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>
if (ac97->num >= 4)
return;
- down(&aaci->ac97_sem);
+ mutex_lock(&aaci->ac97_sem);
aaci_ac97_select_codec(aaci, ac97);
v = readl(aaci->base + AACI_SLFR);
} while (v & (SLFR_1TXB|SLFR_2TXB));
- up(&aaci->ac97_sem);
+ mutex_unlock(&aaci->ac97_sem);
}
/*
if (ac97->num >= 4)
return ~0;
- down(&aaci->ac97_sem);
+ mutex_lock(&aaci->ac97_sem);
aaci_ac97_select_codec(aaci, ac97);
v = ~0;
}
- up(&aaci->ac97_sem);
+ mutex_unlock(&aaci->ac97_sem);
return v;
}
card->shortname, dev->res.start, dev->irq[0]);
aaci = card->private_data;
- init_MUTEX(&aaci->ac97_sem);
+ mutex_init(&aaci->ac97_sem);
spin_lock_init(&aaci->lock);
aaci->card = card;
aaci->dev = dev;
unsigned int fifosize;
/* AC'97 */
- struct semaphore ac97_sem;
+ struct mutex ac97_sem;
ac97_bus_t *ac97_bus;
u32 maincr;
#include <sound/initval.h>
#include <asm/irq.h>
-#include <asm/semaphore.h>
+#include <linux/mutex.h>
#include <asm/hardware.h>
#include <asm/arch/pxa-regs.h>
#include <asm/arch/audio.h>
#include "pxa2xx-pcm.h"
-static DECLARE_MUTEX(car_mutex);
+static DEFINE_MUTEX(car_mutex);
static DECLARE_WAIT_QUEUE_HEAD(gsr_wq);
static volatile long gsr_bits;
unsigned short val = -1;
volatile u32 *reg_addr;
- down(&car_mutex);
+ mutex_lock(&car_mutex);
/* set up primary or secondary codec space */
reg_addr = (ac97->num & 1) ? &SAC_REG_BASE : &PAC_REG_BASE;
/* but we've just started another cycle... */
wait_event_timeout(gsr_wq, (GSR | gsr_bits) & GSR_SDONE, 1);
-out: up(&car_mutex);
+out: mutex_unlock(&car_mutex);
return val;
}
{
volatile u32 *reg_addr;
- down(&car_mutex);
+ mutex_lock(&car_mutex);
/* set up primary or secondary codec space */
reg_addr = (ac97->num & 1) ? &SAC_REG_BASE : &PAC_REG_BASE;
printk(KERN_ERR "%s: write error (ac97_reg=%d GSR=%#lx)\n",
__FUNCTION__, reg, GSR | gsr_bits);
- up(&car_mutex);
+ mutex_unlock(&car_mutex);
}
static void pxa2xx_ac97_reset(struct snd_ac97 *ac97)
{
struct vx_core *_chip = snd_kcontrol_chip(kcontrol);
struct snd_vxpocket *chip = (struct snd_vxpocket *)_chip;
- down(&_chip->mixer_mutex);
+ mutex_lock(&_chip->mixer_mutex);
if (chip->mic_level != ucontrol->value.integer.value[0]) {
vx_set_mic_level(_chip, ucontrol->value.integer.value[0]);
chip->mic_level = ucontrol->value.integer.value[0];
- up(&_chip->mixer_mutex);
+ mutex_unlock(&_chip->mixer_mutex);
return 1;
}
- up(&_chip->mixer_mutex);
+ mutex_unlock(&_chip->mixer_mutex);
return 0;
}
{
struct vx_core *_chip = snd_kcontrol_chip(kcontrol);
struct snd_vxpocket *chip = (struct snd_vxpocket *)_chip;
- down(&_chip->mixer_mutex);
+ mutex_lock(&_chip->mixer_mutex);
if (chip->mic_level != ucontrol->value.integer.value[0]) {
vx_set_mic_boost(_chip, ucontrol->value.integer.value[0]);
chip->mic_level = ucontrol->value.integer.value[0];
- up(&_chip->mixer_mutex);
+ mutex_unlock(&_chip->mixer_mutex);
return 1;
}
- up(&_chip->mixer_mutex);
+ mutex_unlock(&_chip->mixer_mutex);
return 0;
}
unsigned char image[32]; /* registers image */
int mce_bit;
int calibrate_mute;
- struct semaphore mce_mutex;
- struct semaphore open_mutex;
+ struct mutex mce_mutex;
+ struct mutex open_mutex;
union {
#ifdef SBUS_SUPPORT
{
unsigned long flags;
- down(&chip->mce_mutex);
+ mutex_lock(&chip->mce_mutex);
snd_cs4231_calibrate_mute(chip, 1);
snd_cs4231_mce_up(chip);
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, struct snd_pcm_hw_params *params,
{
unsigned long flags;
- down(&chip->mce_mutex);
+ mutex_lock(&chip->mce_mutex);
snd_cs4231_calibrate_mute(chip, 1);
snd_cs4231_mce_up(chip);
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)) {
- 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->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);
}
/*
spin_lock_init(&chip->lock);
spin_lock_init(&chip->c_dma.sbus_info.lock);
spin_lock_init(&chip->p_dma.sbus_info.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->dev_u.sdev = sdev;
chip->regs_size = sdev->reg_addrs[0].reg_size;
spin_lock_init(&chip->lock);
spin_lock_init(&chip->c_dma.ebus_info.lock);
spin_lock_init(&chip->p_dma.ebus_info.lock);
- init_MUTEX(&chip->mce_mutex);
- init_MUTEX(&chip->open_mutex);
+ mutex_init(&chip->mce_mutex);
+ mutex_init(&chip->open_mutex);
chip->flags |= CS4231_FLAG_EBUS;
chip->card = card;
chip->dev_u.pdev = edev->bus->self;
#include <linux/usb.h>
#include <linux/vmalloc.h>
#include <linux/moduleparam.h>
+#include <linux/mutex.h>
#include <sound/core.h>
#include <sound/info.h>
#include <sound/pcm.h>
* the all interfaces on the same card as one sound device.
*/
-static DECLARE_MUTEX(register_mutex);
+static DEFINE_MUTEX(register_mutex);
static struct snd_usb_audio *usb_chip[SNDRV_CARDS];
/* check whether it's already registered */
chip = NULL;
- down(®ister_mutex);
+ mutex_lock(®ister_mutex);
for (i = 0; i < SNDRV_CARDS; i++) {
if (usb_chip[i] && usb_chip[i]->dev == dev) {
if (usb_chip[i]->shutdown) {
usb_chip[chip->index] = chip;
chip->num_interfaces++;
- up(®ister_mutex);
+ mutex_unlock(®ister_mutex);
return chip;
__error:
if (chip && !chip->num_interfaces)
snd_card_free(chip->card);
- up(®ister_mutex);
+ mutex_unlock(®ister_mutex);
__err_val:
return NULL;
}
chip = ptr;
card = chip->card;
- down(®ister_mutex);
+ mutex_lock(®ister_mutex);
chip->shutdown = 1;
chip->num_interfaces--;
if (chip->num_interfaces <= 0) {
snd_usb_mixer_disconnect(p);
}
usb_chip[chip->index] = NULL;
- up(®ister_mutex);
+ mutex_unlock(®ister_mutex);
snd_card_free(card);
} else {
- up(®ister_mutex);
+ mutex_unlock(®ister_mutex);
}
}
usX2Y(card)->chip.dev = device;
usX2Y(card)->chip.card = card;
init_waitqueue_head(&usX2Y(card)->prepare_wait_queue);
- init_MUTEX (&usX2Y(card)->prepare_mutex);
+ mutex_init(&usX2Y(card)->prepare_mutex);
INIT_LIST_HEAD(&usX2Y(card)->chip.midi_list);
strcpy(card->driver, "USB "NAME_ALLCAPS"");
sprintf(card->shortname, "TASCAM "NAME_ALLCAPS"");
unsigned int rate,
format;
int chip_status;
- struct semaphore prepare_mutex;
+ struct mutex prepare_mutex;
struct us428ctls_sharedmem *us428ctls_sharedmem;
int wait_iso_frame;
wait_queue_head_t us428ctls_wait_queue_head;
{
struct snd_pcm_runtime *runtime = substream->runtime;
struct snd_usX2Y_substream *subs = runtime->private_data;
- down(&subs->usX2Y->prepare_mutex);
+ mutex_lock(&subs->usX2Y->prepare_mutex);
snd_printdd("snd_usX2Y_hw_free(%p)\n", substream);
if (SNDRV_PCM_STREAM_PLAYBACK == substream->stream) {
usX2Y_urbs_release(subs);
}
}
- up(&subs->usX2Y->prepare_mutex);
+ mutex_unlock(&subs->usX2Y->prepare_mutex);
return snd_pcm_lib_free_pages(substream);
}
/*
int err = 0;
snd_printdd("snd_usX2Y_pcm_prepare(%p)\n", substream);
- down(&usX2Y->prepare_mutex);
+ mutex_lock(&usX2Y->prepare_mutex);
usX2Y_subs_prepare(subs);
// Start hardware streams
// SyncStream first....
err = usX2Y_urbs_start(subs);
up_prepare_mutex:
- up(&usX2Y->prepare_mutex);
+ mutex_unlock(&usX2Y->prepare_mutex);
return err;
}
struct snd_pcm_runtime *runtime = substream->runtime;
struct snd_usX2Y_substream *subs = runtime->private_data,
*cap_subs2 = subs->usX2Y->subs[SNDRV_PCM_STREAM_CAPTURE + 2];
- down(&subs->usX2Y->prepare_mutex);
+ mutex_lock(&subs->usX2Y->prepare_mutex);
snd_printdd("snd_usX2Y_usbpcm_hw_free(%p)\n", substream);
if (SNDRV_PCM_STREAM_PLAYBACK == substream->stream) {
usX2Y_usbpcm_urbs_release(cap_subs2);
}
}
- up(&subs->usX2Y->prepare_mutex);
+ mutex_unlock(&subs->usX2Y->prepare_mutex);
return snd_pcm_lib_free_pages(substream);
}
memset(usX2Y->hwdep_pcm_shm, 0, sizeof(struct snd_usX2Y_hwdep_pcm_shm));
}
- down(&usX2Y->prepare_mutex);
+ mutex_lock(&usX2Y->prepare_mutex);
usX2Y_subs_prepare(subs);
// Start hardware streams
// SyncStream first....
usX2Y->hwdep_pcm_shm->capture_iso_start = -1;
up_prepare_mutex:
- up(&usX2Y->prepare_mutex);
+ mutex_unlock(&usX2Y->prepare_mutex);
return err;
}
if (dev->type != SNDRV_DEV_PCM)
continue;
pcm = dev->device_data;
- down(&pcm->open_mutex);
+ mutex_lock(&pcm->open_mutex);
}
list_for_each(list, &card->devices) {
int s;
if (dev->type != SNDRV_DEV_PCM)
continue;
pcm = dev->device_data;
- up(&pcm->open_mutex);
+ mutex_unlock(&pcm->open_mutex);
}
}