enabled = (features_enabled & data->smu_features[i].smu_feature_bitmap) ? true : false;
data->smu_features[i].enabled = enabled;
data->smu_features[i].supported = enabled;
- PP_ASSERT(
- !data->smu_features[i].allowed || enabled,
- "[EnableAllSMUFeatures] Enabled feature is different from allowed, expected disabled!");
}
}
*gfx_freq = 0;
- PP_ASSERT_WITH_CODE(
- smum_send_msg_to_smc_with_parameter(hwmgr, PPSMC_MSG_GetDpmClockFreq, (PPCLK_GFXCLK << 16)) == 0,
+ PP_ASSERT_WITH_CODE(smum_send_msg_to_smc_with_parameter(hwmgr,
+ PPSMC_MSG_GetDpmClockFreq, (PPCLK_GFXCLK << 16)) == 0,
"[GetCurrentGfxClkFreq] Attempt to get Current GFXCLK Frequency Failed!",
return -1);
PP_ASSERT_WITH_CODE(
{
struct vega12_hwmgr *data = (struct vega12_hwmgr *)(hwmgr->backend);
Watermarks_t *table = &(data->smc_state_table.water_marks_table);
- int result = 0;
uint32_t i;
if (!data->registry_data.disable_water_mark &&
data->water_marks_bitmap &= ~WaterMarksLoaded;
}
- return result;
+ return 0;
}
static int vega12_force_clock_level(struct pp_hwmgr *hwmgr,
QuadraticInt_t ReservedEquation2;
QuadraticInt_t ReservedEquation3;
- uint16_t MinVoltageUlvGfx;
- uint16_t MinVoltageUlvSoc;
+ uint16_t MinVoltageUlvGfx;
+ uint16_t MinVoltageUlvSoc;
- uint32_t Reserved[14];
+ uint32_t Reserved[14];
uint8_t padding8_4;
- uint8_t PllGfxclkSpreadEnabled;
- uint8_t PllGfxclkSpreadPercent;
- uint16_t PllGfxclkSpreadFreq;
+ uint8_t PllGfxclkSpreadEnabled;
+ uint8_t PllGfxclkSpreadPercent;
+ uint16_t PllGfxclkSpreadFreq;
uint8_t UclkSpreadEnabled;
uint8_t UclkSpreadPercent;
uint8_t SocclkSpreadPercent;
uint16_t SocclkSpreadFreq;
- uint8_t AcgGfxclkSpreadEnabled;
- uint8_t AcgGfxclkSpreadPercent;
- uint16_t AcgGfxclkSpreadFreq;
+ uint8_t AcgGfxclkSpreadEnabled;
+ uint8_t AcgGfxclkSpreadPercent;
+ uint16_t AcgGfxclkSpreadFreq;
uint8_t Vr2_I2C_address;
uint8_t padding_vr2[3];