Download "Assembly of programs for checking the memory of video cards AMD (tserver) and Nvidia (mats, mods)"

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tserver
mats
mods
nvidia
amd
test amd
диагностика видеокарт
диагностика
диагностика видеокарты
проверка
видеопамять
проверка видеопамяти
видеокарта
тест
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tсервер
матс
модс
амд
нвидиа
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диагностика видюхи
проверка видюхи
софт для проверки видеопамяти
софт
софт для проверки
сборка программ
сборка программ для проверки видеопамяти
сборка для проверки видеокарт
сборка для проверки видеокарты
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  • ruRussian
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00:00:00
Hello! Here I want to present a software assembly that
00:00:07
allows you to test the memory status of video cards of various AMD and Nvidia series. To
00:00:13
do this, you need a storage device. It can be a flash drive with a capacity of at least 128 GB.
00:00:18
But for me it's better to use an ssd or a regular hard drive. Actually,
00:00:22
I will use a 480 GB solid state drive. By connecting it to the motherboard directly
00:00:29
without using any adapters, for the highest speed of receiving and transmitting information. In
00:00:34
the Windows 10 operating system on the desktop, I click on the shortcut of the tserver folder, where the
00:00:41
disk partitions with the video memory test software are located. To deploy them, the DiskGenius program is suitable.
00:00:47
Going to its location, I launch it by clicking on the .exe file. Despite the fact that it is in Chinese
00:00:53
, everything is quite intuitive. Drives are shown on the left side of the screen. Of the available
00:01:00
ones, I only choose that the installed SSD. By clicking on it with the right mouse button from the context menu,
00:01:05
I launch this item (responsible for the quick creation of partitions). In the window that appears, I create
00:01:09
five sections. The first two are 30 GB, the third 70 GB, the fourth 50 GB and the fifth 80 GB. Then I
00:01:16
check the boxes next to the indicated lines, and clear the volume names. I leave the rest of the parameters
00:01:21
as they are. Pressing this key activates the changes. In a new window, in fact,
00:01:28
I confirm them. After the drive is prepared, I right-click again on the
00:01:33
newly created volume. From the drop-down menu, I open this item, which allows you to restore
00:01:39
the partition from the image. By clicking on this button, I specify the path to the volume dump file at number one. After
00:01:45
that, after completing the confirmation, I deploy it to the SSD-ishku. The process takes some time. Upon
00:01:51
completion, I perform similar actions with the second section. And, of course, this time
00:01:57
I'm listing image number 2. [Music] I'm doing the same with the remaining three volumes. [Music]
00:02:20
In order to expand partitions on a smaller disk, all volumes
00:02:24
will have to be significantly reduced. After completing the preparation of the drive, I restart the computer.
00:02:29
When you start it, you should go to the UEFI or BIOS settings, in my case, for this
00:02:34
I click Delete. Then I switch to advanced mode using the F7 key. In the above version of UEFI
00:02:40
, having moved to the “Boot” section and opening the CSM item in all the options available here, you need to
00:02:46
install Legacy. Having returned one step back in the boot priority, I am the first to expose the newly
00:02:52
prepared ssd with a set of programs for checking video memory. Then I press F10 and save
00:02:58
the changes. After that, the computer reboots and at the end of the self-test
00:03:03
for 5 seconds. you should press the enter key. Next, the GRUB bootloader menu is launched,
00:03:08
which lists a number of operating systems. So , DOS and the Linux Tiny distribution are used
00:03:14
to check the memory on NVIDIA cards . These assemblies make it possible to perform
00:03:19
diagnostics of the RTX, GTX series video cameras, both of earlier versions and those that are still relevant to this day.
00:03:25
As for graphics adapters from AMD, Linux distributions - Ubuntu
00:03:31
of different editions are used here. Which have a set of programs for diagnosing cards, mainly R,
00:03:36
RX and Vega series. In almost all of the above operating systems, the software for checking is located in the
00:03:42
home directory (in which you will find yourself after launch). There is a slight difference in this
00:03:45
distribution kit (allowing you to test RX4XX/RX5XX…) with which I will try to test an eight
00:03:48
gigabyte RX 580 Sapphire pulse card. Having selected it and after waiting a bit, when it
00:03:54
loads according to the information provided, I press the key combination Ctrl + D. Next
00:04:00
, it is proposed to enter a login - I prescribe root. Thus, we find ourselves in the
00:04:05
superuser's home directory. By typing the ls command, let's see what is here. For the most part, these are
00:04:11
scripts for checking video memory. From the available I will use the data for my card. To
00:04:17
start it, I type a slash 580 and press enter. After that, the video memory is tested.
00:04:24
Provided that the monitor is connected directly to the tested video, various
00:04:29
horizontal stripes are displayed on the screen. By the time the test took me 37 seconds and no problems were found
00:04:36
. To see detailed information about errors, if any, I run
00:04:41
a script called 580g. In the text editor that opens, the data
00:04:47
for each channel of the memory banks is shown in full detail. If one of the lines contains numerical values, then
00:04:52
the memory chip at this address has errors. Determining a faulty
00:04:58
memory bank on a card is quite simple. The numbering of channels on the map goes from bottom to top
00:05:03
counterclockwise starting from A and ending with D. Numeric values ​​in which 0 and 1. As a result, it
00:05:10
looks like this. For Nvidia video cards, the channel arrangement differs only in that
00:05:15
they start from one, and not 0 like on AMD. Let's go back to the software distribution and
00:05:21
look at the contents of the scripts we just used. I open with the text editor
00:05:27
nano 580th. As you can see, there are three commands that are run in turn. The first one is going
00:05:33
to the directory, the second one is deleting the memfa.log file, the third one is launching the tserver program. I return
00:05:40
back to the command line by pressing the key combination Ctrl + X. Now let's see what is hidden in the
00:05:46
580g script. Here, too, the transition to the specified folder is first performed, and then the
00:05:52
log file is opened using the pico text editor. I close nano and go to the mods directory. By entering
00:05:58
ls we see that there are folders with programs for testing the corresponding vidyushki. In my
00:06:04
case, I move to this one, which corresponds to the 580th cards. Again using the already known command to
00:06:10
view the information in the directory. We can observe programs, as well as configuration
00:06:16
and log files. Of these, I run agt with the mccfg key. As a result, quite detailed
00:06:23
information about the type of memory, its total size and the volume of each of the jars is provided. In some cases, it is possible
00:06:29
that the capacity of one or more RAM chips will differ
00:06:33
downwards. This may indicate their malfunction. To test from the current directory
00:06:39
, in contrast to the earlier script, you must first delete this log file. After that,
00:06:44
to perform diagnostics, I will use the tserver program, which I launch
00:06:49
with the boardtest=memfa key. Next, in fact, there is a memory check, after which
00:06:55
the result is displayed. In this case, all is well. More detailed information on the results of the
00:07:01
test can be found in the memfa.log file, tearing it off with the nano editor. Actually, this is the same file
00:07:07
that I ran with the 580g script. In addition to information about each memory channel
00:07:13
, the frequency at which it was tested is given. Returning to the command line for the next test
00:07:19
, I delete the log. Then I enter ./agt a space –mem=1950. Thus, I change the frequency of the memory banks
00:07:28
during the diagnostics from the base 300 MHz to the specified one. Next, I start tserver again. The changes made
00:07:35
in some cases may allow to identify faulty video memory, which works
00:07:40
well at low frequencies. In my case, the check was successful, which is also evidenced by the information in the log file.
00:07:46
As an option, you can set the state of the card when the monitor is not connected to it, but, for example, to the
00:07:52
integrated graphics adapter. In this case, by going to the video directory and running the agt program
00:07:58
with the specified values, information about its memory is provided. But as for the work of the
00:08:04
tserver program, here it is slightly different. Because in this case, the various gray stripes are not displayed on the screen
00:08:10
, but everything else is the same. As for the diagnostics of NVIDIA cards,
00:08:15
I provided more detailed information earlier, which can be found by going to the
00:08:20
description. That's all for me, I wish you a strong connection and a stable network!

Description:

A software assembly has been introduced that allows you to test the memory status of video cards of various AMD and Nvidia series. To do this, you need a storage device. It can be a flash drive with a capacity of at least 128 GB. Support channel: https://www.donationalerts.com/r/servlesson https://yoomoney.ru/to/41001221564861 https://youtu.be/pmgUkeIw9E4 - How to check NVIDIA graphics card RAM (MODS & MATS) https://youtu.be/yfprsUDBUto - AMD Radeon graphics card BIOS firmware https://youtu.be/x7FA2kU_xR8 - How to check video memory on an AMD card Music taken from the channel @Audio Library — Music for content creators track: - https://youtu.be/whLknQE4tSU - https://youtu.be/p229M0JJM2U

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