15%
16.10.2012
6), and start stream blocking (line 7), which executes the command and waits for the response. Now, write the output to a variable (lines 9-12), close the stream (line 14), and send the response
15%
18.02.2018
public_key = "${file("${var.ssh_pub_key}")}"
07 }
08 resource "digitalocean_droplet" "mywebapp" {
09 image = "docker-16-04"
10 name: guest
11 region = "fra1"
12 size = "512mb"
13 ssh
14%
02.02.2021
.matrix.dev/gentoo-java:latest-amd64 . && touch buildtime && docker push dockerrepo.matrix.dev/gentoo-java:latest-amd64 && touch pushtime
Sending build context to Docker daemon 66.12MB
Step 1/6 : FROM dockerrepo
14%
20.03.2014
": 2048,
07 "resolvers": ["192.168.111.254"],
08 "disks": [
09 {
10 "image_uuid": "1fc068b0-13b0-11e2-9f4e-2f3f6a96d9bc",
11 "boot": true,
12 "model": "virtio"
13 }
14 ],
15
14%
21.08.2014
Connection Costs
Bandwidth
Costs
10 Mbps
100
16 Mbps
62
100 Mbps
19
200 Mbps
12
622 Mbps
6
1 Gbps
4
14%
29.09.2020
-amd64.tar.gz.sha256sum
[...snip]
e6be589df85076108c33e12e60cfb85dcd82c5d756a6f6ebc8de0ee505c9fd4c helm-v3.1.2-linux-amd64.tar.gz
$ sha256sum helm-v3.1.2-linux-amd64.tar.gz
e6be589df85076108c33e12e60cfb85
14%
09.10.2017
snaps, you need to install the snapcraft
package:
$ apt install snapcraft
After a little more than 8MB of files are installed, you can start creating a snap with an init command (Figure 6), which pulls
14%
26.01.2025
: A remarkable showing: 90MBps of sequential throughput and more than 6,000 random reads.
to /boot/firmware/config.txt and rebooting will do the trick, which results in substantially unchanged sequential
14%
30.11.2025
System (output follows)
09 DOWNLOAD PKGS FILES XFER (MB)
10 Completed 20/20 3021/3021 42.55/42.55
11
12 PHASE
14%
22.12.2017
to it, you can begin to appreciate what compilers and linkers do for users today.
Listing 1
Show Linked Libraries (ldd)
$ pgf90 test1.f90 -o test1
$ ldd test1
linux-vdso.so.1 => (0x