2022 was a very rich year for PC hardware, with Intel 13th gen CPUs and ARC GPUs, AMD 7000 CPUs and 7900 GPUs, and NVIDIA RTX 4000 GPUs, to mention the most notable ones. As a result, no less than 5 versio...
I noticed that while mining using lolminer my task manager says 1%GPU utilization, but cpuid says 100% and so does nicehash dashboard. 3080 @97 MH/s actual profitability says 0.00010656 BTC /24 hours.
Having trouble finding a hardware monitor. I tried GNOME's system-monitor, but it doesn't show most of the possible info; I only get the CPU temp. My system has the MSI Gaming Edge AC with a Sapphire Radeon RX Vega 64 Nitro+.
A hardware monitoring software that will read the system's main health sensors. HWMonitor is a hardware monitoring application that reads PC systems main health sensors: temperatures, voltages, fans speed. HWMonitor handles the most common sensor chips, like ITE IT87 series, most Winbond ICs and others. In addition, HWMonitor can read modern CPUs on-die core thermal sensors, as well has HDD temperature via S.M.A.R.T and video card GPU temperature. Special hardware monitors such as ABIT uGuru and Gigabyte ODIN power supplies series are supported too.
Have testet that but no problems with temp max at 76 degree C so its under the thermothrotling spec. Anyway if temp rise i guees the card would just throttle down. Voltages looks OK, but i get random hits in the GPU performance section of HWmonitor on power limit, reliable voltage limit and utilization limit.
The CPUID System Monitoring SDK allows any Windows application with administrator rights to report advanced system hardware monitoring data, such as temperatures, voltages, fan speeds, power, devices clocks and utilization ...
Does this software save the monitored data to a file or does it just display the data realtime? Do you know of any freeware that will file the data so that the temperature and voltages can be monitored over a period of time?
When moving a task from one group to another you should remember thatthis only affects new cache allocations by the task. E.g. you may havea task in a monitor group showing 3 MB of cache occupancy. If you moveto a new group and immediately check the occupancy of the old and newgroups you will likely see that the old group is still showing 3 MB andthe new group zero. When the task accesses locations still in cache frombefore the move, the h/w does not update any counters. On a busy systemyou will likely see the occupancy in the old group go down as cache linesare evicted and re-used while the occupancy in the new group rises asthe task accesses memory and loads into the cache are counted based onmembership in the new group.
The bandwidth throttling is a core specific mechanism on some of IntelSKUs. Using a high bandwidth and a low bandwidth setting on two threadssharing a core will result in both threads being throttled to use thelow bandwidth. The fact that Memory bandwidth allocation(MBA) is a corespecific mechanism where as memory bandwidth monitoring(MBM) is done atthe package level may lead to confusion when users try to apply controlvia the MBA and then monitor the bandwidth to see if the controls areeffective. Below are such scenarios:
Assume a system like HSW has only CQM and no CAT support. In this casethe resctrl will still mount but cannot create CTRL_MON directories.But user can create different MON groups within the root group therebyable to monitor all tasks including kernel threads.
Node Feature Discovery (NFD) is an OpenShift add-on that detects and advertises hardware and software capabilities of a platform that can, in turn, be used to facilitate intelligent scheduling of a workload.
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