Age | Commit message (Collapse) | Author |
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A reference to a dictionary key obtained by a for loop can not be used to update
values inside that dictionaries key. You must use the original path to the
nested dictionaries key.
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Introduced in commit e46def834483e ("dhcp: T3100: re-add range slicing support
when exclude addresses are used") by not obeying the move from list to dict
and still relying on the old list names variables.
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47: bar: <NOARP,MASTER,UP,LOWER_UP> mtu 65536 qdisc noqueue state UP group default qlen 1000
link/ether 76:7d:c0:53:6d:89 brd ff:ff:ff:ff:ff:ff
inet 127.0.0.1/8 scope host bar
valid_lft forever preferred_lft forever
inet6 ::1/128 scope host
valid_lft forever preferred_lft forever
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set interfaces ethernet <interface> offload rps
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Basic proxy functionality is working but the squidguard smoketest still fails
as this is yet not implemented.
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dhcp: T2562: add "listen-address" CLI node for better DHCP relay support
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Running ISC DHCP server as backend server for multiple pools served to relay
agents requires DHCPd to explicitly listen on give interfaces or a "transit"
subnet declaration facing the network where we receive the DHCPREQ messages on.
This implements a new "listen-address" CLI node, the given address is validated
if it is assigned to the system and upon success, a proper "subnet { }" statement
is added into dhcpd.conf
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Support was not yet present after the rewrite from commit 84b7ade2 ("dhcp: T3100:
migrate server configuration to get_config_dict()")
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mpls-conf: T915: Add ethernet vif sub interface MPLS enable
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In this commit we added ethernet sub interface MPLS enablement. Per request by
@bbs2web, this functionality is now possible. This should now allow ethernet
switched networks with VLAN tags to also allow for MPLS packet flow.
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frr-isis: T1316: Add new routing feature ISIS
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- Upstream interfaces require a DHCPv6 server to be configured
- Listen interface must have a a global unicast address assigned, else
ISC dhcrelay won't start.
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The NAT system consists out of nested tag nodes which makes manual parsing very
hard. This is a perfect candidate for migrating this to get_config_dict() as
there is already a smoketest in place.
In addition this should make it easier to add features like static nat/hairpin.
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/dev/console is not always present, e.g. on headless devices like an APU4.
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Also drop the Python2 print formatting code in favour of Python3 formatted
strings.
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When rendering the configs "ifconfig" statement wrong IP addresses have been
used for the "tun" operating mode. This has been corrected.
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mpls-conf: T915: Refactored template, handler, added global features
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global features
So this is a big update.
The first thing that was done was a refactor to the FRR LDP template, MPLS handler, and XML conf tree MPLS global additions.
The refactors should work and I did test them in my lab. It seems that everything does work as needed so far in my testing.
There is something here that is considered configuration breaking from the old setup though. In the old setup the MPLS interface operation (as in the interfaces accepting MPLS labels and processing them) was tied with LDP. What this means is that MPLS processing was enabled at the same time as LDP interfaces were configured. We do not want this behavior for the future as there's other MPLS underlay technologies like SR and RSVP. If someone wants to enable SR or RSVP without enabling LDP then they now can. Before, they couldn't. The other additions are global changes to MPLS TTL propagation and MPLS max TTL enforcement. They have now been added.
Lastly, there is an frr-reload bug that Runar Borge found with this. We have found that when totally deleting LDP that there has to be 3 commits done. This is because frr-reload doesn't properly do what it needs to do in 1 operation so we had to do 3. This will only affect people that are doing an entire LDP clear using "delete protocols mpls ldp." Otherwise it isn't seen.
Anyway, this refactor now works with the FRR daemon directly for all changes. This also makes it much easier for adding stuff in the future.
Thank you
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The Jinja2 template contained a lot of redundant paths which only differed in
either the address-family or neighbor vs. peer-group. This paths have been
combined into for loops and a macro for generating a neighbor statement as
peer-groups and regular neighbors share ~95% of the config.
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