69%
17.06.2017
-name virtbridge-port2 ifname virbr0-nic master virt-br0
06 Connection 'virtbridge-port2' (f598a4ce-6564-4b3f-b46e-c3da256915af) successfully added.
07 # brctl show virt-br0 bridge name bridge id STP enabled
69%
27.08.2014
was the sequential write test using 1MB record sizes:
./iozone -i 0 -c -e -w -r 1024k -s 32g -t 2 -+n > iozone_write_1.out
To gather the block statistics, I ran ioprof in a different terminal window before I ran
69%
02.08.2022
.
The primary changes made to the benchmarks of the latest version 3.4.2 of the NPB are:
added class F to the existing S, W, A, B, C, D, E
added dynamic memory allocation
added MPI and Open
69%
25.03.2021
. The same applies to the execution of programs launched from external storage media such as a USB stick. The rule with GUID B2B3F03D-6A65-4F7B-A9C7-1C7EF74A9BA4
restricts the execution rights of programs
69%
11.02.2016
+----------------------------------+---------+---------------------+
40 | 47e0142a3638fdc24fe40d4e4fbce3f1 | Row 1 | 2015-09-13 15:24:12 |
41 | b833c1e4c5bfc47d0dbe31c2e3f30837 | Row 3 | 2015-09-13 15:24:14 |
42 | c7d46523a316de4e1496c65c3cbdf358 | Row 2 | 2015
69%
12.02.2014
B hald-addon-input
...
22.9 MiB + 4.0 MiB = 26.9 MiB plasma-desktop
26.0 MiB + 5.7 MiB = 31.7 MiB konsole (3)
28.3 MiB + 4.4 MiB = 32.7 MiB kwin
41.0 MiB + 2.0 MiB = 43.0 MiB Xorg
146.9
68%
30.01.2020
Fmt Attr PSize PFree
/dev/nvme0n1 vg-cache lvm2 a-- 232.88g 232.88g
/dev/sdb vg-cache lvm2 a-- <6.37t <6.37t
Say I want to use 90 percent of the slow disk: I will carve a logical
68%
25.09.2023
: 55 ms.
Port: 80: op 2.1. 10.0.0.23 80 Time: 26 ms.
Port: 80: op 2.2. 10.0.0.23 80 Time: 56 ms.
Port: 80: op 3.1. 10.0.0.23 80 Time: 25 ms.
Port: 80: op 3.2. 10.0.0.23 80 Time: 48 ms.
Port: 80: op 4
68%
14.11.2013
of an uncorrectable error by factors of 9-400.
Uncorrectable errors following a correctable error are still small at 0.1%-2.3% per year.
+ The incidence of correctable errors increases with age
68%
21.01.2021
This first article of a series looks at the forces that have driven desktop supercomputing, beginning with the history of PC and supercomputing processors through the 1990s into the early 2000s.
... 1992
i486DX2
2:1 clock multiplier, 40/20, 50/25, 66/33 speeds; L2 on MB
Mar 1994
i486DX4
3:1 clock multiplier, 75/25, 100/33 speeds; 16KB L1 cache on-die, L2 ...
This first article of a series looks at the forces that have driven desktop supercomputing, beginning with the history of PC and supercomputing processors through the 1990s into the early 2000s.