return 0;
 }
 
+static uint32_t vega20_find_lowest_dpm_level(struct vega20_single_dpm_table *table)
+{
+       uint32_t i;
+
+       for (i = 0; i < table->count; i++) {
+               if (table->dpm_levels[i].enabled)
+                       break;
+       }
+       if (i >= table->count) {
+               i = 0;
+               table->dpm_levels[i].enabled = true;
+       }
+
+       return i;
+}
+
+static uint32_t vega20_find_highest_dpm_level(struct vega20_single_dpm_table *table)
+{
+       int i = 0;
+
+       if (!table) {
+               pr_err("[%s] DPM Table does not exist!", __func__);
+               return 0;
+       }
+       if (table->count <= 0) {
+               pr_err("[%s] DPM Table has no entry!", __func__);
+               return 0;
+       }
+       if (table->count > MAX_REGULAR_DPM_NUMBER) {
+               pr_err("[%s] DPM Table has too many entries!", __func__);
+               return MAX_REGULAR_DPM_NUMBER - 1;
+       }
+
+       for (i = table->count - 1; i >= 0; i--) {
+               if (table->dpm_levels[i].enabled)
+                       break;
+       }
+       if (i < 0) {
+               i = 0;
+               table->dpm_levels[i].enabled = true;
+       }
+
+       return i;
+}
+
+static int vega20_force_dpm_highest(struct smu_context *smu)
+{
+       uint32_t soft_level;
+       int ret = 0;
+       struct vega20_dpm_table *dpm_table = (struct vega20_dpm_table *)smu->smu_dpm.dpm_context;
+
+       soft_level = vega20_find_highest_dpm_level(&(dpm_table->gfx_table));
+
+       dpm_table->gfx_table.dpm_state.soft_min_level =
+               dpm_table->gfx_table.dpm_state.soft_max_level =
+               dpm_table->gfx_table.dpm_levels[soft_level].value;
+
+       soft_level = vega20_find_highest_dpm_level(&(dpm_table->mem_table));
+
+       dpm_table->mem_table.dpm_state.soft_min_level =
+               dpm_table->mem_table.dpm_state.soft_max_level =
+               dpm_table->mem_table.dpm_levels[soft_level].value;
+
+       ret = vega20_upload_dpm_min_level(smu);
+       if (ret) {
+               pr_err("Failed to upload boot level to highest!");
+               return ret;
+       }
+
+       ret = vega20_upload_dpm_max_level(smu);
+       if (ret) {
+               pr_err("Failed to upload dpm max level to highest!");
+               return ret;
+       }
+
+       return ret;
+}
+
+static int vega20_force_dpm_lowest(struct smu_context *smu)
+{
+       uint32_t soft_level;
+       int ret = 0;
+       struct vega20_dpm_table *dpm_table = (struct vega20_dpm_table *)smu->smu_dpm.dpm_context;
+
+       soft_level = vega20_find_lowest_dpm_level(&(dpm_table->gfx_table));
+
+       dpm_table->gfx_table.dpm_state.soft_min_level =
+               dpm_table->gfx_table.dpm_state.soft_max_level =
+               dpm_table->gfx_table.dpm_levels[soft_level].value;
+
+       soft_level = vega20_find_lowest_dpm_level(&(dpm_table->mem_table));
+
+       dpm_table->mem_table.dpm_state.soft_min_level =
+               dpm_table->mem_table.dpm_state.soft_max_level =
+               dpm_table->mem_table.dpm_levels[soft_level].value;
+
+       ret = vega20_upload_dpm_min_level(smu);
+       if (ret) {
+               pr_err("Failed to upload boot level to lowest!");
+               return ret;
+       }
+
+       ret = vega20_upload_dpm_max_level(smu);
+       if (ret) {
+               pr_err("Failed to upload dpm max level to lowest!");
+               return ret;
+       }
+
+       return ret;
+}
+
 static const struct pptable_funcs vega20_ppt_funcs = {
        .alloc_dpm_context = vega20_allocate_dpm_context,
        .store_powerplay_table = vega20_store_powerplay_table,