return 0;
}
-static const struct adxl34x_bus_ops adx134x_smbus_bops = {
+static const struct adxl34x_bus_ops adxl34x_smbus_bops = {
.bustype = BUS_I2C,
.write = adxl34x_smbus_write,
.read = adxl34x_smbus_read,
.read_block = adxl34x_smbus_read_block,
};
-static const struct adxl34x_bus_ops adx134x_i2c_bops = {
+static const struct adxl34x_bus_ops adxl34x_i2c_bops = {
.bustype = BUS_I2C,
.write = adxl34x_smbus_write,
.read = adxl34x_smbus_read,
ac = adxl34x_probe(&client->dev, client->irq, false,
i2c_check_functionality(client->adapter,
I2C_FUNC_SMBUS_READ_I2C_BLOCK) ?
- &adx134x_smbus_bops : &adx134x_i2c_bops);
+ &adxl34x_smbus_bops : &adxl34x_i2c_bops);
if (IS_ERR(ac))
return PTR_ERR(ac);
}
#ifdef CONFIG_PM
-static int adxl34x_suspend(struct i2c_client *client, pm_message_t message)
+static int adxl34x_i2c_suspend(struct i2c_client *client, pm_message_t message)
{
struct adxl34x *ac = i2c_get_clientdata(client);
- adxl34x_disable(ac);
+ adxl34x_suspend(ac);
return 0;
}
-static int adxl34x_resume(struct i2c_client *client)
+static int adxl34x_i2c_resume(struct i2c_client *client)
{
struct adxl34x *ac = i2c_get_clientdata(client);
- adxl34x_enable(ac);
+ adxl34x_resume(ac);
return 0;
}
#else
-# define adxl34x_suspend NULL
-# define adxl34x_resume NULL
+# define adxl34x_i2c_suspend NULL
+# define adxl34x_i2c_resume NULL
#endif
static const struct i2c_device_id adxl34x_id[] = {
},
.probe = adxl34x_i2c_probe,
.remove = __devexit_p(adxl34x_i2c_remove),
- .suspend = adxl34x_suspend,
- .resume = adxl34x_resume,
+ .suspend = adxl34x_i2c_suspend,
+ .resume = adxl34x_i2c_resume,
.id_table = adxl34x_id,
};
}
#ifdef CONFIG_PM
-static int adxl34x_suspend(struct spi_device *spi, pm_message_t message)
+static int adxl34x_spi_suspend(struct spi_device *spi, pm_message_t message)
{
struct adxl34x *ac = dev_get_drvdata(&spi->dev);
- adxl34x_disable(ac);
+ adxl34x_suspend(ac);
return 0;
}
-static int adxl34x_resume(struct spi_device *spi)
+static int adxl34x_spi_resume(struct spi_device *spi)
{
struct adxl34x *ac = dev_get_drvdata(&spi->dev);
- adxl34x_enable(ac);
+ adxl34x_resume(ac);
return 0;
}
#else
-# define adxl34x_suspend NULL
-# define adxl34x_resume NULL
+# define adxl34x_spi_suspend NULL
+# define adxl34x_spi_resume NULL
#endif
static struct spi_driver adxl34x_driver = {
},
.probe = adxl34x_spi_probe,
.remove = __devexit_p(adxl34x_spi_remove),
- .suspend = adxl34x_suspend,
- .resume = adxl34x_resume,
+ .suspend = adxl34x_spi_suspend,
+ .resume = adxl34x_spi_resume,
};
static int __init adxl34x_spi_init(void)
unsigned orient3d_saved;
bool disabled; /* P: mutex */
bool opened; /* P: mutex */
+ bool suspended; /* P: mutex */
bool fifo_delay;
int irq;
unsigned model;
static void __adxl34x_disable(struct adxl34x *ac)
{
- if (!ac->disabled && ac->opened) {
- /*
- * A '0' places the ADXL34x into standby mode
- * with minimum power consumption.
- */
- AC_WRITE(ac, POWER_CTL, 0);
-
- ac->disabled = true;
- }
+ /*
+ * A '0' places the ADXL34x into standby mode
+ * with minimum power consumption.
+ */
+ AC_WRITE(ac, POWER_CTL, 0);
}
static void __adxl34x_enable(struct adxl34x *ac)
{
- if (ac->disabled && ac->opened) {
- AC_WRITE(ac, POWER_CTL, ac->pdata.power_mode | PCTL_MEASURE);
- ac->disabled = false;
- }
+ AC_WRITE(ac, POWER_CTL, ac->pdata.power_mode | PCTL_MEASURE);
}
-void adxl34x_disable(struct adxl34x *ac)
+void adxl34x_suspend(struct adxl34x *ac)
{
mutex_lock(&ac->mutex);
- __adxl34x_disable(ac);
+
+ if (!ac->suspended && !ac->disabled && ac->opened)
+ __adxl34x_disable(ac);
+
+ ac->suspended = true;
+
mutex_unlock(&ac->mutex);
}
-EXPORT_SYMBOL_GPL(adxl34x_disable);
+EXPORT_SYMBOL_GPL(adxl34x_suspend);
-void adxl34x_enable(struct adxl34x *ac)
+void adxl34x_resume(struct adxl34x *ac)
{
mutex_lock(&ac->mutex);
- __adxl34x_enable(ac);
+
+ if (ac->suspended && !ac->disabled && ac->opened)
+ __adxl34x_enable(ac);
+
+ ac->suspended= false;
+
mutex_unlock(&ac->mutex);
}
-EXPORT_SYMBOL_GPL(adxl34x_enable);
+EXPORT_SYMBOL_GPL(adxl34x_resume);
static ssize_t adxl34x_disable_show(struct device *dev,
struct device_attribute *attr, char *buf)
if (error)
return error;
- if (val)
- adxl34x_disable(ac);
- else
- adxl34x_enable(ac);
+ mutex_lock(&ac->mutex);
+
+ if (!ac->suspended && ac->opened) {
+ if (val) {
+ if (!ac->disabled)
+ __adxl34x_disable(ac);
+ } else {
+ if (ac->disabled)
+ __adxl34x_enable(ac);
+ }
+ }
+
+ ac->disabled = !!val;
+
+ mutex_unlock(&ac->mutex);
return count;
}
else
ac->pdata.power_mode &= ~(PCTL_AUTO_SLEEP | PCTL_LINK);
- if (!ac->disabled && ac->opened)
+ if (!ac->disabled && !ac->suspended && ac->opened)
AC_WRITE(ac, POWER_CTL, ac->pdata.power_mode | PCTL_MEASURE);
mutex_unlock(&ac->mutex);
struct adxl34x *ac = input_get_drvdata(input);
mutex_lock(&ac->mutex);
+
+ if (!ac->suspended && !ac->disabled)
+ __adxl34x_enable(ac);
+
ac->opened = true;
- __adxl34x_enable(ac);
+
mutex_unlock(&ac->mutex);
return 0;
struct adxl34x *ac = input_get_drvdata(input);
mutex_lock(&ac->mutex);
- __adxl34x_disable(ac);
+
+ if (!ac->suspended && !ac->disabled)
+ __adxl34x_disable(ac);
+
ac->opened = false;
+
mutex_unlock(&ac->mutex);
}
int adxl34x_remove(struct adxl34x *ac)
{
- adxl34x_disable(ac);
sysfs_remove_group(&ac->dev->kobj, &adxl34x_attr_group);
free_irq(ac->irq, ac);
input_unregister_device(ac->input);
int (*write)(struct device *, unsigned char, unsigned char);
};
-void adxl34x_disable(struct adxl34x *ac);
-void adxl34x_enable(struct adxl34x *ac);
+void adxl34x_suspend(struct adxl34x *ac);
+void adxl34x_resume(struct adxl34x *ac);
struct adxl34x *adxl34x_probe(struct device *dev, int irq,
bool fifo_delay_default,
const struct adxl34x_bus_ops *bops);