsrc->start+port);
outw ((u16)(data>>16),rsrc->start+port+2);
}
static inline u32 via_ac97_read32 (struct pci_dev *pdev, int port)
{
struct resource *rsrc = &pdev->resource[0];
return
((u32)inw (rsrc->start+port)) |
(((u32)inw (rsrc->start+port+2)) << 16);
}
/****************************************************************
*
* Intel Audio Codec '97 interface
*
*
*/
static inline void via_ac97_wait_idle (struct pci_dev *pdev)
{
u32 tmp;
int counter = VIA_COUNTER_LIMIT;
DPRINTK ("ENTER\n");
assert (pdev != NULL);
do {
tmp = via_ac97_read32 (pdev,VIA_AC97_CTRL);
} while ((tmp & VIA_CR80_BUSY) && (counter-- > 0));
DPRINTK ("EXIT%s\n", counter > 0 ? "" : ", counter limit reached");
}
static int via_ac97_read_reg (struct ac97_hwint *dev, u8 reg)
{
u32 data;
struct via_info *card;
struct pci_dev *pdev;
DPRINTK ("ENTER\n");
assert (dev != NULL);
assert (dev->driver_private != NULL);
card = (struct via_info *) dev->driver_private;
pdev = card->pdev;
assert (pdev != NULL);
via_ac97_wait_idle (pdev);
data = VIA_CR80_FIRST_CODEC | VIA_CR80_FIRST_CODEC_VALID |
VIA_CR80_READ_MODE | VIA_CR80_REG_IDX(reg);
via_ac97_write32 (pdev,VIA_AC97_CTRL,data);
via_ac97_wait_idle (pdev);
data = via_ac97_read32 (pdev,VIA_AC97_CTRL);
#if 0
if (! (data & VIA_CR80_FIRST_CODEC_VALID)) {
DPRINTK ("EXIT, first codec not valid, returning -1\n");
return -1;
}
#endif
DPRINTK ("EXIT, returning %d\n", data & 0xFFFF);
return data & 0xFFFF;
}
static int via_ac97_write_reg (struct ac97_hwint *dev, u8 reg, u16 value)
{
u32 data;
struct via_info *card;
struct pci_dev *pdev;
DPRINTK ("ENTER\n");
assert (dev != NULL);
assert (dev->driver_private != NULL);
card = (struct via_info *) dev->driver_private;
pdev = card->pdev;
assert (pdev != NULL);
via_ac97_wait_idle (pdev);
data = VIA_CR80_FIRST_CODEC | VIA_CR80_FIRST_CODEC_VALID |
VIA_CR80_WRITE_MODE | VIA_CR80_REG_IDX(reg) | value;
via_ac97_write32 (pdev,VIA_AC97_CTRL,data);
#if 0
if (! (data & VIA_CR80_FIRST_CODEC_VALID)) {
DPRINTK ("EXIT, first codec invalid, returning -1\n");
return -1;
}
#endif
DPRINTK ("EXIT, returning 0\n");
return 0;
}
static int via_ac97_reset (struct ac97_hwint *dev)
{
struct via_info *card;
struct pci_dev *pdev;
DPRINTK ("ENTER\n");
assert (dev != NULL);
assert (dev->driver_private != NULL);
card = (struct via_info *) dev->driver_private;
pdev = card->pdev;
assert (pdev != NULL);
pci_write_config_word (pdev, PCI_COMMAND, PCI_COMMAND_IO);
DPRINTK ("EXIT, returning 0\n");
return 0;
}
static struct via_info *via_ac97_find_card_for_mixer (int dev)
{
int x;
DPRINTK ("ENTER\n");
for (x = 0; x < num_cards; x++)
if (cards[x].mixer_oss_dev == dev) {
DPRINTK ("EXIT, returning %p\n", cards + x);
return cards + x;
}
DPRINTK ("EXIT, returning 0\n");
return NULL;
}
static int
via_ac97_default_mixer_ioctl (int dev, unsigned int cmd, caddr_t arg)
{
int rc;
struct via_info *card = via_ac97_find_card_for_mixer (dev);
DPRINTK ("ENTER\n");
if (card != NULL) {
rc = ac97_mixer_ioctl (&card->ac97, cmd, arg);
DPRINTK ("EXIT, returning %d\n", rc);
return rc;
}
DPRINTK ("EXIT, returning -ENODEV\n");
return -ENODEV;
}
static struct mixer_operations via_ac97_mixer_operations =
{
"VIA82Cxxx",
"via82cxxxAC97Mixer",
via_ac97_default_mixer_ioctl
};
static int __init via_attach_ac97 (struct via_info *card)
{
int mixer;
struct ac97_hwint *mdev;
DPRINTK ("ENTER\n");
assert (card != NULL);
mdev = &card->ac97;
memset (mdev, 0, sizeof (*mdev));
mdev->reset_device = via_ac97_reset;
mdev->read_reg = via_ac97_read_reg;
mdev->write_reg = via_ac97_write_reg;
mdev->driver_private = (void *) card;
if (ac97_init (mdev)) {
printk (KERN_ERR PFX "Unable to init AC97\n");
DPRINTK ("EXIT, returning -1\n");
return -1;
}
mixer = sound_alloc_mixerdev ();
if (mixer < 0 || num_mixers >= MAX_MIXER_DEV) {
printk (KERN_ERR PFX "Unable to alloc mixerdev\n");
DPRINTK ("EXIT, returning -1\n");
return -1;
}
mixer_devs[mixer] = &via_ac97_mixer_operations;
card->mixer_oss_dev = mixer;
/* Some reasonable default values. */
ac97_set_mixer (mdev, SOUND_MIXER_VOLUME, (85 << 8) | 85);
ac97_set_mixer (mdev, SOUND_MIXER_SPEAKER, 100);
ac97_set_mixer (mdev, SOUND_MIXER_PCM, (65 << 8) | 65);
ac97_set_mixer (mdev, SOUND_MIXER_CD, (65 << 8) | 65);
printk (KERN_INFO PFX "Initialized AC97 mixer\n");
card->have_ac97 = mixer;
DPRINTK ("EXIT, returning 0\n");
return 0;
}
static void via_unload_ac97 (struct via_info *card)
{
DPRINTK ("ENTER\n");
assert (card != NULL);
if (card->have_ac97 >= 0)
sound_unload_mixerdev (card->have_ac97);
DPRINTK ("EXIT\n");
}
#ifdef CONFIG_PROC_FS
/****************************************************************
*
* /proc/driver/via82cxxx/info
*
*
*/
static int via_info_read_proc (char *page, char **start, off_t off,
int count, int *eof, void *data)
{
#define YN(val,bit) (((val) & (bit)) ? "yes" : "no")
int len = 0, i;
u8 r40, r41, r42, r44;
DPRINTK ("ENTER\n");
len += sprintf (page+len, VIA_CARD_NAME "\n\n");
for (i = 0; i < num_cards; i++) {
pci_read_config_byte (cards[i].pdev, 0x40, &r40);
pci_read_config_byte (cards[i].pdev, 0x42, &r41);
pci_read_config_byte (cards[i].pdev, 0x42, &r42);
pci_read_config_byte (cards[i].pdev, 0x44, &r44);
len += sprintf (page+len,
"40 AC97 Codec Ready: %s\n"
" AC97 Codec Low-power: %s\n"
" Secondary Codec Ready: %s\n"
"41 AC-Link Interface Enable: %s\n"
"42 Game port enabled: %s\n"
" SoundBlaster enabled: %s\n"
" FM enabled: %s\n"
" MIDI enabled: %s\n"
"44 AC-Link Interface Access: %s\n"
" Secondary Codec Support: %s\n"
"\n",
YN (r40, VIA_CR40_AC97_READY),
YN (r40, VIA_CR40_AC97_LOW_POWER),
YN (r40, VIA_CR40_SECONDARY_READY),
YN (r41, VIA_CR41_ACLINK_ENABLE),
YN (r42, VIA_CR42_GAME_ENABLE),
YN (r42, VIA_CR42_SB_ENABLE),
YN (r42, VIA_CR42_FM_ENABLE),
YN (r42, VIA_CR42_MIDI_ENABLE),
YN (r44, VIA_CR44_AC_LINK_ACCESS),
YN (r44, VIA_CR44_SECOND_CODEC_SUPPORT)
);
}
DPRINTK("EXIT, returning %d\n", len);
return len;
#undef YN
}
/****************************************************************
*
* /proc/driver/via82cxxx
*
*
*/
static int __init via_init_proc (void)
{
DPRINTK ("ENTER\n");
proc_mkdir ("driver/via_audio", 0);
create_proc_read_entry ("driver/via_audio/info", 0, 0, via_info_read_proc, NULL);
DPRINTK("EXIT\n");
return 0;
}
static void __exit via_cleanup_proc (void)
{
DPRINTK ("ENTER\n");
remove_proc_entry ("driver/via_audio/info", NULL);
remove_proc_entry ("driver/via_audio", NULL);
DPRINTK("EXIT\n");
}
#else
static inline int via_init_proc (void) { return 0; }
static inline void via_cleanup_proc (void) {}
#endif /* CONFIG_PROC_FS */
/****************************************************************
*
* Legacy SoundBlaster Pro, FM support via OSS
*
*
*/
static void __init via_attach_sb(struct address_info *hw_config)
{
DPRINTK ("ENTER\n");
if(!sb_dsp_init(hw_config))
hw_config->slots[0] = -1;
DPRINTK("EXIT\n");
}
static int __init via_probe_sb(struct address_info *hw_config)
{
DPRINTK ("ENTER\n");
if (check_region(hw_config->io_base, 16))
{
printk(KERN_DEBUG PFX "SBPro port 0x%x is already in use\n",
hw_config->io_base);
return 0;
}
DPRINTK("EXIT after sb_dsp_detect\n");
return sb_dsp_detect(hw_config, 0, 0);
}
static void __exit via_unload_sb(struct address_info *hw_config)
{
DPRINTK ("ENTER\n");
if(hw_config->slots[0] != -1)
sb_dsp_unload(hw_config, 1);
DPRINTK("EXIT\n");
}
static const struct {
int sb_irq,
sb_dma,
midi_base,
sb_io_base;
} via_pnp_data[] __initdata = {
{ 5, 0, 0x300, 0x220 },
{ 7, 1, 0x310, 0x240 },
{ 9, 2, 0x320, 0x260 },
{ 10,3, 0x330, 0x280 },
};
/****************************************************************
*
* Chip setup and kernel registration
*
*
*/
static int __init via82cxxx_install (struct pci_dev *pcidev)
{
int sb_io_base;
int sb_irq;
int sb_dma;
int midi_base, rc;
u8 tmp8;
struct via_info *card = &cards[num_cards];
DPRINTK ("ENTER\n");
card->pdev = pcidev;
card->have_ac97 = -1;
/* turn off legacy features, if not already */
pci_read_config_byte (pcidev, VIA_FUNC_ENABLE, &tmp8);
tmp8 &= ~(VIA_CR42_SB_ENABLE | VIA_CR42_MIDI_ENABLE |
VIA_CR42_FM_ENABLE);
pci_write_config_byte (pcidev, VIA_FUNC_ENABLE, tmp8);
/*
* try to init AC97 mixer device
*/
rc = via_attach_ac97 (card);
if (rc) {
printk (KERN_WARNING PFX
"AC97 init failed, SB legacy mode only\n");
}
/* turn on legacy features */
pci_read_config_byte (pcidev, VIA_FUNC_ENABLE, &tmp8);
tmp8 |= VIA_CR42_SB_ENABLE | VIA_CR42_MIDI_ENABLE |
VIA_CR42_FM_ENABLE;
pci_write_config_byte (pcidev, VIA_FUNC_ENABLE, tmp8);
/* read legacy PNP info byte */
pci_read_config_byte (pcidev, VIA_PNP_CONTROL, &tmp8);
pci_write_config_byte (pcidev, VIA_PNP_CONTROL, tmp8);
sb_irq = via_pnp_data[((tmp8 >> 6) & 0x03)].sb_irq;
sb_dma = via_pnp_data[((tmp8 >> 4) & 0x03)].sb_dma;
midi_base = via_pnp_data[((tmp8 >> 2) & 0x03)].midi_base;
sb_io_base = via_pnp_data[(tmp8 & 0x03)].sb_io_base;
udelay(100);
printk(KERN_INFO PFX "legacy "
"MIDI: 0x%X, SB: 0x%X / %d IRQ / %d DMA\n",
midi_base, sb_io_base, sb_irq, sb_dma);
card->sb_data.name = VIA_CARD_NAME;
card->sb_data.card_subtype = MDL_SBPRO;
card->sb_data.io_base = sb_io_base;
card->sb_data.irq = sb_irq;
card->sb_data.dma = sb_dma;
/* register legacy SoundBlaster Pro */
if (!via_probe_sb (&card->sb_data)) {
printk (KERN_ERR PFX
"SB probe @ 0x%X failed, aborting\n",
sb_io_base);
DPRINTK ("EXIT, returning -1\n");
return -1;
}
via_attach_sb (&card->sb_data);
card->opl3_data.name = card->sb_data.name;
card->opl3_data.io_base = midi_base;
card->opl3_data.irq = -1;
/* register legacy MIDI */
if (!probe_uart401 (&card->opl3_data)) {
printk (KERN_WARNING PFX
"MIDI probe @ 0x%X failed, continuing\n",
midi_base);
card->opl3_data.io_base = 0;
} else {
attach_uart401 (&card->opl3_data);
}
num_cards++;
DPRINTK ("EXIT, returning 0\n");
return 0;
}
/*
* This loop walks the PCI configuration database and finds where
* the sound cards are.
*
* Note - only a single PCI scan occurs, eliminating possibility
* of multiple audio chips
*
*/
static int __init probe_via82cxxx (void)
{
struct pci_dev *pcidev = NULL;
DPRINTK ("ENTER\n");
pcidev = pci_find_device (PCI_VENDOR_ID_VIA,
PCI_DEVICE_ID_VIA_82C686_5, NULL);
if (!pcidev || via82cxxx_install (pcidev) != 0) {
printk (KERN_ERR PFX "audio init failed\n");
DPRINTK ("EXIT, returning -1\n");
return -1;
}
DPRINTK ("EXIT, returning 0\n");
return 0;
}
/*
* This function is called when the user or kernel loads the
* module into memory.
*/
static int __init init_via82cxxx_module(void)
{
u8 tmp;
int i;
const char *rev = "unknown!";
memset (cards, 0, sizeof (cards));
DPRINTK ("ENTER\n");
if (!pci_present ()) {
printk (KERN_DEBUG PFX "PCI not present, exiting\n");
DPRINTK ("EXIT, returning -ENODEV\n");
return -ENODEV;
}
if (probe_via82cxxx() != 0) {
printk(KERN_ERR PFX "probe failed, aborting\n");
/* XXX unload cards registered so far, if any */
DPRINTK ("EXIT, returning -ENODEV\n");
return -ENODEV;
}
pci_read_config_byte (cards[0].pdev, PCI_REVISION_ID, &tmp);
for (i = 0; i < arraysize(via_chip_revs); i++)
if (via_chip_revs[i].revision == tmp) {
rev = via_chip_revs[i].rev_name;
break;
}
printk (KERN_INFO PFX VIA_CARD_NAME " loaded\n");
printk (KERN_INFO PFX "Chip rev %s. Features: SBPro compat%s%s\n",
rev,
cards[0].opl3_data.io_base == 0 ? "" : ", MPU-401 MIDI",
cards[0].have_ac97 == -1 ? "" : ", AC97 mixer");
if (via_init_proc () != 0) {
printk (KERN_WARNING PFX
"Unable to init experimental /proc, ignoring\n");
}
/*
* Binds us to the sound subsystem
*/
SOUND_LOCK;
DPRINTK ("EXIT, returning 0\n");
return 0;
}
/*
* This is called when it is removed. It will only be removed
* when its use count is 0. For sound the SOUND_LOCK/SOUND_UNLOCK
* macros hide the entire work for this.
*/
static void __exit cleanup_via82cxxx_module(void)
{
DPRINTK("ENTER\n");
if (cards[0].opl3_data.io_base)
unload_uart401 (&cards[0].opl3_data);
via_unload_sb (&cards[0].sb_data);
via_unload_ac97 (&cards[0]);
via_cleanup_proc ();
/*
* Final clean up with the sound layer
*/
SOUND_LOCK_END;
DPRINTK("EXIT\n");
}
module_init(init_via82cxxx_module);
module_exit(cleanup_via82cxxx_module);
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