Semaphore to mutex conversion.
The conversion was generated via scripts, and the result was validated
automatically via a script as well.
Signed-off-by: Ingo Molnar <mingo@elte.hu>
Signed-off-by: Andrew Morton <akpm@osdl.org>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
#endif
spinlock_t reg_lock;
- struct semaphore open_mutex;
+ struct mutex open_mutex;
};
/* exported functions */
unsigned int c_dma_size;
spinlock_t reg_lock;
- struct semaphore mce_mutex;
- struct semaphore open_mutex;
+ struct mutex mce_mutex;
+ struct mutex open_mutex;
int (*rate_constraint) (struct snd_pcm_runtime *runtime);
void (*set_playback_format) (struct snd_cs4231 *chip, struct snd_pcm_hw_params *hw_params, unsigned char pdfr);
struct snd_gf1_bank_info banks_16[4];
struct snd_gf1_mem_block *first;
struct snd_gf1_mem_block *last;
- struct semaphore memory_mutex;
+ struct mutex memory_mutex;
};
struct snd_gf1_dma_block {
spinlock_t dma_lock;
spinlock_t pcm_volume_level_lock;
spinlock_t uart_cmd_lock;
- struct semaphore dma_mutex;
- struct semaphore register_mutex;
+ struct mutex dma_mutex;
+ struct mutex register_mutex;
};
/* I/O functions for GF1/InterWave chip - gus_io.c */
struct snd_kcontrol *qsound_switch;
struct snd_kcontrol *qsound_space;
- struct semaphore access_mutex; /* locking */
+ struct mutex access_mutex; /* locking */
};
int snd_sb_csp_new(struct snd_sb *chip, int device, struct snd_hwdep ** rhwdep);
{
unsigned long flags;
- down(&chip->open_mutex);
+ mutex_lock(&chip->open_mutex);
if (chip->mode & AD1848_MODE_OPEN) {
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return -EAGAIN;
}
snd_ad1848_mce_down(chip);
spin_unlock_irqrestore(&chip->reg_lock, flags);
chip->mode = mode;
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return 0;
}
{
unsigned long flags;
- down(&chip->open_mutex);
+ mutex_lock(&chip->open_mutex);
if (!chip->mode) {
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return;
}
/* disable IRQ */
spin_unlock_irqrestore(&chip->reg_lock, flags);
chip->mode = 0;
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
}
/*
if (chip == NULL)
return -ENOMEM;
spin_lock_init(&chip->reg_lock);
- init_MUTEX(&chip->open_mutex);
+ mutex_init(&chip->open_mutex);
chip->card = card;
chip->port = port;
chip->irq = -1;
unsigned long flags;
int full_calib = 1;
- down(&chip->mce_mutex);
+ mutex_lock(&chip->mce_mutex);
snd_cs4231_calibrate_mute(chip, 1);
if (chip->hardware == CS4231_HW_CS4231A ||
(chip->hardware & CS4231_HW_CS4232_MASK)) {
snd_cs4231_mce_down(chip);
}
snd_cs4231_calibrate_mute(chip, 0);
- up(&chip->mce_mutex);
+ mutex_unlock(&chip->mce_mutex);
}
static void snd_cs4231_capture_format(struct snd_cs4231 *chip,
unsigned long flags;
int full_calib = 1;
- down(&chip->mce_mutex);
+ mutex_lock(&chip->mce_mutex);
snd_cs4231_calibrate_mute(chip, 1);
if (chip->hardware == CS4231_HW_CS4231A ||
(chip->hardware & CS4231_HW_CS4232_MASK)) {
snd_cs4231_mce_down(chip);
}
snd_cs4231_calibrate_mute(chip, 0);
- up(&chip->mce_mutex);
+ mutex_unlock(&chip->mce_mutex);
}
/*
{
unsigned long flags;
- down(&chip->open_mutex);
+ mutex_lock(&chip->open_mutex);
if ((chip->mode & mode) ||
((chip->mode & CS4231_MODE_OPEN) && chip->single_dma)) {
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return -EAGAIN;
}
if (chip->mode & CS4231_MODE_OPEN) {
chip->mode |= mode;
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return 0;
}
/* ok. now enable and ack CODEC IRQ */
spin_unlock_irqrestore(&chip->reg_lock, flags);
chip->mode = mode;
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return 0;
}
{
unsigned long flags;
- down(&chip->open_mutex);
+ mutex_lock(&chip->open_mutex);
chip->mode &= ~mode;
if (chip->mode & CS4231_MODE_OPEN) {
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
return;
}
snd_cs4231_calibrate_mute(chip, 1);
snd_cs4231_calibrate_mute(chip, 0);
chip->mode = 0;
- up(&chip->open_mutex);
+ mutex_unlock(&chip->open_mutex);
}
/*
chip->hwshare = hwshare;
spin_lock_init(&chip->reg_lock);
- init_MUTEX(&chip->mce_mutex);
- init_MUTEX(&chip->open_mutex);
+ mutex_init(&chip->mce_mutex);
+ mutex_init(&chip->open_mutex);
chip->card = card;
chip->rate_constraint = snd_cs4231_xrate;
chip->set_playback_format = snd_cs4231_playback_format;
return err;
spin_lock_init(&chip->reg_lock);
- init_MUTEX(&chip->mce_mutex);
- init_MUTEX(&chip->open_mutex);
+ mutex_init(&chip->mce_mutex);
+ mutex_init(&chip->open_mutex);
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &snd_cs4231_playback_ops);
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &snd_cs4231_capture_ops);
enable = ucontrol->value.integer.value[0] & 1;
- down(&chip->mce_mutex);
+ mutex_lock(&chip->mce_mutex);
snd_cs4231_mce_up(chip);
spin_lock_irqsave(&chip->reg_lock, flags);
val = (chip->image[CS4231_ALT_FEATURE_1] & ~0x0e) | (0<<2) | (enable << 1);
snd_cs4236_ctrl_out(chip, 4, val);
spin_unlock_irqrestore(&chip->reg_lock, flags);
snd_cs4231_mce_down(chip);
- up(&chip->mce_mutex);
+ mutex_unlock(&chip->mce_mutex);
#if 0
printk("set valid: ALT = 0x%x, C3 = 0x%x, C4 = 0x%x, C5 = 0x%x, C6 = 0x%x, C8 = 0x%x\n",
int snd_gf1_dma_init(struct snd_gus_card * gus)
{
- down(&gus->dma_mutex);
+ mutex_lock(&gus->dma_mutex);
gus->gf1.dma_shared++;
if (gus->gf1.dma_shared > 1) {
- up(&gus->dma_mutex);
+ mutex_unlock(&gus->dma_mutex);
return 0;
}
gus->gf1.interrupt_handler_dma_write = snd_gf1_dma_interrupt;
gus->gf1.dma_data_pcm_last =
gus->gf1.dma_data_synth =
gus->gf1.dma_data_synth_last = NULL;
- up(&gus->dma_mutex);
+ mutex_unlock(&gus->dma_mutex);
return 0;
}
{
struct snd_gf1_dma_block *block;
- down(&gus->dma_mutex);
+ mutex_lock(&gus->dma_mutex);
gus->gf1.dma_shared--;
if (!gus->gf1.dma_shared) {
snd_dma_disable(gus->gf1.dma1);
gus->gf1.dma_data_pcm_last =
gus->gf1.dma_data_synth_last = NULL;
}
- up(&gus->dma_mutex);
+ mutex_unlock(&gus->dma_mutex);
return 0;
}
spin_lock_init(&gus->dma_lock);
spin_lock_init(&gus->pcm_volume_level_lock);
spin_lock_init(&gus->uart_cmd_lock);
- init_MUTEX(&gus->dma_mutex);
+ mutex_init(&gus->dma_mutex);
if ((err = snd_device_new(card, SNDRV_DEV_LOWLEVEL, gus, &ops)) < 0) {
snd_gus_free(gus);
return err;
void snd_gf1_mem_lock(struct snd_gf1_mem * alloc, int xup)
{
if (!xup) {
- down(&alloc->memory_mutex);
+ mutex_lock(&alloc->memory_mutex);
} else {
- up(&alloc->memory_mutex);
+ mutex_unlock(&alloc->memory_mutex);
}
}
alloc->first = nblock;
else
nblock->prev->next = nblock;
- up(&alloc->memory_mutex);
+ mutex_unlock(&alloc->memory_mutex);
return NULL;
}
pblock = pblock->next;
{
if (block->share) { /* ok.. shared block */
block->share--;
- up(&alloc->memory_mutex);
+ mutex_unlock(&alloc->memory_mutex);
return 0;
}
if (alloc->first == block) {
#endif
alloc = &gus->gf1.mem_alloc;
- init_MUTEX(&alloc->memory_mutex);
+ mutex_init(&alloc->memory_mutex);
alloc->first = alloc->last = NULL;
if (!gus->gf1.memory)
return 0;
gus = entry->private_data;
alloc = &gus->gf1.mem_alloc;
- down(&alloc->memory_mutex);
+ mutex_lock(&alloc->memory_mutex);
snd_iprintf(buffer, "8-bit banks : \n ");
for (i = 0; i < 4; i++)
snd_iprintf(buffer, "0x%06x (%04ik)%s", alloc->banks_8[i].address, alloc->banks_8[i].size >> 10, i + 1 < 4 ? "," : "");
}
snd_iprintf(buffer, " Total: memory = %i, used = %i, free = %i\n",
total, used, total - used);
- up(&alloc->memory_mutex);
+ mutex_unlock(&alloc->memory_mutex);
#if 0
ultra_iprintf(buffer, " Verify: free = %i, max 8-bit block = %i, max 16-bit block = %i\n",
ultra_memory_free_size(card, &card->gf1.mem_alloc),
if (info->voices > 32)
return -EINVAL;
- down(&gus->register_mutex);
+ mutex_lock(&gus->register_mutex);
if (!snd_gus_use_inc(gus)) {
- up(&gus->register_mutex);
+ mutex_unlock(&gus->register_mutex);
return -EFAULT;
}
for (idx = 0; idx < info->voices; idx++) {
if (voice == NULL) {
snd_gus_synth_free_voices(gus, info->sender.client, info->sender.port);
snd_gus_use_dec(gus);
- up(&gus->register_mutex);
+ mutex_unlock(&gus->register_mutex);
return -EBUSY;
}
voice->index = idx;
}
- up(&gus->register_mutex);
+ mutex_unlock(&gus->register_mutex);
return 0;
}
struct snd_gus_port * port = private_data;
struct snd_gus_card * gus = port->gus;
- down(&gus->register_mutex);
+ mutex_lock(&gus->register_mutex);
snd_gus_synth_free_voices(gus, info->sender.client, info->sender.port);
snd_gus_use_dec(gus);
- up(&gus->register_mutex);
+ mutex_unlock(&gus->register_mutex);
return 0;
}
if (gus == NULL)
return -EINVAL;
- init_MUTEX(&gus->register_mutex);
+ mutex_init(&gus->register_mutex);
gus->gf1.seq_client = -1;
/* allocate new client */
p->ops.csp_stop = snd_sb_csp_stop;
p->ops.csp_qsound_transfer = snd_sb_csp_qsound_transfer;
- init_MUTEX(&p->access_mutex);
+ mutex_init(&p->access_mutex);
sprintf(hw->name, "CSP v%d.%d", (version >> 4), (version & 0x0f));
hw->iface = SNDRV_HWDEP_IFACE_SB16CSP;
hw->private_data = p;
*/
static int snd_sb_csp_use(struct snd_sb_csp * p)
{
- down(&p->access_mutex);
+ mutex_lock(&p->access_mutex);
if (p->used) {
- up(&p->access_mutex);
+ mutex_unlock(&p->access_mutex);
return -EAGAIN;
}
p->used++;
- up(&p->access_mutex);
+ mutex_unlock(&p->access_mutex);
return 0;
*/
static int snd_sb_csp_unuse(struct snd_sb_csp * p)
{
- down(&p->access_mutex);
+ mutex_lock(&p->access_mutex);
p->used--;
- up(&p->access_mutex);
+ mutex_unlock(&p->access_mutex);
return 0;
}