zapi_nbr structure is renamed to zapi_neigh_ip.
Initially used to set a neighbor ip entry for gre interfaces, this
structure is used to get events from the zebra layer to nhrp layer.
The ndm state has been added, as it is needed on both sides.
The zebra dplane layer is slightly modified.
Also, to clarify what ZEBRA_NEIGH_ADD/DEL means, a rename is done:
it is called now ZEBRA_NEIGH_IP_ADD/DEL, and it signified that this
zapi interface permits to set link operations by associating ip
addresses to link addresses.
Signed-off-by: Philippe Guibert <philippe.guibert@6wind.com>
Instead of directly configuring the neighbor table after read from zapi
interface, a zebra dplane context is prepared to host the interface and
the family where the neighbor table is updated. Also, some other fields
are hosted: app_probes, ucast_probes, and mcast_probes. More information
on those fields can be found on ip-ntable configuration.
Signed-off-by: Philippe Guibert <philippe.guibert@6wind.com>
EVPN neighbor operations were already done in the zebra dataplane
framework. Now that NHRP is able to use zebra to perform neighbor IP
operations (by programming link IP operations), handle this operation
under dataplane framework:
- assign two new operations NEIGH_IP_INSTALL and NEIGH_IP_DELETE; this
is reserved for GRE like interfaces:
example: ip neigh add A.B.C.D lladdr E.F.G.H
- use 'struct ipaddr' to store and encode the link ip address
- reuse dplane_neigh_info, and create an union with mac address
- reuse the protocol type and use it for neighbor operations; this
permits to store the daemon originating this neighbor operation.
a new route type is created: ZEBRA_ROUTE_NEIGH.
- the netlink level functions will handle a pointer, and a type; the
type indicates the family of the pointer: AF_INET or AF_INET6 if the
link type is an ip address, mac address otherwise.
- to keep backward compatibility with old queries, as no extension was
done, an option NEIGH_NO_EXTENSION has been put in place
- also, 2 new state flags are used: NUD_PERMANENT and NUD_FAILED.
Signed-off-by: Philippe Guibert <philippe.guibert@6wind.com>
like it has been done for iptable contexts, a zebra dplane context is
created for each ipset/ipset entry event. The zebra_dplane_ctx job is
then enqueued and processed by separate thread. Like it has been done
for zebra_pbr_iptable context, the ipset and ipset entry contexts are
encapsulated into an union of structures in zebra_dplane_ctx.
There is a specificity in that when storing ipset_entry structure, there
was a backpointer pointer to the ipset structure that is necessary
to get some complementary information before calling the hook. The
proposal is to use an ipset_entry_info structure next to the ipset_entry,
in the zebra_dplane context. That information is used for ipset_entry
processing. The ipset name and the ipset type are the only fields
necessary.
Signed-off-by: Philippe Guibert <philippe.guibert@6wind.com>
The iptable processing was not handled in remote dataplane, and was
directly processed by the thread in charge of zapi calls. Now that call
can be handled in the zebra_dplane separate thread. once a
zebra_dplane_ctx is allocated for iptable handling, the hook call is
performed later. Subsequently, a return code may be triggered to zclient
interface if any problem occurs when calling the hook call.
Signed-off-by: Philippe Guibert <philippe.guibert@6wind.com>
Feature overview:
=================
A 802.3ad bond can be setup to allow lacp-bypass. This is done to enable
servers to pxe boot without a LACP license i.e. allows the bond to go oper
up (with a single link) without LACP converging.
If an ES-bond is oper-up in an "LACP-bypass" state MH treats it as a non-ES
bond. This involves the following special handling -
1. If the bond is in a bypass-state the associated ES is placed in a
bypass state.
2. If an ES is in a bypass state -
a. DF election is disabled (i.e. assumed DF)
b. SPH filter is not installed.
3. MACs learnt via the host bond are advertised with a zero ESI.
When the ES moves out of "bypass" the MACs are moved from a zero-ESI to
the correct non-zero id. This is treated as a local station move.
Implementation:
===============
When (a) an ES is detached from a hostbond or (b) an ES-bond goes into
LACP bypass zebra deletes all the local macs (with that ES as destination)
in the kernel and its local db. BGP re-sends any imported MAC-IP routes
that may exist with this ES destination as remote routes i.e. zebra can
end up programming a MAC that was perviously local as remote pointing
to a VTEP-ECMP group.
When an ES is attached to a hostbond or an ES-bond goes
LACP-up (out of bypss) zebra again deletes all the local macs in the
kernel and its local db. At this point BGP resends any imported MAC-IP
routes that may exist with this ES destination as sync routes i.e.
zebra can end up programming a MAC that was perviously remote
as local pointing to an access port.
Signed-off-by: Anuradha Karuppiah <anuradhak@cumulusnetworks.com>
Returns the current number of (completed) contexts in the provider's
output queue (dp_ctx_out_q), allowing access to this data from the
provider itself.
Signed-off-by: Duncan Eastoe <duncan.eastoe@att.com>
Add an api that allows a caller in the zebra main pthread to
process the queue of pending dplane updates. The caller supplies
a function to call to test each pending context. Selected
contexts are dequeued, and freed without being processed.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Add extra data about the interfaces used in route updates'
nexthops - some consumers of route updates may want additional
data, but dataplane plugins running in the dplane pthread
cannot safely access the normal zebra data structures. Capturing
this info is optional - a plugin must request it (via an api).
Signed-off-by: Mark Stapp <mjs@voltanet.io>
This includes -
1. non-DF block filter
2. List of es-peers that need to be blocked per-access port (for
split horizon filtering)
3. Backup nexthop group to failover local-es via the VxLAN overlay
Signed-off-by: Anuradha Karuppiah <anuradhak@cumulusnetworks.com>
If we have received a route that the already existing
route is exactly the same, just note that it happened
and move on.
Signed-off-by: Donald Sharp <sharpd@cumulusnetworks.com>
When installing rules pass by the interface name across
zapi.
This is being changed because we have a situation where
if you quickly create/destroy ephermeal interfaces under
linux the upper level protocol may be trying to add
a rule for a interface that does not quite exist
at the moment. Since ip rules actually want the
interface name ( to handle just this sort of situation )
convert over to passing the interface name and storing
it and using it in zebra.
Ticket: CM-31042
Signed-off-by: Stephen Worley <sworley@nvidia.com>
Signed-off-by: Donald Sharp <sharpd@nvidia.com>
We can make the Linux kernel send an ARP/NDP request by adding
a neighbour with the 'NUD_INCOMPLETE' state and the 'NTF_USE' flag.
This commit adds new dataplane operation as well as new zapi message
to allow other daemons send ARP/NDP requests.
Signed-off-by: Jakub Urbańczyk <xthaid@gmail.com>
Reverting probing of neigh entry. There is a timing where
probe and remote macip add request comes at the same time resulting
in neigh to remain in local state event though it should be remote.
In mobility case, the host moves to remote VTEP, first MAC only type-2
route is received which triggers a PROBE of neighs (associated to MAC).
PROBE request can go via network port to remote VTEP.
PROBE request picks up local neigh with MAC entry's outgoing port is
remote VTEP tunnel port.
The PROBE reply and MAC-IP (containing IP) almost comes same time at
DUT.
DUT first processes remote macip and installs neigh as remote.
Followed by receives neigh as REACHABLE which marks neigh as LOCAL.
FRR does have BPF filter which does not allow its own netlink request
to receive. Otherwise frr's request to program neigh as remote can move
neigh from local to remote.
Though ordering can not be guranteed that REACHABLE (PROBE's repsonse)
can come at anytime and move it to LOCAL.
This fix would not suffice the needs of converging LOCAL inactive neighs
to remove from DB. As mobility draft sugges to PROBE local neigh when
MAC moves to remote but it is not working with current framework.
Ticket:CM-22864
This reverts commit 44bc8ae550
Signed-off-by: Chirag Shah <chirag@cumulusnetworks.com>
MAC-IP routes are used for syncing local entries across redundant
switches in an EVPN-MH setup. A path from a peer that has a local
ES as destination is tagged as a SYNC path. The SYNC path results in the
addition of local MAC and/or local neigh entry in zebra and in the
dataplane.
Implementation overview
=======================
1. Three new flags "local-inactive", "peer-active" and "peer-proxy"
are maintained per-local-MAC and per-local-Neigh entry.
2. The "peer-XXX" flags are set and cleared via SYNC path updates
from BGP. Proxy sync paths result in the setting of "peer-proxy" flag
(and non-proxies result in the "peer-active").
3. A neigh entry that has a "peer-XXX" flag set is programmed as
"static" in the dataplane.
4. A MAC entry that has a "peer-XXX" flag set or is referenced by
a sync-neigh entry (that has a "peer-XXX" flags set) is programmed
as "static" in the dataplane.
5. The sync-seq number is used to normalize the MM seq number across
all the redundant switches i.e. the max MM seq number across all
switches is used by each of the switches. This commit also includes
the changes needed for extended MM seq syncing.
6. A MAC/neigh entry has to be local-active or peer-active to sent to
BGP. An entry that is NOT local-active is sent with the proxy flag (so
BGP can "proxy" advertise it).
7. The "peer-active" flag is aged out by zebra by using a hold_timer
(this is instead of being abruptly dropped on SYNC path delete). This
age-out is needed to handle peer-switch restart (procedures are specified
in draft-rbickhart-evpn-ip-mac-proxy-adv). The holdtime needs to be
sufficiently long to allow an external neighmgr daemon or the dataplane
component to independently probe and establish local reachability of a
host. The MAC and neigh hold time values are configurable.
PS: In the future this probing may happen in FRR itself.
CLI changes to display sync info
================================
MAC
===
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
root@torm-11:mgmt:~# net show evpn mac vni 1000
Number of MACs (local and remote) known for this VNI: 6
Flags: N=sync-neighs, I=local-inactive, P=peer-active, X=peer-proxy
MAC Type Flags Intf/Remote ES/VTEP VLAN Seq #'s
00:02:00:00:00:25 local vlan1000 1000 0/0
02:02:00:00:00:02 local PI hostbond1 1000 0/0
02:02:00:00:00:06 remote 03:00:00:00:00:02:11:00:00:01 0/0
02:02:00:00:00:01 local X hostbond1 1000 0/0
00:00:00:00:00:11 local PI hostbond1 1000 0/0
02:02:00:00:00:05 remote 03:00:00:00:00:02:11:00:00:01 0/0
root@torm-11:mgmt:~#
root@torm-11:mgmt:~# net show evpn mac vni 1000 mac 00:00:00:00:00:11
MAC: 00:00:00:00:00:11
ESI: 03:00:00:00:00:01:11:00:00:01
Intf: hostbond1(58) VLAN: 1000
Sync-info: neigh#: 0 local-inactive peer-active >>>>>>>>>>>>
Local Seq: 0 Remote Seq: 0
Neighbors:
No Neighbors
root@torm-11:mgmt:~#
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
neigh
=====
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
root@torm-11:mgmt:~# net show evpn arp vni 1003
Number of ARPs (local and remote) known for this VNI: 4
Flags: I=local-inactive, P=peer-active, X=peer-proxy
Neighbor Type Flags State MAC Remote ES/VTEP Seq #'s
2001:fee1:0:3::6 local active 00:02:00:00:00:25 0/0
45.0.3.66 local P active 00:02:00:00:00:66 0/0
45.0.3.6 local active 00:02:00:00:00:25 0/0
fe80::202:ff:fe00:25 local active 00:02:00:00:00:25 0/0
root@torm-11:mgmt:~#
root@torm-11:mgmt:~# net show evpn arp vni 1003 ip 45.0.3.66
IP: 45.0.3.66
Type: local
State: active
MAC: 00:02:00:00:00:66
Sync-info: peer-active >>>>>>>>>>>>>>>>
Local Seq: 0 Remote Seq: 0
root@torm-11:mgmt:~#
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
Signed-off-by: Anuradha Karuppiah <anuradhak@cumulusnetworks.com>
Multihoming support requires a new dataplane feature, MAC-ECMP, to
bridge traffic to remote ESs that are attached to more than one
active VTEP.
As a part of this support indirection has also been added via
L2-NHGs. Using a nexthop group allows for fast failover
of MAC entries when an access port attached to a remote-ES goes
down i.e. instead of updating many MAC entries this becomes a
single NHG update to the dataplane.
Note: Some of the code here needs to be reworked to the new
dataplane model.
Signed-off-by: Anuradha Karuppiah <anuradhak@cumulusnetworks.com>
Extend PBR maps to discriminate by Differentiated Services Code Point and / or
Explicit Congestion Notification fields. These fields are used in the IP header
for classifying network traffic.
0 1 2 3 4 5 6 7
+-----+-----+-----+-----+-----+-----+-----+-----+
| DS FIELD, DSCP | ECN FIELD |
+-----+-----+-----+-----+-----+-----+-----+-----+
DSCP: differentiated services codepoint
ECN: Explicit Congestion Notification
Signed-off-by: Wesley Coakley <wcoakley@nvidia.com>
Signed-off-by: Saurav Kumar Paul <saurav@cumulusnetworks.com>
Add an init api (based on what had been a private/static api)
to allow a caller to init a context and use it to generate LSP
updates. This might be useful for testing, or from a dplane
plugin.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
* Implement new dataplane operations
* Convert existing code to use dataplane context object
* Modify function preparing netlink message to use dataplane
context object
Signed-off-by: Jakub Urbańczyk <xthaid@gmail.com>
This commit is the first step to convert IP rule installation to
use dplane thread.
* Add dataplane's internal representation of a pbr rule
* Add dplane stats related to rules
* Introduce a new type of dplane operation
Signed-off-by: Jakub Urbańczyk <xthaid@gmail.com>
Handle backup nhlfes in LSP zapi messages. Capture backup info
with LSPs, capture backup info in the dataplane LSP processing.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Provide a way for the data plane to indicate pseudowire
status (such as: not forwarding, AC failure).
On a data plane pseudowire install failure, data plane
sets the pseudowire status.
Zebra relays the pseudowire status to LDP.
LDP includes the pseudowire status in the LDP notification
to the LDP peer.
Signed-off-by: Karen Schoener <karen@voltanet.io>
Implement the next hop group send on startup if you are using
them. Normally you will only have them if you are already using this
Linux kernel feature.
NOTE: to make sure all next hop groups exist, we send/enqueue all next
hop groups first and then we send routes. The RIB route walk start is
at the end of the function `fpm_nhg_send()`.
Signed-off-by: Rafael Zalamena <rzalamena@opensourcerouting.org>
Add a public reset api, so a context can be reset and reused;
add apis to init a context for a route or mac update.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Use a backup index in a nexthop directly (if it has a backup
nexthop); revise the zebra nhe/nhg code; revise zapi route
decoding to match; revise the dataplane route datastructs.
Refactor some of the rib_add_multipath code to be prepared to
be called with an nhe, carrying nexthop and (possibly) backup
info together.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
For SR-TE we'll need to create Binding-SIDs which are essentially
LSPs that can push multiple outgoing labels. This commit sets the
groundwork for that. Luckily the netlink code didn't need to be
changed since it already supports pushing label stacks.
Signed-off-by: Renato Westphal <renato@opensourcerouting.org>
On restart, if we failed to remove any nexthop objects due
to a kill -9 or such event, sweep them if we aren't using them.
Add a proto field to handle this and remove the is_kernel bool.
Add a dupicate flag that indicates this nexthop group is only
present in our ID hashtable. It is a dupicate nexthop we received
from the kernel, therefore we cannot hash on it.
Make the idcounter globally accessible so that kernel updates
increment it as soon as we receive them, not when we handle them.
Signed-off-by: Stephen Worley <sworley@cumulusnetworks.com>
We will use a nhe context for dataplane interaction with
nextho group hash entries.
New nhe's from the kernel will be put into a group array
if they are a group and queued on the rib metaq to be processed
later.
New nhe's sent to the kernel will be set on the dataplane context
with approprate ID's in the group array if needed.
Signed-off-by: Stephen Worley <sworley@cumulusnetworks.com>
Add all the neccessary code to allow nexthops to be processed
in separate dataplane contexts with the netlink dataplane kernel
provider.
Signed-off-by: Stephen Worley <sworley@cumulusnetworks.com>
Add the (single) dataplane config value to the output of
config write, 'show run' - missed this during dplane development.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Some netlink-facing code used for evpn/vxlan programming was
being run in the dataplane pthread, but accessing zebra core
datastructs. Move some additional data into the dataplane
context, and use it in the netlink path instead.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Move neighbor programming to the dataplane; remove
old apis; remove some ifdef'd use of direct netlink
code points, using neutral values outside of the netlink-
specific files.
Signed-off-by: Mark Stapp <mjs@voltanet.io>
Initial data struct and api changes to support EVPN MAC
updates via the dataplane subsystem (no handlers yet).
Signed-off-by: Mark Stapp <mjs@voltanet.io>