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17%
Creating Virtual SSDs
21.01.2020
Home »  HPC  »  Articles  » 
    7        1      56008 loop1 06    7        2      56184 loop2 07    7        3      91264 loop3 08  259        0  244198584 nvme0n1 09    8        0  488386584 sda 10    8        1       1024 sda1 11
17%
Improving performance with environment variables
02.08.2021
Home »  Archive  »  2021  »  Issue 64: Bare...  » 
Lead Image © sgame, fotolia.com
SGEMM for N = [2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048, 4096, 8192] A = single( rand(N,N) ); B = single( rand(N,N) ); start = clock(); C = A*B; elapsedTime = etime(clock(), start
17%
Rethinking RAID (on Linux)
25.03.2021
Home »  Archive  »  2021  »  Issue 62: Lean...  » 
Lead Image © nikkikii, 123RF.com
.00 MiB 2144.34 MB) Raid Devices : 3 Total Devices : 3 Persistence : Superblock is persistent Update Time : Sat Jan 9 16:36:21 2021 State : clean, resyncing
17%
Fundamentals of I/O benchmarking
11.04.2016
Home »  Archive  »  2016  »  Issue 32: Measu...  » 
Lead Image © Kheng Ho Toh, 123RF.com
(512 MB) copied, 49.1424 s, 10.4 MB/s If you want to empty the read and write cache for benchmark purposes, you can do so using: sync; echo 3 > /proc/sys/vm/drop_caches Sequential access
17%
OpenACC – Data Management
07.02.2019
Home »  HPC  »  Articles  » 
) copyout(f)   do j=1,n     f(i) = 2.0*e(j) +  (1.0/4.0)*(a(j)*4.14)   end   !$acc end data #pragma acc data copyin(a, b) copy(c) {   #pragma acc parallel loop {     for (int i=0; i < n
17%
mpi4py – High-Performance Distributed Python
12.11.2020
Home »  HPC  »  Articles  » 
 f(x):   return x*x # end def     def trapezoidal(a, b, n, h):     s = 0.0   s += h * f(a)   for i in range(1, n):     s += 2.0 * h * f(a + i*h)   # end for   s += h * f(b)   return (s/2.) # end def     # Main
17%
Stretching devices with limited resources
03.02.2022
Home »  Archive  »  2022  »  Issue 67: syst...  » 
Lead Image © Lucy Baldwin, 123RF.com
] device to store /var/log, offloading the primary source of boot-time writes from the physical device to a 50MB RAM drive. Figure 3: Three zram partitions
17%
Programming with OpenMP
07.11.2011
Home »  HPC  »  Articles  » 
; in each step s=s*‑1), 14        we add two elements at the same time. */ 15        pi += 1.0/(i*4.0 + 1.0); 16        pi ‑= 1.0/(i*4.0 + 3.0); 17   } 18   pi = pi * 4.0; 19   printf("Pi = %lf\n", pi); 20
17%
Security first with the Hiawatha web server
11.04.2016
Home »  Archive  »  2016  »  Issue 32: Measu...  » 
Lead Image © Tatiana Popov, 123RF.com
toolkit for joomla UrlToolkit { ToolkitID = joomla Match base64_encode[^(]*\([^)]*\) DenyAccess Match (<|%3C)([^s]*s)+cript.*(>|%3E) DenyAccess Match GLOBALS(=|\[|\%[0-9A-Z]{0,2}) Deny
17%
Processor and Memory Metrics
12.02.2014
Home »  HPC  »  Articles  » 
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

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