drm/radeon/kms: upstream power table updates
Signed-off-by: Alex Deucher <alexdeucher@gmail.com> Signed-off-by: Dave Airlie <airlied@redhat.com>
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@ -6475,7 +6475,17 @@ typedef struct _ATOM_PPLIB_THERMALCONTROLLER
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#define ATOM_PP_THERMALCONTROLLER_ADT7473 9
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#define ATOM_PP_THERMALCONTROLLER_EXTERNAL_GPIO 11
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#define ATOM_PP_THERMALCONTROLLER_EVERGREEN 12
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#define ATOM_PP_THERMALCONTROLLER_EMC2103 13 /* 0x0D */ // Only fan control will be implemented, do NOT show this in PPGen.
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#define ATOM_PP_THERMALCONTROLLER_SUMO 14 /* 0x0E */ // Sumo type, used internally
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#define ATOM_PP_THERMALCONTROLLER_NISLANDS 15
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// Thermal controller 'combo type' to use an external controller for Fan control and an internal controller for thermal.
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// We probably should reserve the bit 0x80 for this use.
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// To keep the number of these types low we should also use the same code for all ASICs (i.e. do not distinguish RV6xx and RV7xx Internal here).
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// The driver can pick the correct internal controller based on the ASIC.
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#define ATOM_PP_THERMALCONTROLLER_ADT7473_WITH_INTERNAL 0x89 // ADT7473 Fan Control + Internal Thermal Controller
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#define ATOM_PP_THERMALCONTROLLER_EMC2103_WITH_INTERNAL 0x8D // EMC2103 Fan Control + Internal Thermal Controller
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typedef struct _ATOM_PPLIB_STATE
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{
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@ -6572,6 +6582,29 @@ typedef struct _ATOM_PPLIB_POWERPLAYTABLE3
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USHORT usExtendendedHeaderOffset;
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} ATOM_PPLIB_POWERPLAYTABLE3, *LPATOM_PPLIB_POWERPLAYTABLE3;
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typedef struct _ATOM_PPLIB_POWERPLAYTABLE4
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{
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ATOM_PPLIB_POWERPLAYTABLE3 basicTable3;
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ULONG ulGoldenPPID; // PPGen use only
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ULONG ulGoldenRevision; // PPGen use only
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USHORT usVddcDependencyOnSCLKOffset;
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USHORT usVddciDependencyOnMCLKOffset;
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USHORT usVddcDependencyOnMCLKOffset;
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USHORT usMaxClockVoltageOnDCOffset;
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USHORT usReserved[2];
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} ATOM_PPLIB_POWERPLAYTABLE4, *LPATOM_PPLIB_POWERPLAYTABLE4;
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typedef struct _ATOM_PPLIB_POWERPLAYTABLE5
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{
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ATOM_PPLIB_POWERPLAYTABLE4 basicTable4;
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ULONG ulTDPLimit;
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ULONG ulNearTDPLimit;
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ULONG ulSQRampingThreshold;
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USHORT usCACLeakageTableOffset; // Points to ATOM_PPLIB_CAC_Leakage_Table
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ULONG ulCACLeakage; // TBD, this parameter is still under discussion. Change to ulReserved if not needed.
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ULONG ulReserved;
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} ATOM_PPLIB_POWERPLAYTABLE5, *LPATOM_PPLIB_POWERPLAYTABLE5;
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//// ATOM_PPLIB_NONCLOCK_INFO::usClassification
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#define ATOM_PPLIB_CLASSIFICATION_UI_MASK 0x0007
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#define ATOM_PPLIB_CLASSIFICATION_UI_SHIFT 0
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@ -6595,6 +6628,10 @@ typedef struct _ATOM_PPLIB_POWERPLAYTABLE3
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#define ATOM_PPLIB_CLASSIFICATION_HDSTATE 0x4000
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#define ATOM_PPLIB_CLASSIFICATION_SDSTATE 0x8000
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//// ATOM_PPLIB_NONCLOCK_INFO::usClassification2
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#define ATOM_PPLIB_CLASSIFICATION2_LIMITEDPOWERSOURCE_2 0x0001
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#define ATOM_PPLIB_CLASSIFICATION2_ULV 0x0002
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//// ATOM_PPLIB_NONCLOCK_INFO::ulCapsAndSettings
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#define ATOM_PPLIB_SINGLE_DISPLAY_ONLY 0x00000001
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#define ATOM_PPLIB_SUPPORTS_VIDEO_PLAYBACK 0x00000002
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@ -6627,9 +6664,21 @@ typedef struct _ATOM_PPLIB_POWERPLAYTABLE3
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#define ATOM_PPLIB_M3ARB_MASK 0x00060000
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#define ATOM_PPLIB_M3ARB_SHIFT 17
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#define ATOM_PPLIB_ENABLE_DRR 0x00080000
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// remaining 16 bits are reserved
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typedef struct _ATOM_PPLIB_THERMAL_STATE
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{
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UCHAR ucMinTemperature;
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UCHAR ucMaxTemperature;
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UCHAR ucThermalAction;
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}ATOM_PPLIB_THERMAL_STATE, *LPATOM_PPLIB_THERMAL_STATE;
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// Contained in an array starting at the offset
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// in ATOM_PPLIB_POWERPLAYTABLE::usNonClockInfoArrayOffset.
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// referenced from ATOM_PPLIB_STATE_INFO::ucNonClockStateIndex
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#define ATOM_PPLIB_NONCLOCKINFO_VER1 12
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#define ATOM_PPLIB_NONCLOCKINFO_VER2 24
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typedef struct _ATOM_PPLIB_NONCLOCK_INFO
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{
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USHORT usClassification;
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@ -6637,15 +6686,15 @@ typedef struct _ATOM_PPLIB_NONCLOCK_INFO
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UCHAR ucMaxTemperature;
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ULONG ulCapsAndSettings;
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UCHAR ucRequiredPower;
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UCHAR ucUnused1[3];
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USHORT usClassification2;
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ULONG ulVCLK;
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ULONG ulDCLK;
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UCHAR ucUnused[5];
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} ATOM_PPLIB_NONCLOCK_INFO;
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// Contained in an array starting at the offset
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// in ATOM_PPLIB_POWERPLAYTABLE::usClockInfoArrayOffset.
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// referenced from ATOM_PPLIB_STATE::ucClockStateIndices
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#define ATOM_PPLIB_NONCLOCKINFO_VER1 12
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#define ATOM_PPLIB_NONCLOCKINFO_VER2 24
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typedef struct _ATOM_PPLIB_R600_CLOCK_INFO
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{
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USHORT usEngineClockLow;
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@ -6716,6 +6765,93 @@ typedef struct _ATOM_PPLIB_RS780_CLOCK_INFO
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#define ATOM_PPLIB_RS780_HTLINKFREQ_LOW 1
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#define ATOM_PPLIB_RS780_HTLINKFREQ_HIGH 2
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typedef struct _ATOM_PPLIB_SUMO_CLOCK_INFO{
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USHORT usEngineClockLow; //clockfrequency & 0xFFFF. The unit is in 10khz
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UCHAR ucEngineClockHigh; //clockfrequency >> 16.
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UCHAR vddcIndex; //2-bit vddc index;
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UCHAR leakage; //please use 8-bit absolute value, not the 6-bit % value
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//please initalize to 0
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UCHAR rsv;
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//please initalize to 0
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USHORT rsv1;
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//please initialize to 0s
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ULONG rsv2[2];
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}ATOM_PPLIB_SUMO_CLOCK_INFO;
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typedef struct _ATOM_PPLIB_STATE_V2
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{
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//number of valid dpm levels in this state; Driver uses it to calculate the whole
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//size of the state: sizeof(ATOM_PPLIB_STATE_V2) + (ucNumDPMLevels - 1) * sizeof(UCHAR)
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UCHAR ucNumDPMLevels;
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//a index to the array of nonClockInfos
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UCHAR nonClockInfoIndex;
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/**
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* Driver will read the first ucNumDPMLevels in this array
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*/
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UCHAR clockInfoIndex[1];
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} ATOM_PPLIB_STATE_V2;
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typedef struct StateArray{
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//how many states we have
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UCHAR ucNumEntries;
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ATOM_PPLIB_STATE_V2 states[1];
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}StateArray;
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typedef struct ClockInfoArray{
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//how many clock levels we have
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UCHAR ucNumEntries;
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//sizeof(ATOM_PPLIB_SUMO_CLOCK_INFO)
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UCHAR ucEntrySize;
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//this is for Sumo
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ATOM_PPLIB_SUMO_CLOCK_INFO clockInfo[1];
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}ClockInfoArray;
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typedef struct NonClockInfoArray{
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//how many non-clock levels we have. normally should be same as number of states
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UCHAR ucNumEntries;
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//sizeof(ATOM_PPLIB_NONCLOCK_INFO)
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UCHAR ucEntrySize;
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ATOM_PPLIB_NONCLOCK_INFO nonClockInfo[1];
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}NonClockInfoArray;
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typedef struct _ATOM_PPLIB_Clock_Voltage_Dependency_Record
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{
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USHORT usClockLow;
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UCHAR ucClockHigh;
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USHORT usVoltage;
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}ATOM_PPLIB_Clock_Voltage_Dependency_Record;
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typedef struct _ATOM_PPLIB_Clock_Voltage_Dependency_Table
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{
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UCHAR ucNumEntries; // Number of entries.
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ATOM_PPLIB_Clock_Voltage_Dependency_Record entries[1]; // Dynamically allocate entries.
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}ATOM_PPLIB_Clock_Voltage_Dependency_Table;
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typedef struct _ATOM_PPLIB_Clock_Voltage_Limit_Record
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{
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USHORT usSclkLow;
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UCHAR ucSclkHigh;
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USHORT usMclkLow;
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UCHAR ucMclkHigh;
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USHORT usVddc;
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USHORT usVddci;
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}ATOM_PPLIB_Clock_Voltage_Limit_Record;
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typedef struct _ATOM_PPLIB_Clock_Voltage_Limit_Table
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{
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UCHAR ucNumEntries; // Number of entries.
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ATOM_PPLIB_Clock_Voltage_Limit_Record entries[1]; // Dynamically allocate entries.
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}ATOM_PPLIB_Clock_Voltage_Limit_Table;
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/**************************************************************************/
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