data->dpm_table.vddc_table.dpm_levels[i].value = allowed_vdd_mclk_table->entries[i].v;
                data->dpm_table.vddc_table.dpm_levels[i].param1 = std_voltage_table->entries[i].Leakage;
                /* param1 is for corresponding std voltage */
-               data->dpm_table.vddc_table.dpm_levels[i].enabled = 1;
+               data->dpm_table.vddc_table.dpm_levels[i].enabled = true;
        }
 
        data->dpm_table.vddc_table.count = allowed_vdd_sclk_table->count;
                /* Initialize Vddci DPM table based on allow Mclk values */
                for (i = 0; i < allowed_vdd_mclk_table->count; i++) {
                        data->dpm_table.vddci_table.dpm_levels[i].value = allowed_vdd_mclk_table->entries[i].v;
-                       data->dpm_table.vddci_table.dpm_levels[i].enabled = 1;
+                       data->dpm_table.vddci_table.dpm_levels[i].enabled = true;
                }
                data->dpm_table.vddci_table.count = allowed_vdd_mclk_table->count;
        }
                 */
                for (i = 0; i < allowed_vdd_mclk_table->count; i++) {
                        data->dpm_table.mvdd_table.dpm_levels[i].value = allowed_vdd_mclk_table->entries[i].v;
-                       data->dpm_table.mvdd_table.dpm_levels[i].enabled = 1;
+                       data->dpm_table.mvdd_table.dpm_levels[i].enabled = true;
                }
                data->dpm_table.mvdd_table.count = allowed_vdd_mclk_table->count;
        }