Drop legacy Classic builds

The Classic builds served for a while as an introduction to classic
embedded systems, with a user managed read-writable /etc.  Today we
decided to firmly take the plunge into the future with NETCONF and
focus on our core platforms aarch64 and x86_64 (for Qemu).

The reasons are several: reduce overhead, simplify build and release
work, as well as manual testing, since Classic builds do not have any
automated regression testing.

The Classic builds may be resurrected later in a dedicated project.

Signed-off-by: Joachim Wiberg <troglobit@gmail.com>
This commit is contained in:
Joachim Wiberg
2024-04-11 06:19:07 +02:00
parent d34e852574
commit 493be97769
33 changed files with 23 additions and 1980 deletions
+6 -16
View File
@@ -8,12 +8,11 @@ on:
jobs:
build:
name: Build ${{ matrix.platform }} ${{ matrix.variant }}
name: Build Infix ${{ matrix.platform }}
runs-on: ubuntu-latest
strategy:
matrix:
platform: [aarch64, x86_64]
variant: [netconf, classic]
fail-fast: false
steps:
- name: Maintenance
@@ -25,11 +24,7 @@ jobs:
- name: Set Build Variables
id: vars
run: |
if [ "${{ matrix.variant }}" = "netconf" ]; then
target=${{ matrix.platform }}
else
target=${{ matrix.platform }}-${{ matrix.variant }}
fi
target=${{ matrix.platform }}
echo "dir=infix-$target" >> $GITHUB_OUTPUT
echo "tgz=infix-$target.tar.gz" >> $GITHUB_OUTPUT
if [ "$target" = x86_64 ]; then
@@ -41,9 +36,8 @@ jobs:
uses: actions/cache@v4
with:
path: dl/
key: dl-${{ matrix.variant }}-${{ hashFiles('.git/modules/buildroot/HEAD', 'configs/*', 'package/*/*.hash') }}
key: dl-${{ hashFiles('.git/modules/buildroot/HEAD', 'configs/*', 'package/*/*.hash') }}
restore-keys: |
dl-${{ matrix.variant }}-
dl-
- name: Restore Cache of .ccache/
uses: actions/cache@v4
@@ -55,11 +49,7 @@ jobs:
ccache-
- name: Configure & Build
run: |
if [ "${{ matrix.variant }}" = "netconf" ]; then
target=${{ matrix.platform }}_defconfig
else
target=${{ matrix.platform }}_${{ matrix.variant }}_defconfig
fi
target=${{ matrix.platform }}_defconfig
echo "Building $target ..."
sudo mkdir ${{ steps.vars.outputs.out }}
sudo chown $(id -un):$(id -gn) ${{ steps.vars.outputs.out }}
@@ -73,14 +63,14 @@ jobs:
ln -s ${{ steps.vars.outputs.dir }} images
tar chfz ${{ steps.vars.outputs.tgz }} ${{ steps.vars.outputs.dir }}
- name: Test
if: matrix.platform == 'x86_64' && matrix.variant == 'netconf'
if: matrix.platform == 'x86_64'
run: |
export O=${{ steps.vars.outputs.out }}
make test-qeneth
- uses: actions/upload-artifact@v4
with:
path: ${{ steps.vars.outputs.out }}/${{ steps.vars.outputs.tgz }}
name: artifact-${{ matrix.variant }}-${{ matrix.platform }}
name: artifact-${{ matrix.platform }}
release:
if: ${{github.repository_owner == 'kernelkit' && github.ref_name == 'main'}}
name: Upload Latest Build
+5 -15
View File
@@ -20,12 +20,11 @@ on:
jobs:
build:
if: github.repository == 'kernelkit/infix' && startsWith(github.ref, 'refs/tags/')
name: Build Infix ${{ github.ref_name }} [${{ matrix.platform }}-${{ matrix.variant }}]
name: Build Infix ${{ github.ref_name }} [${{ matrix.platform }}]
runs-on: ubuntu-latest
strategy:
matrix:
platform: [aarch64, x86_64]
variant: [netconf, classic]
fail-fast: false
steps:
- name: Maintenance
@@ -44,11 +43,7 @@ jobs:
fi
echo "ver=${ver}" >> $GITHUB_OUTPUT
fver=${ver#v}
if [ "${{ matrix.variant }}" = "netconf" ]; then
target=${{ matrix.platform }}-${fver}
else
target=${{ matrix.platform }}-${{ matrix.variant }}-${fver}
fi
target=${{ matrix.platform }}-${fver}
echo "dir=infix-$target" >> $GITHUB_OUTPUT
echo "tgz=infix-$target.tar.gz" >> $GITHUB_OUTPUT
echo "out=/mnt/x-$target" >> $GITHUB_OUTPUT
@@ -56,9 +51,8 @@ jobs:
uses: actions/cache@v4
with:
path: dl/
key: dl-${{ matrix.variant }}-${{ hashFiles('.git/modules/buildroot/HEAD', 'configs/*', 'package/*/*.hash') }}
key: dl-${{ hashFiles('.git/modules/buildroot/HEAD', 'configs/*', 'package/*/*.hash') }}
restore-keys: |
dl-${{ matrix.variant }}-
dl-
- name: Restore Cache of .ccache/
uses: actions/cache@v4
@@ -72,11 +66,7 @@ jobs:
env:
INFIX_RELEASE: ${{ steps.vars.outputs.ver }}
run: |
if [ "${{ matrix.variant }}" = "netconf" ]; then
target=${{ matrix.platform }}_defconfig
else
target=${{ matrix.platform }}_${{ matrix.variant }}_defconfig
fi
target=${{ matrix.platform }}_defconfig
echo "Building $target ..."
sudo mkdir ${{ steps.vars.outputs.out }}
sudo chown $(id -un):$(id -gn) ${{ steps.vars.outputs.out }}
@@ -92,7 +82,7 @@ jobs:
- uses: actions/upload-artifact@v4
with:
path: ${{ steps.vars.outputs.out }}/${{ steps.vars.outputs.tgz }}
name: artifact-${{ matrix.variant }}-${{ matrix.platform }}
name: artifact-${{ matrix.platform }}
release:
name: Release Infix ${{ github.ref_name }}
needs: build
-19
View File
@@ -112,25 +112,6 @@ config INFIX_ARCH
default "riscv64" if BR2_riscv
default "x86_64" if BR2_x86_64
# For /etc/os-release, VARIANT & VARIANT_ID used, e.g., in mnt script
choice
prompt "Select variant/flavor"
default INFIX_VARIANT_NETCONF
config INFIX_VARIANT_NETCONF
bool "NETCONF"
help
Managed NETCONF mode, /etc is a ramdisk, all configuration is
generated by sysrepo plugins using NETCONF (xml) or RESTCONF.
config INFIX_VARIANT_CLASSIC
bool "Classic /etc mode"
help
User managed mode, read-write configuration files in /etc that
is saved across reboots.
endchoice
menu "Packages"
source "$BR2_EXTERNAL_INFIX_PATH/package/Config.in"
+1 -2
View File
@@ -105,8 +105,7 @@ more information, see: [Infix in Virtual Environments](doc/virtual.md).
>
> For *customer specific builds* of Infix, see your product repository.
[^1]: NETCONF or RESTCONF, <https://datatracker.ietf.org/doc/html/rfc8040>,
for more information, see [Infix Variants](doc/variant.md).
[^1]: NETCONF or RESTCONF, <https://datatracker.ietf.org/doc/html/rfc8040>
[^2]: An immutable operating system is one with read-only file systems,
atomic updates, rollbacks, declarative configuration, and workload
-13
View File
@@ -1,13 +0,0 @@
#!/bin/sh
. "$BR2_CONFIG"
# Prevent regen of host key at every boot, /etc is saved across reboots
if [ -L "$TARGET_DIR/etc/dropbear" ]; then
rm "$TARGET_DIR/etc/dropbear"
mkdir "$TARGET_DIR/etc/dropbear"
fi
# Classic builds don't have D-Bus
if [ -f "$TARGET_DIR/etc/dnsmasq.conf" ]; then
sed -i '/enable-dbus/d' "$TARGET_DIR/etc/dnsmasq.conf"
fi
-684
View File
@@ -1,684 +0,0 @@
#!/bin/sh
# COLUMS and ROWS should be set on the console, if not, use fallback
if [ -z "$COLUMNS" ]; then
if command -v tput; then
COLUMNS=$(tput cols)
else
COLUMNS=80
fi
fi
h1()
{
STR="$*"
if [ -n "$plain" ]; then
echo "$STR" | tr '[:lower:]' '[:upper:]'
echo "$STR" | sed 's/./=/g'
else
printf "\033[7m%-${COLUMNS}s\033[0m" "$STR"
fi
}
h2()
{
STR="$*"
if [ -n "$plain" ]; then
echo "$STR"
echo "$STR" | sed 's/./-/g'
else
printf "\033[1m%-${COLUMNS}s\033[0m" "$STR"
fi
}
ul()
{
if [ -n "$plain" ]; then
echo "__${*}__"
else
printf "\033[54%s\033[0m" "$*"
fi
}
em()
{
if [ -n "$plain" ]; then
echo "**${*}**"
else
printf "\033[5m%s\033[0m" "$*"
fi
}
overview()
{
cat <<EOF
$(h1 "Help System Press 'Q' to quit | Arrow keys and PgUp/PgDn to scroll")
$(h2 "See Also")
help edit Tutorial on VI and Mg editors
help net Network set up introduction
setup User friendly setup and diagnostic tool
$(h2 "General Syntax")
cmd [optional arg] E.g., use 'date -h' to get help for date command
$(h2 "File system")
pwd | ls | cd Show directory, contents, or change directory
cat file Show file contents
vi | mg [file] Edit file with the VI or Micro Emacs editor
$(h2 "Services")
initctl list Lists all configurable services (svc's)
initctl enable svc Enable a service 'svc'
initctl reload Reload init process' state, start/stop svc's
initctl start svc Start a stopped service 'svc'
initctl stop svc Stop 'svc'
initctl restart svc Restart a running 'svc'
initctl status [svc] Display running status of all services, or one 'svc'
$(h2 "Tools")
setup User friendly setup and diagnostic tool
date [-h] Display current time, or sets the system date
factory Factory reset the device (on the next boot)
hwclock [-h] Query or set the hardware clock (RTC)
logout | Ctrl-D Log out from TTY
mdio | mvls Low-level MDIO access, also for Marvell switch status
tail -F file Continuously read from a file Useful for monitoring the
health of services, see 'ls /var/log/' for log files
less [file] Pagers provding easily scrollable content (q quits) >
more [file] > e.g., 'cat very-long-file | less'
most [file] > e.g., 'cat very-long-file | most'
passwd Change user password
pwgen Password generator
reboot Restart the device
reset Reset the shell prompt if it gets garbled
$(h2 "Network Tools")
ethtool [-h] Ethernet stats, and low-level MAC/PHY settings
traceroute [-h] Trace the route ip packets follow going to a host
tcpdump [-h] Display network packet headers in real-time
arping [-h] Ping hosts by ARP requests/replies
fping [-h] Send ICMP ECHO_REQUEST packets to multiple hosts
ping [-h] Send ICMP ECHO_REQUEST packets to a network host
lynx URL [-h] The text mode web browser
netcalc [-h] Calculate IP network settings from a IP address
netcat [-h] NetCat - TCP/IP swiss army knife (alias: nc)
socat [-h] Multipurpose socket relay program
ttyd [-h] Sharing a terminal over the web
ifconfig [--help] See/Reconfigure available network interfaces
route [--help] Edit the kernel's routing tables
ifup | ifdown IFACE Bring up/down interfaces in /etc/network/interfaces
ip [link|addr] Manage available network interfaces
ip [rule|route] Manage routing tables
bridge [link|vlan] Manage bridge ports and VLANs
scp Securely copy a file to a remote host file system
tftp Copy a file to/from a remote host
ftpput Store a local file on a remote machine via FTP
ftpget Retrieve a remote file via FTP
wget Get a file using HTTP or FTP from a remote host
$(h2 "Overview Commands")
df -h List disk usage (in human readable format)
free List memory usage
ps List running processes
show [arg] Show system status, see 'show help' for more info
top Displays CPU usage and top list of running tasks
$(h2 "Interesting Files")
/etc/default/svc Command line args for service 'svc' (see above)
/etc/rc.local Local setup, runs after all services have started
/etc/network/ Directory of networking setup, see 'help net'
$(h2 "Example Commands")
cd /tmp; wget ftp://192.168.55.43/file && cat file
cd /var/log; tftp -p -l messages 192.168.55.43
cat /proc/net/arp
edit /etc/network/interfaces
$(h2 "See Also")
help edit Tutorial on VI and Mg editors
help net Network set up introduction
setup User friendly setup and diagnostic tool
EOF
}
vi()
{
cat <<EOF
$(h1 "Visual Editor (vi)")
Vi is the de facto standard editor in UNIX systems. It comes with two modes:
- $(em "Command mode (default):") administrative tasks such as saving files,
executing commands, moving the cursor, cutting and pasting lines or words,
as well as finding and replacing. $(em "Return to command mode with Esc")
- $(em "Insert mode:") Everything that's typed in this mode is interpreted as
input and placed in the file.
$(h2 "Navigation commands")
h - move the cursor one character to the left
j - move the cursor down one character
k - mode the cursor up one character
l - move the cursor right one character
b - move to beginning of word, or previous word
w - move to next word
0 - move to beginning of line
$ - move to end of line
:0 - move to beginning of file
G - move to end of file
$(h2 "Editing commands")
u - undo last operation
x - delete the character the cursor is on
cw - change word, from position of cursor
dw - delete to end of word
dd - delete the line the character is on
p - paste (line, word, or char) after cursor
P - paste (line, word, or char) before cursor
$(h2 "Saving and quit commands")
:w - save the current file
:w filename - save a copy of the file named filename
:w! - try to save the file, even if it is read only
:wq - save and quit vi
ZZ - save and quit vi
:wq! - try to save the file if it is read only, quit if successful
:wq filename - save a copy of the file named filename and quit
:wq! filename - save a copy of the file named filename and quit,
override read only permissions if possible
:q - quit vi
:q! - quit vi even if the file has unsaved changes
$(h2 "Enter insert mode")
a - append new text after the cursor
i - insert text before the cursor
o - open a new line below the cursor
O - open a new line above the cursor
> Return to command mode with Esc
EOF
}
emacs()
{
cat <<EOF
$(h1 "Micro Emacs (mg)")
Mg is a bit more user-friendly than vi. It has the same familiar interface
as Notepad, but with slightly different keybindings.
$(h2 "Introduction")
Most commands involve using the Control ("Ctrl") or the Meta ("Alt") key.
The following conventions are used in the online help:
C-<chr> means hold down the Control key while typing the character <chr>
M-<chr> means hold down the Alt key while typing the character <chr>
If you don't have a Meta/Alt key, you can use Esc instead. Press and release
the Esc key and then type <chr>. This is equivalent to M-<chr>.
$(h2 "Navigation")
Though arrow keys, Home/End, and PgUp/PgDn usually work, using Mg over serial
console can sometimes cause these keys to be mismapped by terminal program.
C-f Move forward one character (can also use right arrow key)
C-b Move backward one character (can also use left arrow key)
C-p Move up one line (can also use up arrow key)
C-n Move down one line (can also use down arrow key)
M-f Move forward one word
M-b Move backward one word
C-a Move to beginning of line (can also use Home key)
C-e Move to end of line (can also use End key)
C-v Move forward one page (can also use PgDn/Page Down key)
M-v Move backward one page (can also use PgUp/Page Up key)
M-< Move to beginning of file
M-> Move to end of file
C-x g Move to line number
$(h2 "Editing")
All edit commands that kill (cut) text is placed in a kill ring (clipboard).
Note: when marking text, there is no visual mark.
C-_ Undo, also C-x u
M-% Replace word/string in file, from cursor position
M-q Reformat paragraph (set fill column with C-x f)
C-s Search forward (type C-s again to find next)
C-r Reversed search
C-Space Set beginning of mark (beginning of selected text)
C-x C-x Jump back and forth between mark and cursor position
C-x h Mark whole buffer
C-w Wipe (cut) region from mark to cursor position
M-w Copy region from mark to cursor position
C-y Yank (paste) text from kill ring
C-k Kill (cut) to end of line
M-Backspace Kill (delete) previous word
M-d Kill (delete) next word
C-d Delete character to the right
C-o Open new line at cursor
$(h2 "General Commands")
C-g Abort current command
C-l Recenter buffer on current line
C-h b List all keybindings
M-! Run shell command, output in new buffer
C-z Suspend Mg, return to shell, use 'fg' to get back
C-x C-f Open file
C-x C-i Insert file at cursor position
C-x C-s Save file
C-x s Save file (interactive)
C-x k Kill (close) file
C-x C-b List open buffers (files)
C-x b Switch to another buffer
C-x C-c Exit
$(h2 "Window Commands")
C-x 0 Unsplit, keep other window
C-x 1 Unsplit, keep this window
C-x 2 Split window in two
C-x o Go to other window
C-x p Go to previous window
C-x n Go to next window
C-x ^ Enlarge this split
EOF
}
editor()
{
case $1 in
vi)
vi
;;
ed* | em* | mg)
emacs
;;
*)
vi
emacs
cat <<EOF
$(h1 "Summary")
Use Mg or GNU Nano if you are a beginner. The system is set up to so you can
use the 'edit' command, which will start GNU Nano:
edit /etc/rc.local # Starts GNU Nano
EOF
;;
esac
}
networking()
{
cat <<EOF
$(h1 "Networking")
This section details how to set up everything from basic to advanced networking.
Topics covered include:
- Static vs Dynamic Addresses
- VLAN Interfaces
- Bridging Interfaces
- Link Aggregation (bonding)
- Persistent Configuration
Please note, the terms 'port' and 'interface' may be used interchangably in
the following text (and elsewher online as well). Usually the term 'port' is
reserved for Ethernet links attached to a switch or bridge, while the term
'interface' more generically refers to the physical interface in a system.
$(h2 "Static vs Dynamic Addresses")
An IPv4 address consists of four "octets" separated by periods. A static IPv4
address can look like this:
192.168.1.42
However, for networking to function properly, a device usually needs a netmask,
default route, NTP server, and at least one DNS address. Setting all these up
statically is a lot of work to maintain, in particular with many devices.
For both IPv4 and IPv6 there is an alternative called DHCP. It is a dynamic
protocol where a server on request from a client device hands out a "lease" of
an IP address, as well as lot of other network parameters, including but not
limited to the ones already mentioned. A client device can give hints to the
server, e.g., its hostname, MAC address (default), or other client identifier.
It is up to the server to honor these hints or not, but it is very common to
set up the server to honor the client's hostname and automatically update the
central name server (DNS) when the client is online.
| There are many other interesting aspects to DHCP not covered here.
| For instance, DHCP relay servers (proxies), that can be used to
| forward DHCP requests from very large networks to a central server.
| Some relay "agents" even support something called Option 82, which
| when running on a simple switch, can attach port and relay info to
| the client's DHCP request -- allowing the server to assign an IP
| address per port, even on remote switches (with a relay agent).
When your interface is setup with DHCP, use the 'ifconfig' or 'ip addr' tools
to see which address you got, if needed (see next section).
In cases when the DHCP client cannot find a DHCP server, and thus not obtain a
lesae, the system falls back to set a link-local address (169.254.*.*). This
can be disabled by editing the file /etc/dhcpcd.conf, adding:
noipv4ll
A link-local address is however very useful, in particular in combination with
mDNS to discover and access a device you do not know, or do not want to know,
the IP address to. See more in the next section.
$(h2 "DNS and mDNS")
Managing a central DNS is both painful and time consuming, most networks, and
in particular industrial, therefore only set up a DNS for static servers and
resources. Leaving end devices, switches, and in many cases even routers,
without a human-friendly name on the network. This have misled many to think
that they need to know the IP address, and often opt for static addresses on
equipment. Meaning many devices out-of-the-box have a static address set that
need to be manually changed before the device is deployed on the network.
A less time consuming, and human-friendly, way is to enable mDNS (multicast
DNS). With this protocol the device notifies all neighbors on the same LAN
of how to reach it:
"Hello everyone, my address is 169.254.47.11, you can call me device.local"
Any other device that also has mDNS enabled can then automaticall update a
local database of name-to-address mappings. Usually the name sent out is
the device's hostname. (It is up to the device manufacturer to set a useful
default hostname, i.e., model-01-02-03, where the suffix is the last octets
of the base MAC address, from the product label on the case.)
As you can see, in combination with a link-local address (previous section)
mDNS is a very attractive combination that greatly simplify device management.
Tools:
avahi-browse -a
ping foo.local
mDNS, or more correctly mDNS-SD, is also used for *Service Discovery*. E.g.,
a printer can publish IPP records with meta data on the printer type and model
or donwload URL for drivers. Switches and routers usually publish how they
can be reached: HTTP/HTTPS and SSH.
mDNS is supported in this product and should be enabled by default. To
verify that it works, in Windows, macOS, or Linux, open your web browser
and point it to <https://hostname-01-02-03.local>. This is the hostname
and three last octets of the device's base MAC address. You can also use
mDNS browsers or command line tools like mdns-scan
$(h2 "VLAN Interfaces")
A VLAN interface in Linux is an "upper" interface, e.g., 'eth0.1'. It is
where you set an IP address and interact with th rest of the world. The
base/raw/lower interface, here 'eth0', is the physical interface on which
Ethernet packets ingress and egress with a VLAN tag. To create 'eth0.1':
ip link add eth0.1 link eth0 vlan id 1
In Linux a VLAN interface is a "stackable" entity. Many VLAN interfaces
can be built on top of each other. When injecting a packet on the top
most interface, the kernel adds the corresponding VLAN "tag" when the
packet goes down the order of stacked interfaces, and then finally hits
the physical interface and proceeds to egress onto the media.
ip link add eth0.1.2 link eth0.1 vlan id 2
Injecting a packet on 'eth0.1.2' creates a double-tagged VLAN frame when
the packet egresses 'eth0'. The outermost tag has VID 1 and the inner
VID is 2.
VLAN interfaces can be used for many things, here we will focus on their
use as upper interface on a bridge.
$(h2 "Bridging Interfaces")
A bridge is the correct name for a switch. In the context of this text,
however, we will use the term to refer to the Linux bridge module in the
kernel, which implements an advanced software switch. The Linux bridge
supports "offloading" many switching functions to an underlying switching
chipset, when available. This greatly simplifies managing that switch since
the same tools one use to manage the bridge will, by extension, also be used
to manage the switch.
To create a bridge in Linux:
ip link add br0 type bridge
To add three ports (interfaces) to the bridge we use:
ip link set eth0 master br0
ip link set eth1 master br0
ip link set eth2 master br0
Bring all ports and the bridge 'up' and you have a working switch! Any frame
injected on eth0 (from the outside) can be switched to either of eth1, eth2,
*or* br0. As soon as the bridge has learned where end devices are connected,
none of the other ports will see the traffic -- like a regular switch.
Note: these ports should not (cannot) have any IP address. Instead, any IP
address is set on 'br0'. To disable IPv6 link-local address, set the
/proc/sys/net/ipv6/conf/eth0/disable_ipv6 sysctl file to '1'.
$(h2 "Bridging and VLANs")
A VLAN-aware bridge works the same way, only with VLAN separation taken into
account. All communication, as well as MAC address learning, is limited to
ports in the same VLAN. The syntax is slightly different and requires a few
more steps:
ip link add br0 type bridge vlan_filtering 1
ip link set eth0 master br0
ip link set eth1 master br0
ip link set eth2 master br0
ip link set eth3 master br0
To assign ports to different VLANs, and make sure they are regular "access"
ports (untagged). We assign eth0 and eth1 to VLAN 1 and the others to VLAN 2:
bridge vlan add vid 1 dev eth0 pvid untagged
bridge vlan add vid 1 dev eth1 pvid untagged
bridge vlan add vid 2 dev eth2 pvid untagged
bridge vlan add vid 2 dev eth3 pvid untagged
Here's the twist, to be able to reach the bridge (switch) itself from each
VLAN, we need to ensure the bridge itself is a tagged member of each VLAN:
bridge vlan add vid 1 dev br0 self
bridge vlan add vid 2 dev br0 self
This way we can add VLAN interfaces on top of br0, which we in turn can set
a static or dynamic IP address on:
ip link add vlan1 link br0 type vlan id 1
ip link add vlan2 link br0 type vlan id 2
The resulting stack of interfaces look like this:
:
vlan1 : vlan2 Layer-3 :: IP Networking
\\ : / _________________________
.-------------.
| br0 | Layer-2 :: Switching
'-------------' _________________________
/ | : | \\
eth0 eth1 : eth2 eth3 Layer-1 :: Link layer
:
$(h2 "Persistent Configuration")
A simple end device can get by with the following in /etc/network/interfaces:
auto lo
iface lo inet loopback
auto eth0
iface eth0 inet dhcp
This brings up both the loopback (required for UNIX networking to function),
and the (presumed only) Ethernet interface. The loopback gets its standard
address, 127.0.0.1, and eth0 will request its IP address using DHCP.
To set up the bridge example (above), is actually quite a lot easier than
using the command line ip and bridge tools. Create the file 'bridge':
edit /etc/network/interfaces.d/bridge
Paste in the following content:
iface e0
bridge-access 1
iface e1
bridge-access 1
iface e2
bridge-access 2
iface e3
bridge-access 2
auto br0
iface br0
bridge-ports e0 e1 e2 e3
bridge-vlan-aware yes
bridge-stp on
bridge-vids 1 2
auto vlan1
iface vlan1 inet dhcp
vlan-id 1
vlan-raw-device br0
auto vlan2
iface vlan2 inet static
vlan-id 2
vlan-raw-device br0
address 192.168.2.1/24
Notice how 'vlan1' only has a DHCP and 'vlan2' uses a static address. It is
possible to combine the two if needed. Use 'inet dhcp' and add an 'address'
statement to the iface stanza.
$(h2 "Port Classification")
The bundled 'show' script is a very handy tool. It use several tricks to make
information about the system more accessible. On switching capable hardware
products, switch ports are identified early at system bootstrap and placed in
the 'port' group. See 'ip link' output:
...
4: e0: <BROADCAST,MULTICAST> master br0 state UP $(em "group port")
link/ether 52:54:00:12:34:56 brd ff:ff:ff:ff:ff:ff
...
When running in Qemu or other hardware it may be useful to manually classify
certain interfaces as ports. This can be achieved in many ways, here we show
two. First /etc/mactab, which is read at boot to rename interfaces according
their matching MAC address, one interface per line:
e0 52:54:00:12:34:56
e1 52:54:00:12:34:57
e2 52:54:00:12:34:58
e3 52:54:00:12:34:59
Another way is to add something like this to /etc/rc.local:
for port in eth0 eth1 eth3 eth4; do
ip link set \$port group port
done
$(h2 "Interesting Files")
- /etc/dhcpcd.conf General DHCP and ZeroConf (LL) settings
- /etc/network/interfaces The original, useful for small setups
- /etc/network/interfaces.d/* Snippets, useful for non-trivial setups
- /etc/mactab Rename interfaces: 'NAME16CHARS WHITESPACE MAC'
- /etc/sysctl.conf Interface and TCP/IP settings, e.g., routing
- /etc/sysctl.d/* Snippets, useful for per-subsystem settings
$(h1 "Summary")
All persistent networking is set up in /etc/network/interfaces using the
program ifupdown-ng. The tools to reconfigure networking at runtime are:
ifup [-a] [IFACES]
ifdown [-a] [IFACES]
When changing the configuration at runtime you usually have to bring the
affected interfaces down (ifdown e0 e1 e2 e3), if they were set up with
/etc/network/interfaces before. Then do the change, and bring it all up
again.
Both tools understand dependencies between interfaces, so when a 'ifup -a'
command is received it brings up all interfaces: adding links to br0 before
adding VLANs, the vlan1 and vlan2 interfaces on top so it of it all. Then
finally it can start the DHCP client on vlan1 and set the static IP address
on vlan2.
$(em ">>> Be careful with these tools when logged in remotely! <<<")
EOF
}
topic()
{
topic=$1
[ -n "$1" ] && shift
case $topic in
ed*)
# shellcheck disable=SC2068
editor $*
;;
net*)
networking
;;
*)
overview
;;
esac
}
if [ "$1" = "-p" ]; then
shift
pager="cat"
plain="yes"
else
if command -v most; then
pager=most
elif command -v less; then
pager="less -R"
elif command -v more; then
pager="more"
else
pager="cat"
fi
fi
if [ -t 1 ] ; then
fn=$(mktemp /tmp/system-help.XXXXXX)
# shellcheck disable=SC2086,SC2068
topic $@ >"$fn"
$pager "$fn"
rm "$fn"
else
topic "$*"
fi
-16
View File
@@ -1,16 +0,0 @@
#!/bin/sh
# Changes hostname in /etc/hostname and /etc/hosts
current=$(cat /etc/hostname)
newname=$1
[ -n "$newname" ] || exit 1
sed -i "s/$current/$newname/" /etc/hosts
sed -i "s/$current/$newname/" /etc/hostname
hostname $newname
initctl touch sysklogd
initctl touch dnsmasq
initctl reload
-3
View File
@@ -1,3 +0,0 @@
#!/bin/sh
pdmenu
clear
-327
View File
@@ -1,327 +0,0 @@
#!/bin/sh
# Displays basic information about the system
# shellcheck disable=SC2048,SC2086
. /etc/os-release
bopt="-c"
opt="-br"
all=""
plain=""
TTY=$(resize)
eval "$TTY"
# COLUMS and ROWS should be set on the console, if not, use fallback
if [ -z "$COLUMNS" ]; then
if command -v tput; then
COLUMNS=$(tput cols)
else
COLUMNS=80
fi
fi
h1()
{
STR="$*"
if [ -n "$plain" ]; then
echo "$STR" | tr '[:lower:]' '[:upper:]'
else
printf "\033[7m%-${COLUMNS}s\033[0m\n" "$STR"
fi
}
h2()
{
STR="$*"
if [ -n "$plain" ]; then
echo "$STR"
echo "$STR" | sed 's/./-/g'
else
printf "\033[1m%-${COLUMNS}s\033[0m\n" "$STR"
fi
}
dm()
{
if [ -n "$plain" ]; then
echo "${*}"
else
printf "\033[2m%s\033[0m\n" "$*"
fi
}
ul()
{
if [ -n "$plain" ]; then
printf "__%s__" "$*"
else
printf "\033[4%s\033[0m" "$*"
fi
}
em()
{
if [ -n "$plain" ]; then
printf "**%s**" "$*"
else
printf "\033[5m%s\033[0m" "$*"
fi
}
usage()
{
cat <<EOF
usage:
show [opt] cmd
options:
-a Show all, of something
-f Show full output, not brief port/iface listings
-h Show this help text
-n Show output without any footer
-p Show plain output, no bells or whistles
commands:
port PORT Show port configuration and link information
ports Show ports available for bridging
vlans Show port groups in bridge
ifaces Show interfaces and their addresses
fdb Show forwarding database (unicast)
mdb Show multicast forwarding database
ip route Show routing table
log [FILE] Show latest entries from syslog, or other FILE
rmon PORT Show RMON counters for PORT (when applicable)
system Show OS details
version Show OS verson
EOF
}
# Usage 1: show port eth0
# Usage 2: show port
# Usage 3: show ports
#
# The first show ethtool output for 'eth0' (in this case). The latter
# two are the same, showing a summary of all interfaces classified as
# access ports.
ports()
{
if [ $# -gt 0 ] && [ -e "/sys/class/net/$1" ]; then
for port in $*; do
ethtool "$port"
done
return
fi
h1 "PORT STATE MAC ADDRESS FLAGS"
if grep -q port /etc/iproute2/group && [ -z "$all" ]; then
ip $opt link show group port
else
ip $opt link show
fi
if [ -z "$plain" ] && [ -z "$nofoot" ]; then
dm "______________________________________________________________________________"
dm "Use: '[ip|bridge] --help' and '[ip|bridge] link help' for more details."
fi
}
vlans()
{
h1 "INTERFACE VLAN FLAGS"
bridge $bopt vlan show |tail +2 | awk 'NF { iface=$1; vid=$2; printf("%-16s %4d ", iface, vid); for (i=3; i <= NF; i++) printf("%s ", $i); printf("\n"); }'
if [ -z "$plain" ] && [ -z "$nofoot" ]; then
dm "______________________________________________________________________________"
dm "See: 'bridge --help' and 'bridge vlan help' for more details."
fi
}
ifaces()
{
h1 "INTERFACE STATE ADDRESS"
if [ -n "$all" ]; then
ip $opt addr show
elif grep -q iface /etc/iproute2/group; then
ip $opt addr show group iface
else
ip $opt addr show |awk '{ if ($1 !~ /eth[0-9]*/ && $1 !~ /.*@NONE/) { print }}'
fi
if [ -z "$plain" ] && [ -z "$nofoot" ]; then
dm "______________________________________________________________________________"
dm "See: 'ip --help' and 'ip address help' for more details."
fi
}
log()
{
if [ -n "$1" ] && [ -r "/var/log/$1" ]; then
fn="/var/log/$1"
else
fn="/var/log/syslog"
fi
if [ -n "$all" ]; then
cat $fn
else
tail -$LINES $fn
fi
if [ -z "$plain" ] && [ -z "$nofoot" ]; then
dm "______________________________________________________________________________"
dm "See: 'tail -25 /log/FILE', 'tail -F /log/FILE' to continuously monitor files."
fi
}
rmon()
{
if [ -z "$*" ]; then
echo "Missing argument, see 'show port' for available interfaces"
exit 1
fi
for port in $*; do
ethtool -S "$port"
done
if [ -z "$plain" ] && [ -z "$nofoot" ]; then
dm "______________________________________________________________________________"
dm "See: 'ethtool --help' for more details."
fi
}
rstp()
{
mstpctl showbridge
echo "br0 port info"
mstpctl showport br0
}
fdb()
{
bridge $bopt fdb show
}
mdb()
{
bridge $bopt mdb show
}
routes()
{
ip $opt route show
}
igmp()
{
querierctl $@
}
system()
{
h1 "SYSTEM INFORMATION"
echo "System Name : $(uname -n)"
echo "System Variant : $VARIANT"
echo "System Description : $PRETTY_NAME"
echo "System Contact : $HOME_URL"
echo "System Timezone : $(cat /etc/timezone)"
echo "System Type : $NAME"
echo "System Version : $(cat /etc/version)"
echo "System Arch : $(uname -m)"
echo "Kernel Version : $(uname -sr)"
}
version()
{
cat /etc/version
}
while [ "$1" != "" ]; do
case $1 in
-a)
all=1
;;
-f)
opt=""
if [ -n "$plain" ]; then
opt="-color=never"
bopt="-color=never"
fi
;;
-n)
nofoot="yes"
;;
-p)
plain="yes"
opt="$opt -color=never"
bopt="$bopt -color=never"
;;
-h)
usage
exit 0
;;
*)
break
esac
shift
done
cmd=$1
if [ -n "$cmd" ]; then
shift
fi
case $cmd in
help)
usage
;;
port*)
ports $*
;;
vlan*)
vlans
;;
fdb)
fdb
;;
mdb)
mdb
;;
if*)
ifaces
;;
ip)
cmd=$1
shift
case $cmd in
addr*)
ifaces
;;
route*)
routes
;;
igmp*)
igmp $*
;;
*)
usage
;;
esac
;;
log)
log $1
;;
rmon)
rmon $*
;;
route*)
routes
;;
span*)
rstp
;;
sys*)
system
;;
ver*)
version
;;
*)
usage
exit 1
;;
esac
-55
View File
@@ -1,55 +0,0 @@
#!/bin/sh
#set -x
usage()
{
cat <<EOF
usage:
yorn [-h] ["Do you want to run command?" command]
options:
-h Show this help text
-p Show plain output, no bells or whistles
Displays the yes-or-no question and runs command on yes.
EOF
}
if [ -z "$1" ]; then
usage
exit 1
fi
case $1 in
-h)
usage
exit 0
;;
-p)
plain=1
shift
;;
*)
;;
esac
question=$1
shift
command=$*
if [ -z "$command" ]; then
usage
exit 1
fi
if [ -z "$plain" ]; then
if dialog --erase-on-exit --colors --defaultno --yesno "\Zb$question\ZB" 0 0; then
yorn=y
fi
else
# shellcheck disable=SC2162,SC3045
read -n 1 -p "$question (y/N): " yorn
fi
if [ "$yorn" = "y" ] || [ "$yorn" = "Y" ]; then
$command
fi
-18
View File
@@ -1,18 +0,0 @@
# System-wide .bashrc file for interactive bash(1) shells.
# If not running interactively, don't do anything
[ -z "$PS1" ] && return
# Reevaluate for each line, in case hostname changes
function prompt_command
{
PS1="\u@$(hostname):\w\$ "
}
export PROMPT_COMMAND=prompt_command
# check the window size after each command and, if necessary,
# update the values of LINES and COLUMNS.
shopt -s checkwinsize
# Disble built-ins
enable -n help
-51
View File
@@ -1,51 +0,0 @@
# Infix's configuration for dhcpcd.
# See dhcpcd.conf(5) for details.
# Allow users of this group to interact with dhcpcd via the control socket.
#controlgroup wheel
# Inform the DHCP server of our hostname for DDNS.
#hostname
# Use the hardware address of the interface for the Client ID.
#clientid
# or
# Use the same DUID + IAID as set in DHCPv6 for DHCPv4 ClientID as per RFC4361.
# Some non-RFC compliant DHCP servers do not reply with this set.
# In this case, comment out duid and enable clientid above.
duid
# Persist interface configuration when dhcpcd exits.
persistent
# vendorclassid is set to blank to avoid sending the default of
# dhcpcd-<version>:<os>:<machine>:<platform>
vendorclassid
# A list of options to request from the DHCP server.
option domain_name_servers, domain_name, domain_search
option classless_static_routes
# Respect the network MTU. This is applied to DHCP routes.
option interface_mtu
# Request a hostname from the network
option host_name
# Most distributions have NTP support.
#option ntp_servers
# Rapid commit support.
# Safe to enable by default because it requires the equivalent option set
# on the server to actually work.
option rapid_commit
# A ServerID is required by RFC2131.
require dhcp_server_identifier
# Generate SLAAC address using the Hardware Address of the interface
#slaac hwaddr
# OR generate Stable Private IPv6 Addresses based from the DUID
slaac private
# Background immediately, do not wait for DHCP lease (speed up boot process)
background
-144
View File
@@ -1,144 +0,0 @@
#
# Run-time configuration file for dialog
#
# Automatically generated by "dialog --create-rc <file>"
#
#
# Types of values:
#
# Number - <number>
# String - "string"
# Boolean - <ON|OFF>
# Attribute - (foreground,background,highlight?,underline?,reverse?)
# Set aspect-ration.
aspect = 0
# Set separator (for multiple widgets output).
separate_widget = ""
# Set tab-length (for textbox tab-conversion).
tab_len = 0
# Make tab-traversal for checklist, etc., include the list.
visit_items = OFF
# Shadow dialog boxes? This also turns on color.
use_shadow = ON
# Turn color support ON or OFF
use_colors = ON
# Screen color
screen_color = (WHITE,BLUE,OFF)
# Shadow color
shadow_color = (BLACK,BLACK,OFF)
# Dialog box color
dialog_color = (BLACK,CYAN,OFF)
# Dialog box title color
title_color = (BLACK,CYAN,ON)
# Dialog box border color
border_color = dialog_color
# Active button color
button_active_color = (CYAN,BLACK,ON)
# Inactive button color
button_inactive_color = dialog_color
# Active button key color
button_key_active_color = (WHITE,BLACK,ON)
# Inactive button key color
button_key_inactive_color = (WHITE,CYAN,ON)
# Active button label color
button_label_active_color = button_active_color
# Inactive button label color
button_label_inactive_color = dialog_color
# Input box color
inputbox_color = (BLACK,CYAN,OFF)
# Input box border color
inputbox_border_color = inputbox_color
# Search box color
searchbox_color = inputbox_color
# Search box title color
searchbox_title_color = (BLUE,WHITE,ON)
# Search box border color
searchbox_border_color = (WHITE,WHITE,ON)
# File position indicator color
position_indicator_color = searchbox_title_color
# Menu box color
menubox_color = dialog_color
# Menu box border color
menubox_border_color = dialog_color
# Item color
item_color = inputbox_color
# Selected item color
item_selected_color = button_key_active_color
# Tag color
tag_color = button_inactive_color
# Selected tag color
tag_selected_color = (CYAN,BLACK,OFF)
# Tag key color
tag_key_color = button_key_inactive_color
# Selected tag key color
tag_key_selected_color = (WHITE,BLACK,ON)
# Check box color
check_color = inputbox_color
# Selected check box color
check_selected_color = button_key_active_color
# Up arrow color
uarrow_color = (GREEN,WHITE,ON)
# Down arrow color
darrow_color = uarrow_color
# Item help-text color
itemhelp_color = (WHITE,BLACK,OFF)
# Active form text color
form_active_text_color = button_key_active_color
# Form text color
form_text_color = (WHITE,CYAN,ON)
# Readonly form item color
form_item_readonly_color = (CYAN,WHITE,ON)
# Dialog box gauge color
gauge_color = searchbox_title_color
# Dialog box border2 color
border2_color = dialog_color
# Input box border2 color
inputbox_border2_color = inputbox_color
# Search box border2 color
searchbox_border2_color = inputbox_color
# Menu box border2 color
menubox_border2_color = dialog_color
@@ -1 +0,0 @@
run [S] /libexec/infix/swup --
-112
View File
@@ -1,112 +0,0 @@
# NetBox mdev.conf based on https://github.com/slashbeast/mdev-like-a-boss/
# Syntax:
# [-]devicename_regex user:group mode [=path]|[>path]|[!] [@|$|*cmd args...]
# [-]$ENVVAR=regex user:group mode [=path]|[>path]|[!] [@|$|*cmd args...]
# [-]@maj,min[-min2] user:group mode [=path]|[>path]|[!] [@|$|*cmd args...]
#
# [-]: do not stop on this match, continue reading mdev.conf
# =: move, >: move and create a symlink
# !: do not create device node
# @|$|*: run cmd if $ACTION=remove, @cmd if $ACTION=add, *cmd in all cases
# support module loading on hotplug
$MODALIAS=.* root:root 660 @modprobe -b "$MODALIAS"
# null may already exist; therefore ownership has to be changed with command
null root:root 666 @chmod 666 $MDEV
zero root:root 666
full root:root 666
random root:root 444
urandom root:root 444
hwrandom root:root 444
grsec root:root 660
# Kernel-based Virtual Machine.
#kvm root:kvm 660
# vhost-net, to be used with kvm.
#vhost-net root:kvm 660
kmem root:root 640
mem root:root 640
port root:root 640
# console may already exist; therefore ownership has to be changed with command
console root:tty 600 @chmod 600 $MDEV
ptmx root:tty 666
pty.* root:tty 660
# Typical devices
tty root:tty 666
tty[0-9]* root:tty 660
vcsa*[0-9]* root:tty 660
ttyS[0-9]* root:dialout 660
# block devices
ram([0-9]*) root:disk 660 >rd/%1
loop([0-9]+) root:disk 660 >loop/%1
sr[0-9]* root:cdrom 660 @ln -sf $MDEV cdrom
fd[0-9]* root:floppy 660
#SUBSYSTEM=block;.* root:disk 660 */libexec/infix/storage-device
# Run settle-nics every time new NIC appear.
# If you don't want to auto-populate /etc/mactab with NICs,
# run 'settle-nis' without '--write-mactab' param.
#-SUBSYSTEM=net;DEVPATH=.*/net/.*;.* root:root 600 @/libexec/infix/settle-nics --write-mactab
net/tun[0-9]* root:netdev 660
net/tap[0-9]* root:root 600
# alsa sound devices and audio stuff
#SUBSYSTEM=sound;.* root:audio 660 @/libexec/infix/sound-control
adsp root:audio 660 >sound/
audio root:audio 660 >sound/
dsp root:audio 660 >sound/
mixer root:audio 660 >sound/
sequencer.* root:audio 660 >sound/
# raid controllers
cciss!(.*) root:disk 660 =cciss/%1
ida!(.*) root:disk 660 =ida/%1
rd!(.*) root:disk 660 =rd/%1
fuse root:root 666
card[0-9] root:video 660 =dri/
agpgart root:root 660 >misc/
psaux root:root 660 >misc/
rtc root:root 664 >misc/
# input stuff
SUBSYSTEM=input;.* root:plugdev 660
# v4l stuff
vbi[0-9] root:video 660 >v4l/
video[0-9] root:video 660 >v4l/
# dvb stuff
dvb.* root:video 660
# drm etc
dri/.* root:video 660
# Don't create old usbdev* devices.
usbdev[0-9].[0-9]* root:root 660 !
# Stop creating x:x:x:x which looks like /dev/dm-*
[0-9]+\:[0-9]+\:[0-9]+\:[0-9]+ root:root 660 !
# /dev/cpu support.
microcode root:root 600 =cpu/
cpu([0-9]+) root:root 600 =cpu/%1/cpuid
msr([0-9]+) root:root 600 =cpu/%1/msr
# Populate /dev/bus/usb.
#SUBSYSTEM=usb;DEVTYPE=usb_device;.* root:root 660 */libexec/infix/dev-bus-usb
# Catch-all other devices, Right now useful only for debuging.
#.* root:root 660 */libexec/infix/catch-all
-1
View File
@@ -1 +0,0 @@
Note: use help, show, and setup commands to set up and diagnose the system.
@@ -1,6 +0,0 @@
# interfaces(5) file used by ifup(8) and ifdown(8)
auto lo
iface lo inet loopback
source-directory /etc/network/interfaces.d
-75
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@@ -1,75 +0,0 @@
#!/usr/bin/pdmenu
title:Setup & Diagnostics
color:desktop:blue:blue
color:title:blue:white
color:base:blue:white
menu:main:Main Menu:Use arrow keys, Enter, Escape, and Q to navigate
show:_System Settings..::system
show:_Network Settings..::network
show:_Tools..::tools
nop
exec:Show _fdb:truncate:show -p fdb
exec:Show _mdb:truncate:show -p mdb
exec:Show _ports:truncate:show -p ports
exec:Show _vlans:truncate:show -p vlans
exec:Show _interfaces:truncate:show -p iface
exec:Show _routes:truncate:show -p route
nop
exec:Show _online users:truncate:w
exec:Show _CPU Load::top
nop
show:_Help..::help
exit:_Quit
menu:help:Help:Help Menu
exec:Introduction:truncate:/bin/help -p
exec:Editors:truncate:/bin/help -p edit
exec:Networking:truncate:/bin/help -p net
nop
exit:_Main menu..
menu:network:Network:Network Settings
exec:Show all _links:truncated:ip -br link
exec:Show all _addresses:truncated:ip -br address
exec:Show managed _interfaces:truncated:ifparse --all
nop
exec:Take _interface down:edit:ifdown ~Enter name of interface to take down:~
exec:Take _interface up:edit:ifup ~Enter name of interface to take up:~
nop
exec:Edit _dhcpcd.conf::edit /etc/dhcpcd.conf
exec:Edit _dnsmasq.conf::edit /etc/dnsmasq.conf
exec:Edit _interfaces::edit /etc/network/interfaces
exec:Edit _mactab::edit /etc/mactab
exec:Edit _sysctl.conf::edit /etc/sysctl.conf
nop
exit:_Main menu..
menu:system:System:System Settings
exec:List _log files:truncate:ls -l /var/log
exec:Show _log file:edit,truncate:show -p -a log ~Show logfile, Enter for syslog:syslog~
exec:Change _hostname:edit:hostnm ~Enter new hostname \[-a-zA-Z0-9\]:~
exec:Change your _password::passwd
exec:Edit _rc.local::edit /etc/rc.local
nop
exec:_Show State of Services:truncate:initctl -p
exec:_Reload services:truncate:initctl reload;sleep 2;initctl -p
exec:Show _available services:truncate:initctl -p ls
exec:_Enable service:edit:initctl enable ~Enter name of service (filename) to enable:~
exec:_Disable service:edit:initctl disable ~Enter name of service (filename) to disable:~
nop
exec:_Factory Reset::yorn "Factory reset device (reboots), are you sure?" factory -y
nop
exit:_Main menu..
menu:tools:Tools:Tools
exec:_Ping:edit,pause:ping ~Enter address (IP or name) to ping:~
exec:_Shell Prompt::/bin/bash --login
exec:_SSH:edit,pause:ssh ~Enter [username@]address (IP or name) to SSH to:~
exec:_Telnet:edit,pause:telnet ~Enter address (IP or name) to telnet to:~
exec:_Traceroute:edit,pause:mtr ~Enter address (IP or name) to traceroute to:~
exec:Browse _WWW:edit,pause:lynx ~Enter URL to browse:~
nop
exit:_Main menu..
-19
View File
@@ -1,19 +0,0 @@
#!/bin/sh
# This file is run at the very end of runlevel S (bootstrap)
#
# Note: 1) not all initctl commands are allowed here
# 2) to enable IP forwarding, use /etc/sysctl.conf, or /etc/sysctl.d/
# 3) ensure the script calls `exit 0` at the end
#
# Uncomment to classify all interfaces starting with 'eth' as ports.
#for port in $(ip -br link |awk '/eth/{print $1}'); do
# ip link set $port group port
#done
# Uncomment to enable IP masquerading (NAT) of all traffic egressing
# the WAN interface, here eth0. E.g., if you are a router for your
# LAN on eth1.
#iptables -t nat -A POSTROUTING -o eth0 -j MASQUERADE
exit 0
-62
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@@ -1,62 +0,0 @@
#!/bin/sh
# Factory default:
# 1) all switch ports in VLAN 1 of br0
# 2) no switch ports => DHCP on eth0
# 3) no eth0
create_bridge()
{
nm=$1
shift
ports=$@
touch "/etc/network/interfaces.d/$nm"
for port in $ports; do
cat <<-EOF >>"/etc/network/interfaces.d/$nm"
iface $port
bridge-access 1
post-up ip link set $port group port
EOF
done
cat <<-EOF >> "/etc/network/interfaces.d/$nm"
auto $nm
iface $nm
bridge-ports $ports
bridge-vlan-aware yes
bridge-stp on
bridge-vids 1
auto vlan1
iface vlan1 inet dhcp
vlan-id 1
vlan-raw-device $nm
post-up ip link set vlan1 group iface
EOF
ip link set vlan1 group iface
}
# Check if already set up
[ -z "$(ls -A /etc/network/interfaces.d/)" ] || exit 0
# Check for custom hostname from Qemu/Qeneth
nm=$(cat /sys/firmware/qemu_fw_cfg/by_name/opt/hostname/raw)
if [ -n "$nm" ]; then
hostnm "$nm"
fi
# need to check for 'length > 0' because ip command
# outputs empty json objects for non-port group ifs
ports=$(ip -json link show group port | jq -r '.[].ifname | select(length > 0)' | tr "\n" " ")
if [ -n "$ports" ]; then
create_bridge br0 $ports
else
ifaces=$(ip -json addr show |jq -r '.[] | select(.link_type=="ether").ifname')
for iface in $ifaces; do
cat <<-EOF > "/etc/network/interfaces.d/$iface"
auto $iface
iface $iface inet dhcp
pre-up ip link set $iface group iface
EOF
done
fi
-6
View File
@@ -1,6 +0,0 @@
#!/bin/sh
# Probe for various types of harware features
if dmesg |grep -q QEMU || test -d /sys/module/qemu_fw_cfg; then
initctl -nbq cond set qemu
fi
+1 -1
View File
@@ -60,7 +60,7 @@ cat <<EOF >"$BINARIES_DIR/${NM}.gns3a"
"status": "stable",
"maintainer": "$VENDOR_NAME",
"maintainer_email": "${SUPPORT_URL#mailto:}",
"usage": "Default login, user/pass: admin/admin\n\nType 'help' for an overview of commands and relevant configuration files.\n\nFor Classic builds the following applies: the /etc directory is writable, use the passwd tool after login as part of your set up.\nFor networking, classify interfaces as switchports with /etc/mactab, syntax: 'MAC-address eN', where N is the port number (1-MAX).\nTo set up bridging and management interfaces, use /etc/network/interfaces, and /etc/network/interfaces.d/",
"usage": "Default login, user/pass: admin/admin\n\nType 'cli' (and Enter) followed by 'help' for an overview of commands and relevant configuration files.",
"port_name_format": "eth{0}",
"linked_clone": true,
"qemu": {
-7
View File
@@ -40,13 +40,6 @@ rm -f "$TARGET_DIR/etc/os-release"
if [ -n "$INFIX_RELEASE" ]; then
echo "IMAGE_VERSION=\"$INFIX_RELEASE\""
fi
if [ "$INFIX_VARIANT_NETCONF" = "y" ]; then
echo "VARIANT=\"Managed NETCONF\""
echo "VARIANT_ID=netconf"
else
echo "VARIANT=\"Classic, writable /etc\""
echo "VARIANT_ID=classic"
fi
echo "ARCHITECTURE=\"${INFIX_ARCH}\""
echo "HOME_URL=$INFIX_HOME"
if [ -n "$INFIX_VENDOR" ]; then
+3 -3
View File
@@ -77,9 +77,9 @@ config QEMU_MACHINE_RAM
string "RAM size (k/M/G)"
default "384M"
help
The default, 384 MiB, works for most configurations, even less for
the Infix Classic builds. However, if you get kernel panic with:
"System is deadlocked on memory", try increasing this one.
The default, 384 MiB, works for most configurations. However,
if you get kernel panic with: "System is deadlocked on memory",
try increasing this one.
config QEMU_KERNEL
string
-5
View File
@@ -126,11 +126,6 @@ if ! mount_rw cfg >/dev/null 2>&1; then
# Even if /mnt/var isn't available, if /mnt/cfg isn't either, then
# there's no point in overlaying one ramdisk on top of another.
vlibsrc=
else
# Classic Infix has read-write /etc across boots
if [ "$VARIANT_ID" != "netconf" ]; then
etcsrc=/mnt/cfg
fi
fi
if check_factory; then
-120
View File
@@ -1,120 +0,0 @@
BR2_aarch64=y
BR2_ARM_FPU_VFPV4=y
BR2_TOOLCHAIN_EXTERNAL=y
BR2_TOOLCHAIN_EXTERNAL_BOOTLIN=y
BR2_TOOLCHAIN_EXTERNAL_GDB_SERVER_COPY=y
BR2_DL_DIR="${BR2_EXTERNAL_INFIX_PATH}/dl"
BR2_CCACHE=y
BR2_CCACHE_DIR="${BR2_EXTERNAL_INFIX_PATH}/.ccache"
BR2_ENABLE_DEBUG=y
BR2_GLOBAL_PATCH_DIR="${BR2_EXTERNAL_INFIX_PATH}/patches"
BR2_TARGET_GENERIC_HOSTNAME="infix"
BR2_TARGET_GENERIC_ISSUE="Infix by KernelKit"
BR2_INIT_FINIT=y
BR2_ROOTFS_DEVICE_CREATION_DYNAMIC_MDEV=y
BR2_ROOTFS_DEVICE_TABLE="system/device_table.txt ${BR2_EXTERNAL_INFIX_PATH}/board/common/xattrs"
BR2_TARGET_GENERIC_GETTY_TERM="xterm"
BR2_SYSTEM_DHCP="eth0"
BR2_ENABLE_LOCALE_WHITELIST="C en_US en_CA"
BR2_GENERATE_LOCALE="en_US en_CA"
BR2_TARGET_TZ_INFO=y
BR2_ROOTFS_OVERLAY="${BR2_EXTERNAL_INFIX_PATH}/board/common/rootfs ${BR2_EXTERNAL_INFIX_PATH}/board/aarch64/rootfs ${BR2_EXTERNAL_INFIX_PATH}/board/classic/rootfs"
BR2_ROOTFS_POST_BUILD_SCRIPT="${BR2_EXTERNAL_INFIX_PATH}/board/common/post-build.sh ${BR2_EXTERNAL_INFIX_PATH}/board/classic/post-build.sh"
BR2_ROOTFS_POST_IMAGE_SCRIPT="${BR2_EXTERNAL_INFIX_PATH}/board/common/post-image.sh"
BR2_LINUX_KERNEL=y
BR2_LINUX_KERNEL_CUSTOM_VERSION=y
BR2_LINUX_KERNEL_CUSTOM_VERSION_VALUE="6.6.22"
BR2_LINUX_KERNEL_USE_CUSTOM_CONFIG=y
BR2_LINUX_KERNEL_CUSTOM_CONFIG_FILE="${BR2_EXTERNAL_INFIX_PATH}/board/aarch64/linux_defconfig"
BR2_LINUX_KERNEL_DTS_SUPPORT=y
BR2_LINUX_KERNEL_INTREE_DTS_NAME="alder/alder marvell/armada-3720-espressobin marvell/armada-3720-espressobin-emmc marvell/armada-3720-espressobin-v7 marvell/armada-3720-espressobin-v7-emmc marvell/armada-3720-espressobin-ultra marvell/cn9130-crb-A marvell/cn9130-crb-B microchip/sparx5_pcb135_emmc_no_psci"
BR2_LINUX_KERNEL_CUSTOM_DTS_OVERLAY="${BR2_EXTERNAL_INFIX_PATH}/board/aarch64/dts"
BR2_LINUX_KERNEL_DTB_KEEP_DIRNAME=y
BR2_LINUX_KERNEL_INSTALL_TARGET=y
BR2_PACKAGE_BUSYBOX_CONFIG="${BR2_EXTERNAL_INFIX_PATH}/board/common/busybox_defconfig"
BR2_PACKAGE_BUSYBOX_SHOW_OTHERS=y
BR2_PACKAGE_STRACE=y
BR2_PACKAGE_STRESS_NG=y
BR2_PACKAGE_JQ=y
BR2_PACKAGE_MDIO_TOOLS=y
BR2_PACKAGE_RNG_TOOLS=y
BR2_PACKAGE_UBOOT_TOOLS=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_SUPPORT=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_SIGNATURE_SUPPORT=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_CHECK_SIGN=y
BR2_PACKAGE_UBOOT_TOOLS_MKENVIMAGE=y
BR2_PACKAGE_CA_CERTIFICATES=y
BR2_PACKAGE_LIBCURL_CURL=y
BR2_PACKAGE_NSS_MDNS=y
BR2_PACKAGE_ONIGURUMA=y
BR2_PACKAGE_AVAHI=y
# BR2_PACKAGE_AVAHI_AUTOIPD is not set
BR2_PACKAGE_AVAHI_DAEMON=y
BR2_PACKAGE_AVAHI_DEFAULT_SERVICES=y
BR2_PACKAGE_CHRONY=y
BR2_PACKAGE_DHCPCD=y
BR2_PACKAGE_DNSMASQ=y
BR2_PACKAGE_DROPBEAR=y
BR2_PACKAGE_DROPBEAR_DISABLE_REVERSEDNS=y
BR2_PACKAGE_DROPBEAR_WTMP=y
BR2_PACKAGE_DROPBEAR_LASTLOG=y
BR2_PACKAGE_DROPBEAR_LEGACY_CRYPTO=y
BR2_PACKAGE_ETHTOOL=y
BR2_PACKAGE_FPING=y
# BR2_PACKAGE_IFUPDOWN_SCRIPTS is not set
BR2_PACKAGE_IPROUTE2=y
BR2_PACKAGE_IPTABLES=y
BR2_PACKAGE_IPTABLES_NFTABLES=y
BR2_PACKAGE_LLDPD=y
BR2_PACKAGE_LYNX=y
BR2_PACKAGE_MTR=y
BR2_PACKAGE_NETCALC=y
BR2_PACKAGE_NFTABLES=y
BR2_PACKAGE_NMAP=y
BR2_PACKAGE_NMAP_NMAP=y
BR2_PACKAGE_NMAP_NPING=y
BR2_PACKAGE_OPENRESOLV=y
BR2_PACKAGE_SOCAT=y
BR2_PACKAGE_TCPDUMP=y
BR2_PACKAGE_TRACEROUTE=y
BR2_PACKAGE_DIALOG=y
BR2_PACKAGE_PDMENU=y
BR2_PACKAGE_HTOP=y
BR2_PACKAGE_IRQBALANCE=y
BR2_PACKAGE_KMOD_TOOLS=y
BR2_PACKAGE_PWGEN=y
BR2_PACKAGE_RAUC=y
BR2_PACKAGE_RAUC_GPT=y
BR2_PACKAGE_RAUC_NETWORK=y
BR2_PACKAGE_SYSKLOGD=y
BR2_PACKAGE_SYSKLOGD_LOGGER=y
BR2_PACKAGE_WATCHDOGD=y
BR2_PACKAGE_MG=y
BR2_PACKAGE_MOST=y
BR2_PACKAGE_NANO=y
BR2_TARGET_ROOTFS_SQUASHFS=y
# BR2_TARGET_ROOTFS_TAR is not set
BR2_PACKAGE_HOST_E2FSPROGS=y
BR2_PACKAGE_HOST_ENVIRONMENT_SETUP=y
BR2_PACKAGE_HOST_GENEXT2FS=y
BR2_PACKAGE_HOST_GENIMAGE=y
BR2_PACKAGE_HOST_RAUC=y
BR2_PACKAGE_HOST_UBOOT_TOOLS=y
BR2_PACKAGE_HOST_UBOOT_TOOLS_FIT_SUPPORT=y
BR2_PACKAGE_HOST_UBOOT_TOOLS_FIT_SIGNATURE_SUPPORT=y
INFIX_VENDOR_HOME="https://github.com/kernelkit"
INFIX_DESC="Infix is a Network Operating System based on Linux. It can be set up both as a switch, with offloading using switchdev, and a router with firewalling."
INFIX_HOME="https://github.com/kernelkit/infix/"
INFIX_DOC="https://github.com/kernelkit/infix/tree/main/doc"
INFIX_VARIANT_CLASSIC=y
BR2_PACKAGE_FACTORY=y
BR2_PACKAGE_FINIT_SULOGIN=y
BR2_PACKAGE_FINIT_PLUGIN_HOTPLUG=y
BR2_PACKAGE_FINIT_PLUGIN_HOOK_SCRIPTS=y
BR2_PACKAGE_FINIT_PLUGIN_MODULES_LOAD=y
BR2_PACKAGE_FINIT_PLUGIN_MODPROBE=y
BR2_PACKAGE_FINIT_PLUGIN_RTC=y
BR2_PACKAGE_FINIT_PLUGIN_TTY=y
BR2_PACKAGE_FINIT_PLUGIN_URANDOM=y
BR2_PACKAGE_IFUPDOWN_NG=y
BR2_PACKAGE_TETRIS=y
-121
View File
@@ -1,121 +0,0 @@
BR2_x86_64=y
BR2_x86_corei7=y
BR2_TOOLCHAIN_EXTERNAL=y
BR2_TOOLCHAIN_EXTERNAL_GDB_SERVER_COPY=y
BR2_DL_DIR="${BR2_EXTERNAL_INFIX_PATH}/dl"
BR2_CCACHE=y
BR2_CCACHE_DIR="${BR2_EXTERNAL_INFIX_PATH}/.ccache"
BR2_ENABLE_DEBUG=y
BR2_GLOBAL_PATCH_DIR="${BR2_EXTERNAL_INFIX_PATH}/patches"
BR2_TARGET_GENERIC_HOSTNAME="infix"
BR2_TARGET_GENERIC_ISSUE="Infix by KernelKit"
BR2_INIT_FINIT=y
BR2_ROOTFS_DEVICE_CREATION_DYNAMIC_MDEV=y
BR2_ROOTFS_DEVICE_TABLE="system/device_table.txt ${BR2_EXTERNAL_INFIX_PATH}/board/common/xattrs"
BR2_TARGET_GENERIC_GETTY_TERM="xterm"
BR2_SYSTEM_DHCP="eth0"
BR2_ENABLE_LOCALE_WHITELIST="C en_US en_CA"
BR2_GENERATE_LOCALE="en_US en_CA"
BR2_TARGET_TZ_INFO=y
BR2_ROOTFS_OVERLAY="${BR2_EXTERNAL_INFIX_PATH}/board/common/rootfs ${BR2_EXTERNAL_INFIX_PATH}/board/x86_64/rootfs ${BR2_EXTERNAL_INFIX_PATH}/board/classic/rootfs"
BR2_ROOTFS_POST_BUILD_SCRIPT="board/qemu/x86_64/post-build.sh ${BR2_EXTERNAL_INFIX_PATH}/board/common/post-build.sh ${BR2_EXTERNAL_INFIX_PATH}/board/common/post-build.sh ${BR2_EXTERNAL_INFIX_PATH}/board/classic/post-build.sh"
BR2_ROOTFS_POST_IMAGE_SCRIPT="${BR2_EXTERNAL_INFIX_PATH}/board/common/post-image.sh"
BR2_LINUX_KERNEL=y
BR2_LINUX_KERNEL_CUSTOM_VERSION=y
BR2_LINUX_KERNEL_CUSTOM_VERSION_VALUE="6.6.22"
BR2_LINUX_KERNEL_USE_CUSTOM_CONFIG=y
BR2_LINUX_KERNEL_CUSTOM_CONFIG_FILE="${BR2_EXTERNAL_INFIX_PATH}/board/x86_64/linux_defconfig"
BR2_LINUX_KERNEL_INSTALL_TARGET=y
BR2_LINUX_KERNEL_NEEDS_HOST_LIBELF=y
BR2_PACKAGE_BUSYBOX_CONFIG="${BR2_EXTERNAL_INFIX_PATH}/board/common/busybox_defconfig"
BR2_PACKAGE_BUSYBOX_SHOW_OTHERS=y
BR2_PACKAGE_JQ=y
BR2_PACKAGE_RNG_TOOLS=y
BR2_PACKAGE_UBOOT_TOOLS=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_SUPPORT=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_SIGNATURE_SUPPORT=y
BR2_PACKAGE_UBOOT_TOOLS_FIT_CHECK_SIGN=y
BR2_PACKAGE_UBOOT_TOOLS_MKENVIMAGE=y
BR2_PACKAGE_CA_CERTIFICATES=y
BR2_PACKAGE_LIBCURL_CURL=y
BR2_PACKAGE_NSS_MDNS=y
BR2_PACKAGE_ONIGURUMA=y
BR2_PACKAGE_AVAHI=y
# BR2_PACKAGE_AVAHI_AUTOIPD is not set
BR2_PACKAGE_AVAHI_DAEMON=y
BR2_PACKAGE_AVAHI_DEFAULT_SERVICES=y
BR2_PACKAGE_DHCPCD=y
BR2_PACKAGE_DNSMASQ=y
BR2_PACKAGE_DROPBEAR=y
BR2_PACKAGE_DROPBEAR_DISABLE_REVERSEDNS=y
BR2_PACKAGE_DROPBEAR_WTMP=y
BR2_PACKAGE_DROPBEAR_LASTLOG=y
BR2_PACKAGE_DROPBEAR_LEGACY_CRYPTO=y
BR2_PACKAGE_ETHTOOL=y
BR2_PACKAGE_FPING=y
# BR2_PACKAGE_IFUPDOWN_SCRIPTS is not set
BR2_PACKAGE_IPROUTE2=y
BR2_PACKAGE_IPTABLES=y
BR2_PACKAGE_IPTABLES_NFTABLES=y
BR2_PACKAGE_LLDPD=y
BR2_PACKAGE_LYNX=y
BR2_PACKAGE_MTR=y
BR2_PACKAGE_NETCALC=y
BR2_PACKAGE_NFTABLES=y
BR2_PACKAGE_NMAP=y
BR2_PACKAGE_NMAP_NMAP=y
BR2_PACKAGE_NMAP_NPING=y
BR2_PACKAGE_OPENRESOLV=y
BR2_PACKAGE_SOCAT=y
BR2_PACKAGE_TCPDUMP=y
BR2_PACKAGE_TRACEROUTE=y
BR2_PACKAGE_DIALOG=y
BR2_PACKAGE_PDMENU=y
BR2_PACKAGE_HTOP=y
BR2_PACKAGE_IRQBALANCE=y
BR2_PACKAGE_KMOD_TOOLS=y
BR2_PACKAGE_PWGEN=y
BR2_PACKAGE_RAUC=y
BR2_PACKAGE_RAUC_GPT=y
BR2_PACKAGE_RAUC_NETWORK=y
BR2_PACKAGE_SYSKLOGD=y
BR2_PACKAGE_SYSKLOGD_LOGGER=y
BR2_PACKAGE_WATCHDOGD=y
BR2_PACKAGE_MG=y
BR2_PACKAGE_MOST=y
BR2_PACKAGE_NANO=y
BR2_TARGET_ROOTFS_SQUASHFS=y
# BR2_TARGET_ROOTFS_TAR is not set
BR2_TARGET_EDK2=y
BR2_TARGET_GRUB2=y
BR2_TARGET_GRUB2_X86_64_EFI=y
BR2_TARGET_GRUB2_BUILTIN_MODULES_EFI="boot linux ext2 squash4 part_gpt normal efi_gop configfile loadenv test echo reboot net efinet tftp loopback"
BR2_TARGET_GRUB2_BUILTIN_CONFIG_EFI="${BR2_EXTERNAL_INFIX_PATH}/board/x86_64/grub-embed.cfg"
BR2_TARGET_GRUB2_INSTALL_TOOLS=y
BR2_PACKAGE_HOST_DOSFSTOOLS=y
BR2_PACKAGE_HOST_E2FSPROGS=y
BR2_PACKAGE_HOST_ENVIRONMENT_SETUP=y
BR2_PACKAGE_HOST_GENEXT2FS=y
BR2_PACKAGE_HOST_GENIMAGE=y
BR2_PACKAGE_HOST_MTOOLS=y
BR2_PACKAGE_HOST_RAUC=y
BR2_PACKAGE_HOST_UBOOT_TOOLS=y
BR2_PACKAGE_HOST_UBOOT_TOOLS_FIT_SUPPORT=y
BR2_PACKAGE_HOST_UBOOT_TOOLS_FIT_SIGNATURE_SUPPORT=y
INFIX_VENDOR_HOME="https://github.com/kernelkit"
INFIX_DESC="Infix is a Network Operating System based on Linux. It can be set up both as a switch, with offloading using switchdev, and a router with firewalling."
INFIX_HOME="https://github.com/kernelkit/infix/"
INFIX_DOC="https://github.com/kernelkit/infix/tree/main/doc"
INFIX_VARIANT_CLASSIC=y
BR2_PACKAGE_FACTORY=y
BR2_PACKAGE_FINIT_SULOGIN=y
BR2_PACKAGE_FINIT_PLUGIN_HOTPLUG=y
BR2_PACKAGE_FINIT_PLUGIN_HOOK_SCRIPTS=y
BR2_PACKAGE_FINIT_PLUGIN_MODULES_LOAD=y
BR2_PACKAGE_FINIT_PLUGIN_MODPROBE=y
BR2_PACKAGE_FINIT_PLUGIN_RTC=y
BR2_PACKAGE_FINIT_PLUGIN_TTY=y
BR2_PACKAGE_FINIT_PLUGIN_URANDOM=y
BR2_PACKAGE_IFUPDOWN_NG=y
BR2_PACKAGE_TETRIS=y
DISK_IMAGE_BOOT_BIN=y
-1
View File
@@ -24,7 +24,6 @@ the `help` command.
- [Find Your Device on the Network](discovery.md)
- [Hardware Info & Status](hardware.md)
- [Scripting Infix](scripting.md)
- [Infix Variants](variant.md)
- [Virtual Environments](virtual.md)
- [Vital Product Data (VPD)](vpd.md)
- [YANG to Ethtool Mapping](eth-counters.md)
-2
View File
@@ -331,8 +331,6 @@ rollbacks when upgrading to a new version.
Non-volatile storage of the system configuration and user data.
Concretely, user data is everything stored under `/root` and `/home`.
Depending on the operating mode, the configuration is either the NETCONF
databases from `/cfg`, or the contents of `/etc` in classic mode.
### `var` - Variable Data
-67
View File
@@ -1,67 +0,0 @@
Infix Variants
==============
Infix comes in two *flavors*. Both have a default `admin` account,
allowed to log in from remote, with the default password `admin` --
*customer specific builds* may have something else, e.g., per-device
generated factory password.
NETCONF
-------
Infix use by [sysrepo][1] and [Netopeer][2] to provide NETCONF support.
A set of sysrepo plugins configure the network, using the Linux iproute2
tool suite, generate configuration files in `/etc`, and control the all
system daemons, e.g., enable DHCP client on an interface.
Configuration of an Infix device can be done remotely, using command
line tools like [netconf-client][3] and [netopeer2-cli][2], or desktop
GUI tools like [NETCONFc][4] and [MG-SOFT NetConf Browser][5]. It is
also possible to log in to the device using SSH and set it up locally
using the built-in [CLI](cli/introduction.md)[^1].
> **Note:** unlike Infix Classic, the `/etc` directory is a volatile RAM
> disk populated on each boot from the `startup-config`, ensuring a
> coherent centralized view of the system.
For more information, see [Containers in Infix](container.md).
[^1]: A [RESTCONF][7] based WebUI is also in progress.
Classic
-------
Infix Classic is very much like a traditional embedded Linux system.
Stripped down, single read-only image, reusing the same Linux kernel and
Buildroot base as the NETCONF variant. Unlike the NETCONF variant, it
is up to the administrator to manually modify system configuration files
in `/etc`[^2] and control system services using the `initctl` tool.
For example, networking is configured by editing the [ifupdown-ng][6]
files in `/etc/network/interfaces`.
To perform a factory reset, wiping all changes in `/etc`, and all other
areas of the file system that are persistent, use the <kbd>factory</kbd>
tool.
See the online <kbd>help</kbd> command for an introduction to the system
and help on available tools, like text editors, network debugging, etc.
> **Note:** the Classic builds are legacy at this point. They were
> initially used for educational purposes, and sometimes as slightly
> more useful end-devices in GNS3. Little to no testing is done on
> them and they may eventually be migrated to a separate repository.
[^2]: In Classic builds the `/etc` directory is saved across reboots on
a separate read-write partition.
[1]: https://www.sysrepo.org/
[2]: https://github.com/CESNET/netopeer
[3]: https://pypi.org/project/netconf-client/
[4]: http://www.seguesoft.com/index.php/netconfc/
[5]: https://www.mg-soft.si/mgNetConfBrowser.html
[6]: https://github.com/ifupdown-ng/ifupdown-ng
[7]: https://datatracker.ietf.org/doc/html/rfc8040
+6 -7
View File
@@ -40,14 +40,13 @@ The Infix test suite is built around Qemu and [Qeneth][qeth], see:
GNS3
----
Download the [latest build][rels] of the `x86_64`, or `x86_64_classic`
flavor. Unpack the tarball in a dedicated directory and use ["Import
Appliance"][APPL] to install the `.gns3a` file into [GNS3][].
Download the [latest build][rels] of the `x86_64`, or `aarch64` if your
host machine is Arm. Unpack the tarball in a dedicated directory and
use ["Import Appliance"][APPL] to install the `.gns3a` file into
[GNS3][].
Infix (`x86_64`) is in the "Router" category, it has with 10 interfaces
available by default for use as switch ports or routing. The *classic*
build only has one interface by default, geared more towards acting as
an end device.
Infix is in the "Router" category, it comes with 10 interfaces available
by default for use as switch ports or routing.
[Qemu]: https://www.qemu.org/
[GNS3]: https://gns3.com/
+1 -1
View File
@@ -7,7 +7,7 @@ whitelist()
{
nm=$(basename "$1")
case $nm in
aarch64_classic_defconfig | cn9130_crb_boot_defconfig | fireant_boot_defconfig | x86_64_classic_defconfig)
cn9130_crb_boot_defconfig | fireant_boot_defconfig)
return 0
;;
*)