return 0;
}
+static int vega20_populate_umdpstate_clocks(
+ struct pp_hwmgr *hwmgr)
+{
+ struct vega20_hwmgr *data = (struct vega20_hwmgr *)(hwmgr->backend);
+ struct vega20_single_dpm_table *gfx_table = &(data->dpm_table.gfx_table);
+ struct vega20_single_dpm_table *mem_table = &(data->dpm_table.mem_table);
+
+ hwmgr->pstate_sclk = gfx_table->dpm_levels[0].value;
+ hwmgr->pstate_mclk = mem_table->dpm_levels[0].value;
+
+ if (gfx_table->count > VEGA20_UMD_PSTATE_GFXCLK_LEVEL &&
+ mem_table->count > VEGA20_UMD_PSTATE_MCLK_LEVEL) {
+ hwmgr->pstate_sclk = gfx_table->dpm_levels[VEGA20_UMD_PSTATE_GFXCLK_LEVEL].value;
+ hwmgr->pstate_mclk = mem_table->dpm_levels[VEGA20_UMD_PSTATE_MCLK_LEVEL].value;
+ }
+
+ return 0;
+}
+
static int vega20_get_max_sustainable_clock(struct pp_hwmgr *hwmgr,
PP_Clock *clock, PPCLK_e clock_select)
{
"[EnableDPMTasks] Failed to initialize odn settings!",
return result);
- return result;
+ result = vega20_populate_umdpstate_clocks(hwmgr);
+ PP_ASSERT_WITH_CODE(!result,
+ "[EnableDPMTasks] Failed to populate umdpstate clocks!",
+ return result);
+
+ return 0;
}
static uint32_t vega20_find_lowest_dpm_level(