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https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-04-29 15:15:28 -04:00
drm/amd/pm: remove dump_pptable functions
They're not used. Tested-by: Mario Limonciello <mario.limonciello@amd.com> Reviewed-by: Kenneth Feng <kenneth.feng@amd.com> Signed-off-by: Pierre-Eric Pelloux-Prayer <pierre-eric.pelloux-prayer@amd.com> Signed-off-by: Alex Deucher <alexander.deucher@amd.com>
This commit is contained in:
committed by
Alex Deucher
parent
a1e2da6a50
commit
b5353c05ea
@@ -62,578 +62,6 @@ static const void *get_powerplay_table(struct pp_hwmgr *hwmgr)
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return table_address;
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}
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#if 0
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static void dump_pptable(PPTable_t *pptable)
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{
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int i;
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pr_info("Version = 0x%08x\n", pptable->Version);
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pr_info("FeaturesToRun[0] = 0x%08x\n", pptable->FeaturesToRun[0]);
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pr_info("FeaturesToRun[1] = 0x%08x\n", pptable->FeaturesToRun[1]);
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pr_info("SocketPowerLimitAc0 = %d\n", pptable->SocketPowerLimitAc0);
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pr_info("SocketPowerLimitAc0Tau = %d\n", pptable->SocketPowerLimitAc0Tau);
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pr_info("SocketPowerLimitAc1 = %d\n", pptable->SocketPowerLimitAc1);
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pr_info("SocketPowerLimitAc1Tau = %d\n", pptable->SocketPowerLimitAc1Tau);
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pr_info("SocketPowerLimitAc2 = %d\n", pptable->SocketPowerLimitAc2);
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pr_info("SocketPowerLimitAc2Tau = %d\n", pptable->SocketPowerLimitAc2Tau);
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pr_info("SocketPowerLimitAc3 = %d\n", pptable->SocketPowerLimitAc3);
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pr_info("SocketPowerLimitAc3Tau = %d\n", pptable->SocketPowerLimitAc3Tau);
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pr_info("SocketPowerLimitDc = %d\n", pptable->SocketPowerLimitDc);
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pr_info("SocketPowerLimitDcTau = %d\n", pptable->SocketPowerLimitDcTau);
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pr_info("TdcLimitSoc = %d\n", pptable->TdcLimitSoc);
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pr_info("TdcLimitSocTau = %d\n", pptable->TdcLimitSocTau);
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pr_info("TdcLimitGfx = %d\n", pptable->TdcLimitGfx);
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pr_info("TdcLimitGfxTau = %d\n", pptable->TdcLimitGfxTau);
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pr_info("TedgeLimit = %d\n", pptable->TedgeLimit);
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pr_info("ThotspotLimit = %d\n", pptable->ThotspotLimit);
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pr_info("ThbmLimit = %d\n", pptable->ThbmLimit);
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pr_info("Tvr_gfxLimit = %d\n", pptable->Tvr_gfxLimit);
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pr_info("Tvr_memLimit = %d\n", pptable->Tvr_memLimit);
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pr_info("Tliquid1Limit = %d\n", pptable->Tliquid1Limit);
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pr_info("Tliquid2Limit = %d\n", pptable->Tliquid2Limit);
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pr_info("TplxLimit = %d\n", pptable->TplxLimit);
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pr_info("FitLimit = %d\n", pptable->FitLimit);
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pr_info("PpmPowerLimit = %d\n", pptable->PpmPowerLimit);
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pr_info("PpmTemperatureThreshold = %d\n", pptable->PpmTemperatureThreshold);
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pr_info("MemoryOnPackage = 0x%02x\n", pptable->MemoryOnPackage);
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pr_info("padding8_limits = 0x%02x\n", pptable->padding8_limits);
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pr_info("Tvr_SocLimit = %d\n", pptable->Tvr_SocLimit);
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pr_info("UlvVoltageOffsetSoc = %d\n", pptable->UlvVoltageOffsetSoc);
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pr_info("UlvVoltageOffsetGfx = %d\n", pptable->UlvVoltageOffsetGfx);
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pr_info("UlvSmnclkDid = %d\n", pptable->UlvSmnclkDid);
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pr_info("UlvMp1clkDid = %d\n", pptable->UlvMp1clkDid);
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pr_info("UlvGfxclkBypass = %d\n", pptable->UlvGfxclkBypass);
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pr_info("Padding234 = 0x%02x\n", pptable->Padding234);
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pr_info("MinVoltageGfx = %d\n", pptable->MinVoltageGfx);
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pr_info("MinVoltageSoc = %d\n", pptable->MinVoltageSoc);
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pr_info("MaxVoltageGfx = %d\n", pptable->MaxVoltageGfx);
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pr_info("MaxVoltageSoc = %d\n", pptable->MaxVoltageSoc);
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pr_info("LoadLineResistanceGfx = %d\n", pptable->LoadLineResistanceGfx);
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pr_info("LoadLineResistanceSoc = %d\n", pptable->LoadLineResistanceSoc);
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pr_info("[PPCLK_GFXCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_GFXCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_GFXCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_GFXCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_GFXCLK].padding,
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pptable->DpmDescriptor[PPCLK_GFXCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_GFXCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.c);
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pr_info("[PPCLK_VCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_VCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_VCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_VCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_VCLK].padding,
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pptable->DpmDescriptor[PPCLK_VCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_VCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.c);
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pr_info("[PPCLK_DCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_DCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_DCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_DCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_DCLK].padding,
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pptable->DpmDescriptor[PPCLK_DCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_DCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.c);
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pr_info("[PPCLK_ECLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_ECLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_ECLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_ECLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_ECLK].padding,
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pptable->DpmDescriptor[PPCLK_ECLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_ECLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_ECLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_ECLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_ECLK].SsCurve.c);
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pr_info("[PPCLK_SOCCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_SOCCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_SOCCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_SOCCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_SOCCLK].padding,
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pptable->DpmDescriptor[PPCLK_SOCCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_SOCCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.c);
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pr_info("[PPCLK_UCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_UCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_UCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_UCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_UCLK].padding,
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pptable->DpmDescriptor[PPCLK_UCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_UCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.c);
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pr_info("[PPCLK_DCEFCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_DCEFCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].padding,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_DCEFCLK].SsCurve.c);
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pr_info("[PPCLK_DISPCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_DISPCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_DISPCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_DISPCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_DISPCLK].padding,
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pptable->DpmDescriptor[PPCLK_DISPCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_DISPCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_DISPCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_DISPCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_DISPCLK].SsCurve.c);
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pr_info("[PPCLK_PIXCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_PIXCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_PIXCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_PIXCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_PIXCLK].padding,
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pptable->DpmDescriptor[PPCLK_PIXCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_PIXCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_PIXCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_PIXCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_PIXCLK].SsCurve.c);
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pr_info("[PPCLK_PHYCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_PHYCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_PHYCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_PHYCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_PHYCLK].padding,
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pptable->DpmDescriptor[PPCLK_PHYCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_PHYCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_PHYCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_PHYCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_PHYCLK].SsCurve.c);
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pr_info("[PPCLK_FCLK]\n"
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" .VoltageMode = 0x%02x\n"
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" .SnapToDiscrete = 0x%02x\n"
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" .NumDiscreteLevels = 0x%02x\n"
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" .padding = 0x%02x\n"
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" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
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" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n",
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pptable->DpmDescriptor[PPCLK_FCLK].VoltageMode,
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pptable->DpmDescriptor[PPCLK_FCLK].SnapToDiscrete,
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pptable->DpmDescriptor[PPCLK_FCLK].NumDiscreteLevels,
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pptable->DpmDescriptor[PPCLK_FCLK].padding,
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pptable->DpmDescriptor[PPCLK_FCLK].ConversionToAvfsClk.m,
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pptable->DpmDescriptor[PPCLK_FCLK].ConversionToAvfsClk.b,
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pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.a,
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pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.b,
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pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.c);
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pr_info("FreqTableGfx\n");
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for (i = 0; i < NUM_GFXCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableGfx[i]);
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pr_info("FreqTableVclk\n");
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for (i = 0; i < NUM_VCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableVclk[i]);
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pr_info("FreqTableDclk\n");
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for (i = 0; i < NUM_DCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableDclk[i]);
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pr_info("FreqTableEclk\n");
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for (i = 0; i < NUM_ECLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableEclk[i]);
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pr_info("FreqTableSocclk\n");
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for (i = 0; i < NUM_SOCCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableSocclk[i]);
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pr_info("FreqTableUclk\n");
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for (i = 0; i < NUM_UCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableUclk[i]);
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pr_info("FreqTableFclk\n");
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for (i = 0; i < NUM_FCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableFclk[i]);
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pr_info("FreqTableDcefclk\n");
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for (i = 0; i < NUM_DCEFCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableDcefclk[i]);
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pr_info("FreqTableDispclk\n");
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for (i = 0; i < NUM_DISPCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTableDispclk[i]);
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pr_info("FreqTablePixclk\n");
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for (i = 0; i < NUM_PIXCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTablePixclk[i]);
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pr_info("FreqTablePhyclk\n");
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for (i = 0; i < NUM_PHYCLK_DPM_LEVELS; i++)
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pr_info(" .[%02d] = %d\n", i, pptable->FreqTablePhyclk[i]);
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pr_info("DcModeMaxFreq[PPCLK_GFXCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_GFXCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_VCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_VCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_DCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_DCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_ECLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_ECLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_SOCCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_SOCCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_UCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_UCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_DCEFCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_DCEFCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_DISPCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_DISPCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_PIXCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_PIXCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_PHYCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_PHYCLK]);
|
||||
pr_info("DcModeMaxFreq[PPCLK_FCLK] = %d\n", pptable->DcModeMaxFreq[PPCLK_FCLK]);
|
||||
pr_info("Padding8_Clks = %d\n", pptable->Padding8_Clks);
|
||||
|
||||
pr_info("Mp0clkFreq\n");
|
||||
for (i = 0; i < NUM_MP0CLK_DPM_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->Mp0clkFreq[i]);
|
||||
|
||||
pr_info("Mp0DpmVoltage\n");
|
||||
for (i = 0; i < NUM_MP0CLK_DPM_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->Mp0DpmVoltage[i]);
|
||||
|
||||
pr_info("GfxclkFidle = 0x%x\n", pptable->GfxclkFidle);
|
||||
pr_info("GfxclkSlewRate = 0x%x\n", pptable->GfxclkSlewRate);
|
||||
pr_info("CksEnableFreq = 0x%x\n", pptable->CksEnableFreq);
|
||||
pr_info("Padding789 = 0x%x\n", pptable->Padding789);
|
||||
pr_info("CksVoltageOffset[a = 0x%08x b = 0x%08x c = 0x%08x]\n",
|
||||
pptable->CksVoltageOffset.a,
|
||||
pptable->CksVoltageOffset.b,
|
||||
pptable->CksVoltageOffset.c);
|
||||
pr_info("Padding567[0] = 0x%x\n", pptable->Padding567[0]);
|
||||
pr_info("Padding567[1] = 0x%x\n", pptable->Padding567[1]);
|
||||
pr_info("Padding567[2] = 0x%x\n", pptable->Padding567[2]);
|
||||
pr_info("Padding567[3] = 0x%x\n", pptable->Padding567[3]);
|
||||
pr_info("GfxclkDsMaxFreq = %d\n", pptable->GfxclkDsMaxFreq);
|
||||
pr_info("GfxclkSource = 0x%x\n", pptable->GfxclkSource);
|
||||
pr_info("Padding456 = 0x%x\n", pptable->Padding456);
|
||||
|
||||
pr_info("LowestUclkReservedForUlv = %d\n", pptable->LowestUclkReservedForUlv);
|
||||
pr_info("Padding8_Uclk[0] = 0x%x\n", pptable->Padding8_Uclk[0]);
|
||||
pr_info("Padding8_Uclk[1] = 0x%x\n", pptable->Padding8_Uclk[1]);
|
||||
pr_info("Padding8_Uclk[2] = 0x%x\n", pptable->Padding8_Uclk[2]);
|
||||
|
||||
pr_info("PcieGenSpeed\n");
|
||||
for (i = 0; i < NUM_LINK_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->PcieGenSpeed[i]);
|
||||
|
||||
pr_info("PcieLaneCount\n");
|
||||
for (i = 0; i < NUM_LINK_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->PcieLaneCount[i]);
|
||||
|
||||
pr_info("LclkFreq\n");
|
||||
for (i = 0; i < NUM_LINK_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->LclkFreq[i]);
|
||||
|
||||
pr_info("EnableTdpm = %d\n", pptable->EnableTdpm);
|
||||
pr_info("TdpmHighHystTemperature = %d\n", pptable->TdpmHighHystTemperature);
|
||||
pr_info("TdpmLowHystTemperature = %d\n", pptable->TdpmLowHystTemperature);
|
||||
pr_info("GfxclkFreqHighTempLimit = %d\n", pptable->GfxclkFreqHighTempLimit);
|
||||
|
||||
pr_info("FanStopTemp = %d\n", pptable->FanStopTemp);
|
||||
pr_info("FanStartTemp = %d\n", pptable->FanStartTemp);
|
||||
|
||||
pr_info("FanGainEdge = %d\n", pptable->FanGainEdge);
|
||||
pr_info("FanGainHotspot = %d\n", pptable->FanGainHotspot);
|
||||
pr_info("FanGainLiquid = %d\n", pptable->FanGainLiquid);
|
||||
pr_info("FanGainVrGfx = %d\n", pptable->FanGainVrGfx);
|
||||
pr_info("FanGainVrSoc = %d\n", pptable->FanGainVrSoc);
|
||||
pr_info("FanGainPlx = %d\n", pptable->FanGainPlx);
|
||||
pr_info("FanGainHbm = %d\n", pptable->FanGainHbm);
|
||||
pr_info("FanPwmMin = %d\n", pptable->FanPwmMin);
|
||||
pr_info("FanAcousticLimitRpm = %d\n", pptable->FanAcousticLimitRpm);
|
||||
pr_info("FanThrottlingRpm = %d\n", pptable->FanThrottlingRpm);
|
||||
pr_info("FanMaximumRpm = %d\n", pptable->FanMaximumRpm);
|
||||
pr_info("FanTargetTemperature = %d\n", pptable->FanTargetTemperature);
|
||||
pr_info("FanTargetGfxclk = %d\n", pptable->FanTargetGfxclk);
|
||||
pr_info("FanZeroRpmEnable = %d\n", pptable->FanZeroRpmEnable);
|
||||
pr_info("FanTachEdgePerRev = %d\n", pptable->FanTachEdgePerRev);
|
||||
|
||||
pr_info("FuzzyFan_ErrorSetDelta = %d\n", pptable->FuzzyFan_ErrorSetDelta);
|
||||
pr_info("FuzzyFan_ErrorRateSetDelta = %d\n", pptable->FuzzyFan_ErrorRateSetDelta);
|
||||
pr_info("FuzzyFan_PwmSetDelta = %d\n", pptable->FuzzyFan_PwmSetDelta);
|
||||
pr_info("FuzzyFan_Reserved = %d\n", pptable->FuzzyFan_Reserved);
|
||||
|
||||
pr_info("OverrideAvfsGb[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->OverrideAvfsGb[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("OverrideAvfsGb[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->OverrideAvfsGb[AVFS_VOLTAGE_SOC]);
|
||||
pr_info("Padding8_Avfs[0] = %d\n", pptable->Padding8_Avfs[0]);
|
||||
pr_info("Padding8_Avfs[1] = %d\n", pptable->Padding8_Avfs[1]);
|
||||
|
||||
pr_info("qAvfsGb[AVFS_VOLTAGE_GFX]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_GFX].a,
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_GFX].b,
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_GFX].c);
|
||||
pr_info("qAvfsGb[AVFS_VOLTAGE_SOC]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_SOC].a,
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_SOC].b,
|
||||
pptable->qAvfsGb[AVFS_VOLTAGE_SOC].c);
|
||||
pr_info("dBtcGbGfxCksOn{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbGfxCksOn.a,
|
||||
pptable->dBtcGbGfxCksOn.b,
|
||||
pptable->dBtcGbGfxCksOn.c);
|
||||
pr_info("dBtcGbGfxCksOff{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbGfxCksOff.a,
|
||||
pptable->dBtcGbGfxCksOff.b,
|
||||
pptable->dBtcGbGfxCksOff.c);
|
||||
pr_info("dBtcGbGfxAfll{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbGfxAfll.a,
|
||||
pptable->dBtcGbGfxAfll.b,
|
||||
pptable->dBtcGbGfxAfll.c);
|
||||
pr_info("dBtcGbSoc{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbSoc.a,
|
||||
pptable->dBtcGbSoc.b,
|
||||
pptable->dBtcGbSoc.c);
|
||||
pr_info("qAgingGb[AVFS_VOLTAGE_GFX]{m = 0x%x b = 0x%x}\n",
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_GFX].m,
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_GFX].b);
|
||||
pr_info("qAgingGb[AVFS_VOLTAGE_SOC]{m = 0x%x b = 0x%x}\n",
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_SOC].m,
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_SOC].b);
|
||||
|
||||
pr_info("qStaticVoltageOffset[AVFS_VOLTAGE_GFX]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].a,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].b,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].c);
|
||||
pr_info("qStaticVoltageOffset[AVFS_VOLTAGE_SOC]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].a,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].b,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].c);
|
||||
|
||||
pr_info("DcTol[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcTol[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("DcTol[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcTol[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
pr_info("DcBtcEnabled[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcEnabled[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("DcBtcEnabled[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcEnabled[AVFS_VOLTAGE_SOC]);
|
||||
pr_info("Padding8_GfxBtc[0] = 0x%x\n", pptable->Padding8_GfxBtc[0]);
|
||||
pr_info("Padding8_GfxBtc[1] = 0x%x\n", pptable->Padding8_GfxBtc[1]);
|
||||
|
||||
pr_info("DcBtcMin[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcMin[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("DcBtcMin[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcMin[AVFS_VOLTAGE_SOC]);
|
||||
pr_info("DcBtcMax[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcMax[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("DcBtcMax[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcMax[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
pr_info("XgmiLinkSpeed\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiLinkSpeed[i]);
|
||||
pr_info("XgmiLinkWidth\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiLinkWidth[i]);
|
||||
pr_info("XgmiFclkFreq\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiFclkFreq[i]);
|
||||
pr_info("XgmiUclkFreq\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiUclkFreq[i]);
|
||||
pr_info("XgmiSocclkFreq\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiSocclkFreq[i]);
|
||||
pr_info("XgmiSocVoltage\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
pr_info(" .[%d] = %d\n", i, pptable->XgmiSocVoltage[i]);
|
||||
|
||||
pr_info("DebugOverrides = 0x%x\n", pptable->DebugOverrides);
|
||||
pr_info("ReservedEquation0{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation0.a,
|
||||
pptable->ReservedEquation0.b,
|
||||
pptable->ReservedEquation0.c);
|
||||
pr_info("ReservedEquation1{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation1.a,
|
||||
pptable->ReservedEquation1.b,
|
||||
pptable->ReservedEquation1.c);
|
||||
pr_info("ReservedEquation2{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation2.a,
|
||||
pptable->ReservedEquation2.b,
|
||||
pptable->ReservedEquation2.c);
|
||||
pr_info("ReservedEquation3{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation3.a,
|
||||
pptable->ReservedEquation3.b,
|
||||
pptable->ReservedEquation3.c);
|
||||
|
||||
pr_info("MinVoltageUlvGfx = %d\n", pptable->MinVoltageUlvGfx);
|
||||
pr_info("MinVoltageUlvSoc = %d\n", pptable->MinVoltageUlvSoc);
|
||||
|
||||
pr_info("MGpuFanBoostLimitRpm = %d\n", pptable->MGpuFanBoostLimitRpm);
|
||||
pr_info("padding16_Fan = %d\n", pptable->padding16_Fan);
|
||||
|
||||
pr_info("FanGainVrMem0 = %d\n", pptable->FanGainVrMem0);
|
||||
pr_info("FanGainVrMem0 = %d\n", pptable->FanGainVrMem0);
|
||||
|
||||
pr_info("DcBtcGb[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcGb[AVFS_VOLTAGE_GFX]);
|
||||
pr_info("DcBtcGb[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcGb[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
for (i = 0; i < 11; i++)
|
||||
pr_info("Reserved[%d] = 0x%x\n", i, pptable->Reserved[i]);
|
||||
|
||||
for (i = 0; i < 3; i++)
|
||||
pr_info("Padding32[%d] = 0x%x\n", i, pptable->Padding32[i]);
|
||||
|
||||
pr_info("MaxVoltageStepGfx = 0x%x\n", pptable->MaxVoltageStepGfx);
|
||||
pr_info("MaxVoltageStepSoc = 0x%x\n", pptable->MaxVoltageStepSoc);
|
||||
|
||||
pr_info("VddGfxVrMapping = 0x%x\n", pptable->VddGfxVrMapping);
|
||||
pr_info("VddSocVrMapping = 0x%x\n", pptable->VddSocVrMapping);
|
||||
pr_info("VddMem0VrMapping = 0x%x\n", pptable->VddMem0VrMapping);
|
||||
pr_info("VddMem1VrMapping = 0x%x\n", pptable->VddMem1VrMapping);
|
||||
|
||||
pr_info("GfxUlvPhaseSheddingMask = 0x%x\n", pptable->GfxUlvPhaseSheddingMask);
|
||||
pr_info("SocUlvPhaseSheddingMask = 0x%x\n", pptable->SocUlvPhaseSheddingMask);
|
||||
pr_info("ExternalSensorPresent = 0x%x\n", pptable->ExternalSensorPresent);
|
||||
pr_info("Padding8_V = 0x%x\n", pptable->Padding8_V);
|
||||
|
||||
pr_info("GfxMaxCurrent = 0x%x\n", pptable->GfxMaxCurrent);
|
||||
pr_info("GfxOffset = 0x%x\n", pptable->GfxOffset);
|
||||
pr_info("Padding_TelemetryGfx = 0x%x\n", pptable->Padding_TelemetryGfx);
|
||||
|
||||
pr_info("SocMaxCurrent = 0x%x\n", pptable->SocMaxCurrent);
|
||||
pr_info("SocOffset = 0x%x\n", pptable->SocOffset);
|
||||
pr_info("Padding_TelemetrySoc = 0x%x\n", pptable->Padding_TelemetrySoc);
|
||||
|
||||
pr_info("Mem0MaxCurrent = 0x%x\n", pptable->Mem0MaxCurrent);
|
||||
pr_info("Mem0Offset = 0x%x\n", pptable->Mem0Offset);
|
||||
pr_info("Padding_TelemetryMem0 = 0x%x\n", pptable->Padding_TelemetryMem0);
|
||||
|
||||
pr_info("Mem1MaxCurrent = 0x%x\n", pptable->Mem1MaxCurrent);
|
||||
pr_info("Mem1Offset = 0x%x\n", pptable->Mem1Offset);
|
||||
pr_info("Padding_TelemetryMem1 = 0x%x\n", pptable->Padding_TelemetryMem1);
|
||||
|
||||
pr_info("AcDcGpio = %d\n", pptable->AcDcGpio);
|
||||
pr_info("AcDcPolarity = %d\n", pptable->AcDcPolarity);
|
||||
pr_info("VR0HotGpio = %d\n", pptable->VR0HotGpio);
|
||||
pr_info("VR0HotPolarity = %d\n", pptable->VR0HotPolarity);
|
||||
|
||||
pr_info("VR1HotGpio = %d\n", pptable->VR1HotGpio);
|
||||
pr_info("VR1HotPolarity = %d\n", pptable->VR1HotPolarity);
|
||||
pr_info("Padding1 = 0x%x\n", pptable->Padding1);
|
||||
pr_info("Padding2 = 0x%x\n", pptable->Padding2);
|
||||
|
||||
pr_info("LedPin0 = %d\n", pptable->LedPin0);
|
||||
pr_info("LedPin1 = %d\n", pptable->LedPin1);
|
||||
pr_info("LedPin2 = %d\n", pptable->LedPin2);
|
||||
pr_info("padding8_4 = 0x%x\n", pptable->padding8_4);
|
||||
|
||||
pr_info("PllGfxclkSpreadEnabled = %d\n", pptable->PllGfxclkSpreadEnabled);
|
||||
pr_info("PllGfxclkSpreadPercent = %d\n", pptable->PllGfxclkSpreadPercent);
|
||||
pr_info("PllGfxclkSpreadFreq = %d\n", pptable->PllGfxclkSpreadFreq);
|
||||
|
||||
pr_info("UclkSpreadEnabled = %d\n", pptable->UclkSpreadEnabled);
|
||||
pr_info("UclkSpreadPercent = %d\n", pptable->UclkSpreadPercent);
|
||||
pr_info("UclkSpreadFreq = %d\n", pptable->UclkSpreadFreq);
|
||||
|
||||
pr_info("FclkSpreadEnabled = %d\n", pptable->FclkSpreadEnabled);
|
||||
pr_info("FclkSpreadPercent = %d\n", pptable->FclkSpreadPercent);
|
||||
pr_info("FclkSpreadFreq = %d\n", pptable->FclkSpreadFreq);
|
||||
|
||||
pr_info("FllGfxclkSpreadEnabled = %d\n", pptable->FllGfxclkSpreadEnabled);
|
||||
pr_info("FllGfxclkSpreadPercent = %d\n", pptable->FllGfxclkSpreadPercent);
|
||||
pr_info("FllGfxclkSpreadFreq = %d\n", pptable->FllGfxclkSpreadFreq);
|
||||
|
||||
for (i = 0; i < I2C_CONTROLLER_NAME_COUNT; i++) {
|
||||
pr_info("I2cControllers[%d]:\n", i);
|
||||
pr_info(" .Enabled = %d\n",
|
||||
pptable->I2cControllers[i].Enabled);
|
||||
pr_info(" .SlaveAddress = 0x%x\n",
|
||||
pptable->I2cControllers[i].SlaveAddress);
|
||||
pr_info(" .ControllerPort = %d\n",
|
||||
pptable->I2cControllers[i].ControllerPort);
|
||||
pr_info(" .ControllerName = %d\n",
|
||||
pptable->I2cControllers[i].ControllerName);
|
||||
pr_info(" .ThermalThrottler = %d\n",
|
||||
pptable->I2cControllers[i].ThermalThrottler);
|
||||
pr_info(" .I2cProtocol = %d\n",
|
||||
pptable->I2cControllers[i].I2cProtocol);
|
||||
pr_info(" .I2cSpeed = %d\n",
|
||||
pptable->I2cControllers[i].I2cSpeed);
|
||||
}
|
||||
|
||||
for (i = 0; i < 10; i++)
|
||||
pr_info("BoardReserved[%d] = 0x%x\n", i, pptable->BoardReserved[i]);
|
||||
|
||||
for (i = 0; i < 8; i++)
|
||||
pr_info("MmHubPadding[%d] = 0x%x\n", i, pptable->MmHubPadding[i]);
|
||||
}
|
||||
#endif
|
||||
|
||||
static int check_powerplay_tables(
|
||||
struct pp_hwmgr *hwmgr,
|
||||
const ATOM_Vega20_POWERPLAYTABLE *powerplay_table)
|
||||
@@ -652,8 +80,6 @@ static int check_powerplay_tables(
|
||||
return -EINVAL;
|
||||
}
|
||||
|
||||
//dump_pptable(&powerplay_table->smcPPTable);
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
@@ -858,11 +858,6 @@ struct pptable_funcs {
|
||||
*/
|
||||
int (*display_disable_memory_clock_switch)(struct smu_context *smu, bool disable_memory_clock_switch);
|
||||
|
||||
/**
|
||||
* @dump_pptable: Print the power play table to the system log.
|
||||
*/
|
||||
void (*dump_pptable)(struct smu_context *smu);
|
||||
|
||||
/**
|
||||
* @get_power_limit: Get the device's power limits.
|
||||
*/
|
||||
|
||||
@@ -1559,437 +1559,6 @@ static int arcturus_set_performance_level(struct smu_context *smu,
|
||||
return smu_v11_0_set_performance_level(smu, level);
|
||||
}
|
||||
|
||||
static void arcturus_dump_pptable(struct smu_context *smu)
|
||||
{
|
||||
struct smu_table_context *table_context = &smu->smu_table;
|
||||
PPTable_t *pptable = table_context->driver_pptable;
|
||||
int i;
|
||||
|
||||
dev_info(smu->adev->dev, "Dumped PPTable:\n");
|
||||
|
||||
dev_info(smu->adev->dev, "Version = 0x%08x\n", pptable->Version);
|
||||
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[0] = 0x%08x\n", pptable->FeaturesToRun[0]);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[1] = 0x%08x\n", pptable->FeaturesToRun[1]);
|
||||
|
||||
for (i = 0; i < PPT_THROTTLER_COUNT; i++) {
|
||||
dev_info(smu->adev->dev, "SocketPowerLimitAc[%d] = %d\n", i, pptable->SocketPowerLimitAc[i]);
|
||||
dev_info(smu->adev->dev, "SocketPowerLimitAcTau[%d] = %d\n", i, pptable->SocketPowerLimitAcTau[i]);
|
||||
}
|
||||
|
||||
dev_info(smu->adev->dev, "TdcLimitSoc = %d\n", pptable->TdcLimitSoc);
|
||||
dev_info(smu->adev->dev, "TdcLimitSocTau = %d\n", pptable->TdcLimitSocTau);
|
||||
dev_info(smu->adev->dev, "TdcLimitGfx = %d\n", pptable->TdcLimitGfx);
|
||||
dev_info(smu->adev->dev, "TdcLimitGfxTau = %d\n", pptable->TdcLimitGfxTau);
|
||||
|
||||
dev_info(smu->adev->dev, "TedgeLimit = %d\n", pptable->TedgeLimit);
|
||||
dev_info(smu->adev->dev, "ThotspotLimit = %d\n", pptable->ThotspotLimit);
|
||||
dev_info(smu->adev->dev, "TmemLimit = %d\n", pptable->TmemLimit);
|
||||
dev_info(smu->adev->dev, "Tvr_gfxLimit = %d\n", pptable->Tvr_gfxLimit);
|
||||
dev_info(smu->adev->dev, "Tvr_memLimit = %d\n", pptable->Tvr_memLimit);
|
||||
dev_info(smu->adev->dev, "Tvr_socLimit = %d\n", pptable->Tvr_socLimit);
|
||||
dev_info(smu->adev->dev, "FitLimit = %d\n", pptable->FitLimit);
|
||||
|
||||
dev_info(smu->adev->dev, "PpmPowerLimit = %d\n", pptable->PpmPowerLimit);
|
||||
dev_info(smu->adev->dev, "PpmTemperatureThreshold = %d\n", pptable->PpmTemperatureThreshold);
|
||||
|
||||
dev_info(smu->adev->dev, "ThrottlerControlMask = %d\n", pptable->ThrottlerControlMask);
|
||||
|
||||
dev_info(smu->adev->dev, "UlvVoltageOffsetGfx = %d\n", pptable->UlvVoltageOffsetGfx);
|
||||
dev_info(smu->adev->dev, "UlvPadding = 0x%08x\n", pptable->UlvPadding);
|
||||
|
||||
dev_info(smu->adev->dev, "UlvGfxclkBypass = %d\n", pptable->UlvGfxclkBypass);
|
||||
dev_info(smu->adev->dev, "Padding234[0] = 0x%02x\n", pptable->Padding234[0]);
|
||||
dev_info(smu->adev->dev, "Padding234[1] = 0x%02x\n", pptable->Padding234[1]);
|
||||
dev_info(smu->adev->dev, "Padding234[2] = 0x%02x\n", pptable->Padding234[2]);
|
||||
|
||||
dev_info(smu->adev->dev, "MinVoltageGfx = %d\n", pptable->MinVoltageGfx);
|
||||
dev_info(smu->adev->dev, "MinVoltageSoc = %d\n", pptable->MinVoltageSoc);
|
||||
dev_info(smu->adev->dev, "MaxVoltageGfx = %d\n", pptable->MaxVoltageGfx);
|
||||
dev_info(smu->adev->dev, "MaxVoltageSoc = %d\n", pptable->MaxVoltageSoc);
|
||||
|
||||
dev_info(smu->adev->dev, "LoadLineResistanceGfx = %d\n", pptable->LoadLineResistanceGfx);
|
||||
dev_info(smu->adev->dev, "LoadLineResistanceSoc = %d\n", pptable->LoadLineResistanceSoc);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_GFXCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_GFXCLK].Padding16);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_VCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_VCLK].Padding16);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_DCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_DCLK].Padding16);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_SOCCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_SOCCLK].Padding16);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_UCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_UCLK].Padding16);
|
||||
|
||||
dev_info(smu->adev->dev, "[PPCLK_FCLK]\n"
|
||||
" .VoltageMode = 0x%02x\n"
|
||||
" .SnapToDiscrete = 0x%02x\n"
|
||||
" .NumDiscreteLevels = 0x%02x\n"
|
||||
" .padding = 0x%02x\n"
|
||||
" .ConversionToAvfsClk{m = 0x%08x b = 0x%08x}\n"
|
||||
" .SsCurve {a = 0x%08x b = 0x%08x c = 0x%08x}\n"
|
||||
" .SsFmin = 0x%04x\n"
|
||||
" .Padding_16 = 0x%04x\n",
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].VoltageMode,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].SnapToDiscrete,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].NumDiscreteLevels,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].padding,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].ConversionToAvfsClk.m,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].ConversionToAvfsClk.b,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.a,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.b,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].SsCurve.c,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].SsFmin,
|
||||
pptable->DpmDescriptor[PPCLK_FCLK].Padding16);
|
||||
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableGfx\n");
|
||||
for (i = 0; i < NUM_GFXCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableGfx[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableVclk\n");
|
||||
for (i = 0; i < NUM_VCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableVclk[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableDclk\n");
|
||||
for (i = 0; i < NUM_DCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableDclk[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableSocclk\n");
|
||||
for (i = 0; i < NUM_SOCCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableSocclk[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableUclk\n");
|
||||
for (i = 0; i < NUM_UCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableUclk[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "FreqTableFclk\n");
|
||||
for (i = 0; i < NUM_FCLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%02d] = %d\n", i, pptable->FreqTableFclk[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "Mp0clkFreq\n");
|
||||
for (i = 0; i < NUM_MP0CLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->Mp0clkFreq[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "Mp0DpmVoltage\n");
|
||||
for (i = 0; i < NUM_MP0CLK_DPM_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->Mp0DpmVoltage[i]);
|
||||
|
||||
dev_info(smu->adev->dev, "GfxclkFidle = 0x%x\n", pptable->GfxclkFidle);
|
||||
dev_info(smu->adev->dev, "GfxclkSlewRate = 0x%x\n", pptable->GfxclkSlewRate);
|
||||
dev_info(smu->adev->dev, "Padding567[0] = 0x%x\n", pptable->Padding567[0]);
|
||||
dev_info(smu->adev->dev, "Padding567[1] = 0x%x\n", pptable->Padding567[1]);
|
||||
dev_info(smu->adev->dev, "Padding567[2] = 0x%x\n", pptable->Padding567[2]);
|
||||
dev_info(smu->adev->dev, "Padding567[3] = 0x%x\n", pptable->Padding567[3]);
|
||||
dev_info(smu->adev->dev, "GfxclkDsMaxFreq = %d\n", pptable->GfxclkDsMaxFreq);
|
||||
dev_info(smu->adev->dev, "GfxclkSource = 0x%x\n", pptable->GfxclkSource);
|
||||
dev_info(smu->adev->dev, "Padding456 = 0x%x\n", pptable->Padding456);
|
||||
|
||||
dev_info(smu->adev->dev, "EnableTdpm = %d\n", pptable->EnableTdpm);
|
||||
dev_info(smu->adev->dev, "TdpmHighHystTemperature = %d\n", pptable->TdpmHighHystTemperature);
|
||||
dev_info(smu->adev->dev, "TdpmLowHystTemperature = %d\n", pptable->TdpmLowHystTemperature);
|
||||
dev_info(smu->adev->dev, "GfxclkFreqHighTempLimit = %d\n", pptable->GfxclkFreqHighTempLimit);
|
||||
|
||||
dev_info(smu->adev->dev, "FanStopTemp = %d\n", pptable->FanStopTemp);
|
||||
dev_info(smu->adev->dev, "FanStartTemp = %d\n", pptable->FanStartTemp);
|
||||
|
||||
dev_info(smu->adev->dev, "FanGainEdge = %d\n", pptable->FanGainEdge);
|
||||
dev_info(smu->adev->dev, "FanGainHotspot = %d\n", pptable->FanGainHotspot);
|
||||
dev_info(smu->adev->dev, "FanGainVrGfx = %d\n", pptable->FanGainVrGfx);
|
||||
dev_info(smu->adev->dev, "FanGainVrSoc = %d\n", pptable->FanGainVrSoc);
|
||||
dev_info(smu->adev->dev, "FanGainVrMem = %d\n", pptable->FanGainVrMem);
|
||||
dev_info(smu->adev->dev, "FanGainHbm = %d\n", pptable->FanGainHbm);
|
||||
|
||||
dev_info(smu->adev->dev, "FanPwmMin = %d\n", pptable->FanPwmMin);
|
||||
dev_info(smu->adev->dev, "FanAcousticLimitRpm = %d\n", pptable->FanAcousticLimitRpm);
|
||||
dev_info(smu->adev->dev, "FanThrottlingRpm = %d\n", pptable->FanThrottlingRpm);
|
||||
dev_info(smu->adev->dev, "FanMaximumRpm = %d\n", pptable->FanMaximumRpm);
|
||||
dev_info(smu->adev->dev, "FanTargetTemperature = %d\n", pptable->FanTargetTemperature);
|
||||
dev_info(smu->adev->dev, "FanTargetGfxclk = %d\n", pptable->FanTargetGfxclk);
|
||||
dev_info(smu->adev->dev, "FanZeroRpmEnable = %d\n", pptable->FanZeroRpmEnable);
|
||||
dev_info(smu->adev->dev, "FanTachEdgePerRev = %d\n", pptable->FanTachEdgePerRev);
|
||||
dev_info(smu->adev->dev, "FanTempInputSelect = %d\n", pptable->FanTempInputSelect);
|
||||
|
||||
dev_info(smu->adev->dev, "FuzzyFan_ErrorSetDelta = %d\n", pptable->FuzzyFan_ErrorSetDelta);
|
||||
dev_info(smu->adev->dev, "FuzzyFan_ErrorRateSetDelta = %d\n", pptable->FuzzyFan_ErrorRateSetDelta);
|
||||
dev_info(smu->adev->dev, "FuzzyFan_PwmSetDelta = %d\n", pptable->FuzzyFan_PwmSetDelta);
|
||||
dev_info(smu->adev->dev, "FuzzyFan_Reserved = %d\n", pptable->FuzzyFan_Reserved);
|
||||
|
||||
dev_info(smu->adev->dev, "OverrideAvfsGb[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->OverrideAvfsGb[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "OverrideAvfsGb[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->OverrideAvfsGb[AVFS_VOLTAGE_SOC]);
|
||||
dev_info(smu->adev->dev, "Padding8_Avfs[0] = %d\n", pptable->Padding8_Avfs[0]);
|
||||
dev_info(smu->adev->dev, "Padding8_Avfs[1] = %d\n", pptable->Padding8_Avfs[1]);
|
||||
|
||||
dev_info(smu->adev->dev, "dBtcGbGfxPll{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbGfxPll.a,
|
||||
pptable->dBtcGbGfxPll.b,
|
||||
pptable->dBtcGbGfxPll.c);
|
||||
dev_info(smu->adev->dev, "dBtcGbGfxAfll{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbGfxAfll.a,
|
||||
pptable->dBtcGbGfxAfll.b,
|
||||
pptable->dBtcGbGfxAfll.c);
|
||||
dev_info(smu->adev->dev, "dBtcGbSoc{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->dBtcGbSoc.a,
|
||||
pptable->dBtcGbSoc.b,
|
||||
pptable->dBtcGbSoc.c);
|
||||
|
||||
dev_info(smu->adev->dev, "qAgingGb[AVFS_VOLTAGE_GFX]{m = 0x%x b = 0x%x}\n",
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_GFX].m,
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_GFX].b);
|
||||
dev_info(smu->adev->dev, "qAgingGb[AVFS_VOLTAGE_SOC]{m = 0x%x b = 0x%x}\n",
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_SOC].m,
|
||||
pptable->qAgingGb[AVFS_VOLTAGE_SOC].b);
|
||||
|
||||
dev_info(smu->adev->dev, "qStaticVoltageOffset[AVFS_VOLTAGE_GFX]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].a,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].b,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_GFX].c);
|
||||
dev_info(smu->adev->dev, "qStaticVoltageOffset[AVFS_VOLTAGE_SOC]{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].a,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].b,
|
||||
pptable->qStaticVoltageOffset[AVFS_VOLTAGE_SOC].c);
|
||||
|
||||
dev_info(smu->adev->dev, "DcTol[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcTol[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "DcTol[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcTol[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
dev_info(smu->adev->dev, "DcBtcEnabled[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcEnabled[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "DcBtcEnabled[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcEnabled[AVFS_VOLTAGE_SOC]);
|
||||
dev_info(smu->adev->dev, "Padding8_GfxBtc[0] = 0x%x\n", pptable->Padding8_GfxBtc[0]);
|
||||
dev_info(smu->adev->dev, "Padding8_GfxBtc[1] = 0x%x\n", pptable->Padding8_GfxBtc[1]);
|
||||
|
||||
dev_info(smu->adev->dev, "DcBtcMin[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcMin[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "DcBtcMin[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcMin[AVFS_VOLTAGE_SOC]);
|
||||
dev_info(smu->adev->dev, "DcBtcMax[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcMax[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "DcBtcMax[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcMax[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
dev_info(smu->adev->dev, "DcBtcGb[AVFS_VOLTAGE_GFX] = 0x%x\n", pptable->DcBtcGb[AVFS_VOLTAGE_GFX]);
|
||||
dev_info(smu->adev->dev, "DcBtcGb[AVFS_VOLTAGE_SOC] = 0x%x\n", pptable->DcBtcGb[AVFS_VOLTAGE_SOC]);
|
||||
|
||||
dev_info(smu->adev->dev, "XgmiDpmPstates\n");
|
||||
for (i = 0; i < NUM_XGMI_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->XgmiDpmPstates[i]);
|
||||
dev_info(smu->adev->dev, "XgmiDpmSpare[0] = 0x%02x\n", pptable->XgmiDpmSpare[0]);
|
||||
dev_info(smu->adev->dev, "XgmiDpmSpare[1] = 0x%02x\n", pptable->XgmiDpmSpare[1]);
|
||||
|
||||
dev_info(smu->adev->dev, "VDDGFX_TVmin = %d\n", pptable->VDDGFX_TVmin);
|
||||
dev_info(smu->adev->dev, "VDDSOC_TVmin = %d\n", pptable->VDDSOC_TVmin);
|
||||
dev_info(smu->adev->dev, "VDDGFX_Vmin_HiTemp = %d\n", pptable->VDDGFX_Vmin_HiTemp);
|
||||
dev_info(smu->adev->dev, "VDDGFX_Vmin_LoTemp = %d\n", pptable->VDDGFX_Vmin_LoTemp);
|
||||
dev_info(smu->adev->dev, "VDDSOC_Vmin_HiTemp = %d\n", pptable->VDDSOC_Vmin_HiTemp);
|
||||
dev_info(smu->adev->dev, "VDDSOC_Vmin_LoTemp = %d\n", pptable->VDDSOC_Vmin_LoTemp);
|
||||
dev_info(smu->adev->dev, "VDDGFX_TVminHystersis = %d\n", pptable->VDDGFX_TVminHystersis);
|
||||
dev_info(smu->adev->dev, "VDDSOC_TVminHystersis = %d\n", pptable->VDDSOC_TVminHystersis);
|
||||
|
||||
dev_info(smu->adev->dev, "DebugOverrides = 0x%x\n", pptable->DebugOverrides);
|
||||
dev_info(smu->adev->dev, "ReservedEquation0{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation0.a,
|
||||
pptable->ReservedEquation0.b,
|
||||
pptable->ReservedEquation0.c);
|
||||
dev_info(smu->adev->dev, "ReservedEquation1{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation1.a,
|
||||
pptable->ReservedEquation1.b,
|
||||
pptable->ReservedEquation1.c);
|
||||
dev_info(smu->adev->dev, "ReservedEquation2{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation2.a,
|
||||
pptable->ReservedEquation2.b,
|
||||
pptable->ReservedEquation2.c);
|
||||
dev_info(smu->adev->dev, "ReservedEquation3{a = 0x%x b = 0x%x c = 0x%x}\n",
|
||||
pptable->ReservedEquation3.a,
|
||||
pptable->ReservedEquation3.b,
|
||||
pptable->ReservedEquation3.c);
|
||||
|
||||
dev_info(smu->adev->dev, "MinVoltageUlvGfx = %d\n", pptable->MinVoltageUlvGfx);
|
||||
dev_info(smu->adev->dev, "PaddingUlv = %d\n", pptable->PaddingUlv);
|
||||
|
||||
dev_info(smu->adev->dev, "TotalPowerConfig = %d\n", pptable->TotalPowerConfig);
|
||||
dev_info(smu->adev->dev, "TotalPowerSpare1 = %d\n", pptable->TotalPowerSpare1);
|
||||
dev_info(smu->adev->dev, "TotalPowerSpare2 = %d\n", pptable->TotalPowerSpare2);
|
||||
|
||||
dev_info(smu->adev->dev, "PccThresholdLow = %d\n", pptable->PccThresholdLow);
|
||||
dev_info(smu->adev->dev, "PccThresholdHigh = %d\n", pptable->PccThresholdHigh);
|
||||
|
||||
dev_info(smu->adev->dev, "Board Parameters:\n");
|
||||
dev_info(smu->adev->dev, "MaxVoltageStepGfx = 0x%x\n", pptable->MaxVoltageStepGfx);
|
||||
dev_info(smu->adev->dev, "MaxVoltageStepSoc = 0x%x\n", pptable->MaxVoltageStepSoc);
|
||||
|
||||
dev_info(smu->adev->dev, "VddGfxVrMapping = 0x%x\n", pptable->VddGfxVrMapping);
|
||||
dev_info(smu->adev->dev, "VddSocVrMapping = 0x%x\n", pptable->VddSocVrMapping);
|
||||
dev_info(smu->adev->dev, "VddMemVrMapping = 0x%x\n", pptable->VddMemVrMapping);
|
||||
dev_info(smu->adev->dev, "BoardVrMapping = 0x%x\n", pptable->BoardVrMapping);
|
||||
|
||||
dev_info(smu->adev->dev, "GfxUlvPhaseSheddingMask = 0x%x\n", pptable->GfxUlvPhaseSheddingMask);
|
||||
dev_info(smu->adev->dev, "ExternalSensorPresent = 0x%x\n", pptable->ExternalSensorPresent);
|
||||
|
||||
dev_info(smu->adev->dev, "GfxMaxCurrent = 0x%x\n", pptable->GfxMaxCurrent);
|
||||
dev_info(smu->adev->dev, "GfxOffset = 0x%x\n", pptable->GfxOffset);
|
||||
dev_info(smu->adev->dev, "Padding_TelemetryGfx = 0x%x\n", pptable->Padding_TelemetryGfx);
|
||||
|
||||
dev_info(smu->adev->dev, "SocMaxCurrent = 0x%x\n", pptable->SocMaxCurrent);
|
||||
dev_info(smu->adev->dev, "SocOffset = 0x%x\n", pptable->SocOffset);
|
||||
dev_info(smu->adev->dev, "Padding_TelemetrySoc = 0x%x\n", pptable->Padding_TelemetrySoc);
|
||||
|
||||
dev_info(smu->adev->dev, "MemMaxCurrent = 0x%x\n", pptable->MemMaxCurrent);
|
||||
dev_info(smu->adev->dev, "MemOffset = 0x%x\n", pptable->MemOffset);
|
||||
dev_info(smu->adev->dev, "Padding_TelemetryMem = 0x%x\n", pptable->Padding_TelemetryMem);
|
||||
|
||||
dev_info(smu->adev->dev, "BoardMaxCurrent = 0x%x\n", pptable->BoardMaxCurrent);
|
||||
dev_info(smu->adev->dev, "BoardOffset = 0x%x\n", pptable->BoardOffset);
|
||||
dev_info(smu->adev->dev, "Padding_TelemetryBoardInput = 0x%x\n", pptable->Padding_TelemetryBoardInput);
|
||||
|
||||
dev_info(smu->adev->dev, "VR0HotGpio = %d\n", pptable->VR0HotGpio);
|
||||
dev_info(smu->adev->dev, "VR0HotPolarity = %d\n", pptable->VR0HotPolarity);
|
||||
dev_info(smu->adev->dev, "VR1HotGpio = %d\n", pptable->VR1HotGpio);
|
||||
dev_info(smu->adev->dev, "VR1HotPolarity = %d\n", pptable->VR1HotPolarity);
|
||||
|
||||
dev_info(smu->adev->dev, "PllGfxclkSpreadEnabled = %d\n", pptable->PllGfxclkSpreadEnabled);
|
||||
dev_info(smu->adev->dev, "PllGfxclkSpreadPercent = %d\n", pptable->PllGfxclkSpreadPercent);
|
||||
dev_info(smu->adev->dev, "PllGfxclkSpreadFreq = %d\n", pptable->PllGfxclkSpreadFreq);
|
||||
|
||||
dev_info(smu->adev->dev, "UclkSpreadEnabled = %d\n", pptable->UclkSpreadEnabled);
|
||||
dev_info(smu->adev->dev, "UclkSpreadPercent = %d\n", pptable->UclkSpreadPercent);
|
||||
dev_info(smu->adev->dev, "UclkSpreadFreq = %d\n", pptable->UclkSpreadFreq);
|
||||
|
||||
dev_info(smu->adev->dev, "FclkSpreadEnabled = %d\n", pptable->FclkSpreadEnabled);
|
||||
dev_info(smu->adev->dev, "FclkSpreadPercent = %d\n", pptable->FclkSpreadPercent);
|
||||
dev_info(smu->adev->dev, "FclkSpreadFreq = %d\n", pptable->FclkSpreadFreq);
|
||||
|
||||
dev_info(smu->adev->dev, "FllGfxclkSpreadEnabled = %d\n", pptable->FllGfxclkSpreadEnabled);
|
||||
dev_info(smu->adev->dev, "FllGfxclkSpreadPercent = %d\n", pptable->FllGfxclkSpreadPercent);
|
||||
dev_info(smu->adev->dev, "FllGfxclkSpreadFreq = %d\n", pptable->FllGfxclkSpreadFreq);
|
||||
|
||||
for (i = 0; i < NUM_I2C_CONTROLLERS; i++) {
|
||||
dev_info(smu->adev->dev, "I2cControllers[%d]:\n", i);
|
||||
dev_info(smu->adev->dev, " .Enabled = %d\n",
|
||||
pptable->I2cControllers[i].Enabled);
|
||||
dev_info(smu->adev->dev, " .SlaveAddress = 0x%x\n",
|
||||
pptable->I2cControllers[i].SlaveAddress);
|
||||
dev_info(smu->adev->dev, " .ControllerPort = %d\n",
|
||||
pptable->I2cControllers[i].ControllerPort);
|
||||
dev_info(smu->adev->dev, " .ControllerName = %d\n",
|
||||
pptable->I2cControllers[i].ControllerName);
|
||||
dev_info(smu->adev->dev, " .ThermalThrottler = %d\n",
|
||||
pptable->I2cControllers[i].ThermalThrotter);
|
||||
dev_info(smu->adev->dev, " .I2cProtocol = %d\n",
|
||||
pptable->I2cControllers[i].I2cProtocol);
|
||||
dev_info(smu->adev->dev, " .Speed = %d\n",
|
||||
pptable->I2cControllers[i].Speed);
|
||||
}
|
||||
|
||||
dev_info(smu->adev->dev, "MemoryChannelEnabled = %d\n", pptable->MemoryChannelEnabled);
|
||||
dev_info(smu->adev->dev, "DramBitWidth = %d\n", pptable->DramBitWidth);
|
||||
|
||||
dev_info(smu->adev->dev, "TotalBoardPower = %d\n", pptable->TotalBoardPower);
|
||||
|
||||
dev_info(smu->adev->dev, "XgmiLinkSpeed\n");
|
||||
for (i = 0; i < NUM_XGMI_PSTATE_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->XgmiLinkSpeed[i]);
|
||||
dev_info(smu->adev->dev, "XgmiLinkWidth\n");
|
||||
for (i = 0; i < NUM_XGMI_PSTATE_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->XgmiLinkWidth[i]);
|
||||
dev_info(smu->adev->dev, "XgmiFclkFreq\n");
|
||||
for (i = 0; i < NUM_XGMI_PSTATE_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->XgmiFclkFreq[i]);
|
||||
dev_info(smu->adev->dev, "XgmiSocVoltage\n");
|
||||
for (i = 0; i < NUM_XGMI_PSTATE_LEVELS; i++)
|
||||
dev_info(smu->adev->dev, " .[%d] = %d\n", i, pptable->XgmiSocVoltage[i]);
|
||||
|
||||
}
|
||||
|
||||
static bool arcturus_is_dpm_running(struct smu_context *smu)
|
||||
{
|
||||
int ret = 0;
|
||||
@@ -2365,8 +1934,6 @@ static const struct pptable_funcs arcturus_ppt_funcs = {
|
||||
.get_power_profile_mode = arcturus_get_power_profile_mode,
|
||||
.set_power_profile_mode = arcturus_set_power_profile_mode,
|
||||
.set_performance_level = arcturus_set_performance_level,
|
||||
/* debug (internal used) */
|
||||
.dump_pptable = arcturus_dump_pptable,
|
||||
.get_power_limit = arcturus_get_power_limit,
|
||||
.is_dpm_running = arcturus_is_dpm_running,
|
||||
.dpm_set_vcn_enable = arcturus_dpm_set_vcn_enable,
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -736,19 +736,6 @@ static bool smu_v13_0_0_is_dpm_running(struct smu_context *smu)
|
||||
return !!(feature_enabled & SMC_DPM_FEATURE);
|
||||
}
|
||||
|
||||
static void smu_v13_0_0_dump_pptable(struct smu_context *smu)
|
||||
{
|
||||
struct smu_table_context *table_context = &smu->smu_table;
|
||||
PPTable_t *pptable = table_context->driver_pptable;
|
||||
SkuTable_t *skutable = &pptable->SkuTable;
|
||||
|
||||
dev_info(smu->adev->dev, "Dumped PPTable:\n");
|
||||
|
||||
dev_info(smu->adev->dev, "Version = 0x%08x\n", skutable->Version);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[0] = 0x%08x\n", skutable->FeaturesToRun[0]);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[1] = 0x%08x\n", skutable->FeaturesToRun[1]);
|
||||
}
|
||||
|
||||
static int smu_v13_0_0_system_features_control(struct smu_context *smu,
|
||||
bool en)
|
||||
{
|
||||
@@ -3026,7 +3013,6 @@ static const struct pptable_funcs smu_v13_0_0_ppt_funcs = {
|
||||
.i2c_init = smu_v13_0_0_i2c_control_init,
|
||||
.i2c_fini = smu_v13_0_0_i2c_control_fini,
|
||||
.is_dpm_running = smu_v13_0_0_is_dpm_running,
|
||||
.dump_pptable = smu_v13_0_0_dump_pptable,
|
||||
.init_microcode = smu_v13_0_init_microcode,
|
||||
.load_microcode = smu_v13_0_load_microcode,
|
||||
.fini_microcode = smu_v13_0_fini_microcode,
|
||||
|
||||
@@ -734,19 +734,6 @@ static bool smu_v13_0_7_is_dpm_running(struct smu_context *smu)
|
||||
return !!(feature_enabled & SMC_DPM_FEATURE);
|
||||
}
|
||||
|
||||
static void smu_v13_0_7_dump_pptable(struct smu_context *smu)
|
||||
{
|
||||
struct smu_table_context *table_context = &smu->smu_table;
|
||||
PPTable_t *pptable = table_context->driver_pptable;
|
||||
SkuTable_t *skutable = &pptable->SkuTable;
|
||||
|
||||
dev_info(smu->adev->dev, "Dumped PPTable:\n");
|
||||
|
||||
dev_info(smu->adev->dev, "Version = 0x%08x\n", skutable->Version);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[0] = 0x%08x\n", skutable->FeaturesToRun[0]);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[1] = 0x%08x\n", skutable->FeaturesToRun[1]);
|
||||
}
|
||||
|
||||
static uint32_t smu_v13_0_7_get_throttler_status(SmuMetrics_t *metrics)
|
||||
{
|
||||
uint32_t throttler_status = 0;
|
||||
@@ -2605,7 +2592,6 @@ static const struct pptable_funcs smu_v13_0_7_ppt_funcs = {
|
||||
.get_allowed_feature_mask = smu_v13_0_7_get_allowed_feature_mask,
|
||||
.set_default_dpm_table = smu_v13_0_7_set_default_dpm_table,
|
||||
.is_dpm_running = smu_v13_0_7_is_dpm_running,
|
||||
.dump_pptable = smu_v13_0_7_dump_pptable,
|
||||
.init_microcode = smu_v13_0_init_microcode,
|
||||
.load_microcode = smu_v13_0_load_microcode,
|
||||
.fini_microcode = smu_v13_0_fini_microcode,
|
||||
|
||||
@@ -732,19 +732,6 @@ static bool smu_v14_0_2_is_dpm_running(struct smu_context *smu)
|
||||
return !!(feature_enabled & SMC_DPM_FEATURE);
|
||||
}
|
||||
|
||||
static void smu_v14_0_2_dump_pptable(struct smu_context *smu)
|
||||
{
|
||||
struct smu_table_context *table_context = &smu->smu_table;
|
||||
PPTable_t *pptable = table_context->driver_pptable;
|
||||
PFE_Settings_t *PFEsettings = &pptable->PFE_Settings;
|
||||
|
||||
dev_info(smu->adev->dev, "Dumped PPTable:\n");
|
||||
|
||||
dev_info(smu->adev->dev, "Version = 0x%08x\n", PFEsettings->Version);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[0] = 0x%08x\n", PFEsettings->FeaturesToRun[0]);
|
||||
dev_info(smu->adev->dev, "FeaturesToRun[1] = 0x%08x\n", PFEsettings->FeaturesToRun[1]);
|
||||
}
|
||||
|
||||
static uint32_t smu_v14_0_2_get_throttler_status(SmuMetrics_t *metrics)
|
||||
{
|
||||
uint32_t throttler_status = 0;
|
||||
@@ -2806,7 +2793,6 @@ static const struct pptable_funcs smu_v14_0_2_ppt_funcs = {
|
||||
.i2c_init = smu_v14_0_2_i2c_control_init,
|
||||
.i2c_fini = smu_v14_0_2_i2c_control_fini,
|
||||
.is_dpm_running = smu_v14_0_2_is_dpm_running,
|
||||
.dump_pptable = smu_v14_0_2_dump_pptable,
|
||||
.init_microcode = smu_v14_0_init_microcode,
|
||||
.load_microcode = smu_v14_0_load_microcode,
|
||||
.fini_microcode = smu_v14_0_fini_microcode,
|
||||
|
||||
@@ -78,7 +78,6 @@
|
||||
#define smu_register_irq_handler(smu) smu_ppt_funcs(register_irq_handler, 0, smu)
|
||||
#define smu_get_dpm_ultimate_freq(smu, param, min, max) smu_ppt_funcs(get_dpm_ultimate_freq, 0, smu, param, min, max)
|
||||
#define smu_asic_set_performance_level(smu, level) smu_ppt_funcs(set_performance_level, -EINVAL, smu, level)
|
||||
#define smu_dump_pptable(smu) smu_ppt_funcs(dump_pptable, 0, smu)
|
||||
#define smu_update_pcie_parameters(smu, pcie_gen_cap, pcie_width_cap) smu_ppt_funcs(update_pcie_parameters, 0, smu, pcie_gen_cap, pcie_width_cap)
|
||||
#define smu_set_power_source(smu, power_src) smu_ppt_funcs(set_power_source, 0, smu, power_src)
|
||||
#define smu_i2c_init(smu) smu_ppt_funcs(i2c_init, 0, smu)
|
||||
|
||||
Reference in New Issue
Block a user