I've found using p95 single thread, fixed in place fft size of 84, and no avx to be very good at exposing instability when tuning my curve settings. Killed all background apps except HWinfo so all the other cores would go to minimum frequency (and not boost up voltages), and then assigned the threads to one core at a time in windows task manager...
This method was so good in fact that I needed to raise my "best" core to +10. This is on a 5800x. Asus B550-F with 1801 bios, Auto LLC, 300kHz switching frequency (300 seemed slightly better than 200, but this might be placebo), 1800 FLCK with auto SoC voltage settings.
Core
curve offset w/pbo +200
0 (perf #3/4)
-15
1 (perf #4/5)
-15
2 (perf #5/6)
-10
3 (perf #1/1)
10
4 (perf #7/8)
-30
5 (perf #6/7)
-25
6 (perf #1/2)
0
7 (perf #2/3)
-10
Initially I just let it run for 2 min on each core and then lowered curve by 5 each time it passed. Once it failed, I backed off by 5 and let it run longer. 5 min is generally long enough to find an error, but sometimes it would take up to 1hr to error. I haven't run it longer than that, but I think that is enough to be pretty stable.
I'll give the testmem5 method a try when I get some time.
I might be able to improve the curve settings a bit if I back off the clock, but even with completely stock settings I still need at least +5 on my "best" core :-( I posted elsewhere about that... switching to LLC 3 fixes it, but lowers max attainable boost clocks enough that I'm better off on auto with a positive curve setting on that core (actually it's close enough to no different as I guess the cpu needs to end up with the same voltage either way).
Good question. I don't have any special knowledge of that size, simply started my testing with it set to "Small FFTs", and it seemed like it kept failing soon after hitting an FFT size of 84. To speed things up I just set it to that manually.
To really prove things out I should do a final run across a range of FFT sizes. But I'd probably have to let that run for several hours per core. 8 days to test each core in a 5800x? Ouch. Also not even sure I should run this for that long as I'm a little paranoid about the voltage it is hitting on an individual core while running (I'm sure it's fine for short periods, but this seems a somewhat unrealistic scenario that specifically holds a single core at high load, temp and voltage).
Good question. I don't have any special knowledge of that size, simply started my testing with it set to "Small FFTs", and it seemed like it kept failing soon after hitting an FFT size of 84. To speed things up I just set it to that manually.
i am not a native english speaker. i started investigating many complaints about the 5800x running very hot. in the last 14 days i tried over 200 different PBO tweaks to get the most out of my Chip. the 5800X sits on a B550 STRIX-F and is cooled by a Kraken X73. even with 100% Pump Speed i...
i am not a native english speaker. i started investigating many complaints about the 5800x running very hot. in the last 14 days i tried over 200 different PBO tweaks to get the most out of my Chip. the 5800X sits on a B550 STRIX-F and is cooled by a Kraken X73. even with 100% Pump Speed i...
Yes, I know that different FFT sizes hit different amounts of L1, L2, L3 cache and then out to memory and the power consumed will vary depending on the FFT size.
In my case 84 seems to be a good one to test stability. Why exactly 84? I'm not sure. Also, this one might not be the best, it is just one I found to work well.
Keeping a fixed size does help to make things consistent when checking clocks, power, heat and voltages as well.
@blu3dragon holy... You had to use +10 in core. I thought I had bad luck with my core 4 needing +2, everything else is - 15 upto - 25.
Quick question, what are your PBO settings beside the curve? Also cpu voltage.
Woah you had to use curve at stock settings to keep it stable. I guess AMD needs to address voltage table, doesn't make sense that stock is unstable. Maybe you should rma no?
Be careful, test is only useful if cores don't use more current than normal. Check back with some other test and try to emulate its single thread power consumption than going overboard.
@blu3dragon holy... You had to use +10 in core. I thought I had bad luck with my core 4 needing +2, everything else is - 15 upto - 25.
Quick question, what are your PBO settings beside the curve? Also cpu voltage.
Woah you had to use curve at stock settings to keep it stable. I guess AMD needs to address voltage table, doesn't make sense that stock is unstable. Maybe you should rma no?
@blu3dragon holy... You had to use +10 in core. I thought I had bad luck with my core 4 needing +2, everything else is - 15 upto - 25.
Quick question, what are your PBO settings beside the curve? Also cpu voltage.
Woah you had to use curve at stock settings to keep it stable. I guess AMD needs to address voltage table, doesn't make sense that stock is unstable. Maybe you should rma no?
Yeah, I need to double check everything then should ask support what options I have. Was asking first in another thread (on another forum) if this was normal or not. I did find one other post where someone experienced the same on a 5600x. Would be interested in your results if you try prime95... All the recent bios' are labelled beta so not sure if that explains it. If I go all stock and manually set LLC to 3 it seems stable, only with auto LLC it is not 100%.
It's not actually a huge issue though, since I have it stable, and there is very little difference in performance between curve at 0 for that core vs at +10. Only with a single core load there's ~50-100Mhz clock speed diff. All core loads are limited by a couple of the other cores anyway. Of course, I would love a better cpu where I have have all my cores at a - setting :-D
Be careful, test is only useful if cores don't use more current than normal. Check back with some other test and try to emulate its single thread power consumption than going overboard.
Not sure I follow what you're trying to say. Do you mean testing with p95 is overkill? I can understand that, but on the other hand I'm shooting for 24/7 stability and am happy to give up the last 1-2% in performance to achieve that.
I'm currently on the latest beta bios, 1801, with AGESA V2 PI 1.2.0.0. I still need +10 on that core with PBO (to be clear, I haven't tried values between 5 and 10, but it error'd at 5 and appears stable at 10).
I tested the stock settings stability on an earlier bios though, so I can go back and check that.
Yeah, I need to double check everything then should ask support what options I have. Was asking first in another thread (on another forum) if this was normal or not. I did find one other post where someone experienced the same on a 5600x. Would be interested in your results if you try prime95... All the recent bios' are labelled beta so not sure if that explains it. If I go all stock and manually set LLC to 3 it seems stable, only with auto LLC it is not 100%.
It's not actually a huge issue though, since I have it stable, and there is very little difference in performance between curve at 0 for that core vs at +10. Only with a single core load there's ~50-100Mhz clock speed diff. All core loads are limited by a couple of the other cores anyway. Of course, I would love a better cpu where I have have all my cores at a - setting :-D
Not sure I follow what you're trying to say. Do you mean testing with p95 is overkill? I can understand that, but on the other hand I'm shooting for 24/7 stability and am happy to give up the last 1-2% in performance to achieve that.
I'm currently on the latest beta bios, 1801, with AGESA V2 PI 1.2.0.0. I still need +10 on that core with PBO (to be clear, I haven't tried values between 5 and 10, but it error'd at 5 and appears stable at 10).
I tested the stock settings stability on an earlier bios though, so I can go back and check that.
Revision Number 2.10.13.408
Release Date 10/19/2020
This seems be a newer version than the one on Asus's site.
Ok, so today I discovered that the individual curve settings still take effect even after you turn off PBO (ie set it back to auto in the bios and no longer have access to those settings).
Clearing cmos to get back to stock, then setting xmp I still have my instability on core 3 :-(
Strangely, PBO off (stock power limits) seemed to give a higher voltage to a single core than when I had it on, but power and frequency were similar so this might just be measurement error, or due to a slight temperature change.
Testmem5 with the settings @juanyunis posted above also works well to find errors with individual cores.
[2021/01/20 16:26:21]
Ai Overclock Tuner [Manual]
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Memory Frequency [DDR4-3800MHz]
FCLK Frequency [1900MHz]
Core Performance Boost [Enabled]
CPU Core Ratio [Auto]
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CCX0 Ratio [Auto]
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TPU [Keep Current Settings]
Performance Bias [Auto]
PBO Fmax Enhancer [Auto]
Precision Boost Overdrive [Manual]
PPT Limit [300]
TDC Limit [235]
EDC Limit [245]
Precision Boost Overdrive Scalar [Manual]
Customized Precision Boost Overdrive Scalar [4X]
Max CPU Boost Clock Override [50]
Platform Thermal Throttle Limit [Auto]
DRAM CAS# Latency [14]
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SB Link Mode [Auto]
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Device [SATA6G_7: Samsung SSD 850 PRO 1TB]
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Above 4GB MMIO Limit [39bit (512GB)]
Fast Boot [Enabled]
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Bootup NumLock State [On]
POST Report [5 sec]
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Launch CSM [Disabled]
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Profile Name [20.01 minus 30]
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Precision Boost Overdrive Scalar [Auto]
Curve Optimizer [Per Core]
Core 0 Curve Optimizer Sign [Negative]
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Max CPU Boost Clock Override [0MHz]
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SMEE [Auto]
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DRAM Write CRC Enable and Retry Limit [Auto]
Disable Memory Error Injection [True]
DRAM ECC Symbol Size [Auto]
DRAM ECC Enable [Auto]
DRAM UECC Retry [Auto]
TSME [Auto]
Data Scramble [Auto]
DFE Read Training [Auto]
FFE Write Training [Auto]
PMU Pattern Bits Control [Auto]
MR6VrefDQ Control [Auto]
CPU Vref Training Seed Control [Auto]
Chipselect Interleaving [Auto]
BankGroupSwap [Auto]
BankGroupSwapAlt [Auto]
Address Hash Bank [Auto]
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Address Hash Rm [Auto]
SPD Read Optimization [Enabled]
MBIST Enable [Disabled]
Pattern Select [PRBS]
Pattern Length [6]
Aggressor Channel [1 Aggressor Channel]
Aggressor Static Lane Control [Disabled]
Target Static Lane Control [Disabled]
Worst Case Margin Granularity [Per Chip Select]
Read Voltage Sweep Step Size [1]
Read Timing Sweep Step Size [1]
Write Voltage Sweep Step Size [1]
Write Timing Sweep Step Size [1]
IOMMU [Auto]
Precision Boost Overdrive [Auto]
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FCLK Frequency [Auto]
SOC OVERCLOCK VID [0]
UCLK DIV1 MODE [Auto]
VDDP Voltage Control [Auto]
VDDG Voltage Control [Auto]
SoC/Uncore OC Mode [Auto]
LN2 Mode [Auto]
ACS Enable [Auto]
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PCIe ARI Enumeration [Auto]
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cTDP Control [Auto]
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Package Power Limit Control [Auto]
APBDIS [Auto]
DF Cstates [Auto]
CPPC [Auto]
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NBIO DPM Control [Auto]
Early Link Speed [Auto]
Presence Detect Select mode [Auto]
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CV test [Auto]
Loopback Mode [Auto]
Data Link Feature Exchange [Disabled]
300W PPT lol!
245A EDC + 85°C = it may be a really nice combination to degrade you chip...!!
What was the value of PowerReportingDeviation during that run?
And what was the value(s) of POUT of VRM sensors? (both cores/soc). I believe its on the hidden sensors.
One last hurrah for bios 3003 before i update to a bios with AMD AM4 AGESA V2 PI 1.2.0.0 and support for Nvidia smart access memory.
Cold air benching with EK custom waterloop+TechN Zen3 waterblock
Curve optimizer = -30 allcore
Stable in everything i throw at it, and no WHEA errors.
Some heavy IBT high+very high and Y-Cruncher numbers:
Did also run a full sweep of all 3dmarks, but i will post that in one other thread
[2021/01/20 16:26:21]
Ai Overclock Tuner [Manual]
BCLK Frequency [100.0000]
Memory Frequency [DDR4-3800MHz]
FCLK Frequency [1900MHz]
Core Performance Boost [Enabled]
CPU Core Ratio [Auto]
Core VID [Auto]
CCX0 Ratio [Auto]
CCX0 Ratio [Auto]
TPU [Keep Current Settings]
Performance Bias [Auto]
PBO Fmax Enhancer [Auto]
Precision Boost Overdrive [Manual]
PPT Limit [300]
TDC Limit [235]
EDC Limit [245]
Precision Boost Overdrive Scalar [Manual]
Customized Precision Boost Overdrive Scalar [4X]
Max CPU Boost Clock Override [50]
Platform Thermal Throttle Limit [Auto]
DRAM CAS# Latency [14]
Trcdrd [15]
Trcdwr [8]
DRAM RAS# PRE Time [12]
DRAM RAS# ACT Time [24]
Trc [36]
TrrdS [4]
TrrdL [4]
Tfaw [16]
TwtrS [4]
TwtrL [10]
Twr [12]
Trcpage [Auto]
TrdrdScl [2]
TwrwrScl [2]
Trfc [252]
Trfc2 [187]
Trfc4 [115]
Tcwl [14]
Trtp [6]
Trdwr [9]
Twrrd [2]
TwrwrSc [1]
TwrwrSd [6]
TwrwrDd [6]
TrdrdSc [1]
TrdrdSd [5]
TrdrdDd [5]
Tcke [Auto]
ProcODT [40 ohm]
Cmd2T [1T]
Gear Down Mode [Enabled]
Power Down Enable [Disabled]
RttNom [RZQ/7]
RttWr [RZQ/3]
RttPark [RZQ/1]
MemAddrCmdSetup [Auto]
MemCsOdtSetup [Auto]
MemCkeSetup [Auto]
MemCadBusClkDrvStren [24.0 Ohm]
MemCadBusAddrCmdDrvStren [20.0 Ohm]
MemCadBusCsOdtDrvStren [24.0 Ohm]
MemCadBusCkeDrvStren [24.0 Ohm]
Mem Over Clock Fail Count [Auto]
Voltage Monitor [Die Sense]
CPU Load-line Calibration [Level 3]
CPU Current Capability [140%]
CPU VRM Switching Frequency [Manual]
Fixed CPU VRM Switching Frequency(KHz) [500]
CPU Power Duty Control [T.Probe]
CPU Power Phase Control [Extreme]
CPU Power Thermal Control [120]
VDDSOC Load-line Calibration [Level 3]
VDDSOC Switching Frequency [Auto]
VDDSOC Phase Control [Extreme]
DRAM Current Capability [130%]
DRAM Power Phase Control [Extreme]
DRAM Switching Frequency [Auto]
CPU Core Current Telemetry [Auto]
CPU SOC Current Telemetry [Auto]
Force OC Mode Disable [Disabled]
SB Clock Spread Spectrum [Auto]
VTTDDR Voltage [Auto]
VPP_MEM Voltage [Auto]
DRAM CTRL REF Voltage on CHA [Auto]
DRAM CTRL REF Voltage on CHB [Auto]
VDDP Voltage [Auto]
1.8V Standby Voltage [Auto]
CPU 3.3v AUX [Auto]
1.2V SB Voltage [Auto]
DRAM R1 Tune [Auto]
DRAM R2 Tune [Auto]
DRAM R3 Tune [Auto]
DRAM R4 Tune [Auto]
PCIE Tune R1 [Auto]
PCIE Tune R2 [Auto]
PCIE Tune R3 [Auto]
PLL Tune R1 [Auto]
PLL reference voltage [Auto]
T Offset [Auto]
Sense MI Skew [Auto]
Sense MI Offset [Auto]
Promontory presence [Auto]
Clock Amplitude [Auto]
CPU Core Voltage [Offset mode]
- Offset Mode Sign [+]
- CPU Core Voltage Offset [0.01250]
CPU SOC Voltage [Manual]
- VDDSOC Voltage Override [1.11875]
DRAM Voltage [1.54500]
VDDG CCD Voltage Control [0.890]
VDDG IOD Voltage Control [Auto]
CLDO VDDP voltage [0.880]
1.00V SB Voltage [Auto]
1.8V PLL Voltage [Auto]
TPM Device Selection [Discrete TPM]
Erase fTPM NV for factory reset [Enabled]
PSS Support [Enabled]
PPC Adjustment [PState 0]
NX Mode [Enabled]
SVM Mode [Disabled]
SMT Mode [Auto]
Core Leveling Mode [Automatic mode]
CCD Control [Auto]
SATA Port Enable [Enabled]
SATA Mode [AHCI]
NVMe RAID mode [Disabled]
SMART Self Test [Enabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
HD Audio Controller [Enabled]
PCIEX16_1 Bandwidth Bifurcation configuration [Auto Mode]
PCIEX16_2 Bandwidth Bifurcation configuration [Auto Mode]
When system is in working state [All On]
Q-Code LED Function [POST Code Only]
When system is in sleep, hibernate or soft off states [All On]
Realtek 2.5G LAN Controller [Enabled]
Realtek PXE OPROM [Disabled]
Intel LAN Controller [Enabled]
Intel LAN OPROM [Disabled]
ASM1074 Controller [Enabled]
Wi-Fi 6 (802.11ax) Controller [Disabled]
Bluetooth Controller [Enabled]
USB power delivery in Soft Off state (S5) [Enabled]
PCIEX16_1 Mode [Auto]
PCIEX16_2 Mode [Auto]
PCIEX1 Mode [Auto]
PCIEX16_3 Mode [Auto]
M.2_1 Link Mode [Auto]
M.2_2 Link Mode [Auto]
SB Link Mode [Auto]
ErP Ready [Disabled]
Restore AC Power Loss [Power Off]
Power On By PCI-E [Disabled]
Power On By RTC [Disabled]
Above 4G Decoding [Enabled]
Re-Size BAR Support [Auto]
SR-IOV Support [Disabled]
Legacy USB Support [Enabled]
XHCI Hand-off [Enabled]
Corsair Voyager GTX 0 [Auto]
USB Device Enable [Enabled]
U32G2_2 [Enabled]
U32G2_3 [Enabled]
U32G2_4 [Enabled]
U32G1_10 [Enabled]
U32G1_11 [Enabled]
USB12 [Enabled]
USB13 [Enabled]
U32G2_7 [Enabled]
U32G2_8 [Enabled]
U32G2_C9 [Enabled]
Network Stack [Disabled]
Device [SATA6G_7: Samsung SSD 850 PRO 1TB]
CPU Temperature [Monitor]
CPU Package Temperature [Monitor]
MotherBoard Temperature [Monitor]
VRM Temperature [Monitor]
T_Sensor Temperature [Monitor]
Water In T Sensor Temperature [Monitor]
Water Out T Sensor Temperature [Monitor]
CPU Fan Speed [Monitor]
CPU Optional Fan Speed [Monitor]
Chassis Fan 1 Speed [Monitor]
Chassis Fan 2 Speed [Monitor]
Chassis Fan 3 Speed [Monitor]
High Amp Fan Speed [Monitor]
W_PUMP+ Speed [Monitor]
AIO PUMP Speed [Monitor]
PCH Fan Speed [Monitor]
Flow Rate [Monitor]
CPU Core Voltage [Monitor]
3.3V Voltage [Monitor]
5V Voltage [Monitor]
12V Voltage [Monitor]
CPU Fan Q-Fan Control [Auto]
CPU Fan Step Up [2.1 sec]
CPU Fan Step Down [0 sec]
CPU Fan Speed Low Limit [600 RPM]
CPU Fan Profile [Manual]
CPU Fan Upper Temperature [70]
CPU Fan Max. Duty Cycle (%) [100]
CPU Fan Middle Temperature [50]
CPU Fan Middle Duty Cycle (%) [50]
CPU Fan Lower Temperature [30]
CPU Fan Min Duty Cycle (%) [40]
Chassis Fan 1 Q-Fan Control [Auto]
Chassis Fan 1 Q-Fan Source [CPU]
Chassis Fan 1 Step Up [0 sec]
Chassis Fan 1 Step Down [0 sec]
Chassis Fan 1 Speed Low Limit [600 RPM]
Chassis Fan 1 Profile [Manual]
Chassis Fan 1 Upper Temperature [70]
Chassis Fan 1 Max. Duty Cycle (%) [100]
Chassis Fan 1 Middle Temperature [50]
Chassis Fan 1 Middle Duty Cycle (%) [65]
Chassis Fan 1 Lower Temperature [20]
Chassis Fan 1 Min Duty Cycle (%) [60]
Chassis Fan 2 Q-Fan Control [Auto]
Chassis Fan 2 Q-Fan Source [CPU]
Chassis Fan 2 Step Up [0 sec]
Chassis Fan 2 Step Down [0 sec]
Chassis Fan 2 Speed Low Limit [600 RPM]
Chassis Fan 2 Profile [Manual]
Chassis Fan 2 Upper Temperature [65]
Chassis Fan 2 Max. Duty Cycle (%) [100]
Chassis Fan 2 Middle Temperature [45]
Chassis Fan 2 Middle Duty Cycle (%) [60]
Chassis Fan 2 Lower Temperature [40]
Chassis Fan 2 Min Duty Cycle (%) [60]
Chassis Fan 3 Q-Fan Control [Auto]
Chassis Fan 3 Q-Fan Source [CPU]
Chassis Fan 3 Step Up [0 sec]
Chassis Fan 3 Step Down [0 sec]
Chassis Fan 3 Speed Low Limit [600 RPM]
Chassis Fan 3 Profile [Manual]
Chassis Fan 3 Upper Temperature [70]
Chassis Fan 3 Max. Duty Cycle (%) [100]
Chassis Fan 3 Middle Temperature [45]
Chassis Fan 3 Middle Duty Cycle (%) [100]
Chassis Fan 3 Lower Temperature [40]
Chassis Fan 3 Min Duty Cycle (%) [100]
High Amp Fan Q-Fan Control [Auto]
High Amp Fan Q-Fan Source [CPU]
High Amp Fan Step Up [0 sec]
High Amp Fan Step Down [0 sec]
High Amp Fan Speed Low Limit [600 RPM]
High Amp Fan Profile [Manual]
High Amp Fan Upper Temperature [70]
High Amp Fan Max. Duty Cycle (%) [100]
High Amp Fan Middle Temperature [45]
High Amp Fan Middle Duty Cycle (%) [70]
High Amp Fan Lower Temperature [30]
High Amp Fan Min Duty Cycle (%) [60]
Water Pump+ Q-Fan Control [Auto]
Water Pump+ Q-Fan Source [CPU]
Water Pump+ Upper Temperature [70]
Water Pump+ Max. Duty Cycle (%) [100]
Water Pump+ Middle Temperature [50]
Water Pump+ Middle Duty Cycle (%) [65]
Water Pump+ Lower Temperature [30]
Water Pump+ Min Duty Cycle (%) [60]
AIO Pump Q-Fan Control [Auto]
AIO Pump Q-Fan Source [CPU]
AIO Pump Upper Temperature [70]
AIO Pump Max. Duty Cycle (%) [100]
AIO Pump Middle Temperature [50]
AIO Pump Middle Duty Cycle (%) [65]
AIO Pump Lower Temperature [30]
AIO Pump Min Duty Cycle (%) [60]
Above 4GB MMIO Limit [39bit (512GB)]
Fast Boot [Enabled]
Next Boot after AC Power Loss [Fast Boot]
Boot Logo Display [Disabled]
Bootup NumLock State [On]
POST Report [5 sec]
Wait For 'F1' If Error [Enabled]
Option ROM Messages [Force BIOS]
Interrupt 19 Capture [Disabled]
Setup Mode [Advanced Mode]
Launch CSM [Disabled]
OS Type [Other OS]
AMI Native NVMe Driver Support [Enabled]
Flexkey [Reset]
Setup Animator [Disabled]
Load from Profile [5]
Profile Name [20.01 minus 30]
Save to Profile [5]
DIMM Slot Number [DIMM_A1]
Bus Interface [PCIEX16_1]
Download & Install ARMOURY CRATE app [Enabled]
CPU Frequency [0]
CPU Voltage [0]
CCD Control [Auto]
Core control [Auto]
SMT Control [Auto]
Overclock [Enabled ]
Memory Clock Speed [Auto]
Tcl [Auto]
Trcdrd [Auto]
Trcdwr [Auto]
Trp [Auto]
Tras [Auto]
Trc Ctrl [Auto]
TrrdS [Auto]
TrrdL [Auto]
Tfaw Ctrl [Auto]
TwtrS [Auto]
TwtrL [Auto]
Twr Ctrl [Auto]
Trcpage Ctrl [Auto]
TrdrdScL Ctrl [Auto]
TwrwrScL Ctrl [Auto]
Trfc Ctrl [Auto]
Trfc2 Ctrl [Auto]
Trfc4 Ctrl [Auto]
Tcwl [Auto]
Trtp [Auto]
Tcke [Auto]
Trdwr [Auto]
Twrrd [Auto]
TwrwrSc [Auto]
TwrwrSd [Auto]
TwrwrDd [Auto]
TrdrdSc [Auto]
TrdrdSd [Auto]
TrdrdDd [Auto]
ProcODT [Auto]
Power Down Enable [Auto]
Cmd2T [Auto]
Gear Down Mode [Auto]
CAD Bus Timing User Controls [Auto]
CAD Bus Drive Strength User Controls [Auto]
Data Bus Configuration User Controls [Auto]
Infinity Fabric Frequency and Dividers [Auto]
ECO Mode [Disable]
Precision Boost Overdrive [Advanced]
PBO Limits [Motherboard]
Precision Boost Overdrive Scalar [Auto]
Curve Optimizer [Per Core]
Core 0 Curve Optimizer Sign [Negative]
Core 0 Curve Optimizer Magnitude [30]
Core 1 Curve Optimizer Sign [Negative]
Core 1 Curve Optimizer Magnitude [30]
Core 2 Curve Optimizer Sign [Negative]
Core 2 Curve Optimizer Magnitude [30]
Core 3 Curve Optimizer Sign [Negative]
Core 3 Curve Optimizer Magnitude [30]
Core 4 Curve Optimizer Sign [Negative]
Core 4 Curve Optimizer Magnitude [30]
Core 5 Curve Optimizer Sign [Negative]
Core 5 Curve Optimizer Magnitude [30]
Core 6 Curve Optimizer Sign [Negative]
Core 6 Curve Optimizer Magnitude [30]
Core 7 Curve Optimizer Sign [Negative]
Core 7 Curve Optimizer Magnitude [30]
Core 8 Curve Optimizer Sign [Negative]
Core 8 Curve Optimizer Magnitude [30]
Core 9 Curve Optimizer Sign [Negative]
Core 9 Curve Optimizer Magnitude [30]
Core 10 Curve Optimizer Sign [Negative]
Core 10 Curve Optimizer Magnitude [30]
Core 11 Curve Optimizer Sign [Negative]
Core 11 Curve Optimizer Magnitude [30]
Core 12 Curve Optimizer Sign [Negative]
Core 12 Curve Optimizer Magnitude [30]
Core 13 Curve Optimizer Sign [Negative]
Core 13 Curve Optimizer Magnitude [30]
Core 14 Curve Optimizer Sign [Negative]
Core 14 Curve Optimizer Magnitude [30]
Core 15 Curve Optimizer Sign [Negative]
Core 15 Curve Optimizer Magnitude [30]
Max CPU Boost Clock Override [0MHz]
Platform Thermal Throttle Limit [Auto]
LN2 Mode [Auto]
SoC/Uncore OC Mode [Disabled]
VDDP Voltage Control [Auto]
VDDG Voltage Control [Auto]
NUMA nodes per socket [Auto]
Custom Pstate0 [Auto]
L1 Stream HW Prefetcher [Auto]
L2 Stream HW Prefetcher [Auto]
Core Watchdog Timer Enable [Auto]
SMEE [Auto]
Core Performance Boost [Auto]
Global C-state Control [Disabled]
Power Supply Idle Control [Typical Current Idle]
SEV ASID Count [Auto]
SEV-ES ASID Space Limit Control [Auto]
Streaming Stores Control [Auto]
Local APIC Mode [Auto]
ACPI _CST C1 Declaration [Auto]
MCA error thresh enable [Auto]
PPIN Opt-in [Auto]
Fast Short REP MOVSB [Enabled]
Enhanced REP MOVSB/STOSB [Enabled]
RdRand Speedup Disable [Enabled]
IBS hardware workaround [Auto]
DRAM scrub time [Auto]
Poison scrubber control [Auto]
Redirect scrubber control [Auto]
Redirect scrubber limit [Auto]
NUMA nodes per socket [Auto]
Memory interleaving [Auto]
Memory interleaving size [Auto]
1TB remap [Auto]
DRAM map inversion [Auto]
ACPI SRAT L3 Cache As NUMA Domain [Auto]
ACPI SLIT Distance Control [Auto]
ACPI SLIT remote relative distance [Auto]
GMI encryption control [Auto]
xGMI encryption control [Auto]
CAKE CRC perf bounds Control [Auto]
4-link xGMI max speed [Auto]
3-link xGMI max speed [Auto]
xGMI TXEQ Mode [Auto]
PcsCG control [Auto]
Disable DF to external downstream IP SyncFloodPropagation [Auto]
Disable DF sync flood propagation [Auto]
CC6 memory region encryption [Auto]
Memory Clear [Auto]
Overclock [Enabled]
Memory Clock Speed [Auto]
Tcl [Auto]
Trcdrd [Auto]
Trcdwr [Auto]
Trp [Auto]
Tras [Auto]
Trc Ctrl [Auto]
TrrdS [Auto]
TrrdL [Auto]
Tfaw Ctrl [Auto]
TwtrS [Auto]
TwtrL [Auto]
Twr Ctrl [Auto]
Trcpage Ctrl [Auto]
TrdrdScL Ctrl [Auto]
TwrwrScL Ctrl [Auto]
Trfc Ctrl [Auto]
Trfc2 Ctrl [Auto]
Trfc4 Ctrl [Auto]
Tcwl [Auto]
Trtp [Auto]
Tcke [Auto]
Trdwr [Auto]
Twrrd [Auto]
TwrwrSc [Auto]
TwrwrSd [Auto]
TwrwrDd [Auto]
TrdrdSc [Auto]
TrdrdSd [Auto]
TrdrdDd [Auto]
ProcODT [Auto]
Power Down Enable [Auto]
Disable Burst/Postponed Refresh [Auto]
DRAM Maximum Activate Count [Auto]
Cmd2T [Auto]
Gear Down Mode [Auto]
CAD Bus Timing User Controls [Auto]
CAD Bus Drive Strength User Controls [Auto]
Data Bus Configuration User Controls [Auto]
Data Poisoning [Auto]
DRAM Post Package Repair [Default]
RCD Parity [Auto]
DRAM Address Command Parity Retry [Auto]
Write CRC Enable [Auto]
DRAM Write CRC Enable and Retry Limit [Auto]
Disable Memory Error Injection [True]
DRAM ECC Symbol Size [Auto]
DRAM ECC Enable [Auto]
DRAM UECC Retry [Auto]
TSME [Auto]
Data Scramble [Auto]
DFE Read Training [Auto]
FFE Write Training [Auto]
PMU Pattern Bits Control [Auto]
MR6VrefDQ Control [Auto]
CPU Vref Training Seed Control [Auto]
Chipselect Interleaving [Auto]
BankGroupSwap [Auto]
BankGroupSwapAlt [Auto]
Address Hash Bank [Auto]
Address Hash CS [Auto]
Address Hash Rm [Auto]
SPD Read Optimization [Enabled]
MBIST Enable [Disabled]
Pattern Select [PRBS]
Pattern Length [6]
Aggressor Channel [1 Aggressor Channel]
Aggressor Static Lane Control [Disabled]
Target Static Lane Control [Disabled]
Worst Case Margin Granularity [Per Chip Select]
Read Voltage Sweep Step Size [1]
Read Timing Sweep Step Size [1]
Write Voltage Sweep Step Size [1]
Write Timing Sweep Step Size [1]
IOMMU [Auto]
Precision Boost Overdrive [Auto]
Precision Boost Overdrive Scalar [Auto]
FCLK Frequency [Auto]
SOC OVERCLOCK VID [0]
UCLK DIV1 MODE [Auto]
VDDP Voltage Control [Auto]
VDDG Voltage Control [Auto]
SoC/Uncore OC Mode [Auto]
LN2 Mode [Auto]
ACS Enable [Auto]
PCIe ARI Support [Auto]
PCIe ARI Enumeration [Auto]
PCIe Ten Bit Tag Support [Auto]
cTDP Control [Auto]
EfficiencyModeEn [Auto]
Package Power Limit Control [Auto]
APBDIS [Auto]
DF Cstates [Auto]
CPPC [Auto]
CPPC Preferred Cores [Auto]
NBIO DPM Control [Auto]
Early Link Speed [Auto]
Presence Detect Select mode [Auto]
Preferred IO [Auto]
CV test [Auto]
Loopback Mode [Auto]
Data Link Feature Exchange [Disabled]
Well, i just slotted in a 5800X and it won't boot/ unstable with the "official" release bios and its suppsoed to support 5000 series, tried the beta one and it booted no problems lol
Well, i just slotted in a 5800X and it won't boot/ unstable with the "official" release bios and its suppsoed to support 5000 series, tried the beta one and it booted no problems lol