static void pwm_done(struct lm8323_pwm *pwm)
 {
-       mutex_lock(&pwm->lock);
+       guard(mutex)(&pwm->lock);
+
        pwm->running = false;
        if (pwm->desired_brightness != pwm->brightness)
                schedule_work(&pwm->work);
-       mutex_unlock(&pwm->lock);
 }
 
 /*
        u8 ints;
        int i;
 
-       mutex_lock(&lm->lock);
+       guard(mutex)(&lm->lock);
 
        while ((lm8323_read(lm, LM8323_CMD_READ_INT, &ints, 1) == 1) && ints) {
                if (likely(ints & INT_KEYPAD))
                }
        }
 
-       mutex_unlock(&lm->lock);
-
        return IRQ_HANDLED;
 }
 
        u16 pwm_cmds[3];
        int num_cmds = 0;
 
-       mutex_lock(&pwm->lock);
+       guard(mutex)(&pwm->lock);
 
        /*
         * Do nothing if we're already at the requested level,
         * finishes.
         */
        if (pwm->running || pwm->desired_brightness == pwm->brightness)
-               goto out;
+               return;
 
        kill = (pwm->desired_brightness == 0);
        up = (pwm->desired_brightness > pwm->brightness);
 
        lm8323_write_pwm(pwm, kill, num_cmds, pwm_cmds);
        pwm->brightness = pwm->desired_brightness;
-
- out:
-       mutex_unlock(&pwm->lock);
 }
 
 static void lm8323_pwm_set_brightness(struct led_classdev *led_cdev,
        struct lm8323_pwm *pwm = cdev_to_pwm(led_cdev);
        struct lm8323_chip *lm = pwm->chip;
 
-       mutex_lock(&pwm->lock);
-       pwm->desired_brightness = brightness;
-       mutex_unlock(&pwm->lock);
+       scoped_guard(mutex, &pwm->lock) {
+               pwm->desired_brightness = brightness;
+       }
 
        if (in_interrupt()) {
                schedule_work(&pwm->work);
                /*
                 * Schedule PWM work as usual unless we are going into suspend
                 */
-               mutex_lock(&lm->lock);
-               if (likely(!lm->pm_suspend))
-                       schedule_work(&pwm->work);
-               else
-                       lm8323_pwm_work(&pwm->work);
-               mutex_unlock(&lm->lock);
+               scoped_guard(mutex, &lm->lock) {
+                       if (likely(!lm->pm_suspend))
+                               schedule_work(&pwm->work);
+                       else
+                               lm8323_pwm_work(&pwm->work);
+               }
        }
 }
 
        if (ret)
                return ret;
 
-       mutex_lock(&lm->lock);
+       guard(mutex)(&lm->lock);
+
        lm->kp_enabled = !i;
-       mutex_unlock(&lm->lock);
 
        return count;
 }
        irq_set_irq_wake(client->irq, 0);
        disable_irq(client->irq);
 
-       mutex_lock(&lm->lock);
-       lm->pm_suspend = true;
-       mutex_unlock(&lm->lock);
+       scoped_guard(mutex, &lm->lock) {
+               lm->pm_suspend = true;
+       }
 
        for (i = 0; i < 3; i++)
                if (lm->pwm[i].enabled)
        struct lm8323_chip *lm = i2c_get_clientdata(client);
        int i;
 
-       mutex_lock(&lm->lock);
-       lm->pm_suspend = false;
-       mutex_unlock(&lm->lock);
+       scoped_guard(mutex, &lm->lock) {
+               lm->pm_suspend = false;
+       }
 
        for (i = 0; i < 3; i++)
                if (lm->pwm[i].enabled)