Use network address as IPv6 lease start

IPv6 address leases were starting at the network address + 1, following
the IPv4 convention where the network address is reserved. However,
IPv6 doesn't have such a restriction, and that behaviour is inconsistent
with IPv6 standards.

Use the IPv6 network address as the starting point for address leases
instead of network address + 1. This fix is particularly important for
point-to-point /127 networks with only 2 addresses.

Fixes #714.

Signed-off-by: Dimitri Papadopoulos <3350651-DimitriPapadopoulos@users.noreply.gitlab.com>
This commit is contained in:
Dimitri Papadopoulos
2026-06-17 08:58:18 +02:00
parent f3f74de305
commit 6ad834fcb2
16 changed files with 331 additions and 16 deletions
+2
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@@ -4,6 +4,8 @@
affected session to be rejected rather than silently ignored. A configured affected session to be rejected rather than silently ignored. A configured
default-user-conf or default-group-conf file that cannot be opened also default-user-conf or default-group-conf file that cannot be opened also
now causes session rejection (previously silently ignored). now causes session rejection (previously silently ignored).
- Fix point-to-point IPv6 networks by starting address leasing precisely
at network address instead of network address + 1 (#714)
* Version 1.5.0 (released 2026-06-07) * Version 1.5.0 (released 2026-06-07)
+1 -2
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@@ -425,9 +425,8 @@ static int get_ipv6_lease(main_server_st *s, struct proc_st *proc)
if (proc->ipv6 == NULL) if (proc->ipv6 == NULL)
return ERR_MEM; return ERR_MEM;
/* LIP = network address + 1 */ /* LIP = network address */
memcpy(&proc->ipv6->lip, &network, sizeof(struct sockaddr_in6)); memcpy(&proc->ipv6->lip, &network, sizeof(struct sockaddr_in6));
SA_IN6_U8_P(&proc->ipv6->lip)[15] |= 1;
proc->ipv6->lip_len = sizeof(struct sockaddr_in6); proc->ipv6->lip_len = sizeof(struct sockaddr_in6);
+166
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@@ -0,0 +1,166 @@
# User authentication method. Could be set multiple times and in that case
# all should succeed.
# Options: certificate, pam.
#auth = "certificate"
auth = "plain[@SRCDIR@/data/test1.passwd]"
#auth = "pam"
isolate-workers = @ISOLATE_WORKERS@
max-ban-score = 0
# A banner to be displayed on clients
#banner = "Welcome"
# Use listen-host to limit to a specific IP or to the IPs of a provided hostname.
#listen-host = [IP|HOSTNAME]
use-dbus = no
# Limit the number of clients. Unset or set to zero for unlimited.
#max-clients = 1024
max-clients = 16
# Limit the number of client connections to one every X milliseconds
# (X is the provided value). Set to zero for no limit.
#rate-limit-ms = 100
# Limit the number of identical clients (i.e., users connecting multiple times)
# Unset or set to zero for unlimited.
max-same-clients = 2
# TCP and UDP port number
tcp-port = @PORT@
udp-port = @PORT@
# Keepalive in seconds
keepalive = 32400
# Dead peer detection in seconds
dpd = 440
# MTU discovery (DPD must be enabled)
try-mtu-discovery = false
# The key and the certificates of the server
# The key may be a file, or any URL supported by GnuTLS (e.g.,
# tpmkey:uuid=xxxxxxx-xxxx-xxxx-xxxx-xxxxxxxx;storage=user
# or pkcs11:object=my-vpn-key;object-type=private)
#
# There may be multiple certificate and key pairs and each key
# should correspond to the preceding certificate.
server-cert = @SRCDIR@/certs/server-cert.pem
server-key = @SRCDIR@/certs/server-key.pem
# Diffie-Hellman parameters. Only needed if you require support
# for the DHE ciphersuites (by default this server supports ECDHE).
# Can be generated using:
# certtool --generate-dh-params --outfile /path/to/dh.pem
#dh-params = /path/to/dh.pem
# If you have a certificate from a CA that provides an OCSP
# service you may provide a fresh OCSP status response within
# the TLS handshake. That will prevent the client from connecting
# independently on the OCSP server.
# You can update this response periodically using:
# ocsptool --ask --load-cert=your_cert --load-issuer=your_ca --outfile response
# Make sure that you replace the following file in an atomic way.
#ocsp-response = /path/to/ocsp.der
# In case PKCS #11 or TPM keys are used the PINs should be available
# in files. The srk-pin-file is applicable to TPM keys only (It's the storage
# root key).
#pin-file = /path/to/pin.txt
#srk-pin-file = /path/to/srkpin.txt
# The Certificate Authority that will be used
# to verify clients if certificate authentication
# is set.
#ca-cert = /path/to/ca.pem
# The object identifier that will be used to read the user ID in the client certificate.
# The object identifier should be part of the certificate's DN
# Useful OIDs are:
# CN = 2.5.4.3, UID = 0.9.2342.19200300.100.1.1
#cert-user-oid = 0.9.2342.19200300.100.1.1
# The object identifier that will be used to read the user group in the client
# certificate. The object identifier should be part of the certificate's DN
# Useful OIDs are:
# OU (organizational unit) = 2.5.4.11
#cert-group-oid = 2.5.4.11
# A revocation list of ca-cert is set
#crl = /path/to/crl.pem
# GnuTLS priority string
tls-priorities = "PERFORMANCE:%SERVER_PRECEDENCE:%COMPAT"
# To enforce perfect forward secrecy (PFS) on the main channel.
#tls-priorities = "NORMAL:%SERVER_PRECEDENCE:%COMPAT:-RSA"
# The time (in seconds) that a client is allowed to stay connected prior
# to authentication
auth-timeout = 40
# Script to call when a client connects and obtains an IP
# Parameters are passed on the environment.
# REASON, USERNAME, GROUPNAME, HOSTNAME (the hostname selected by client),
# DEVICE, IP_REAL (the real IP of the client), IP_LOCAL (the local IP
# in the P-t-P connection), IP_REMOTE (the VPN IP of the client). REASON
# may be "connect" or "disconnect".
#connect-script = /usr/bin/myscript
#disconnect-script = /usr/bin/myscript
# PID file
pid-file = ./ocserv.pid
# The default server directory. Does not require any devices present.
#chroot-dir = /path/to/chroot
# socket file used for IPC, will be appended with .PID
# It must be accessible within the chroot environment (if any)
socket-file = ./ocserv-socket
# The user the worker processes will be run as. It should be
# unique (no other services run as this user).
run-as-user = @USERNAME@
run-as-group = @GROUP@
# Network settings
device = vpns
# The default domain to be advertised
default-domain = example.com
# Point-to-point (P2P) network configurations
# IPv4: /30 network (RFC 3021 - 2 usable hosts)
ipv4-network = @VPNNET@
# IPv6: /127 network (RFC 6164 - dedicated for P2P links)
ipv6-network = @VPNNET6@
# Prior to leasing any IP from the pool ping it to verify that
# it is not in use by another (unrelated to this server) host.
ping-leases = false
# Leave empty to assign the default MTU of the device
# mtu =
#
# The following options are for (experimental) AnyConnect client
# compatibility. They are only available if the server is built
# with --enable-anyconnect
#
# Client profile xml. A sample file exists in doc/profile.xml.
# This file must be accessible from inside the worker's chroot.
# The profile is ignored by the openconnect client.
#user-profile = profile.xml
# Unless set to false it is required for clients to present their
# certificate even if they are authenticating via a previously granted
# cookie. Legacy CISCO clients do not do that, and thus this option
# should be set for them.
#always-require-cert = false
+2 -1
View File
@@ -298,7 +298,8 @@ if get_option('root-tests')
'test-cstp-send-hang', 'test-mtu-connect', 'test-cstp-send-hang', 'test-mtu-connect',
'disconnect-user', 'disconnect-user2', 'terminate-commands', 'disconnect-user', 'disconnect-user2', 'terminate-commands',
'ping-leases', 'test-ban-local', 'test-client-bypass-protocol', 'ping-leases', 'test-ban-local', 'test-client-bypass-protocol',
'ipv6-small-net', 'test-camouflage', 'test-camouflage-norealm', 'ipv6-small-net', 'p2p-net',
'test-camouflage', 'test-camouflage-norealm',
'vhost-traffic', 'defvhost-traffic', 'vhost-traffic', 'defvhost-traffic',
'test-occtl', 'test-occtl-commands', 'no-ipv6-ocv3', 'test-occtl', 'test-occtl-commands', 'no-ipv6-ocv3',
'test-config-per-group', 'test-config-per-group-url-pass', 'test-config-per-group', 'test-config-per-group-url-pass',
+3 -3
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@@ -27,9 +27,9 @@
# VPNADDR=192.168.1.1 # VPNADDR=192.168.1.1
# #
# Provides: # Provides:
# ${NSCMD1} - to run on NS1 # ${CMDNS1} - to run on NS1
# ${NSCMD2} - to run on NS2 # ${CMDNS2} - to run on NS2
# ${NSCMD3} - to run on NS3 # ${CMDNS3} - to run on NS3
# #
# Cleanup is automatic via a trap # Cleanup is automatic via a trap
# Requires: finish() to be defined # Requires: finish() to be defined
+147
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@@ -0,0 +1,147 @@
#!/bin/bash
#
# Copyright (C) 2021 Nikos Mavrogiannopoulos
#
# This file is part of ocserv.
#
# ocserv is free software; you can redistribute it and/or modify it
# under the terms of the GNU General Public License as published by the
# Free Software Foundation; either version 2 of the License, or (at
# your option) any later version.
#
# ocserv is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with GnuTLS; if not, write to the Free Software Foundation,
# Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
# Test peer-to-peer networks:
# - IPv6: use a /127 network and make sure the server is assigned the
# network address.
# - IPv4: use a /30 network for now, until we support /31 networks, and
# make sure the server is assigned the network address + 1.
SERV="${SERV:-../src/ocserv}"
srcdir=${srcdir:-.}
PIDFILE=ocserv-pid.$$.tmp
CLIPID=oc-pid.$$.tmp
IP=$(command -v ip)
. `dirname $0`/common.sh
eval "${GETPORT}"
if test -z "${IP}";then
echo "no IP tool is present"
exit 77
fi
if test "$(id -u)" != "0";then
echo "This test must be run as root"
exit 77
fi
echo "Testing ocserv with point-to-point networks (IPv4 /30, IPv6 /127)... "
function finish {
echo " * Cleaning up..."
cleanup_client_server
}
trap finish EXIT
OCCTL_SOCKET=./p2p-iface-$$.socket
USERNAME=test
IPCALC=$(command -v ipcalc-ng)
if test -z "${IPCALC}"; then
IPCALC=$(command -v ipcalc)
fi
if test -z "${IPCALC}"; then
echo "ipcalc was not found"
exit 1
fi
# Generate random IPv4 P2P network (/30 - RFC 3021)
# /30 provides 4 addresses: network, 2 usable hosts, broadcast
ret=0
while [ $ret = 0 ]
do
eval $(${IPCALC} -r 30 -np --minaddr --maxaddr)
VPNNET="${NETWORK}/${PREFIX}"
VPNADDR=${MINADDR} # Server address
VPNADDR_CLI=${MAXADDR} # Client address
ping -W 1 -c 2 ${VPNADDR} >/dev/null 2>&1
ret=$?
done
# Generate random IPv6 P2P network (/127 - RFC 6164)
# /127 provides exactly 2 addresses for point-to-point links
ret=0
while [ $ret = 0 ]
do
eval $(${IPCALC} -r 127 -np --minaddr --maxaddr)
VPNNET6="${NETWORK}/${PREFIX}"
VPNADDR6=${MINADDR} # Server address
VPNADDR6_CLI=${MAXADDR} # Client address
ping -W 1 -c 2 ${VPNADDR6} >/dev/null 2>&1
ret=$?
done
echo "**************************"
echo "VPN IPv4 network: $VPNNET"
echo "VPN IPv4 server address: $VPNADDR"
echo "VPN IPv6 network: $VPNNET6"
echo "VPN IPv6 server address: $VPNADDR6"
echo "Client IPv4 address: $VPNADDR_CLI"
echo "Client IPv6 address: $VPNADDR6_CLI"
echo "**************************"
#####################. `dirname $0`/ns.sh
update_config p2p-iface.config
if test "$VERBOSE" = 1;then
DEBUG="-d 3"
fi
${CMDNS2} ${SERV} -p ${PIDFILE} -f -c ${CONFIG} ${DEBUG} & PID=$!
wait_server $PID
echo -n "Connecting to P2P interface... "
echo "test" | ${CMDNS1} $OPENCONNECT -q $ADDRESS:$PORT -u ${USERNAME} --servercert=pin-sha256:xp3scfzy3rOQsv9NcOve/8YVVv+pHr4qNCXEXrNl5s8= -s ${srcdir}/scripts/vpnc-script --pid-file=${CLIPID} --passwd-on-stdin -b
if test $? != 0;then
echo "Could not connect to server"
exit 1
fi
echo ok
set -e
echo -n "Verifying assigned IPv4 address... "
ASSIGNED_IPV4=$(${CMDNS2} ${OCCTL} -s ${OCCTL_SOCKET} show user ${USERNAME} | grep "IPv4:" | awk '{print $2}')
if [ "${ASSIGNED_IPV4}" != "${VPNADDR_CLI}" ];then
echo "FAILED"
echo "Expected IPv4: ${VPNADDR_CLI}, got: ${ASSIGNED_IPV4}"
exit 1
fi
echo "ok (${ASSIGNED_IPV4})"
echo -n "Verifying assigned IPv6 address... "
ASSIGNED_IPV6=$(${CMDNS2} ${OCCTL} -s ${OCCTL_SOCKET} show user ${USERNAME} | grep "IPv6:" | awk '{print $2}')
if [ "${ASSIGNED_IPV6}" != "${VPNADDR6_CLI}" ];then
echo "FAILED"
echo "Expected IPv6: ${VPNADDR6_CLI}, got: ${ASSIGNED_IPV6}"
exit 1
fi
echo "ok (${ASSIGNED_IPV6})"
echo ok
kill $PID
wait
exit 0
+1 -1
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@@ -74,7 +74,7 @@ VPNNET=192.168.66.0/24
VPNADDR=192.168.66.1 VPNADDR=192.168.66.1
CLIVPNADDR=192.168.66.192 CLIVPNADDR=192.168.66.192
VPNNET6=fd91:6d14:7241:dc6a::/112 VPNNET6=fd91:6d14:7241:dc6a::/112
VPNADDR6=fd91:6d14:7241:dc6a::1 VPNADDR6=fd91:6d14:7241:dc6a::0
OCCTL_SOCKET=./occtl-radius-$$.socket OCCTL_SOCKET=./occtl-radius-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -73,7 +73,7 @@ trap finish EXIT
VPNNET=192.168.93.0/24 VPNNET=192.168.93.0/24
VPNADDR=192.168.93.1 VPNADDR=192.168.93.1
VPNNET6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0/112 VPNNET6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0/112
VPNADDR6=fc7d:b139:f7ba:5f53:c634:e98e:b777:1 VPNADDR6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0
OCCTL_SOCKET=./occtl-radius-group-$$.socket OCCTL_SOCKET=./occtl-radius-group-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -76,7 +76,7 @@ VPNNET=192.168.66.0/24
VPNADDR=192.168.66.1 VPNADDR=192.168.66.1
CLIVPNADDR=192.168.66.194 CLIVPNADDR=192.168.66.194
VPNNET6=fd91:6d14:7241:dc6a::/112 VPNNET6=fd91:6d14:7241:dc6a::/112
VPNADDR6=fd91:6d14:7241:dc6a::1 VPNADDR6=fd91:6d14:7241:dc6a::0
OCCTL_SOCKET=./occtl-radius-ipv6-prefix-$$.socket OCCTL_SOCKET=./occtl-radius-ipv6-prefix-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -73,7 +73,7 @@ trap finish EXIT
VPNNET=192.168.94.0/24 VPNNET=192.168.94.0/24
VPNADDR=192.168.94.192 VPNADDR=192.168.94.192
VPNNET6=fc7d:b139:f7ba:5f51:c634:e98e:b777:0/112 VPNNET6=fc7d:b139:f7ba:5f51:c634:e98e:b777:0/112
VPNADDR6=fc7d:b139:f7ba:5f51:c634:e98e:b777:1 VPNADDR6=fc7d:b139:f7ba:5f51:c634:e98e:b777:0
OCCTL_SOCKET=./occtl-radius-group-$$.socket OCCTL_SOCKET=./occtl-radius-group-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -73,7 +73,7 @@ trap finish EXIT
VPNNET=192.168.95.0/24 VPNNET=192.168.95.0/24
VPNADDR=192.168.95.192 VPNADDR=192.168.95.192
VPNNET6=fc7d:b139:f7ba:5f50:c634:e98e:b777:0/112 VPNNET6=fc7d:b139:f7ba:5f50:c634:e98e:b777:0/112
VPNADDR6=fc7d:b139:f7ba:5f50:c634:e98e:b777:1 VPNADDR6=fc7d:b139:f7ba:5f50:c634:e98e:b777:0
OCCTL_SOCKET=./occtl-radius-group-$$.socket OCCTL_SOCKET=./occtl-radius-group-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -80,7 +80,7 @@ trap finish EXIT
VPNNET=192.168.55.0/24 VPNNET=192.168.55.0/24
VPNADDR=192.168.55.1 VPNADDR=192.168.55.1
VPNNET6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0/112 VPNNET6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0/112
VPNADDR6=fc7d:b139:f7ba:5f53:c634:e98e:b777:1 VPNADDR6=fc7d:b139:f7ba:5f53:c634:e98e:b777:0
OCCTL_SOCKET=./occtl-radius-otp-$$.socket OCCTL_SOCKET=./occtl-radius-otp-$$.socket
. `dirname $0`/ns.sh . `dirname $0`/ns.sh
+1 -1
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@@ -51,7 +51,7 @@ while [ $ret = 0 ]
do do
eval $(${IPCALC} -r 112 -np --minaddr) eval $(${IPCALC} -r 112 -np --minaddr)
VPNNET6="${NETWORK}/${PREFIX}" VPNNET6="${NETWORK}/${PREFIX}"
VPNADDR6="${NETWORK}1" VPNADDR6="${NETWORK}"
ping ${PINGOPS} ${VPNADDR6} >/dev/null 2>&1 ping ${PINGOPS} ${VPNADDR6} >/dev/null 2>&1
ret=$? ret=$?
done done
+1 -1
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@@ -62,7 +62,7 @@ CLI_ADDRESS=10.204.4.1
VPNNET=192.168.14.0/24 VPNNET=192.168.14.0/24
VPNADDR=192.168.14.1 VPNADDR=192.168.14.1
VPNNET6=fd91:6d87:7344:dc6a:dc15::/112 VPNNET6=fd91:6d87:7344:dc6a:dc15::/112
VPNADDR6=fd91:6d87:7344:dc6a:dc15::1 VPNADDR6=fd91:6d87:7344:dc6a:dc15::0
OCCTL_SOCKET=./occtl-cpg-$$.socket OCCTL_SOCKET=./occtl-cpg-$$.socket
ROUTE1=192.168.14.0/24 ROUTE1=192.168.14.0/24
USERNAME=test USERNAME=test
+1 -1
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@@ -62,7 +62,7 @@ CLI_ADDRESS=10.204.6.1
VPNNET=192.168.24.0/24 VPNNET=192.168.24.0/24
VPNADDR=192.168.24.1 VPNADDR=192.168.24.1
VPNNET6=fd91:6d87:7344:dc6a:dc16::/112 VPNNET6=fd91:6d87:7344:dc6a:dc16::/112
VPNADDR6=fd91:6d87:7344:dc6a:dc16::1 VPNADDR6=fd91:6d87:7344:dc6a:dc16::0
OCCTL_SOCKET=./occtl-cpg-$$.socket OCCTL_SOCKET=./occtl-cpg-$$.socket
ROUTE1=192.168.24.0/24 ROUTE1=192.168.24.0/24
USERNAME=test USERNAME=test
+1 -1
View File
@@ -1 +1 @@
explicit-ipv6 = fda9:4efe:7e3b:03ea::01 explicit-ipv6 = fda9:4efe:7e3b:03ea::0