This commit is contained in:
Tom Guerin 2025-02-17 09:27:49 +01:00
parent 342037638b
commit 26629b2539
7 changed files with 212 additions and 0 deletions

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;
; BIND data file for local loopback interface
;
$TTL 604800
@ IN SOA srv-service.monlabo.lan. root.srv-service.monlabo.lan. (
2 ; Serial
604800 ; Refresh
86400 ; Retry
2419200 ; Expire
604800 ) ; Negative Cache TTL
NS srv-service.monlabo.lan.
srv-service A 172.16.0.254
srv-admin A 172.16.0.1
srvdns IN CNAME srv-service.monlabo.lan.
srvdns1 IN CNAME srv-service.monlabo.lan.
dns IN CNAME srv-service.monlabo.lan.
dns1 IN CNAME srv-service.monlabo.lan.
srvdhcp IN CNAME srv-service.monlabo.lan.
dhcp IN CNAME srv-service.monlabo.lan.
srvadmin IN CNAME srv-admin-tg.monlabo.lan.
router IN CNAME srv-admin-tg.monlabo.lan.
gateway IN CNAME srv-admin-tg.monlabo.lan.

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;
; BIND data file for local loopback interface
;
$TTL 604800
@ IN SOA srv-service.monlabo.lan. root.srv-service.monlabo.lan. (
2 ; Serial
604800 ; Refresh
86400 ; Retry
2419200 ; Expire
604800 ) ; Negative Cache TTL
@ IN NS srv-service.monlabo.lan.
@ IN A 127.0.0.1
srv-service A 172.16.0.254
254 PTR srv-service.moblabo.lan
1 PTR srv-admin-tg.monlabo.lan

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# dhcpd.conf
#
# Sample configuration file for ISC dhcpd
#
# option definitions common to all supported networks...
option domain-name "example.org";
option domain-name-servers ns1.example.org, ns2.example.org;
default-lease-time 600;
max-lease-time 7200;
# The ddns-updates-style parameter controls whether or not the server will
# attempt to do a DNS update when a lease is confirmed. We default to the
# behavior of the version 2 packages ('none', since DHCP v2 didn't
# have support for DDNS.)
ddns-update-style none;
# If this DHCP server is the official DHCP server for the local
# network, the authoritative directive should be uncommented.
#authoritative;
# Use this to send dhcp log messages to a different log file (you also
# have to hack syslog.conf to complete the redirection).
#log-facility local7;
# No service will be given on this subnet, but declaring it helps the
# DHCP server to understand the network topology.
#subnet 10.152.187.0 netmask 255.255.255.0 {
#}
# This is a very basic subnet declaration.
subnet 172.16.0.0 netmask 255.255.255.0 {
range 172.16.0.100 172.16.0.200;
option routers 172.16.0.1;
option domain-name "monlabo.lan";
option domain-name-servers 172.16.0.254;
}
host srv-admin{
hardware ethernet 08:00:27:ef:99:fa;
fixed-address 172.16.0.1;
}
host srv-dns2{
hardware ethernet 08:00:27:4a:ed:f7;
fixed-address 172.16.0.254;
}
# This declaration allows BOOTP clients to get dynamic addresses,
# which we don't really recommend.
#subnet 10.254.239.32 netmask 255.255.255.224 {
# range dynamic-bootp 10.254.239.40 10.254.239.60;
# option broadcast-address 10.254.239.31;
# option routers rtr-239-32-1.example.org;
#}
# A slightly different configuration for an internal subnet.
#subnet 10.5.5.0 netmask 255.255.255.224 {
# range 10.5.5.26 10.5.5.30;
# option domain-name-servers ns1.internal.example.org;
# option domain-name "internal.example.org";
# option routers 10.5.5.1;
# option broadcast-address 10.5.5.31;
# default-lease-time 600;
# max-lease-time 7200;
#}
# Hosts which require special configuration options can be listed in
# host statements. If no address is specified, the address will be
# allocated dynamically (if possible), but the host-specific information
# will still come from the host declaration.
#host passacaglia {
# hardware ethernet 0:0:c0:5d:bd:95;
# filename "vmunix.passacaglia";
# server-name "toccata.example.com";
#}
# Fixed IP addresses can also be specified for hosts. These addresses
# should not also be listed as being available for dynamic assignment.
# Hosts for which fixed IP addresses have been specified can boot using
# BOOTP or DHCP. Hosts for which no fixed address is specified can only
# be booted with DHCP, unless there is an address range on the subnet
# to which a BOOTP client is connected which has the dynamic-bootp flag
# set.
#host fantasia {
# hardware ethernet 08:00:07:26:c0:a5;
# fixed-address fantasia.example.com;
#}
# You can declare a class of clients and then do address allocation
# based on that. The example below shows a case where all clients
# in a certain class get addresses on the 10.17.224/24 subnet, and all
# other clients get addresses on the 10.0.29/24 subnet.
#class "foo" {
# match if substring (option vendor-class-identifier, 0, 4) = "SUNW";
#}
#shared-network 224-29 {
# subnet 10.17.224.0 netmask 255.255.255.0 {
# option routers rtr-224.example.org;
# }
# subnet 10.0.29.0 netmask 255.255.255.0 {
# option routers rtr-29.example.org;
# }
# pool {
# allow members of "foo";
# range 10.17.224.10 10.17.224.250;
# }
# pool {
# deny members of "foo";
# range 10.0.29.10 10.0.29.230;
# }
#}

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# This file describes the network interfaces available on your system
# and how to activate them. For more information, see interfaces(5).
source /etc/network/interfaces.d/*
# The loopback network interface
auto lo
iface lo inet loopback
# The primary network interface
allow-hotplug enp0s3
#iface enp0s3 inet dhcp
iface enp0s3 inet static
address 172.16.0.254/24
gateway 172.16.0.1

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// This is the primary configuration file for the BIND DNS server named.
//
// Please read /usr/share/doc/bind9/README.Debian for information on the
// structure of BIND configuration files in Debian, *BEFORE* you customize
// this configuration file.
//
// If you are just adding zones, please do that in /etc/bind/named.conf.local
include "/etc/bind/named.conf.options";
include "/etc/bind/named.conf.local";
include "/etc/bind/named.conf.default-zones";

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//
// Do any local configuration here
//
// Consider adding the 1918 zones here, if they are not used in your
// organization
//include "/etc/bind/zones.rfc1918";
// zone directe
zone "monlabo.lan" {
type master;
file "/etc/bind/db.monlabo.lan";
};
// zone inverse
zone "0.16.172.in-addr.arpa" {
type master;
notify no;
file "/etc/bind/db.monlabo.lan.rev";
};