.buf_size       = &buf_size_v5,
        .buf_align      = &mfc_buf_align_v5,
        .fw_name[0]     = "s5p-mfc.fw",
+       .use_clock_gating = true,
 };
 
 static struct s5p_mfc_buf_size_v6 mfc_buf_size_v6 = {
 
 
        pm = &dev->pm;
        p_dev = dev;
+       pm->use_clock_gating = dev->variant->use_clock_gating;
        pm->clock_gate = clk_get(&dev->plat_dev->dev, MFC_GATE_CLK_NAME);
        if (IS_ERR(pm->clock_gate)) {
                mfc_err("Failed to get clock-gating control\n");
        atomic_inc(&clk_ref);
        mfc_debug(3, "+ %d\n", atomic_read(&clk_ref));
 #endif
+       if (!pm->use_clock_gating)
+               return 0;
        if (!IS_ERR_OR_NULL(pm->clock_gate))
                ret = clk_enable(pm->clock_gate);
        return ret;
        atomic_dec(&clk_ref);
        mfc_debug(3, "- %d\n", atomic_read(&clk_ref));
 #endif
+       if (!pm->use_clock_gating)
+               return;
        if (!IS_ERR_OR_NULL(pm->clock_gate))
                clk_disable(pm->clock_gate);
 }
 
 int s5p_mfc_power_on(void)
 {
+       int ret = 0;
+
 #ifdef CONFIG_PM
-       return pm_runtime_get_sync(pm->device);
+       ret = pm_runtime_get_sync(pm->device);
+       if (ret)
+               return ret;
 #else
        atomic_set(&pm->power, 1);
-       return 0;
 #endif
+       if (!pm->use_clock_gating && !IS_ERR_OR_NULL(pm->clock_gate))
+               ret = clk_enable(pm->clock_gate);
+       return ret;
 }
 
 int s5p_mfc_power_off(void)
 {
+       if (!pm->use_clock_gating && !IS_ERR_OR_NULL(pm->clock_gate))
+               clk_disable(pm->clock_gate);
 #ifdef CONFIG_PM
        return pm_runtime_put_sync(pm->device);
 #else