Age | Commit message (Collapse) | Author |
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(cherry picked from commit 7292631373ea50f9908796ef2eda32e672d1df2e)
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Update/refresh of DNS records is now handled internally by Strongswan.
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This extends commit 22791e26 ("VRF: T3655: proper connection tracking for VRFs")
so that when the netfilter table is removed, we first check if it exists at all,
and if it does not exist we do not remove it.
This fixes the smoketest error:
PermissionError: [Errno 1] failed to run command: nft delete table inet vrf_zones
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pki: wireguard: T3642: Migrate Wireguard private key directly into CLI
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Also renames peer pubkey to public-key for consistency
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Remote access IP pools can now be defined at a global level and referenced
in IPSec remote-access connections. To defined a pool use:
set vpn ipsec remote-access pool global-ipv4 name-server '172.16.1.1'
set vpn ipsec remote-access pool global-ipv4 prefix '192.168.0.0/24'
set vpn ipsec remote-access pool global-ipv6 name-server '2001:db8::1'
set vpn ipsec remote-access pool global-ipv6 prefix '2001:db8:1000::/64'
A connection can then reference the pool:
set vpn ipsec remote-access connection foo pool 'global-ipv4'
set vpn ipsec remote-access connection foo pool 'global-ipv6'
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... this enables a dual-stack IKEv2 VPN deployment.
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VRF: T3655: proper connection tracking for VRFs
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Currently, all VRFs share the same connection tracking table, which can
lead to problems:
- traffic leaks to a wrong VRF
- improper NAT rules handling when multiple VRFs contain the same IP
networks
- stateful firewall rules issues
The commit implements connection tracking zones support. Each VRF
utilizes its own zone, so connections will never mix up.
It also adds some restrictions to VRF names and assigned table numbers,
because of nftables and conntrack requirements:
- VRF name should always start from a letter (interfaces that start from
numbers are not supported in nftables rules)
- table number must be in the 100-65535 range because conntrack supports
only 65535 zones
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Commit 22739144 ('ipsec: T2816: migrate "ipsec interfaces" to "interface"')
by accident deleted the vpn_ipsec.py Python handler.
Handler was restored.
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This reverts commit c414479fdf1d5ad77170f977481fb9197c9559ae.
This commit broke the smoketests and also OpenVPN complains:
Options error: You must define certificate file (--cert) or PKCS#12 file (--pkcs12)
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update to use PKI.
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This makes the tls cert-file and key-file optional and allows for more
advanced configurations via "openvpn-option", such as pkcs11 or pkcs12
options.
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Commit a5cd877a0a ("ipsec: T2816: Migrate ipsec-settings.xml.in and charon.conf
to vpn_ipsec.py") unfortunately removed the dictionary definition for "data"
which is required when running the l2tp handler script.
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Also adds check for the charon socket instead of an arbitrary sleep()
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- Adds client/server authentication methods.
- Adds basic verification to remote-access.
- Adds DHCP pool and options to remote-access.
- Cleanup unused PKI files.
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vyos.util method `dict_search_args` to allow for dot characters in keys.
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set vpn ipsec esp-group ESP-RW compression 'disable'
set vpn ipsec esp-group ESP-RW lifetime '3600'
set vpn ipsec esp-group ESP-RW pfs 'disable'
set vpn ipsec esp-group ESP-RW proposal 10 encryption 'aes256'
set vpn ipsec esp-group ESP-RW proposal 10 hash 'sha256'
set vpn ipsec esp-group ESP-RW proposal 20 encryption 'aes256'
set vpn ipsec esp-group ESP-RW proposal 20 hash 'sha1'
set vpn ipsec ike-group IKE-RW key-exchange 'ikev2'
set vpn ipsec ike-group IKE-RW lifetime '10800'
set vpn ipsec ike-group IKE-RW mobike 'enable'
set vpn ipsec ike-group IKE-RW proposal 10 dh-group '2'
set vpn ipsec ike-group IKE-RW proposal 10 encryption 'aes256'
set vpn ipsec ike-group IKE-RW proposal 10 hash 'sha1'
set vpn ipsec ike-group IKE-RW proposal 20 dh-group '2'
set vpn ipsec ike-group IKE-RW proposal 20 encryption 'aes128'
set vpn ipsec ike-group IKE-RW proposal 20 hash 'sha1'
set vpn ipsec ipsec-interfaces interface 'dum0'
set vpn ipsec remote-access rw authentication id 'vyos'
set vpn ipsec remote-access rw authentication local-users username vyos password vyos
set vpn ipsec remote-access rw authentication x509 ca-certificate 'peer_172-18-254-202'
set vpn ipsec remote-access rw authentication x509 certificate 'peer_172-18-254-202'
set vpn ipsec remote-access rw description 'asdf'
set vpn ipsec remote-access rw esp-group 'ESP-RW'
set vpn ipsec remote-access rw ike-group 'IKE-RW'
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This reverts commit fb1802111155b52c9d63a079e18127de76033678.
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Renamed CLI from "logging log-modes" to "log subsystem" and "logging log-level"
to "log level". THat is more human firendly.
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VyOS has a known to work mechanism in supplying CLI default values into the
Python configuration scripts. This commit removes hardcoded default values from
the Jinja2 template and places them into the appropriate XML definitions.
The big advantage is that the default value itself and the corresponding help
string are located in the exact same file.
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Commit 2d79a500 ("ipsec: T2816: add Jinja2 converter for ESP/IKE groups to
string") added a Jinja2 helper function which can be used to transform VyOS CLI
ESP and IKE key proposals into a strongSwan compatible string cipher.
This commit changes the IPSec implementation to make use of this new Jinja2
filter fubction/Python helper. This is required base work for better automated
tests (smoketests) but also for an IKEv2 road-warrior setup.
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Remove python3-crypto dependency.
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The IPSec ceritifcate handling is now done by storing the CA key inside the
running configuration.
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* 'pki_ipsec' of https://github.com/sarthurdev/vyos-1x:
pki: ipsec: T3642: Update migration script to account for file permission issues
pki: ipsec: T3642: Migrate IPSec to use PKI configuration
pki: T3642: New PKI config and management
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Commit a6b526fd982 ("ipsec: T3643: us vyos.util.copy_file() over raw UNIX cp
command") used a new helper to copy the x509 certificate files, but it also
added a bug where the certificate key file was copied to the wrong location.
This has been fixed and the corect path is used again.
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XFRM interfaces are similar to VTI devices in their basic functionality but
offer several advantages:
* No tunnel endpoint addresses have to be configured on the interfaces.
Compared to VTIs, which are layer 3 tunnel devices with mandatory endpoints,
this resolves issues with wildcard addresses (only one VTI with wildcard
endpoints is supported), avoids a 1:1 mapping between SAs and interfaces, and
easily allows SAs with multiple peers to share the same interface.
* Because there are no endpoint addresses, IPv4 and IPv6 SAs are supported on
the same interface (VTI devices only support one address family).
* IPsec modes other than tunnel are supported (VTI devices only support
tunnel mode).
* No awkward configuration via GRE keys and XFRM marks. Instead, a new identifier
(XFRM interface ID) links policies and SAs with XFRM interfaces.
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The "v6only" CLI tree was not taken into account during validation.
vyos@vyos:~$ show configuration commands | grep bgp
set protocols bgp local-as '200'
set protocols bgp neighbor eth0.204 address-family ipv6-unicast
set protocols bgp neighbor eth0.204 interface v6only remote-as '100'
vyos@vyos:~$ show bgp ipv6 sum
IPv6 Unicast Summary:
BGP router identifier 172.18.254.201, local AS number 200 vrf-id 0
BGP table version 0
RIB entries 0, using 0 bytes of memory
Peers 1, using 21 KiB of memory
Neighbor V AS MsgRcvd MsgSent TblVer InQ OutQ Up/Down State/PfxRcd PfxSnt
eth0.204 4 100 99 99 0 0 0 01:35:07 0 0
Total number of neighbors 1
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